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首页> 外文期刊>Journal of Materials Science >Effect of grain size on strain rate sensitivity of cryomilled Al–Mg alloy
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Effect of grain size on strain rate sensitivity of cryomilled Al–Mg alloy

机译:晶粒尺寸对AlMg合金冷加工应变速率敏感性的影响

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摘要

Al–Mg alloy powder was cryomilled to achieve a nanocrystalline (NC) structure having an average grain size of 50 nm with high thermal stability, and then consolidated by quasi-isostatic forging. The consolidation resulted in a bulk material with ultrafine grains of about 250 nm, and the material exhibited enhanced strength compared to conventionally processed Al–Mg alloy. The hardness of as-cryomilled powder, the forged ultrafine-grained (UFG) material, and the conventional coarse-grained (CG) alloy were measured by nanoindentation using various loading rates, and the results were compared with strain rate sensitivity (SRS) from uniaxial compression tests. Negative SRS was observed in the cryomilled NC powder and the forged UFG material, while the conventional alloy was relatively insensitive to strain rate. The dependence on loading rate was stronger in the NC powders than in the UFG material.
机译:将Al-Mg合金粉末进行冷冻研磨,以实现具有50纳米平均晶粒度和高热稳定性的纳米晶体(NC)结构,然后通过准等静压锻造进行固结。固结产生的散装材料具有约250 nm的超细晶粒,与常规加工的Al-Mg合金相比,该材料显示出更高的强度。通过纳米压痕,使用不同的加载速率,测量了冷轧粉末,锻造超细晶粒(UFG)材料和常规粗晶粒(CG)合金的硬度,并将其与应变速率敏感性(SRS)进行了比较。单轴压缩测试。在冷磨NC粉末和锻造UFG材料中观察到负SRS,而常规合金对应变速率相对不敏感。 NC粉末比UFG材料对加载速率的依赖性更强。

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