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Optimization of the fabrication conditions and effects of multi-walled carbon nanotubes on the tensile properties of various glass fibers/unsaturated polyester resin composites

机译:多壁碳纳米管对各种玻璃纤维/不饱和聚酯树脂复合材料拉伸性能的制造条件和效果的优化

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摘要

Conventional glass fiber/unsaturated polyester resin (UPR) composites were fabricated by four layers to verify the optimum fabrication conditions such as the initial curing temperature, fiber changes and vacuum. Before that another optimum condition for stir mixing multi-walled carbon nanotubes (MWCNTs) into UPR was further investigated based on the initial curing temperature. Exothermic temperature measurements, density measurements, thermo-gravimetric analysis and tensile testing were utilized to identify the effects of these factors on the UPR and composite laminates. Consequently, an initial curing temperature range of 25°C–35°C was recommended to start the polymerization. In addition, the fiber combination and applying vacuum were also represented as the other optimum conditions in composite fabrication. The optimum initial curing temperature was applied for modifying UPR with 0.1 wt.% MWCNTs. Then, all of optimum conditions were used to fabricate glass fibers/modified UPR composites. The higher tensile strength and modulus of fiber combination with the adding of MWCNTs were obtained at 25.29 MPa and 1.39 GPa, respectively. The results indicate that simple MWCNT mixing can be used in industry due to the reduction of the fabrication time and better tensile properties.
机译:通过四层制造常规的玻璃纤维/不饱和聚酯树脂(UPR)复合材料,以验证最佳制造条件,例如初始固化温度,纤维变化和真空。在进一步研究基于初始固化温度进一步研究搅拌将多壁碳纳米管(MWCNT)混合到UPR中的另一个最佳条件。放热温度测量,密度测量,热重分析和拉伸试验用于识别这些因素对UPR和复合层压板的影响。因此,建议使用25℃-55℃的初始固化温度范围以开始聚合。另外,纤维组合和施加真空也表示为复合制造中的其他最佳条件。施加最佳的初始固化温度,用于用0.1重量%的0.1重量%修饰UPR。%MWCNT。然后,所有最佳条件都用于制造玻璃纤维/改性UPR复合材料。在25.29MPa和1.39GPa分别获得与添加MWCNT的较高拉伸强度和纤维组合模量。结果表明,由于制造时间和更好的拉伸性能,可以在工业中使用简单的MWCNT混合。

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