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Preparation and Characterization of Three Phase Epoxy Syntactic Foam Filled With Carbon Fiber Reinforced Hollow Epoxy Macrospheres and Hollow Glass Microspheres

机译:碳纤维增强空心环氧大球和空心玻璃微球填充的三相环氧复合泡沫塑料的制备与表征

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The present study focuses on the preparation and characterization of three phase epoxy syntactic foam (ESF) filled with carbon fiber reinforced hollow epoxy macrospheres (CFR-HEMS) and hollow glass microspheres (HGMS). The ESF was produced by embedding CFR-HEMS into a mixture of epoxy-hardener and 30 wt% HGMS. An innovative approach and simple procedure was implemented in the preparation of CFR-HEMS where expanded polystyrene (EPS) beads were used as initiation template. The EPS beads were coated with epoxy resin and carbon fiber using "rolling ball method," and these coated EPS beads were later cured and post-cured at high temperature which will shrink the EPS beads thus producing a hollow macrosphere structure. The compressive property of ESF was characterized and the mechanical model was issued. The ESF (450 kg/m(3), 30.74 MPa) can withstand 2049 m water pressure and provide 550 kg/m(3) buoyancy, the higher strength are due to the fiber spherical x-y network throughout the macrosphere epoxy matrix, which can give some support to the preparation of buoyancy material used in deepwater oil exploration. (C) 2014 Society of Plastics Engineers
机译:本研究着重于填充和填充碳纤维增强空心环氧大球体(CFR-HEMS)和空心玻璃微球体(HGMS)的三相环氧复合泡沫塑料(ESF)的制备和表征。通过将CFR-HEMS嵌入环氧固化剂和30 wt%HGMS的混合物中来生产ESF。在制备CFR-HEMS时采用了创新的方法和简单的程序,其中使用膨胀的聚苯乙烯(EPS)珠子作为起始模板。使用“滚珠法”用环氧树脂和碳纤维涂覆EPS珠,然后在高温下固化和后固化这些涂覆的EPS珠,这将使EPS珠收缩,从而产生空心的大球体结构。表征了ESF的压缩性能并发布了力学模型。 ESF(450 kg / m(3),30.74 MPa)可以承受2049 m的水压并提供550 kg / m(3)的浮力,而更高的强度则归因于整个球形环氧树脂基体中的纤维球形xy网络,它可以为深水石油勘探中使用的浮力材料的制备提供支持。 (C)2014年塑料工程师学会

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