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References
8
[1]
G. M. Gunyaev, Structure and Properties of Polymeric Fibrous Composites [in Russian], Moscow (1981).
[2]
O. V. Startsev, G. P. Mashinskaya, and V. A. Yartsev, ?Molecular mobility and relaxation processes in the epoxy matrix of a composite. 2. Effects of aging in a humid subtropical climate,? Mekh. Kompozitn. Mater., No. 4, 593?597 (1984).
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[5]
O. V. Startsev, V. P. Meletov, B. V. Perov, and G. P. Mashinskaya, ?Study of the mechanism of aging of organotextolite in a subtropical climate,? Mekh. Kompozitn. Mater., No. 3, 462?467 (1986).
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K. E. Perepelkin and A. B. Geller, ?Temperature strains in carbon fibers,? Mekh. Kompozitn. Mater., No. 2, 350?353 (1980).
[8]
Yu. A. Gorbatkina, E. I. Yakovenko, G. S. Shul', V. G. Ivanova-Mumzhieva, and L. A. Shchukina, ?Temperature dependence of the adhesive strength in epoxy binder-fiber systems,? Vysokomolek. Soed.,23A, No. 1, 110?115 (1981).
Cited By
7
Russian Metallurgy (Metally)
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Citations
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References
Details
Published
Jan 01, 1987
Vol/Issue
22(4)
Pages
444-449
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Cite This Article
O. V. Startsev, Yu. M. Vapirov, I. S. Deev, et al. (1987). Effect of prolonged atmospheric aging on the properties and structure of carbon plastic. Mechanics of Composite Materials, 22(4), 444-449. https://doi.org/10.1007/bf00692255