Preliminary study of relating cotton fiber tenacity and elongation with crystallinity

Author:

Liu Yongliang1,Thibodeaux Devron2,Gamble Gary3,Rodgers James1

Affiliation:

1. Cotton Structure & Quality Research Unit, Southern Regional Research Center, Agricultural Research Service, United States Department of Agriculture, USA

2. Agricultural Research Service, United States Department of Agriculture (Retired); Fiber Physics LLC, LA, USA

3. Quality & Safety Assessment Research Unit, Agricultural Research Service, United States Department of Agriculture, USA

Abstract

A fundamental understanding of the relationship between cotton fiber strength (or tenacity)/elongation and structure is important to help cotton breeders modify varieties for enhanced end-use qualities. In this study, the Stelometer instrument was used to measure the bundle fiber tenacity and elongation properties of different cotton fibers. This instrument is the traditional fiber strength reference method and could be still preferred as a screening tool owing to its significant low cost and portability. Fiber crystallinity ( CIIR) and maturity ( MIR) were characterized by the previously proposed attenuated total reflection (ATR)-based Fourier transform infrared protocol that has microsampling capability and is suitable for the tiny Stelometer breakage specimens (2 ∼ 5 mg), which cannot be readily analyzed by a conventional X-ray diffraction pattern. Relative to the distinctive increase in fiber tenacity with either CIIR or MIR for Pima fibers ( Gossypium barbadense), there was an unclear trend between the two for Upland fibers ( G. hirsutum). Although fiber elongation increases with elevated CIIR and MIR for Pima fibers, it generally decreases as CIIR and MIR increase for Upland fibers. Furthermore, small sets of Upland fibers with known varieties and growth areas were examined, and their responses to both CIIR and MIR are discussed briefly.

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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