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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Analysis of load-penetration depth data using Oliver-Pharr and Cheng-Cheng methods of SiAlON-ZrO2 ceramics
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Analysis of load-penetration depth data using Oliver-Pharr and Cheng-Cheng methods of SiAlON-ZrO2 ceramics

机译:使用SiAlON-ZrO2陶瓷的Oliver-Pharr和Cheng-Cheng方法分析载荷穿透深度数据

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摘要

Depth sensing indentation tests were carried out to obtain load-penetration depth curves of SiAlON-ZrO2 ceramics under different peak loads ranging from 200 to 1800 mN. The values of indentation hardness (H-OP, H-CC) and reduced elastic modulus (E-OP, E-CC) were calculated by using Oliver-Pharr (OP) and Cheng-Cheng (CC) methods. The experimental results revealed that the indentation hardness and reduced elastic modulus exhibit peak-load dependence, i.e. indentation size effect. Both indentation hardness and reduced elastic modulus values were obtained by considering indenter tip roundness and machine compliance. These values obtained from the OP method are higher than from the CC method. On the other hand, h(f)/h(m) ratios were used to clarify the indentation deformation behaviour of the SiAlON-ZrO2 ceramic. The experimental h(f)/h(m) values were lower than the reported critical value (0.7) for all applied test loads, which is attributed to work-hardening behaviour of SiAlON-ZrO2 composites.
机译:进行了深度感应压痕测试,以获得在200至1800 mN范围内的不同峰值载荷下SiAlON-ZrO2陶瓷的载荷穿透深度曲线。使用Oliver-Pharr(OP)和Cheng-Cheng(CC)方法计算压痕硬度(H-OP,H-CC)和降低的弹性模量(E-OP,E-CC)的值。实验结果表明,压痕硬度和降低的弹性模量表现出峰负荷依赖性,即压痕尺寸效应。压痕硬度和降低的弹性模量值均通过考虑压头尖端的圆度和机器柔韧性获得。从OP方法获得的这些值高于从CC方法获得的这些值。另一方面,使用h(f)/ h(m)之比来阐明SiAlON-ZrO2陶瓷的压痕变形行为。对于所有施加的测试载荷,实验h(f)/ h(m)值均低于报告的临界值(0.7),这归因于SiAlON-ZrO2复合材料的加工硬化行为。

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