An Economical Durable Flame-Retardant Finish for Cotton

Author:

Beninate John V.1,Perkins Rita M.1,Drake George L.1,Reeves Wilson A.1

Affiliation:

1. Southern Regional Research Laboratory, New Orleans, Louisiana 70119, U. S. A.

Abstract

Selected low-cost N-methylol compounds have been incorporated with tetrakis(hydroxymethyl)phosphonium hydroxide (THPOH formulations and applied to cotton fabric by a number of different processing techniques. N-methylol compounds evaluated in this study were trimethylolmelamine, dimethylolethyleneurea, and dimethylolmethoxyethyl carbamate. THPOH reacts with ammonia at room temperature and with methylolamides at elevated temperatures. The flame-retardant finish produced by reacting the phosphonium hydroxide with ammonia is very durable and effective at modest add-ons. Even with modest add-ons (12–20% depending on fabric construction and weight), the phosphorus content is rather high (up to 6%). This study has shown that the amount of phosphorus needed in the flame retardant can be reduced to a fraction of that originally required by increasing the nitrogen content. Use of trimethylolmelamine and THPOH with an ammonia cure, followed by a heat cure, produced the most effective flame resistance. Treated fabrics had 100% tensile strength retention and a good hand. This treatment has resulted in the use of lesser quantities of THPOH to produce a lower-cost durable flame-retardant finish for cotton.

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

Reference6 articles.

1. Little R. W. “Flame Proofing Textile Fabrics,” New York, Reinhold Publishing Corporation, 1947, p. 382.

2. Chemical and Physical Properties of Aminized Cotton

3. Flame-Retardant Properties of Phosphonate Derivatives of Cotton Cellulose

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