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    <rss:title>A review of degradable magnesium alloys for oil and gas applications</rss:title>
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    <rss:description>Authors: Ibrahim El Mallawany and Syed Fida Hassan.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 318&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       magnesium ; hydraulic fracturing ; degradable ; dissolvable ; corrosion.</rss:description>
    <dc:title>A review of degradable magnesium alloys for oil and gas applications</dc:title>
    <dc:creator>Ibrahim El Mallawany</dc:creator>
    <dc:creator>Syed Fida Hassan</dc:creator>
    <dc:subject>magnesium</dc:subject>
    <dc:subject>hydraulic fracturing</dc:subject>
    <dc:subject>degradable</dc:subject>
    <dc:subject>dissolvable</dc:subject>
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    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
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    <rss:title>Corrosion behavior of chromium steel in dry and wet alternating chloride ion environment</rss:title>
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    <rss:description>Authors: Yuelin Chao, Jie Zhou and Yuli Zhou.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 313&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
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       chromium steel ; chloride ion ; construction steel ; corrosion resistant steel ; XPS.</rss:description>
    <dc:title>Corrosion behavior of chromium steel in dry and wet alternating chloride ion environment</dc:title>
    <dc:creator>Yuelin Chao</dc:creator>
    <dc:creator>Jie Zhou</dc:creator>
    <dc:creator>Yuli Zhou</dc:creator>
    <dc:subject>chromium steel</dc:subject>
    <dc:subject>chloride ion</dc:subject>
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    <dc:subject>corrosion resistant steel</dc:subject>
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    <rss:title>Modelling the boron diffusion in AISI 316 L steel with the Taylor expansion approach</rss:title>
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    <rss:description>Authors: Mourad Keddam, Zahra Nait Abdellah and Peter Jurči.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 306&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
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       boronizing ; borides ; kinetics ; Taylor expansion model ; activation energy.</rss:description>
    <dc:title>Modelling the boron diffusion in AISI 316 L steel with the Taylor expansion approach</dc:title>
    <dc:creator>Mourad Keddam</dc:creator>
    <dc:creator>Zahra Nait Abdellah</dc:creator>
    <dc:creator>Peter Jurči</dc:creator>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026020">
    <rss:title>Characterization of molybdenum-modified aluminide coating on 304 stainless steel via slurry aluminizing</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026020</rss:link>
    <rss:description>Authors: Ibrahim Owolabi Ambali, Tan Siew Min, Anasyida Abu Seman, Tuti Katrina Abdullah, Khairunisak Abdul Razak, Brij Kumar Dhindaw and Yusuf L. Shuaib-Babata.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 319&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       slurry aluminizing ; molybdenum ; SS304 ; Fe-Al intermetallic compound ; Mo-Al intermetallic compound ; growth kinetics ; corrosion.</rss:description>
    <dc:title>Characterization of molybdenum-modified aluminide coating on 304 stainless steel via slurry aluminizing</dc:title>
    <dc:creator>Ibrahim Owolabi Ambali</dc:creator>
    <dc:creator>Tan Siew Min</dc:creator>
    <dc:creator>Anasyida Abu Seman</dc:creator>
    <dc:creator>Tuti Katrina Abdullah</dc:creator>
    <dc:creator>Khairunisak Abdul Razak</dc:creator>
    <dc:creator>Brij Kumar Dhindaw</dc:creator>
    <dc:creator>Yusuf L. Shuaib-Babata</dc:creator>
    <dc:subject>slurry aluminizing</dc:subject>
    <dc:subject>molybdenum</dc:subject>
    <dc:subject>SS304</dc:subject>
    <dc:subject>Fe-Al intermetallic compound</dc:subject>
    <dc:subject>Mo-Al intermetallic compound</dc:subject>
    <dc:subject>growth kinetics</dc:subject>
    <dc:subject>corrosion</dc:subject>
    <dc:date>2026-03-27</dc:date>
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    <prism:startingPage>319</prism:startingPage>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026024">
