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Investigation of machinability in Al-MgO composites produced by melt-stirring

机译:搅拌法制备Al-MgO复合材料的切削性能研究

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In this study, Al-MgO reinforced metal matrix composites of 5%, 10% and 15% reinforcement-volume ratios were produced by melt-stirring and subjected to machining tests by carbide and coated carbide cutting tools. Machining tests were conducted with 150, 200, 250 and 300 m/min cutting speeds, 0.075, 0.15 and 0.225 mm/rpm feed rates and 1 mm depth of cut. Piezoelectric quartz crystal type dynamometer was used to measure cutting forces. As a result of the tests, it was observed that the increase in cutting speed first led to an increase and then a decrease in main cutting force values (Fc), and the increase in feed rate was accompanied with increased main cutting forces. The most consistent results in terms of Fc values were displayed by 10% MgO reinforced composites. While no abrasion occurred on the surfaces of cutting tools, build up edge formation was observed in the machining tests.
机译:在这项研究中,通过熔融搅拌生产了5%,10%和15%的增强体积比的Al-MgO增强金属基复合材料,并通过硬质合金和涂层硬质合金切削刀具进行了机加工测试。机加工测试以150、200、250和300 m / min的切割速度,0.075、0.15和0.225 mm / rpm的进给速度以及1 mm的切割深度进行。压电石英晶体测功机用于测量切削力。作为测试的结果,观察到切削速度的增加首先导致主切削力值(Fc)增加,然后降低,并且进给速度的增加伴随着主切削力的增加。以Fc值表示的最一致的结果由10%MgO增强的复合材料显示。尽管切削工具的表面未发生磨损,但在机加工测试中观察到了积屑瘤的形成。

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