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Energy-Efficient Cutting Parameters Determination for NC Machining with Specified Machining Accuracy

机译:以指定的加工精度确定数控加工的节能切割参数

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An energy-efficient cutting parameters determination method for NC machining parts with specified machining accuracy is proposed in this paper. The identification mechanism of machine tool errors by R-test is employed to establish machining error estimation model. By replacing the coordinate of each tool path point with the origin, the R-test tool paths are generated. R-tests at two different setups are designed to capture the volumetric errors of the machine tool. After dynamic R-test simulations at different feedrates in two setups, the volumetric errors of the machine tool at different feedrates are predicted. With the volumetric errors, the maximum machining errors of the part at different feedrates are calculated based on the machining error estimation model. The allowed feedrate range is obtained by comparing the calculated machining errors with the specified machining accuracy. With the allowed feedrate range and the other cutting parameters as the factors, the response surface of total energy consumption of machine tool is constructed according to the requirements of machining operations. The energy-efficient cutting parameters combination is found by searching the constructed response surface. A typical aircraft structural part is used to validate the proposed method.
机译:提出了一种具有指定加工精度的高效节能的数控加工零件切削参数确定方法。采用R检验的机床误差识别机制,建立加工误差估计模型。通过用原点替换每个刀具路径点的坐标,可以生成R测试刀具路径。两种不同设置下的R检验旨在捕获机床的体积误差。在两种设置下以不同进给率进行动态R检验模拟后,可以预测出不同进给率下机床的体积误差。根据体积误差,根据加工误差估计模型计算出不同进给率下零件的最大加工误差。通过将计算出的加工误差与指定的加工精度进行比较,可获得允许的进给率范围。以允许的进给速度范围和其他切削参数为因素,根据加工操作的要求构造了机床总能耗的响应面。通过搜索构造的响应面可以找到高效的切削参数组合。典型的飞机结构部件用于验证所提出的方法。

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