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Development of ultrasonic testing under the very low temperature (-196°C)

机译:在极低温度下进行超声波检测(-196°C)

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摘要

The various nondestructive testing methods are practically used for flaw detection at material state, welding inspection in the production stage and crack detection in the maintenance stage. The technologies in the normal temperature and the hightemperature were established for these nondestructive testing methods. However, the technologies under the very low temperature (-196°C) have not been practically established yet.Three techniques, namely Ultrasonic Testing (UT) , Electromagnetic Acoustic Testing (EMAT) , and Eddy- Current Testing (ECT) , have the possibility of realization for nondestructive testing under the very low temperature.The influence of the boundary noise of ECT is so large when the component elements of the welding material and the base metal material are different. Only the defefct in the vicinity of the surface can be detected. The application of ECT is very difficult from the above characteristics.EMAT will be able to use even at the low temperature. But, the resolving power is low because the low frequency wave is used. And, the operability of the sensor is difficult for the magnetized material.As for the Ultrasonic testing, the determination of the defect size is possible.So we developed the inspection technology under the very low temperature (-196°C) using the Ultrasonic testing.
机译:各种非破坏性测试方法实际上用于材料状态下的探伤检测,在生产阶段焊接检查和维护阶段的裂纹检测。为这些非破坏性测试方法建立了正常温度和高温的技术。然而,在非常低温(-196°C)下的技术尚未实际建立。尚未实现技术,即超声波检测(UT),电磁声检测(EMAT)和涡流测试(ECT),具有在非常低温下实现无损检测的可能性。当焊接材料的部件和基础金属材料不同时,ECT的边界噪声的影响是如此之大。只能检测到表面附近的凹陷。从上述特征,ECT的应用非常困难。即使在低温下也能使用。但是,由于使用了低频波,解决功率低。并且,传感器的可操作性对于磁化材料难以进行磁化材料。对于超声波测试,可以使用超声波检测在非常低温(-196°C)下开发了缺陷尺寸的确定。

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