繊維学会誌
Online ISSN : 1884-2259
Print ISSN : 0037-9875
一般報文
連続延伸・熱処理したポリフェニレンサルファイド繊維の繊維構造形成と力学的性質
奥村 航長谷部 裕之木水 貢
著者情報
ジャーナル フリー

2012 年 68 巻 2 号 p. 33-41

詳細
抄録
Poly(phenylene sulfide) (PPS) multi-filaments were continuously drawn and annealed. The maximum values of birefringence, crystallinity, tensile strength and Young′s modulus in the drawn and annealed PPS filament were 249×10−3 ‚ 27%, 5.3 cN/dtex and 64 cN/dtex‚ respectively. The orientation-induced crystallization was observed at 150×10-3 of birefringence. The crystal orientation factor f′ was estimated by wide angle X-ray diffraction. The λnet was estimated by the strain shifting of true stress - true strain curve to the master curve. The orientation estimated by the λnet differed from that estimated by birefringence. The fiber structure development and the mechanical properties of resultant fibers were discussed in terms of orientation parameters, which were birefringence‚ network draw ratio (λnet) and crystal orientation factor (f′). The birefringence shows a good correlation with the Young’s modulus. On the other hand, λnet shows a good correlation with the tensile strength. The f′ shows good correlations with both Young′s modulus and tensile strength‚ however‚ they tend to saturate at high f′. The melting temperature of PPS changed from 280.1ºC to 288.7ºC with the increase of birefringence and λnet.
著者関連情報
© 2012 The Society of Fiber Science and Technology, Japan
前の記事 次の記事
feedback
Top