Flexural Bending and Fatigue Analysis of Functionally Graded Viscoelastic Materials: Experimental and Numerical Approaches

IF 0.9 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Physics and Chemistry of Solid State Pub Date : 2023-11-20 DOI:10.15330/pcss.24.4.628-639
E. Njim, S.E. Sadiq, M.S. Al-Din Tahir, M.A. Flayyih, L. Hadji
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Abstract

This work synthesized a thermoplastic polymer with varying densities along one direction using additive manufacturing technology to study the dynamic and static characteristics of functionally graded viscoelastic materials (FGVMs). To describe the mechanical properties of FGVMs, an analytical formulation based on the sigmoid-law formulation was proposed. The experimental program is conducted on 3D-printed samples, and various tests are conducted to examine the performance of such materials. Furthermore, the finite element method was used to evaluate the structural system's flexural properties. The influences of FG parameters and geometrical properties on flexural and reverse bending fatigue life are analyzed. The results show that increasing porosity from 10% to 30% at a power-law index (k = 2) reduces bending strength by 31.25 percent and deflection by around 11.2 percent for VE samples. Changing the power-law exponent from 0.5 to 10 increases fatigue strength by 35 %.
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功能分级粘弹性材料的挠曲和疲劳分析:实验和数值方法
这项研究利用增材制造技术合成了一种沿一个方向具有不同密度的热塑性聚合物,以研究功能分级粘弹性材料(FGVMs)的动态和静态特性。为描述 FGVM 的机械特性,提出了一种基于 sigmoid-law 公式的分析配方。实验项目在三维打印样品上进行,并通过各种测试来检验此类材料的性能。此外,还使用有限元法评估了结构系统的弯曲性能。分析了 FG 参数和几何特性对弯曲和反向弯曲疲劳寿命的影响。结果表明,在幂律指数(k = 2)下,孔隙率从 10%增加到 30%,VE 样品的抗弯强度降低了 31.25%,挠度降低了约 11.2%。将幂律指数从 0.5 改为 10 后,疲劳强度提高了 35%。
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CiteScore
1.70
自引率
14.30%
发文量
83
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