Development of scientific and technological foundations for a new environmentally friendly and waste-free process for grinding conductive waste into micro- and nanofractions powders
Čebyševskij sbornik, Tome 21 (2020) no. 4, pp. 314-326.

Voir la notice de l'article provenant de la source Math-Net.Ru

The paper presents the implementation of the technology of electroerosive grinding on the example of solid alloy waste. It is shown that the power of electric contact heat sources can be sufficient for the implementation of the process of electroerosive dispersion. Dependences are obtained that allow us to perform a calculated estimation of the fractional composition of the powder material obtained under the action of electric contact heat sources.
Keywords: metal waste, power of heat sources, powder material, particle size, electroerosive dispersion.
@article{CHEB_2020_21_4_a25,
     author = {E. V. Ageeva and E. V. Ageev and A. E. Gvozdev and O. V. Kuzovleva},
     title = {Development of scientific and technological foundations for a new environmentally friendly and waste-free process for grinding conductive waste into micro- and nanofractions powders},
     journal = {\v{C}eby\v{s}evskij sbornik},
     pages = {314--326},
     publisher = {mathdoc},
     volume = {21},
     number = {4},
     year = {2020},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/CHEB_2020_21_4_a25/}
}
TY  - JOUR
AU  - E. V. Ageeva
AU  - E. V. Ageev
AU  - A. E. Gvozdev
AU  - O. V. Kuzovleva
TI  - Development of scientific and technological foundations for a new environmentally friendly and waste-free process for grinding conductive waste into micro- and nanofractions powders
JO  - Čebyševskij sbornik
PY  - 2020
SP  - 314
EP  - 326
VL  - 21
IS  - 4
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/CHEB_2020_21_4_a25/
LA  - ru
ID  - CHEB_2020_21_4_a25
ER  - 
%0 Journal Article
%A E. V. Ageeva
%A E. V. Ageev
%A A. E. Gvozdev
%A O. V. Kuzovleva
%T Development of scientific and technological foundations for a new environmentally friendly and waste-free process for grinding conductive waste into micro- and nanofractions powders
%J Čebyševskij sbornik
%D 2020
%P 314-326
%V 21
%N 4
%I mathdoc
%U http://geodesic.mathdoc.fr/item/CHEB_2020_21_4_a25/
%G ru
%F CHEB_2020_21_4_a25
E. V. Ageeva; E. V. Ageev; A. E. Gvozdev; O. V. Kuzovleva. Development of scientific and technological foundations for a new environmentally friendly and waste-free process for grinding conductive waste into micro- and nanofractions powders. Čebyševskij sbornik, Tome 21 (2020) no. 4, pp. 314-326. http://geodesic.mathdoc.fr/item/CHEB_2020_21_4_a25/

[1] Ageev E. V., Gadalov V. N., Semenikhin B. A., Ageeva E. V., Latypov R. A., “Poluchenie iznosostoikikh poroshkov iz otkhodov tverdykh splavov”, Zagotovitelnye proizvodstva v mashinostroenii, 2010, no. 12, 39–44

[2] Ageev E. V., Gadalov V. N., Semenikhin B. A., Ageeva E. V., Latypov R. A., “Rentgenostrukturnyi analiz poroshkov, poluchennykh elektroerozionnym dispergirovaniem tverdogo splava”, Zagotovitelnye proizvodstva v mashinostroenii, 2011, no. 2, 42–44

[3] Ageev E. V., Gadalov V. N., Semenikhin B. A., Ageeva E. V., Latypov R. A., “Rentgenospektralnyi mikroanaliz chastits poroshkov, poluchennykh elektroerozionnym dispergirovaniem tverdogo splava”, Uprochnyayuschie tekhnologii i pokrytiya, 2011, no. 2(74), 13–16

[4] Ageev E. V., Semenikhin B. A., Ageeva E. V., Latypov R. A., “Otsenka effektivnosti primeneniya tverdosplavnykh poroshkov, poluchennykh elektroerozionnym dispergirovaniem otkhodov tverdykh splavov, pri vosstanovlenii i uprochnenii detalei kompozitsionnymi galvanicheskimi pokrytiyami”, Uprochnyayuschie tekhnologii i pokrytiya, 2011, no. 9(81), 14–16

[5] Ageev E. V., Latypov R. A., Ageeva E. V., “Issledovanie svoistv elektroerozionnykh poroshkov i tverdogo splava, poluchennogo iz nikh izostaticheskim pressovaniem i spekaniem”, Izvestiya vysshikh uchebnykh zavedenii. Tsvetnaya metallurgiya, 2014, no. 6, 51–55

[6] Ageeva E. V., Khoryakova N. M., Ageev E. V., “Morfologiya i elementnyi sostav mednykh elektroerozionnykh poroshkov, prigodnykh k spekaniyu”, Vestnik mashinostroeniya, 2014, no. 10, 66–68

[7] Ageeva E. V., Ageev E. V., Vorobev E. A., “Rentgenospektralnyi mikroanaliz poroshka, poluchennogo iz otkhodov bystrorezhuschei stali elektroerozionnym dispergirovaniem v kerosine”, Vestnik mashinostroeniya, 2014, no. 11, 71–72

[8] Ageeva E. V., Ageev E. V., Karpenko V. Yu., “Rentgenostrukturnyi analiz poroshka, poluchennogo iz volframsoderzhaschikh otkhodov elektroerozionnym dispergirovaniem v vodnoi srede”, Vestnik mashinostroeniya, 2014, no. 12, 64–65

[9] Ageeva E. V., Khoryakova N. M., Ageev E. V., “Issledovanie formy i morfologii elektroerozionnykh mednykh poroshkov, poluchennykh iz otkhodov”, Vestnik mashinostroeniya, 2014, no. 8, 73–75

