Title of article :
Development an‎d Characterization Of A Thermoforming Apparatus Using Axiomatic Design Theory an‎d Taguchi Method
Author/Authors :
Nguyen, Trieu Khoa Faculty of Mechanical Engineering - Industrial University of Ho Chi Minh city, Ho Chi Minh city, Vietnam , Pham, Anh-Duc Faculty of Mechanical Engineering - The University of Danang - University of Science and Technology, Da Nang city, Vietnam , Chau, Minh Quang Faculty of Mechanical Engineering - Industrial University of Ho Chi Minh city, Ho Chi Minh city, Vietnam , Nguyen, Xuan Chien Faculty of Mechanical Engineering - Industrial University of Ho Chi Minh city, Ho Chi Minh city, Vietnam , Pham, Hoang Anh Duong Faculty of Mechanical Engineering - Industrial University of Ho Chi Minh city, Ho Chi Minh city, Vietnam , Pham, Manh Hung Faculty of Mechanical Engineering - Industrial University of Ho Chi Minh city, Ho Chi Minh city, Vietnam , Nguyen, Trung Phi Faculty of Mechanical Engineering - Industrial University of Ho Chi Minh city, Ho Chi Minh city, Vietnam , Nguyen, Hai Son Faculty of Mechanical Engineering Technology - Cao Thang Technical College, Ho Chi Minh city, Vietnam
Pages :
14
From page :
255
To page :
268
Abstract :
In this study, an experimental investigation of the development of a thermoforming apparatus and the thickness uniformity of its samples was performed based on the axiomatic design theory in conjunction with the Taguchi method. Thermoforming is a powerful tool for both consumer product needs and packaging industry. Such traditional technology has been investigated in many aspects for a long time ago. However, there are still needs for the development and characterization of thermoforming devices aiming at shorter construction time and less cost involved. Therefore, an experimental analysis was performed to systematically realize all the functional structures of the device using axiomatic design theory. The combination of orthogonal array (OA) and analysis of variance revealed the influences of the relatival processing factors, showing that the thickness of the plastic sheet and areal draw ratio had crucial roles to play. Furthermore, an optimization process using the Taguchi method was utilized to determine all accurate and optimum processing parameters. The outcomes obviously verified that the present combination method can overcome the current development and optimization method’s limitation and also conclusively give accurate optimal outcomes without using complicated algorithms and software solutions. Therefore, it promises a simple and powerful tool for engineers on-site in medium or small scale manufactories.
Keywords :
Axiomatic design theory , Optimization , Taguchi technique , Thermoforming , Thickness uniformity
Journal title :
Journal of Mechanical Engineering Research and Developments
Serial Year :
2020
Full Text URL :
Record number :
2606499
Link To Document :
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