Surface after diamond abrasive processing: roughness, films, change of elemental composition

Без категорії

Authors:

V.I. Lavrinenko
Bakul Institute of Superhard Materials of the NAS of Ukraine, Kyiv
https://orcid.org/0000-0003-2098-7992

Reviewers:

V.І. Antonyuk
National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”, Kyiv
https://orcid.org/0000-0003-0690-2411

S.Ye. Sheykin
Bakul Institute of Superhard Materials of the NAS of Ukraine, Kyiv
https://orcid.org/0000-0001-9958-4293

V.І. Sidorko
“Alkon” Engineering and Production Center of the NAS of Ukraine, Kyiv
https://orcid.org/0009-0003-4569-2821 

Affiliation:

Project: Scientific book

Year: 2024

Publisher: PH "Naukova Dumka"

Pages: 188

DOI:

https://doi.org/10.15407/978-966-00-1936-2

ISBN: 978-966-00-1936-2

Language: Ukrainian

How to Cite:

Abstract:

The monograph provides basic information about the features of the formation of the treated surface in the processes of diamond-abrasive treatment, taking into account the microprofile of the surface layer, the formation of native or forcibly formed films on it, and the features of the change in the elemental composition of the treated surface during treatment are considered. Recommendations for the directed formation of the necessary surface in the conditions of diamond-abrasive processing of instrumental and composite materials in mechanical engineering are given. The features of the relationship between the roughness indicators of the treated surface: Ra, Rmax, Sm, tp are considered, and it is also shown how the fullness of the profile of the rough surface can be purposefully changed during diamond-abrasive processing. The influence of the shaping processes of the cutting surface of the grinding wheel during the processing on the roughness of the processed surface is analyzed. The effect of the combination of different abrasives in the working layer of the wheel and the features of the improvement of diamond abrasive powders on the roughness of the treated surface is shown. Recommendations are given for the directed formation of a special microprofile of the processed surface with “oil pockets”. For scientific and engineering workers working in the field of using diamond-abrasive tools for processing instrumental and composite materials in mechanical engineering, as well as for teachers, graduate students and students of higher educational institutions.

Keywords:

Treated surface, diamond-abrasive processing, instrumental and composite materials in mechanical engineering, roughness, films, change in the elemental composition, grinding wheel.

References:

