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Effects of residual stress on elastic plastic behavior of metallic glass bolts formed by cold thread rolling

机译:残余应力对冷螺纹轧制金属玻璃螺栓弹性塑性行为的影响

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摘要

Metallic glass (MG) has unique mechanical properties, combining high strength and low Young's modulus. By using MG to fabricate fasteningbolts, high resistance against bolt loosening is expected. However, MG components are considered brittle because MG exhibits poor ductility when subjected to uniaxial loading at room temperature. We have developed hexagonal cap bolts made of zirconium-based MG by cold thread rolling. The MG bolts showed a 1.6% plastic strain with a tensile strength of more than 1550 MPa. In addition, the load-strain curve was similar to that of a strain hardening material, although MG itself is free of strain hardening. In this study, we attempted to clarify the reasons for these characteristics, which are advantageous for bolts in terms of toughness and reliability. Various experiments and numerical analysis indicated that residual stress plays an important role in the behavior.
机译:金属玻璃(MG)具有独特的机械性能,兼具高强度和低杨氏模量。通过使用MG来制造紧固螺栓,可以预期能够抵抗螺栓松动。但是,由于MG在室温下承受单轴载荷时,延展性很差,因此被认为是易碎的。我们已经开发了通过冷螺纹轧制由锆基MG制成的六角螺栓。 MG螺栓表现出1.6%的塑性应变,抗拉强度超过1550 MPa。另外,尽管MG本身没有应变硬化,但是负荷-应变曲线与应变硬化材料的相似。在这项研究中,我们试图弄清这些特性的原因,这些特性对于螺栓的韧性和可靠性均有利。各种实验和数值分析表明,残余应力在该行为中起重要作用。

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