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Manufacturing and Shear Response Characterization of Carbon Nanofiber Modified CFRP Using the Out-of-Autoclave-Vacuum-Bag-Only Cure Process

机译:碳纳米纤维改性的CFRP的制备和剪切反应特性的说明

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摘要

The interlaminar shear response is studied for carbon nanofiber (CNF) modified out-of-autoclave-vacuum-bag-only (OOA-VBO) carbon fiber reinforced plastic (CFRP). Commercial OOA-VBO prepregs were coated with a CNF modified epoxy solution and a control epoxy solution without CNF to make CNF modified samples and control samples, respectively. Tensile testingwas used to study the in-plane shear performance of [±45°]4s composite laminates. Significant difference in failure modes between the control and CNF modified CFRPs was identified. The control samples experienced half-plane interlaminar delamination, whereas the CNF modified samples experienced a localized failure in the intralaminar region. Digital image correlation (DIC) surface strain results of the control sample showed no further surface strain increase along the delaminated section when the sample was further elongated prior to sample failure. On the other hand, the DIC results of the CNF modified sample showed that the surface strain increased relatively and uniformly across the CFRP as the sample was further elongated until sample failure. The failure mode evidence along with microscope pictures indicated that the CNF modification acted as a beneficial reinforcement inhibiting interlaminar delamination.
机译:研究了碳纳米纤维(CNF)改性的仅用高压灭菌真空袋(OOA-VBO)碳纤维增强塑料(CFRP)的层间剪切响应。将商品化的OOA-VBO预浸料涂以CNF改性的环氧溶液和不含CNF的对照环氧溶液,分别制成CNF改性的样品和对照样品。通过拉伸试验研究了[±45°] 4s复合层压板的面内剪切性能。对照和CNF修饰的CFRP之间在失效模式上存在显着差异。对照样品经历了半平面层间分层,而CNF改性的样品在层内区域经历了局部破坏。对照样品的数字图像相关(DIC)表面应变结果显示,当样品在样品破裂前进一步拉长时,沿分层部分的表面应变没有进一步增加。另一方面,CNF改性样品的DIC结果表明,随着样品进一步拉长直至样品破裂,表面应变在CFRP上相对均匀地增加。失效模式的证据以及显微镜照片表明,CNF修饰起到了抑制层间分层的有益增强作用。

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