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Accuracy Analysis and Design of A3 Parallel Spindle Head 被引量:8

Accuracy Analysis and Design of A3 Parallel Spindle Head
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摘要 As functional components of machine tools, parallel mechanisms are widely used in high efficiency machining of aviation components, and accuracy is one of the critical technical indexes. Lots of researchers have focused on the accuracy problem of parallel mechanisms, but in terms of controlling the errors and improving the accuracy in the stage of design and manufacturing, further efforts are required. Aiming at the accuracy design of a 3-DOF parallel spindle head(A3 head), its error model, sensitivity analysis and tolerance allocation are investigated. Based on the inverse kinematic analysis, the error model of A3 head is established by using the first-order perturbation theory and vector chain method. According to the mapping property of motion and constraint Jacobian matrix, the compensatable and uncompensatable error sources which affect the accuracy in the end-effector are separated. Furthermore, sensitivity analysis is performed on the uncompensatable error sources. The sensitivity probabilistic model is established and the global sensitivity index is proposed to analyze the influence of the uncompensatable error sources on the accuracy in the end-effector of the mechanism. The results show that orientation error sources have bigger effect on the accuracy in the end-effector. Based upon the sensitivity analysis results, the tolerance design is converted into the issue of nonlinearly constrained optimization with the manufacturing cost minimum being the optimization objective. By utilizing the genetic algorithm, the allocation of the tolerances on each component is finally determined. According to the tolerance allocation results, the tolerance ranges of ten kinds of geometric error sources are obtained. These research achievements can provide fundamental guidelines for component manufacturing and assembly of this kind of parallel mechanisms. As functional components of machine tools, parallel mechanisms are widely used in high efficiency machining of aviation components, and accuracy is one of the critical technical indexes. Lots of researchers have focused on the accuracy problem of parallel mechanisms, but in terms of controlling the errors and improving the accuracy in the stage of design and manufacturing, further efforts are required. Aiming at the accuracy design of a 3-DOF parallel spindle head(A3 head), its error model, sensitivity analysis and tolerance allocation are investigated. Based on the inverse kinematic analysis, the error model of A3 head is established by using the first-order perturbation theory and vector chain method. According to the mapping property of motion and constraint Jacobian matrix, the compensatable and uncompensatable error sources which affect the accuracy in the end-effector are separated. Furthermore, sensitivity analysis is performed on the uncompensatable error sources. The sensitivity probabilistic model is established and the global sensitivity index is proposed to analyze the influence of the uncompensatable error sources on the accuracy in the end-effector of the mechanism. The results show that orientation error sources have bigger effect on the accuracy in the end-effector. Based upon the sensitivity analysis results, the tolerance design is converted into the issue of nonlinearly constrained optimization with the manufacturing cost minimum being the optimization objective. By utilizing the genetic algorithm, the allocation of the tolerances on each component is finally determined. According to the tolerance allocation results, the tolerance ranges of ten kinds of geometric error sources are obtained. These research achievements can provide fundamental guidelines for component manufacturing and assembly of this kind of parallel mechanisms.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第2期239-249,共11页 中国机械工程学报(英文版)
基金 Supported by National Natural Science Foundation of China(Grant No.51575385)
关键词 A3 head error model sensitivity analysis tolerance allocation A3 head error model sensitivity analysis tolerance allocation
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  • 1王伟,贠超.机器人机构精度综合的正交试验法[J].机械工程学报,2009,45(11):18-24. 被引量:17
  • 2黄田,唐国宝,李思维,李亚,G.Derek Chetwynd,J.David Whitehouse.Kinematic calibration of a class of parallel kinematic machines(PKM) with fewer than six degrees of freedom[J].Science China(Technological Sciences),2003,46(5):515-526. 被引量:8
  • 3Online business news from the Midlands. Midlands based firm Kuka's robots show how to boost aero assembly operations[OL]. Midlands Business News, [2010-05-05]. co.uk/2010-05/midlands- based-firm-kuka's-robots-show-how-to-boost-aero-assem bly-operations-.aspx. 被引量:1
  • 4NEUMANM K E. Tricept application[C]//Proceedings- 3rd Chemnitz Parallel Kinematics Seminar, Zwickau, Germany. 2002: 547-551. 被引量:1
  • 5Korea Aerospace. 5 axis machining centres[OL]. [2009-06-14]. http: //www.machinetooldirect.co.uk/engineers- case-studies/5-axis-machining-centres-.asp. 被引量:1
  • 6黄田,李蒙,张大卫,等.四自由度混联机器人:中国,1439492[P].2003-09-03. 被引量:1
  • 7LI Meng, HUANG Tian, ZHANG Dawei, et al. Conceptual design and dimensional synthesis of a reconfignrable hybrid robot[J]. ASME Journal of Manufacturing Science and Engineering, 2005, 127(6): 647-654. 被引量:1
  • 8HUANG Tian, WANG Panfeng, ZHAO Xueman, et al.Design of a 4-DOF hybrid PKM module for large structural component assembly[J]. CIRP Annals ManufacturingTeehnology, 2010, 59(1):159-162. 被引量:1
  • 9PIRAS G, CLEGHORN W L, MILLS J K. Dynamic finite-element analysis of a planar high-speed, high-precision parallel manipulator with flexible links[J]. Mechanism and Machine Theory, 2005, 40(7). 849-862. 被引量:1
  • 10LONG C S, SNYMAN J A, GROENWOLD A A. Optimal structural design of a planar parallel platform for machining [J]. Applied Mathematical Modelling, 2003, 27(8). 581-609. 被引量:1

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