    <rss:title>Study on preparation of high-strength briquettes and optimization of properties of magnetic powder from steel slag</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026024</rss:link>
    <rss:description>Authors: Guangwei Wang, Kang Wei, Guojun Sun, Chen Wang, Bingze Liu, Xiaojun Ning and Chuan Wang.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 325&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       steel slag magnetic powder ; cold bonding-heat treatment ; binder ; compressive strength ; drop strength.</rss:description>
    <dc:title>Study on preparation of high-strength briquettes and optimization of properties of magnetic powder from steel slag</dc:title>
    <dc:creator>Guangwei Wang</dc:creator>
    <dc:creator>Kang Wei</dc:creator>
    <dc:creator>Guojun Sun</dc:creator>
    <dc:creator>Chen Wang</dc:creator>
    <dc:creator>Bingze Liu</dc:creator>
    <dc:creator>Xiaojun Ning</dc:creator>
    <dc:creator>Chuan Wang</dc:creator>
    <dc:subject>steel slag magnetic powder</dc:subject>
    <dc:subject>cold bonding-heat treatment</dc:subject>
    <dc:subject>binder</dc:subject>
    <dc:subject>compressive strength</dc:subject>
    <dc:subject>drop strength</dc:subject>
    <dc:date>2026-03-27</dc:date>
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    <dc:identifier>10.1051/metal/2026024</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
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    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>325</prism:startingPage>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2025142">
    <rss:title>The effect of Nb, Ta, and aging treatment on the properties of Ti36Ni49Zr15 high-temperature shape memory alloy</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2025142</rss:link>
    <rss:description>Authors: Syed Abbas Raza, Muhammad Imran Khan, Rashid Ali, Muhammad Ramzan Abdul Karim and Abdul Wadood.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 303&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       TiNiZr SMA ; heat treatment ; atomic force microscope (AFM) ; phase transformation  ; microhardness.</rss:description>
    <dc:title>The effect of Nb, Ta, and aging treatment on the properties of Ti36Ni49Zr15 high-temperature shape memory alloy</dc:title>
    <dc:creator>Syed Abbas Raza</dc:creator>
    <dc:creator>Muhammad Imran Khan</dc:creator>
    <dc:creator>Rashid Ali</dc:creator>
    <dc:creator>Muhammad Ramzan Abdul Karim</dc:creator>
    <dc:creator>Abdul Wadood</dc:creator>
    <dc:subject>TiNiZr SMA</dc:subject>
    <dc:subject>heat treatment</dc:subject>
    <dc:subject>atomic force microscope (AFM)</dc:subject>
    <dc:subject>phase transformation </dc:subject>
    <dc:subject>microhardness</dc:subject>
    <dc:date>2026-03-27</dc:date>
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    <dc:identifier>10.1051/metal/2025142</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>303</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2025112">
    <rss:title>Non-uniform distribution of the cleanliness in a high manganese steel rail</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2025112</rss:link>
    <rss:description>Authors: Zi Ye, Quanlei Zhou, Jujin Wang, Xuewei Zhang and Lifeng Zhang.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 304&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       high manganese steel rail ; inclusions ; deoxidation thermodynamics ; factsage ; distribution characteristics.</rss:description>
    <dc:title>Non-uniform distribution of the cleanliness in a high manganese steel rail</dc:title>
    <dc:creator>Zi Ye</dc:creator>
    <dc:creator>Quanlei Zhou</dc:creator>
    <dc:creator>Jujin Wang</dc:creator>
    <dc:creator>Xuewei Zhang</dc:creator>
    <dc:creator>Lifeng Zhang</dc:creator>
    <dc:subject>high manganese steel rail</dc:subject>
    <dc:subject>inclusions</dc:subject>
    <dc:subject>deoxidation thermodynamics</dc:subject>
    <dc:subject>factsage</dc:subject>
    <dc:subject>distribution characteristics</dc:subject>
    <dc:date>2026-03-27</dc:date>
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    <dc:identifier>10.1051/metal/2025112</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>304</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026001">
