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Rectifying control of wire diameter during dieless drawing by a deformation measuring method of interframe displacement

Rectifying control of wire diameter during dieless drawing by a deformation measuring method of interframe displacement
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摘要 A deformation measurement method of interframe displacement was proposed in this paper. By online monitoring the shape di- mensions of both the deformation zone and its adjacent zone by machine vision, the initial and terminative positions of deformation were dynamically identified during dieless drawing, and the global monitoring and online closed-loop control of the deformation zone were achieved. The dieless drawing process was systematically carried out on NiTi shape memory alloy wires. It is shown that the deformation measurement method of interframe displacement can track the axial displacement of the wires, but this cannot be achieved by traditional machine vision. The initial and terminative positions of deformation can be accurately identified by this method. The proposed rectifying control technology can effectively decrease the wire diameter fluctuation during dieless drawing, that is, the standard deviation of the wire diameter fluctuation could be decreased fi'om 0.30 to 0.08 mm after three passes of dieless drawing, indicating that the control system has a good rectifying ability. A deformation measurement method of interframe displacement was proposed in this paper. By online monitoring the shape di- mensions of both the deformation zone and its adjacent zone by machine vision, the initial and terminative positions of deformation were dynamically identified during dieless drawing, and the global monitoring and online closed-loop control of the deformation zone were achieved. The dieless drawing process was systematically carried out on NiTi shape memory alloy wires. It is shown that the deformation measurement method of interframe displacement can track the axial displacement of the wires, but this cannot be achieved by traditional machine vision. The initial and terminative positions of deformation can be accurately identified by this method. The proposed rectifying control technology can effectively decrease the wire diameter fluctuation during dieless drawing, that is, the standard deviation of the wire diameter fluctuation could be decreased fi'om 0.30 to 0.08 mm after three passes of dieless drawing, indicating that the control system has a good rectifying ability.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第7期615-621,共7页 矿物冶金与材料学报(英文版)
基金 financially supported by the National Basic Research Priorities Program of China (No.2011CB606300) the National Natural Science Foundation of China (Nos.50634010 and 50674008) the Program for New Century Excellent Talents in Chinese Universities(No.NCET-06-0083) the Universities Fundamental Research Foundation of the Ministry of Education, China (No.FRF-TP-10-002B)
关键词 wire drawing RECTIFICATION DEFORMATION machine vision closed loop control systems nickel alloys sha^oe memory effect wire drawing rectification deformation machine vision closed loop control systems nickel alloys sha^oe memory effect
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