首页> 外文会议>ASME Pressure Vessels and Piping conference >PERSPECTIVES ON SAFETY MARGIN ASSOCIATED WITH INTERNAL REPAIR OF BURIED CLASS 2 AND 3 SAFETY RELATED PIPING USING CARBON FIBER REINFORCED POLYMER COMPOSITES
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PERSPECTIVES ON SAFETY MARGIN ASSOCIATED WITH INTERNAL REPAIR OF BURIED CLASS 2 AND 3 SAFETY RELATED PIPING USING CARBON FIBER REINFORCED POLYMER COMPOSITES

机译:使用碳纤维增强的聚合物复合材料对与埋入式2级和3级安全相关的管道进行内部维修的安全保证金的观点

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Carbon fiber reinforced polymer (CFRP) composites have been used for decades in various industries such as aerospace, oil and gas, and transportation mainly due to their high strength-to-weight-ratio and excellent corrosion resistance. However, the use of CFRP in nuclear industry applications has been very limited. Recently, a new ASME Boiler and Pressure Vessel (BPV) Code Case N-871 has been proposed for internal repair of buried Class 2 and 3 nuclear safety related piping using CFRP for Service Levels A, B, C and D at temperatures not exceeding 200F. This is a first-of-a-kind CFRP application for nuclear safety related piping. It is known that CFRP materials are subject to property degradation due to environmental exposure as well as creep behavior under sustained loading. These factors should be considered when designing the CFRP repair for any nuclear safety related piping application to ensure an adequate safety margin is maintained. In the proposed Code Case, there are provisions for using two different design (analysis method) methods - Allowable Stress Design (ASD) and Load and Resistance Factor Design (LRFD) methods. The LRFD method has been widely used in civil engineering applications but has never been used in ASME Section Ⅲ Code for nuclear piping applications. This paper presents a comparison of these two methods from a safety margin point of view. As CFRP is a new material for ASME BPV Code for nuclear safety related applications, several areas have been identified in the design concepts to ensure an adequate safety margin for Service Levels A, B, C and D. An effort is also made to provide guidelines on the required safety margin for CFRP repair of safety related piping. Finally, Code Case N-871 is reviewed to evaluate the minimum safety margin available for both ASD and LRFD methods.
机译:碳纤维增强聚合物(CFRP)复合材料已经在航空航天,石油和天然气以及运输等各个行业中使用了数十年,这主要是因为它们具有高的强度重量比和出色的耐腐蚀性。但是,CFRP在核工业应用中的使用非常有限。最近,已经提出了一种新的ASME锅炉和压力容器(BPV)代码案例N-871,用于在温度不超过200F的情况下使用CFRP对A,B,C和D等级的服务进行内部修复的埋入的2级和3级核安全相关管道。 。这是用于核安全相关管道的首个CFRP应用。众所周知,CFRP材料会因暴露于环境以及在持续载荷下的蠕变行为而导致性能下降。在为任何与核安全相关的管道应用设计CFRP维修时,应考虑这些因素,以确保维持足够的安全裕度。在建议的代码案例中,规定了使用两种不同的设计(分析方法)方法的方法-允许应力设计(ASD)和负载和阻力因子设计(LRFD)方法。 LRFD方法已广泛用于土木工程应用,但从未在ASMEⅢ规范中用于核管道应用。本文从安全裕度的角度对这两种方法进行了比较。由于CFRP是ASME BPV规则中用于核安全相关应用的新材料,因此在设计概念中已经确定了几个领域,以确保为服务水平A,B,C和D留有足够的安全裕度。 CFRP维修安全相关管道所需的安全裕度。最后,对代码案例N-871进行了评估,以评估可用于ASD和LRFD方法的最小安全裕度。

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