    <rss:title>Experimental determination and mechanism analysis of thermal conductivity in CaF2-CaO-Al2O3-MgO-TiO2 five component slag system</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026001</rss:link>
    <rss:description>Authors: Yuxing Zhao, Zhaoxin Ye, Meichen Jin and Wanming Li.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 315&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       transient hot wire method ; thermal conductivity ; slag system ; prediction model.</rss:description>
    <dc:title>Experimental determination and mechanism analysis of thermal conductivity in CaF2-CaO-Al2O3-MgO-TiO2 five component slag system</dc:title>
    <dc:creator>Yuxing Zhao</dc:creator>
    <dc:creator>Zhaoxin Ye</dc:creator>
    <dc:creator>Meichen Jin</dc:creator>
    <dc:creator>Wanming Li</dc:creator>
    <dc:subject>transient hot wire method</dc:subject>
    <dc:subject>thermal conductivity</dc:subject>
    <dc:subject>slag system</dc:subject>
    <dc:subject>prediction model</dc:subject>
    <dc:date>2026-03-27</dc:date>
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    <dc:identifier>10.1051/metal/2026001</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>315</prism:startingPage>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026010">
    <rss:title>The influence of Fe2Nb on the microstructure and mechanical properties of hot-rolled low carbon niobium steel</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026010</rss:link>
    <rss:description>Authors: Wentao Luo.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 311&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       Fe2Nb laves phase ; microstructure ; mechanical properties ; precipitation strengthening.</rss:description>
    <dc:title>The influence of Fe2Nb on the microstructure and mechanical properties of hot-rolled low carbon niobium steel</dc:title>
    <dc:creator>Wentao Luo</dc:creator>
    <dc:subject>Fe2Nb laves phase</dc:subject>
    <dc:subject>microstructure</dc:subject>
    <dc:subject>mechanical properties</dc:subject>
    <dc:subject>precipitation strengthening</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026010</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>311</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2025131">
    <rss:title>Y–O–S and Ce–O–S equilibria in liquid copper</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2025131</rss:link>
    <rss:description>Authors: Xuan-Wei Lei, Di-Qiang Luo, Tang-Ping Dan and Chao-Bin Lai.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 308&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       ionic two-sublattice liquid model ; solubility product ; rare earth oxide ; rare earth monosulfide ; rare earth oxysulfide.</rss:description>
    <dc:title>Y–O–S and Ce–O–S equilibria in liquid copper</dc:title>
    <dc:creator>Xuan-Wei Lei</dc:creator>
    <dc:creator>Di-Qiang Luo</dc:creator>
    <dc:creator>Tang-Ping Dan</dc:creator>
    <dc:creator>Chao-Bin Lai</dc:creator>
    <dc:subject>ionic two-sublattice liquid model</dc:subject>
    <dc:subject>solubility product</dc:subject>
    <dc:subject>rare earth oxide</dc:subject>
    <dc:subject>rare earth monosulfide</dc:subject>
    <dc:subject>rare earth oxysulfide</dc:subject>
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    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
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    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>308</prism:startingPage>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026005">
    <rss:title>A multiscale numerical approach to investigate interfacial mass transfer in three phase flow: application to metallurgical bottom-blown ladles</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026005</rss:link>
    <rss:description>Authors: Stefano De Rosa, Jacob Maarek and Stéphane Zaleski.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 323&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       direct numerical simulation ; ladle metallurgy ; mass transfer ; multiscale modelling.</rss:description>
    <dc:title>A multiscale numerical approach to investigate interfacial mass transfer in three phase flow: application to metallurgical bottom-blown ladles</dc:title>
    <dc:creator>Stefano De Rosa</dc:creator>
    <dc:creator>Jacob Maarek</dc:creator>
    <dc:creator>Stéphane Zaleski</dc:creator>
    <dc:subject>direct numerical simulation</dc:subject>
