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Development of references of anomalies detection on P91 material using Self-Magnetic Leakage Field (SMLF) technique

机译:用自磁漏电场(SMLF)技术开发异常检测对P91材料的研究

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This technical paper demonstrates the successful of the application of self-magnetic leakage field (SMLF) technique in detecting anomalies in weldment of a thick P91 materials joint (1 inch thickness). Boiler components such as boiler tubes, stub boiler at penthouse and energy piping such as hot reheat pipe (HRP) and H-balance energy piping to turbine are made of P91 material. P91 is ferromagnetic material, therefore the technique of self-magnetic leakage field (SMLF) is applicable for P91 in detecting anomalies within material (internal defects). The technique is categorized under non-destructive technique (NDT). It is the second passive method after acoustic emission (AE), at which the information on structures radiation (magnetic field and energy waves) is used. The measured magnetic leakage field of a product or component is a magnetic leakage field occurring on the component's surface in the zone of dislocation stable slipbands under the influence of operational (in-service) or residual stresses or in zones of maximum inhomogeneity of metal structure in new products or components. Inter-granular and trans-granular cracks, inclusion, void, cavity and corrosion are considered types of inhomogeneity and discontinuity in material where obviously the output of magnetic leakage field will be shown when using this technique. The technique does not required surface preparation for the component to be inspected. This technique is contact-type inspection, which means the sensor has to touch or in-contact to the component's surface during inspection. The results of application of SMLF technique on the developed P91 reference blocks have demonstrated that the technique is practical to be used for anomaly inspection and detection as well as identification of anomalies' location. The evaluation of this passive self-magnetic leakage field (SMLF) technique has been verified by other conventional non-destructive tests (NDTs) on the reference blocks where simulated defects/anomalies have been developed inside at the weldment. The results from the inspection test showed that the signatures of magnetic leakage field gradient distribution prove that the peak is found on the location of defect/anomaly in the reference block. It is in agreement with the evidence of anomaly that seen in the radiography test film (RT).
机译:本技术论文展示了自磁漏电场(SMLF)技术在厚P91材料接头(1英寸厚度)焊接中的异常中的应用。锅炉组件如锅炉管,顶层盆和能量管道的存根锅炉,如热再热管(HRP)和H余量能量管道到涡轮机由P91材料制成。 P91是铁磁性材料,因此自磁漏电场(SMLF)的技术适用于P91检测材料内的异常(内部缺陷)。该技术在非破坏性技术(NDT)下进行分类。它是声发射后的第二被动方法(AE),其在该发射辐射(磁场和能量波)的信息中。产品或组件的测量磁漏电片是在位错稳定的空间区域的组件表面上发生的磁漏磁场,其在操作(在役)或残余应力或金属结构的最大不均匀性的区域中新产品或组件。颗粒状和反式粒状裂缝,包含,空隙,腔体和腐蚀被认为是在使用该技术时显然显示磁漏电场的输出的材料中的不接合性和不连续性的类型。该技术对待检查部件的表面制备不需要。该技术是接触式检查,这意味着传感器必须在检查期间触摸或与部件表面接触。 SMLF技术在开发的P91参考块上的应用结果表明,该技术实际用于用于异常检测和检测以及异常位置的鉴定。通过在焊接内部开发的基准块上的其他传统的非破坏性测试(NDTS)验证了这种被动自磁漏电场(SMLF)技术的评估已经在焊接内部开发了模拟缺陷/异常。检查测试的结果表明,磁漏场梯度分布的签名证明了峰值在参考块中的缺陷/异常的位置。它与在射线照相试验膜(RT)中看到的异常的证据一致。

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