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不锈钢零件铣削加工质效探讨与实践
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作者 熊文伟 王姜萍 张平珍 《机械工程师》 2011年第12期132-134,共3页
不锈钢属难加工材料,在铣削加工不锈钢的过程中,就如何确保加工质量和提高工作效率,文中从铣刀材料、铣削参数选定、工装夹具及加工工艺改进上进行探讨,并在实际生产中得到了较好应用,对提高产品质量和经济效益有一定的现实意义。
关键词 铣削不锈钢 工装夹具 工艺改进
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Effect of Radial Depth on Vibration and Surface Roughness During Face Milling of Austenitic Stainless Steel 被引量:1
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作者 申阳 陈永洁 +7 位作者 张俐 方海涛 庞佳 刘敏 王社权 马晓魁 张京 刘志林 《Transactions of Tianjin University》 EI CAS 2011年第5期336-339,共4页
This paper studies the influence of radial depth on vibration, chip formation and surface roughness during face milling of AISl3O4 austenitic stainless steel with indexable cemented carbide milling cutters. The amplit... This paper studies the influence of radial depth on vibration, chip formation and surface roughness during face milling of AISl3O4 austenitic stainless steel with indexable cemented carbide milling cutters. The amplitude of vibration acceleration increased with the increasing radial depth up to 80 mm. And the domain vibration frequency varied with the radial depth. In this paper, three types of chips were found: C shape, long shape and spiral shape. The minimum surface roughness value occurred when the radial depth equalled 40 mm in the experiment. Irregular changes of chip curl radius and chip thickness could be attributed to different numbers of alternately engaged teeth when the feed and speed were fixed. Surface roughness is related to forced vibration and chip formation. Radial depth with different numbers of alternately engaged teeth could significantly influence the forced vibration, chip formation, and surface roughness. 展开更多
关键词 austenitic stainless steel face milling radial depth VIBRATION surface roughness chip formation
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