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挖掘机器人工作装置的弹性动力学分析及优化设计
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作者 李海虹 邹久礼 +2 位作者 李建成 贾育秦 陈志恢 《振动工程学报》 EI CSCD 北大核心 2014年第2期263-268,共6页
以某型挖掘机器人工作装置作为分析对象,考虑柔性单元的变形对运行精度的影响,根据机构弹性动力学理论,对挖掘瞬间的挖掘机器人的工作装置进行动力学建模及模态分析;以提高其前四阶固有频率的加权和作为优化目标函数,选取单元长度作为... 以某型挖掘机器人工作装置作为分析对象,考虑柔性单元的变形对运行精度的影响,根据机构弹性动力学理论,对挖掘瞬间的挖掘机器人的工作装置进行动力学建模及模态分析;以提高其前四阶固有频率的加权和作为优化目标函数,选取单元长度作为优化变量,采用分层递进的优化策略,对联接动臂与动臂油缸的铰点进行优化,并在此优化结果的基础上,进一步对联接动臂与斗杆的铰点进行优化。两次优化均在保持原有约束条件及性能参数的情况下,运用粒子群优化算法完成。通过性能参数对比,可以认为本次优化使挖掘机器人工作装置动力学特性得以改善。 展开更多
关键词 挖掘机器人 弹性动力学建模 优化设计 粒子群优化算法 工作装置
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Elastodynamic modeling and joint reaction prediction for 3-PRS PKM 被引量:4
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作者 张俊 赵艳芹 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期2971-2979,共9页
To gain a thorough understanding of the load state of parallel kinematic machines(PKMs), a methodology of elastodynamic modeling and joint reaction prediction is proposed. For this purpose, a Sprint Z3 model is used a... To gain a thorough understanding of the load state of parallel kinematic machines(PKMs), a methodology of elastodynamic modeling and joint reaction prediction is proposed. For this purpose, a Sprint Z3 model is used as a case study to illustrate the process of joint reaction analysis. The substructure synthesis method is applied to deriving an analytical elastodynamic model for the 3-PRS PKM device, in which the compliances of limbs and joints are considered. Each limb assembly is modeled as a spatial beam with non-uniform cross-section supported by lumped virtual springs at the centers of revolute and spherical joints. By introducing the deformation compatibility conditions between the limbs and the platform, the governing equations of motion of the system are obtained. After degenerating the governing equations into quasi-static equations, the effects of the gravity on system deflections and joint reactions are investigated with the purpose of providing useful information for the kinematic calibration and component strength calculations as well as structural optimizations of the 3-PRS PKM module. The simulation results indicate that the elastic deformation of the moving platform in the direction of gravity caused by gravity is quite large and cannot be ignored. Meanwhile, the distributions of joint reactions are axisymmetric and position-dependent. It is worthy to note that the proposed elastodynamic modeling method combines the benefits of accuracy of finite element method and concision of analytical method so that it can be used to predict the stiffness characteristics and joint reactions of a PKM throughout its entire workspace in a quick and accurate manner. Moreover, the present model can also be easily applied to evaluating the overall rigidity performance as well as statics of other PKMs with high efficiency after minor modifications. 展开更多
关键词 parallelkinematic machine (PKM) 3-PRS PKM Sprint Z3 head elastodynamic modeling joint reaction
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