采用“动力刨削”法对内冠齿切削过程中不变形切屑的模拟

Andrii Slipchuk
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引用次数: 0

摘要

如今,世界上从事齿轮制造的领先企业越来越多地采用动力刨削法在车轮上切割齿轮冠。这种现代的方法可以让你处理车轮与外部和内部皇冠,既直和螺旋,以及切割槽轴或轮毂。这项技术结合了车削和铣削的要素,确保了非常短的生产时间。然而,这种方法每年都在不断改进,就其运动学而言,它非常复杂,需要精确的计算。确定刀具和工件在每个时刻的精确位置对于在切削过程中同步运动是必要的。介绍了用动力刨削法切割内直齿冠时,切屑不变形的原理。获得了切片的切片参数。它们是建模和计算切削力、摩擦、消除余量所需的必要功、切削过程中发生的热流、刀具加热强度、刀具温度和磨损、振荡和动态过程模拟的基础。关于被剪切层的大小和形状的完整信息,以及它们在切削时间的每个时刻在齿的不同部分的大小,对于描述各种相互关联和相互依赖的变形和接触过程是必要的。在刀具旋转过程中,它们连续周期性变化的既定规律是全面再现齿冠切削过程中发生的过程所必需的。为完成这一任务,已经开发了一套复杂的图形分析、数学和计算机模拟系统。考虑了运动学,并可靠地再现了切削成形过程的模式。本文介绍了用图形解析法构造未变形芯片截面的方法,建立了芯片的几何形状和主要特征,并获得了芯片的三维模型。获得了适当的切屑形成模型。分析了动力刨削过程中切片参数的定量估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SIMULATION OF UNDEFORMED CHIP FORMED DURING CUTTING FOR INTERNAL CROWN TOOTH BY THE "POWER SKIVING" METHOD
Today, the world's leading enterprises engaged in the manufacture of gear wheels increasingly use the Power Skiving method of cutting the gear crown on the wheel. This modern method allows you to process wheels with an external and internal crown, both spur and helical, as well as cut slots on shafts or hubs. This technology combines elements of turning and milling and ensures a very short production time. However, every year this method is increasingly improved, and in terms of its kinematics it is very complex and requires precise calculations. Determining the exact position of the tool and the workpiece at each moment of time is necessary for synchronizing movements during cutting. The principle of building an undeformed chip when cutting an internal straight-tooth crown by the Power Skiving method is shown. Section parameters for chip sections are obtained. They are the basis for modeling and calculating the values of cutting forces, friction, the necessary work that is needed to eliminate the allowance, heat flows that occur during cutting, the intensity of tool heating, temperature and wear of the tool, simulation of oscillations and dynamic processes. Complete information about the size and shape of the sheared layers, their size in different sections of the tooth at each moment of the cutting time is necessary for the description of various interrelated and interdependent deformation and contact processes. The established regularities of their continuous cyclical change during the revolution of the cutting tool are required for a comprehensive reproduction of the processes that occur during the cutting process of the toothed crown. A complex system of grapho-analytical, mathematical and computer modeling of this process has been developed for such a task. Kinematics is taken into account and the patterns of cutting-forming processes are reliably reproduced. The application of the grapho-analytical method of constructing sections for an undeformed chip is presented, which made it possible to establish its geometry and main characteristics, as well as to obtain a 3D model. Adequate models of chip formation are obtained. Quantitative estimates of parameters for slices in the process of Power Skiving are analyzed.
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