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机构地区:[1]江西理工大学机电工程学院,江西赣州341000
出 处:《筑路机械与施工机械化》2016年第2期96-99,102,共5页Road Machinery & Construction Mechanization
基 金:江西省教育厅科技计划项目(GJJ12334)
摘 要:针对搅拌筒在工作过程中存在前端板与前锥段焊接部位焊缝开裂及支撑托轮破坏等问题,利用有限元分析软件ANSYS与Workbench对搅拌车制动和卸料工况进行了静力分析,得出了2种工况下搅拌筒的受力和变形规律,找出了搅拌筒结构的薄弱部位。以搅拌筒质量为目标函数对其结构和主要尺寸进行优化,并根据优化结果选出了较为理想的搅拌筒尺寸。优化后的筒体总重量降低了14.02%,强度和刚度均得到了提高,解决了轨轮式混凝土输送车搅拌筒焊缝开裂及支撑托轮破坏等问题,对产品结构改进设计、降低制造成本具有一定的参考价值。In order to find out the causes of supporting roller damage and weld cracking at the position of front panel and front cone in mixing drum, statical analysis of the working process of braking and unloading was conducted by using the software of ANSYS Workbench. According to the simulation, the rule of force and deformation in different cases was obtained, and the weakest spot of the mixing drum was found. Taking the body mass as objective function, the main dimensions and structure were optimized. Compared with original design, the mass of mixing drum was reduced by 14.02%. The simulation results show that the optimization could improve the structural strength and stiffness, solve the problems such as weld cracking and supporting roller damage. Research results provide reference for structural improvement design and help to reduce the manufacturing cost.
分 类 号:U457[建筑科学—桥梁与隧道工程]
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