首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Design, fabrication, and evaluation of functionally graded triply periodic minimal surface structures fabricated by 3D printing
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Design, fabrication, and evaluation of functionally graded triply periodic minimal surface structures fabricated by 3D printing

机译:3D打印功能梯度三周期最小表面结构的设计、制造和评估

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摘要

Cellular structures are a favorite selection for the design of lightweight components and energy absorption applications due to several advantages such as their customizable stiffness and strength. In this investigation, functionally graded (FG) triply periodic minimal surfaces, Schoen-IWP (SIWP), and Schwarz primitive (SPrim) cellular structures were fabricated by masked stereolithography (MSLA) technique using ABS-like gray resin. The sample morphology, deformation behavior, mechanical characteristics, and energy absorption of graded and uniform structures were studied using experimental compression tests. The FG sample structures exhibited layer-by-layer collapse delaying shear failure. On the other hand, uniform samples showed complete diagonal shear failure. The total energy absorption to the densification point was 0.52 MJ/m(3) and 0.58 MJ/m(3) for graded and uniform SIWP, respectively. Additionally, the absorbed energy of the graded SPrim structure was 0.59 MJ/m(3) while the uniform one absorbed 0.27 MJ/m(3). The investigations showed that the graded SPrim absorbed more energy with high densification strain during the compression test.
机译:多孔结构是轻质部件设计和能量吸收应用的首选,因为它具有可定制的刚度和强度等多个优点。在这项研究中,使用类ABS灰色树脂通过掩蔽立体光刻(MSLA)技术制备了功能梯度(FG)三周期最小表面、Schoen-IWP(SIWP)和Schwarz原始(SPrim)细胞结构。采用实验压缩试验研究了梯度和均匀结构的试样形貌、变形行为、力学特性和吸能情况。FG试样结构呈现出逐层坍塌延迟剪切破坏的现象。另一方面,均匀的样品显示出完全的对角线剪切破坏。分级SIWP和均匀SIWP对致密化点的总能量吸收分别为0.52 MJ/m(3)和0.58 MJ/m(3)。渐变SPrim结构的吸收能量为0.59 MJ/m(3),而均匀结构的吸收能量为0.27 MJ/m(3)。研究表明,在压缩试验过程中,分级的SPrim吸收了更多的高致密化应变能量。

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