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首页> 外文期刊>International journal of automation technology >Two-Layer Tool with Hardness Distribution Around Tool Edge for Reducing Cutting Forces in CFRP Machining
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Two-Layer Tool with Hardness Distribution Around Tool Edge for Reducing Cutting Forces in CFRP Machining

机译:在刀刃周围具有硬度分布的两层刀具,可降低CFRP加工中的切削力

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摘要

This study presents a method for extending the life of tools in cutting of Carbon-fiber-reinforced plastics (CFRP). In the previous study, our research group found that the use of two layer tool, which has a wear resistance distribution due to the use of a combination of two different materials with different hardnesses, is effective for decreasing cutting force during machining of CFRP composites. In the two layer tool, a narrow region of the flank face close to the tool edge and the whole of the rake face were made of a material with a relatively high wear resistance, e.g., diamond or polycrystalline diamond (PCD). In contrast, the other region of the flank face was made of a material with a relatively low wear resistance, e.g., tungsten carbide (WC-Co). In this study, based on some experiments, the effect of the thickness of high wear resistance region on the reduction effects of cutting forces was investigated.
机译:这项研究提出了一种延长切割碳纤维增强塑料(CFRP)的工具寿命的方法。在先前的研究中,我们的研究小组发现,由于使用了两种不同硬度的不同材料的组合,因此具有耐磨性分布的两层工具可有效降低CFRP复合材料加工过程中的切削力。在两层刀具中,侧面的靠近刀具边缘的狭窄区域和整个前刀面均由耐磨性较高的材料制成,例如金刚石或多晶金刚石(PCD)。相反,侧面的另一区域是由耐磨性相对较低的材料制成的,例如碳化钨(WC-Co)。在这项研究中,基于一些实验,研究了高耐磨区厚度对切削力降低效果的影响。

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