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首页> 外文期刊>International Journal of Solids and Structures >Plastic deformation of polycrystalline molybdenum: Experimental data and macroscopic model accounting for its anisotropy and tension-compression asymmetry
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Plastic deformation of polycrystalline molybdenum: Experimental data and macroscopic model accounting for its anisotropy and tension-compression asymmetry

机译:多晶钼的塑性变形:考虑其各向异性和拉伸压缩不对称性的实验数据和宏观模型

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In this paper a systematic experimental investigation of the room-temperature mechanical response of polycrystalline commercially pure molybdenum (Mo) is presented. It was established that the material has ductility in tension at 10(-5)/s and that the failure strain is strongly dependent on the orientation. A specimen taken along the rolling direction sustains large axial strains (20%), while a specimen taken at an angle of 45 degrees to the rolling direction could only sustain 5% strain. It was observed that irrespective of the loading orientation the yield stress in uniaxial compression is larger than in uniaxial tension. While in tension the material has a strong anisotropy in Lankford coefficients, in uniaxial compression it displays weak strain-anisotropy. An elastic-plastic orthotropic model that accounts for all the specificities of the plastic deformation of the material was developed. Validation of the model was done through comparison with data on notched specimens. Quantitative agreement with both global and local strain fields was obtained. In particular, the effect of loading orientation on the response was very well described. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了对多晶商业纯钼(Mo)室温机械响应的系统实验研究。可以确定该材料在10(-5)/ s的张力下具有延展性,并且破坏应变在很大程度上取决于方向。沿轧制方向获取的试样承受较大的轴向应变(20%),而与轧制方向成45度角的试样仅承受5%的应变。观察到,与载荷取向无关,单轴压缩中的屈服应力大于单轴拉伸中的屈服应力。在拉伸状态下,材料的Lankford系数具有很强的各向异性,而在单轴压缩状态下,材料的应变各向异性却很弱。建立了一种考虑了材料塑性变形所有特殊性的弹塑性正交异性模型。通过与缺口样品上的数据进行比较来验证模型。获得了与全局和局部应变场的定量一致性。特别是,很好地描述了加载方向对响应的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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