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首页> 外文期刊>Journal of the Serbian Chemical Society >Composite material based on an ablative phenolic resin and carbon fibers
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Composite material based on an ablative phenolic resin and carbon fibers

机译:基于烧蚀酚醛树脂和碳纤维的复合材料

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In this study, a technological procedure for the production of a molding compound based on short carbon fibers and an ablative phenol-formaldehyde resin for high temperature application was optimized. The starting raw materials were characterized and molding compounds with different fiber/ /matrix ratios and different fiber lengths were obtained. From the different laboratory samples, molded parts were made by thermo-compression. The basic mechanical and thermal properties of the composites were determined. From the obtained results, the optimal fiber/matrix ratio was determined for a production of molding compound for high temperature application. The molding process of the composite material was optimized and all the parameters for good mechanical properties and high thermal stability of the composite were obtained. Optimization of the composite molding process was performed by the application of a numerical method for a planned experiment, i.e., a full three-factorial experimental design with variance of all three parameters (fiber length, temperature and time of the press cycle) on two levels. The obtained mechanical properties (flexural strength: 247 MPa, modulus: 27.6 GPa, impact resistance: 110 (for test moldings 10 mm×10 mm) and 91 kJ/m2 (for test moldings 15 mm×15 mm)) justified the application of this composite material in the automotive, leisure, military and other industries where high temperature resistance and high mechanical strength is required.
机译:在这项研究中,优化了基于短碳纤维和高温应用的烧蚀酚醛树脂生产模塑料的工艺流程。对起始原料进行了表征,并获得了具有不同纤维/基体比和不同纤维长度的模塑料。从不同的实验室样品中,通过热压制成成型零件。确定了复合材料的基本机械性能和热性能。根据获得的结果,确定用于生产高温应用的模塑料的最佳纤维/基体比。优化了复合材料的成型工艺,并获得了复合材料良好机械性能和高热稳定性的所有参数。复合材料成型工艺的优化是通过对计划的实验应用数值方法进行的,即,完整的三因子实验设计,所有三个参数(纤维长度,温度和压榨周期的时间)在两个水平上均存在差异。所获得的机械性能(抗弯强度:247 MPa,模量:27.6 GPa,抗冲击性:110(对于10 mm×10 mm的测试成型品)和91 kJ / m2(对于15 mm×15 mm的测试成型品)是合理的。这种复合材料用于要求耐高温和高机械强度的汽车,休闲,军事和其他行业。

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