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3D打印制造的聚合物材料链节的拉伸行为

Tensile Behavior of Chain Links Made of Polymeric Materials Manufactured by 3D Printing.

作者信息

Rădulescu Bruno, Mihalache Andrei Marius, Păduraru Emilian, Hriţuc Adelina, Rădulescu Mara Cristina, Slătineanu Laurenţiu, Ermolai Vasile

机构信息

Department of Digital Production Systems, "Gheorghe Asachi" Technical University of Iași, 700050 Iași, Romania.

Department of Machine Manufacturing Technology, "Gheorghe Asachi" Technical University of Iași, 700050 Iași, Romania.

出版信息

Polymers (Basel). 2023 Jul 26;15(15):3178. doi: 10.3390/polym15153178.

Abstract

For reduced mechanical stress, some chains with links made of metallic materials could be replaced by chains made of polymeric materials. A lower weight and a higher corrosion resistance would characterize such chains. From this point of view, research on the behavior of chain links made of polymeric materials under the action of tensile stresses can become important. Modeling by the finite element method highlighted some specific aspects of the behavior of a chain link subjected to tensile stresses. Later, we resorted to the manufacture by 3D printing of some chain links from four distinct polymeric materials, with the modification of the size of the chain link and, respectively, of the values of some of the input factors in the 3D printing process. The tensile strength of the chain links was determined using specialized equipment. The experimental results were processed mathematically to determine some empirical mathematical models that highlight the influence of the values of the input factors in the 3D printing process on the tensile strength of the samples in the form of chain links. It thus became possible to compare the results obtained for the four polymeric materials considered and identify the polymeric material that provides the highest tensile strength of the sample in the form of a chain link. The results of the experimental research showed that the highest mechanical resistance was obtained in the case of the links made of polyethylene terephthalate glycol (PETG). According to experimental results, when tested under identical conditions, PETG links can break for a force value of 40.9 N. In comparison, polylactic acid links will break for a force value of 4.70 N. Links printed in the horizontal position were almost 9-fold stronger than those printed in the vertical position. Under the same test conditions, according to the determined empirical mathematical models, PETG links printed in a horizontal position will break for a force of 300.8 N, while links printed in a vertical position will break for force values of 35.8 N.

摘要

为了降低机械应力,一些链节由金属材料制成的链条可以用聚合物材料制成的链条来替代。这种链条的特点是重量更轻、耐腐蚀性更高。从这一角度来看,研究聚合物材料制成的链节在拉伸应力作用下的行为就变得很重要。有限元法建模突出了链节在拉伸应力作用下行为的一些特定方面。后来,我们采用3D打印技术制造了一些由四种不同聚合物材料制成的链节,并改变了链节的尺寸以及3D打印过程中一些输入因素的值。使用专门设备测定链节的拉伸强度。对实验结果进行数学处理,以确定一些经验数学模型,这些模型突出了3D打印过程中输入因素的值对链节形式样品拉伸强度的影响。这样就可以比较所考虑的四种聚合物材料的实验结果,并确定能提供最高链节形式样品拉伸强度的聚合物材料。实验研究结果表明,聚对苯二甲酸乙二醇酯二醇(PETG)制成的链节具有最高的机械抗性。根据实验结果,在相同条件下测试时,PETG链节在40.9 N的力值下会断裂。相比之下,聚乳酸链节在4.70 N的力值下会断裂。水平位置打印的链节比垂直位置打印的链节强度几乎高9倍。在相同测试条件下,根据确定的经验数学模型,水平位置打印的PETG链节在300.8 N的力作用下会断裂,而垂直位置打印的链节在35.8 N的力值下会断裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8030/10421413/d27bfc2328cf/polymers-15-03178-g001.jpg

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