The study of the curvature of the axis of the processed shaft when based in the centers using a steady rest

A. Brylev, S. S. Mikheev
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Abstract

This paper presents the analysis and results of the study of a two-stage shaft fixed in dead centers and a rest device. Cutting forces act on the shaft, causing a bending moment. The analysis of the curvature of the axis of the workpiece, processed on a lathe when based in the centers, using a rest device, is carried out. The formula of elastic displacement of the workpiece axis at the place of the resulting cutting force is obtained. Diagrams of the stresses of the shaft axis displacements are constructed and a conclusion is made. The analysis showed that the greatest deflection is at the point of the cutting forces acting on the shaft. The quality of the part obtained after processing is characterized by accuracy. The parts mating in the product and, as a result, the overall reliability depends on how accurately the size and shape of the part will be maintained during processing. Parts with length of 10 to 12 times larger than the diameter are bent under the action of their own weight and cutting forces, as a result of which they get a barrel-like shape. It is possible to eliminate this by applying special devices for the machine. When processing long nonrigid workpieces, the tools, jigs and fixtures must evenly distribute the clamping force over the surface of the part. These conditions are well provided by technological equipment with pneumatic, hydraulic clamping devices, as well as with various collet clamps, split bushings, diaphragm or cartridges. When processing long non-rigid shafts, rest devices are used. The rest device plays the role of the main or secondary support when working with workpieces; it creates support for large, long parts during processing. It helps to avoid the risk of damage and deformation of the workpiece or the cutting elements of the machine, by giving the workpiece additional stability
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研究被加工轴的轴线曲率,当在中心使用稳定的休息时
本文介绍了一种两级定心轴和一种静止装置的分析和研究结果。切削力作用在轴上,产生弯矩。在车床上加工工件时,利用休息装置对工件的轴线曲率进行了分析。得到了工件轴在产生切削力处的弹性位移公式。构造了轴向位移的应力图,并得出了结论。分析表明,最大的挠度是在切削力作用在轴上的点。加工后得到的零件质量的特点是精度。零件在产品中的配合,因此,整体可靠性取决于零件的尺寸和形状在加工过程中保持的准确性。长度比直径大10到12倍的零件在自身重量和切削力的作用下弯曲,从而得到桶状形状。可以通过为机器安装特殊装置来消除这种情况。当加工长非刚性工件时,工具、夹具和夹具必须在零件表面均匀地分配夹紧力。采用气动、液压夹紧装置以及各种夹头夹紧装置、分体式衬套、隔膜或夹筒等技术设备,可以很好地满足这些条件。当加工长非刚性轴时,使用休息装置。休息装置在与工件一起工作时起主要或次要支撑的作用;它在加工过程中为大型长零件提供支持。通过给予工件额外的稳定性,它有助于避免工件或机器切割元件损坏和变形的风险
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