Digital reference images when evaluating the quality of castings from aluminum and magnesium alloys

Author:

Kosarina E. I.1,Demidov A. A.1,Smirnov A. V.1,Suvorov P. V.1

Affiliation:

1. Federal State Unitary Enterprise All-Russian Scientific Research Institute of Aviation Materials (FSUE VIAM)

Abstract

Reference X-ray images of defects in castings and welded joints have been used for many years in X-ray radiation inspection. With the transition to digital technologies, and the use of flat-panel detectors instead of radiographic film, the problem arose of creating reference digital images. Comparison of the digital image of the reference sample with the digital image of the test object can be carried out using software, which completely or partially excludes the subjective assessment of the operator, makes it possible to view doubtful areas of the image with magnification and without loss of contrast, automatically show the size of the defect, its intensity distribution by volume of the casting. All this makes the control more objective and productive. The reference images in the detector’s memory do not undergo the aging and degradation typical of X-ray images, and there is no need to replicate them.

Publisher

FSUE CRISM Prometey

Reference21 articles.

1. Kablov, E.N., Materialy novogo pokoleniya i tsifrovye tekhnologii ikh pererabotki [Materials of a new generation and digital technologies of their processing], Bulletin of the Russian Academy of Sciences, 2020, V. 90, No 4, pp. 331–334.

2. Kablov, E.N. VIAM: materialy novogo pokoleniya dlya PD-14 [VIAM: new generation materials for PD-14], Krylya Rodiny, 2019, No 7–8, pp. 54–58.

3. Kablov, E.N., Sagomonova, V.A., Sorokin, A.E., Tselikin, V.V., Gulyaev, A.I., Issledovanie struktury i svoistv polimernogo kompozitsionnogo materiala s integrirovannym vibropogloschayuschim sloem [Investigation of the structure and properties of a polymer composite material with an integrated vibration-absorbing layer], Vse materialy: Encyclopedic reference book, 2020, No 3, pp. 2–9.

4. Chertishchev, V.Yu., Ospennikova, O.G., Boychuk, A.S., Dikov, I.A., Generalov, A.S, Determination of the size and depth of defects in multilayer honeycomb structures made of PCM by the value of mechanical impedance, Aviatsionnye materialy i tekhnologii, 2020, No 3, pp. 72–94. DOI: 10.18577/2071-9140-2020-0-3-72-94.

5. Boychuk, A.S., Dikov, I.A., Generalov, A.S., Povysheniye chuvstvitelnosti i razreshayuschey sposobnosti ultrazvukovogo nerazrushayushchego kontrolya monolitnykh obraztsov iz PKM s ispolzovaniem fazirovannykh reshetok [Increasing the sensitivity and resolution of ultrasonic non-destructive testing of monolithic PCM samples using phased arrays]. Aviatsionnye materialy i tekhnologii, 2019, No 3, pp. 83–88. DOI: 10.18577/2071-9140-2019-0-3-83-88

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