ISSN (print) 1995-2732
ISSN (online) 2412-9003

 

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DOI: 10.18503/1995-2732-2024-22-2-88-100

Abstract

Problem Statement (Relevance). In order to reduce the cost of products made of metal-like, variatropic mineral and convergent composites, dispersive components are sought to be produced selectively when processing elastic-viscous-plastic material waste. In particular, in accordance with the requirements for the products, such wastes are crushed into secondary granules, chips or fibers by cutting, providing the required geometry without disturbing the structure and physical and mechanical properties of the substance. If to study the structure, for example, of fibrous media of a natural origin, it is enough to apply a microscope, their physical and mechanical properties, as a rule, are determined only empirically, and the values of their parameters can vary significantly depending on the natural features of their formation. Such parameters are the basis not only for the development of the production and technical base, but also for scientific research. Objectives. For clarity, it is more expedient to measure stresses and deformations in elastic-viscous-plastic media by applying the polarization optical method, using equivalent optically sensitive materials. Methods Applied. The article is devoted to the selection of sample formulations from equivalent materials, taking into account similarity coefficients for a model assessment of the stress and strain state of various types of leather at the penetration of a simulator of a double blade tool, namely a disperser. Result. The article describes the methodology of the model experiment, assesses strength and force characteristics of the penetration process, and provides visual images of the resulting stresses in equivalent transparent, optically sensitive materials. The obtained results can be useful for researchers and material scientists in the development of nature-like composites, for designers, developing new methods and devices for selective grinding of elastic-viscous-plastic material waste, as well as for waste recyclers.

Keywords

modeling, polarization optical method, similarity coefficients, assessment of stresses and deformations in the material, equivalent optically sensitive materials

For citation

Sergeev Yu.S., Platov S.I., Sergeev S.V., Guzeev V.I., Puzankov M.S., Shadrin P.A., Kozlov A.V. Application of a Polarization Optical Method for Assessing Deformation and Force Characteristics when Cutting Tool Edges Penetrate Elastoviscoplastic Materials. Vestnik Magnitogorskogo Gosudarstvennogo Tekhnicheskogo Universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2024, vol. 22, no. 2, pp. 88-100. https://doi.org/10.18503/1995-2732-2024-22-2-88-100

Yury S. Sergeev – PhD (Eng.), Head of the Department, South Ural State University, Chelyabinsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it.. ORCID 0000-0003-1028-8346

Sergey I. Platov – DrSc (Eng.), Head of the Department, Nosov Magnitogorsk State Technical University, Magnitogorsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it.. ORCID 0000-0002-4868-4881

Viktor I. Guzeev – DrSc (Eng.), Head of the Department, South Ural State University, Chelyabinsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it.. ORCID 0000-0002-8277-1217

Sergey V. Sergeev – PhD (Eng.), Professor, South Ural State University, Chelyabinsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it.. ORCID 0000-0001-7868-4295

Maksim S. Puzankov – master’s student, South Ural State University, Chelyabinsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it.. ORCID 0009-0002-1886-0976

Pavel A. Shadrin – student, South Ural State University, Chelyabinsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it..

Aleksandr V. Kozlov – DrSc (Eng.), Professor, South Ural State University, Chelyabinsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it..

1. Kovalchuk M.V. Convergence of sciences and technologies – a breakthrough into the future. Rossiyskie nanotekhnologii [Russian Nanotechnologies]. 2011; 6(1-2):13-23. (In Russ.)

2. Ovchinnikov A.A., Obruchev D.V., Danilov I.N. Optimization of compositions of composite materials based on the technology of a polystructural integration of heterogeneous materials. Umnye kompozity v stroitelstve [Smart Composites in Construction]. 2022;3(1):30-46. (In Russ.) DOI: 10.52957/ 27821919_2022_1_30

3. Levykin S.V., Kazachkov G.V., Yakovlev I.G. Convergent nature-like technologies for sustainable development of steppe regions of Russia. Voprosy stepevedeniya [Steppe Science]. 2018;(14):72-75. (In Russ.) DOI:10.24411/9999-006A-2018-00007

4. Baksansky O.E., Skorobogatova A.V. Convergence and nature-like technologies: methodology of modern science and education. Kollektsiya gumanitarnykh issledovaniy [The Collection of Humanitarian Studies]. 2018;(5(14)):14-21. (In Russ.)

5. Kosenko E.A., Baurova N.I., Zorin V.A. Prirodopodobnye materialy i konstruktsii v mashinostroyenii: monografiya [Nature-like materials and structures in mechanical engineering: monograph]. Moscow: Moscow Automobile and Road Construction State Technical University (MADI), 2020, 304 p. (In Russ.)

6. Draft Decree of the President of the Russian Federation “On the Strategy for the Development of Nature-Like (Convergent) Technologies”. Available at: http://regulation.gov.ru/p/128578 (Accessed on November 16, 2023).

