Biocomposite Headrests Design Criteria Weightage: Voice of Stakeholders via Survey and Analytic Hierarchy Process

Authors

  • Khairul Azri Azlan Faculty of Mechanical Technology and Engineering, Universiti Teknikal Malaysia Melaka, 76100, MALAYSIA
  • Muhd Ridzuan Mansor Faculty of Mechanical Technology and Engineering, Universiti Teknikal Malaysia Melaka, 76100, Malaysia
  • Effendi Mohamad Faculty of Industrial and Manufacturing Technology and Engineering, Universiti Teknikal Malaysia Melaka, 76100, MALAYSIA
  • Teruaki Ito Faculty of Computer Science and Systems Engineering, Okayama Prefectural University, 719-1197, JAPAN

Keywords:

Analytic Hierarchy Process (AHP), biocomposite headrests, concurrent engineering, design criteria weightage, multi-criteria decision making, sustainable design, voice of stakeholders

Abstract

This paper presents a novel framework to incorporate the Voice of Stakeholders in evaluating the design criteria for biocomposite headrests through a survey and the Analytic Hierarchy Process (AHP). The framework is meant to complement the sustainable conceptual design framework of biocomposite headrests suggested in the previous study, which is based on the Concurrent Engineering (CE) approach. At first, Product Design Specifications (PDS) for the biocomposite automotive headrest were established, embracing sustainable design practices. Despite the effort towards sustainable design, the voice of pertinent stakeholders should not be disregarded. Therefore, a survey was conducted to identify customers' determined criteria, and mapped to the designer's determined criteria. Subsequently, subject-matter experts (SMEs) from industries and academia were invited for criteria assessment through the AHP pairwise comparison matrix. The results were analyzed through the AHP Microsoft Excel tool with multiple inputs. The criteria weights (CW) determined by SMEs in priority order are safety (45.7%), comfort (16.7%), cost (15.6%), styling (12.5%), and lastly weight (9.5%), with a consistency index (CI) of only 2.8%, indicating a consistent response by SMEs. The SMEs response seems to match customers’ expectations except for the cost, which is focal from the SMEs' point of view. For the criteria global weight (CGW), Factor of Safety (FoS) and maximum Von Misses stress are the most important criteria with an equal value of 22.9%, followed by manufacturability rating with 15.6%, support area with 12.8%, style rating with 12.5%, volume with 9.5%, and finally adjuster rating with 3.8%. The criteria weight will be used by the designer in the concept generation and selection stages. This framework can also be used for other product designs with identical nature, especially automotive components that have direct interaction with occupants.

Downloads

Download data is not yet available.

Author Biographies

  • Khairul Azri Azlan, Faculty of Mechanical Technology and Engineering, Universiti Teknikal Malaysia Melaka, 76100, MALAYSIA

    Ts. Khairul Azri Bin Azlan is a lecturer at Faculty of Mechanical Technology and Engineering, Universiti Teknikal Malaysia Melaka (UTeM). He holds Master of Engineering in Mechanical (Energy Engineering) and Bachelor of Mechanical Engineering (Automotive). Before holding his current position, he was a Research Officer at UTeM. He also has industry experience over 7 years in various companies like Perodua and Panasonic as Manufacturing Engineer and Industrial Engineer. Besides that he also worked with a Mechanical company consultant as Resident Engineer. His expertise is in automotive, manufacturing, engineering design, concurrent engineering, sustainable design, and energy engineering.

  • Muhd Ridzuan Mansor, Faculty of Mechanical Technology and Engineering, Universiti Teknikal Malaysia Melaka, 76100, Malaysia
    Assoc. Professor Dr. Muhd Ridzuan Mansor
    Senior Lecturer, Mechanical Engineering Department
    Faculty of Mechanical Technology and Engineering, Universiti Teknikal Malaysia Melaka, 76100, Malaysia Universiti Teknikal Malaysia Melaka Expertise: Biocomposites, Automotive Design, Concurrent Design
  • Effendi Mohamad, Faculty of Industrial and Manufacturing Technology and Engineering, Universiti Teknikal Malaysia Melaka, 76100, MALAYSIA
    Effendi Mohamad is Professor at Faculty of Industrial and Manufacturing Technology and Engineering, UTeM. He has been serving the Faculty as lecturer since 2005.Prior to his involvement as an academician, he worked in NEC Semiconductors Sdn Bhd, Perodua Sales Sdn Bhd and ST Microelectronics Sdn Bhd in various engineering capacities such as industrial engineer and process engineer. He is currently the Director of Centre for Collaboration Management of RICE UTeM – Melaka and UTeM Senate members. Disciplines
    • Manufacturing Engineering
    • Industrial Engineering
    • Supply chain management
    • Manufacturing
    Skills and expertise
    • Lean Manufacturing
    • Decision Support
    • Decision Making
    • Communication Gap
    • Risk Management
    • Collaboration
    • Framework
    • Simulation
    • Computer User Training
    • Taguchi Method
    • Material Handling
    • Assembly Line Balancing
    • Simulation and Modeling
    • Simulation Modeling
    • Natural Risk
    • Key Performance Indicators
    • Process Management
    • Management
    • Optimization
    • Training
    • Optimization (Mathematical Programming)
    • Marketing Management
    • Risk Analysis
    • E-Learning
    • Optimization Methods
    • Production Systems
    • Production
    • Performance Measurement
    • Manufacturing Systems
    • Risk Assessment
    • Workshops
    • Engineering Management
    • Process Improvement
    • Layout
    • Manufacturing
    • Arena (Simulation Software)
    • Operations Management
    • Logistics
    • Production Planning
    • Quality Management
    • Digital Design
    • Discrete Event Simulation
    • Operations
    • Industry
    • Inventory Management
    • Production Management
    • SCM
    • Total Quality Management
    • Simulation Software
    • Teaching
    • Arena
    • Modeling and Simulation
    • Scheduling
    • Production Engineering
  • Teruaki Ito, Faculty of Computer Science and Systems Engineering, Okayama Prefectural University, 719-1197, JAPAN
    Teruaki Ito
    • Doctor of Philosophy
    • Professor at Okayama Prefectural University Japan
    • Received a MS in Computer Science from the University of Tsukuba (Tsukuba, Japan)
      and a PhD in Engineering Systems from Tokyo Metropolitan Institute of
      Technology (Tokyo, Japan). In addition to his activities at the institute, he also
      served as a Visiting Scholar at Stanford University (Stanford, CA) and as a
      Visiting Professor at Massachusetts Institute of Technology (Cambridge, MA).
      His research interests are in the area of collaborative engineering, human
      interface and medical/rehabilitation engineering. He has published various
      papers in journals such as the Journal of Intelligent Manufacturing, Journal of
      Advanced Manufacturing Technology, Journal of Computer Integrated
      Manufacturing, Journal of Material Processing Technology, etc.

Downloads

Published

30-04-2026

Issue

Section

Issue on Mechanical, Materials and Manufacturing Engineering

How to Cite

AZLAN, K. A. ., MANSOR, M. R., Mohamad, E., & Ito, T. (2026). Biocomposite Headrests Design Criteria Weightage: Voice of Stakeholders via Survey and Analytic Hierarchy Process. International Journal of Integrated Engineering, 18(3), 1-12. https://publisher.uthm.edu.my/ojs/index.php/ijie/article/view/19728