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Research on rare earth and iron-rich diamond-enhanced tungsten carbide composite button

机译:稀土富铁金刚石增强碳化钨复合纽扣的研究

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摘要

At the present time in china, the binder used in tungsten carbide composite button is mainly cobalt, which is very expensive. In order to solve the problems, a new type of rare earth and iron-rich diamond-enhanced tungsten carbide with high abrasive resistance and high toughness against impact, which realizes to substitute ferrum for cobalt, has been developed. The key problems in making the button are to improve the mechanical properties of matrix and increase the welding strength between the diamond and the matrix. All these problems have been solved effectively by low temperature activation hot-press sintering, doping rare earth lanthanum in matrix and high sintering pressure. The properties of the button have been determined under laboratory conditions. The test results show that its hardness is more than 90 HRA, its abrasive resistance is 39 times more than that of conventional cemented tungsten carbide, and its toughness against impact is more than 200 J. All these data show the button has very good mechanical properties.
机译:目前在中国,用于碳化钨复合纽扣的粘结剂主要是钴,这非常昂贵。为了解决该问题,已经开发了一种新型的稀土和富铁的金刚石增强的碳化钨,其具有高的耐磨性和高的抗冲击韧性,其实现了用铁代替钴。制作纽扣的关键问题是改善基体的机械性能并增加金刚石与基体之间的焊接强度。通过低温活化热压烧结,在基体中掺入稀土镧和高烧结压力有效地解决了所有这些问题。按钮的属性已在实验室条件下确定。测试结果表明,它的硬度超过90 HRA,耐磨性是传统硬质合金碳化钨的39倍,抗冲击韧性超过200J。所有这些数据表明该按钮具有非常好的机械性能。

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