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A Novel Strengthening Method for Damaged Pipeline under High Temperature Using Inorganic Insulation Material and Carbon Fiber Reinforced Plastic Composite Material

机译:无机绝缘材料和碳纤维增强塑料复合材料在高温下损坏管道的新型强化方法

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摘要

In this paper, a strengthening method for the damaged high-temperature steel pipeline using inorganic insulation material which was confined by carbon fiber reinforcement plastic (CFRP) composite materials was proposed. Two inorganic insulation materials were composed of magnesium phosphate cement (MPC) mixing with perlite and vermiculite powders, respectively. The influences of insulation material composites with various ratios of the perlite or vermiculite powder were discussed, in terms of compressive strength and thermal conductivity coefficients of inorganic insulation materials. The insulation materials confined by carbon fiber reinforced polymer jackets for enhancing the mechanical behavior were also investigated. From the experimental results, the main finding of the work was that the inorganic insulation materials added to the perlite powder represented greater insulation capability than added vermiculite ones under the condition of the same compressive strength. Different ratios of perlite inorganic insulation material cylinders with the dimension of ϕ 10 cm × 20 cm were confined by one layer and two layers of CFRP composite material. The compressive strength of the specimens increased by 258%−927% after using 1-layer CFRP composite material and increased by 480%−1541% after applying 2-layer CFRP composite material. A peak strength prediction model of insulation materials confined by CFRP was proposed, and it was found that the proposed model accurately predicted the peak strength of the inorganic insulation material cylinder. Finally, a verification test of the strengthening method for damaged high-temperature pipeline was performed to prove that the proposed strengthening method is feasible.
机译:在本文中,提出了一种用碳纤维增强塑料(CFRP)复合材料限制的无机绝缘材料损坏的高温钢管管的强化方法。两种无机绝缘材料分别与磷酸盐和蛭石粉末混合的磷酸镁水泥(MPC)组成。就无机绝缘材料的抗压强度和导热系数而言,讨论了绝缘材料复合材料具有各种比例的珍珠岩或蛭石粉末的影响。还研究了由碳纤维增强聚合物夹套限制的绝缘材料,用于增强机械行为。从实验结果来看,该作品的主要发现是加入珍珠岩粉末的无机绝缘材料在相同抗压强度的条件下,在珍珠岩粉末中添加的无机绝缘材料具有比添加的蛭石内的绝缘能力更大。具有φ10cm×20cm的尺寸的珍珠岩无机绝缘材料圆柱体的不同比例由一层和两层CFRP复合材料限制。使用1层CFRP复合材料后,试样的抗压强度增加258%-927%,并在施加2层CFRP复合材料后增加480%-1541%。提出了CFRP限制的绝缘材料峰强预测模型,发现该模型精确地预测了无机绝缘材料缸的峰值强度。最后,进行了对受损高温管道的强化方法的验证试验,以证明所提出的强化方法是可行的。

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