Background Image
Previous Page  8 / 9 Next Page
Information
Show Menu
Previous Page 8 / 9 Next Page
Page Background

9.

Шиганов И.Н.

,

Григорьянц А.Г.

,

Мельников Д.М.

,

Шишкин Ю.Л.

Программно-

аппаратный комплекс для определения эксплуатационных свойств жидких и

твердых нефтепродуктов // Технология машиностроения. № 11. 2011. С. 68–71.

10.

Шиганов И.Н.

,

Мельников Д.М.

Определение вязкости моторного топлива ме-

тодом лазерного фазового анализа // Технология машиностроения. 2013. № 10.

С. 47–50.

REFERENCES

[1] Levin

A.Ya

. New laboratory methods for assessing motor oil quality.

Khimiya i

tekhnologiya topliv i masel

[Chemistry and Technology of Fuels and Oils], 2006,

no. 2, pp. 50–51 (in Russ.).

[2] Kuz’min N.A., Pachurin G.V., Kuz’min A.N. Analysis of Deposits in Automobile

Engines.

Sovremennye problemy nauki i obrazovaniya

[Modern problems of science

and education], 2014, no. 1. 226 p. (in Russ.).

[3] Sharifullin A.V., Khamidullin R.F., Baybekova L.R. Investigation of the Structure

of the ARPS Components by IR Spectroscopy.

Jelektr. Nauchn. Izd. Issledovano

v Rossii

[El. Sc. Publ. Investigated in Russia]. 2005, no. 6, pp. 22–24.

http://zhurnal.ape.relarn.ru/articles/2005/006.pdf

[4] Shishkin Yu.L. The Phazaphot instrument for determination of the low-temperature

properties of petroleum products.

Khimiya i tekhnologiya topliv i masel

[Chemistry

and Technology of Fuels and Oils], 2006, no. 1, pp. 48–52 (in Russ.).

[5] Lenise C. Vieira, Maria B. Buchuid, Elizabete F. Lucas. Evaluation of pressure on

the crystallization of waxes using microcalorimetry.

Journal of Thermal Analysis and

Calorimetry

, 2013, vol. 111, iss. 1, pp. 583–588.

[6] Slyunyaeva R.Z. Relationship between molecular structure and physicochemical

properties of

n

-alkanes.

Khimiya i tekhnologiya topliv i masel

[Chemistry and

Technology of Fuels and Oils], 1981, no. 3, pp. 53–55 (in Russ.).

[7] Tumanyan B.P. Nauchnye i prikladnye aspekty teorii neftyanykh dispersnykh system

[Scientific and Applied Aspects of the Theory of Oil Disperse Systems]. Moscow,

Tekhnika Publ., 2000. 336 p.

[8] Mal’tseva E.V., Bogoslovskii A.V., Yudina N.V. Application of the low-frequency

vibratory method for determining the paraffin crystallization onset in dispersed

petroleum systems.

Russian Journal of Applied Chemistry

, 2012, vol. 85, iss. 5,

pp. 751–754 (in Russ.).

[9] Shiganov I.N., Grigor’yants A.G., Mel’nikov D.M., Shishkin Yu.L. The Fazafot

hardware-software complex for end-use test of hydrocarbon oils and solid petroleum

products.

Tekhnologiya mashinostroeniya

, 2011, no. 11, pp. 68–71 (in Russ.).

[10] Shiganov I.N., Mel’nikov D.M. Motor fuel viscosity test by the method of laser

phase analysis.

Tekhnologiya mashinostroeniya

, 2013, no. 10, pp. 47–50 (in Russ.).

Статья поступила в редакцию 19.03.2015

Шиганов Игорь Николаевич — д-р техн. наук, профессор МГТУ им. Н.Э. Баумана,

автор около 200 научных работ в области лазерной обработки, взаимодействия ла-

зерного излучения с веществом.

МГТУ им. Н.Э. Баумана, Российская Федерация, Москва, 105005, 2-я Бауманская ул.,

д. 5.

Shiganov I.N. —

D.Sc.

(Eng.), Professor of Engineering, Bauman Moscow State

University, author of over 200 research publications in the fields of laser treatment, laser

ray and substance interaction.

Bauman Moscow State Technical University, 2-ya Baumanskaya ul. 5, Moscow, 105005

Russian Federation.

ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. “Машиностроение” 2015. № 4 107