Журнал Российского общества по неразрушающему контролю и технической диагностике
The journal of the Russian society for non-destructive testing and technical diagnostic
 
| Русский Русский | English English |
 
Главная Archive
18 | 11 | 2024
2020, 12 December

DOI: 10.14489/td.2020.12.pp.050-056

Alekhnovich V. I., Chetvernin M. Yu., Shirankov А. F.
OPTICAL METHOD FOR MEASURING RUNOUT PARAMETERS AXIS OF THE PART RELATIVE TO THE AXIS OF ROTATION
(pp. 50-56)

Abstract. The article is devoted to the development of an optical method and a device for measuring the runout parameters of a part relative to the axis of its rotation. A graphical diagram is provided to indicate and explain all the runout parameters of rotating part. It is shown that these parameters can be determined by the optical method using the visualization of the rotation axis and the inertia axis of the part by a collimated laser beam. The process of measuring these parameters consists of two stages. In the first stage, the inertia axis of the part is aligned with the axis of the laser beam, and in the second stage, the rotation axis of the part is aligned with the axis of the measuring camera. The measurement is based on determining the coordinates of the photoenergy center of the laser spot in the plane of the sensing array. The results of the scientific work are the developed optical method and the device based on a measuring camera, which allow to measure and reduce the runout parameters in a controlled manner, bringing them to acceptable limits by means of the known vectors of bearing adjustment movements.

Keywords: detail runout, part runout parameters, optical measuring camera, matrix photodetector, collimated laser beam, the energy center of the laser spot, the axis of rotation of the part.

V. I. Alekhnovich, M. Yu. Chetvernin, А. F. Shirankov (BMSTU, Moscow, Russia) E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра. , Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.  

1. Sosnin F. R. (2006). Visual and measuring control. Non-destructive testing: reference book: in 8 volumes. Vol. 1. Book 1. 2nd ed. Moscow: Mashinostroenie. [in Russian language]
2. Burdun G. D., Markov B. N. (1972). Fundamentals of metrology: a textbook for universities. Moscow: Izdatel'stvo standartov. [in Russian language]
3. Klyuev V. V. (Ed.), Podmaster'ev K. V., Sosnin F. R., Korndorf S. F. et al. (2006). Electrical control. Non-destructive testing: reference book: in 8 volumes. Vol. 5. Book 2. 2nd ed. Moscow: Mashinostroenie. [in Russian language]
4. Zayakin O. A., Manuhin A. V., Rostov A. A. (2017). Experimental laser circular measuring instrument, investigation of the basic measurement error. Izvestiya Samarskogo nauchnogo tsentra Rossiyskoy akademii nauk, Vol. 19, (6). [in Russian language]
5. Instruments for measuring deviations in shape and location of surfaces of revolution. Types. General technical requirements. (1999). Ru Standard No. GOST 17353–89. Moscow: Izdatel'stvo standartov. [in Russian language]
6. Kirillovskiy V. K. (2003). Optical measurements: a schoolbook. Part 1. Saint Petersburg: GITMO(TU). [in Russian language]
7. Pahomov I. I., Tsibulya A. B. (1986). Calculation of optical systems of laser devices. Moscow: Radio i svyaz'. [in Russian language]

This article  is available in electronic format (PDF).

The cost of a single article is 350 rubles. (including VAT 18%). After you place an order within a few days, you will receive following documents to your specified e-mail: account on payment and receipt to pay in the bank.

After depositing your payment on our bank account we send you file of the article by e-mail.

To order articles please copy the article doi:

10.14489/td.2020.12.pp.050-056

and fill out the  form  

 

 

 
Search
Rambler's Top100 Яндекс цитирования