    <dc:subject>ladle metallurgy</dc:subject>
    <dc:subject>mass transfer</dc:subject>
    <dc:subject>multiscale modelling</dc:subject>
    <dc:date>2026-03-27</dc:date>
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    <dc:identifier>10.1051/metal/2026005</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>323</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026021">
    <rss:title>Numerical analysis of the influence of electrode configurations on multiphysics fields in electroslag remelting process</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026021</rss:link>
    <rss:description>Authors: Naibing Lyu, Jianqiao Hao, Jing Li, Xiaochen Wang and Shixin Xu.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 322&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       electroslag remelting ; welded billet electrode ; multiphysics fields ; numerical analysis.</rss:description>
    <dc:title>Numerical analysis of the influence of electrode configurations on multiphysics fields in electroslag remelting process</dc:title>
    <dc:creator>Naibing Lyu</dc:creator>
    <dc:creator>Jianqiao Hao</dc:creator>
    <dc:creator>Jing Li</dc:creator>
    <dc:creator>Xiaochen Wang</dc:creator>
    <dc:creator>Shixin Xu</dc:creator>
    <dc:subject>electroslag remelting</dc:subject>
    <dc:subject>welded billet electrode</dc:subject>
    <dc:subject>multiphysics fields</dc:subject>
    <dc:subject>numerical analysis</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026021</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>322</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2025134">
    <rss:title>Effect of secondary cooling water distribution on internal cracks in P91 steel Φ600 mm large round blooms</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2025134</rss:link>
    <rss:description>Authors: Yongkun Yang, Silong Zhang, Weian Wang, Zhibin Geng, Jianli Wang, Guoxing Qiu and Xiaoming Li.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 307&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       large round bloom ; secondary cooling water distribution ; P91 steel ; internal crack ; high-temperature mechanical properties.</rss:description>
    <dc:title>Effect of secondary cooling water distribution on internal cracks in P91 steel Φ600 mm large round blooms</dc:title>
    <dc:creator>Yongkun Yang</dc:creator>
    <dc:creator>Silong Zhang</dc:creator>
    <dc:creator>Weian Wang</dc:creator>
    <dc:creator>Zhibin Geng</dc:creator>
    <dc:creator>Jianli Wang</dc:creator>
    <dc:creator>Guoxing Qiu</dc:creator>
    <dc:creator>Xiaoming Li</dc:creator>
    <dc:subject>large round bloom</dc:subject>
    <dc:subject>secondary cooling water distribution</dc:subject>
    <dc:subject>P91 steel</dc:subject>
    <dc:subject>internal crack</dc:subject>
    <dc:subject>high-temperature mechanical properties</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2025134</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>307</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026017">
    <rss:title>Reaction pathways in synergistic carbothermal reduction of fly ash and red mud for ferrosilicon alloy synthesis⋆</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026017</rss:link>
    <rss:description>Authors: Jingyu Zhao, Yingjiang Wen, Jiayong Qiu, Kai Zhao, Xiaoyue Fan, Yifei Lv, Zhuo Chen, Dianchun Ju, Runsheng Xu and Jianliang Zhang.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 316&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       fly ash ; red mud ; ferrosilicon ; carbothermal reduction ; synergistic utilization ; reaction pathway.</rss:description>
    <dc:title>Reaction pathways in synergistic carbothermal reduction of fly ash and red mud for ferrosilicon alloy synthesis⋆</dc:title>
    <dc:creator>Jingyu Zhao</dc:creator>
    <dc:creator>Yingjiang Wen</dc:creator>
    <dc:creator>Jiayong Qiu</dc:creator>
    <dc:creator>Kai Zhao</dc:creator>
    <dc:creator>Xiaoyue Fan</dc:creator>
    <dc:creator>Yifei Lv</dc:creator>
    <dc:creator>Zhuo Chen</dc:creator>
    <dc:creator>Dianchun Ju</dc:creator>
    <dc:creator>Runsheng Xu</dc:creator>
    <dc:creator>Jianliang Zhang</dc:creator>
    <dc:subject>fly ash</dc:subject>
    <dc:subject>red mud</dc:subject>
    <dc:subject>ferrosilicon</dc:subject>
    <dc:subject>carbothermal reduction</dc:subject>
    <dc:subject>synergistic utilization</dc:subject>
