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Technology of Production of Diamond-Abrasive Composites with Metal Matrix

机译:金属基质金刚石复合材料生产技术

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摘要

The prospects of using the method of explosive pressing for solving urgent problems of creating high-performance diamond composites for instrumental purposes on binders of powders of fairly cheap materials are substantiated. Purpose of this work is to develop the technology of diamond-abrasive composites synthesis from powders mixtures of natural diamond and widespread low-cost iron-carbon alloys which combines explosive pressing and subsequent short-term high-temperature heating. The processes of varying the compositions of diamond-metal powder mixtures, the parameters of their explosive pressing and the modes of subsequent heat treatment of the resulting compacts are studied. It is shown that the use of explosion energy at the stage of powder briquetting opens up new opportunities for the production of high-performance diamond-containing materials with a matrix of iron-carbon alloy powders. This is due to the specifics of the explosive action which results in the activation of the bonding material which becomes obvious with further high-temperature heating in its intensive hardening and acceleration of diffusion processes. It is revealed that the shock waves create thermobaric conditions that allow for better preservation of the diamond component than with traditional methods of sintering. Samples of abrasive diamond composites with wear resistance corresponding to the level of wear resistance of industrial diamond dressers but with half the consumption of diamond raw materials were obtained.
机译:实质上,使用爆炸式压制方法的前景,以解决为乐器的高性能金刚石复合材料施用高性能金刚石复合材料的粉末相当廉价材料的粘合剂。本作作品的目的是开发粉末磨料复合材料的粉末和广泛的低成本铁 - 碳合金的粉末混合物的合成,其结合了爆炸性的压制和随后的短期高温加热。研究了金属金属粉末混合物组合物的方法,研究了它们爆炸压制的参数和所得紧凑型的随后的热处理模式。结果表明,在粉末压块阶段使用爆炸能量为生产高性能金刚石的材料具有带有铁 - 碳合金粉末的基质来开辟新的机会。这是由于爆炸动作的细节,这导致粘合材料的激活,这在其强化硬化和加速过程中进一步高温加热方面具有显而易见的粘合材料。据透露,冲击波产生热差异条件,其允许更好地保存金刚石组分而不是传统的烧结方法。磨料金刚石复合材料的样品,耐磨性对应于工业金刚石梳妆台的耐磨性水平,但获得了一半的金刚石原料消耗。

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