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IPN Polysiloxane-Epoxy Resin for High Temperature Coatings: Structure Effects on Layer Performance after 450 °C Treatment

机译:用于高温涂料的IPN聚硅氧烷-环氧树脂:450°C处理后对层性能的结构影响

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摘要

Coatings for high temperatures (HT > 400 °C) are obtained from interpenetrating polymer network (IPN) binders formed by simultaneous polymerization of silicone and epoxide pre-polymers. A ceramic layer; mainly composed of silica and fillers; remains on the metal surface after a thermal treatment at 450 °C. The layer adhesion and the inorganic filler’s distribution have been investigated by, firstly, exchanging the organic substituents (methyl and phenyl) of the silicone chains and, secondly, by adding conductive graphene nanoplatelets with the aim to assure a uniform distribution of heat during the thermal treatment. The results are evidence that different substituent ratios affect the polymer initial layout. The adhesion tests of paint formulations are analysed and were related to instrumental analyses performed using glow discharge optical emission spectroscopy (GDOES); thermal analyses (TG/DTA and DSC); electron microscopy with energy dispersive X-ray analysis (SEM-EDX). A greater resistance to powdering using phenyl groups instead of methyl ones; and an improved distribution of fillers due to graphene nanoplatelet addition; is evidenced
机译:高温涂料(HT> 400°C)由互穿的聚合物网络(IPN)粘合剂获得,该粘合剂是通过同时聚合有机硅和环氧预聚物而形成的。陶瓷层;主要由二氧化硅和填料组成;在450°C热处理后,残留在金属表面上。首先,通过交换有机硅链的有机取代基(甲基和苯基),其次,通过添加导电石墨烯纳米片,以确保在加热过程中热量均匀分布,研究了层的粘附性和无机填料的分布。治疗。结果证明不同的取代基比率会影响聚合物的初始布局。分析了油漆配方的附着力测试,并与使用辉光放电光发射光谱法(GDOES)进行的仪器分析有关;热分析(TG / DTA和DSC);电子显微镜,具有能量色散X射线分析(SEM-EDX)。使用苯基而不是甲基的更大的抗粉化性;以及由于石墨烯纳米片的添加而改善的填料分布;有证据

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