    <dc:subject>reaction pathway</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026017</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>316</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2025141">
    <rss:title>High entropy alloys: a brief overview on the synthesis routes and influence on process parameters</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2025141</rss:link>
    <rss:description>Authors: Pratyush Singh Negi, Sornamala Udhayakumar and Sudha Jayaprakasam.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 312&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       high entropy alloys ; phase prediction ; fabrication of HEAs ; microstructure ; properties.</rss:description>
    <dc:title>High entropy alloys: a brief overview on the synthesis routes and influence on process parameters</dc:title>
    <dc:creator>Pratyush Singh Negi</dc:creator>
    <dc:creator>Sornamala Udhayakumar</dc:creator>
    <dc:creator>Sudha Jayaprakasam</dc:creator>
    <dc:subject>high entropy alloys</dc:subject>
    <dc:subject>phase prediction</dc:subject>
    <dc:subject>fabrication of HEAs</dc:subject>
    <dc:subject>microstructure</dc:subject>
    <dc:subject>properties</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2025141</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>312</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026004">
    <rss:title>A study on flatness defect control with edge wave during cold rolling process of SUS430 stainless steel by sendzimir mill</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026004</rss:link>
    <rss:description>Authors: Boyu Wei, Zhengzhong Wang, Guangyi Song, Ning Kong, Jinming Li, Jie Zhang, Pei Liang, Yuwei Song and Wenquan Sun.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 309&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       sendzimir mill ; SUS430 stainless steel ; edge wave ; profile and flatness control ; finite element.</rss:description>
    <dc:title>A study on flatness defect control with edge wave during cold rolling process of SUS430 stainless steel by sendzimir mill</dc:title>
    <dc:creator>Boyu Wei</dc:creator>
    <dc:creator>Zhengzhong Wang</dc:creator>
    <dc:creator>Guangyi Song</dc:creator>
    <dc:creator>Ning Kong</dc:creator>
    <dc:creator>Jinming Li</dc:creator>
    <dc:creator>Jie Zhang</dc:creator>
    <dc:creator>Pei Liang</dc:creator>
    <dc:creator>Yuwei Song</dc:creator>
    <dc:creator>Wenquan Sun</dc:creator>
    <dc:subject>sendzimir mill</dc:subject>
    <dc:subject>SUS430 stainless steel</dc:subject>
    <dc:subject>edge wave</dc:subject>
    <dc:subject>profile and flatness control</dc:subject>
    <dc:subject>finite element</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026004</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>309</prism:startingPage>
    <prism:volume>123</prism:volume>
  </rss:item>
  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2025132">
    <rss:title>Enhancing machining performance of AlSi10Mg composites using EDM: a Taguchi–RSM–random forest approach</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2025132</rss:link>
    <rss:description>Authors: Lakshmanan Selvarajan, Chandrasekaran Arun and Jyotisman Borah.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 302&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       electrical discharge machining ; AlSi10Mg composites ; material removal rate ; tool wear rate ; surface roughness ; optimization ; surface topography.</rss:description>
    <dc:title>Enhancing machining performance of AlSi10Mg composites using EDM: a Taguchi–RSM–random forest approach</dc:title>
    <dc:creator>Lakshmanan Selvarajan</dc:creator>
    <dc:creator>Chandrasekaran Arun</dc:creator>
    <dc:creator>Jyotisman Borah</dc:creator>
    <dc:subject>electrical discharge machining</dc:subject>
    <dc:subject>AlSi10Mg composites</dc:subject>
    <dc:subject>material removal rate</dc:subject>
    <dc:subject>tool wear rate</dc:subject>
    <dc:subject>surface roughness</dc:subject>
    <dc:subject>optimization</dc:subject>
    <dc:subject>surface topography</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2025132</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>302</prism:startingPage>
    <prism:volume>123</prism:volume>
  </rss:item>
  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026002">
