한국잠사곤충학회지 (Journal of Sericultural and Entomological Science)
- 제36권2호
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- Pages.138-146
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- 1994
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- 2234-8174(pISSN)
야잠사의 구조특성 및 물리적 성질
Structural Characteristics and Physical Properties of Wild Silk Fibres; Antheraea pernyi and Antheraea yamamai
초록
야잠사, Antheraea pernyi와 Antheraea yamamai의 구조특성을 살폅기 위하여 x-ray 회절 분석, IR 분광법, 편광현미경 관찰, 아미노산 분석을 행하였으며 섬유밀도, 열적 성질 및 동점탄성 성질을 살펴보았다. 그들의 구조 및 물리적 성질에 대한 결과를 가잠사(Bombyx mori)의 특성과 비교하여 요약하면 다음과 같다. 1. 작잠견사와 천잠견사의 아미노산 조성에는 큰 차이가 없었으나 천잠견사의 경우 반응성이 높은 극성아미노산이 다소 많은 것으로 나타났으며 가잠견사의 경우 glycine, 야잠사는 alanine 함량이 가장 많으므로 이들의 견사의 결정구조 특성에 관여되었다고 할 수 있다. 2. 섬유밀도 측정결과 천잠사(1.265~1.301g/㎤), 작잠사(1.308~1.311g/㎤), 가잠사(1.355~1.356g/㎤) 순으로 나타났으며 계산된 결정화도 값도 천잠사(51%), 작잠사(52%), 가잠사(64%) 순으로 나타났다. 3. 작잠사와 천잠사의 x-ray 회절곡선은 차이점이 없이 2
The structural characteristics of Antheraea yamamai and Antheraea pernyi silk were investigated by using x-ray diffraction method, IR spectroscopy and polarizing microscopy. The amino acid composition, fiber density, thermal decomposition temperature and glass transition temperature were also measured for relating these physical properties to the structure in comparison with those of Bombyx mori silk fiber. There was no significant structural difference between A. yamamai and A. pernyi silk fiber on an examination of x-ray diffraction curve and IR spectrum. Both of these wild silk fibers showed double diffraction peaks at the Bragg angle 2Θ16.7˚ and 20.5˚by x-ray diffraction analysis as well as IR absorption peaks for the bending vibration of specific groups related to ala-ala amino acid sequence. On the other hand, the x-ray diffraction curve and IR spectrum of Bombyx mori silk fiber are different from those of wild silk fibers, indicating different crystal structure as well as amino acid sequences. It showed under the polarizing microscope examination that the birefringence and optical orientation factor of wild silk fibers are much lower than those of B. mori silk. Also, the surface of degummed wild silk fibers was characterized by the longitudinal stripes of microfibrils in the direction of fiber axies. The amino acid composition, which is strongly related to the fine structure and properties, was not significantly different between these two wild silk fibers. However, the alanine content was somewhat less and polar amino acid content more for A. yamamai. As a result of fiber density measurement, the specific gravities of B. mori, A. pernyi and A. yamamai were 1.355~1.356, 1.308~1.311, 1.265~1.301g/㎤ in the order, respectively. The calculated crystallinity(%) was 64% for B. mori and 51~52% for wild silk fibers, which showed same trend by IR method in spite of somewhat higher value. The thermal decomposition behaviour was examined by DSC and TGA, showing that the degradation temperature was in the order of B mori, A. prernyi and A. yamamai at around 350
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