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Load Allocation and Equilibrium for Planetary Gear Reducers of Earth-Pressure-Balance Shield Machine

机译:地球压力平衡屏蔽机行星齿轮减速器的负载分配和平衡

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To optimize the 3-stages planetary gear reducer (PGR) in the Earth-Pressure-Balance Shield Machine (EPBSM), it is necessary to firstly define the EPBSM environment. The needed torque of the cutter-head, therefore, is analyzed when the EPBSM cutting the earth body. The load of any PGR is allocated according to the equivalent principle in the size between the force and its response one and the distributing uniformity of the PGRs around the main axle gear. Because the structure of the main drive system is equal to a huge planet-gear reducer made of 8 planetary gears, for the main axle connected with it gear, one side is connected with a bidentate coupling, the other is connected with an elastic shaft to realize the dual connection floatability of the main axle gear and support the whole main axle gear so that the relative displacement can be compensated to high degree among the PGRs resulting from the uneven force when the cutter-head cuts earth body.
机译:为了优化地面压力平衡屏蔽机(EPBSM)中的3分阶段行星齿轮减速器(PGR),有必要首先定义EPBSM环境。因此,当切割地球体的EPBSM时,切割刀头的所需扭矩。根据力及其响应之间的尺寸的等效原理分配任何PGR的负载以及主轴齿轮周围的PGR的均匀性。由于主驱动系统的结构等于由8个行星齿轮制成的巨大行星减速器,所以对于与IT齿轮连接的主轴,一侧与双齿联接器连接,另一侧与弹性轴连接到实现主轴齿轮的双连接浮动性,并支撑整个主轴齿轮,使得当切割头切割地球体时由不均匀的力产生的PGR中的相对位移可以补偿到高度。

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