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Evaluation of machinability for copper alloys based on wear-mechanism maps

机译:基于磨损机理图的铜合金切削性能评估

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摘要

An attempt is to construct wear-mechanism maps for C3604 and Eco-brass by using pin-on-disk dry sliding wear test, and then to evaluate of machinability for those alloys based on the maps. It is possible to evaluate the qualitatively wear behaviour for new copper alloys over a broad range of load and sliding speed. A evaluation of machinability has been used to utilize wear-fracture map for high-speed steel (HSS) cutting tools during dry turning operations. Its wear-fracture transition for HSS tools is determined for the highest limit on a cutting speed and a feed. At low-speed cutting, given finished condition on the machined surface is determined the lowest limit on the turning condition. Also, these method are applied to the time-dependent processes such as tool wear. This character is obtained by wear-results on its mechanism map. These procedures can determined a cutting speed and a feed for safe turning operation. The results are in good agreement with the experimental data.
机译:尝试通过使用销盘式干式滑动磨损测试来构造C3604和Eco-黄铜的磨损机理图,然后根据这些图评估这些合金的可切削性。可以评估新型铜合金在较宽的载荷和滑动速度范围内的定性磨损行为。机加工性能的评估已用于在干车削加工过程中利用高速钢(HSS)切削刀具的磨损断裂图。确定其在高速钢刀具中的磨损-断裂过渡是切削速度和进给的最高限制。在低速切削时,确定加工表面上的最终加工条件是车削条件的最低极限。而且,这些方法也应用于与时间有关的过程,例如工具磨损。该特征通过其机理图上的磨损结果获得。这些程序可以确定切削速度和进给,以确保车削安全。结果与实验数据吻合良好。

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