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A novel five-axis on-machine measurement optimization method for complex curved surfaces
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作者 GUO Yan-heng WAN Neng ZHUANG Qi-xin 《Journal of Central South University》 2025年第2期523-537,共15页
On-machine measurement(OMM)stands out as a pivotal technology in complex curved surface adaptive machining.However,the complex structure inherent in workpieces poses a significant challenge as the stylus orientation f... On-machine measurement(OMM)stands out as a pivotal technology in complex curved surface adaptive machining.However,the complex structure inherent in workpieces poses a significant challenge as the stylus orientation frequently shifts during the measurement process.Consequently,a substantial amount of time is allocated to calibrating pre-travel error and probe movement.Furthermore,the frequent movement of machine tools also increases the influence of machine errors.To enhance both accuracy and efficiency,an optimization strategy for the OMM process is proposed.Based on the kinematic chain of the machine tools,the relationship between the angle combination of rotary axes,the stylus orientation,and the calibration position of pre-travel error is disclosed.Additionally,an OMM efficiency optimization model for complex curved surfaces is developed.This model is solved to produce the optimal efficiency angle combinations for each to-be-measured point.Within each angle combination,the effects of positioning errors on measurement results are addressed by coordinate system offset and measurement result compensation method.Finally,the experiments on an impeller are used to demonstrate the practical utility of the proposed method. 展开更多
关键词 on-machine measurement complex curved surfaces efficiency optimization error compensation
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基于在机测量的复杂曲面侧铣加工误差补偿研究 被引量:12
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作者 郑刚 阮胜 +1 位作者 吴雁 吕博鑫 《科学技术与工程》 北大核心 2016年第21期295-298,共4页
叶片类薄壁零件的加工误差测量与补偿,一直以来都是其精密加工的关键和难点。为了提高复杂曲面零件的加工效率与加工精度,采用基于在机测量的复杂曲面侧铣加工误差补偿方法。在复杂曲面零件侧铣加工后,测量并分析实际测点与设计曲面采... 叶片类薄壁零件的加工误差测量与补偿,一直以来都是其精密加工的关键和难点。为了提高复杂曲面零件的加工效率与加工精度,采用基于在机测量的复杂曲面侧铣加工误差补偿方法。在复杂曲面零件侧铣加工后,测量并分析实际测点与设计曲面采样点间的误差。通过调整加工刀位实现复杂曲面侧铣加工的误差补偿。以一个叶片的侧铣加工与误差测量为实例,经侧铣加工、在线检测、误差分析、侧铣加工刀位调整、再加工测量等环节,通过实例零件的加工误差在机检测与调整刀位后的误差实验结果的比较,实例零件的加工精度有较大提高,验证了上述方法的有效性。 展开更多
关键词 复杂曲面 在机测量 侧铣误差补偿
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