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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Machining Parameters on Surface Integrity in Machining Nimonic C-263 Super Alloy Using Whisker-Reinforced Ceramic Insert
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Effect of Machining Parameters on Surface Integrity in Machining Nimonic C-263 Super Alloy Using Whisker-Reinforced Ceramic Insert

机译:晶须增强陶瓷刀片加工Ni-Ni-C-263超合金时加工参数对表面完整性的影响

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摘要

Whisker-reinforced ceramic inserts were used to conduct turning trials on nimonic C-263 super alloy to study the effect of different combinations of cutting parameters on surface integrity (roughness, microhardness, and residual stress) by employing energy dispersive spectroscopy, scanning electron microscopy, x-ray diffraction, and Vicker's microhardness test. Abrasion, adhesion and diffusion were found to be the main tool wear mechanisms in turning nimonic C-263 alloy. Based on characterization of surface roughness, a combination of 190 m/min cutting speed and 0.102 mm/rev feed rate was found to be the critical condition for turning nimonic C-263 alloy. Microhardness varied between 550 and 690 HV at the feed rates of 0.102-0.143 mm/rev for a cutting speed of 250 m/min after 9 min of turning. A tensile residual stress of 725-850 MPa on the machined surface was recorded at the preceding combination of cutting parameters. Cutting speed and cutting time had a dominant effect on the magnitude of the residual stress. No evidence of thermal relaxation and reduction in the degree of work hardening was noted during machining at high cutting speed.
机译:使用晶须增强的陶瓷刀片对镍C-263超级合金进行车削试验,以通过采用能量色散光谱,扫描电子显微镜研究切削参数的不同组合对表面完整性(粗糙度,显微硬度和残余应力)的影响, X射线衍射和维氏显微硬度测试。磨损,附着力和扩散被发现是车削含碳C-263合金的主要工具磨损机理。根据表面粗糙度的特征,发现将190 m / min的切削速度和0.102 mm / rev的进给速度结合起来是车削含碳C-263合金的关键条件。车削9分钟后,进给速度为0.102-0.143 mm / rev,切削速度为250 m / min时,显微硬度在550至690 HV之间变化。在切削参数的先前组合下,在加工表面上记录的725-850 MPa的拉伸残余应力。切削速度和切削时间对残余应力的大小起主要作用。在高切削速度下的加工过程中,没有发现热松弛和加工硬化程度降低的迹象。

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