Developing Polymer Composite-Based Leaf Spring Systems for Automotive Industry
Developing Polymer Composite-Based Leaf Spring Systems for Automotive Industry
Abstract
Composite-based mono-leaf spring systems were designed and manufactured to replace existing mono-leaf metal leaf spring in a light commercial vehicle. In this study, experimentally obtained mechanical properties of different fiber-reinforced polymer materials are presented first, followed by the description of the finite element analytical model created in Abaqus 6.12-1 (Dassault Systemes Simulia Corp., RI, US) using the obtained properties. The results from the finite element analysis are presented next and compared with actual size experimental tests conducted on manufactured prototypes. The results demonstrated that the reinforcement type and orientation dramatically influenced the spring rate. The prototypes showed significant weight reduction of about 80% with improved mechanical properties. The hybrid composite systems can be utilized for composite-based leaf springs with considerable mechanical performance.
Description
Keywords
Composite leaf spring, Finite element analysis, Glass fibers, Hybrid composites, Mechanical properties, Resin transfer molding, resin transfer molding, Glass fibers, Finite element analysis (FEA), composite leaf spring, Composite leaf spring, Mechanical properties, finite element analysis (fea), mechanical properties, Resin transfer molding, TA401-492, Hybrid composites, hybrid composites, Materials of engineering and construction. Mechanics of materials, glass fibers
Fields of Science
02 engineering and technology, 0210 nano-technology
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
23
Volume
25
Issue
6
Start Page
1167
End Page
1176
PlumX Metrics
Citations
CrossRef : 22
Scopus : 24
Captures
Mendeley Readers : 38


