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Wear mechanisms of WC-Co drill bit inserts against alumina counterface under dry friction: Part 2-Graded WC-Co inserts

机译:WC-Co钻头刀片在干摩擦下抵靠氧化铝对接面的磨损机理:第2部分-分级WC-Co刀片

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The tribological behaviour of innovative graded cemented carbide inserts were studied by using a rotary tribometer and abrasive alumina counterfaces. This work completes the study made on commercial inserts with homogeneous cobalt content Inserts with three types of graduation processes were considered: inserts with borides WCoB phases, imbibed inserts and inserts combining both processes (i.e. inserts with reactive imbibition). Physicochemical and mechanical measurements show that the WCoB phases increase the hardness towards the active surface and the imbibition increases the insert core fracture toughness. The wear tests indicate that the boride phases lower the friction coefficient In addition, as for the commercial inserts, cemented carbide volumes with higher cobalt content also reduce the friction coefficient Concerning the wear results, the boride phases improve the abrasion resistance. By applying a third body approach, the WCoB phases limit the introduction of cobalt binder in the source flow, the cohesion of alumina particles in the internal flow and the formation of an abrasive paste in the contact The imbibition process, where the cobalt migration is controlled, does not affect the wear resistance by avoiding a cobalt enrichment of the cemented carbide near the active surface. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用旋转摩擦计和磨料氧化铝对接面研究了创新的梯度硬质合金刀片的摩擦学行为。这项工作完成了对钴含量均一的商品嵌件的研究,考虑了具有三种分度过程的嵌件:具有硼化物WCoB相的嵌件,吸收性嵌件和结合了这两种过程的嵌件(即具有反应吸收性的嵌件)。物理化学和机械测量表明,WCoB相增加了朝着活性表面的硬度,而吸收作用则增加了插入芯的断裂韧性。磨损测试表明,硼化物相降低了摩擦系数。此外,对于商业刀片,钴含量较高的硬质合金体积也降低了摩擦系数。关于磨损结果,硼化物相改善了耐磨性。通过采用第三体方法,WCoB相限制了源流中钴粘合剂的引入,内部流中氧化铝颗粒的内聚以及接触中磨料膏的形成。吸收过程中,控制了钴的迁移通过避免在活性表面附近富集硬质合金,钴不会影响耐磨性。 (C)2014 Elsevier Ltd.保留所有权利。

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