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Development of Pultrusion Techniques of Phenolic Foam Composite

机译:酚醛泡沫复合材料的拉挤工艺

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摘要

Phenolic resin has originally advantages of heat proof, fire retardant and less smoke during burning and these advantages are suitable properties in the construction field. In this paper, we present a development of pultrusion technique of phenolic foam composite materials composed of phenolic resin foam as matrix and roving glass fibers as a reinforcement in order to apply this composite to materials in the field of construction. A pultrusion technique can produce composites having the same cross section and optional length, and it is very useful because the volume and arrangement of fibers in the cross section of composite can be almost kept constant. In the case of molding phenolic foam composites, it is important to control the foaming time, and the foaming time can be controlled by a certain environmental temperature under cooling and heating Furthermore it is also important to feed constant resin, and we develop the original feeder machine. Next, this paper also shows mechanical strengths of the phenolic foam composite comparing with those of the candidate materials in the construction. As a result, the phenolic foam composite shows a possibility of application in the field of construction like natural woods. Additionally, measurement results of the thermal conductivity and flammability of phenolic foam composite are also shown.
机译:酚醛树脂最初具有耐热,阻燃和燃烧期间烟雾的优点,这些优点是建设领域的合适性能。在本文中,我们介绍了由酚醛树脂泡沫作为基质和粗玻璃纤维组成的酚醛泡沫复合材料的拉挤技术的开发,作为增强件,以将该复合材料应用于结构领域的材料。拉挤工艺可以产生具有相同横截面和可选长度的复合材料,并且非常有用,因为复合材料横截面中的纤维的体积和布置可以几乎保持恒定。在模塑酚醛泡沫复合材料的情况下,控制发泡时间非常重要,并且发泡时间可以通过冷却和加热下的一定的环境温度来控制,进而进给恒定的树脂也很重要,我们开发原始进料器机器。接下来,本文还示出了与构造中的候选材料的酚醛泡沫复合物的机械强度。结果,酚醛泡沫复合材料显示出在天然树林等施工领域中的应用。另外,还示出了酚类泡沫复合材料的导热性和易燃性的测量结果。

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