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Improved flexural strength of diamond/Cu-Fe composites with Cu-B-B4C coating

机译:用Cu-B-B4C涂层改善金刚石/ Cu-Fe复合材料的弯曲强度

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摘要

The interface between diamond and copper (Cu) alloy matrix in the composites significantly affects their mechanical properties. The functionalization of the diamond surface is of great potential for exploiting different advanced mechanical tools. In the present case, copper-boron-boron carbide (Cu-B-B4C) composite coating was grown simultaneously on the whole surface of diamonds. Subsequently, the diamond particles were reinforced with copper-iron (Cu-Fe) matrix composites through powder metallurgy. The microstructural analysis demonstrated that the composite coatings were composed of two layers: the interior layers of B4C and B as well as the exterior layer of Cu-B alloy. The bending strength of Cu-B-B4C composite-coated diamond was determined to be 701 MPa at a sintering temperature of 800 degrees C, which was nearly 27% higher compared to that (553 MPa) of uncoated diamond/Cu-Fe composites.
机译:复合材料中金刚石和铜(Cu)合金基质之间的界面显着影响其机械性能。 钻石表面的功能化具有很大的潜力,可利用不同的先进机械工具。 在本案例中,在整个金刚石表面上同时生长铜 - 硼 - 硼碳化物(Cu-B-B4C)复合涂层。 随后,通过粉末冶金用铜 - 铁(Cu-Fe)基复合材料加强金刚石颗粒。 微观结构分析证明了复合涂层由两层组成:B4C和B的内层以及Cu-B合金的外层。 Cu-B-B4C复合涂覆的金刚石的弯曲强度在800℃的烧结温度下测定为701MPa,与未涂覆的金刚石/ Cu-Fe复合材料的(553MPa)相比,该烧结温度为近27%。

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