  1. Chepovetskii, I.Ch., Ruszov, E.V. & Iljitskii, V.B. (1976) Osnovy mechaniki kontaktnogo vzaimodejstvija pri almaznoi obrabotke [Fundamentals of the mechanics of contact interaction during diamond processing]. Synteticheskie almazy. # 4. 9–15 [in Russian].
  2. Suslov, A.G., Gorlenko, A.O., Petrechin, D.I. & S`aynov, S.Yu. (2003) Technologicheskoe upravlenie kachestvom poverhnosti detalei mashin [Technological control of surface quality of machine parts]. Suchasni procesy mechanichnoi obrobky instrumentamu z NTM ta jakist poverkhni detalei mashin: Zb. nauk. prats. Seria G. Кyiv: ІNM NAN Ukraine, 20–27[in Russian].
  3. Demkin, N.B. & Ruzhov, E.V. (1981) Kachestvo poverhnosti i kontakt detalei mashin [Surface quality and contact of machine parts]. M.: Mashinostroenie [in Russian].
  4. Mukhin, V.S. (2000) Poverchnost: konstruirovanie, technologia, svoistva, prochnost[Surface: design, technology, properties, strength]. Vesnik YGATY. Mashinostroenie. # 1. 97–104 [in Russian].
  5. Mukhin, V.S. & Shehtman, S.P. (2007) Poverkhnost technicheskogo ob`etkta: fizyka, chimija, mechanika, nanotechnologia modifitsirovania [Surface of a technical object: physics, chemistry, mechanics, nanotechnology modification]. Vesnik YGATY. Mashinostroenie. 9. # 1 (19). 84–91 [in Russian].
  6. Puthanangady, T. (2001) Recept grinding process developments in the optical fiber communication industry. Gohram conferences: Precision Grinding & Finishing in the Global Economy. Chicago, October, 1 – 3, 2001.
  7. Basuray, P.K., Misra, B.K. & Lal, G.K. (1977) Transition from ploughing to cutting during mashining with blunt tools. Wear. N 43. 341–349.
  8. Korsz, N.Ja. (1980) Nekotorye osobennosti mehanizma iznosa almaznyh krugov [Some features of the wear mechanism of diamond wheels]. Sverkhtverdye materialy. № 4. 35–42 [in Russian].
  9. Linenko-Melnikov, Yu.P. & Mishnaevskii, L.L.-ml. (1989) Analiz izmenenia velychiny vystypania almaznykh zeren na rabotajuschem shlifovalnom kruge [Analysis of changes in the amount of protrusion of diamond grains on a working grinding wheel]. Sverkhtverdye materialy. № 2. 40–44 [in Russian].
  10. Gorchkov, B.T. (1991) Obdirochnoe shlifovanie prokata [Rough grinding of rolled products]. М.: Metallurgia. 176 [in Russian].
  11. Shein, A.V. (1971) Issledovanie processa ploskogo tortsovogo shlifovania instrumentalnykh materialov almaznymy krugamu: avtoref. … cand. techn. nauk [Study of the process of flat face grinding of tool materials with diamond wheels: abstract of thesis. …cand. tech. sciences]. К: KPI. 31 [in Russian].
  12. Budarin, A.M. (1970) Issledovanie effektivnosti nekotorykh tekhnologicheskikh sredstv pri shlifovanii detalei iz vysokolegirovannykh i legirovannykh stalei: avtoref. … cand. techn. nauk [Study of the effectiveness of some technological means when grinding parts made of high-alloy and alloy steels: abstract of thesis. …cand. tech. sciences]. S: SPI. 26 [in Russian].
  13. Lavrinenko, V.I. & Novikov, N.V. (2013) Nadtverdi abrazyvni materialy v mekhanoobrobtsi [Superhard abrasive materials in machining]. Kyiv: INM im. V.M. Bakulia NAN Ukrainy. 456 [in Ukrainian].
  14. Dydykalov, Yu.V. & Rab, A.F. (1990) Statisticheskie kharakteristiki makroprofilja rabochei poverkhnosti abrazivnogo instrumenta [Statistical characteristics of the macro-profile of the working surface of an abrasive tool]. Rezanie i instrument. # 44. 34–41 [in Russian].
  15. Lavrinenko, V.I. (1993) Elektroshlifovanie instrumentalnyh materialov [Electrogrinding of tool materials]. Kyiv: Naukova dumka. 152 [in Russian].
  16. Jakimov, A.V., Parshakov, A.N., Svirshev, V.I. & Larshin, V.P. (1983) Upravlenie processom shlifovanija [Grinding process control]. Kyiv: Tehnika. 184 [in Russian].
  17. Linenko-Melnikov, Yu.P. (1991) Metod issledovania kinetyky kontaknogo vzaimodejstvia v sisteme instrument-zagotovka pri shlifovanii [Method for studying the kinetics of contact interaction in the tool-workpiece system during grinding]. Sverhtverdye materialy. № 6. 40–43 [in Russian].
  18. Lavrinenko, V.I. (2000) Formoizmenenie reszyschei poverkhnosti kryga kak factor processa shlifovania [Shape change of the cutting surface of the wheel as a factor in the grinding process]. Sverkhtverdye materialy. № 5. 45–52 [in Russian].
  19. Krasnik, V.G. (1981) Issledovanie processa almaznogo shlifovania mnogolezvijnogo byrovogo instrumenta: avtoref. … cand. techn. nauk [Research on the diamond grinding process of multi-blade drilling tools: abstract of thesis. …cand. tech. sciences]. Kyiv: ISM AN USSR. 21 [in Russian].
  20. Gruzlov, A.S. (2018) Mehanism proniknovenia shlama v prostranstvo meszdy zernami i v pory kruga [The mechanism of penetration of sludge into the space between grains and into the pores of the wheel]. Naychnye issledovania v oblasti tehnicheskih nayk: Sb. naych. tr. po itogam Meszd. nauch. prakt. konf. SPI. № 3. 68–72 [in Russian].
  21. Strelchuk, R.M. (2015) Issledovanie parametrov stryszhki pri ploskom almaznom shlifovanii [Study of chip parameters in flat diamond grinding]. Fizicheskie i komp`jyternue tehnologii: Tr. 21 Meszd. naych.-prakt. konferentsii, 24-25.12.2015, Kharkiv –Dnipropetrovsk: LIRA. 84–88 [in Russian].