    <rss:title>Aluminate-based mold fluxes with high crystallization and high lubrication characteristics</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026002</rss:link>
    <rss:description>Authors: Jiang-hua Qi, Guang-da Bao, Chen Zhang, Hai-chuan Wang and Ting Wu.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 310&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       aluminate-based mold fluxes ; breaking temperature ; apparent crystallization ratio ; crystallization  ; lubrication.</rss:description>
    <dc:title>Aluminate-based mold fluxes with high crystallization and high lubrication characteristics</dc:title>
    <dc:creator>Jiang-hua Qi</dc:creator>
    <dc:creator>Guang-da Bao</dc:creator>
    <dc:creator>Chen Zhang</dc:creator>
    <dc:creator>Hai-chuan Wang</dc:creator>
    <dc:creator>Ting Wu</dc:creator>
    <dc:subject>aluminate-based mold fluxes</dc:subject>
    <dc:subject>breaking temperature</dc:subject>
    <dc:subject>apparent crystallization ratio</dc:subject>
    <dc:subject>crystallization </dc:subject>
    <dc:subject>lubrication</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026002</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>310</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026026">
    <rss:title>Effect of Bi-phased nanoparticles on the microstructure and anti-wear performance of As-cast carbon steel</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026026</rss:link>
    <rss:description>Authors: Bingxu Wang, Jing Wang, Bing Zhang, Maocheng Song, Wenyao Song, Wei Zhang, Qianwei Chen and Chunlan Yu.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 327&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       ceramic nanoparticle ; carbon steel ; microstructure ; wear performance.</rss:description>
    <dc:title>Effect of Bi-phased nanoparticles on the microstructure and anti-wear performance of As-cast carbon steel</dc:title>
    <dc:creator>Bingxu Wang</dc:creator>
    <dc:creator>Jing Wang</dc:creator>
    <dc:creator>Bing Zhang</dc:creator>
    <dc:creator>Maocheng Song</dc:creator>
    <dc:creator>Wenyao Song</dc:creator>
    <dc:creator>Wei Zhang</dc:creator>
    <dc:creator>Qianwei Chen</dc:creator>
    <dc:creator>Chunlan Yu</dc:creator>
    <dc:subject>ceramic nanoparticle</dc:subject>
    <dc:subject>carbon steel</dc:subject>
    <dc:subject>microstructure</dc:subject>
    <dc:subject>wear performance</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026026</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>327</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026022">
    <rss:title>Effect of electromigration on the growth of TiN particles in molten steel under electropulsing treatment</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026022</rss:link>
    <rss:description>Authors: Quan Zhao, Zheng-hai Zhu, Xiao-bin Zhou, Wang-zhong Mu, Dong-jian Huang and Shang-Dong Liang.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 317&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       pulsed current ; electromigration ; TiN precipitates ; particle size ; nucleation and growth.</rss:description>
    <dc:title>Effect of electromigration on the growth of TiN particles in molten steel under electropulsing treatment</dc:title>
    <dc:creator>Quan Zhao</dc:creator>
    <dc:creator>Zheng-hai Zhu</dc:creator>
    <dc:creator>Xiao-bin Zhou</dc:creator>
    <dc:creator>Wang-zhong Mu</dc:creator>
    <dc:creator>Dong-jian Huang</dc:creator>
    <dc:creator>Shang-Dong Liang</dc:creator>
    <dc:subject>pulsed current</dc:subject>
    <dc:subject>electromigration</dc:subject>
    <dc:subject>TiN precipitates</dc:subject>
    <dc:subject>particle size</dc:subject>
    <dc:subject>nucleation and growth</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026022</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>317</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026025">
    <rss:title>Fabrication of titanium–steel joints with a copper powder interlayer by electro-assisted hot pressing</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026025</rss:link>
    <rss:description>Authors: Cheng-Min Song, Chun-Lin Peng, De-Li Shang, Xiang-Wei Liao, Guo-Hua Zhang and Kuo-Chih Chou.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 326&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       Ti/Cu/steel plate ; electric-assisted bonding ; interface diffusion ; Cu–Ti compound.</rss:description>
