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3D打印聚乳酸聚合物拉伸响应的填充设计评估

Evaluation of the Infill Design on the Tensile Response of 3D Printed Polylactic Acid Polymer.

作者信息

Harpool Tanner David, Alarifi Ibrahim Mohammed, Alshammari Basheer A, Aabid Abdul, Baig Muneer, Malik Rizwan Ahmed, Mohamed Sayed Ahmed, Asmatulu Ramazan, El-Bagory Tarek Mohamed Ahmed Ali

机构信息

Department of Mechanical Engineering, Wichita State University, 1845 Fairmount, Wichita, KS 67260, USA.

Department of Mechanical and Industrial Engineering, College of Engineering, Majmaah University, Al-Majmaah, Riyadh 11952, Saudi Arabia.

出版信息

Materials (Basel). 2021 Apr 25;14(9):2195. doi: 10.3390/ma14092195.

Abstract

The current study explores the effects of geometrical shapes of the infills on the 3D printed polylactic acid (PLA) plastic on the tensile properties. For this purpose, by utilizing an accessible supply desktop printer, specimens of diamond, rectangular, and hexagonal infill patterns were produced using the fused filament fabrication (FFF) 3D printing technique. Additionally, solid samples were printed for comparison. The printed tensile test specimens were conducted at environmental temperature, Ta of 23 °C and crosshead speed, V of 5 mm/min. Mainly, this study focuses on investigating the percentage infill with respect to the cross-sectional area of the investigated samples. The mechanical properties, i.e., modulus of toughness, ultimate tensile stress, yield stress, and percent elongation, were explored for each sample having a different geometrical infill design. The test outcomes for each pattern were systematically compared. To further validate the experimental results, a computer simulation using finite element analysis was also performed and contrasted with the experimental tensile tests. The experimental results mainly suggested a brittle behavior for solidly infilled specimen, while rectangular, diamond, and hexagonal infill patterns showed ductile-like behavior (fine size and texture of infills). This brittleness may be due to the relatively higher infill density results that led to the high bonding adhesion of the printed layers, and the size and thickness effects of the solid substrate. It made the solidly infilled specimen structure denser and brittle. Among all structures, hexagon geometrical infill showed relative improvement in the mechanical properties (highest ultimate tensile stress and modulus values 1759.4 MPa and 57.74 MPa, respectively) compared with other geometrical infills. Therefore, the geometrical infill effects play an important role in selecting the suitable mechanical property's values in industrial applications.

摘要

本研究探讨了填充材料的几何形状对3D打印聚乳酸(PLA)塑料拉伸性能的影响。为此,利用一台易于获取的桌面打印机,采用熔丝制造(FFF)3D打印技术制作了菱形、矩形和六边形填充图案的试样。此外,还打印了实心样品用于比较。打印的拉伸试验试样在环境温度23℃和十字头速度5mm/min下进行测试。主要地,本研究着重研究相对于被研究样品横截面积的填充百分比。对具有不同几何填充设计的每个样品的机械性能,即韧性模量、极限拉伸应力、屈服应力和伸长百分比进行了探究。系统地比较了每种图案的测试结果。为了进一步验证实验结果,还进行了有限元分析的计算机模拟,并与实验拉伸试验进行了对比。实验结果主要表明实心填充试样表现出脆性,而矩形、菱形和六边形填充图案表现出类似韧性的行为(填充材料尺寸小且有纹理)。这种脆性可能是由于相对较高的填充密度导致打印层的高粘结附着力,以及实心基材的尺寸和厚度效应。这使得实心填充试样结构更致密且易碎。在所有结构中,六边形几何填充与其他几何填充相比,机械性能有相对改善(极限拉伸应力和模量值最高,分别为1759.4MPa和57.74MPa)。因此,几何填充效应在工业应用中选择合适的机械性能值方面起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/665b/8123144/2757e8cb29eb/materials-14-02195-g001.jpg

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