Pneumatic tension controller and fiber-optic gyroscope winding machine
A technology of tension controller and fiber optic gyroscope, which is applied to Sagnac effect gyroscopes, air cushion bearings, mechanical equipment, etc., can solve the problems of inaccurate control of optical fiber tension and reduction of tension, so as to improve equipment operation accuracy and increase Efficient, position-accurate results
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0050] Embodiment one: a kind of pneumatic tension controller, such as figure 2 As shown, it includes a shaft 1 and a shaft sleeve 2 sleeved on it. The shaft sleeve 2 is connected with an air injection assembly 3 arranged horizontally along the tangential direction of the shaft 1. The gas ejected by the air injection assembly 3 produces a The reverse thrust in the direction makes the sleeve 2 relatively rotate around the shaft 1.
[0051] refer to figure 2 with image 3 One end of the shaft 1 extends outward along the circumference to integrally form a disc 11 , and the side wall of the disc 11 is provided with an air channel 12 distributed radially along the disc 12 , and a pipe joint 111 is fixed at the end of the air channel 12 . The side of the disk 11 in contact with the shaft sleeve 2 is provided with a through hole, the through hole communicates with the air passage 12, and a throttling plug 112 is fixed in the through hole, and the joint between the throttling plug...
Embodiment 2
[0067] Embodiment two: a kind of fiber optic gyroscope winding machine, such as Figure 5 with Image 6 As shown, it includes a bracket 4 and an axle box 5 arranged on the bracket 4. One end of the axle box 5 is connected with a linear push mechanism 6, and the axle box 5 is pierced with a shaft rod 7, and one end of the shaft rod 7 is supported on the bracket 4. The upper support plate 43 is fixed, and a rotating mechanism 8 is provided between the shaft rod 7 and the axle box 5. The end of the rotating mechanism 8 away from the linear push mechanism 6 is fixed with a winding mechanism 9, and the end of the shaft rod 7 close to the winding mechanism 9 is fixed. Wired wheel 71 . The linear push mechanism 6 pushes the axle box 5 to move on the support 4 along the axial direction of the shaft 7, so that the winding mechanism 9 moves to the proper position of the wire wheel 71 at the end of the shaft 7, and then the rotating mechanism 8 drives the winding mechanism 9 Rotate one...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


