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Improved Tensile Ductility by Severe Plastic Deformation for Nano-Structured Metallic Glass

机译:通过严重塑性变形改善纳米结构金属玻璃的拉伸延展性

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摘要

The effect of severe plastic deformation by high-pressure torsion (HPT) on the structure and plastic tensile properties of two Zr-based bulk metallic glasses, Zr55.7Ni10Al7Cu19Co8.3 and Zr64Ni10Al7Cu19, was investigated. The compositions were chosen because, in TEM investigation, Zr55.7Ni10Al7Cu19Co8.3 exhibited nanoscale inhomogeneity, while Zr64Ni10Al7Cu19 appeared homogeneous on that length scale. The nanoscale inhomogeneity was expected to result in an increased plastic strain limit, as compared to the homogeneous material, which may be further increased by severe mechanical work. The as-cast materials exhibited 0.1% tensile plasticity for Zr64Ni10Al7Cu19 and Zr55.7Ni10Al7Cu19Co8.3. Following two rotations of HPT treatment, the tensile plastic strain was increased to 0.5% and 0.9%, respectively. Further testing was performed by X-ray diffraction and by differential scanning calorimetry. Following two rotations of HPT treatment, the initially fully amorphous Zr55.7Ni10Al7Cu19Co8.3 exhibited significantly increased free volume and a small volume fraction of nanocrystallites. A further increase in HPT rotation number did not result in an increase in plastic ductility of both alloys. Possible reasons for the different mechanical behavior of nanoscale heterogeneous Zr55.7Ni10Al7Cu19Co8.3 and homogeneous Zr64Ni10Al7Cu19 are presented.
机译:研究了高压扭转(HPT)引起的严重塑性变形对两种Zr基大块金属玻璃Zr55.7Ni10Al7Cu19Co8.3和Zr64Ni10Al7Cu19的结构和塑性拉伸性能的影响。选择组成是因为在TEM研究中,Zr55.7Ni10Al7Cu19Co8.3表现出纳米级不均匀性,而Zr64Ni10Al 7 Cu 19 在该长度尺度上表现出均质性。与均质材料相比,预计纳米级的不均匀性会导致塑性应变极限的增加,而这种强度可能会通过严格的机械加工而进一步提高。铸态材料对Zr 64 Ni 10 Al 7 Cu 19 和Zr <0.1的拉伸塑性为0.1% sub> 55.7 Ni 10 Al 7 Cu 19 Co 8.3 。在旋转HPT处理两次之后,拉伸塑性应变分别增加到0.5%和0.9%。通过X射线衍射和差示扫描量热法进行进一步测试。经过两次HPT处理后,最初完全无定形的Zr 55.7 Ni 10 Al 7 Cu 19 Co 8.3 的自由体积显着增加,纳米晶体的体积分数小。 HPT转数的进一步增加并未导致两种合金的塑性延展性增加。纳米Zr 55.7 Ni 10 Al 7 Cu 19 Co 纳米异质力学行为不同的可能原因给出了8.3 和均质的Zr 64 Ni 10 Al 7 Cu 19

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