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Dynamics Analysis of Spatial Parallel Mechanism with Irregular Spherical Joint Clearance

机译:不规则球形关节间隙空间平行机构的动力学分析

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摘要

Clearances caused by machining accuracy and assembly requirements are regular, but they will be irregular due to the wear of the kinematic pairs. At present, there are few studies on wear of space kinematic pairs. In order to grasp the effect of irregular spherical joint clearance after wear on the dynamic response, a method for solving irregular clearance problems based on the Newton-Euler method is proposed, and the dynamic response of 4-UPS-UPU spatial parallel mechanism with irregular spherical joint clearance is investigated. The kinematic model and contact force model of the clearance of the spherical joint are derived. The dynamic model of the mechanism with spherical joint clearance is established by the Newton-Euler method. Based on the Archard model, the three-dimensional dynamic wear model for spherical joint with clearances is developed. The wear depth and wear position of the spherical joint are obtained by the numerical solution. The method of reconstructing the geometric morphology after wear is proposed based on the finite element thought. The solution of the irregular clearance problem is put forward, and the dynamic response of the mechanism after wear is also analyzed. The results show that the dynamic response curves of the mechanism fluctuate around the ideal curves whether before wear or after wear. Compared with the regular clearance before wear, the results of the irregular clearance after wear have a greater impact on acceleration and contact force, and the vibration of the acceleration and contact force curve become more intense than before. Moreover, the displacement, velocity, and acceleration curves of the irregular clearance show some hysteresis than that before wear. Therefore, it can be inferred that the irregular clearance has more adverse effects on the mechanism and aggravates the wear between the elements of the kinematic joint; in addition, the stability and the reliability of the mechanism can be reduced.
机译:通过加工精度和装配要求引起的间隙是常规的,但由于运动型对的磨损,它们将是不规则的。目前,很少有关于空间运动对的磨损研究。为了掌握在动态响应后磨损后的不规则球形关节间隙的效果,提出了一种基于牛顿 - 欧拉方法的不规则间隙问题的方法,以及4 - UPSU空间平行机制的动态响应调查球形关节间隙。衍生球形关节间隙的运动模型和接触力模型。牛顿 - 欧拉方法建立了球形关节间隙的动态模型。基于Archard模型,开发了间隙的三维动态磨损模型。球形接头的磨损深度和磨损位置通过数值溶液获得。基于有限元思想,提出了在磨损之后重建几何形态的方法。提出了不规则间隙问题的解决方案,并分析了磨损后机构的动态响应。结果表明,无论是在磨损之前还是磨损后,机构的动态响应曲线都会围绕理想曲线波动。与磨损前的正常间隙相比,磨损后不规则间隙的结果对加速和接触力产生了更大的影响,并且加速度和接触力曲线的振动比以前更强烈。而且,不规则间隙的位移,速度和加速度曲线显示出比磨损前的一些滞后。因此,可以推断出不规则的间隙对机制具有更大的不利影响,并加剧了运动接头的元件之间的磨损;另外,可以减少机构的稳定性和可靠性。

著录项

  • 来源
    《Shock and vibration》 |2019年第9期|6242971.1-6242971.21|共21页
  • 作者

    Chen Xiulong; Li Yuewen;

  • 作者单位

    Shandong Univ Sci & Technol Coll Mech & Elect Engn Qingdao 266590 Shandong Peoples R China;

    Shandong Univ Sci & Technol Coll Mech & Elect Engn Qingdao 266590 Shandong Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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