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On the tolerable limits of granulated recycled material additives to maintain structural integrity

机译:在颗粒状回收材料添加剂的容许极限范围内,以保持结构完整性

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Production and maker spaces are increasingly generating mixed plastic material waste of varying quality from 3-D printers. Industrial interest is growing in embedding granulated recycled particulate material additives into a virgin binding matrix. Examples include the introduction of granulated mixed recycled materials into 3-D printer material, concrete, and pavement. The stress load-sharing between the particulate additive and the binding matrix is an important factor in design and development of these composite materials. With mixed material additives, a designer is interested in the variation of such predicted load-sharing. However, experimental development is costly and time-consuming, thus analytical and semi-analytical estimates are desired for accelerated development. In this work, we expand on previous analytically correlated phase-averaged micro- and macrostructural loading to include variational effects present in mixed recycled material. In addition, model trade-offs are provided to aid designers in quickly selecting application specific mixtures. This framework identifies the stress contributions, and their variation, to reduce product development time and costs, which could greatly accelerate material recycling and reuse for improved infrastructure materials, low-cost 3-D printer filament, and reduced waste towards a more circular economy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:生产和制造商空间越来越多地产生来自3D打印机的质量不同的混合塑料材料废料。将颗粒状的回收颗粒材料添加剂嵌入原始粘合基质中的工业兴趣正在增长。示例包括将颗粒状的混合回收材料引入3-D打印机材料,混凝土和路面。颗粒状添加剂和粘结基质之间的应力分担是这些复合材料设计和开发中的重要因素。对于混合材料添加剂,设计人员对这种预计的负载分担的变化感兴趣。然而,实验开发是昂贵且费时的,因此需要分析和半分析估计来加速开发。在这项工作中,我们扩展了先前分析相关的平均相态微观和宏观结构载荷,以包括混合回收材料中存在的变化效应。此外,提供了模型折衷方案,以帮助设计人员快速选择特定应用的混合物。该框架确定了应力贡献及其变化,以减少产品开发时间和成本,这可以极大地加速材料的回收和再利用,从而改善基础设施材料,低成本3D打印机灯丝并减少浪费,从而实现更循环的经济。 (C)2018 Elsevier Ltd.保留所有权利。

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