    <dc:title>Fabrication of titanium–steel joints with a copper powder interlayer by electro-assisted hot pressing</dc:title>
    <dc:creator>Cheng-Min Song</dc:creator>
    <dc:creator>Chun-Lin Peng</dc:creator>
    <dc:creator>De-Li Shang</dc:creator>
    <dc:creator>Xiang-Wei Liao</dc:creator>
    <dc:creator>Guo-Hua Zhang</dc:creator>
    <dc:creator>Kuo-Chih Chou</dc:creator>
    <dc:subject>Ti/Cu/steel plate</dc:subject>
    <dc:subject>electric-assisted bonding</dc:subject>
    <dc:subject>interface diffusion</dc:subject>
    <dc:subject>Cu–Ti compound</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026025</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>326</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026011">
    <rss:title>Study on mass transfer process and multiphase flow behavior in converter molten bath based on central-hole oxygen lance</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026011</rss:link>
    <rss:description>Authors: Wang Yanru, Liu Kun, Li Junnan, Liu Guangqiang and Wang Lianyu.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 314&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       central-hole oxygen lance ; slag–metal mass transfer ; emulsification layer morphology ; molten bath flow ; converter.</rss:description>
    <dc:title>Study on mass transfer process and multiphase flow behavior in converter molten bath based on central-hole oxygen lance</dc:title>
    <dc:creator>Wang Yanru</dc:creator>
    <dc:creator>Liu Kun</dc:creator>
    <dc:creator>Li Junnan</dc:creator>
    <dc:creator>Liu Guangqiang</dc:creator>
    <dc:creator>Wang Lianyu</dc:creator>
    <dc:subject>central-hole oxygen lance</dc:subject>
    <dc:subject>slag–metal mass transfer</dc:subject>
    <dc:subject>emulsification layer morphology</dc:subject>
    <dc:subject>molten bath flow</dc:subject>
    <dc:subject>converter</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026011</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>314</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026003">
    <rss:title>Research on electroslag system for ultra-supercritical FB2 rotor steel</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026003</rss:link>
    <rss:description>Authors: Tengchang Lin, Ning Wang, Longfei Li and Yong Yang.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 305&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       FB2 rotor steel ; electroslag remelting ; electroslag system ; alloy quality.</rss:description>
    <dc:title>Research on electroslag system for ultra-supercritical FB2 rotor steel</dc:title>
    <dc:creator>Tengchang Lin</dc:creator>
    <dc:creator>Ning Wang</dc:creator>
    <dc:creator>Longfei Li</dc:creator>
    <dc:creator>Yong Yang</dc:creator>
    <dc:subject>FB2 rotor steel</dc:subject>
    <dc:subject>electroslag remelting</dc:subject>
    <dc:subject>electroslag system</dc:subject>
    <dc:subject>alloy quality</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026003</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>305</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026023">
    <rss:title>In-situ tracking of inclusion evolution in Ce-modified highstrength offshore steel: mechanisms governing mechanical performance</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026023</rss:link>
    <rss:description>Authors: Peiying Zhou, Ruifeng Dong, Shuoqi Hu and Meixue Song.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 321&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       high strength offshore platform steel ; rare earth element Ce ; in situ observation ; thermodynamic calculation ; first-principles calculations.</rss:description>
    <dc:title>In-situ tracking of inclusion evolution in Ce-modified highstrength offshore steel: mechanisms governing mechanical performance</dc:title>
    <dc:creator>Peiying Zhou</dc:creator>
    <dc:creator>Ruifeng Dong</dc:creator>
    <dc:creator>Shuoqi Hu</dc:creator>
    <dc:creator>Meixue Song</dc:creator>
    <dc:subject>high strength offshore platform steel</dc:subject>
    <dc:subject>rare earth element Ce</dc:subject>
    <dc:subject>in situ observation</dc:subject>
    <dc:subject>thermodynamic calculation</dc:subject>
    <dc:subject>first-principles calculations</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026023</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>321</prism:startingPage>
