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IR-TRACC传感器位移计算及标定方法 被引量:4
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作者 习波波 李月明 +2 位作者 韩刚 周大永 顾鹏云 《汽车工程学报》 2018年第3期218-222,共5页
IR-TRACC传感器主要用于World SID假人各部位压缩偏移量的数据采集,而假人内部IR-TRACC传感器位移换算方法使用存在偏差,传感器灵敏度标定系数拟合度不高,且没有特定的IR-TRACC传感器标定设备,造成传感器标定灵敏度系数偏差较大。为解... IR-TRACC传感器主要用于World SID假人各部位压缩偏移量的数据采集,而假人内部IR-TRACC传感器位移换算方法使用存在偏差,传感器灵敏度标定系数拟合度不高,且没有特定的IR-TRACC传感器标定设备,造成传感器标定灵敏度系数偏差较大。为解决上述问题,对IR-TRACC传感器位移计算及标定方法进行了研究,利用几何法得到了传感器位移换算公式,设计了一种实用简便且精度较高的传感器标定台,并运用最小二乘法拟合及单变量求解得到了传感器灵敏度标定系数的最优解。标定结果表明,经上述方法及算法标定得到的传感器灵敏度标定系数,曲线拟合的最大非线性误差较小。 展开更多
关键词 IR-TRACC 位移换算 标定方法 最小二乘法拟合 单变量求解法 最大非线性误差
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Comprehensive modeling approach of axial ultrasonic vibration grinding force 被引量:1
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作者 何玉辉 周群 +1 位作者 周剑杰 郎献军 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期562-569,共8页
The theoretical model of axial ultrasonic vibration grinding force is built on the basis of a mathematical model of cutting deforming force deduced from the assumptions of thickness of the undeformed debris under Rayl... The theoretical model of axial ultrasonic vibration grinding force is built on the basis of a mathematical model of cutting deforming force deduced from the assumptions of thickness of the undeformed debris under Rayleigh distribution and a mathematical model of friction based on the theoretical analysis of relative sliding velocity of abrasive and workpiece. Then, the coefficients of the ultrasonic vibration grinding force model are calculated through analysis of nonlinear regression of the theoretical model by using MATLAB, and the law of influence of grinding depth, workpiece speed, frequency and amplitude of the mill on the grinding force is summarized after applying the model to analyze the ultrasonic grinding force. The result of the above-mentioned law shows that the grinding force decreases as frequency and amplitude increase, while increases as grinding depth and workpiece speed increase; the maximum relative error of prediction and experimental values of the normal grinding force is 11.47% and its average relative error is 5.41%; the maximum relative error of the tangential grinding force is 10.14% and its average relative error is 4.29%. The result of employing regression equation to predict ultrasonic grinding force approximates to the experimental data, therefore the accuracy and reliability of the model is verified. 展开更多
关键词 cutting deformation force ultrasonic vibration assisted grinding (UVAG) regression equation comprehensive modeling
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