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大气条件对选择性激光烧结中不同再生材料含量的聚酰胺力学性能的影响

Influence of Atmospheric Conditions on Mechanical Properties of Polyamide with Different Content of Recycled Material in Selective Laser Sintering.

作者信息

Pilipović Ana, Ilinčić Petar, Bakić Ante, Kodvanj Janoš

机构信息

Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, 10000 Zagreb, Croatia.

Probotica d.o.o., 10000 Zagreb, Croatia.

出版信息

Polymers (Basel). 2022 Jun 10;14(12):2355. doi: 10.3390/polym14122355.

Abstract

The price of material is an important factor when selecting the additive polymer procedure. In selective laser sintering (SLS), the price can be reduced by the recycling of material, i.e., with different shares of original and recycled material, as well as by the orientation of the product during manufacturing. Numerous tests warn that orientation in the direction of z axis should be as low as possible to reduce the total price of the product. The product also has to satisfy the influence of atmospheric conditions to which it is exposed during its lifetime, i.e., UV radiation and humid environment. UV light, with sun being its most common source, and average humidity in different parts of the world can be approximately from 20% to 90%, depending on time, day and geographic location. In this work, the test specimens have been made of original, mixed and 100% recycled material and then exposed to the influences of UV radiation and water absorption. After having been exposed to atmospheric conditions for a longer time, the mechanical properties of the polyamide products made by selective laser sintering were tested. The results show that exposure to UV radiation reduces tensile elongation at all ratios of recycled material and orientation of 70-90% except in the z direction, while in flexural deformation it is the other way around. The effect of water was observed only between the 7th-14th day of absorption with a decrease in strength until the deformation did not change.

摘要

在选择添加剂聚合物工艺时,材料价格是一个重要因素。在选择性激光烧结(SLS)中,可以通过材料回收来降低成本,即使用不同比例的原始材料和回收材料,以及在制造过程中通过产品的取向来降低成本。大量测试警告说,z轴方向的取向应尽可能低,以降低产品的总成本。产品还必须满足其在使用寿命期间所暴露的大气条件的影响,即紫外线辐射和潮湿环境。紫外线以太阳为最常见来源,世界不同地区的平均湿度约为20%至90%,具体取决于时间、日期和地理位置。在这项工作中,测试样品由原始材料、混合材料和100%回收材料制成,然后暴露于紫外线辐射和吸水的影响下。在长时间暴露于大气条件后,对通过选择性激光烧结制成的聚酰胺产品的机械性能进行了测试。结果表明,除了在z方向外,在所有回收材料比例和70-90%的取向情况下,紫外线辐射都会降低拉伸伸长率,而在弯曲变形方面则相反。仅在吸水的第7至14天观察到水的影响,强度下降直至变形不变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed44/9227374/ee9053eef2b0/polymers-14-02355-g001.jpg

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