7. Anas S.M., Shariq Mohd, Alam Mehtab, Umair Mohammad. Modeling of crashworthy foam mounted braced unreinforced brick masonry wall and prediction of anti-blast performance. International Journal of Protective Structures. 2023;15(2):241-283. DOI: 10.1177/ 20414196231164432

8. Sergeev Yu.S., Sergeev S.V., Ogurtsova A.A., Puzankov M.S. Sposob izmelcheniya kollagensoderzhashchikh sred i instrument dlya ego osushchestvleniya [A method for grinding collagen-containing media and a tool for its implementation]. Patent RU, no. 2802786, 2023.

9. Domozhirov D.V. On the issue of increasing efficiency of mining and processing of mineral raw materials by controlling the parameters of drilling and blasting operations to achieve quality requirements. Vestnik Magnitogorskogo gosudarstvennogo tekhnicheskogo universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2023;21(1):5-14. (In Russ.) DOI: 10.18503/1995-2732-2023-21-1-5-14

10. Leshkov E.V., Sapozhnikov S.B. Modeling the nonlinear deformation and damage of carbon-aramid fabric composites in tension. Mechanics of Composite Materials. 2020;(56):591-600. DOI: 10.1007/s11029-020-09906-1

11. Forental G.A., Bezmelnitsyn A.V., Ignatova A.V. et al. Experimental study on the influence of felting on delamination and residual strength of polymer composites under low speed impact. XXXIII Mezhdunarodnaya innovatsionnaya konferentsiya molodykh uchenykh i studentov po problemam mashinovedeniya (MIKMUS - 2021): Trudy konferentsii [The 33rd International Innovative Conference of Young Scientists and Students on Problems of Mechanical Engineering (MIKMUS – 2021): Proceedings of the conference]. Moscow: Federal State Budgetary Institution of Science Blagonravov Mechanical Engineering Research Institute of the Russian Academy of Sciences, 2021, pp. 194-199. (In Russ.)

12. Polonik M.V., Makarova N.V., Mantsybora A.A. Numerical modeling of abrasive wear of cement granular composites using experimental data. Vestnik Inzhenernoi shkoly Dalnevostochnogo federalnogo universiteta [Far Eastern Federal University: School of Engineering Bulletin]. 2019;(4(41)):3-11. (In Russ.) DOI: 10.24866/2227-6858/2019-4-1

13. Slavin O.K., Trumbachev V.F., Tarabasov N.D. Metody fotomekhaniki v mashinostroenii [Methods of photomechanics in mechanical engineering]. Moscow: Mashinostroenie, 1983, 269 p. (In Russ.)

14. Kotenko M.V., Razdorsky V.V., Lelyavin A.B. A polarization optical method in the study on the stress and strain state of models with dental implants made of nitinol. Baykalskiy meditsinskiy zhurnal [Baikal Medical Journal]. 2016;147(8):34-38. (In Russ.)

15. Serebryakova A.A., Zagulyaev D.V., Shlyarov V.V., Shlyarova Yu.A., Ivanov Yu.F., Ustinov A.M. Study on mechanical characteristics and fracture surface morphology of the Ti surface-modified AK5M2 alloy. Vestnik Magnitogorskogo gosudarstvennogo tekhnicheskogo universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2023;21(1):32-44. (In Russ.) DOI: 10.18503/1995-2732-2023-21-1-32-44

16. Antipova T.N., Oleshko A.Yu. Basic procedures of product quality control for fiber metal composites. Vestnik Magnitogorskogo gosudarstvennogo tekhnicheskogo universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2020;18(1):55-62. (In Russ.) DOI: 10.18503/1995-2732-2020-18-1-55-62.

17. Ershova O.V., Medyanik N.L., Mishurina O.A., Bessonova Yu.A., Bagreeva K.V. Comparative analysis of physical and mechanical properties of biodegradable and synthetic polymers. Vestnik Magnitogorskogo gosudarstvennogo tekhnicheskogo universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2021;19(4):56-63. (In Russ.) DOI: 10.18503/1995-2732-2021-19-4-56-63

18. Mostovoy A.S. Razrabotka sostavov, tekhnologii i opredelenie svojstv mikro- i nanonapolnennykh epoksidnykh kompozitov funktsionalnogo naznacheniya: dis. … kand. tekhn. nauk [Development of compositions, technologies and determination of micro- and nano-filled epoxy composites for functional purposes: PhD thesis]. Saratov, 2014, 153 p. (In Russ.)

19. Zurabyan K.M., Krasnov B.Ya., Pustylnik B.Ya., Bernshtein M.M. Spravochnik po materialam, primenyaemym v proizvodstve obuvi i kozhgalanterei [Handbook of materials used in the production of footwear and leather goods]. Moscow: Shoe-lkons, 2004, 103 p. (In Russ.)

20. Mustafa L.M., Ismailov M.B., Ermakhanova A.M., Sanin A.F. Study on the influence of plasticizers and thermoplastics on mechanical properties of epoxy resin and carbon fiber reinforced plastic (Review). Kompleksnoe ispolzovanie mineralnogo syrya [Integrated Use of Mineral Raw Materials]. 2019;(4):48-56. (In Russ.). DOI: 10.31643/2019/6445.37