Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/44030
Title: Numerical simulation on moulded thin-walled parts via injection moulding process
Authors: Azaman, Md Deros
Mohd Sapuan, Salit
Shamsuddin, Sulaiman
Edi Syams, Zainudin
Khalina, Abdan
azaman@unimap.edu.my
sapuan@upm.edu.my
shamsuddin@up.edu.my
edisyam@upm.edu.my
khalina@eng.upm.edu.my
Keywords: Fill time
In-cavity residual stresses
Injection moulding
Lignocellulosic composite
Shear stress
Thin-walled
Issue Date: Jun-2014
Publisher: Trans Tech Publications Ltd
Citation: Applied Mechanics and Materials, vol.575, 2014, pages 73-77
Abstract: The current trend in the industry is to produce thin, light weight, and environmental products. In this project, flat or shallow thin-walled parts were designed and moulded lignocellulosic polymer composites (PP + 50 wt% wood) to visualize the processability via moulding simulation. This studied focused on the filling, shear stress at wall, and in-cavity residual stresses behaviors. The shallow thin-walled part is preferable in moulding PP + 50 wt% wood due to economically in processing, low shear stress distribution and low residual stresses than the flat thin-walled part.
Description: Link to publisher’s homepage at http://www.scientific.net
URI: www.scientific.net/AMM.575.73
http://dspace.unimap.edu.my:80/xmlui/handle/123456789/44030
ISSN: 1662-7482
Appears in Collections:Mohd Azaman Md Deros, Dr.

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