纺织学报 ›› 2021, Vol. 42 ›› Issue (10): 41-46.doi: 10.13475/j.fzxb.20201207506
XUE Rujing1, MO Xiaoxuan1, LIU Fujuan1,2,3()
摘要:
为开发设计新型功能纺织品,借助扫描电子显微镜、傅里叶红外光谱仪、X射线衍射仪、万能材料试验机和温湿度试验仪等研究了4种不同的家蚕茧壳的多层形貌、化学结构、结晶结构、力学性能和热传导性能,并对蚕茧壳的多层结构进行理论分析。结果表明:4种家蚕茧壳都具有独一无二的多层多孔结构,从外层到内层,纤维的直径先增大后减小;蚕茧壳厚度和尺寸不同,但都具有良好的热缓冲能力,相对而言,虎头蚕茧壳的耐热性最好,而斑马蚕茧壳(绿色)的热传导性最好。
中图分类号:
[1] | 张阳阳, 李菁, 赵丰, 等. 家蚕、蓖麻蚕和天蚕的茧丝结构比较[J]. 蚕业科学, 2015, 41(3):491-497. |
ZHANG Yangyang, LI Jing, ZHAO Feng, et al. A comparison on structure of cocoon filaments from mulberry silkworm, eri-silkworm and giant silkworm[J]. Science of Sericulture, 2015, 41(3):491-497. | |
[2] | 谢启凡, 胡彬慧, 杨明英, 等. 家蚕茧及其茧丝和生丝的机械性能概述[J]. 蚕业科学, 2015, 41(6):1120-1126. |
XIE Qifan, HU Binhui, YANG Mingying, et al. A review on mechanical properties of silkworm cocoon, cocoon filament and raw silk[J]. Science of Sericulture, 2015, 41(6):1120-1126. | |
[3] | 肖信香, 余博文, 朱文清, 等. 天然柞蚕茧基本性能研究[J]. 武汉纺织大学学报, 2015, 28(3):5-9. |
XIAO Xinxiang, YU Bowen, ZHU Wenqing, et al. Study on basic properties of natural tussah cocoon[J]. Journal of Wuhan Textile University, 2015, 28(3):5-9. | |
[4] |
DANKS H V. The roles of insect cocoons in cold conditions[J]. European Journal of Entomology, 2004, 101(3):433-437.
doi: 10.14411/eje.2004.062 |
[5] | 岳冬梅 . 王林美, 李树英. 几种野蚕丝形态结构的比较分析[C]// 中国蚕学会. 中国蚕学会第八届青年学术研讨会论文集. 昆明: 中国蚕学会, 2014: 241-245. |
YUE Dongmei, WANG Linmei, LI Shuying. The comparative analysis on the morphological structure of wild silk[C]// Chinese Silkworm Society. Proceedings of the 8th Youth Academic Symposium of Chinese Silkworm Society. Kunming: Chinese Silkworm Society, 2014: 241-245. | |
[6] | CHEN F J, PORTER D, VOLLRATH F. Structure and physical properties of silkworm cocoons[J]. Journal of the Royal Society Interface, 2012, 7(74):2299-2308. |
[7] |
GUAN J, ZHU W S, LIU B H, et al. Comparing the microstructure and mechanical properties of bombyx mori and antheraea pernyi cocoon composites[J]. Acta Biomaterialia, 2017, 47:60-70.
doi: 10.1016/j.actbio.2016.09.042 |
[8] | ZHANG J, KAUR J, RAJKHOWA R, et al. Mechanical properties and structure of silkworm cocoons: a comparative study of bombyx mori, antheraea assamensis, antheraea pernyi and antheraea mylitta silkworm cocoons[J]. Materials Science & Engineeering C: Materials for Biological Applications, 2013, 33(6):3206-3213. |
[9] |
LIU F J, WANG P, ZHANG Y, et al. A fractional model for insulation clothings eith cocoon-like porous structure[J]. Thermal Science, 2016, 20(3):779-784.
doi: 10.2298/TSCI1603779L |
[10] |
CHUNG D E, KIM H H, KIM M K, et al. Effects of different bombyx mori silkworm varieties on the structural characteristics and properties of silk[J]. International Journal of Biological Macromolecules, 2015, 79:943-951.
doi: 10.1016/j.ijbiomac.2015.06.012 |
[11] |
LIU F J, ZHANG X J, LI X. Silkworm (bombyx mori) cocoon vs wild cocoon multi-layer structure and performance characterization[J]. Thermal Science, 2019, 23(4):2135-2142.
doi: 10.2298/TSCI1904135L |
[12] |
HIEBER C S. The insulation layer in the cocoons of argiopeaurantia (araneae, araneidae)[J]. Journal of Thermal Biology, 1985, 10(3):171-175.
doi: 10.1016/0306-4565(85)90023-3 |
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