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Influence of position-dependent geometric errors of rotary axes on a machining test of cone frustum by five-axis machine tools

机译:旋转轴位置相关的几何误差对五轴机床锥台加工的影响

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摘要

A machining test of cone frustum, described in NAS (National Aerospace Standard) 979, is widely accepted by machine tool builders to evaluate the machining performance of five-axis machine tools. This paper discusses the influence of various error motions of rotary axes on a five-axis machine tool on the machining geometric accuracy of cone frustum machined by this test. Position-independent geometric errors, or location errors, associated with rotary axes, such as the squareness error of a rotary axis and a linear axis, can be seen as the most fundamental errors in five-axis kinematics. More complex errors, such as the deformation caused by the gravity, the pure radial error motion of a rotary axis, the angular positioning error of a rotary axis, can be modeled as position-dependent geometric errors of a rotary axis. This paper first describes a kinematic model of a five-axis machine tool under position-independent and position-dependent geometric errors associated with rotary axes. The influence of each error on machining geometric accuracy of a cone frustum is simulated by using this model. From these simulations, we show that some critical errors associated with a rotary axis impose no or negligibly small effect on the machining error. An experimental case study is presented to demonstrate the application of R-test to measure the enlargement of a periodic radial error motion of C-axis with B-axis rotation, which is shown by present numerical simulations to be among potentially critical error factors for cone frustum machining test.
机译:NAS(国家航空航天标准)979中描述的圆锥台的加工测试已被机床制造商广泛接受,以评估五轴机床的加工性能。本文讨论了五轴机床上旋转轴的各种误差运动对通过该测试加工的锥台的加工几何精度的影响。与旋转轴相关的与位置无关的几何误差或位置误差,例如旋转轴和线性轴的垂直度误差,可以看作是五轴运动学中最基本的误差。诸如重力引起的变形,旋转轴的纯径向误差运动,旋转轴的角度定位误差等更复杂的误差可以建模为旋转轴的位置相关几何误差。本文首先描述了与旋转轴相关的位置无关和位置相关的几何误差下的五轴机床的运动学模型。使用该模型模拟了每种误差对锥台的加工几何精度的影响。从这些模拟中,我们显示出一些与旋转轴相关的严重误差对加工误差没有影响或影响很小。提出了一个实验案例研究,以证明R检验在测量C轴随B轴旋转的周期性径向误差运动的扩大中的应用,当前的数值模拟表明该测试是圆锥体潜在的关键误差因素之一截锥体加工测试。

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