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Failure analysis of the adhesive metal joint bonded on anticorrosion plastic alloy composite pipe

机译:防腐塑料合金复合管粘接金属接头的失效分析

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The break off of adhesive metal joint from the anticorrosion plastic alloy composite pipe has caused serious burst. Investigations are performed to identify the most probable causes of the break off. The development of the composite pipe, the inner liner and outer GRP layer, glass transition temperature (T-g) and bonding strength of the adhesive resin are investigated in detail to understand the reasons of failure. Results have revealed that a fully break off of the adhesive metal joint from the composite pipe causes the burst of the pipeline. The average T-g value of the cured adhesive resin suggests that it is suitable for transporting the media with a temperature lower than 60 degrees C. Moreover, the shear strength of adhesive resin reaches maximum at room temperature and decreases with either increased or decreased temperature. The continuous higher working temperature of the whole pipeline causes gradual decrease of the bonding strength of adhesive resin and results in final break off of the adhesive metal joint. (C) 2014 Elsevier Ltd. All rights reserved.
机译:防腐蚀塑料合金复合管的粘合金属接头断裂导致严重破裂。进行调查以找出最可能的折断原因。详细研究复合管的发展,内衬和外GRP层,玻璃化转变温度(T-g)和粘合树脂的粘结强度,以了解失败的原因。结果表明,粘合金属接头从复合管中完全脱落会导致管道破裂。固化的粘合树脂的平均T-g值表明,它适合于输送温度低于60摄氏度的介质。此外,粘合树脂的剪切强度在室温下达到最大值,并随温度的升高或降低而降低。整个管道的持续较高的工作温度会导致粘合树脂的粘合强度逐渐降低,并最终导致粘合金属接头断裂。 (C)2014 Elsevier Ltd.保留所有权利。

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