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Self-calibration and Compensation of Setting Errors for Surface Profile Measurement of a Microstructured Roll Workpiece 被引量:3

Self-calibration and Compensation of Setting Errors for Surface Profile Measurement of a Microstructured Roll Workpiece
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摘要 Microstructured roll workpieces have been widely used as functional components in the precision industries. Current researches on quality control have focused on surface profile measurement of microstructured roll workpieces, and types of measurement systems and measurement methods have been developed. However, low measurement efficiency and low measurement accuracy caused by setting errors are the common disadvantages for surface profile measurement of microstructured roll workpieces. In order to shorten the measurement time and enhance the measurement accuracy, a method for self-calibration and compensation of setting errors is proposed for surface profile measurement of microstructured roll workpieces. A measurement system is constructed for the measurement, in which a precision spindle is employed to rotate the roll workpiece and an air-bearing displacement sensor with a micro-stylus probe is employed to scan the microstructured surface of the roll workpiece. The resolution of the displacement sensor is 0.14 nm and that of the rotary encoder of the spindle was 0.15r~. Geometrical and mathematical models are established for analyzing the influences of the setting errors of the roll workpiece and the displacement sensor with respect to the axis of the spindle, including the eccentric error of the roll workpiece, the offset error of the sensor axis and the zero point error of the sensor output. Measurement experiments are carded out on a roll workpiece on which periodic microstructures are a period of 133 i^m along the circumferential direction. Experimental results demonstrate the feasibility of the self-compensation method. The proposed method can be used to detect and compensate the setting errors without using any additional accurate artifact. Microstructured roll workpieces have been widely used as functional components in the precision industries. Current researches on quality control have focused on surface profile measurement of microstructured roll workpieces, and types of measurement systems and measurement methods have been developed. However, low measurement efficiency and low measurement accuracy caused by setting errors are the common disadvantages for surface profile measurement of microstructured roll workpieces. In order to shorten the measurement time and enhance the measurement accuracy, a method for self-calibration and compensation of setting errors is proposed for surface profile measurement of microstructured roll workpieces. A measurement system is constructed for the measurement, in which a precision spindle is employed to rotate the roll workpiece and an air-bearing displacement sensor with a micro-stylus probe is employed to scan the microstructured surface of the roll workpiece. The resolution of the displacement sensor is 0.14 nm and that of the rotary encoder of the spindle was 0.15r~. Geometrical and mathematical models are established for analyzing the influences of the setting errors of the roll workpiece and the displacement sensor with respect to the axis of the spindle, including the eccentric error of the roll workpiece, the offset error of the sensor axis and the zero point error of the sensor output. Measurement experiments are carded out on a roll workpiece on which periodic microstructures are a period of 133 i^m along the circumferential direction. Experimental results demonstrate the feasibility of the self-compensation method. The proposed method can be used to detect and compensate the setting errors without using any additional accurate artifact.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第1期14-22,共9页 中国机械工程学报(英文版)
关键词 measurement profile setting error SELF-CALIBRATION COMPENSATION microstructure roll workpiece measurement, profile, setting error, self-calibration, compensation, microstructure, roll workpiece
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  • 1LIU Guanglei,CHANG Kai,LIU Zeliang.Reverse Engineering of Machine-tool Settings with Modified Roll for Spiral Bevel Pinions[J].Chinese Journal of Mechanical Engineering,2013,26(3):573-584. 被引量:2
  • 2NIZA M E, KOMORI M, NOMURA T, et al. Test rig for micro gear and experimental analysis on the meshing condition and failure characteristics of steel micro involute gear and metallic glass one[l]. Mechanism and Machine Theory, 2010, 45(12): 1797-1 812. 被引量:1
  • 3WALDSCHIK A, BUTTGENBACH S. Micro gear pump with internal electromagnetic drive[J]. Microsystem Technologies, 2010, 16(8-9): 1581-1587. 被引量:1
  • 4XU B, SHIMIZU Y, ITO S, et al. A micro-ball tapping probe for form measurement of micro-structured surface[J].Journal of The Chinese Society of Mechanical Engineers, 2013, 24(5): 507-515. 被引量:1
  • 5SUZUKI H, MORIWAKI T, YAMAMOTO Y, et al. Precision cutting of aspherical ceramic molds with micro PCD milling tool[J]. CIRP Annals-Manufacturing Technology, 2007, 56(1): 131-134. 被引量:1
  • 6MEKARU H, OHTOMO A, TAKAGI H, et al. High-speed imprinting on plastic optical fibers using cylindrical mold with hybrid microstructures[J]. Microelectronic Engineering, 2013, 110: 156-162. 被引量:1
  • 7GAO W, DEJIMA S, SHIMIZU Y, et al. Precision measurement of two-axis positions and tilt motions using a surface encoder[J]. CIRP Annals-Manufacturing Technology, 2003, 52(1): 435-438. 被引量:1
  • 8BRUZZONE A A G, COSTA H L, LONARDO P M, et al. Advances in engineered surfaces for functional performance[J]. Annals?Manufacturing Technology, 2008,57(2): 750-769. 被引量:1
  • 9TAKEOKA F, KOMORI M, TAKAHASHI M, et al. Gear checker analysis and evaluation using a virtual gear checker[J]. Measurement Science and Technology, 2009, 20(4): 045104. 被引量:1
  • 10LOU Z F, LING S Y, HE H Z, et al. A kind of multi-step method for measuring pitch deviation of a gear[J]. Measurement Science and Technology, 2012, 23(11): 115002. 被引量:1

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