  22. Tsokur, A.K. & Tsocur, V.P. (2007) Rol fizyko-himichnykh javysch u teplovomy balansi pry shlifyvanni [The role of physical and chemical phenomena in the heat balance during grinding]. Naykovi pratsi Donetskogo natsionalnogo technichnogo universytetu. Seria: Mashinobydyvannia i mashinoznavstvo. 4 (124). Donetsk: DonNTU. 56–61 [in Ukrainian].
  23. Lavrinenko, V.I., Molchanov, V.F., Solod, V.Yu. & Prots, L.A. (2019) Vlijanie tverdykh chastits shlama na pokazateli sherokhovatosti obrabotannoi poverkhnosti pri shlifovanii i otsenka verojatnosti vozniknovenia tsarapin na nej [The influence of solid particles of sludge on the roughness of the machined surface during grinding and assessment of the likelihood of scratches on it]. Nadtverdi materialy. № 6. 91–102 [in Russian].
  24. Rymshuc`kii, L.Z. (1976) Elementy teorii verojatnostej [Elements of probability theory]. М: Nauka. 240 [in Russian].
  25. Korolev, A.V. & Novoselov, Yu.K. (1987) Teoretiko-verojatnostnye osnovy abrazivnoi obrabotki [Theoretical and probabilistic foundations of abrasive processing]. SPI. 160 [in Russian].
  26. Korolev, A.V. (1975) Issledovanie processov obrazovania poverkhnostei instrumenta i detali pry abrazivnoi obrabotke [Study of the processes of formation of tool and workpiece surfaces during abrasive processing]. SPI 1975. 191 [in Russian].
  27. Lavrinenko, V.I. & Solod, V.Yu. (2018) Abrasive machining as a friction interaction between dissimilar materials. Journal of Superhard Materials. 40, No. 2. 138–142.
  28. Lavrinenko, V.I. (2016) Abrasive cutting factor as a characterisric reflecting the performance parameters of superabrasive grinding. Journal of Superhard Materials. 38, No. 1. 40–46.
  29. Gomon, P.E. (1986) Upravlenie kachestvom poverkhnosti pri almaznoi obrabotke ploskikh keramicheskikh zagotovok: avtoref. … cand. techn. nauk [Surface quality control during diamond machining of flat ceramic workpieces: abstract of thesis. …cand. tech. sciences]. L: LPI. 268 [in Russian].
  30. Vakser, D.B., Ivanov, V.A., Nikitkov, N.V. & Rabinovsch, V.B. (1976) Almaznaja obrabotka tekhnicheskoi keramiky [Diamond processing of technical ceramics]. L: Mashinostroenie. 160 [in Russian].
  31. Tshipanov, V.V. (1979) Vlijanie kachestva zatochki instrymenta iz bystroreszuschikh stalei na ego stoikost [Theinfluenceofthequalityofsharpeningoftoolsmadeofhigh-speedsteelsonitsdurability]. Stanki i instrumenty. № 11. 23–24 [in Russian].
  32. Karpov, A.V. (2013) K voprosu sniszenia energoemkosti tekhnologicheskikh processov obrabotki rezaniem [On the issue of reducing the energy intensity of technological processes of cutting]. Sovremennye problemy nauki i obrazovanija. № 2. 2–10 [in Russian].
  33. Adamenko, V.M. & Mrochek, Sz.A. (2012) Energoeffektivnost processa rezania poverkhnostei zagotovok detalei na osnove analiza energopotrebljajuschikh pokazatelei tekhnologicheskogo oborudovania [Energy efficiency of the process of cutting surfaces of workpieces based on the analysis of energy consumption indicators of technological equipment]. Nauka i tekhnika. № 4. 3–6 [in Russian].
  34. Kyznetsov, A.P. (2019) Teplovye processy v metalloreszuschykh stankakh [Thermal processes in metal-cutting machines]. М: Tekhnosfera. 488 [in Russian].
  35. Novikov, F.V. & Jakimov, A.V. (Ed.) (2003) Fizyko-matematicheskaja teorija processov obrabotki materialov i tekhnologii mashinostroenia. V desjatu tomakh. Т. 3. „Rezanie materialov lezvijnymy instrumentamy” [Physico-mathematical theory of materials processing processes and mechanical engineering technology. In ten volumes. T. 3. “Cutting materials with blade tools.”] Odesa: ONPU. 546 [in Russian].
  36. Riabenkov, I.A. & Novikov, F.V. (2014) Teoreticheskie issledovania energoemkosti mechanicheskoi obrabotki i opredelenie uslovij ee umenshenija [Theoretical studies of the energy intensity of mechanical processing and determination of conditions for its reduction]. Visnik NTY «KHPI». № 44. 145–150 [in Russian].
  37. Sagarda, A.A. (1987) K analizy iznosa i energeticheskikh zatrat pri abrazivnoi obrabotke metallov [To the analysis of wear and energy costs during abrasive processing of metals]. Sverhtverdue materialu. № 1. 51–54 [in Russian].
  38. Malkin, S. & Joseph, N. (1975) Minimum energy in abrasive processes. Wear. 32. 15–23.
  39. Uzunian, M.D. (2003) Almazno-iskrovoe shlifovanie tverdykh splavov [Diamond-spark grinding of hard alloys]. Kharkiv: NTU «KHPI». 359 [in Russian].
  40. Kharlamov, Yu.O., Klumenko, S.A., Badag’janc, M.A. & Polonskii, L.G. (2007) Obrobka detalei pri vidnovlenni і zmicnenni: navchalnyj posibnyk [Processing of details during restoration and strengthening: tutorial]. Lugansk: SNU im. V. Dalja. 500 [in Ukrainian].
  41. Poljanskii, V.I. (2021) Osnovy zabezpechennja jakosti ta znuszhennja trudomistkosti mechanichnoi obrobku skladnoprofilnoi formyjuchoi osnastki dlja kharchovoi promyslovosti. Avtoref. dus…dokt. techn. nauk [Basics of quality assurance and labor-intensive reduction of mechanical processing of complex-profile forming equipment for the food industry. Autoref. dis… doc. technical of science]. Kharkiv: NTU «KHPI». 40 [in Ukrainian].
