首页> 外文期刊>Surface Engineering >FITTING PROBABILITY DISTRIBUTION FUNCTIONS TO SATURATION CRACK SPACING DISTRIBUTION IN SUBSTRATE PLASTIC STRAINING TEST FOR THIN FILMS AND COATINGS
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FITTING PROBABILITY DISTRIBUTION FUNCTIONS TO SATURATION CRACK SPACING DISTRIBUTION IN SUBSTRATE PLASTIC STRAINING TEST FOR THIN FILMS AND COATINGS

机译:薄膜和涂层基体塑性应变测试中饱和裂纹间距分布的拟合概率分布函数

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摘要

Various approximations involving computer simulation, and the ab initio assumption of a suitable probability distribution prior to simulation, have been suggested in the literature for determining the critical crack spacing at saturation in the substrate plastic straining test for films or coatings on metallic substrates, i.e when the detachment of films from substrate occurs. An experimental investigation of silicon modified DLC films on steel substrates (304 stainless and mild steel) has employed a simple statistical procedure which reveals a very good match between the saturation crack spacing frequency distribution and the two parameter Weibull distribution function. This allows faster determination of the mean crack spacing distribution and eliminates the need for a further computer simulation stage in the analysis as is currently adopted in the literature. The approach reported is simpler and is applicable to the treatment of crack spacing frequency distributions matching other probability functions.
机译:在文献中已经提出了各种近似方法,包括计算机模拟,以及从头开始就假设在模拟之前具有适当的概率分布,用于确定金属薄膜或涂层在金属基材上的基材塑性应变测试中饱和时的临界裂纹间距,即何时薄膜从基材上脱落。对钢基底(304不锈钢和低碳钢)上的硅改性DLC膜进行的实验研究采用了一种简单的统计程序,该程序揭示了饱和裂纹间距频率分布与两个参数Weibull分布函数之间的良好匹配。这样可以更快地确定平均裂纹间距分布,并且无需像文献中目前所采用的那样在分析中进行进一步的计算机模拟阶段。报告的方法更简单,可用于与其他概率函数匹配的裂纹间距频率分布的处理。

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