大型液压启闭机油缸活塞杆的计算分析研究  被引量:9

CALCULATION AND ANALYSIS ON THE LARGE-SCALE HYDRAULIC HOIST CYLINDER PISTON

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作  者:刘礼华[1] 陈五一[2] 魏晓斌[1] 王蒂[1] 欧珠光[1] 

机构地区:[1]武汉大学土木建筑工程学院,武汉430072 [2]中国水电顾问集团成都勘测设计研究院,成都610072

出  处:《工程力学》2010年第4期185-189,207,共6页Engineering Mechanics

摘  要:对水利工程中的大型液压启闭机油缸活塞杆进行了计算分析,在分析中考虑了油缸与活塞杆联接间隙所引起的几何变形和油缸活塞杆自重对杆轴横向变形的影响,依据固体力学基础理论对油缸活塞杆的受力与变形进行了定量计算推导,并结合工程实际给出了具体应用算例。该文中指出了目前水利工程运行管理人员对此类启闭机油缸活塞杆安全控制条件的误解。结果表明,考虑几何变形和自重影响的油缸活塞杆的受压问题应属于第二类稳定问题,由强度控制其安全性。研究结果有助于大型表孔弧门油缸活塞杆的设计布置,并指导电站现有油缸活塞杆的安全运行。An analysis of the large-scale hydraulic hoist cylinder piston is carried out, in which geometric dis- tortion caused by the joint gap of the hydraulic cylinder and the effect of rod axis lateral deformation for the gravity of the hydraulic cylinder piston have been considered. A quantitative calculation for load-deformation of the hydraulic cylinder piston is presented according to the basic principle of solid mechanics. Moreover a practical calculation example is given. In this paper, some misunderstanding is pointed out on the security control condition for the piston. The results show that it is the ultimate load coefficient problem to consider the effect of geometric distortion and gravity. Its security is controlled by the strength. The results would be helpful in the design layout for the hydraulic hoist cylinder piston in the large-scale gate of surface discharge outlet and guide the safe operation of the existing hydraulic hoist cylinder pistons in the hydropower project.

关 键 词:液压启闭机 油缸活塞杆 第二类稳定 受力变形 挠度 

分 类 号:TU311[建筑科学—结构工程]

 

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