  42. Lavrinenko, V.I. (2022) Do analizy otsinku energetychnukh vytrat pid chas almazno-abrazyvnoi obrobky krugamy z nadtverdykh materyaliv [To the analysis of the estimation of energy costs during diamond-abrasive processing with wheels of superhard materials]. Nadtverdi materialy. № 4. 73–81 [in Ukrainian].
  43. Kacnelson, M.D. & Lur`e, A.I. (1974) Koefitsient rabotosposobnosti almaznykh i kubonitovykh krugov [Performance coefficient of diamond and cubonite wheels]. Sb. nauch. trudov PPI «Almazno-abrazivnaja obrabotka». № 149. 90–93 [in Russian].
  44. Popov, S.A., Malevskii, N.P. & Tereshchenko, L.M. (1977) Almazno-abrazivnaja obrabotka metallov i tverdykh splavov [Diamond-abrasive processing of metals and hard alloys]. М: Mashinostroenie. 263 [in Russian].
  45. Samsonov, G.V. (Ed.) (1978) Fizyko-khimicheskie svoistva okislov: Spravochnik [Physico-chemical properties of oxides: Handbook]. М: Metallurgia. 472 [in Russian].
  46. Samsonov, G.V. & Vinitckii, I.M. (1985) Tugoplavkie soedinenija [Refractory compounds]. М: Metallurgia. 560 [in Russian].
  47. Puljankevich, A.N., Melnikova, V.A. & Kylik, A.I. (1988) Mekhanizm stryktyroobrazovania i defektnost keramiky v systemi Al2O3–TiC [The mechanism of structure formation and defectiveness of ceramics in the Al2O3–TiC system]. Sverkhtvedye materialy. № 5. 17–21 [in Russian].
  48. Tonsholl, H.K. & Telle R. (1990) Chip formation and material removal in grinding of ceramics. 4th Int. Grind. Conf., Dearborn, Mich., Oct. 9–11, 1990: Conf. Pap. Vol. 2. Dearborn (Mich), MR90–539/1–MR90–539/18.
  49. Dow Tomas, A., Fawcett Steven, C. & Scattergood Ronald, O. (1991) Ductile regime grinding in brittle materials. NIST/DARPA Workshop Ceram. Bear. Technol., Gaithersburg, Md, Apr. 17 – 18, 1991. NISI Spec. Publ. № 824. 169–179.
  50. Prumak, L.P. & Aleksandrova, L.I. (1976) Vlijanie almaznoi obrabotki na prochnost keramiky [The influence of diamond processing on the strength of ceramics]. Sinteticheskie almazy. # 3. 70–72 [in Russian].
  51. Tanovich, L. (2002) Mekhanizm shlifovania reszyschei keramiky [Grinding mechanism for cutting ceramics]. Voprosu mechaniku i fizyku processov rezanija i kholodnogo plasticheskogo deformirovania: Sb. nauchn. tr. ISM NAN Ukraine. Serija G: Processy mechanicheskoi obrabotky, stanki i instrymenty. Kyiv. 524–529 [in Russian].
  52. Kovalchenko, A.M. (2013) Issledovania plastuchnogo reschuma rezania khruchkych materialov (obzor) [Research on the plastic cutting mode of brittle materials (review)]. Sverkhtvedye materialy. № 5. 3–28 [in Russian].
  53. Novikov, M.V. & Bertoldi, A. (Ed) (1982) Obrabotka polyprovodnikovych materialov [Processing of semiconductor materials]. Kyiv: Naukova dumka. 256 [in Russian].
  54. Hrdzelishvili, H.Yu. (1986) Nizkotemperatyrnoe pretsizionnoe shlifovanie tverdykh splavov [Low-temperature precision grinding of hard alloys]. Sverkhtvedye materialy. № 1. 54–57 [in Russian].
  55. Zakharenko, I.P. (1981) Osnovy almaznoi obrabotki tverdosplavnogo instrumenta [Basics of Diamond Machining of Carbide Tools]. Kyiv: Naukova dumka. 300 [in Russian].
  56. Nakajama, T., Tsukamoto, Sh. & Sugano, N. (1990) Phenomena in the very low speed ​​grinding process (Part 1) – The very low speed g​rinding process. J. Jap. Soc. Prec. Eng. 56, № 10. 2075–2080.
  57. Poljanskii, V.I. & Novikov, F.V. (2021) Rozroblennia ta vprovadszennia y vurobnutstvo efektyvnykh tekhnologichnykh procesiv mekhanichnoi obrobky skladnoprofilnoj formyjuchoi osnastky dlja kharchovoi promyslovosti [Development and introduction into production of effective technological processes of mechanical processing of complex profile forming equipment for the food industry]. Novye i netradicionnye tekhnologii v resyrsoi energosbereszenni: Mater. Meschd. nauch.-techn. konf., 22–24.09.2021. Odessа: ONPU. 140–147 [in Ukrainian].
  58. Byrakovski, Т. (1990) Inszeneria poverkhnosti metallov: sostojanie i perspektivy razvitija [Metal surface engineering: state and development prospects]. Nauchnotechnicheskii progress v mashynostroenii. 20. 93 [in Russian].
  59. Kyskitskii, A.B. (1976) Nemetallicheskie vkljuchenia i ustalost stali [Non-metallic inclusions and steel fatigue]. Kyiv: Tekhnika. 128 [in Russian].
  60. Heller, Yu.A. (1975) Instrumentalnye stali [Tool steels]. М: Metallurgia. 584 [in Russian].
  61. (1967) Tygoplavkie materialu v mashinostroenii: Spravochnik [Refractory materials in mechanical engineering: Directory]. М: Mashinostroenie. 392 [in Russian].
  62. Entelis, S.G. & Berliner, E.M. (1986) Smazochno-okhlaszdajuschie tekhnologicheskie sredstva dlja obrabotki metalov rezaniem: Spravochnik [Lubricating and cooling technological means for metal cutting: Handbook]. М: Machinostroenie. 352 [in Russian].
  63. Graham, W. & Nee, A. (1974) The grinding of tool steels with a diamond abrasive wheel. Int. J. Mash. Tool Des. and Res. 14, N 2. 175–185.
  64. Tikhonov, A.S., Herasimov, A.P. & Prokhorova, I.I. (1981) Primenenie effekta pamjati formu v sovremennom mashinostroenii [Application of the shape memory effect in modern mechanical engineering]. М: Machinostroenie. 80 [in Russian].
  65. Lisovskii, A.F. & Tkachenko, N.V. (1995) Sozdanie gradientnykh struktur v spechenykh tverdykh splavakh [Creation of gradient structures in sintered carbide alloys]. Sverkhtvedye materialy. № 1. 27–34 [in Russian].
