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2019 | OriginalPaper | Buchkapitel

Investigation of Parts Thermo-Frictional Treatment Using Special Dynamic Appliances

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Abstract

The results of experimental analysis of the parts thermo-frictional treatment operation processes using dynamic instrument have been presented. The results of mathematic simulation of dynamic processes taking place at parts thermo-frictional treatment have been given. The results of theoretic investigations were proved by the experiment when treating the control part. Special dynamic appliances to increase the quality of parts thermo-frictional treatment were developed. The appliance comprises the table on the elastic suspension. Mathematic simulation of a part thermo-frictional treatment on the dynamic appliance was performed. The results of simulation have been supplemented by an experimental investigation of oscillatory processes. The part dynamic movements at its treatment have been determined.

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Literatur
1.
Zurück zum Zitat Strutinskiy VB, Pokintelitsa NI (2014) The mechanism of formation of a wavy surface when handling parts thermofrictional. J Vestn SevNTU Ser Mashinopriborostroenie Transp 161–169 Strutinskiy VB, Pokintelitsa NI (2014) The mechanism of formation of a wavy surface when handling parts thermofrictional. J Vestn SevNTU Ser Mashinopriborostroenie Transp 161–169
2.
Zurück zum Zitat Zarubitskiy EU (1986) The temperature of the allowable allowance during thermal friction cutting. In: Optimization of processes of cutting heat-resistant and high-strength materials, pp 106–110 Zarubitskiy EU (1986) The temperature of the allowable allowance during thermal friction cutting. In: Optimization of processes of cutting heat-resistant and high-strength materials, pp 106–110
3.
Zurück zum Zitat Kozochkin MP (2005) Vibroacoustic diagnostics of technological processes. IKF Catalog, Moscow Kozochkin MP (2005) Vibroacoustic diagnostics of technological processes. IKF Catalog, Moscow
4.
Zurück zum Zitat Sorokin GM (2000) Tribology of steels and alloys. Nedra, Moscow Sorokin GM (2000) Tribology of steels and alloys. Nedra, Moscow
5.
Zurück zum Zitat Nasad TG, Ignatiev AA (2002) High-speed processing difficult materials with additional streams of energy in the cutting zone. STSU, Saratov Nasad TG, Ignatiev AA (2002) High-speed processing difficult materials with additional streams of energy in the cutting zone. STSU, Saratov
6.
Zurück zum Zitat Strutinskiy VB (2001) Mathematical modeling of processes and systems of mechanics. ZETI, Zhitomir Strutinskiy VB (2001) Mathematical modeling of processes and systems of mechanics. ZETI, Zhitomir
7.
Zurück zum Zitat Goryacheva IG (2001) Mechanics of frictional interaction. Nauka, Moscow Goryacheva IG (2001) Mechanics of frictional interaction. Nauka, Moscow
8.
Zurück zum Zitat Shaduya VL (2008) Modern methods of processing materials in machine building. Technoprospect, Minsk Shaduya VL (2008) Modern methods of processing materials in machine building. Technoprospect, Minsk
9.
Zurück zum Zitat Gik LA (1990) Rotary cutting metals. Bk. Publishing House, Kaliningrad Gik LA (1990) Rotary cutting metals. Bk. Publishing House, Kaliningrad
10.
Zurück zum Zitat Chichinadze AV (2001) The basics of tribology (friction, wear, lubrication). Mashinostroenie, Moscow Chichinadze AV (2001) The basics of tribology (friction, wear, lubrication). Mashinostroenie, Moscow
11.
Zurück zum Zitat Penkin NS, Penkin AN, Serbin VM (2008) Fundamentals of tribology and tribotechnology. Mashinostroenie, Moscow Penkin NS, Penkin AN, Serbin VM (2008) Fundamentals of tribology and tribotechnology. Mashinostroenie, Moscow
12.
Zurück zum Zitat Mazur NP (2010) Basic theory of cutting materials. Novyj Svet, Lvov Mazur NP (2010) Basic theory of cutting materials. Novyj Svet, Lvov
13.
Zurück zum Zitat Khomenko AV, Lyashenko JA (2010) Periodic intermittent boundary friction. J Sci Tech Phys 27–33 Khomenko AV, Lyashenko JA (2010) Periodic intermittent boundary friction. J Sci Tech Phys 27–33
14.
Zurück zum Zitat Strutinskiy VB (2005) Tensor mathematical models of processes and systems. ZHGTU, Zhitomir Strutinskiy VB (2005) Tensor mathematical models of processes and systems. ZHGTU, Zhitomir
15.
Zurück zum Zitat Strutinskiy VB, Drozdenko VM (2010) Dynamic processes in machine tools. Osnova-Print, Kiev Strutinskiy VB, Drozdenko VM (2010) Dynamic processes in machine tools. Osnova-Print, Kiev
16.
Zurück zum Zitat Terentyev VF (2001) Cyclic strength metallic materials. Mashinostroenie, Moscow Terentyev VF (2001) Cyclic strength metallic materials. Mashinostroenie, Moscow
17.
Zurück zum Zitat Bosheh SS, Mativenga PT (2006) White layer formation in hand turning of H13 tool steel at high cutting speeds using CBN tooling. Int J Mach Tools Manuf 225–233CrossRef Bosheh SS, Mativenga PT (2006) White layer formation in hand turning of H13 tool steel at high cutting speeds using CBN tooling. Int J Mach Tools Manuf 225–233CrossRef
18.
Zurück zum Zitat Gusanelli G, Hessler-Wyser A, Bobar F et al (2004) Microstructure at submicron scale of the white layer produced by EDM technique. J Mater Process Technol 289–295 Gusanelli G, Hessler-Wyser A, Bobar F et al (2004) Microstructure at submicron scale of the white layer produced by EDM technique. J Mater Process Technol 289–295
19.
Zurück zum Zitat Garbar I (2001) Microstructural changes in surface layers of metal during running-in friction processes. J Sci Mecc 631–639 Garbar I (2001) Microstructural changes in surface layers of metal during running-in friction processes. J Sci Mecc 631–639
20.
Zurück zum Zitat Guo YB, Sahni JA (2004) Comparative study of turned and cylindrically around white layers. J Sci Mach Tools Manuf 135–145 Guo YB, Sahni JA (2004) Comparative study of turned and cylindrically around white layers. J Sci Mach Tools Manuf 135–145
21.
Zurück zum Zitat Jachymek M, Gurey I et al (2012) Computer simulation of friction hardening of superficial layers of machine details. In: Manufacturing processes. Some problems. Basic science applications, pp 49–62 Jachymek M, Gurey I et al (2012) Computer simulation of friction hardening of superficial layers of machine details. In: Manufacturing processes. Some problems. Basic science applications, pp 49–62
Metadaten
Titel
Investigation of Parts Thermo-Frictional Treatment Using Special Dynamic Appliances
verfasst von
N. Pokintelitsa
E. Levchenko
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-95630-5_178

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