Sensitivity of spinning process with flow-induced crystallization kinetics using frequency response method

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초록

The sensitivity of the low- and high-speed spinning processes incorporated with flow-induced crystallization has been investigated using frequency response method, based on process conditions employed in Lee et al. [1] and Shin et al. [2,3]. Crystallinity occurring in the spinline makes the spinning system less sensitive to any disturbances when it has not reached its maximum onto the spinline in comparison with the spinning case without crystallization. Whereas, the maximum crystallinity increases the system sensitivity to disturbances, interestingly exhibiting high amplitude value of the spinline area at the take-up in low frequency regime. It also turns out that neck-like deformation in the spinline under the high-speed spinning conditions plays a key role in determining the sensitivity of the spinning system.

키워드

Flow-induced CrystallizationFiber SpinningDraw ResonanceFrequency Response MethodSensitivityNeck-like DeformationDRAW RESONANCEMELTSTABILITYSIMULATIONDYNAMICSMODEL
제목
Sensitivity of spinning process with flow-induced crystallization kinetics using frequency response method
저자
Yun, Jang HoShin, Dong MyeongLee, Joo SungJung, Hyun WookHyun, Jae Chun
DOI
10.1007/s11814-010-0102-1
발행일
2010-01
유형
Article
저널명
Korean Journal of Chemical Engineering
27
1
페이지
37 ~ 44