DocumentCode :
692226
Title :
Investigation on design and fabrication of continuous fiber reinforced composite helical spring for automobile suspension
Author :
Ekanthappa, J. ; Basavarajappa, S. ; Sogalad, Irappa
Author_Institution :
Dept. of Studies in Mech. Eng., Univ. B.D.T Coll. of Eng., Davangere, India
fYear :
2013
fDate :
27-28 Sept. 2013
Firstpage :
1
Lastpage :
4
Abstract :
Spring is an elastic body whose function is to store energy when deflected by force and return equivalent amount of energy on being released. Helical compression springs are widely used for suspension in light vehicle and locomotives worldwide. Automobile manufacturer are looking for replacing existing metal spring by composite spring due to its high strength to weight ratio. In this study the design parameters indicate that there is considerable weight saving is possible and increase the stiffness of the spring by reducing the number of coils and increasing the area of the spring. The filament winding technique is used to fabricate the continuous fiber reinforced composite helical spring. The weight of the composite spring obtained is 42.63 % less than the conventional metal spring. Stiffness of the composite spring is 43.76% less compared to conventional metal spring. Even though stiffness of the composite helical spring is less when compared to conventional metal spring, the spring is designed with less number of coils to increase the stiffness without sacrifice the strength or load carrying capacity of the spring.
Keywords :
automobiles; design engineering; elastic constants; fibre reinforced composites; mechanical strength; springs (mechanical); suspensions (mechanical components); automobile manufacturer; automobile suspension; continuous fiber reinforced composite; design parameters; energy return function; energy storage function; filament winding technique; helical compression spring; light vehicle; load carrying capacity; locomotives; spring stiffness; strength-to-weight ratio; weight saving; Composite; Continuous glass fiber; Filament winding; Mandrel tool; Stiffness; helical spring;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Research & Technology in the Coming Decades (CRT 2013), National Conference on Challenges in
Conference_Location :
Ujire
Electronic_ISBN :
978-1-84919-868-4
Type :
conf
DOI :
10.1049/cp.2013.2529
Filename :
6851576
Link To Document :
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