Investigating Moisture Vapour Transmission in Batik: Treated Pineapple Fibre Fabric Prior to Garment Development
Authors
Mohamad Fareez Azuan Bin Abdullah
Senior Lecturer, Universiti Kuala Lumpur, Department of Design and Technology, Kuala Lumpur (Malaysia)
Article Information
DOI: 10.47772/IJRISS.2026.100900207
Subject Category: Technology
Volume/Issue: 10/9 | Page No: 2881-2886
Publication Timeline
Submitted: 2026-09-11
Accepted: 2026-09-16
Published: 2026-10-06
Abstract
The development of sustainable textile materials has increased interest in pineapple fibre as an alternative to conventional textile fibres. However, the application of batik techniques to pineapple fibre fabric may influence its moisture vapour transmission and suitability for garment development. This study investigates the moisture vapour transmission properties of pineapple fibre fabric treated with different batik techniques prior to garment development. The experiment evaluates the moisture vapour transmission performance of untreated pineapple fibre fabric and batik-treated samples to identify potential changes in fabric breathability and moisture transfer behaviour. The samples were prepared using selected batik application techniques and examined through laboratory-based testing. The findings are analysed to determine the relationship between batik treatment and the moisture vapour transmission characteristics of the fabric. The study also considers the implications of the findings for the development of comfortable and functional garments using pineapple fibre-based textiles. The results are expected to contribute to the understanding of pineapple fibre fabric performance and support the integration of traditional Malaysian batik techniques into sustainable fashion and textile product development.
Keywords
Pineapple fibre; Batik; Moisture vapour transmission; Sustainable textile; Textile performance
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References
1. Azuan, M. F., Samin, M. A., & Legino, R. (2022). Natural fabric with pineapple fibres used as batik medium. Environment-Behaviour Proceedings Journal.https://doi.org/10.21834/ebpj.v7iSI8.3923 [Google Scholar] [Crossref]
2. Collins, J. L. (1949). The Pineapple: Botany, Cultivation and Utilization. Leonard Hill, London. [Google Scholar] [Crossref]
3. Fletcher, K. (2014). Sustainable Fashion and Textiles: Design Journeys (2nd ed.). Routledge, London. [Google Scholar] [Crossref]
4. Gwilt, A. (2020). A Practical Guide to Sustainable Fashion. Bloomsbury Publishing, London. [Google Scholar] [Crossref]
5. Hakim, A., Sulaiman, N., & Rahman, M. A. (2017). Development of a semi-automatic wax removal machine for batik production. International Journal of Engineering and Technology, 9(4), 2850–2856. [Google Scholar] [Crossref]
6. Kitaguchi, S., Kuramoto, K., Takahashi, M., & Luo, M. R. (2012). Evaluation of instrumental methods for assessing colour fastness of textiles. Color Research and Application, 37(6), 451–460. [Google Scholar] [Crossref]
7. Kusuma, R., Nugroho, A., & Hidayat, T. (2019). Augmented reality application for traditional batik motif transfer process. International Journal of Interactive Mobile Technologies, 13(7), 45–58. [Google Scholar] [Crossref]
8. Ministry of Agriculture Malaya. (1959). Pineapple Cultivation in Malaya. Government Printer, Kuala Lumpur. [Google Scholar] [Crossref]
9. Niinimäki, K. (2018). Sustainable Fashion in a Circular Economy. Aalto University, Helsinki. [Google Scholar] [Crossref]
10. R. M. N., & Fathima, M. S. (2018). Evaluation of colour fastness properties of lyocell and bamboo blended fabrics. International Journal of Textile Science, 7(2), 28–35. [Google Scholar] [Crossref]
11. Yusof, Y., Yahya, S. A., & Adam, A. (2015). Potential of pineapple leaf fibre in sustainable textile and composite industries. Journal of Natural Fibers, 12(6), 531–543. [Google Scholar] [Crossref]
12. Bivainytė, A., & Mikučionienė, D. (2011). Investigation on the air and water vapour permeability of double-layered weft knitted fabrics. PES, 8, 29. [Google Scholar] [Crossref]
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