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通过熔融沉积成型制备的功能梯度聚乳酸-丙烯腈-联苯胺-苯乙烯力学行为的数值模拟:实验观察

Numerical Modeling of Mechanical Behavior of Functionally Graded Polylactic Acid-Acrylonitrile Benzidine Styrene Produced via Fused Deposition Modeling: Experimental Observations.

作者信息

Sevim Caglar, Caliskan Umut, Demirbas Munise Didem, Ekrikaya Safa, Apalak Mustafa Kemal

机构信息

Department of Mechanical Engineering, Faculty of Engineering, Niğde Ömer Halisdemir University, Nigde 51240, Turkey.

Department of Mechanical Engineering, Erciyes University, Kayseri 38280, Turkey.

出版信息

Materials (Basel). 2023 Jul 23;16(14):5177. doi: 10.3390/ma16145177.

Abstract

Functionally graded materials (FGM) have attracted considerable attention in the field of composite materials and rekindled interest in research on composite materials due to their unique mechanical response achieved through material design and optimization. Compared to conventional composites, FGMs offer several advantages and exceptional properties, including improved deformation resistance, improved toughness, lightness properties, and excellent recoverability. This study focused on the production of functionally graded (FG) polymer materials by the additive manufacturing (AM) method. FG structures were produced by the fused deposition modeling (FDM) method using acrylonitrile benzidine styrene (ABS) and polylactic acid (PLA) materials, and tensile tests were performed according to ASTM D638. The effects of different layer thicknesses, volume ratios, and total thicknesses on mechanical behavior were investigated. The tensile standard of materials produced by additive manufacturing introduces geometric differences. Another motivation in this study is to reveal the differences between the results according to the ASTM standard. In addition, tensile tests were carried out by producing single-layer samples at certain volume ratios to create a numerical model with the finite element method to verify the experimental data. As a result of this study, it is presented that the FG structure produced with FDM improves mechanical behavior.

摘要

功能梯度材料(FGM)因其通过材料设计和优化实现的独特力学响应,在复合材料领域引起了广泛关注,并重新激发了对复合材料研究的兴趣。与传统复合材料相比,功能梯度材料具有多种优势和卓越性能,包括提高抗变形能力、增强韧性、轻质特性以及出色的可恢复性。本研究聚焦于通过增材制造(AM)方法生产功能梯度(FG)聚合物材料。采用丙烯腈丁二烯苯乙烯(ABS)和聚乳酸(PLA)材料,通过熔融沉积建模(FDM)方法制造FG结构,并根据ASTM D638进行拉伸试验。研究了不同层厚、体积比和总厚度对力学行为的影响。增材制造生产的材料的拉伸标准引入了几何差异。本研究的另一个动机是揭示根据ASTM标准得出的结果之间的差异。此外,通过以特定体积比生产单层样品进行拉伸试验,利用有限元方法创建数值模型以验证实验数据。本研究结果表明,采用FDM制造的FG结构改善了力学行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da51/10384406/272e7747a3e0/materials-16-05177-g001.jpg

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