  66. (1977) Rezyltatu ispolzovania reztsov iz splava КNТ16 v napajnom variante: Inform. listok № 579-77 [Results of using cutters made of KNT16 alloy in the brazed version: Inform. leaflet No. 579-77]. S: CNTI. 4 [in Russian].
  67. Pugach, E.A., Postolova, G.G. & Korablev, S.F. (1989) Dyfferentsialno-termicheskoe issledovanie processa okislenia polikrystallov nemetallicheskikh nitridov, a taksche poroschkov karbida tytana [Differentialthermalstudyoftheoxidationprocessofpolycrystalsofnon-metallicnitrides, aswellastitaniumcarbidepowders]. Vsesojuznoe soveschanie po termicheskomu analizu: Tez. dokl. – L. 146 – 149 [in Russian].
  68. Lavrinenko, V.I., Shepelev, A.O., Leschuk, I.V., Dubrova, O.E. & Solod, V.Yu. (2003) Vykorystannja efektu zminy gradientu rykhomoi fazy pry rozrobtsi instrymentalnykh kompozytiv z NTM [Using the effect of changing the gradient of the mobile phase in the development of instrumental composites from SHM]. Dopovidi І Misznarodnoji nauk.-tekhn. konf. “Mashinobuduvannja ta metaloobrobra – 2003”. Kirovograd: KDTU. 133–138. [in Ukrainian].
  69. Ilnitskia, G.D., Lavrinenko, V.I. (Ed.) & Smokvyna, V.V. (2021) Almazy dlja shlifyvalnogo instrumentu, otrymani v riznykh systemakh [Diamonds for grinding tools obtained in different systems]. Kyiv: Naukova dumka. 167 [in Ukrainian].
  70. Samotugin, S.S., Lavrinenko, V.I., Samotugina, Yu.S., Pirch, I.I. & Bezumova, O.O. (2022) Technologichni zasady plazmovogo nanostrukturuvannja insrumentalnykh kompozytiv dlja instrumentiv iz poverkhneju skladnoi formy [Technological principles of plasma nanostructuring of tool composites for tools with a complex surface]. Nadtverdi materialy. № 3. 61–72 [in Ukrainian]. .
  71. Amosov, M.I. & Zolotarev, G.B. (1974) Vlijanie processa okislenia na koeffitsient trenia medi [The influence of the oxidation process on the friction coefficient of copper]. Izvestia VUZov. Mashinostroenie. № 10. 32–35 [in Russian].
  72. Kozlovskii, N.S. & Vynogradov, A.N. (1979) Osnovy standartyzatsii, dopuski, posadki i tekhnicheskie izmerenia [Basics of standardization, tolerances, fits and technical measurements]. М: Mashinostroenie. 224 [in Russian].
  73. Zubar`, V.P., Tymchuk, A.G. & Perepelytca, B.A. (1999) Osobennosti formirovania kachestva obrabotannoi poverkhnosti pri lezviinoi obrabotke zakalennukh stalei rezcamy iz nitryda bora [Features of the formation of the quality of the processed surface during blade processing of hardened steels with boron nitride cutters]. Rezanie i instrument v tekhnologicheskikh systemakh. #55. 121–122 [in Russian].
  74. Chepovetskii, I.Ch. (1978) Mekhanika kontaknogo vzaimodeistvia pri almaznoi obrabotke [Mechanics of contact interaction during diamond processing]. Kyiv: Naukova dumka. 238 [in Russian].
  75. Kremen, Z.I. (Ed.), Butorin, G.I. & Kolomazin, V.M. (1989) Technologia obrabotki abrazivnym i almaznym instrumentom: Uchebnik dlja mashinostroitelnykh tekhnikumov [Technology of processing with abrasive and diamond tools: Textbook for mechanical engineering. technical schools]. L.: Mashinostroenie. 207 [in Russian].
  76. Suslov, A.G. (1980) Raschet parametrov sherokhovatosti poverkhnosti detalei mashin pri obrabotke reztsamy [Calculation of surface roughness parameters of machine parts when processing with cutters]. Povyshenie ekspluatatsionnykh svoistv detalei mashin tekhnologicheskimi metodamy. IPI. 46–52 [in Russian].
  77. Ryszov, E.V. & Korsch, N.Ja. (1985) Vlyjanie tekhnologicheskikh faktorov na parametry scherokhovatosti poverkhnosti pri shlifovanii krugami iz sverkhtverdykh materialov [The influence of technological factors on surface roughness parameters when grinding with wheels made of superhard materials]. Mikrogeometria i ekspluatacionnie svoistva mashin. Riga. 5–10 [in Russian].
  78. Ljubimov, V.G. (1979) Shlifovanie plastmass novym abrazivnom instrumentom [Sanding plastics with new abrasive tools]. Lviv: Vyscha shkola. 159 [in Russian].
  79. Gadszhiev, A.M. (1976) Issledovanie processa glubinnoi zatochki instrumenta iz bystroreszhuschei stali krugami iz kubicheskogo nitryda bora: Avtoref. dis. … kand. techn. nauk [Study of the process of deep sharpening of high-speed steel tools with cubic boron nitride wheels: Author’s abstract dis. …cand. tech. sciences]. Baku: API. 24 [in Russian].
  80. Khaet, L.G. (1977) Issledovanie uprochnenia tverdosplavnykh tokarnykh rezcov drob`ju: Avtoref. dis. … kand. techn. nauk [Study of hardening of carbide turning cutters with shot: Author’s abstract dis… cand. tech. sciences]. Kyiv: ISM AN USSR. 24 [in Russian].
  81. Novikov, F.V. & Jakimov, A.V. (Ed.) (2003) Fizyko-matematichesraja teorija processov obrabotki materialov i tekhnologii mashinostroenia. V desjaty tomakh. Т. 6. „Kachestvo obrabotki detalei mashin” [Physico-mathematical theory of materials processing processes and mechanical engineering technology: Under the general editorship of F.V. Novikov and A.V. Yakimov. In ten volumes. – T. 6. “Quality of processing of machine parts”]. Odesa: ONPU. 716 [in Russian].
  82. Novikov, F.V. & Shkurupii, V.G. (2015) Vlijanue formy reszuschikh zeren pri abrazivnoi obrabotke na parametry sherokhovatosti poverkhnosti [Influence of the shape of cutting grains during abrasive processing on surface roughness parameters]. Fizicheskie i komp`juternye technologii. Trudy XXI Meszdunar. nauchnoprakticheskoi konferencii. Kharkiv. 3–13 [in Russian].
