首页> 外文会议>International Symposium on Multifunctional and Functionally Graded Materials(FGM2004) >The Effect of Grinding Residual Stresses on Contact Loading Strength Degradation in Y-TZP with Different Microstructures
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The Effect of Grinding Residual Stresses on Contact Loading Strength Degradation in Y-TZP with Different Microstructures

机译:磨削残余应力对不同微结构的Y-TZP接触加长强度降解的影响

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摘要

The influence of grinding surface stresses in Y-TZP doped with 2.5% molar yttria on the contact loading response has been studied. It is shown that by grinding with different pressures compression residual stresses are induced in a surface layer of about 10 μm in depth. Their effect is manifested by shorter indentation cracks in ground specimens, but they recover the original lengths of annealed specimens after a surface thin layer is removed by polishing. The response to cyclic contact loading with a ball of 1.96 mm in diameter has been studied by looking to the damage that takes place below the indenter, as well as by measuring the flexure biaxial strength after 1, 10~3 and 10~5 cycles and for different load amplitudes. It is found that there is a threshold load, that is, a maximum contact load below which there is no degradation in the strength. This threshold is lower when transformability is higher and it depends on the number of contact cycles. But after a given large number of cycles, no further important additional degradation takes place. Under repeated contact loading in annealed specimens at loads for which a marked degradation in strength is detected, nucleation and growth of like-radial cracks is the main cause for the loss of strength, while for of ground specimens the extension of these defects is impeded by the compression surface residual stresses.
机译:研究了在Y-TZP中掺杂的磨削表面应力的影响掺杂在接触载荷响应上的2.5%摩尔炔烃上。结果表明,通过用不同的压力研磨,压缩残余应力在约10μm的表面层中诱导。它们的效果表现为地面标本中的缩小压痕裂缝,但在通过抛光后除去表面薄层后,它们会恢复退火标本的原始长度。通过探讨在压头下方发生的损伤,并通过测量1,10〜3和10〜5循环后的弯曲双轴强度来研究直径为1.96mm的循环接触载荷的响应。用于不同的负载幅度。发现存在阈值载荷,即下降的最大接触载荷,强度没有降低。当变形性较高时,此阈值较低,这取决于接触循环的数量。但是在给定的大量循环之后,不会发生进一步的重要额外劣化。在重复接触载荷中在退火标本中检测到强度明显降解的载荷,类似径向裂缝的成核和生长是损失强度的主要原因,而对于地面标本的延伸,这些缺陷的延伸会受到阻碍压缩表面残余应力。

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