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Comparison of Acoustic Emission Data Acquired During Tensile Deformation of Maraging Steel M250 Welded Specimens

机译:在钢M250焊接标本的拉伸变形期间获得的声发射数据的比较

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Safety and reliability are primary concerns in launch vehicle performance due to the involved costs and risk. Pressure vessels are one of the significant subsystems of launch vehicles. In order to have minimal weight, high strength material viz. maraging steel M250 grade is used in realizing the pressure vessel casing hardware. Despite the best efforts in design methodology, quality evaluation in production and effective structural integrity assessment is still a farfetched goal. The evolution of such a system requires, first, identification of an appropriate technique and next its adoption to meet the challenges posed by advanced materials like maraging steels. In fact, a quick survey of the available Non-Destructive Evaluation (NDE) techniques suggests Acoustic Emission (AE) as an effective structural integrity assessment tool capable of identifying any impending failure or degradation at an earlier stage. Experience shows that the longitudinal welds in the pressure vessels are quite vulnerable to failure due to the fact that they experience the maximum stress (i.e. hoop stress). Loading welded tensile samples are quite synonymous to the hoop stress experienced by longitudinal welds. An attempt is made to compare the Acoustic Emission data acquired during tensile deformation of maraging steel welded specimens. A total of 16 welded specimen's with known defects were studied for their tensile behaviour is in connection with Acoustic Emission data. The lowest failure load was 70.5 kN and the highest being 84.8 kN. AE activity graphs viz. cumulative AE activity, hit rate, energy rate, count rate, AE amplitude history, AE count history, AE energy history, amplitude-count correlation and hit amplitude distribution have been investigated and salient features with respect to the data have been critically studied and relevant correlations are arrived at.
机译:由于成本和风险,安全性和可靠性是发射车辆性能的主要问题。压力容器是发动车辆的重要子系统之一。为了具有最小的重量,高强度材料viz。 MAS M250等级用于实现压力容器壳体硬件。尽管设计方法中的最佳努力,但生产和有效的结构完整性评估的质量评估仍然是一个有福得的目标。这种系统的演进需要,首先,识别适当的技术和接下来的采用,以满足像散布钢等先进材料所带来的挑战。实际上,对可用的非破坏性评估(NDE)技术的快速调查表明声发射(AE)作为能够识别早期阶段的任何即将发生的故障或降解的有效结构完整性评估工具。经验表明,由于它们经历了最大应力(即箍应力),压力容器中的纵向焊缝非常容易发生故障。装载焊接拉伸样品对纵向焊缝经历的箍应力非常同义。尝试比较在钢焊接标本的拉伸变形期间获得的声学发射数据。研究了总共16种具有已知缺陷的焊接标本,其拉伸行为与声发射数据有关。最低故障负载为70.5 kN,最高为84.8 kN。 AE活动图形viz。已经研究了累积AE活动,命中率,能量率,计数率,AE幅度历史,AE计数历史,AE能量历史,幅度计数相关和命中幅度分布,并且相对于数据的突出特征已经严重研究和相关相关性到达。

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