    <prism:volume>123</prism:volume>
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  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026018">
    <rss:title>Constructions of stability diagram for inclusions considering nucleation in Fe-Al-Mg-O system by integrating associate model and classical nucleation theory</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026018</rss:link>
    <rss:description>Authors: Pei Zhu, Ying Ren, Haojian Duan and Lifeng Zhang.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 320&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       stability diagram ; thermodynamic equilibrium ; homogeneous nucleation ; heterogeneous nucleation ; associate model.</rss:description>
    <dc:title>Constructions of stability diagram for inclusions considering nucleation in Fe-Al-Mg-O system by integrating associate model and classical nucleation theory</dc:title>
    <dc:creator>Pei Zhu</dc:creator>
    <dc:creator>Ying Ren</dc:creator>
    <dc:creator>Haojian Duan</dc:creator>
    <dc:creator>Lifeng Zhang</dc:creator>
    <dc:subject>stability diagram</dc:subject>
    <dc:subject>thermodynamic equilibrium</dc:subject>
    <dc:subject>homogeneous nucleation</dc:subject>
    <dc:subject>heterogeneous nucleation</dc:subject>
    <dc:subject>associate model</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026018</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>320</prism:startingPage>
    <prism:volume>123</prism:volume>
  </rss:item>
  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2025115">
    <rss:title>DEM analysis of pellet proportion impact on blast furnace burden distribution and permeability</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2025115</rss:link>
    <rss:description>Authors: Yating Cui, Ruishuai Si, Zhenyang Wang, Jianliang Zhang, kexin Jiao, Rong Ma, Rui Ding and Peiyuan Lu.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 324&lt;br /&gt;Published online: 27/03/2026&lt;br /&gt;
       Keywords:
       blast furnace ; pellet proportion ; DEM ; porosity ; burden distribution.</rss:description>
    <dc:title>DEM analysis of pellet proportion impact on blast furnace burden distribution and permeability</dc:title>
    <dc:creator>Yating Cui</dc:creator>
    <dc:creator>Ruishuai Si</dc:creator>
    <dc:creator>Zhenyang Wang</dc:creator>
    <dc:creator>Jianliang Zhang</dc:creator>
    <dc:creator>kexin Jiao</dc:creator>
    <dc:creator>Rong Ma</dc:creator>
    <dc:creator>Rui Ding</dc:creator>
    <dc:creator>Peiyuan Lu</dc:creator>
    <dc:subject>blast furnace</dc:subject>
    <dc:subject>pellet proportion</dc:subject>
    <dc:subject>DEM</dc:subject>
    <dc:subject>porosity</dc:subject>
    <dc:subject>burden distribution</dc:subject>
    <dc:date>2026-03-27</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2025115</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-03-27</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>324</prism:startingPage>
    <prism:volume>123</prism:volume>
  </rss:item>
  <rss:item rdf:about="https://www.metallurgical-research.org/10.1051/metal/2026037">
    <rss:title>Corrigendum to: mathematical modeling on the fluid flow during RH degassing process</rss:title>
    <rss:link>https://www.metallurgical-research.org/10.1051/metal/2026037</rss:link>
    <rss:description>Authors: Haitao Ling, Lifeng Zhang and Chang Liu.&lt;br /&gt;Metallurgical Research &amp; Technology Vol. 123 , page 328&lt;br /&gt;Published online: 17/04/2026</rss:description>
    <dc:title>Corrigendum to: mathematical modeling on the fluid flow during RH degassing process</dc:title>
    <dc:creator>Haitao Ling</dc:creator>
    <dc:creator>Lifeng Zhang</dc:creator>
    <dc:creator>Chang Liu</dc:creator>
    <dc:date>2026-04-17</dc:date>
    <dc:format>text/html</dc:format>
    <dc:identifier>10.1051/metal/2026037</dc:identifier>
    <dc:source>Metallurgical Research &amp; Technology  Vol. 123(3)</dc:source>
    <prism:category>abstract</prism:category>
    <prism:issueIdentifier>metal/2026/03</prism:issueIdentifier>
    <prism:publicationDate>2026-04-17</prism:publicationDate>
    <prism:publicationName>Metallurgical Research &amp; Technology</prism:publicationName>
    <prism:startingPage>328</prism:startingPage>
    <prism:volume>123</prism:volume>
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