首页> 外文会议>International SAMPE Symposium and Exhibition >HYBRID COMPOSITE PANELS WITH FIREPROOF LIGHTWEIGHT CORE AND CARBON FIBER SKIN
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HYBRID COMPOSITE PANELS WITH FIREPROOF LIGHTWEIGHT CORE AND CARBON FIBER SKIN

机译:具有防火轻质芯和碳纤维皮肤的混合复合板

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Structural sandwiches are a special form of laminated composite in which thin, strong, stiff, hard, but relatively heavy facings are combined with thick, relatively soft, light and weaker cores to provide a lightweight composite stronger and stiffer in most respects than the sum of the individual stillness and strengths. In this investigation lightweight core with a density of about 700 kg/m~3 were made using ceramic spheres and an inorganic matrix, called polysialate. These cores have a compressive strength of about 5 MPa. Thin slabs of these cores were externally reinforced with carbon fabric to obtain hybrid composite panels. The panels were tested under three point bending using deflection control. The primary test variables were the amount of carbon reinforcement and the behavior after exposure to temperatures of 200, 400 and 600 deg C. Behavior of panels reinforced with Nicalon fibers are compared with the panels reinforced with carbon fibers. The results indicate that the system is viable to fabricate lightweight, fireproof structural panels. Delamination of fabrics did not occur in any of the samples. Classical bending theory provides a reasonable prediction of load-deflection behavior.
机译:结构夹心是一种特殊的层压复合材料,其中薄,强,坚硬,坚硬,而且相对较强的面部与厚,相对柔软,较弱的核心相结合,以提供比大多数方面的轻质复合材料更强和更硬的核心。个人静止和优势。在该研究中,使用陶瓷球和无机基质,具有约700kg / m〜3的密度的轻质芯,称为Polysalate。这些核心具有约5MPa的抗压强度。这些芯的薄板用碳织物外部加强,以获得混合复合板。使用偏转控制在三点弯曲下测试面板。初级测试变量是碳增强的量和暴露于200,400和600℃温度后的行为。与用碳纤维增强的面板进行比较了用尼克康纤维增强的面板的行为。结果表明,该系统可行制造轻质,防火结构板。任何样品都没有发生织物的分层。经典弯曲理论提供了负载偏转行为的合理预测。

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