Study on the bending and dimensional behavior of honeycomb latticed ONYX composite material

IF 2.5 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Narain kumar Sivakumar, Sabarinathan Palaniyappan, Muthu S M, Logesh Kothandaraman, S. Basavarajappa, Omar Alageel, M. Hashem
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Abstract

Engineering, architecture, and transportation all use honeycomb structures in various ways. Latticing, made possible by additive manufacturing (AM), may significantly speed up the creation of adaptable structures. The current study focuses on assessing the impact of various three-dimensional (3D)-printing features on the flexural behavior and dimensional studies of the honeycomb latticed micro-carbon fiber reinforced nylon (ONYX) material. The experiment is performed by varying the levels of 3D-printing features like layer thickness (LT), infill geometry (IG), build direction (BD), shell count (SC), and infill percentage (IP) to measure the bending strength, length deviation, and lattice surface morphology variation. The experimental results show that, the peak flexural strength of 79.84 MPa is attained with specimen fabricated at 0.1 mm LT, 50% IP, 0° BD, rectilinear IG, and SC of 3. And moreover, these respective 3D-printing feature levels resulted in an improved surface morphology on the latticed specimens. The length deviation results clearly depict that specimen fabricated at lower LT of 0.1 mm, higher SC of 3, rectilinear IG, 0° BD, and higher IP of 50% consequences in accurate profile with a lower length deviation of 0.117 mm. The fractography results clearly implies that the 0° oriented latticed ONYX composite results in a progressive fracture and results in higher bending stress. On the other hand, the 45° and 90° oriented latticed ONYX materials undergo tilted fracture and perpendicular mode of fracture, respectively. From that it is concluded that, the triangular-shaped honeycomb latticed ONYX materials are suitable for the development of brackets for the portable cameras, medical, and dental appliances like prosthetics for lightweight splints in postsurgery.
蜂窝格状 ONYX 复合材料的弯曲和尺寸行为研究
工程、建筑和运输领域都在以各种方式使用蜂窝结构。通过增材制造(AM)实现的晶格化可能会大大加快适应性结构的创建速度。目前的研究重点是评估各种三维(3D)打印特征对蜂窝格状微碳纤维增强尼龙(ONYX)材料的抗弯行为和尺寸研究的影响。实验通过改变层厚(LT)、填充几何形状(IG)、构建方向(BD)、壳数(SC)和填充百分比(IP)等三维打印特征的水平来测量弯曲强度、长度偏差和晶格表面形态变化。实验结果表明,在 0.1 mm LT、50% IP、0° BD、直角 IG 和 3 SC 条件下制作的试样可达到 79.84 MPa 的弯曲强度峰值。长度偏差结果清楚地表明,以 0.1 毫米的较低 LT 值、3 的较高 SC 值、直角 IG 值、0° BD 值和 50%的较高 IP 值制造的试样,其轮廓精确,长度偏差较小,仅为 0.117 毫米。碎裂图结果清楚地表明,0° 定向格状 ONYX 复合材料会导致渐进式断裂,并产生较高的弯曲应力。另一方面,45° 和 90° 方向的格状 ONYX 材料分别发生倾斜断裂和垂直断裂。由此得出结论,三角形蜂窝格状 ONYX 材料适用于开发便携式照相机支架、医疗和牙科用具,如手术后用于轻型夹板的假肢。
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来源期刊
CiteScore
4.70
自引率
8.30%
发文量
166
审稿时长
3 months
期刊介绍: The Journal of Materials: Design and Applications covers the usage and design of materials for application in an engineering context. The materials covered include metals, ceramics, and composites, as well as engineering polymers. "The Journal of Materials Design and Applications is dedicated to publishing papers of the highest quality, in a timely fashion, covering a variety of important areas in materials technology. The Journal''s publishers have a wealth of publishing expertise and ensure that authors are given exemplary service. Every attention is given to publishing the papers as quickly as possible. The Journal has an excellent international reputation, with a corresponding international Editorial Board from a large number of different materials areas and disciplines advising the Editor." Professor Bill Banks - University of Strathclyde, UK This journal is a member of the Committee on Publication Ethics (COPE).
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