FRACTURING BEHAVIOR OF LUBRICATING-COOLING FLUID (LCF) IN THE CONTACT AREA OF THE TOOL AND THE WORKPIECE


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Abstract

The relevance of the issue selected for the study is proved by the fact that, when producing optical parts, the treatment using loose abrasive is replaced with the processes based on the application of fixed abrasive. However, the increase in efficiency causes the issues of the surface layer quality assurance. It is caused by the fact that the intensification of the stock removal process is inextricably connected with the heat output increase in the contact area of a tool with a workpiece.

The paper presents the methodology of the study and the obtained observation results of fracturing behavior of lubricating-cooling fluid in the contact area of a tool and a workpiece. The temperatures in the area of treatment of optical materials determine considerably the quality of treated surface. During these processes, the lubricating-cooling fluid plays one of the key roles. It is impossible to develop the exact thermophysical model of the process of treatment without the true recording of lubricating-cooling fluid and its behavior. 

For the direct vision of the lubricating-cooling fluid behavior in the contact area of a tool with the treated surface, the author developed the method based on the strobing freeze application. A pulsed lamp is installed in such a way that the total internal reflection from the prism working surface would take place. In case, some body contacts with this surface, the total internal reflection gets broken and the dark spot with the actual contact geometrics can be observed. Using the device, it is possible to observe the treatment area. Carried out study allows concluding that the lubricating-cooling fluid is constantly present in the treatment area. All areas of the direct contact of a tool and a workpiece are surrounded with it. When using water-based lubricating-cooling fluid, there are no areas free of it at the applied velocity of cutting out of certain contact areas.      

About the authors

Anatoliy Vladimirovich Shchipanov

Togliatti State University, Togliatti

Author for correspondence.
Email: AVSH07@yandex.ru

PhD (Engineering), assistant professor of Chair “Management of industrial and ecological safety”

Russian Federation

References

  1. Alekseenko M.D., Baranochnikov M.L. Priemniki opticheskogo izlucheniya [Optical receivers]. Moscow, Radio i svyz’ Publ., 1977. 296 p.
  2. Pavlushkin N.M., ed. Khimicheskaya tekhnologiya stekla i sitallov [Process chemistry of glass and glass ceramic]. Moscow, Stroyizdat Publ., 1983. 432 p.
  3. Kachalov N.N. Tekhnologiya shlifovki i polirovki stekla [Technology of glass sanding and polishing]. Moscow-Leningrad, AN SSSR Publ., 1958. 214 p.
  4. Zverev V.A., Krivopustova E.V., Tochilina T.V. Opticheskie materialy [Optical materials]. St. Petersburg, SPbGU ITMO Publ., 2009. Part 1, 244 p.
  5. Zverev V.A., Krivopustova E.V., Tochilina T.V. Opticheskie materialy [Optical materials]. St. Petersburg, SPbGU ITMO Publ., 2013. Part 2, 248 p.
  6. Zubkov V.G., Semibratov M.N., Shtandel’ S.K. Tekhnologiya opticheskikh de-taley [Technology of optical parts]. Moscow, Mashinostroenie Publ., 1985. 368 p.
  7. Bardin A.N. Tekhnologiya opticheskogo stekla [Optical glass technology]. Moscow, Vysshaya shkola Publ., 1963. 519 p.
  8. Okatova M.A., ed. Spravochnik tekhnologa-optika [Reference book of engi-neer-optician]. St. Petersburg, Politekhnika Publ., 2004. 679 p.
  9. Rogov V.V. Finishnaya almazno-abrazivnaya obrabotka nemetallicheskikh de-taley [Diamond-abrasive finishing of non-metal parts]. Kiev, Naukova dumka Publ., 1985. 264 p.
  10. Glagolev S.P. Kvartsevoe steklo. Ego svoystva, proizvodstvo i primenenie [Quartz glass. Its properties, production and application]. St. Petersburg, Kniga po trebovaniyu Publ., 2012. 106 p.
  11. Parshakov A.N., Naparyin Yu.A., Potemkin V.I., Yarmonov N.A. Analitiches-kie metody issledovaniya teplovykh yavleniy pri shlifovanii [Analytical methods of study of thermal effects during finishing]. Perm, PGU Publ., 1977. 72 p.
  12. Sipaylov V.A. Teplovye protsessy pri shlifovanii i upravlenie kachestvom pov-erkhnosti [Thermal processes during polishing and surface quality management]. Moscow, Mashinostroenie Publ., 1978. 167 p.
  13. Loladze T.N., Bokuchava G.V. Iznos almazov i almaznykh krugov [Wear of di-amonds and diamond wheels]. Moscow, Mashinostroenie Publ., 1967. 112 p.
  14. Khudobin L.V., ed. Smazochno-okhlazhdayushchie tekhnologicheskie sredstva i ikh primenenie pri obrabotke rezaniem [Cooling and lubricating fluids and their ap-plication when cutting]. Moscow, Mashinostroenie Publ., 2006. 544 p.
  15. Reznikov A.N. Teplofizika protsessov mekhanicheskoy obrabotki materialov [Thermal physics of mechanical processing of materials]. Moscow, Mashinostroenie Publ., 1981. 279 p.
  16. Reznikov A.N., Reznikov L.A. Teplovye protsessy v tekhnologicheskikh siste-makh [Thermal processes in technological systems]. Moscow, Mashinostroenie Publ., 1990. 288 p.
  17. Shchipanov V.V., Shchipanov A.V. Thermophysical scheme of contact of tool and workpiece when finishing using lubricating fluids. Sbornik nauchnykh trudov “Smazochno-okhlazhdayushchie zhidkosti v protsessakh abrazivnoy obrabotki”. Ul-yanovsk, Ulyanovskiy polit. institut Publ., 1992, pp. 11−15.
  18. Agapov S.I. Intensifikatsiya protsessa obrabotki trudnoobrabatyvaemykh ma-terialov pri vvedenii ultrazvukovykh kolebaniy v zonu rezaniya [Process intensifica-tion of treatment of hard-to-treat materials when introducing ultrasonic vibrations to the cutting area]. Volgograd, VolgGTU Publ., 2009. 78 p.
  19. Ostrovsky V.I., Savitskaya V.G. About interrelation of physical processes dur-ing polishing. Mezhvuzovskiy sbornik nauchnykh trudov. Perm, PPI Publ., 1986, pp. 3–9.
  20. Sovkin V.F., Bykov E.V., Budarin A.M., Budarina G.I. Shlifovanie legiro-vannykh i zharoprochnykh staley [Grinding of alloyed and heat-resistant steels]. Kuybyshev, Kuybyshevskoe kn. izdatelstvo Publ., 1967. 160 p.
  21. Rassel D. Prizma (optika) [Prism (optics)]. St. Petersburg, Kniga po trebovani-yu Publ., 2013. 105 p.
  22. Shchipanov A.V. Identification of temperature limits when finishing brittle non-metal materials. Trudy IV mezhdunar. nauch.-tekhn. konferentsii “Teplofiziches-kie i tekhnologicheskie aspekty povysheniya effektivnosti mashinostroitelnogo pro-izvodstva”. Togliatti, TGU Publ., 2015, pp. 129–132.

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