Abstract:The problems of automation of control processes in the nondestructive testing units are considered. The analysis of normative and technical documents is carried out and the main components of the nondestructive testing system and their parameters are determined. The developed software and relational database for monitoring and control of the unit have been integrated into trial operation in the non-destructive control units of the freight car repair company. Based on the statistical processing of control resul… Show more
“…The predominant factors affecting the non-destructive testing are personnel, equipment, control conditions and technical documentation. We took the statistical analysis carried out by [7] as a reference to explore the reliability of the NDT. The information about the personnel includes the educational and professional state and work experience.…”
Section: Thermographymentioning
confidence: 99%
“…10. [7] Relationship between operator knowledge and rejected parts So, from the investigations of the magnetic particle inspection of side frames and bolsters, we come into conclusion that it is necessary to continuously monitor the proficiency of NDT process and apply corrective measurements, such as inspection, re-inspection, employee attestation, training, etc, when necessary, in order to prevent the undesirable accidents caused by faulty production.…”
Due to the technological revolution, in order to withstand competition, giant production companies are obliged to provide customers with the most reliable and safe products in the shortest possible time while keeping the price of the product affordable to customers as well. To achieve this goal, the companies must undertake several complicated tasks, such as making complex dimensional measurements, detecting the defects, and repairing them before bringing the product to market. At that point the non-destructive testing (NDT) comes into play which is a very broad concept containing myriad of conventional and also state-of-the-art methodologies. In this paper, several techniques for NDT, such as X-ray imaging, acoustic emission, ultrasonic testing, infrared thermography, digital image correlation, terahertz testing, shearography will be investigated. Moreover, the principles, advantages and disadvantages and application areas of these techniques will be introduced, and specific examples will be described for some of the methods.
“…The predominant factors affecting the non-destructive testing are personnel, equipment, control conditions and technical documentation. We took the statistical analysis carried out by [7] as a reference to explore the reliability of the NDT. The information about the personnel includes the educational and professional state and work experience.…”
Section: Thermographymentioning
confidence: 99%
“…10. [7] Relationship between operator knowledge and rejected parts So, from the investigations of the magnetic particle inspection of side frames and bolsters, we come into conclusion that it is necessary to continuously monitor the proficiency of NDT process and apply corrective measurements, such as inspection, re-inspection, employee attestation, training, etc, when necessary, in order to prevent the undesirable accidents caused by faulty production.…”
Due to the technological revolution, in order to withstand competition, giant production companies are obliged to provide customers with the most reliable and safe products in the shortest possible time while keeping the price of the product affordable to customers as well. To achieve this goal, the companies must undertake several complicated tasks, such as making complex dimensional measurements, detecting the defects, and repairing them before bringing the product to market. At that point the non-destructive testing (NDT) comes into play which is a very broad concept containing myriad of conventional and also state-of-the-art methodologies. In this paper, several techniques for NDT, such as X-ray imaging, acoustic emission, ultrasonic testing, infrared thermography, digital image correlation, terahertz testing, shearography will be investigated. Moreover, the principles, advantages and disadvantages and application areas of these techniques will be introduced, and specific examples will be described for some of the methods.
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