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Preparation of silk resins by hot pressing Bombyx mori and Eri silk powders

机译:热压家蚕和蚕丝粉制备蚕丝树脂

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摘要

We investigate the mechanical properties and structure of silk resins as potential alternatives to tortoiseshell for producing eyeglass frames and various ornaments. Silk powders are obtained from Bombyx mori and Eri silk waste fibers before the degumming process. The powders are fabricated into resins via simple hot pressing under a pressure of 31.2 MPa at temperatures in the range 150-180 degrees C. The results indicate that the B. mori resins have higher micro-Vickers hardness, three-point bending strength, and elastic modulus (66 Hv, 122 MPa, and 8.7 GPa, respectively) compared to the Eri silk resins (58 Hv, 95 MPa, and 8.2 GPa, respectively). The better mechanical properties of the fibroin resins are related directly to longer drying times. The optimum drying conditions are found to be at a temperature of 100 degrees C under a vacuum of -0.1 MPa for a time of 7 d. ATR-FTIR and XRD results show how the fibroin structure changes after resinification and drying. The morphology and the distribution size of particle of the silk powders and the fractured surfaces of the resins are analyzed from SEM micrographs. The present findings demonstrate that silk resins are suitable materials for developing useful applications because of their favorable mechanical properties.
机译:我们研究了丝绸树脂的机械性能和结构,作为龟甲生产眼镜框和各种装饰品的潜在替代品。蚕丝粉是在脱胶工艺之前从Bombyx mori和Eri蚕丝废纤维获得的。通过在150-180摄氏度范围内的温度下,在31.2 MPa的压力下,通过简单的热压将粉末制成树脂。结果表明,桑氏芽孢杆菌树脂具有更高的微维氏硬度,三点弯曲强度和弹性模量(分别为66 Hv,122 MPa和8.7 GPa)与Eri丝树脂(分别为58 Hv,95 MPa和8.2 GPa)相比。纤维蛋白树脂更好的机械性能直接与更长的干燥时间有关。发现最佳的干燥条件是在100℃的温度和-0.1 MPa的真空下持续7 d的时间。 ATR-FTIR和XRD结果表明纤维蛋白结构在树脂化和干燥后如何变化。从SEM显微照片分析了丝粉的颗粒的形态和分布尺寸以及树脂的断裂表面。本发明的发现表明,丝绸树脂由于其良好的机械性能而成为开发有用应用的合适材料。

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