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Experimental study on the fatigue failure mechanism of QP-16 type ball-eye under asymmetric load

机译:QP-16型球眼不对称载荷下疲劳破坏机理的实验研究

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摘要

The ball eye (BE) is a key connecting component between the insulator and transmission tower, whose fatigue characteristics concern the safety of transmission lines. To understand the fatigue mechanism and characteristics of it, the fatigue test was conducted based on the following data: r = 0.25, S = 500 MPa, then plotting of S-N and Delta epsilon(axis)-N, to analyze the fatigue failure of the test specimen from the macro and micro point of views. The research results show that: the life of BE significantly reduces with the increase of the stress amplitude, but the relative reduction in life is not the same; softening and strain amplitude of the specimen change differently before and after the stress amplitude of 300 MPa; when S <= 300 MPa, the fracture is more smooth, the fatigue crack propagation is slow; when S > 300 MPa, the rate of fatigue crack growth is faster, and the fatigue crack growth zones are not obvious. The cracks are easily detectable appear at the joint of the BE and insulator cap, and the cracks along the fracture cross section are constantly expanding, showing multiple fatigue sources and fatigue steps. The number of fatigue steps increases as the magnitude of the tensile stress increases. When S = 500 MPa, the yield strength decreases during the lifetime, the decrease rate of the tensile strength and microstructure strength in each stage are different. Axial lengthening and section shrinkage ratio decrease with the development of fatigue, fatigue evolution process is accompanied by phenomenon of crystalline slip, deformation, dislocation, at the same time, dissipation and decomposition of pearlite occur, and carbide precipitates from the matrix, growing and moving to the grain boundaries, the specific phenomenon of grain growth appears. (C) 2016 Elsevier Ltd. All rights reserved.
机译:球眼(BE)是绝缘子和输电塔之间的关键连接部件,其疲劳特性关系到输电线路的安全性。为了了解其疲劳机理及其特性,根据以下数据进行了疲劳试验:r = 0.25,S = 500 MPa,然后绘制SN和Δε(N)-N,以分析其疲劳破坏。从宏观和微观的角度来看试样。研究结果表明:BE的寿命随着应力幅值的增加而显着降低,但寿命的相对降低却不一样;在300 MPa的应力振幅前后,试样的软化和应变振幅发生不同的变化。当S <= 300 MPa时,断口更平整,疲劳裂纹扩展较慢。当S> 300 MPa时,疲劳裂纹扩展的速度较快,疲劳裂纹扩展区不明显。裂纹很容易检测到,出现在BE和绝缘子盖的连接处,并且沿断面的裂纹不断扩展,显示出多个疲劳源和疲劳步骤。疲劳步骤的数量随着拉伸应力的大小增加而增加。当S = 500MPa时,在整个寿命中屈服强度降低,每个阶段的抗拉强度和微结构强度的降低率不同。轴向伸长和断面收缩率随着疲劳的发展而减小,疲劳发展过程伴随着结晶滑移,变形,位错的现象,同时珠光体发生散逸和分解,碳化物从基体中析出,生长和移动。到晶界,出现了晶粒长大的特殊现象。 (C)2016 Elsevier Ltd.保留所有权利。

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