Elastomer composites based on filler with negative thermal expansion coefficient in sealing application

Archive of Applied Mechanics - Tập 86 Số 1-2 - Trang 351-360 - 2016
Sergey N. Shubin1,2, А. Б. Фрейдин2,3,4, Anton Akulichev1
1FMC Technologies, Saint-Petersburg, Russia
2Institute for Problems in Mechanical Engineering of Russian Academy of Science, Saint-Petersburg, Russia
3Saint-Petersburg Polytechnic University, Saint-Petersburg, Russia
4Saint-Petersburg State University, Saint-Petersburg, Russia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Gautier, D.L., et al.: Assessment of undiscovered oil and gas in the Arctic. Science 324, 1175–1179 (2008)

Bhowmick, A.K. (ed.): Current Topics in Elastomers Research. CRC Press, Boca Raton (2008)

Miller, W., Smith, C.W., Mackenzie, D.S., Evans, K.E.: Negative thermal expansion: a review. J. Mater. Sci. 44, 5441–5451 (2009)

Takenaka, K.: Negative thermal expansion materials: technological key for control of thermal expansion. Sci. Technol. Adv. Mater. 13, 1–11 (2012)

Lind, C.: Two decades of negative thermal expansion research: Where do we stand? Materials 5, 1125–1154 (2012)

Drymiotis, F.R., Ledbetter, H., Betts, J.B., Kimura, T., Lashley, J.C., Migliori, A., Ramirez, A.P., Kowach, G.R., Van Duijn, J.: Monocrystal elastic constants of the negative-thermal-expansion compound zirconium tungstate (ZrW2O8). Phys. Rev. Lett. 93(2), 025502 (2004)

Mary, T.A., Evans, J.S.O., Vogt, T., Sleight, A.W.: Negative thermal expansion from 0.3 to 1050 Kelvin in $$\text{ ZrW }_2\text{ O }_8$$ ZrW 2 O 8 . Science 272, 90–92 (1996)

Johnson, K.L.: Contact Mechanics. Cambridge University Press, Cambridge (1985)

Sternberg, E., Turteltaub, M.J.: Compression of an elastic roller between two rigid plates. In: Sedov, L.I., et al. (eds.) Continuum Mechanics and Related Problems of Analysis. Muskhelishvili Anniversary Volume, pp. 495–515. Nauka Publishing House, Moscow (1972)

Levin, V.: On the thermal expansion coefficients of heterogeneous materials. Proc. Acad. Sci. USSR Mech. Solids 1, 88–93 (1967)

Sevostianov, I.: On the thermal expansion of composite materials and cross-property connection between thermal expansion and thermal conductivity. Mech. Mater. 45, 20–33 (2011)

Kanaun, S.K., Levin, V.M.: Self-Consistent Methods for Composites. V. 1: Static Problems. Springer, Dordrecht (2007)

Kachanov, M., Sevostianov, I.L. (eds.): Effective Properties of Heterogeneous Materials. Springer, Berlin (2013)

Mori, T., Tanaka, K.: Average stress in matrix and average elastic energy of materials with misfitting inclusions. Acta. Metall. 21, 571–574 (1973)

Hashin, Z., Shtricman, S.: A variational approach to the theory of the elastic behaviour of multiphase materials. J. Mech. Phys. Solids 11, 127–140 (1963)

Yamashina, N., Isobe, T., Ando, S.: Low thermal expansion composites prepared from polyimide and $$\text{ ZrW }_2\text{ O }_8$$ ZrW 2 O 8 particles with negative thermal expansion. J. Photopolym. Sci. Technol. 25, 385–388 (2012)

Kozy, L.C., Tahir, M.N., Lind, C., Tremel, W.: Particle size and morphology control of the negative thermal expansion material cubic zirconium tungstate. J. Mater. Chem. 19, 2760–2765 (2009)