首页> 外文会议>ASME Pressure Vessels and Piping Division/K-PVP conference;PVP2010 >CONSIDERATIONS FOR REQUIRING INTERMEDIATE STRESS RELIEF (ISR) FOR ALL WELD TYPES ON 2 1/4Cr-1Mo-V REACTORS
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CONSIDERATIONS FOR REQUIRING INTERMEDIATE STRESS RELIEF (ISR) FOR ALL WELD TYPES ON 2 1/4Cr-1Mo-V REACTORS

机译:在2 1 / 4Cr-1Mo-V反应堆上要求获得所有焊接类型的中间应力消除(ISR)的注意事项

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As an industry consensus, API~(I) 934-A~1 is an excellent recommended practice on the materials and fabrication requirements for Cr-Mo reactors. However, it is cautious and somewhat vague on the topic of Intermediate Stress Relief (ISR) versus Dehydrogenation Heat Treatment (DHT) for the different types of welds - which reflects the industry's varying practices. For the advanced steels, API 934-A states that DHT should only be used with Purchaser approval, and that it should not be used on restrained welds such as nozzle welds. As a result, it is common for a DHT to be permitted on longitudinal and circumferential seams to achieve the cost and schedule savings, and ISR is used for nozzle welds. There are risks to the fabricator however, as the welds remain extremely brittle after DHT (the toughness is restored after postweld heat treatment {PWHT}, and at intermediate levels after ISR), and welding defects that are acceptable per ASME Code criterias can lead to brittle fractures during subsequent fabrication steps. The costs of the repairs and delays can then be very high, especially if the cracking is not detected until after PWHT. This paper shows the risks of acceptable defects causing brittle fractures by fracture mechanics calculations, and presents some case histories of cracking. The relative costs of ISR versus DHT, versus repairs before and after PWHT are also reviewed.
机译:作为业界共识,API〜(I)934-A〜1是有关Cr-Mo反应器的材料和制造要求的极好的推荐做法。但是,对于不同类型的焊缝,在中间应力消除(ISR)与脱氢热处理(DHT)之间的话题是谨慎的,而且有些含糊-这反映了行业的不同做法。对于高级钢,API 934-A规定DHT仅应在获得买方批准的情况下使用,并且不应在受约束的焊缝(例如喷嘴焊缝)上使用。因此,通常在纵向和周向接缝上都允许使用DHT,以节省成本并节省工期,而ISR则用于喷嘴焊接。但是,对于制造商而言,存在风险,因为焊后DHT仍会保持极脆性(焊后热处理{PWHT}后恢复韧性,ISR后处于中等水平),并且会导致ASME规范可接受的焊接缺陷在随后的制造步骤中出现脆性断裂。这样一来,维修和延误的成本可能会很高,尤其是如果直到PWHT之后才发现裂纹。本文通过断裂力学计算显示了可接受的缺陷会导致脆性断裂的风险,并介绍了一些开裂的案例历史。还回顾了ISR与DHT以及PWHT之前和之后的维修的相对成本。

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