CHARACTERIZATION OF BICOMPONENT 3D PRINTING TECHNOLOGIES OF BIODEGRADABLE MATERIALS

M. Catana, S. Mazurchevici
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Abstract

Reducing the effect of human activities on the environment, natural resources and public health has become one of the essential concerns of researchers around the world. Biodegradable materials are suitable alternatives to petrochemical-derived materials and have essential roles in environmental protection due to reduced use of fossil-based raw materials and decreased carbon dioxide emissions. Therefore, there is a growing interest in biodegradable materials, which degrade faster than conventional materials. The current study aims to analyze the use of biodegradable polymer materials in Additive Manufacturing, through bi-component 3D printing. In Additive Manufacturing-AM, parts are manufactured layer by layer with minimal allocation for finishing operations. Because AM enables greater material savings than traditional processes, 3D printing can be considered a distributed manufacturing technology to improve sustainability and the circular economy worldwide.
生物可降解材料双组分3d打印技术的表征
减少人类活动对环境、自然资源和公众健康的影响已成为世界各国研究人员关注的重要问题之一。生物可降解材料是石油化工衍生材料的合适替代品,由于减少了化石原料的使用和减少了二氧化碳的排放,在环境保护方面发挥了重要作用。因此,人们对生物可降解材料越来越感兴趣,因为它比传统材料降解得更快。目前的研究旨在通过双组分3D打印分析生物可降解聚合物材料在增材制造中的应用。在增材制造- am中,零件是逐层制造的,精加工操作的分配最小。由于增材制造可以比传统工艺节省更多的材料,因此3D打印可以被视为一种分布式制造技术,以提高全球的可持续性和循环经济。
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