[10] Ageeva E. V., Khoryakova N. M., Ageev E. V., “Issledovanie raspredeleniya mikrochastits po razmeram v poroshkakh, poluchennykh elektroerozionnym dispergirovaniem mednykh otkhodov”, Vestnik mashinostroeniya, 2014, no. 9, 63–64

[11] Ageev E. V., Ageeva E. V., Vorobev E. A., “Granulometricheskii i fazovyi sostavy poroshka, poluchennogo iz volframsoderzhaschikh otkhodov instrumentalnykh materialov elektroerozionnym dispergirovaniem v kerosine”, Uprochnyayuschie tekhnologii i pokrytiya, 2014, no. 4(112), 11–14

[12] Ageeva E. V., Ageev E. V., Karpenko V. Yu., “Izuchenie formy i elementnogo sostava poroshka, poluchennogo iz volframsoderzhaschikh otkhodov instrumentalnykh materialov elektroerozionnym dispergirovaniem v vodnoi srede”, Uprochnyayuschie tekhnologii i pokrytiya, 2014, no. 4(112), 14–17

[13] Khoryakova N. M., Ageev E. V., Ageeva E. V., “Elektroerozionnye mednye poroshki dlya galvanicheskikh pokrytii”, Uprochnyayuschie tekhnologii i pokrytiya, 2014, no. 4(112), 18–20

[14] Ageeva E. V., Ageev E. V., Vorobev E. A., Osminina A. S., “Poluchenie iznosostoikikh pokrytii s ispolzovaniem elektrodov iz tverdosplavnykh elektroerozionnykh poroshkov i ikh issledovanie”, Uprochnyayuschie tekhnologii i pokrytiya, 2014, no. 4(112), 21–23

[15] Ageev E. V., Ageeva E. V., Karpenko V. Yu., Osminina A. S., “Poluchenie zagotovok tverdogo splava iz poroshkov, poluchennykh elektroerozionnym dispergirovaniem volframsoderzhaschikh otkhodov”, Uprochnyayuschie tekhnologii i pokrytiya, 2014, no. 4(112), 24–27

[16] Ageeva E. V., Ageev E. V., Khoryakova N. M., “Izgotovlenie zagotovok iz mednykh poroshkov, poluchennykh elektroerozionnym dispergirovaniem otkhodov elektrotekhnicheskoi medi i izuchenie ikh svoistv”, Naukoemkie tekhnologii v mashinostroenii, 2014, no. 10(40), 10–13

[17] Ageeva E. V., Ageev E. V., Karpenko V. Yu., “Razmernyi analiz chastits poroshka, poluchennogo iz volframsoderzhaschikh otkhodov elektroerozionnym dispergirovaniem v vode”, Vestnik mashinostroeniya, 2015, no. 3, 45–46

[18] Ageeva E. V., Ageev E. V., Vorobev E. A., “Analiz formy i morfologii chastits poroshka, poluchennogo iz volframsoderzhaschikh otkhodov elektroerozionnym dispergirovaniem v kerosine”, Vestnik mashinostroeniya, 2015, no. 7, 72–73

[19] Ageeva E. V., Latypov R. A., Ageev E. V., Altukhov A. Yu., Karpenko V. Yu., “Otsenka iznosostoikosti elektroiskrovykh pokrytii, poluchennykh s ispolzovaniem elektroerozionnykh poroshkov bystrorezhuschei stali”, Izvestiya vysshikh uchebnykh zavedenii. Poroshkovaya metallurgiya i funktsionalnye pokrytiya, 2015, no. 1, 71–76 | MR

[20] Ageeva E. V., Latypov R. A., Ageev E. V., Altukhov A. Yu., Karpenko V. Yu., “Kharakteristiki elektroiskrovykh pokrytii, poluchennykh elektrodami iz elektroerozionnykh poroshkov bystrorezhuschei stali”, Izvestiya vysshikh uchebnykh zavedenii. Poroshkovaya metallurgiya i funktsionalnye pokrytiya, 2015, no. 2, 62–65

[21] Ageeva E. V., Ageev E. V., Latypov R. A., “Otsenka iznosostoikosti elektroiskrovykh pokrytii, poluchennykh s ispolzovaniem elektroerozionnykh poroshkov bystrorezhuschei stali”, Izvestiya vysshikh uchebnykh zavedenii. Poroshkovaya metallurgiya i funktsionalnye pokrytiya

[22] Ageeva E. V., Khoryakova N. M., Pikalov S. V., Ageev E. V., “Sostav, struktura i svoistva mednogo elektroerozionnogo poroshka, poluchennogo v srede kerosina”, Izvestiya vysshikh uchebnykh zavedenii. Poroshkovaya metallurgiya i funktsionalnye pokrytiya, 2015, no. 4, 4–8

[23] Levinson E. M., Elektroerozionnaya obrabotka metallov, Lenizdat, L., 1961, 184 pp.

[24] V. A. Burtsev, N. V. Kalinin, A. V. Luchinskii, Elektricheskii vzryv provodnikov i ego primenenie v elektrofizicheskikh ustanovkakh, Energoatomizdat, M., 1990, 288 pp.

[25] Sedoi B. C., Valevich V. V., “Poluchenie vysokodispersnykh metallicheskikh poroshkov metodom elektricheskogo vzryva v azote ponizhennogo davleniya”, Pisma v ZhTF, 25:14 (1999), 81–84

[26] Kholm R., Elektricheskie kontakty, Izd-vo inostrannoi literatury, M., 1961, 464 pp.