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首页> 外文期刊>Journal of Reinforced Plastics and Composites >In situ pultrusion of vinyl esterano-mica matrix composites: Process feasibility and process parameters
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In situ pultrusion of vinyl esterano-mica matrix composites: Process feasibility and process parameters

机译:乙烯基酯/纳米云母基复合材料的原位拉挤成型:工艺可行性和工艺参数

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We conducted a feasibility study on the pultrusion of glass fiber-reinforced vinyl esterano-mica matrix composites through a proprietary in situ method. The matrix prepolymer for pultrusion is to be prepared by blends of vinyl ester, initiator (t-butyl perbenzoate), and nano-mica. It is desired to investigate the process feasibility and parameters of the unidirectional glass fiber-reinforced vinyl esterano-mica matrix composites through in situ pultrusion. The characteristics of long pot life, high reactivity, and excellent glass fiber wet out of the vinyl esterano-mica matrix confirmed its excellent process feasibility for in situ pultrusion. The effects of the optimal process parameters, including die temperature, pulling rate, postcure temperature and time, filler (nano-mica) content, and glass fiber content, were investigated. The optimal die temperature was determined on the basis of a differential scanning calorimetry diagram and conversion of the vinyl esterano-mica matrix. The mechanical properties of pultruded composites decreased with increasing pulling rate and increased at a suitable postcure temperature and time. Furthermore, the properties decreased because of the degradation of pultruded composites for a long postcure time. The mechanical properties of pultruded composites achieved maximum values at 2 phr and 75.6vol% corresponding to nano-mica and glass fiber content and then decreased.
机译:我们通过专有的原位方法对玻璃纤维增​​强的乙烯基酯/纳米云母基复合材料的拉挤成型进行了可行性研究。用于拉挤成型的基体预聚物将通过乙烯基酯,引发剂(过苯甲酸叔丁酯)和纳米云母的混合物来制备。希望通过原位拉挤成型研究单向玻璃纤维增​​强的乙烯基酯/纳米云母基复合材料的工艺可行性和参数。保质期长,反应活性高,玻璃纤维从乙烯基酯/纳米云母基体中浸出的特性证实了其在原位拉挤成型中的出色工艺可行性。研究了最佳工艺参数(包括模头温度,拉速,后固化温度和时间,填料(纳米云母)含量和玻璃纤维含量)的影响。基于差示扫描量热图和乙烯基酯/纳米云母基体的转化来确定最佳模具温度。拉挤复合材料的机械性能随着拉速的增加而降低,并在合适的后固化温度和时间下增加。此外,由于拉挤复合材料在较长的后固化时间内会降解,因此性能下降。拉挤复合材料的机械性能在2 phr和75.6vol%处达到最大值,与纳米云母和玻璃纤维含量相对应,然后降低。

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