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Conventional and laser assisted machining of composite A359/20SiCp

机译:复合A359 / 20SICP的常规和激光辅助加工

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Metal matrix composites (MMCs) have many industrial applications in different sectors, e.g.: automobile and aerospace. However, due to hard ceramic reinforcing components in MMCs, difficulties can arise when machining via conventional manufacturing processes. Excessive tool wear is especially problematic. Laser assisted machining (LAM) is one of the technologies that enable machining of hard-to-cut materials. In laser assisted cutting, the workpiece area is heated directly by a laser beam before the cutting edge. The work reported here concentrates on improving Al/SiC composite's machinability by laser assisted machining, when compared to conventional turning process. Influence of laser's beam during laser assisted turning on cutting force, tool wear and machined surfaces roughness was investigated. This research was carried out for cubic boron nitride (CBN) and sintered carbide inserts. The results obtained with the laser assisted machining were compared to those obtained in conventional turning.
机译:金属基质复合材料(MMC)在不同扇区中具有许多工业应用,例如:汽车和航空航天。然而,由于MMCS中的硬陶瓷增强组分,在通过常规制造工艺加工时可以出现困难。过度的工具磨损尤其有问题。激光辅助加工(LAM)是一种能够加工难以切割材料的技术之一。在激光辅助切割中,在切削刃之前通过激光束直接加热工件区域。与传统转动过程相比,此处报告的工作始采于通过激光辅助加工改善Al / SiC复合材料的可加工性。研究激光梁在激光辅助车削过程中的影响,研究了工具磨损和机加工表面粗糙度。该研究进行了对立方氮化硼(CBN)和烧结碳化物插入物进行的。将用激光辅助加工获得的结果与传统转动中获得的结果进行比较。

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