Major: Quality, Standardization and Certification
Code of subject: 7.152.06.O.003
Credits: 4.00
Department: Measuring Information Technologies
Lecturer: Serhiy Viktorovych Prokhorenko
Semester: 1 семестр
Mode of study: денна
Мета вивчення дисципліни: Gaining knowledge and skills in the use of vibration measurement methods and understanding how these processes taking place in the studied structures (or intentionally initiated by the researcher himself) correlate with changes in the physical and technical characteristics of the studied material or (possibly composite) structure.
Завдання: *General competencies: - the ability to perform technical operations during testing, verification, calibration and other operations of metrological activity; - Ability to generate new ideas (creativity). - Ability to communicate, set tasks to AI-search systems in a foreign technical language - the ability to collect, analyze and systematize scientific and technical information from various sources and using agents with artificial intelligence * professional competences: - the ability to plan and implement information and technical support for metrology, standardization, conformity assessment, testing, control, and quality management activities; - the ability to apply quality engineering methods for measuring and diagnosing typical technological objects and processes; - the ability to develop and apply methods and means of quality control of products and services; - the ability to develop methods of conducting experiments and conduct experiments on working models and samples of computerized diagnostic systems and their subsystems, to process results using modern information technologies and technical means.
Learning outcomes: -Have the ability to solve complex specialized tasks and practical problems during professional activities in the field of automation and instrumentation, metrology and information and measurement technology, computerized technical diagnostics, metrological provision of instruments and measuring devices, their metrological verification and calibration, which involves the application of metrology to solve applied diagnostic tasks in the branches of the national economy; - to be able to organize and conduct measurements, technical control and tests; - to be able to use information technologies when selecting and developing software for processing measurement information; - to be able to explain and describe the principles of construction of computing and measuring subsystems and modules used in solving measuring problems; - to be able to establish a rational nomenclature of metrological characteristics of measuring devices to obtain measurement results with a specified accuracy; - to know and be able to use a modern elemental base when tampering with a set, developing and designing nodes of information and measuring equipment.
Required prior and related subjects: - Basics of metrology and measuring technology - Digital electronic units of measuring equipment
Summary of the subject: Preparation of students for engineering activities to understand the ways of selection or development of measuring systems; task - studying the basic principles of sensor construction, studying the physical phenomena that underlie the functioning of various sensors, which make it possible to register the processes of vibrational changes in the environment, studying the principles and basics of their use, practical examples of application in measuring systems, as well as the formation of theoretical and practical skills necessary for the selection, use and analysis of their application, the ability to work with the software of the companies LabVieW, IFM Electronic, SiOS, the development of the ability and readiness: to conduct exploratory patent research in the field of professional activity; perform computational and graphic work on the design of information and hardware modules of sensor systems, describe and properly record the process of conducting vibration measurements.
Опис: The measuring process as its Structure and Elements. - Basics of Laser vibrometry Characteristics of parameters of mechanical vibrations and shocks. The role and tasks of vibrometry. - Classification of vibration parameter measurement methods Sensors (measuring transducers) of Vibration and Impact Methods of laser vibrometry - Laser Photoelectric Vibrometers Position-sensitive photoelectric vibrometers Amplitude photoelectric vibrometers - Laser Interference Vibrometers Features of optical interferometry Interference vibrometers based on strip count The method of increasing the vibration resistance of the interferometer Laser vibrometers with amplitude modulation Interference vibrometers in testing devices - Laser Doppler Vibrometers Fundamentals of laser Doppler measuring systems Laser vibrometers with frequency modulation of radiation - Testing the requirements specification for the surface drift analysis process
Assessment methods and criteria: - current control of students' knowledge during classes; - assessment of the performance of laboratory work; - carrying out the semester assessment.
Критерії оцінювання результатів навчання: Distribution of points on a 100-point scale Examination control (written part) {50 points} Examination control (oral part) {35 points} Laboratory classes {15 points}
Порядок та критерії виставляння балів та оцінок: 100–88 points – (“excellent”) is awarded for a high level of knowledge (some inaccuracies are allowed) of the educational material of the component contained in the main and additional recommended literary sources, the ability to analyze the phenomena being studied in their interrelationship and development, clearly, succinctly, logically, consistently answer the questions, the ability to apply theoretical provisions when solving practical problems; 87–71 points – (“good”) is awarded for a generally correct understanding of the educational material of the component, including calculations, reasoned answers to the questions posed, which, however, contain certain (insignificant) shortcomings, for the ability to apply theoretical provisions when solving practical tasks; 70 – 50 points – (“satisfactory”) awarded for weak knowledge of the component’s educational material, inaccurate or poorly reasoned answers, with a violation of the sequence of presentation, for weak application of theoretical provisions when solving practical problems; 49-26 points - ("not certified" with the possibility of retaking the semester control) is awarded for ignorance of a significant part of the educational material of the component, significant errors in answering questions, inability to apply theoretical provisions when solving practical problems; 25-00 points - ("unsatisfactory" with mandatory re-study) is awarded for ignorance of a significant part of the educational material of the component, significant errors in answering questions, inability to navigate when solving practical problems, ignorance of the main fundamental provisions.
Recommended books: 01) Laserinterferometric Vibrometer LSV-Series LSV-2500 02) Actual LabVIEW documentation <> 03) Lypaev V.V. Software engineering. Methodological foundations. Textbook M.: TEIS. 2006. 04) Tomashevsky V.M. Modeling of systems. - K.: BHV Publishing Group. 2005. 05) Huber, Alexander M; Schwab, C; Linder, T; Stoeckli, SJ; Ferrazzini, M; Dillier, N; Fisch, U (2001). "Evaluation of eardrum laser doppler interferometry as a diagnostic tool" (PDF). The Laryngoscope. 111 (3): 501–7. doi:10.1097/00005537-200103000-00022. PMID 11224783. S2CID 8296563 06) Vibrations Inc. – Laser Doppler Vibrometers". 07) Application of holographic and speckle interferometry methods for the study of vibration and noise of mechanical structures: Textbook. manual / D.S. Elenevsky, O.A. Zhuravlyov, Y.N. Shaposhnikov and others; Ed. V.P. Shoryna Samara: SGAU, 2005. 193 p. 08) Basics of vibration measurement. 09) Vibration Measurement Techniques: Basics Introduction - IDC-Online 10) J.D. Smith. Vibration Measurement and Analysis. 1989 Elseiver Press DOI 11) Journal of Sound and Vibration (open access) -Elsevier
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