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Characterisation of recycled mixed plastic solid wastes: Coupon and full-scale investigation

机译:回收的混合塑料固体废物的表征:优惠券和全面调查

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摘要

In Australia, the plastic solid waste (PSW) comprises 16% by weight of municipal solid waste but only about one-fourth are recycled. One of the best options to increase the recycling rate of mixed PSW is to convert them into products suitable for construction. However, a comprehensive understanding on the mechanical behaviour of mixed PSW under different loading conditions is important for their widespread use as a construction material. This study focuses on investigating the mechanical behaviour of recycled mixed PSW containing HDPE, LDPE and PP using coupon and full-scale specimens. From coupon test, the strength values were found to be 14.8, 19.8, 20, 5.6 MPa in tension, compression, flexure and shear respectively, while the modulus of elasticity are 0.91, 1.03, 0.72 GPa in tension, compression and flexure respectively. The coefficient of variance of the measured properties for coupon and fullscale specimens was less than 10% indicating that consistent material properties can be obtained for mixed PSW. More importantly, the strength properties of mixed PSW are comparable to softwood structural timber. The flexural behaviour of full-scale specimens was also predicted using fibre model analysis and finite element modelling. Comparison showed that using coupon specimen's properties, the flexural behaviour of the full-scale specimens can be predicted reliably which can eliminate the costly and time consuming arrangements for full-scale experimental tests.
机译:在澳大利亚,塑料固体废物(PSW)占城市固体废物的16%(重量),但只有大约四分之一被回收。提高混合PSW的回收率的最佳选择之一是将其转换为适合建筑的产品。但是,对于混合PSW在不同载荷条件下的机械性能的全面了解对于它们广泛用作建筑材料很重要。这项研究的重点是使用试样和满量程样品研究含HDPE,LDPE和PP的再生混合PSW的机械性能。通过试样试验,发现在拉伸,压缩,挠曲和剪切下的强度值分别为14.8、19.8、20、5.6MPa,而在拉伸,压缩和挠曲下的弹性模量分别为0.91、1.03、0.72GPa。试样和满刻度样品的测量特性的方差系数小于10%,表明对于混合PSW,可以获得一致的材料特性。更重要的是,混合PSW的强度特性与软木结构木材相当。还可以使用纤维模型分析和有限元建模来预测全尺寸试样的弯曲行为。比较表明,利用试样的特性,可以可靠地预测全尺寸试样的弯曲行为,从而消除了用于全尺寸试验的昂贵且费时的布置。

著录项

  • 来源
    《Waste Management》 |2016年第2期|72-80|共9页
  • 作者单位

    Centre of Excellence in Engineered Fibre Composites (CEEFC), Faculty of Health, Engineering and Sciences, University of Southern Queensland, Toowoomba, Queensland 4350, Australia;

    School of Civil Engineering and Surveying, Centre of Excellence in Engineered Fibre Composites (CEEFC), Faculty of Health, Engineering and Sciences, University of Southern Queensland, Toowoomba, Queensland 4350, Australia;

    Centre of Excellence in Engineered Fibre Composites (CEEFC), Faculty of Health, Engineering and Sciences, University of Southern Queensland, Toowoomba, Queensland 4350, Australia;

    Centre of Excellence in Engineered Fibre Composites (CEEFC), Faculty of Health, Engineering and Sciences, University of Southern Queensland, Toowoomba, Queensland 4350, Australia,Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong Special Administrative Region;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mixed plastic solid waste; Mechanical behaviour; Coupon; Full-scale; Simulation; Fibre model analysis;

    机译:混合的塑料固体废物;机械性能;优惠券;全尺寸模拟;纤维模型分析;

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