首页> 外文会议>International pipeline conference;IPC'96 >Variations in stress concentration factors near simulated corrosion pits as monitored by magnetic flux leakage, magnetic barkhausen noise and neutron diffraction
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Variations in stress concentration factors near simulated corrosion pits as monitored by magnetic flux leakage, magnetic barkhausen noise and neutron diffraction

机译:通过磁通量泄漏,巴克豪森磁噪声和中子衍射监测到的模拟腐蚀坑附近的应力集中系数的变化

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The conditions under which a pit defect is formed in a pipe can influence local stress concentrations which, in turn, affect the Magnetic Flux Leakage (MFL) signal. In this study MFL< Magnetic Barkhausen Noise (MBN) andneutron diffraction (ND) techniques are used to monitor and compare the local stress distributions surrounding simulated pits in plate and pipeline samples. Our study shows two important findings. Firstly, mechanically machining of simulated corrosion pits creates considerable machining stresses around the defect. Conversely, electrochemical machining (ECM) produces no measurable residual stresses. Secondly, al three techniques indicate that, provided stresses are high enough to produce local yieldign, there are significant differences in local stress concentrations depending on whether the pit was electrochemically machined prior to stress application of while the sample was under stress. The latter case is more relevant to pipelines which corrode whilst in service since operating line pressures normally produce pipe wal hoop stresses of up to 70percent yield strength.
机译:在管道中形成凹坑缺陷的条件会影响局部应力集中,进而影响磁通量泄漏(MFL)信号。在这项研究中,MFL <磁性巴克豪森噪声(MBN)和中子衍射(ND)技术用于监测和比较板和管道样品中模拟凹坑周围的局部应力分布。我们的研究显示了两个重要发现。首先,对模拟腐蚀坑进行机械加工会在缺陷周围产生相当大的加工应力。相反,电化学加工(ECM)不会产生可测量的残余应力。其次,所有三种技术表明,如果应力足够高以产生局部屈服强度,则局部应力集中会存在显着差异,具体取决于在施加应力时样品处于应力状态下凹坑是否经过电化学加工。后一种情况与在使用中腐蚀的管道更相关,因为工作线压力通常会产生高达70%的屈服强度的管壁环向应力。

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