STRUCTURAL CHANGES IN COTTON - EFFECT OF PREMERCERIZATION CONDITIONS ON SUBSEQUENT CROSS-LINKING

被引:17
作者
WADE, RH
VIGO, TL
机构
[1] Southern Regional Research Laboratory, Southern Utilization Research and Development Division, Agricultural Research Service, U. S. Department of Agriculture, New Orleans
关键词
Breaking Elongation; Breaking Energy; Breaking Strength; Cellulose I; Cellulose II; Chemically Modified Cotton; Cotton; Cotton Spun Yarns; Crosslinking; Degree of Orientation; DMEU; Electron Microscopy; Fine Structure (Fibers); Slack Mercerizing; Swelling; Tenacity; Tension; Wet Pick-Up; X-Ray Diffraction;
D O I
10.1177/004051756903900204
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
Structural changes due to tension applied to caustic-swollen yarns were studied. It was found that the cross-linking of yarns which had been mercerized slack, at normal length, or slack and then restretched to normal length produced differences in tenacity and X-ray orientation. It was concluded that this was due to structural rearrangements induced by the application of load to fiber systems. Differences in wet pickup of the cross-linking resin were shown to produce differences in the fiber fragmentation pattern but not in the layer-expansion pattern. Only a fraction of the added cross-linking resin was considered to have contributed to the properties usually attributed to cross-linked yarns. The regions believed responsible for the effect of cross-linking are the less ordered lattices close to the crystalline structures. The strength retained after cross-linking was dependent on the tension and the method of its application. Differences in the degree of conversion of cellulose I to cellulose II were noted in the slack-mercerized yarns treated with different alkali metal hydroxides. These differences, with the exception of lithium hydroxide, correlated with swelling effectiveness of the alkalis used. © 1969, SAGE Publications. All rights reserved.
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页码:148 / &
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