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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >A synthesis of cracking directions in tension-torsion multiaxial low cycle fatigue at high and room temperatures
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A synthesis of cracking directions in tension-torsion multiaxial low cycle fatigue at high and room temperatures

机译:高清室温张力扭转多轴低循环疲劳的裂化方向的合成

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摘要

Cracking direction in multiaxial low cycle fatigue is an important research subject because cracking direction is a physical basis for developing an appropriate multiaxial low cycle fatigue damage model. However, there are still many open questions about cracking direction in multiaxial low cycle fatigue. Maximum shear and maximum principal cracks are reported in tension-torsion low cycle fatigue, depending on stress/strain multiaxiality, stress/strain range, notch, and type of materials. The reason for two crack directions has not been well investigated. This paper overviews and discusses a couple of factors that influence the cracking direction, including strain multiaxiality, notch/precrack and strain range for low alloy steels and nickel base superalloys.
机译:多轴低循环疲劳中的开裂方向是一个重要的研究受试者,因为开裂方向是开发适当的多轴低循环疲劳损伤模型的物理基础。 然而,仍然有许多关于多轴低循环疲劳方向的开放性问题。 在张力/应变多轴,应力/应变范围,凹口和材料类型的情况下,报告了最大剪切和最大主裂缝。 两个裂缝方向的原因并未得到很好的调查。 本文概述并讨论了一些影响裂化方向的因素,包括低合金钢和镍基超合金的应变多轴性,凹口/预碎片和应变范围。

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