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首页> 外文期刊>Optics & Laser Technology >Comparisons on microstructure, mechanical and corrosion resistant property of S136 mold steel processed by selective laser melting from two pre-alloy powders with trace element differences
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Comparisons on microstructure, mechanical and corrosion resistant property of S136 mold steel processed by selective laser melting from two pre-alloy powders with trace element differences

机译:两种痕量粉末加工S136模具钢的微观结构,机械和耐腐蚀性能的比较

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摘要

Selective laser melting (SLM) method has a great potential for fabricating injection mold with complex structure. In this study, two S136 mold steel pre-alloy powders with trace element difference were fabricated by SLM, and then comparison of samples on microstructure, mechanical and corrosion resistant property was investigated. Results showed that the sample fabricated with a higher Si+Mn content exhibited the lower mechanical properties, such as micro-hardness of 48.73 HRC, ultimate tensile strength of 1186.7?MPa and elongation of 10.6% due to a few of pores observed on the cross surface. For the SLM sample produced by another powder with a lower Si+Mn content, it showed equiaxed grains and cellular dendrite grains coexisted and exhibited the superior mechanical properties (50.31 HRC, 1467.9?MPa and 11.1%) combined with well corrosion resistance. Then the injection mold insert with conformal cooling channel was successfully processed by this powder. The cooling time was reduced by 30% during the injection cycle. Therefore, it can be seen that trace element differences have an important effect on the SLM S136 mold steel. The results suggest that it is essential for successful fabricating components with a suitable composition of alloy during SLM process.
机译:选择性激光熔化(SLM)方法具有络合结构的注塑模具具有很大的潜力。在本研究中,通过SLM制造两个S136模钢预合金粉末,然后通过SLM制造具有痕量元素差异的,然后对微观结构进行比较,研究了机械和耐腐蚀性。结果表明,用更高的Si + Mn含量制造的样品表现出较低的机械性能,例如48.73Hrc的微硬度,最终拉伸强度为1186.7Ω·7μl≤10.6%,由于在十字架上观察到的孔口,伸长率为10.6%表面。对于具有较低Si + Mn含量的另一种粉末产生的SLM样品,它显示出等轴和细胞树突颗粒共存,并表现出优异的机械性能(50.31HRC,1467.9→MPa和11.1%),与良好的腐蚀性相结合。然后通过该粉末成功加工具有保形冷却通道的注射模具插入件。注射循环期间冷却时间减少了30%。因此,可以看出,痕量元素差异对SLM S136模钢具有重要作用。结果表明,在SLM工艺期间,在SLM过程中成功制造具有合适的合金组合物的组分。

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  • 来源
    《Optics & Laser Technology》 |2018年第2018期|共9页
  • 作者单位

    Faculty of Engineering China University of Geosciences;

    Faculty of Engineering China University of Geosciences;

    State Key Laboratory of Material Processing and Die &

    Mold Technology School of Materials Science and Engineering Huazhong University of Science and Technology;

    State Key Laboratory of Material Processing and Die &

    Mold Technology School of Materials Science and Engineering Huazhong University of Science and Technology;

    State Key Laboratory of Material Processing and Die &

    Mold Technology School of Materials Science and Engineering Huazhong University of Science and Technology;

    Guangdong Kelon Mould Co. Ltd;

    State Key Laboratory of Material Processing and Die &

    Mold Technology School of Materials Science and Engineering Huazhong University of Science and Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

    Selective Laser Melting (SLM); S136 mold steel; Microstructure; Rockwell hardness; Corrosion resistant property;

    机译:选择性激光熔化(SLM);S136模钢;微观结构;罗克韦尔硬度;腐蚀性;

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