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Bending Strength and Cutting Performance of WB-Coated-Diamond/Fe-Ni Composites

机译:WB涂层金刚石/ Fe-Ni复合材料的弯曲强度和切割性能

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Diamond particle with tungsten boride (WB) coating was synthesized by the molten salt method. Three different diamond/Fe-Ni composites made from pristine diamond, B_4C coated diamond and WB coated diamond with Fe-Ni powders were prepared by powder metallurgy. The composition and microstructure of the tungsten boride coating were investigated. Both bending strength and cutting performance of the composites were investigated. Addition of the WB coating provided an increased bending strength (871.2 MPa) and relative density (93.54%), compared with the composites consist of uncoated diamond and Fe-Ni (746.8 MPa, 92.81%). Three different Fe-Ni-based impregnated diamond drill bits contained 20 vol.% pristine diamond, B4C coated diamond and WB coated diamond were manufactured by powder metallurgy, respectively. Drilling rate of bits was measured by XY-4 geological core drill on granite. The test results show that the drilling rate of bits with WB coated diamond (2.42 m/h) was 40% higher than that with pristine uncoated diamond (1.72 m/h).
机译:通过熔融盐法合成具有钨硼化硼(WB)涂层的金刚石颗粒。用粉末冶金制备由原始金刚石,B_4C涂层金刚石和WB涂布金刚石制成的三种不同的金刚石/ Fe-Ni复合材料。研究了硼化钨涂层的组成和微观结构。研究了复合材料的弯曲强度和切割性能。添加WB涂层,提供了增加的弯曲强度(871.2MPa)和相对密度(93.54%),与复合材料组成,由未涂层金刚石和Fe-Ni(746.8MPa,92.81%)组成。三种不同的Fe-Ni浸渍的金刚石钻头含有20体积型Vol。%原始金刚石,B4C涂层金刚石和WB涂覆的金刚石分别由粉末冶金制造。 XY-4地质核心钻花岗岩测量比特钻井率。测试结果表明,具有WB涂覆金刚石(2.42M / h)的比特钻井率高于原始未涂覆金刚石(1.72米/小时)的40%。

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