首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Prediction of machining accuracy based on a geometric error model in five-axis peripheral milling process
【24h】

Prediction of machining accuracy based on a geometric error model in five-axis peripheral milling process

机译:基于几何误差模型的五轴外圆铣削加工精度预测

获取原文
获取原文并翻译 | 示例
           

摘要

Machining accuracy is the most critical indicator to evaluate the machining quality of parts in metal cutting industry. However, it is difficult to be identified before real cutting, because of a variety of error sources presented in a machining process system, such as assembly inaccuracy of machine tool, deformation caused by temperature variation and dynamic cutting force, tool wear, servo lag and so on. Consequently, it is difficult to determine whether a new machining process can satisfy accuracy requirements beforehand. Traditionally, a machining process is validated through the "trial and error" approach, which is time consuming and costly. If machining accuracy can be predicted to a large extent, a rational process can be planned to ensure the precision of parts and even to maximize resource utilization without trial cuts. For this purpose, this work focuses on machining accuracy prediction for five-axis peripheral milling based on the geometric errors. An error synthesis modeling method is proposed to integrate the geometric errors of the process system, including machine tool geometric error, workpiece locating error, cutting tool dimension error and setup error. From a multi-body system point of view, all these errors are synthesized to generate position error of the cutting contact point in the workpiece coordinate system. Then the machining error is obtained by projecting the position error to the workpiece normal vector, which can be measured by a coordinate measuring machine. The prediction model has been evaluated by a cutting test with our in-house-developed prototype software. The result shows that the proposed method is feasible and effective.
机译:加工精度是评估金属切削行业零件加工质量的最关键指标。但是,由于加工过程系统中存在多种误差源,例如机床的装配误差,温度变化和动态切削力引起的变形,刀具磨损,伺服滞后和加工误差,很难在实际切削之前进行识别。以此类推。因此,难以预先确定新的加工工艺是否可以满足精度要求。传统上,加工过程是通过“尝试和错误”方法进行验证的,这既耗时又昂贵。如果可以在很大程度上预测加工精度,则可以计划一个合理的过程以确保零件的精度,甚至可以在不进行试切的情况下最大限度地利用资源。为此,本工作着重于基于几何误差的五轴外围铣削的加工精度预测。提出了一种综合加工系统几何误差的误差综合建模方法,包括机床几何误差,工件定位误差,刀具尺寸误差和安装误差。从多体系统的角度来看,所有这些误差都被合成以生成切削接触点在工件坐标系中的位置误差。然后,通过将位置误差投影到工件法线矢量来获得加工误差,该误差可由坐标测量机测量。预测模型已通过我们内部开发的原型软件通过切削测试进行了评估。结果表明,该方法是可行和有效的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号