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首页> 外文期刊>Scanning >Manufacture and Characterization of Heat-Resistant and Heat-Insulating New Composites Based on Resol Resin–Carbon Fibers–Perlite for the Built Heritage Protection
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Manufacture and Characterization of Heat-Resistant and Heat-Insulating New Composites Based on Resol Resin–Carbon Fibers–Perlite for the Built Heritage Protection

机译:基于淀粉树脂 - 碳纤维的耐热性和隔热新复合材料的制造与表征,用于建立遗产保护

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摘要

Composite materials were created for usage as reinforcement and to protect the building envelope based on today’s global conditions such as climate change. Composite materials were manufactured using phenol-formaldehyde resin (case of resol) as a matrix, carbon fiber as reinforcement (7.5%v/v), and perlite (10%w/w) as a low thermal conductivity component, to combine high mechanical properties with good heat resistance and good thermal insulation properties. The structure of these new materials was examined through scanning electron microscopy (SEM) and elemental analysis (SEM-EDS). The addition of perlite (10%w/w) in the resite matrix (without fibers) increased the flexural and shear strength of the composite materials. On the other hand, the composite materials with fiber reinforcement show that the perlite reduces the flexural and shear strength due to the additional interfaces which were created. During heat treatment at 473?K, carbon fibers had the smallest weight loss followed by perlite while the resite matrix (i.e., the cured resol) shows the greatest weight loss. It is noted that the role of perlite is to stabilize the mass of the resite matrix during heat treatment. The composite material with carbon fibers and perlite is a heat-resistant material with only 2% weight loss at 473?K for 1 hour and shows a low coefficient of thermal conductivity, making it a new material in the direction of heat-insulating materials.
机译:将复合材料作为使用作为加强,并根据当今的全球条件等保护建筑信封,如气候变化。用酚醛树脂(溶性壳体)作为基质,碳纤维作为增强(7.5%v / v)和珍珠岩(10%w / w)作为低导热率分量的碳纤维制造复合材料,以结合高机械具有良好耐热性和良好隔热性能的性能。通过扫描电子显微镜(SEM)和元素分析(SEM-EDS)检查这些新材料的结构。在剩余基质(不具有纤维)中加入珍珠岩(10%w / w)增加了复合材料的弯曲和剪切强度。另一方面,具有纤维增强件的复合材料表明,由于所产生的附加界面,珍珠岩降低了弯曲和剪切强度。在473Ω·k的热处理期间,碳纤维具有最小的重量损失,然后是珍珠岩(即固化索管)显示最大的减重。应注意,珍珠岩的作用是在热处理期间稳定梯质基质的质量。具有碳纤维和珍珠岩的复合材料是一种耐热材料,仅在473Ω·k下损失为1小时,显示出低导热系数,使其成为绝热材料方向的新材料。

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