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Percent Reduction in Transverse Rupture Strength of Metal Matrix Diamond Segments Analysed via Discrete-Element Simulations

机译:离散元素模拟分析的金属基体金刚石段横向断裂强度降低百分比

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摘要

The percent TRS reduction, DTRS, which is the percent reduction of the transverse rupture strength of metal matrix diamond segments with or without diamonds, is a key metric for evaluating the bonding condition of diamonds in a matrix. In this work, we build, calibrate, and verify a discrete-element simulation of a metal matrix diamond segment to obtain DTRS for diamond segments with various diamond-grain sizes, concentrations, and distributions. The results indicate that DTRS increases with increasing diamond-grain concentration and decreases with increasing diamond-grain size. Both factors can be explained by the total diamond contact length, the increase of which causes the increase in DTRS. The distribution of diamond grains in segments also strongly influences the increase of DTRS. The use of DTRS as a metric to assess the bonding condition of diamonds in matrixes is not valid unless the diamond-grain size, concentration, and distribution and total diamond contact length are the same for all diamond segments under consideration.
机译:TRS减少百分比DTRS是有或没有钻石的金属基体金刚石片段的横向断裂强度降低的百分比,它是评估基体中钻石结合条件的关键指标。在这项工作中,我们建立,校准和验证金属基质金刚石段的离散元素模拟,以获得具有各种金刚石晶粒尺寸,浓度和分布的金刚石段的DTRS。结果表明,DTRS随着金刚石晶粒浓度的增加而增加,而随着金刚石晶粒尺寸的增加而减小。这两个因素都可以由钻石的总接触长度来解释,总接触长度的增加会导致DTRS的增加。分段中金刚石晶粒的分布也强烈影响DTRS的增加。除非考虑的所有钻石段的钻石粒度,浓度,分布和总钻石接触长度相同,否则使用DTRS作为评估钻石在基体中结合条件的度量是无效的。

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