[2] Milberg J. Hochgeschwindigkeitsbearbeitung mit spanenden Fertigungsverfahren.
Werksstattstechnik
, 1983, vol. 73, no. 1, pp. 5–10.
[3] Scherer J. Zerspanen von Aluminium bei hoch Schnittgeschwindigkeiten.
Werkstatt
und Betrieb
, 1984, vol. 117, no. 6, pp. 355–358.
[4] Ditman K., Gyuring K. High-speed grinding — a modern method of metal cutting.
Stanki i instrument
[Machines and Tooling], 1988, no. 12, pp. 21–24 (in Russ.).
[5] Schulz H. The History of High-Speed Machining.
Revista de Ciˆencia e Tecnologia
,
1990, no. 13, pp. 9–18.
[6] B¨oeml K. Entwicklungstendenzen bei Fraesmaschinen.
Werkstatt und Betrieb
, 1983,
vol. 116, no. 8, pp. 463–466.
[7] Waldvogel W. Hochgeschwindigkeitfr¨asen mit Schnellfrequenz — Motor-
fr¨asspindeln.
Microtechnic
, 1984, no. 4, pp. 26–27.
[8] Potapov V.A., Ayzenshtok G.I. High-Speed Machining.
Overview VNIITEMR
.
Technology, Equipment, Organization and Economics of Machinery Production.
Series 1. Cutting Equipment, iss. 9, 1986. 60 p. (in Russ.).
[9] Schtrer J. Hochgeschwindigkeitfr¨asen wird industriereif.
Werkstatt und Betrieb
, 1986,
vol. 119, no. 1, pp. 45–49.
[10] Dey H. Bearbeitungszentren auf dem Weg zur Integration in flexible
Fertigungseinrichtungen.
Werkstatt und Betrieb
, 1985, vol. 118, no. 12, pp. 792–
797.
[11] Kovshov A.N., Nazarov Yu.F., Yaroslavtsev V.M. Netraditsionnye metody obrabotki
materialov [Nontraditional Methods of Material Processing]. Moscow, MGOU Publ.,
2007. 212 p.
[12] Yaroslavtsev V.M., Mirskov A.N. Method of Broad Cuts as a Means of Intensifying
the Process of Cutting. Problemy mashinostroeniya i avtomatizatsii. Mezhdunar.
zhurnal [Engineering and Automation Problems], 1992, no. 1, pp. 41–51 (in Russ.).
[13] Poduraev V.N., Yaroslavtsev V.M., Yaroslavtseva N.A. Efficiency of Machining with
Advanced Plastic Deformation.
Vestn. Mashinostr.
[Russian Engineering Research],
1972, no. 12, pp. 58–61 (in Russ.).
[14] Yaroslavtsev V.M. Technological Solutions to the Problems of Treatment of
Rocket and Aerospace Composite Structures.
Vestn. Mosk. Gos. Tekh. Univ.
im. N.E. Baumana, Mashinostr., Spetsvyp.
“
Kompozitsionnye materialy, konstruktsii i
tekhnologii
” [Herald of the Bauman Moscow State Tech. Univ., Mech. Eng., Spec.
Iss. “Composite Materials, Structures and Techniques], 2005, pp. 41–62 (in Russ.).
[15] Yaroslavtsev V.M. Development and Practical Implementation of Methodology of
Search of New Methods of Material Processing.
Vestn. Mosk. Gos. Tekh. Univ.
im. N.E. Baumana, Mashinostr.
[Herald of the Bauman Moscow State Tech. Univ.,
Mech. Eng.], 2007, no. 2 (67), pp. 56–70 (in Russ.).
[16] Yaroslavtsev V.M., Nazarov N.G. Assessment of the Efficiency of Intermittent
Cutting Through the Use of Thermal Stress Change Patterns of the Process.
Jelektr.
Nauchno-Tehn. Izd “Nauka i obrazovanie”
[El. Sc.-Tech. Publ. “Science and
Education”]. 2013, no. 10. Availlable at:
http://technomag.bmstu.ru/doc/623113.htmlDOI: 10.7463/1013.0623113
[17] Stepanov A.A. Obrabotka rezaniem vysokoprochnykh kompozitsionnykh materialov
[Machining of High-Strength Composite Materials]. Leningrad, Mashinostroenie
Publ., 1987. 176 p.
[18] Bulanov I.M., Vorobey V.V. Tekhnologiya raketnykh i aerokosmicheskikh
konstruktsiy iz kompozitsionnykh materialov [Technology of Rocket and Aerospace
Structures Made of Composite Materials]. Moscow, MGTU im. N.E. Baumana Publ.,
1998. 516 p.
[19] Obshchemashinostroitel’nye normativy rezhimov rezaniya, norm iznosa i raskhoda
reztsov, sverl i frez pri obrabotke nemetallicheskikh konstruktsionnykh materialov
[Engineering Standards of Cutting Rates, Norms of Wear and Consumption of
Cutters, Drills and Mills When Cutting Non-Metallic Structural Materials]. Moscow,
NIIMASh Publ., 1982. 144 p.
ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. “Машиностроение” 2015. № 3 69