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Crack behavior of Ti-6A1-4V alloy combined conformal contact fretting, non-conformal contact fretting and simple fatigue

机译:Ti-6a1-4V合金组合的裂缝行为组合保形触点配子,非共形状接触点心和简单的疲劳

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摘要

This paper presents the results of fatigue tests combined with conformal contact, non-conformal contact and simple fatigue carried out on Ti-6A1-4V sheet specimens under externally remote bending load. A special fretting fatigue test rig was proposed to focus on two different fretting modes fatigue test simultaneously between non-conformal contact and conformal contact. The test results showed that all the specimens failed at the conformal contact area under external bending load, although the contact stress was lower, residual stress was higher than that with non-conformal contact area. The reason for failure was radial fretting induced fatigue depending upon the nature of conformal geometry. The conformal geometric nature reversed the contact shear stress, accelerated the debris accumulation, redistributed the contact loading and exacerbated the crack nucleation conditions. The mechanisms of fretting fatigue crack formation, including crack nucleation and the three stages of crack propagation were discussed. Furthermore, among the four regions (fretting region, protrusion region, dark inner friction region and fracture region) on fractography, the protrusion region and dark inner friction region were special, rarely reported before. To explain the formation of the protrusion region, dark inner friction region, internal crack and stripped material on the fractography, a friction-based press-push-separate procedure interpretation was proposed. In addition, crack arresting effect exists in the propagation of fretting fatigue cracks due to compression loading on the contact surface with non-conformal contact.
机译:本文介绍了在外部远程弯曲载荷下的Ti-6A1-4V片样品上进行的疲劳试验的结果,结合了在外部远程弯曲载荷下的Ti-6A1-4V片样品中进行的疲劳接触,非共形接触和简单疲劳。提出了一种特殊的微动疲劳试验台,以在非共形接触和共形触点之间同时聚焦两种不同的微动模式疲劳试验。测试结果表明,在外部弯曲载荷下,所有试样在外部弯曲载荷下失效,尽管接触应力较低,残余应力高于非共形接触面积。根据保形几何形状的性质,失效的原因是径向微动诱导疲劳。保形几何性质逆转接触剪切应力,加速碎片积聚,重新分布接触载荷并加剧了裂纹成核条件。讨论了疲劳裂缝形成的机制,包括裂纹成核和三个裂纹繁殖阶段。此外,在Fractography上的四个区域(凹陷区域,突出区域,暗摩擦区和裂缝区域)中,突出区域和暗内部摩擦区是特殊的,以前很少报道。为了解释突出区域的形成,暗内摩擦区,内部裂缝和剥离材料在断裂上,提出了一种基于摩擦的压力推分单个程序解释。另外,由于具有非共形触点的接触表面上的压缩负载,存在裂纹抑制效果的传播。

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  • 来源
    《International Journal of Fatigue》 |2020年第10期|105741.1-105741.19|共19页
  • 作者单位

    School of Mechanical Engineering Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 100081 PR China;

    Key Laboratory of Fundamental Science for Advanced Machining Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 100081 PR China;

    Key Laboratory of Fundamental Science for Advanced Machining Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 100081 PR China;

    School of Mechanical Engineering Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 100081 PR China;

    School of Mechanical Engineering Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 100081 PR China;

    School of Mechanical Engineering Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 100081 PR China;

    Key Laboratory of Fundamental Science for Advanced Machining Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 100081 PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fretting fatigue; Radial fretting; Conformal contact; Crack propagation;

    机译:烦躁疲劳;径向微动;保形接触;裂缝繁殖;

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