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Ultra-high compressive strength of 3D woven spacer composites with bulked glass fiber and saturated resin absorption

机译:具有膨胀玻璃纤维和饱和树脂吸收的 3D 编织间隔复合材料的超高抗压强度

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? 2022 Elsevier LtdThree-dimensional woven spacer composites (3DWSCs) have a great potential to applied in aerospace or transportation fields due to their high strength-to-weight and stiffness-to-weight ratios, with excellent skin-core debonding resistance. Among these properties, the compressive strength of the 3DWSCs which is most critical, and still needs to be improved to meet the highly requirements in practical applications. In this study, we designed and manufactured 3DWSCs with highly enhanced compressive strength and energy absorption by adopting bulked glass fibers (BGFs) as pile yarns to weave its core layer to absorb more epoxy resin. Consequently, the specific compressive strength of 3DWSCs woven by BGFs as pile yarns with saturated epoxy resin absorption was 52.54 MPa g?1 cm3, 180 higher than that of the 3DWSCs woven by regular glass fiber (RGFs). Furthermore, the work of fracture of 3DWSCs woven by BGFs as pile yarns with saturated epoxy resin absorption was 14.82 N m, which enhanced 474 compared with that of 3DWSCs woven by RGFs. The failure cross sections depicted multiple brittle fractures of the pile yarns for both composites under compression, which caused multiple peaks in their stress–strain curves.
机译:?2022 Elsevier Ltd三维编织间隔复合材料(3DWSCs)具有高强度重量比和刚度重量比,具有优异的抗皮芯脱粘性,在航空航天或交通领域具有巨大的应用潜力。在这些性能中,3DWSCs的抗压强度是最关键的,仍然需要提高,以满足实际应用中的高要求。在这项研究中,我们通过采用块状玻璃纤维 (BGF) 作为绒毛纱线来编织其芯层以吸收更多的环氧树脂,从而设计和制造了具有高度增强的抗压强度和能量吸收的 3DWSC。因此,BGFs织造的饱和环氧树脂吸纳绒毛纱的3DWSCs的比抗压强度为52.54 MPa g?1 cm3,比普通玻璃纤维(RGFs)编织的3DWSCs高180%。此外,BGFs编织的3DWSCs作为饱和环氧树脂吸收率的绒毛纱线的断裂功为14.82 N,比RGFs编织的3DWSCs提高了474%。破坏截面描绘了两种复合材料在压缩下绒毛纱线的多处脆性断裂,这导致其应力-应变曲线出现多个峰值。

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