首页> 外国专利> MULTI-CYLINDER ROTARY COMPRESSOR AND VAPOR COMPRESSION REFRIGERATION CYCLE DEVICE PROVIDED WITH MULTI-CYLINDER ROTARY COMPRESSOR

MULTI-CYLINDER ROTARY COMPRESSOR AND VAPOR COMPRESSION REFRIGERATION CYCLE DEVICE PROVIDED WITH MULTI-CYLINDER ROTARY COMPRESSOR

机译:多缸旋转压缩机及带多缸旋转压缩机的蒸气压缩制冷循环装置

摘要

A multi-cylinder rotary compressor (100) is provided with a plurality of compression mechanism units (a first compression mechanism unit (10) and a second compression mechanism unit (20)). The compressor is provided with a holding mechanism which causes a vane of at least one compression mechanism unit among the plurality of compression mechanism units to have smaller pressing force for pressing the vane to the piston side than the other compression mechanism units by pull-up force acting outward in the radial direction of a drive shaft, normally performs a compression operation since pressing force generated by the gas pressure difference between inlet pressure and discharge pressure is larger than the pull-up force, and a vane leading end goes into the state of being pressed against the outer peripheral wall of a rotary piston, when the pull-up force becomes larger than the pressing force, automatically separates the vane leading end from the outer peripheral wall of the piston while maintaining a communication space for introducing oil from a closed container to a vane back surface in a discharge pressure state and maintaining the vane leading end in an inlet pressure state, and when the vane leading end is separated from the rotary piston by a given distance or more, stably holds the vane at a separated position by the difference of the pull-up force from the pressing force greatly changing in terms of a step function, and brings about an uncompressed state.
机译:多缸旋转式压缩机(100)具备多个压缩机构部(第一压缩机构部(10)和第二压缩机构部(20))。压缩机设置有保持机构,该保持机构使多个压缩机构单元中的至少一个压缩机构单元的叶片通过上拉力具有比其他压缩机构单元小的将叶片压向活塞侧的按压力。由于由入口压力和排出压力之间的气体压力差产生的按压力大于上拉力,并且叶片前端进入压缩空气状态,因此沿驱动轴的径向向外作用的压力通常执行压缩操作。当上拉力变得大于按压力时,将叶片前端与活塞的外周壁自动分离,同时保持用于从封闭空间引入油的连通空间。容器以排放压力状态到达叶片背面,并保持叶片前端处于入口压力状态,并且当叶片前端与旋转活塞分开一定距离或更多时,通过上拉力与按压力的差在阶跃函数方面发生很大变化,将叶片稳定地保持在分离位置,并带来未压缩状态。

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