Abstract
The implementation of end-of-life vehicle (ELV) recovery policy in Malaysia has led vehicle manufacturers to look at different ways to improve design and development of vehicles. Nowadays, it is crucial to incorporate end-of-life (EOL) design strategies into the vehicle design in order to enhance the effectiveness of the ELV recovery network. Although recent studies have shown that product design has a significant effect on the product recovery rate, there is a lack of studies on how EOL design strategies affects the effectiveness of ELV recovery, particularly when there are dynamic changes in the behaviour of the product recovery network. Thus, in this study, we developed a preliminary model based on the system dynamics approach in order to predict the effectiveness of ELV recovery in response to dynamic changes of various factors (including EOL design strategies) in the business environment. We developed this model based on preliminary data that we had gathered from unstructured interviews with the key stakeholders of ELV management in Malaysia. We believe that our model will greatly benefit product designers in incorporating the appropriate EOL design strategies in order to boost ELV recovery effectiveness in Malaysia.
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CITATION STYLE
Mohamad-Ali, N., Ghazilla, R. A. R., Abdul-Rashid, S. H., Sakundarini, N., Ahmad-Yazid, A., & Stephenie, L. (2017). Development of an end-of-life vehicle recovery model using system dynamics and future research needs. In IOP Conference Series: Materials Science and Engineering (Vol. 210). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/210/1/012075
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