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Numerical Analysis of Influencing Factors and Capability for Thermal Wave NDT in Liquid Propellant Tank Corrosion Damage Detection

机译:液体推进剂罐腐蚀损伤检测中热波无损检测影响因素及能力的数值分析

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Due to the disadvantages of traditional NDT methods for liquid propellant tank corrosion detection, Thermal Wave Nondestructive Testing (ITWNDT) technology was applied. The heat exchange process of thermal wave in corrosion tank was simulated by the numerical method. Parameters of TWNDT as the best detection time (t_(best)), the maximum surface temperature difference (ΔT_(max)), and the temperature difference holding time (τ_(ΔT>0.1)) were discussed as the targets. Based on these parameters, factors influencing the detection results of tank materials, dressed liquid (also considered as the corrosion product), pit characters (depth and size), heat flux and thermal excitation time length (pulsed width), environmental conditions and other factors were analyzed. Simulation results show that ITWNDT can identify the defect depth, size and position rapidly and effectively. Material properties of the tank were influencing the t_(best), ΔT_(max) and τ_(ΔT>0.1), while the dressed liquid, thermal excitation parameters and the conditions of environment do not influence the t_(best). Pit characters of the depth and size have close relationship with t_(best) and ΔT_(max), therefore, for a tank with certain material and certain liquid dressed in, the pit corrosion damage can be accurately evaluated.
机译:由于传统的无损检测技术在液体推进剂罐腐蚀检测中的缺点,因此采用了热波无损检测技术。用数值方法模拟了腐蚀池中热波的热交换过程。以最佳检测时间(t_(best)),最大表面温差(ΔT_(max))和温差保持时间(τ_(ΔT> 0.1))为参数讨论了TWNDT的参数。根据这些参数,影响罐材料,浸入液体(也视为腐蚀产物),凹坑特征(深度和尺寸),热通量和热激发时间长度(脉冲宽度),环境条件等因素的检测结果的因素被分析。仿真结果表明,ITWNDT可以快速有效地识别缺陷的深度,大小和位置。储罐的材料特性会影响t_(最佳),ΔT_(最大值)和τ_(ΔT> 0.1),而浸液,热激发参数和环境条件不会影响t_(最佳)。深度和尺寸的凹坑特征与t_(最佳)和ΔT_(最大值)密切相关,因此,对于装有某些材料和某些液体的储罐,可以准确地评估凹坑腐蚀破坏。

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