SOME NEW OBSERVATIONS ON EFFECTS OF MILD SHRINKPROOFING TREATMENTS ON WOOL FIBERS

被引:24
作者
MAKINSON, KR
机构
[1] Division of Textile Physics, CSIRO Wool Research Laboratories, Ryde, Sydney
关键词
D O I
10.1177/004051756803800808
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
When wool fibers which have been shrinkproofed by either the KMnO4/salt process or a dry chlorination process are examined with the optical microscope, normally, very little effect of the treatment can be seen. However, if they are straightened for the examination, a number of differences between treated and control fibers can easily be seen, especially if water is present. The principal effects are that the scales on the treated fibers, but not on the untreated, become less prominent as the fibers are straightened and that this change is much greater on the side which was the intrados of the crimp curve than on the extrados. Microscopic observation of fibers sliding on each other or over a diffraction grating also reveals effects of the treatment: The deformation of the scales of treated fibers is more plastic and less elastic than that of untreated and the sliding of the treated fibers is more heavily damped. From these and other observations, the conclusion has been drawn that these treatments degrade the protein inside the scales so that it becomes more viscous and less elastic, particularly when it is swollen by or dissolved in water. The epicuticle appears to be unbroken and still elastic. These results throw some light on the well-known disagreement between different workers about the changes produced in the coefficients of friction of wool fibers by the KMnO4/salt treatment. 1 In the comprehensive study of crimp recovery by Banbaji et al. [Textile Res. J. 32, 568-572 (1962)], the fiber was allowed to contract slowly and continuously. The observations described here refer essentially to discontinuous re covery. © 1968, Sage Publications. All rights reserved.
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页码:831 / &
相关论文
共 34 条
[1]  
ANDREWS MW, 1965, TEXT RES J, V35, P676
[2]  
ANDREWS MW, 1963, TEXT RES J, V33, P705
[3]  
BOWDEN FP, 1964, FRICTION LUBRICATI 2, P233
[4]  
BOWMAN FH, 1953, STRUCTURE WOOL FIBRE, P51
[5]  
Bradbury J. H., 1961, TEXT RES J, V31, P735, DOI 10.1177/004051756103100808
[6]  
Bradbury J. H., 1963, TEXT RES J, V33, P452
[7]  
BRADBURY JH, 1960, J TEXT I, V51, pT1226
[8]  
BRADBURY JH, 1963, TEXT RES J, V33, P617
[9]  
DENBY EF, PRIVATE COMMUNICATIO
[10]  
DENBY EF, 1964, TEXTILE RES J, V34, P464