液压缸的设计与实现

P. Luo
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引用次数: 3

摘要

将液压能从液压缸转换为机械能的装置称为执行器。执行机构是直接执行者,从能量转换的角度来看,与液压泵具有相反的作用。执行器按能量转换原理可分为液压马达、液压缸和摆动液压马达(又称摆动液压缸)三种类型。液压马达是一种连续旋转并输出扭矩的液压执行器;液压缸是作往复直线运动和输出的液压执行机构。本手册是对液压缸的工作环境和要求,确定液压缸的压力、承载能力,从而确定气缸的直径、壁厚和活塞杆的直径。零件的工艺是根据液压缸零件的要求确定的。根据零件的精度要求,确定加工方法,并用于制作工艺卡,完成零件的加工。
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Design and Realization of Hydraulic Cylinder
A device that converts hydraulic energy from a hydraulic cylinder to mechanical energy is known as actuator. The actuator is a direct performer, and has the opposite role of the hydraulic pump from the point of view of energy conversion. According to principle of energy conversion, the actuators can be divided into three types: hydraulic motors, hydraulic cylinders, and swing hydraulic motor (also called swing hydraulic cylinder). The hydraulic motor is a hydraulic actuator that continuously rotates and outputs torque; and the hydraulic cylinder is a hydraulic actuator for reciprocating linear motion and output. This manual is of the hydraulic cylinder working environment and requirements to determine the pressure of the hydraulic cylinder, carrying capacity which determine the cylinder diameter, wall thickness and piston rod diameter. The process of parts is determined based on the requirements of the hydraulic cylinder parts. Based on the precision requirements of parts, the processing method is determined and is used in the making of process cards to complete the processing of parts.
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