Title :
Design of an intermittent escape apparatus used in high-rise buildings based on escapement mechanism
Author :
Zhanguo Zhang ; Xiaoyong Liu
Author_Institution :
Coll. of Mech. Eng., Beihua Univ., Jilin, China
Abstract :
An intermittent impact type escape apparatus used in high-rise buildings based on the principle of escapement mechanism usually applied in clock for time controlling was designed in this paper. The escapement mechanism in escape apparatus can consume gravitational potential energy of body. Applied the modularized design method, mechanical system of the escape apparatus consisted of a transmission system and a control system. Advanced mechanical design software was used to design each module structure in detail. The transmission system was composed of a uniquely designed wirerope antislip mechanism and a reversing gear. The wirerope antiskid mechanism effectively increased friction between the wirerope and the winding drum in order to prevent the wirerope relative sliding along the winding drum. The reversing gear greatly improved rescue efficiency by continually using the apparatus. The control system completed escape wheel periodically "locked to released to rotated to locked" movement. The speed governing scheme realized intermittent movement of main drive chain and made body fall intermittently. It was very important to apply modular synchronous design to shorten the design and installation cycle of escape apparatus.
Keywords :
cables (mechanical); chains; design engineering; domestic safety; gears; mechanical control equipment; ropes; sliding friction; wheels; control system; drive chain; escape wheel; escapement mechanism; friction; gravitational potential energy; high-rise building; intermittent impact type escape apparatus; modular synchronous design; rescue efficiency; reversing gear; transmission system; winding drum; wirerope antiskid mechanism; wirerope antislip mechanism; Buildings; Clocks; Control systems; Friction; Gears; Wheels; Windings; escape apparatus; escapement mechanism; kinematic precept design; structural design;
Conference_Titel :
Mechatronic Science, Electric Engineering and Computer (MEC), 2011 International Conference on
Conference_Location :
Jilin
Print_ISBN :
978-1-61284-719-1
DOI :
10.1109/MEC.2011.6025534