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Bellows Expansion Joints of the Main Heating Network Pipelines: Problems and Damage Prevention

机译:主要供热网络管道的波纹管伸缩缝:问题与预防

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The problems of bellows expansion joints conditioned by their design features and the quality of the heat carrier are considered. It is testified that typical damage of bellows expansion joints are deformations, changes in geometric characteristics, and through defects of structural elements. Prevention and timely detection of damaged bellows expansion joints is an important task of the heating system’s operation. Examples of damage to bellows expansion joint elements are presented, including those with corrosive destruction of pearlitic steel corrugated inner layers and outer high-alloyed steel corrugations. Some survey results are presented and factors are analyzed that may affect the damageability of bellows expansion joints of the main heating network pipelines at PAO MOEK_(1). The causes and dominant damage mechanism of bellows expansion joints, caused by the formation of crevice defect with penetration of the heat carrier into the inner space of the pearlitic steel corrugated layers, have been established. Practice has shown that most of the damage is detected in pressure testing and is associated with mechanical deformations of the bellows without depressurization and without unsealing and loss of the heat carrier. Four main corrosion and damage stages of heating system bellows expansion joints are identified. It is proposed, depending on the initial and operating conditions, to consider possible scenarios of a two-stage mechanism of destruction of bellows expansion joints, including the development of a crevice defect up to the through leakage of heat carrier into the bellows interlayer space and corrosion damage to the inner corrugated bellows surface. Recommendations to prevent damage to bellows expansion joints of heating systems are provided.
机译:考虑了波纹管伸缩缝的设计特点和热载体的质量问题。事实证明,波纹管膨胀节的典型损坏是变形,几何特征的变化以及由于结构元件的缺陷。预防和及时发现波纹管膨胀节受损是加热系统运行的重要任务。给出了波纹管伸缩节元件损坏的实例,包括那些腐蚀破坏珠光体钢波纹内层和外部高合金钢波纹的元件。给出了一些调查结果并分析了可能影响PAO MOEK_(1)处主要供热网络管道的波纹管伸缩缝损坏的因素。已经建立了由热载体渗入珠光体钢波纹层内部空间而形成的缝隙缺陷所引起的波纹管伸缩缝的原因和主要的损坏机理。实践表明,大多数损坏是在压力测试中检测到的,并且与波纹管的机械变形有关,而没有减压,没有开封和热载体的损失。确定了加热系统波纹管伸缩缝的四个主要腐蚀和损坏阶段。建议根据初始条件和运行条件,考虑破坏波纹管伸缩缝的两阶段机制的可能方案,包括形成裂缝缺陷,直至热载体通过泄漏进入波纹管夹层空间,以及波纹波纹管内部的腐蚀损坏。提供了防止损坏加热系统波纹管伸缩缝的建议。

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