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
研究了三辊斜轧穿孔法生产Φ50 mm×5 mm TA2管坯的生产工艺。通过TA2棒坯不同加热温度对穿透率的影响、不同径向压下量对穿孔后管坯直径的影响、穿孔头尺寸对管坯壁厚的影响、棒坯直径与管坯直径关系的研究,确定了三辊斜轧穿孔法...研究了三辊斜轧穿孔法生产Φ50 mm×5 mm TA2管坯的生产工艺。通过TA2棒坯不同加热温度对穿透率的影响、不同径向压下量对穿孔后管坯直径的影响、穿孔头尺寸对管坯壁厚的影响、棒坯直径与管坯直径关系的研究,确定了三辊斜轧穿孔法生产纯钛管坯的具体工艺参数:棒坯规格Φ48 mm,棒坯加热制度930~950℃/40~50min,顶头前探量26~32 mm,径向压下量15%~20%。展开更多
基金Supported by National Science and Technology Major Project of China(No.2009ZX04012-021)Major State Basic Research Development Program of China ("973" Program, No.2009CB724306)
文摘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.