361-366This study has been conducted to explore the relationship between yarn structure and yarn characteristics of cotton/milkweed (C/M) blended yarns. The fibre migration index values reveal that the milkweed fibres are predominantly in the yarn sheath of C/M 80/20 yarn, whereas it occupies the yarn core in C/M 60/40 and 40/60 combinations as small clusters. Fibre migration studies reveal that the compact spun yarns have higher fibre migration factor which is responsible for their tenacity followed by ring- and rotor-spun yarns. The effective packing density of C/M blended yarn decreases with the increase in milkweed blend proportion due to less cohesiveness and poor self locking structure of fibres in the yarn cross-section
AbstractThe compact spinning system was designed on the basis of conventional ring-spinning system a...
In the textile industry, composite yarns with multifilament cores are used to impart strength. There...
WOS: 000255122300006Compact spinning is a new version of ring spinning and the most distinct feature...
This study has been conducted to explore the relationship between yarn structure and yarn characteri...
26-32The physical characteristics of cotton/milkweed yarns spun on ring, compact and rotor spinning...
The physical characteristics of cotton/milkweed yarns spun on ring, compact and rotor spinning syste...
410-414The qualities of yarn have been studied by analyzing the fibre migration in the yarn body. Th...
In this study, structural, physical and mechanical properties of cotton-Tencel and cotton-Promodal b...
25-30Milkweed (M) fibres have been blended with cotton (C) fibres at three different proportions and...
163-168Fibre migration of ring and mechanical compact spun combed cotton yarns (40s Ne) has been stu...
This study is devoted to theoretical and experimental research of fibres migration in blended yarns....
WOS: 000250238700007This study investigated the differences between knitted fabrics made from compac...
The qualities of yarn have been studied by analyzing the fibre migration in the yarn body. The effec...
Fibre properties are influential factors for yarn properties. Cotton, whose physical properties vary...
Milkweed (M) fibres have been blended with cotton (C) fibres at three different proportions and the ...
AbstractThe compact spinning system was designed on the basis of conventional ring-spinning system a...
In the textile industry, composite yarns with multifilament cores are used to impart strength. There...
WOS: 000255122300006Compact spinning is a new version of ring spinning and the most distinct feature...
This study has been conducted to explore the relationship between yarn structure and yarn characteri...
26-32The physical characteristics of cotton/milkweed yarns spun on ring, compact and rotor spinning...
The physical characteristics of cotton/milkweed yarns spun on ring, compact and rotor spinning syste...
410-414The qualities of yarn have been studied by analyzing the fibre migration in the yarn body. Th...
In this study, structural, physical and mechanical properties of cotton-Tencel and cotton-Promodal b...
25-30Milkweed (M) fibres have been blended with cotton (C) fibres at three different proportions and...
163-168Fibre migration of ring and mechanical compact spun combed cotton yarns (40s Ne) has been stu...
This study is devoted to theoretical and experimental research of fibres migration in blended yarns....
WOS: 000250238700007This study investigated the differences between knitted fabrics made from compac...
The qualities of yarn have been studied by analyzing the fibre migration in the yarn body. The effec...
Fibre properties are influential factors for yarn properties. Cotton, whose physical properties vary...
Milkweed (M) fibres have been blended with cotton (C) fibres at three different proportions and the ...
AbstractThe compact spinning system was designed on the basis of conventional ring-spinning system a...
In the textile industry, composite yarns with multifilament cores are used to impart strength. There...
WOS: 000255122300006Compact spinning is a new version of ring spinning and the most distinct feature...