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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Microstructure Refinement on Hardness Homogeneity of Aluminum Alloy 1100 Processed by Accumulative Roll Bonding
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Effect of Microstructure Refinement on Hardness Homogeneity of Aluminum Alloy 1100 Processed by Accumulative Roll Bonding

机译:微观结构改进对蓄能辊粘合处理铝合金1100硬度均匀性的影响

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This work examines the effect of grain refinement via accumulative roll bonding (ARB) on the homogeneity of microstructure and hardness through the thickness of commercially pure aluminum AA1100 sheets. The use of 7 cycles of ARB was shown to produce homogeneous ultrafine-grained microstructure, reducing the grain size to 0.46 and 1.03 mu m in normal direction and rolling direction, respectively. Examination by electron backscattered diffraction indicates that continuous dynamic recrystallization was the main mechanism for the formation of submicron equiaxed grains bounded with high-angle grain boundaries (HAGBs). The fraction of HAGBs increased gradually reaching a maximum of 71.6% after 7 cycles. Through-thickness hardness measurements using Vickers and nanoindentation tests show an increase from 43.5 Hv (0.85 GPa) for as-received sample to 63 Hv (1.1 GPa) after 7 cycles. The heterogeneity in hardness through the thickness of the as-received material was shown to restrain the evolution of uniform hardness across the sheet thickness with increasing ARB cycles. Tensile tests showed that the tensile strength is increased to 250 MPa, which is about 2 times its initial value. Owing to the high stacking fault energy of AA1100, strong dynamic recovery occurred with increasing ARB strain which was balanced with the strain hardening property of the material. This resulted in plastic instability at small strains and thus early necking during the tensile test.
机译:本作品通过蓄积辊粘合(ARB)通过商业纯铝AA1100板厚度的微观结构和硬度的均匀性来检查晶粒细化的效果。显示使用7个循环的arb,分别在正常方向和轧制方向上将晶粒尺寸降低至0.46和1.03μm的均匀超细粒度。电子背散射衍射检查表明,连续的动态重结晶是形成亚微米等曲程谷物(HAGBS)的亚微米等轴晶粒的主要机制。 7个循环后,HAGBS的一部分逐渐增加71.6%。使用维氏和纳米狭窄试验的贯穿厚度硬度测量显示在7个循环后,从43.5HV(0.85GPa)增加到63HV(1.1GPa)的增加。通过增加的含量抑制了通过增加的含量均匀硬度的厚度的硬度通过均匀性。拉伸试验表明,拉伸强度增加到250MPa,其初始值约为2倍。由于AA1100的高堆叠故障能量,随着材料的应变硬化性能平衡,具有较高的动态恢复。这导致小菌株处的塑料不稳定,因此在拉伸试验期间早期缩颈。

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