首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Mechanical properties and structure of silkworm cocoons: A comparative study of Bombyx mori, Antheraea assamensis, Antheraea pernyi and Antheraea mylitta silkworm cocoons
【24h】

Mechanical properties and structure of silkworm cocoons: A comparative study of Bombyx mori, Antheraea assamensis, Antheraea pernyi and Antheraea mylitta silkworm cocoons

机译:蚕茧的力学性能和结构:家蚕,as蚕、,蚕和my蚕茧的比较研究

获取原文
获取原文并翻译 | 示例
       

摘要

As a protective shell against environmental damage and attack by natural predators, the silkworm cocoon has outstanding mechanical properties. In particular, this multilayer non-woven composite structure can be exceptionally tough to enhance the chance of survival for silkworms while supporting their metabolic activity. Peel, out-of-plane compression and nano-indentation tests and micro-structure analysis were performed on four types of silkworm cocoon walls (domesticated Bombyx mori, semi-domesticated Antheraea assamensis and wild Antheraea pernyi and Antheraea mylitta silkworm cocoons) to understand the structure and mechanical property relationships. The wild silkworm cocoons were shown to be uniquely tough composite structures. The maximum work-of-fracture for the wild cocoons (A. pernyi and A. mylitta) was approximately 1000 J/m 2, which was almost 10 times the value for the domesticated cocoon (Bombyx mori) and 3 ~ 4 times the value for the semi-domesticated cocoon (A. assamensis). Calcium oxalate crystals were found to deposit on the outer surfaces of the semi-domesticated and wild cocoons. They did not show influence in enhancing the interlaminar adhesion between cocoon layers but exhibited much higher hardness than the cocoon pelades.
机译:蚕茧作为保护层,可抵御环境破坏和天然天敌的袭击,具有出色的机械性能。特别是,这种多层非织造复合材料结构可能异常坚硬,以提高家蚕的生存机会,同时又能支持其代谢活性。对四种类型的蚕茧壁(驯化的家蚕,半驯化的ther蚕和野生An蚕和and蚕)进行了剥离,平面外压缩和纳米压痕测试以及微观结构分析,以了解结构和力学性能的关系。野生蚕茧被证明是独特坚韧的复合结构。野生茧(A. pernyi和A. mylitta)的最大断裂功约为1000 J / m 2,几乎是驯化茧(Bombyx mori)值的10倍,是其值的3〜4倍。为半驯化的茧(A. assamensis)。发现草酸钙晶体沉积在半驯化和野生茧的外表面上。它们没有显示出对增强茧层之间的层间粘附力的影响,但是显示出比茧皮高得多的硬度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号