Ultrasonic Automatic Scanning for Flaw of Wheel Hubs of Vehicle
摘 要
针对汽车、轮式工程载重车辆等车轮的轮毂在使用过程中存在的各种缺陷,特别是承受载荷较大的曲面部位,设计研制了A,C轴装置并形成了一套运用于轮毂曲面检测的超声自动检测系统,并对汽车轮毂曲面部位进行扫查试验,论证了该自动检测系统的可行性,解决了手工检测速度慢、精度低的难题。
Abstract
As for automobile and wheel engineering load vehicle, there are multiple inner flaws during the repeated use of their wheel hubs, especially in the curved surface which is subjected to large load, so rotating shaft A and C has been designed, and then an ultrasonic automatic testing system is developed for the curved surface of wheel hubs. Some experiments have been conducted to proof the feasibility of this system, solving the problem of low speed and short precision by manual operation.
中图分类号 TG115.28
所属栏目 试验研究
基金项目 国家重大专项基金(2011ZX0414-081)和国家国际合作专项基金资助项目(2012DFA70260)
收稿日期 2012/8/31
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备注夏沙(1987-),男,硕士,主要从事超声C扫描、运动控制与图像显示研究。
引用该论文: XIA Sha,XU Chun-Guang,ZHAO Xin-Yu,SHAN Zhi-Peng,XIAO Ding-Guo. Ultrasonic Automatic Scanning for Flaw of Wheel Hubs of Vehicle[J]. Nondestructive Testing, 2013, 35(7): 21~23
夏沙,徐春广,赵新玉,单志鹏,肖定国. 车辆轮毂缺陷的超声自动扫查[J]. 无损检测, 2013, 35(7): 21~23
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参考文献
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【3】TIMOTHY J Case, ROBERT C Waag. Flaw Identification from Time and Frequency Features of Ultrasonic Waveforms[J]. Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on, 1996,43(4):592-600.
【4】PALANICHAMY P, VASUDEVAN M. Ultrasonic Techniques for Assessment of Microstructures and Residual Stresses in Austenitic Stainless Steels [J]. Journal of Pure and Applied Ultrasonics, 2010,32(4):101-108.
【5】ROCKSTOH B, WALTE F. New ultrasound testing systems for the production testing of rail wheels [J]. Insight-Non-Destructive Testing and Condition Monitoring, 2007, 49(6): 333-336.
【2】TAKESURE N, ZHANG G. Precise position control of robot arms using a homogeneous ER fluid [J]. Control Systems Magazine, IEEE, 1999,19(2):55-61.
【3】TIMOTHY J Case, ROBERT C Waag. Flaw Identification from Time and Frequency Features of Ultrasonic Waveforms[J]. Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on, 1996,43(4):592-600.
【4】PALANICHAMY P, VASUDEVAN M. Ultrasonic Techniques for Assessment of Microstructures and Residual Stresses in Austenitic Stainless Steels [J]. Journal of Pure and Applied Ultrasonics, 2010,32(4):101-108.
【5】ROCKSTOH B, WALTE F. New ultrasound testing systems for the production testing of rail wheels [J]. Insight-Non-Destructive Testing and Condition Monitoring, 2007, 49(6): 333-336.
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