Characteristics and Quality of Flame-Retarded Ramie Fabrics for the Development of Functional Textiles

Author:

Wulandari Asri Peni12ORCID,Karlina Erlin3,Tanudjaja Eric3,Rohmat Abdul4,Kusmoro Joko12,Fadhlillah Muhammad5ORCID,Somantri Karlina6,Sahroni Roni6,Fatriasari Widya7ORCID

Affiliation:

1. Department of Biology, Faculty of Mathematics and Natural Science, Padjadjaran University, Sumedang 45363, Indonesia

2. Center for Study of Bioprospection of Natural Fiber and Bioresources, Faculty of Mathematics and Natural Science, Padjadjaran University, Bandung 40132, Indonesia

3. PT Dymatic Chemicals Indonesia, Bandung 40552, Indonesia

4. PT Haramai Jaya Nusantara, Bandung 40132, Indonesia

5. Department of Chemistry, Faculty of Mathematics and Natural Science, Padjadjaran University, Sumedang 45363, Indonesia

6. Bandung Polytechnic of Textile Technology, Bandung 40272, Indonesia

7. Research Center for Biomass and Bioproduct, National Research and Innovation Agency, Bogor 16911, Indonesia

Abstract

Cellulose fabric testing for flame-retardant studies is frequently necessary in various textile applications. Natural cellulose material from ramie (Boehmeria nivea) is being promoted as an alternative raw material for the development of fire-resistant fabrics. This research aims to optimize the coating process of ramie fabric using a phosphorus-based flame retardant (FR) to enhance its flame-retardant characteristics. The FR treatment involves bleaching the fabric with H2O2; followed by fabric finishing using a formula comprising 3% (v/v) hydroxymethyl resin; phosphoric acid (2%); and two formulations of the flammable agent Flamatic DM-3072N: 40% (v/v) and 50% (v/v), applied using the pad-dry-cure method. The flame-retardant properties of the treated fabric are evaluated through flammability testing based on the ASTM D6413-08 standard, limiting oxygen index (LOI) analysis, and micrograph surface structure analysis with SEM. The results indicate that ramie fabric treated with the FR-50% material exhibits superior fire resistance, preventing fire spread on the fabric with a char length of 15–30 mm and a LOI value of 29. These findings highlight the potential of FR-treated ramie fabrics for various industries, including the automotive and protective clothing industries.

Funder

Ministry of Education, Culture, Research, and Technology, Republic of Indonesia

Publisher

MDPI AG

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