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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Effects of surface treatment on mechanical and thermal properties of jute fabric-reinforced poly(butylene succinate) biodegradable composites
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Effects of surface treatment on mechanical and thermal properties of jute fabric-reinforced poly(butylene succinate) biodegradable composites

机译:表面处理对黄麻织物增强聚丁二酸丁二醇酯可生物降解复合材料力学和热性能的影响

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摘要

Biodegradable composites based on poly(butylene succinate) (PBS) and unidirectional plain jute fabrics have been developed. These composites were fabricated by compression molding of sandwiching 4-7 jute fabric layers between five and eight layers of PBS sheets. Surface modification of the jute fabric by alkali and combined alkali-silane treatments was investigated. The effects of surface modification on the mechanical and thermal properties of jute fabric/PBS biodegradable composites were studied. The mechanical properties of surface-treated jute fabric/PBS biodegradable composites were significantly higher than those of untreated ones. Compared with the alkali treatment, the combined alkali-silane treatment showed higher mechanical properties of the jute fabric/PBS biodegradable composites. The alkali-silane-treated jute fabric/PBS biodegradable laminated composite with six reinforced fabric layers (47.5 wt.%) achieved the best mechanical properties in this study, which showed an increase in tensile strength by 16.4%, tensile modulus by 10.8%, flexural strength by 24.2%, and flexural modulus by 21.9% compared with those of untreated one. Fractured surface morphologies of tensile specimens exhibited an improvement of interfacial fiber-matrix adhesion in the PBS biodegradable composites reinforced with surface-treated jute fabric. Thermal stability of the jute fabric/PBS biodegradable composites was remarkably to be intermediate between the PBS resin and the jute fabric. Surface-treated jute fabric/PBS biodegradable composites having good interfacial fiber-matrix adhesion resulted in stable composites with better thermal stability than that of untreated ones.
机译:已经开发了基于聚丁二酸丁二酯(PBS)和单向平纹黄麻织物的可生物降解复合材料。这些复合材料是通过将5-7层PBS片层之间夹有4-7层黄麻织物层压缩成型而制成的。研究了碱金属和碱金属-硅烷联合处理对黄麻织物的表面改性。研究了表面改性对黄麻织物/ PBS可生物降解复合材料的机械和热学性能的影响。经表面处理的黄麻织物/ PBS可生物降解复合材料的机械性能显着高于未经处理的复合材料。与碱处理相比,碱-硅烷联合处理显示出黄麻织物/ PBS可生物降解复合材料的更高机械性能。经碱硅烷处理的黄麻织物/ PBS可生物降解的层压复合材料具有六层增强织物层(47.5 wt。%),在这项研究中达到了最佳机械性能,其抗张强度提高了16.4%,拉伸模量提高了10.8%,与未处理的相比,弯曲强度提高了24.2%,弯曲模量提高了21.9%。在表面处理过的黄麻织物增强的PBS可生物降解复合材料中,拉伸试样的断裂表面形态表现出界面纤维基质粘附的改善。黄麻织物/ PBS可生物降解复合材料的热稳定性显着介于PBS树脂和黄麻织物之间。具有良好的界面纤维-基质粘合性的经表面处理的黄麻织物/ PBS可生物降解的复合材料可形成稳定的复合材料,其热稳定性优于未处理的复合材料。

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