Insight - Intermetallic Materials
https://insight.piscomed.com/index.php/I-IM
<table><tbody><tr><td style="vertical-align: top;" align="justify"><em>Insight - Intermetallic Materials</em> is an international journal which aims to share research, experience, knowledge and ideas among those with a professional interest in the area. The journal welcomes all original researches and review articles covering all aspects of intermetallic materials, short communications and commentaries on the current development of intermetallic materials.</td><td width="150px"><img style="margin-left: 25px; clear: both;" src="/public/journals/102/journalThumbnail_en_US.jpg" alt="" width="150" align="right" /></td></tr></tbody></table>PiscoMed Publishing Pte Ltden-USInsight - Intermetallic Materials<p>Authors contributing to the journal agree to publish their articles under the <a href="http://creativecommons.org/licenses/by-nc/4.0">Creative Commons Attribution-Noncommercial 4.0 International License</a>, allowing third parties to share their work (copy, distribute, transmit) and to adapt it, under the condition that the authors are given credit, that the work is not used for commercial purposes, and that in the event of reuse or distribution, the terms of this license are made clear.</p><p><img src="/public/site/by-nc.png" alt="" height="30px" /></p>SOSOSOSOSO
https://insight.piscomed.com/index.php/I-IM/article/view/251
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2012-02-022012-02-0211My articles is shown third
https://insight.piscomed.com/index.php/I-IM/article/view/239
<p class="BodyText1">The paper deals with the effect of microstructure on the hydrogen diffusion in traditional ferritic-pearlitic HSLA steels and new high strength steels, with tempered martensite microstructures or banded ferritic-bainitic-martensitic microstructures. Diffusivity was correlated to the hydrogen embrittlement resistance of steels, evaluated by means of slow strain rate tests. </p>xie weijie
Copyright (c) 2019 xie weijie
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2019-09-172019-09-171110.18282/ims.v2i1.182articlesssss
https://insight.piscomed.com/index.php/I-IM/article/view/238
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2019-09-172019-09-1711My articles is shown four
https://insight.piscomed.com/index.php/I-IM/article/view/244
<p class="BodyText1">The paper deals with the effect of microstructure on the hydrogen diffusion in traditional ferritic-pearlitic HSLA steels and new high strength steels, with tempered martensite microstructures or banded ferritic-bainitic-martensitic microstructures. Diffusivity was correlated to the hydrogen embrittlement resistance of steels, evaluated by means of slow strain rate tests. </p>xie weijie
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2019-09-182019-09-1811My articles is shown five
https://insight.piscomed.com/index.php/I-IM/article/view/246
<p class="BodyText1">The paper deals with the effect of microstructure on the hydrogen diffusion in traditional ferritic-pearlitic HSLA steels and new high strength steels, with tempered martensite microstructures or banded ferritic-bainitic-martensitic microstructures. Diffusivity was correlated to the hydrogen embrittlement resistance of steels, evaluated by means of slow strain rate tests. </p>xie weijie
Copyright (c) 2019 xie weijie
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2019-09-182019-09-181110.18282/ims.v2i1.182My articles is shown seven
https://insight.piscomed.com/index.php/I-IM/article/view/248
<p class="BodyText1">The paper deals with the effect of microstructure on the hydrogen diffusion in traditional ferritic-pearlitic HSLA steels and new high strength steels, with tempered martensite microstructures or banded ferritic-bainitic-martensitic microstructures. Diffusivity was correlated to the hydrogen embrittlement resistance of steels, evaluated by means of slow strain rate tests. </p>xie weijie
Copyright (c) 07-11-05 xie weijie
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2019-09-182019-09-181110.25236/icmcs.2019.001123
https://insight.piscomed.com/index.php/I-IM/article/view/249
123123123xie wei jie
Copyright (c) 2019 xie wei jie
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https://insight.piscomed.com/index.php/I-IM/article/view/250
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2010-02-022010-02-0211