  83. Filatov, Yu.D., Sidorko, V.I., Filatov, O.Yu. & Koval`ov, S.V. (2017) Fizychni zasady formoutvorennia precyziinikh poverkhon pid chas mekhanichnoi obrobky nemetalevykh materialiv [Physical principles of forming precision surfaces during mechanical processing of non-metallic materials]. Kyiv: Naukova dumka. 247 [in Ukrainian].
  84. Maslov, E.N. (1974) Teoria shlifovania materialov. [Theory of grinding materials]. М.: Mashinostroenie. 320 [in Russian].
  85. Lavrinenko, V.I. & Prots, L.A. (2005) Vplyv krystalografichnoi orientatsii monokrystaliv paratelurytu ta tetraboratu litiju, otrymanykh metodom vytjaguvannja z rozplavu, na mikrorelief poverkhon pry mekhanichnii obrobtsi [The influence of the crystallographic orientation of single crystals of paratellurite and lithium tetraborate, obtained by the method of extraction from the melt, on the microrelief of surfaces during mechanical processing]. Sverkhtverdye materialy. № 2. 52–59 [in Ukrainian].
  86. Blyatanov, A.A. (2000) Krystaly kvantovoi i neliniinoji optyky [Quantum and nonlinear optics crystals]. М.: MISIS. 354–360 [in Russian].
  87. Takeuchi, M., Odagawa, H., Tanaka, M. & Yamanouchi, K. (1997) Low-loss surface wave filter on natural single phase undirectional transducer orientations of a Li2B4O7 substrate. Jap. J. of Appl. Phys. 36, #5B. 3091–3095.
  88. Golovej, V.M. (2009) Krystalichnii і sklopodibnyi Lі2B4O7: vplyv fizyko-khimichnykh umov oderszannia na vlastyvosti vporjadkovanykh ta defektnykh struktur na jogo osnovi: avtoref. dys. dokt. khim. nauk [Crystalline and vitreous Li2B4O7: the influence of the physicochemical conditions of production on the properties of ordered and defective structures based on it: autoref. thesis dr. chemical of science]. Kyiv, 2009. 31 [in Ukrainian].
  89. Arutjunov, P.A., Tolstikhina, A.L. & Demidov, V.N. (1999) Systema parametrov dlja analiza sherokhovatosti i mikroreliefa povehkhnosti materialov v skanirujuschei zondovoi mikroskopii [System of parameters for the analysis of roughness and microrelief of the surface of materials in scanning probe microscopy]. Zavodskaja laboratoria. Diagnostika materiakjv. 65, № 9. 27–37 [in Russian].
  90. Lytvyn, O.S. & Prokopenko, I.V. (2001) Vyvchennia morfologii poverkhni polikrystalichnykh plivok metodom atomno-sylovoi mikroskopii [Study of surface morphology of polycrystalline films by atomic force microscopy]. Naukovii visnyk Chernivetskogo universytetu. Vup. 112. Fizika. Elektronika. 5–10. [in Ukrainian].
  91. Pekarev, A.I., Chistjakov, Yu.D. & Ushakov, A.S. (1983) Krystalograficheskaja shlifovka i polirovka monokrystalov [Crystallographic grinding and polishing of single crystals]. Elektronnaja promushlennost. № 6. 59 [in Russian].
  92. Rogov, V.V. (1985) Finishnaja almazno-abrazivnaja obrabotka nemetallicheskikh detalei [Finishing diamond abrasive processing of non-metallic parts]. Kiyv: Naukova dumka. 205–207 [in Russian].
  93. Lavrinenko, V.I., Sytnik, B.V., Poltoratskii, V.G., Bochecheka, O.O. & Solod, V.Yu. (2014) Zernysti kompakty na osnovi mikroporoshkiv KNB, otrymani pri nyzkykh tyskakh, jak funkcionalni elementy v strukturi robochogo shary almazno-abrazyvnogo instrumenta. Povidomlennja 1. Zernysti kompakty, jak abrazyvni elementy [Granular compacts based on KNB micropowders, obtained at low pressures, as functional elements in the structure of the working layer of a diamond abrasive tool. Message 1. Granular compacts as abrasive elements]. Sverkhtverdye materialy. № 3. 65–72 [in Ukrainian].
  94. Metzger, J.L. (1988) Scatter in Grinding Tests – Curse or Blessing. Ind. Diamond Revier. 42, N 529. 270–277.
  95. Chmir, M.Ja. & Troitskii, N.A. (1990) Vzaimosvjaz` tekhnologicheskikh pokazatelei almazno-elektrokhimicheskogo shlifovania, kharakteristik oborudovania i uslovii obrabotki [Relationship between technological indicators of diamond-electrochemical grinding, equipment characteristics and processing conditions]. Elektrokhimicheskie i elektrofizicheskie metody obrabotki materialov: Sb. nauchn. tr. T.: TulPI. 80–92 [in Russian].
  96. Pasichnyi, O.O. & Lavrinenko, V.I. (2019) Vplyv khyl`ovoi formozminy rizalnoi poverkhni almaznykh krugiv u kolovomu naprjamku na parametry shorstkosti obroblenoi poverkhni [The influence of the wave form change of the cutting surface of diamond wheels in the circular direction on the parameters of the roughness of the processed surface]. Sverkhtverdye materialy. № 4. 83–86 [in Ukrainian].
  97. Nikolaenko, A.P. (2010) Formirovanie poverkhnosti izdelia pri vibratsionnoi obrabotke [Formation of the product surface during vibration processing]. Vibratsii v tekhnitsi ta tekhnologijakh. № 2(58). 167–181 [in Russian].
  98. Kosilova, A.G. & Mescherjakov, R.K. (Ed.) (1986) Spravochnik tekhnologa-mashinostroitelja: v 2-kh t [Handbook of mechanical engineering technologist: in 2 volumes]. М.: Mashinostroenie. Т. 2. 496 [in Russian].
  99. Tskhai, E.B., Klopotov, A.A. & Kozureva, R.A. (2015) Sherokhovatosti poverkhnosti detalei v zavisimosti ot naznachenia: metodicheskie ukazania dlja vypolnenia kursovykh i dyplomnykh rabot [Surface roughness of parts depending on purpose: guidelines for completing coursework and dissertations]. Т.: TGASU. 28 [in Russian].
