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Production and Characterization of Large-Scale Recycled Newspaper Enhanced HDPE Composite Laminates

机译:大型再生报纸增强HDPE复合层压板的生产与鉴定

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摘要

Recycled newspaper (NP)/high density polyethylene (HDPE) laminated composite can reach the physical and mechanical criteria for most industrial applications, which shows the potential of using solid-state waste paper in engineering materials. Herein, the effects of splicing pattern and size on the physical and mechanical properties of the laminated composite were investigated with the ultimate purpose to fabricate a large-scaleale composite. The laminated composite with a stair-like splicing had better physical and mechanical properties than that with a vertical splicing. An efficient stress transfer could be guaranteed when the distance between the two adjacent junctions were greater than a critical proportion of 1/32 of the length at longitudinal direction. The tensile and flexural properties of the large-scaleale composite with a stair-like splicing, which was fabricated at the splicing ratio of 1/32, were 109 ± 4.2 MPa (MOR), 9836 ± 411 MPa (MOE), 119 ± 7.1 MPa (MOR) and 10002 MPa ± 347 (MOE).
机译:再循环报纸(NP)/高密度聚乙烯(HDPE)层压复合材料可达到大多数工业应用的物理和机械标准,这表明了在工程材料中使用固态废纸的潜力。在此,研究了剪接图案和大小对层压复合材料的物理和力学性能的影响,并采用最终目的制造大型翻译复合材料。具有楼梯状拼接的层压复合材料具有比具有垂直剪接的物理和机械性能更好。当两个相邻结之间的距离大于长度在纵向的长度的临界比例的临界比例的临界比例时,可以保证有效的应力传递。具有阶梯状剪接的大型翻译复合材料的拉伸和弯曲性能,其在剪接比为1/32的剪接比为109±4.2MPa(MOL),9836±411 MPa(MOE),119±7.1 MPA(MOR)和10002 MPa±347(MOE)。

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