本压力均衡补偿器装置,同时具有轴向补偿和径向补偿功能,并且补偿范围广,幅度大。1.当有轴向形变时,静端导体5和11之关发生轴向移动,从而带动的英语翻译

本压力均衡补偿器装置,同时具有轴向补偿和径向补偿功能,并且补偿范围广,

本压力均衡补偿器装置,同时具有轴向补偿和径向补偿功能,并且补偿范围广,幅度大。1.当有轴向形变时,静端导体5和11之关发生轴向移动,从而带动动端导体6和9发生轴向位移,导致对弹簧7的压力增大或减少,引起弹簧的形变量发生变化,从而吸收或补尝轴向形变量。(如图2,3所示)2.当有径向形变时,静端导体5和11之间发生轴向移动,使得动导体6和9的球形触头,在静导体5和11的球面凹槽内转动,引起动导体6和9之间,发生相对位移,使得7弹簧的形变量发生变化,从而吸收或补尝径向形变量。(如图4所示)
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目标语言: -
结果 (英语) 1: [复制]
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The pressure equalization compensator device has both axial compensation and radial compensation functions, and has a wide compensation range and a large amplitude. <br>1. When there is an axial deformation, the axial movement of the static end conductors 5 and 11 occurs, which causes the axial displacement of the moving end conductors 6 and 9 to cause the pressure on the spring 7 to increase or decrease, causing the spring shape The variable changes to absorb or compensate for the axial deformation. (As shown in Figures 2 and 3) <br>2. When there is radial deformation, the axial movement between the static conductors 5 and 11 occurs, so that the spherical contacts of the moving conductors 6 and 9 are on the spherical surfaces of the static conductors 5 and 11 The rotation in the groove causes a relative displacement between the moving conductors 6 and 9, causing the deformation of the spring 7 to change, thereby absorbing or compensating the radial deformation. (As shown in Figure 4)
正在翻译中..
结果 (英语) 2:[复制]
复制成功!
The pressure equalization compensator device, which also has axial compensation and radial compensation function, and the compensation range is wide and large.<br>1. When there is axial deformation, the static conductors 5 and 11 pass axially move, thus driving the dynamic end conductors 6 and 9 axial displacement, resulting in the pressure on the spring 7 increased or decreased, causing the spring shape variables to change, thereby absorbing or replenishing axial variables. (As shown in Figure 2, 3)<br>2. When there is radial deformation, the static conductors 5 and 11 between the axial movement, so that the moving conductors 6 and 9 of the spherical contact, in the static conductor 5 and 11 spherical grooves, causing the dynamic conductor 6 and 9 between the relative displacement, so that the shape of 7 springs change variables, so as to absorb or complement the radial variables. (Shown in Figure 4)
正在翻译中..
结果 (英语) 3:[复制]
复制成功!
The pressure equalizing compensator has the functions of axial compensation and radial compensation, and the compensation range is wide and the range is large.<br>1. When there is axial deformation, the static end conductors 5 and 11 will move axially, which will drive the moving end conductors 6 and 9 to shift axially, which will increase or decrease the pressure on the spring 7, and change the shape variable of the spring, so as to absorb or supplement the axial shape variable. (as shown in Figure 2, 3)<br>2. When there is radial deformation, the axial movement occurs between the static end conductors 5 and 11, making the spherical contact of the dynamic conductors 6 and 9 rotate in the spherical groove of the static conductors 5 and 11, causing the relative displacement between the dynamic conductors 6 and 9, making the shape variable of the 7 spring change, so as to absorb or supplement the radial shape variable. (as shown in Figure 4)
正在翻译中..
 
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