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首页> 外文期刊>Journal of Materials Science >Damage resistance in gum metal through cold work-induced microstructural heterogeneity
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Damage resistance in gum metal through cold work-induced microstructural heterogeneity

机译:通过冷加工引起的微观结构异质性对口香糖金属的抗破坏性

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Cold-worked alloys exhibit high strength, but suffer from limited ductility. In contrast, Ti-based gum metal was reported to exhibit high strength combined with good ductility upon severe pre-straining. Motivated by this anomaly, we systematically studied the evolution of gum metal microstructure during severe cold working (swaging and rolling) and the resulting deformation and damage micro-mechanical mechanisms during follow-up tensile deformation. To this end, various experimental in situ and post-mortem methodologies are employed, including scanning electron microscopy imaging, high-resolution electron backscatter diffraction mapping and transmission electron microscopy. These observations reveal that intense grain refinement takes place through dislocation plasticity-dominated deformation banding upon cold working. The observed enhancement in crack blunting and failure resistance which prolongs the post-necking ductility of gum metal during follow-up tensile straining can be attributed to the deformation-induced development of local heterogeneities in texture and grain size.
机译:冷加工合金具有高强度,但延展性有限。相反,据报道,钛基胶基金属在严重的预应变后表现出高强度和良好的延展性。受此异常现象的影响,我们系统地研究了严重冷加工(模锻和轧制)过程中口香糖金属微观结构的演变以及后续拉伸变形过程中产生的变形和破坏微机械机制。为此,采用了各种实验性原位和验尸方法,包括扫描电子显微镜成像,高分辨率电子背散射衍射图和透射电子显微镜。这些观察结果表明,在冷加工时,通过位错可塑性主导的变形带进行了强烈的晶粒细化。观察到的裂纹钝化和抗破坏性的增强(其在后续拉伸应变期间延长了口香糖金属的颈缩后延展性)可以归因于变形引起的结构和晶粒局部异质性的发展。

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