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Novel mechanism for boring non-cylinder piston pinhole based on giant magnetostrictive materials 被引量:6

Novel mechanism for boring non-cylinder piston pinhole based on giant magnetostrictive materials
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摘要 To bear more loads for heavy truck pistons, the shape of heavy truck piston pinhole is often designed as noncylinder form. Current methods cannot meet the needs for precision machining on non-cylinder piston pinhole (NCPPH). A novel mechanism based on giant magnetostrictive materials (GMM) is presented. New models are established for the servo mechanism, GMM, and magnetizing force of the control solenoid to characterize the relationship between the control current of the solenoid and the displacement of the giant magnetostrictive actuator (GMA). Experiments show that the novel mechanism can meet the needs to perform fine machining on NCPPH effectively. To bear more loads for heavy truck pistons, the shape of heavy truck piston pinhole is often designed as noncylinder form. Current methods cannot meet the needs for precision machining on non-cylinder piston pinhole (NCPPH). A novel mechanism based on giant magnetostrictive materials (GMM) is presented. New models are established for the servo mechanism, GMM, and magnetizing force of the control solenoid to characterize the relationship between the control current of the solenoid and the displacement of the giant magnetostrictive actuator (GMA). Experiments show that the novel mechanism can meet the needs to perform fine machining on NCPPH effectively.
出处 《Journal of Shanghai University(English Edition)》 CAS 2008年第4期363-367,共5页 上海大学学报(英文版)
基金 the National High-Technology Research and Development Program of China (Grant No.2006AA03z106)
关键词 giant magnetostrictive materials (GMM) PISTON PINHOLE BORING giant magnetostrictive materials (GMM), piston, pinhole, boring
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