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The bonding of diamond grits and matrix metals as powder metallurgical phenomena

机译:金刚石磨粒与基体金属的结合作为粉末冶金现象

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In order to provide a strong bonding between diamonds and matrix, a typical matrix alloy containscopper and cobalt as base metals, and tin, chromium and titanium as additives. Copper has a highthermal conductivity to dissipate heat during grinding together with a low degree of lattice disregistryto diamond to provide bonding strength. Cobalt has rather high values of both modulus of elasticityand elastic limit, and a low coefficient of thermal expansion to be compatible to some extent with thehigh elastic properties and the low thermal expansion of diamonds during grinding. Those propertiesmake the matrix hold diamond grit tightly. Tin reacts with diamonds to form rough surfaces leading toan increased mechanical bonding strength, while chromium and titanium react with diamonds tomake carbide layers on the grits leading to a good bonding strength provided by a good wetting. In thepresence of a liquid copper alloy, iron or cobalt forms a solid solution layer containing copper as amain solute on graphite surface. The formation of the layer is driven by a difference of chemicalpotential in the system. A similar layer formation is possible on diamond surface. The layer willprovide tight holding of grits by matrix.
机译:为了在金刚石和基体之间提供牢固的结合,典型的基体合金包含铜和钴作为基础金属,以及锡,铬和钛作为添加剂。铜具有很高的导热性,可以在研磨过程中散发热量,而晶格失配程度低,可以提供结合强度。钴具有相当高的弹性模量和弹性极限值,并且热膨胀系数低,在某种程度上可与金刚石在研磨过程中的高弹性和低热膨胀相容。这些特性使基体可以紧紧握住金刚石砂粒。锡与金刚石发生反应,形成粗糙的表面,从而提高了机械结合强度,而铬和钛与金刚石发生反应,在砂砾上形成了碳化物层,从而通过良好的润湿性提供了良好的结合强度。在液态铜合金的存在下,铁或钴在石墨表面上形成包含铜作为主要溶质的固溶体层。该层的形成是由系统中化学势的差异驱动的。在金刚石表面上可能形成类似的层。该层将提供基质对砂砾的紧密保持。

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