• 结果表明显著影响碳高合金钢组织性能碳高合金钢可以获得预期组织性能。

    The results indicate that carbon influences structure and properties of LCHA significantly, and substitution for nickel with manganese may result in expected structure and properties.

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  • 文章最后碳高合金钢冲击腐蚀磨损机制进行了探讨

    At last, this article also discussed the mechanisms of corrosive impact abrasion for these LCHA after substitution for nickel with manganese.

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  • 结果表明碳高合金钢可以获得预期组织性能

    The results indicate that LCHA with Mn in place of Ni could gain the anticipated structure and performance.

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  • 本文制取成本碳高合金钢以及元素其组织性能影响一些探讨。

    This article use Mn to replace Ni to make low-cost LCHA, and the effect of Mn on structure and properties of LCHA was discussed following.

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  • 改进MLD - 10冲击腐蚀磨损试验机上,选择三种不同冲击,对以碳高合金钢的冲击腐蚀磨损性能进行了测试。

    Under three different impact energy, LCHA with Mn in place of Ni were tested with a modified MLD-10 wear tester to investigate their behavior of corrosive impact abrasion.

    youdao

  • 改进MLD - 10冲击腐蚀磨损试验机上,选择三种不同冲击,对以碳高合金钢的冲击腐蚀磨损性能进行了测试。

    Under three different impact energy, LCHA with Mn in place of Ni were tested with a modified MLD-10 wear tester to investigate their behavior of corrosive impact abrasion.

    youdao

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