Investigation into the Role of Z-Fiber Orientation in Low-Velocity Impact Behavior of Sandwich-Structured Composite: Numerical and Experimental Analysis

IF 2.3 4区 工程技术 Q1 MATERIALS SCIENCE, TEXTILES Fibers and Polymers Pub Date : 2024-10-29 DOI:10.1007/s12221-024-00732-z
Fatemeh Hasanalizadeh, Hadi Dabiryan
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Abstract

Sandwich composites reinforced with weft-knitted spacer fabrics (WKSF) have a high potential for use in low-velocity impact applications due to the presence of Z-fibers. The present research fabricated sandwich composites using C-glass weft-knitted spacer fabrics and epoxy resin. Three different architectures, i.e., 1 × 1-Rib gaiting, 3 × 3-Rib gaiting, and 5 × 5-Rib, were used to achieve different orientations of Z-fibers. Low-velocity impact test was carried out on the prepared samples. Also, the impact behavior of the sandwich composite was simulated using ABAQUS standard/explicit. The experimental and numerical results show that Z-fibers affect the low-velocity impact behavior of sandwich composites. Based on experiments, the lower maximum reduced acceleration of the impactor and higher contact duration in 3 × 3 Rib-gating means that this specimen has more impact resistance. The indentation percentages of 1 × 1-Rib gaiting, 3 × 3-Rib gaiting, and 5 × 5-Rib gaiting samples were 37%, 34%, and 91%, respectively. In addition, considering the thickness of composites, the experimental indentation of 3 × 3 Rib-gating is lower than other samples which is confirmed by the numerical displacement of the impactor. Numerical analysis showed that the elastic modulus of Z-fibers, its position, and boundary conditions affected stress distribution. The discontinuity among Z-fibers prevents the transfer of stress from the impact area to the outside of this area. Generally, composites reinforced with 3 × 3-Rib gaiting structures show the highest resistance to impact stiffness.

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z -纤维取向对三明治结构复合材料低速冲击性能影响的研究:数值与实验分析
由于z纤维的存在,用纬编间隔织物(WKSF)增强的夹层复合材料在低速冲击应用中具有很高的应用潜力。本研究采用c -玻璃纬编间隔织物和环氧树脂制备夹层复合材料。采用1 × 1- rib gatting、3 × 3- rib gatting和5 × 5- rib gatting三种不同的结构来实现z -纤维的不同取向。对制备的试样进行了低速冲击试验。采用ABAQUS标准/显式软件对夹层复合材料的冲击行为进行了模拟。实验和数值结果表明,z纤维对夹层复合材料的低速冲击性能有一定的影响。实验结果表明,3 × 3肋浇注时冲击器最大减小加速度越小,接触时间越长,试件的抗冲击性能越好。1 × 1-肋编织、3 × 3-肋编织和5 × 5-肋编织样品压痕率分别为37%、34%和91%。此外,考虑到复合材料的厚度,3 × 3肋型门控的实验压痕小于其他样品,冲击器的数值位移证实了这一点。数值分析表明,z型纤维的弹性模量、位置和边界条件对应力分布有影响。z型纤维之间的不连续性阻止了应力从冲击区域向该区域外部的传递。一般情况下,3 × 3肋gaing结构增强复合材料具有最高的抗冲击刚度。
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来源期刊
Fibers and Polymers
Fibers and Polymers 工程技术-材料科学:纺织
CiteScore
3.90
自引率
8.00%
发文量
267
审稿时长
3.9 months
期刊介绍: -Chemistry of Fiber Materials, Polymer Reactions and Synthesis- Physical Properties of Fibers, Polymer Blends and Composites- Fiber Spinning and Textile Processing, Polymer Physics, Morphology- Colorants and Dyeing, Polymer Analysis and Characterization- Chemical Aftertreatment of Textiles, Polymer Processing and Rheology- Textile and Apparel Science, Functional Polymers
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