  100. Velichko, S.A., Senin, P.V., Ivanov, V.I. & Martynov, A.V. (2014) Prognozirovanie rabotosposobnosti poverkhnostei trenia, obrazovannykh elektroiskrovoi obrabotkoi [Predicting the performance of friction surfaces formed by electric spark treatment]. Povyshenie nesuschei sposobnosti detalei mashin. 9–14 [in Russian].
  101. Buznik, E.N. (2008) Tekhnologia avtotraktorostroenia: Uchebnoe posobie, 2-e izd [Automotive and tractor technology: Textbook, 2nd ed]. М.: MGIU. 100 [in Russian].
  102. Tkachuk, A.A. (2014) Pidvyschennia znosostiikosti poverkhon kochennja rolykopidshipnykiv metodamy zmitsnjuvalno-vygladschuvalnogo obroblennja. – Disertatsija na zdobuttja naukovogo stupenja kandydata tekhnichnykh nauk zi spetsialnosti 05.02.08 – tekhnologia mashinobuduvannja [Increasing the wear resistance of rolling surfaces of roller bearings by methods of strengthening and smoothing treatment. – Dissertation for obtaining the scientific degree of Candidate of Technical Sciences in the specialty 02.05.08 – mechanical engineering technology]. Lutsk: LNTU. 21 [in Ukrainian].
  103. Radkevych, Ja.M. & Skhyrtladze, A.G. (2019) Metrologia, standartyzatsia i sertyfikatsia. V 3 ch. Chact 1. Metrologia: uchebnik dlja akademicheskogo bakalavrata [Metrology, standardization and certification. In 3 hours. Part 1. Metrology: textbook for academic bachelor’s degree. М.: Jurait [in Russian].
  104. Mazur, M.P. (Ed.), Vnukov, Yu.M., Dobroskok, V.L., Zaloga, V.O., Novos`olov, Yu.K. & Jakubov, F.Ja. (2010) Osnovy teorii rizannja materialov: pidruchnyk [dlja vysch. navch. zakladiv] [Fundamentals of the theory of cutting materials: a textbook [for higher education. education institutions]. Lviv: Novyi Svit. 534 [in Ukrainian].
  105. Lavrinenko, V.І., Solod, V.Yu., Kashinskii, I.S. & Dobroskok, V.L. (2020) Vyznachennia oksydiv, pryznachenykh dlja modifikuvannja poverkhni almaznykh zeren, za ikh funktsionalnymy kharakteristykamy [Determination of oxides intended for surface modification of diamond grains according to their functional characteristics]. Nadtverdi materialy. № 6. 66–73 [in Ukrainian].
  106. Lavrinenko, V.I., Pasichnyi, O.O., Poltoratskii, V.G. & Leschenko, O.V. (2020) Modyfikovani termostiikymy oksydamy i khlorydamy shlifporoshki syntetychnogo almazu v shlifuvalnomu instrumenti [Synthetic diamond grinding powders modified with heat-resistant oxides and chlorides in a grinding tool]. Kachestvo, standartyzatsia, kontrol: teorija i praktyka: Mater. 20 Meszd. nauk.-prakt. konf. 07–11.09.2020. Odesa. Kyiv: ATM Ukraine. 87–88 [in Ukrainian].
  107. Lavrinenko, V.I., Pasichnyi, O.O. Poltoratskyi, V.G., Solod, V.Yu. & Muzychka D.G. (2022) Some specific features in shaping the cutting sur­face of a grinding wheel in circular direction un­der grinding with the use of wheels with a mixture of SHM grinding pow­ders and a modified surface of their grains. Journal of Superhard Materials. Vol. 44, No. 1, 46–56.
  108. Filatov, Yu.D. (1991) Mekhanizm obrazovania mikroreliefa poverkhnosti pri obrabotke stekla [The mechanism of surface microrelief formation during glass processing]. Sverkhtverdye materialy. № 5. 61–65 [in Russian].
  109. Tretjakov, I.P., Nymofeev, V.N., Kudriashov, B.P. & Ivashinnikov, V.T. (1984) А.s. № 1073082 (USSR). Shlifovalnii krug [Grinding wheel]. [in Russian].
  110. Starov, V.N., Frolov, G.S., Fedotova, L.A. & Dubovykh, Yu.A. (1984) А.s. № 1077771 (USSR). Abrazyvnyi instrument [Abrasive tool]. [in Russian].
  111. Tomita, T., Suzuki, I., Imai, T. & Kitajima, M. (1983) Pat. № 4385907 (USA). Grinding wheel with a support element made of heat-insulating material.
  112. Zatulovskii, S.S., Akbarnedschad, V. & Kosinskaja, A.V. (2004) Novue abrazivostojkie materialu dlja uzlov trenija gornodobyvajuschei tekhniki [New abrasion-resistant materials for friction units of mining equipment]. Effektivnost realizatsii nauchnogo, resursnogo i prpmyshlennogo potentsiala v sovremennykh uslovijakh. Mater. IV Promyslen. konf. s meszd. uchastiem. p. Slavskoe, Karpaty, 2-4.02.2004 – Kyiv: UITs «NTT», 2004. 104–106 [in Russian].
  113. Konovalov, V.A., Matskevich, E.R. & Stepanenko, T.O. (1990) Issledovanie vzaimodejstvia polifosfata natrija s bronzovoj matritsei pri granulirovanii i spekanii metalloalmaznykh kompozytsij [Study of the interaction of sodium polyphosphate with a bronze matrix during granulation and sintering of metal-diamond compositions]. Abrazyvosoderszhaschie kompozyty iz sverkhtverdykh materialov: Sb. nauchn. trudov. – Kyiv: ISM AN USSR. 71–77 [in Russian].
  114. Stepanov, V.A, Olejnyk, E.V. & Vysotskii, S.P. (2007) Almaznyj kompozytsyonnyj material na osnove atsetonoformaldegidnoj smoly i szidkogo stekla [Diamond composite material based on acetone-form-aldehyde resin and liquid glass]. Kompozytsyonnije materially v promyshlennosti: Mater. XXVIІ meszd. konf. 28.05.2007–01.06.2007, Jalta. Kyiv: UITs «NTT». 113 [in Russian].
  115. Korbut, E.V., Podchernjaeva, I.A., Yurechko, D.V., Ljashenko, B.A. & Klymanko, S.A. (2011) Tverdosmazochnye pokrytia na reszuschem instrumente [Solid lubricant coatings on cutting tools]. Sovremennye problemy proizvodstva i remonta v promyshlennosti i na transporte: Materialy 11 Meszd. nauch.-techn. seminara, 21–25/02. Svaljava. Kyiv: ATM Ukraine. 135–137 [in Russian].
