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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Comparisons of creep constraint and fracture parameter C* of different types of surface cracks in pressurized pipes
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Comparisons of creep constraint and fracture parameter C* of different types of surface cracks in pressurized pipes

机译:加压管中不同类型表面裂缝的蠕变约束和裂缝参数C *比较

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摘要

The surface cracks in pressurized pipes include internal axial crack (IAC), internal circumferential crack (ICC), external axial crack (EAC) and external circumferential crack (ECC). The unified creep constraint parameter A(c) and fracture parameter C* for ICCs, EACs and ECCs have been calculated by three-dimensional finite element analyses. The A(c) solutions for ICCs with high aspect ratio (1.2 <= a/c <= 2) have been obtained, and the estimation method of A(c) for EACs and ECCs are given. The A(c) and C* of the four types of pipe cracks have been comparatively investigated. The results show that the four types of cracks have similar distributions of A(c) and C*, and the order of the constraint level and C* from high to low is IAC > EAC > ICC > ECC. Among all pipe cracks, the IACs and EACs with larger depth a/t and lower aspect ratio a/c have the highest constraint and C* levels, thus they are the most dangerous cracks. The ICCs and ECCs with smaller a/t and higher aspect ratio a/c have the lowest constraint and C* levels, hence they are relatively safer cracks. The IACs and EACs should be avoided as far as possible in manufacturing and service of high-temperature pipes.
机译:加压管中的表面裂缝包括内轴裂纹(IAC),内周裂纹(ICC),外轴裂纹(EAC)和外周裂纹(ECC)。通过三维有限元分析来计算统一蠕变约束参数A(c)和裂缝参数C *对于ICC,EAC和ECC。已经获得了具有高纵横比(1.2 <= A / C <= 2)的ICCs的(C)溶液,并给出了EACS和ECC的A(c)的估计方法。四种类型的管裂纹的A(c)和C *已经相对调查。结果表明,四种类型的裂缝具有类似的A(c)和c *的分布,并且约束水平和高于低的C *的顺序为IAC> EAC> ICC> ECC。在所有管道裂缝中,具有较大深度A / T和较低纵横比A / C具有最高限制和C *水平的IAC和EAC具有最高限制,因此它们是最危险的裂缝。具有较小A / T和较高纵横比A / C的ICC和ECC具有最低限制和C *水平,因此它们是相对更安全的裂缝。在高温管道的制造和服务中,应尽可能避免IACS和EAC。

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