US 11,958,149 B2
Fastening tool, a bolt assembling device and a method for assembling a high pressure compressor rotor
Yiting Hu, Shanghai (CN); Wenxing Mu, Shanghai (CN); Fei Pan, Shanghai (CN); and Yuqian Zhou, Shanghai (CN)
Assigned to AECC SHANGHAI COMMERCIAL AIRCRAFT ENGINE MANUFACTURING CO., LTD., Shanghai (CN); and AECC COMMERCIAL AIRCRAFT ENGINE CO., LTD., Shanghai (CN)
Appl. No. 18/246,053
Filed by AECC SHANGHAI COMMERCIAL AIRCRAFT ENGINE MANUFACTURING CO., LTD., Shanghai (CN); and AECC COMMERCIAL AIRCRAFT ENGINE CO., LTD., Shanghai (CN)
PCT Filed Jul. 9, 2021, PCT No. PCT/CN2021/105544
§ 371(c)(1), (2) Date Mar. 21, 2023,
PCT Pub. No. WO2022/057411, PCT Pub. Date Mar. 24, 2022.
Claims priority of application No. 202010991798.6 (CN), filed on Sep. 21, 2020.
Prior Publication US 2023/0356337 A1, Nov. 9, 2023
Int. Cl. B23P 21/00 (2006.01); B23P 19/06 (2006.01)
CPC B23P 21/004 (2013.01) [B23P 19/06 (2013.01)] 19 Claims
OG exemplary drawing
 
1. A fastening tool characterized in comprising:
a base part, provided with a top part guiding portion, a pressing part guiding portion and a transmission part guiding slot;
a top part, at least part of which is placed in the base part and provided with a top part guiding matching portion, wherein the top part guiding matching portion engages the top part guiding portion in a sliding fit;
a pressing part, provided with an inclined transmission surface and a pressing part guiding matching portion, wherein the pressing part guiding matching portion engages the pressing part guiding portion in a sliding fit to guide the sliding of the pressing part;
a lever, provided with a first end, a second end and a hinging portion between the first end and the second end, wherein the hinging portion is hinged to the base part;
a transmission part, engaging the transmission part guiding slot in a sliding fit;
wherein the transmission part is driven to slide by the inclined transmission surface of the pressing part when the pressing part is driven to slide towards a fastening direction, the lever is driven to rotate as a force is applied by the transmission part to the second end of the lever, then the top part is driven to slide outwards the base part as a force is applied by the first end of the lever to the top part, so as to push a workpiece upwards; due to a reaction force acting on the inclined transmission surface by the transmission part and a friction between the pressing part guiding matching portion and the pressing part guiding portion, the pressing part remains to be self-locked by friction, which can constrain the sliding fit between the pressing part guiding matching portion and the pressing part guiding portion, and the slided top part is locked.