  116. Ljubars`kii, I.M. & Palatnyk, L.S. (1976) Metallofizyka trenija [Metal physics of friction]. М.: Metallurgia. 176 [in Russian].
  117. Lavrinenko, V.I. & Solod V.Yu. (2016) Oxidation or oxide materials in the machining zone in superabrasive grinding–a factor of influence on the grinding performance. J. Superhard Mater. vol. 38, no. 6. 417–422.
  118. Latyshev, V.N.& Naumov, A.G. (2001) Ob effektyvnisti ispolzovania kysloroda v protsesse rezania [On the efficiency of oxygen use in the cutting process]. Rezanie i instrument v tekhnologicheskikh systemakh. V. 60. 121–127 [in Russian].
  119. Poltoratskii, V.G., Bochechka, A.A., Lavrinenko, V.I, Tkach, V.M., Petasjuk, G.A., Bilochenko, V.A., Leschenko, O.V. & Grischenko, G.S. (2019) Modifitsirovanie shlifporoshkov sinteticheskogo almaza i kompaktov na osnove mikroporoshkov cBN termostoikimi pkaydamy i khlorydamy metodom szidkofaznogo nanesenia [Modification of synthetic diamond grinding powders and compacts based on cBN micropowders with heat-resistant oxides and chlorides by liquid-phase deposition]. Porodorazrushajuschij i metalloobrabatyvajuschij instrument technika i tekhnologia ego izgotovlenia i primenenia: Sb. nauch. tr. # 22. Kyiv: ISM im. V.N.Bakulja. 317–327 [in Russian].
  120. Murovskii, V.A., kutsovskaja, A.M. & Chistjakov, E.M. (1971) Vlijanie sredy na intensyvnost gorenia almaza [Influence of the environment on the intensity of diamond combustion]. Synteticheskie almazy. № 5. 31–33 [in Russian].
  121. Shilo, A.E. (1981) Termodynamicheskii analiz vzaimodejstvia almaza, grafita i KNB s oksydamy [Thermodynamic analysis of the interaction of diamond, graphite and CBN with oxides]. Sverkhtverdye materialy. № 5. 14–19 [in Russian].
  122. Novikova, S.I. (1974) Teplovoe rashirenie tverdykh tel [Thermal expansion of solids]. М.: Nauka. 294 [in Russian].
  123. Lyfshits, B.G., Kraposhin, V.A. & Linetskii, Ja.L. (1980) Fizicheskie svoistva metallov i splavov [Physical properties of metals and alloys]. M.: Metallurgia. 320 [in Russian].
  124. Ilnitskaya, G., Bogatyreva, G., Novikov, N., Shepelev, A., Nevstryev, G., Leschenko, O. (2008) Increase of linear size uniformity of synthetic diamond grinding powder. J. Phys.: Conf. Ser. 121 Volume 121. 123001.
  125. Shulzhenko, A.A., Prikhna, T.O., Ilnytska, H.D., Lavrinenko, V.I., Borymskii, A.I., Sokolov, A.N., Tkach, V.N., Smokvyna, V.V., Zaitseva, I.N. & Tymoshenko, V.V. (2021) Comparison of the dime­nsional, physical, mecha­nical, and operational characteristics of AS6 and AS20 synthetic dia­mond powders synthe­sized in the Ni‒Mn‒C and Fe‒Si‒C systems. Journal of Superhard Materials, Vol. 43, No. 1, 1–14.
  126. Nevstruev, G.F. & Ilnytska, H.D. (2004) Patent Ukraine 69947 A, MKI В03С7/00. Sposib oderszannja shlifporoshkiv vuzkoi zernystosti [The method of obtaining grinding powders of narrow grain size]. [in Ukrainian].
  127. Lavrinenko, V.I., Ilnitskaya, G.D., Petasyuk, G.A., Ishchenko, E.V., Gaidai, S.V., Pasichnyi, O.O., Skryabin, V.V., Shatokhin, V.V., Zaitseva, I.N., Kuz’menko, E.F. & Timoshenko, V.V. (2018) Issledovanie vozmosznosti uluchshenia ekspluatatsionnykh svoistv almaznikh poroshkov marky AS20 pri izmenenii ikh razmernykh i fizyko-khimicheskykh kharakterystyk [Study of the possibility of improving the performance properties of AC20 grade diamond powders by changing their dimensional and physicochemical characteristics]. Sverkhtverdye materialy. № 4. 59–70 [in Russian].
  128. Tsypkin, R.Z., Kangun, V.R. & Belov, V.I. (1978) Almaznoe shlifovanie nemetallycheskykh materialov. Obzor [Diamond grinding of non-metallic materials. Review]. M.: NIImash. 57 [in Russian].
  129. Shulman, P.A., Semenov, L.N. & Kolesnichenko, Yu.N. (1968) K voprosu o vlijanii dynamiky stankov na kharakter protsessa almaznogo shlifovania [On the question of the influence of machine dynamics on the nature of the diamond grinding process]. Voprosy teorii i praktiky rezania almaznymy instrumentamy. Kyiv: UkrNIINTI. С. 33–35 [in Russian].
  130. Lavrinenko, V.I. (1996) Katodnye plenki pri elektrokhimicheskom shlifovanii krugamy iz STM [Cathode films during electrochemical grinding with SHM wheels]. Sverkhtverdye materialy. № 2. 56 – 61 [in Russian].
  131. Bruk, E.V., Vajner, Ja.V. & Kovaleva, R.G. (1967) Nekotorye kharakteristyky pokrytii, prymenjaemykh dlja elektrycheskykh kontaktov [Some characteristics of coatings used for electrical contacts]. Elektrycheskie kontakty. M.: Energia. 477–487 [in Russian].
  132. Konchits, V.V., Meshkov, V.V. & Myshkin, N.K. (1986) Trybotechnika elektrycheskikh kontaktov [Tribotechnics of electrical contacts]. М.: Nauka i technika, 256 [in Russian].
  133. Lavrinenko, V.I., Skrjabin V.O., Sytnik, B.V., Smokvyna, V.V., Leschuk, I.V., Tkach, V.M., Samotugin, S.S., Mazur, V.O. & Kudinova, K.V. (2010) Doslidszennia vplyvu plazmovoi obrobky na rizalnu poverkhnu shlifuvalnykh krugiv z nadtverdykh materialiv [Study of the effect of plasma processing on the cutting surface of grinding wheels made of superhard materials]. Sverkhtverdye materialy. № 5. 81–87 [in Ukrainian].

Схожі записи

Почніть набирати текст зверху та натисніть "Enter" для пошуку. Натисніть ESC для відміни.

Повернутись вверх