吉林大学学报(工学版) ›› 2018, Vol. 48 ›› Issue (3): 821-827.doi: 10.13229/j.cnki.jdxbgxb20171060
李因武1,2, 吴庆文1,2, 常志勇1,2, 杨成2, 3
LI Yin-wu1,2, WU Qing-wen1,2, CHANG Zhi-yong1,2, YANG Cheng2,3
摘要: 首先,结合仿生斗齿研究成果,应用Pro/E软件建立了某型反铲液压挖掘机整体三维仿真模型,并导入ADAMS软件中开展运动学和动力学分析。然后,获取了反铲液压挖掘机工作装置的最大挖掘半径、最大挖掘高度、最大挖掘深度、最大卸载高度、最小回转半径等作业范围参数以及斗杆最大挖掘力、铲斗最大挖掘力等主要性能参数。最后,确定动臂参数仿真优化方案为:外侧线与中线夹角为65°、动臂弯曲处的圆弧半径为210 mm。
中图分类号:
[1] Solazzi L, Scalmana R.New design concept for a lifting platform made of composite material[J]. Applied Composite Materials,2013,20(4):615-626. [2] Solazzi L.Design of aluminium boom and arm for an excavator[J]. Journal of Terramechanics,2010,47(4): 201-207. [3] 张业祥,赵刚,章翔,等. 液压挖掘机工作装置有限元分析[J]. 现代制造工程,2016(2):89-93,98. Zhang Ye-xiang,Zhao Gang,Zhang Xiang,et al.Finite element analysis for the hydraulic excavator working device[J]. Modern Manufacturing Engineering,2016(2):89-93,98. [4] 汪建华,胡晓莉,张华,等. 液压挖掘机动臂有限元分析方法研究[J]. 机械设计与制造,2013(12):170-173. Wang Jian-hua,Hu Xiao-li,Zhang Hua, et al.Study of finite element analysis method of hydraulic excavator mobile arm[J]. Machinery Design & Manufacture,2013(12):170-173. [5] Morales D O,Westerberg S,Lahera P X,et al.Increasing the level of automation in the forestry logging process with crane trajectory planning and control[J]. Journal of Field Robotics,2014,31(3):343-363. [6] Zhang Bin,Wang Shuang,Liu Yu-ting,et al.Research on trajectory planning and autodig of hydraulic excavator[J]. Mathematical Problems in Engineering,2017(1):1-10. [7] 管成,王飞,张登雨. 基于NURBS的挖掘机器人时间最优轨迹规划[J]. 吉林大学学报:工学版,2015,45(2): 540-546. Guan Cheng,Wang Fei,Zhang Deng-yu.NURBS -based time-optimal trajectory planning on robotic excavators[J]. Journal of Jilin University(Engineering and Technology Edition),2015,45(2):540-546. [8] Chen Jin,Qing Fei,Pang Xiao-ping.Mechanism optimal design of backhoe hydraulic excavator working device based on digging paths[J]. Journal of Mechanical Science and Technology,2014,28(1):213-222. [9] Wang Chun-hua,Gao Yang,Zhang Ying-yin,et al.Dynamic characteristics of the backhoe excavator bucket based on Pro/E and ANSYS[J]. Advanced Materials Research,2013,619(4):30-33. [10] Ding Hua-feng,Han Lei,Yang Wen-jian,et al.Kinematics and dynamics analyses of a new type face-shovel hydraulic excavator[J]. Journal of Mechanical Engineering Science,2017,231(5):909-924. [11] Šalini? S,Boškovi? G,Nikoli? M.Dynamic modelling of hydraulic excavator motion using Kane's equations[J]. Automation in Construction,2014,44:56-62. [12] Bennett N,Walawalkar A,Heck M,et al.Integration of digging forces in a multi-body-system model of an excavator[J]. Journal of Multi-body Dynamics,2016,230(2):159-177. [13] 邓艳宁,李发宗,王相兵,等. 基于等效有限元方法的液压挖掘机工作装置动力学及特性研究[J]. 机械科学与技术,2016,35(1):73-79. Deng Yan-ning,Li Fa-zong,Wang Xiang-bing,et al.Study on dynamics for working device of hydraulic excavator based on the equivalent finite element method[J]. Mechanical Science and Technology for Aerospace Engineering,2016,35(1):73-79. [14] 张桂菊,肖才远,谭青,等. 基于虚拟样机技术挖掘机工作装置动力学分析及仿真[J]. 中南大学学报:自然科学版,2014,45(6):1827-1833. Zhang Gui-ju,Xiao Cai-yuan,Tan Qing,et al.Dynamic analysis and simulation of excavator working device based on virtual prototype technology[J]. Journal of Central South University (Science and Technology),2014,45(6):1827-1833. [15] 邱清盈,魏振凯,高宇,等. 挖掘机工作装置疲劳分析方法[J]. 吉林大学学报:工学版,2016,46(1):161-165. Qiu Qing-ying,Wei Zhen-kai,Gao yu, et al. Fatigue analysis method of working devices of hydraulic excavator[J]. Journal of Jilin University (Engineering and Technology Edition),2016,46(1):161-165. [16] 银光球,林述温,张宁. 单斗液压挖掘机反铲装置动力学模型的建立[J]. 中国工程机械学报,2014,12(3):189-193. Yin Guang-qiu,Lin Shu-wen,Zhang Ning.Dynamical modeling for backhoe device of single-bucket hydraulic excavators[J]. Chinese Journal of Construction Machinery,2014,12(3):189-193. [17] Guo Xing,Mao Yi-chao,Kang Kai.Dynamic simulation research on hydraulic system of backhoe dredger excavator[J]. Human Centered Computing,2015,8944:757-764. [18] 杨成. 挖掘机工作装置的斗齿仿生及动臂优化研究[D]. 长春:吉林大学生物与农业工程学院,2013. Yang Cheng.The bionic bucket teeth and optimization of boom of excavator working device[D]. Changchun: College of Biological and Agricultural Engineering, Jilin University,2013. [19] 张琰,黄河,任露泉. 仿生挖掘机斗齿减阻试验[J]. 吉林大学学报:工学版,2012,42(增刊1):126-130. Zhang Yan, Huang He, Ren Lu-quan.Drag reduction experiment of bionic excavator bucket teeth[J]. Journal of Jilin University (Engineering and Technology Edition),2012,42(Sup.1):126-130. |
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