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首页> 外文期刊>Journal of Applied Polymer Science >Understanding the mechanical and interfacial properties of core-shell structured bamboo-plastic composites
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Understanding the mechanical and interfacial properties of core-shell structured bamboo-plastic composites

机译:了解核壳结构竹塑复合材料的机械和界面性能

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Core-shell structured bamboo-plastic composites (BPCs) were directly prepared with a single-screw/single-screw coextruder system. The effects of different shell layers, such as high-density polyethylene (HDPE), bamboo pulp fiber (BPF)/HDPE, and white mud (WM)/HDPE, were studied in the context of the mechanical properties and the characteristics of the interfacial transition zone (ITZ) of BPC. The mechanical properties of the core-shell structured BPC were characterized by flexure, short-beam shear, and impact tests. The surface morphologies of BPC were analyzed with field emission scanning electron microscopy. The ITZ properties were studied with dynamic mechanical analysis and nano-indentation testing. The results show that the flexural properties, short-beam strength, and impact strength decreased profoundly in the presence of BPF or WM. The dynamic mechanical analysis results suggest that the ITZ properties decreased, as indicated by the reductions in the storage modulus, loss modulus, and loss factor; the nano-indentation results show that on the addition of BPF or WM, a gradient in the hardness and modulus of elasticity appeared across ITZ. (C) 2015 Wiley Periodicals, Inc.
机译:采用单螺杆/单螺杆共挤出系统直接制备核-壳结构的竹塑复合材料(BPC)。在机械性能和界面特性的背景下,研究了不同壳层的影响,例如高密度聚乙烯(HDPE),竹浆纤维(BPF)/ HDPE和白泥(WM)/ HDPE BPC的过渡区域(ITZ)。核-壳结构的BPC的机械性能通过弯曲,短梁剪切和冲击测试来表征。用场发射扫描电子显微镜分析了BPC的表面形态。通过动态力学分析和纳米压痕测试研究了ITZ特性。结果表明,在存在BPF或WM的情况下,弯曲性能,短梁强度和冲击强度均显着降低。动态力学分析结果表明,如储能模量,损耗模量和损耗因子的降低所示,ITZ性能下降。纳米压痕结果表明,加入BPF或WM后,整个ITZ的硬度和弹性模量出现梯度。 (C)2015年Wiley Periodicals,Inc.

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