The effect of filament diameter on the failure stress of polyethylene fibres has been studied using Weibull analysis. Both gel-spun and melt-spun fibres have been examined, so that differences might be observed for changes in draw ratio or modulus as well as molecular weight. It is concluded that the strength of high-modulus melt-spun fibres relates to the concentration of flaws and is significantly dependent on filament diameter. Conflicting results for gel-spun fibres are discussed in the light of the present investigation, and it is concluded that the mechanism of failure in these fibres is different from that of the melt-spun fibres.
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ACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REPACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REP
MARICHIN, VA
MJASNIKOVA, LP
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ACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REPACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REP
MJASNIKOVA, LP
ZENKE, D
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ACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REPACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REP
ZENKE, D
HIRTE, R
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ACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REPACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REP
HIRTE, R
WEIGEL, P
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ACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REPACAD SCI GDR,INST POLYMERENCHEM ERICH CORRENS,DDR-1530 TELTOW SEEHOF,GER DEM REP