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Wall Thickness Measurements by Ultrasonic Probes in a Liquid Rocket Combustion Chamber

机译:液体火箭燃烧室内超声探头的壁厚测量

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The regenerative cooling combustion chamber of a liquid rocket engine is exposed to a large temperature difference between the combustion gas and the liquid fuel. To estimate the inner wall damage, an evaluation of wall deformations is very important since chamber life is usually related to such deformations. In this study, the ultrasonic thickness measurement technique based on the pulse reflection method was chosen and conducted the measuring tests of ligament thicknesses and the analyses of ultrasonic wave propagations. Two types probe were manufactured which have a polystyrene and a local immersion delay. From the test and the analysis results with a polystyrene delay, it was shown that the bl echo could not stably obtained in an A-scan graph and measurement accuracy was not sufficient in measuring the thicknesses of a convex and a concave ligaments. From the test results with a local immersion delay, the measurement accuracy within ±50 μ m was attained to measure the thicknesses of a convex and a concave ligaments.
机译:液体火箭发动机的再生冷却燃烧室暴露于燃烧气体和液体燃料之间的大温差。为了估计内壁的损坏,评估壁的变形非常重要,因为腔室的寿命通常与这种变形有关。本研究选择了基于脉冲反射法的超声测厚技术,并进行了韧带厚度的测量测试和超声波传播分析。制造了两种类型的探头,它们具有聚苯乙烯和局部浸入延迟。从具有聚苯乙烯延迟的测试和分析结果表明,在A扫描图中不能稳定地获得bl回波,并且测量精度不足以测量凸韧带和凹韧带的厚度。从具有局部浸入延迟的测试结果,获得±50μm以内的测量精度,以测量凸韧带和凹韧带的厚度。

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