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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Strength degradations from Hertzian contact damages in nitrided pressureless sintered silicon nitride ceramics
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Strength degradations from Hertzian contact damages in nitrided pressureless sintered silicon nitride ceramics

机译:氮化无压烧结氮化硅陶瓷中因赫兹接触破坏引起的强度降低

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摘要

Strength degradations in silicon nitride ceramics subject to damage from contact with hard spheres are investigated. Strengths against indentation load, number of cycles in contact, or stress-rate parameter are reported and compared with theoretical models. Silicon nitride ceramics are prepared by nitride pressureless sintering (NPS) process, which process is the continuous process of nitridation reaction of Si metal combined with subsequent pressureless sintering. Microstructure characterizations reveal silicon nitride fabricated by NPS process exhibits a quasi-plastic mode, with continuous strength loss beyond a load above the onset of yield, and falloff at high number of cycles, > 10(5) at contact load, P = 950 N, using WC sphere r = 1.98mm. The strength degradation is substantially faster by dynamic fatigue. Failures originated from contact damages, quasi-plastic microcrack zones, with developing radial cracks during strength test. The implication is that quasi-plastic damage of NPS silicon nitride itself can preserve benefits from the inherent higher damage tolerance at lower number of cycles of contacts, but fatigue susceptibility at multicycle contacts and lower stressing rate.
机译:研究了氮化硅陶瓷中由于与硬球接触而造成的强度退化。报告了压痕强度,接触循环次数或应力率参数的强度,并与理论模型进行了比较。氮化硅陶瓷是通过氮化物无压烧结(NPS)工艺制备的,该工艺是硅金属氮化反应与随后的无压烧结相结合的连续过程。微观结构表征表明,通过NPS工艺制造的氮化硅表现出准塑性模式,在超过屈服点以上的载荷下具有连续的强度损失,并且在高循环次数下出现衰减,在接触载荷下> 10(5),P = 950 N ,使用WC球体r = 1.98mm。由于动态疲劳,强度下降明显更快。失效源于接触破坏,准塑性微裂纹区以及强度测试过程中出现的径向裂纹。这意味着NPS氮化硅本身的准塑性损伤可以保留固有的较高的耐损伤性(在较少的接触循环次数下),而在多循环接触和较低的应力承受率下具有较高的疲劳敏感性。

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