Design and Analysis of Automotive Instrument Panel

Author:

Haniffah Nur Akmal1,Zakaria Mohamad Fazrul1,Sheng Tan Kean1

Affiliation:

1. National Defence University of Malaysia

Abstract

This study presents the automotive instrument panel (IP) design in order to improve the quality, cost, and safety of the existing design. A few conceptual designs were generated based on safety aspect and ergonomic design. The most suitable design was selected using concepts scoring. The IP head impact simulation was conducted using finite element analysis (FEA) to predict the head injury criterion (HIC) value of the front passenger in vehicle according to ECE-R21 regulation. The finite element (FE) model, which consist of upper IP, lower IP, carrier structure and head-form, was built-up to carry out head impact analysis of the IP assembly. The optimum IP design was proposed by analysis of different materials, which are 20% talc filled rubber modified polypropylene (PP+EPDM-TD20), acrylonitrile butadiene styrene (ABS) polymer, and polypropylene (PP) copolymer. The HIC value for all IP was compared using simulation result and theoretical calculation. The lowest HIC value will reduce the head occupant injury. In this study, only the raw material cost was considered in cost evaluation. The IP from ABS polymer performed the lowest HIC value, which were 179.7 but very costly compare to other materials.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference6 articles.

1. M.D. Galer, The Application of Ergonomics in the Design of Automotive Displays, Butterworth & Co (Publishers) Ltd., (1984).

2. AJ McLean, BN Fildes, CN Kloeden, KH Digges, Prevention of head Injuries to Car Occupants: An Investigation of Interior Padding Options, NHMRC Road Accident Research Unit, University of Adelaide and Monash University Research Centre, (1997).

3. Fatih Arslan, User-centered Design Criteria in Auto Design with a Case Study of Auto Dashboard Design, Master of Science in Industrial Design, Izmir Institute of Technology, (2006).

4. Lin Sun & XiaoMing Liu, Control Analysis of Production and Apparent Quality of Automobile Large Plastic Parts, Elsevier Ltd., (2010).

5. Mike Keranen, Srikanth Krishnaraj, Kumar Kulkarni, Li Lu and Ravi Thyagarajan, Automating Instrument Panel Head Impact Simulation, Visteon Corporation, (2005).

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