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首页> 外文期刊>Engineering failure analysis >The dynamic creep rupture of a secondary superheater tube in a 43 MW coal-fired boiler by the decarburization and multilayer oxide scale buildup on both sides
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The dynamic creep rupture of a secondary superheater tube in a 43 MW coal-fired boiler by the decarburization and multilayer oxide scale buildup on both sides

机译:两侧脱碳和多层氧化物垢的堆积,使一台43 MW燃煤锅炉中的次级过热器管发生动态蠕变破裂

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摘要

A dynamic creep mechanism has been proposed and verified through a case study. A secondary superheater tube burst occurred in a 43 MW coal-fired boiler. Microstructural examination indicates that the overheating temperatures reached 900 degrees C (above Ac3). The overheating duration was estimated to be 3 h by calculating with LMP formula. The 710 mu m steam-side scale and 960 mu m fireside scale built-up in the short time of overheating. The burst scenario was a short-term severe overheating on the basis of the long-term creep. The multilayer oxide scales on both sides have been studied with ESEM/EDS, indicating FeO. At 900 degrees C, full decarburization had gone throughout the tube. As the strength reduced due to the decarburization, the creep mechanism transformed from long-term intergranular creep to short-term transgranular rupture. The two types of dimples on the fractograph and two types of cracks in the microstructures confirmed the mechanism transformation. The overheating, the scale buildup and the decarburization constituted the full picture of the dynamic creep rupture. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经提出了动态蠕变机制,并通过案例研究对其进行了验证。一台43兆瓦的燃煤锅炉发生了二次过热器爆管。显微组织检查表明,过热温度达到900摄氏度(高于Ac3)。通过LMP公式计算,过热持续时间估计为3小时。在过热的短时间内就形成了710微米的蒸汽侧水垢和960微米的火侧水垢。爆破情景是基于长期蠕变的短期严重过热。用ESEM / EDS研究了两面的多层氧化皮,表明为FeO。在900摄氏度时,整个管子都进行了完全脱碳。随着脱碳强度的降低,蠕变机理从长期的晶间蠕变转变为短期的经晶断裂。分数图中的两种类型的凹痕和微观结构中的两种类型的裂纹证实了机理的转变。过热,结垢和脱碳构成了动态蠕变破裂的全貌。 (C)2015 Elsevier Ltd.保留所有权利。

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