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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Rock penetration into cemented carbide drill buttons during rock drilling
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Rock penetration into cemented carbide drill buttons during rock drilling

机译:凿岩过程中岩石渗入硬质合金钻头中

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摘要

In percussive and rotary percussive rock drilling, the rock is crushed into small fragments by the repeated hard impact of the drill bit, and subsequently removed by flushing water or air. To avoid excessive wear, the steel drill bit is equipped with a set of cemented carbide buttons that protrude from the bit to take the actual impact. The severe contact against the rock results in some wear of the button, but also in formation of surface layers of rock material and penetration and impregnation of rock material into the cemented carbide structure. This situation, with serious implications for the wear and fracture of the buttons, have previously not been reported. The present findings represent a significantly new understanding of the wear of the rock button material. The deterioration mechanisms are described in detail, using examples from a range of real drilling applications in different rock types. During operation, material in the surface layer of the drill button shifts from that of the original cemented carbide into an uncontrolled composite. This composite is formed by the WC carbide hard phase and a binder consisting of a mixture of cobalt and rock. This new material should be expected to exhibit properties significantly different from the original cemented carbide.
机译:在冲击式和旋转冲击式凿岩机中,由于反复受到钻头的强烈冲击,岩石被破碎成小块,随后通过冲洗水或空气将其清除。为避免过度磨损,钢钻头配备了一组硬质合金纽扣,从钻头伸出以承受实际冲击。与岩石的严重接触会导致纽扣有些磨损,但也会导致岩石材料表层的形成以及岩石材料渗透和渗入硬质合金结构中。这种情况对钮扣的磨损和断裂有严重的影响,以前没有报道过。目前的发现代表了对岩石纽扣材料磨损的全新认识。使用来自不同岩石类型的一系列实际钻探应用中的示例,详细描述了劣化机理。在操作过程中,钻头按钮表层中的材料从原始硬质合金的材料转变为不受控制的复合材料。该复合材料由碳化钨硬质合金相和由钴和岩石的混合物组成的粘合剂形成。应当期望这种新材料表现出与原始硬质合金明显不​​同的性能。

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