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Wear characterization of cemented carbides (WC-CoNi) processed by laser surface texturing under abrasive machining conditions

机译:在磨削加工条件下通过激光表面纹理加工的硬质合金(WC-CoNi)的磨损表征

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摘要

Cemented carbides are outstanding engineering materials widely used in quite demanding material removal applications. In this study, laser surface texturing is implemented for enhancing, at the surface level, the intrinsic bulk-like tribological performance of these materials. In this regard, hexagonal pyramids patterned on the cutting surface of a tungsten cemented carbide grade (WC-CoNi) have been successfully introduced by means of laser surface texturing. It simulates the surface topography of conventional honing stones for abrasive application. The laser-produced structure has been tested under abrasive machining conditions with full lubrication. Wear of the structure has been characterized and compared, before and after the abrasive machining test, in terms of changes in geometry aspect and surface integrity. It is found that surface roughness of the machined workpiece was improved by the laser-produced structure. Wear characterization shows that laser treatment did not induce any significant damage to the cemented carbide. During the abrasive machining test, the structure exhibited a high wear resistance. Damage features were only discerned at the contacting surface, whereas geometrical shape of pyramids remained unchanged.
机译:硬质合金是杰出的工程材料,广泛用于要求苛刻的材料去除应用中。在这项研究中,实施激光表面纹理化处理是为了在表面水平上增强这些材料的内在的块状摩擦性能。在这方面,已经通过激光表面纹理化成功地在钨硬质合金牌号(WC-CoNi)的切削表面上构图了六棱锥。它模拟用于磨料的常规珩磨石的表面形貌。激光生产的结构已在磨料加工条件下进行了全润滑测试。在磨料加工测试之前和之后,已经对结构的磨损进行了表征,并根据几何形状方面和表面完整性的变化进行了比较。发现通过激光产生的结构改善了加工工件的表面粗糙度。磨损特征表明,激光处理不会对硬质合金造成任何重大损害。在研磨加工测试中,该结构表现出高耐磨性。损伤特征仅在接触表面处被识别,而金字塔的几何形状保持不变。

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