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首页> 外文期刊>Journal of Manufacturing Processes >Wear mechanisms and performance of abrasively ground polycrystalline diamond tools of different diamond grains in machining titanium alloy
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Wear mechanisms and performance of abrasively ground polycrystalline diamond tools of different diamond grains in machining titanium alloy

机译:钛合金加工中不同金刚石晶粒的磨削多晶金刚石工具的磨损机理和性能

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Abrasive grinding, electrical discharge machining and laser machining are the three approaches to manufacture polycrystalline diamond (PCD) tools. However, the performance of PCD tools made by the three methods was found different. Customized PCD tools made of three different PCD materials were fabricated by abrasive grinding in this paper. Through a series of cutting experiments, cutting forces, cutting temperatures, morphological characteristics of wear areas on tool surface, and the geometric parameters of chips were analysed to investigate the wear mechanisms, cutting performance, as well as the effects of material structure. It was found that adhesive-abrasive process and chemical diffusion were the main mechanism of wear of PCD tools. However, the wear processes of the three tools were different due to the difference in material structures. PCD tools made of uniformly sized diamond grains wear in a steady "spalling process". In contrast, PCD tools made of mix-size diamond grains suffered from large-scale fracture at the tool tip. The shapes of chips and the related geometric parameters reflected different wear processes. Chip shapes changed from spiral to strip with the growing of crater wear, segment chips were generated because of the change of tool geometry caused by the fracture of the tool tip. (C) 2017 Published by Elsevier Ltd on behalf of The Society of Manufacturing Engineers.
机译:研磨,放电加工和激光加工是制造多晶金刚石(PCD)工具的三种方法。但是,发现通过三种方法制成的PCD工具的性能不同。本文通过磨料磨削加工了由三种不同PCD材料制成的定制PCD工具。通过一系列切削实验,分析了切削力,切削温度,刀具表面磨损区域的形态特征以及切屑的几何参数,以研究磨损机理,切削性能以及材料结构的影响。研究发现,胶粘剂磨蚀过程和化学扩散是PCD工具磨损的主要机理。但是,由于材料结构的不同,三种工具的磨损过程也不同。由均匀大小的金刚石晶粒制成的PCD工具会在稳定的“剥皮过程”中磨损。相反,由混合大小的金刚石晶粒制成的PCD工具在工具尖端会遭受大规模断裂。切屑的形状和相关的几何参数反映了不同的磨损过程。随着坑口磨损的增加,切屑的形状从螺旋形变为带状,由于刀尖断裂引起的刀具几何形状变化,产生了切屑。 (C)2017由Elsevier Ltd代表制造工程师协会出版。

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