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首页> 外文期刊>Journal of Tribology >Elastic-plastic analysis of stresses and initiation of cracks in a ceramic coating under indentation by an elastic sphere
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Elastic-plastic analysis of stresses and initiation of cracks in a ceramic coating under indentation by an elastic sphere

机译:弹性球压痕作用下陶瓷涂层应力和裂纹萌生的弹塑性分析

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摘要

The elastic-plastic contact problem of a ceramic coating on a half-space indented by an elastic sphere is solved by the use of the finite element method under a variety of conditions. An elastic-plastic material behavior with isotropic strainhardening was employed. Results for stresses, during loading and after unloading, on the surface and along the axis of symmetry are presented and formation of cracks is discussed in detail, emphasizing the influence of the thickness of coating. It isshown that the circumferential stress on the surface of the coating is highly tensile so that radial cracks are induced for a sharp indenter. But, for a blunt indenter, the radial stress is tensile and is always larger than the circumferential stress,leading to the formation of circumferential cracks. It is also shown that, in the case of a sharp indenter, radial cracks can be induced during unloading.
机译:通过在各种条件下使用有限元方法,可以解决陶瓷涂层在由弹性球体压痕的半空间上的弹塑性接触问题。采用具有各向同性应变硬化的弹塑性材料特性。给出了在加载过程中和卸载后在表面上和沿对称轴的应力结果,并详细讨论了裂纹的形成,强调了涂层厚度的影响。结果表明,在涂层表面上的圆周应力是高度拉伸的,因此会产生径向裂纹,从而产生尖锐的压头。但是,对于钝的压头,径向应力是拉伸应力,并且始终大于周向应力,从而导致周向裂纹的形成。还显示出,在尖锐的压头的情况下,在卸载期间会引起径向裂纹。

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