Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite

This study was conducted in order to enhance the quality of car gear console panel with environmentally friendly aspects by making it from glass/coir fiber-reinforced polypropylene hybrid composite. The functions and competitive benchmarking criteria were compiled and merged with the enviro...

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Main Authors: Jameel, Yusuf, Leman, Z., Sapuan, S. M.
Format: Article
Published: PPIEM 2022
Online Access:http://psasir.upm.edu.my/id/eprint/100778/
https://www.researchgate.net/publication/369911498_Conceptual_Design_of_the_Car_Gear_Console_Panel_Made_by_GlassNatural_Fiber_Reinforced_Hybrid_Polymer_Composite
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spelling my.upm.eprints.1007782023-09-11T01:57:18Z http://psasir.upm.edu.my/id/eprint/100778/ Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite Jameel, Yusuf Leman, Z. Sapuan, S. M. This study was conducted in order to enhance the quality of car gear console panel with environmentally friendly aspects by making it from glass/coir fiber-reinforced polypropylene hybrid composite. The functions and competitive benchmarking criteria were compiled and merged with the environmental requirements to produce the Product Design Specifications (PDS). The chosen polymer was compared to a benchmark material, Acrylonitrile Butadiene Styrene (ABS), using the Weighted Evaluation Matrix (WEM). Coir fiber and Polypropylene (PP) were found to be effective bio-composites for car gear console panel. After that, using an integrated Theory of Inventive Problem Solving (TRIZ) and Morphological Chart, the conceptual design development of a coir fiber-reinforced polypropylene gear console panel was carried out, fol-lowed by final conceptual design selection utilizing an integrated Pugh Chart. The new design concept has less annular snaps, position of the screws are also changed. Coir fiber-reinforced polypropylene hybrid composites were found to be an alternate material for eco-friendly car gear panel. The final conceptual design of car gear console panel selected on the basis of TRIZ solution which was finalized by using Morphological chart consists of change in the shape of the panel from trapezoidal shape to rectangular shape. The number of annular snaps used was reduced to two from four and number of screws was increased to four from two. Screw positions were distributed evenly on top, bottom, left and right. The assembly structures were kept same as previous that is three. PPIEM 2022-12-30 Article PeerReviewed Jameel, Yusuf and Leman, Z. and Sapuan, S. M. (2022) Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite. Journal of Natural Fibre Polymer Composites (JNFPC), 1 (2). art. no. 3. pp. 1-7. https://www.researchgate.net/publication/369911498_Conceptual_Design_of_the_Car_Gear_Console_Panel_Made_by_GlassNatural_Fiber_Reinforced_Hybrid_Polymer_Composite
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description This study was conducted in order to enhance the quality of car gear console panel with environmentally friendly aspects by making it from glass/coir fiber-reinforced polypropylene hybrid composite. The functions and competitive benchmarking criteria were compiled and merged with the environmental requirements to produce the Product Design Specifications (PDS). The chosen polymer was compared to a benchmark material, Acrylonitrile Butadiene Styrene (ABS), using the Weighted Evaluation Matrix (WEM). Coir fiber and Polypropylene (PP) were found to be effective bio-composites for car gear console panel. After that, using an integrated Theory of Inventive Problem Solving (TRIZ) and Morphological Chart, the conceptual design development of a coir fiber-reinforced polypropylene gear console panel was carried out, fol-lowed by final conceptual design selection utilizing an integrated Pugh Chart. The new design concept has less annular snaps, position of the screws are also changed. Coir fiber-reinforced polypropylene hybrid composites were found to be an alternate material for eco-friendly car gear panel. The final conceptual design of car gear console panel selected on the basis of TRIZ solution which was finalized by using Morphological chart consists of change in the shape of the panel from trapezoidal shape to rectangular shape. The number of annular snaps used was reduced to two from four and number of screws was increased to four from two. Screw positions were distributed evenly on top, bottom, left and right. The assembly structures were kept same as previous that is three.
format Article
author Jameel, Yusuf
Leman, Z.
Sapuan, S. M.
spellingShingle Jameel, Yusuf
Leman, Z.
Sapuan, S. M.
Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite
author_facet Jameel, Yusuf
Leman, Z.
Sapuan, S. M.
author_sort Jameel, Yusuf
title Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite
title_short Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite
title_full Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite
title_fullStr Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite
title_full_unstemmed Conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite
title_sort conceptual design of the car gear console panel made by glass/natural fiber reinforced hybrid polymer composite
publisher PPIEM
publishDate 2022
url http://psasir.upm.edu.my/id/eprint/100778/
https://www.researchgate.net/publication/369911498_Conceptual_Design_of_the_Car_Gear_Console_Panel_Made_by_GlassNatural_Fiber_Reinforced_Hybrid_Polymer_Composite
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score 13.211869