Claims
- 1. A process for preparing a composite having a near-zero uniaxial thermal expansion coefficient comprising uniaxially or biaxially orienting at least one highly chain-aligned polyacetylene, possessing a negative uniaxial thermal expansion coefficient, within a solid matrix material possessing a positive thermal expansion coefficient, said chain-aligned polyacetylene having its negative uniaxial thermal expansion coefficient, .alpha..sub.1, given by .alpha..sub.1 =a.sub.1 +b.sub.1 t and said matrix material having its positive thermal expansion coefficient, .alpha..sub.2, given by .alpha..sub.2 =a.sub.2 +b.sub.2 t; each being selected such that the ratio a.sub.1 /b.sub.1 approximately equals the ratio a.sub.2 /b.sub.2 ; "t" being temperature in the region of interest in .degree.C.; wherein said polyacetylene is obtained by solid state polymerization of crystals of 2,4-hexadiyn-1,6-diol-bisphenylurethane, and said solid matrix material is polyvinylidene fluoride polymer having its positive thermal expansion coefficient given by the expression .alpha..sub.2 =1.01.times.10.sup.-4 .degree. C..sup.-1 +8.0.times.10.sup.-7 .degree. C..sup.-2 t, where "t" is temperature in .degree.C.
- 2. A composite having a near-zero uniaxial thermal expansion coefficient comprising at least one highly chain-aligned polyacetylene, possessing a negative uniaxial thermal expansion coefficient, being uniaxially or biaxially oriented within a solid matrix material, possessing a positive thermal expansion coefficient, said chain-aligned polyacetylene having its negative uniaxial thermal expansion coefficient, .alpha..sub.1, given by .alpha..sub.1 =a.sub.1 +b.sub.1 t and said matrix material having its positive thermal expansion coefficient, .alpha..sub.2, given by .alpha..sub.2 =a.sub.2 +b.sub.2 t; each being selected such that the ratio a.sub.1 /b.sub.1 approximately equals the ratio a.sub.2 /b.sub.2 ; "t" being temperature in the region of interest in .degree.C.; wherein said polyacetylene is the solid state polymerization product of crystals of 2,4-hexadiyn-1,6-diol-bisphenylurethane and said solid matrix material is polyvinylidene fluoride polymer having its positive thermal expansion coefficient given by the expression .alpha..sub.2 =1.01.times.10.sup.-4 .degree. C..sup.-1 +8.0.times.10.sup.-7 .degree. C..sup.-2 t, where "t" is temperature in .degree.C.
CROSS REFERENCES
This application is a continuation-in-part of copending U.S. Application Ser. No. 704,856, now abandoned, filed July 13, 1976, which is a divisional application of U.S. Application Ser. No. 537,488, filed Dec. 30, 1974, now U.S. Pat. No. 3,994,867, issued Nov. 30, 1976.
US Referenced Citations (7)
Foreign Referenced Citations (2)
Number |
Date |
Country |
1940691 |
Feb 1971 |
DEX |
971170 |
Mar 1961 |
GBX |
Non-Patent Literature Citations (7)
Entry |
Journal of Polymer Science-12, 2467-2475 (1975). |
Z. Naturforsch, b 24 (1969) 824, G. Wegner. |
Whisker Technology-306-342 (1971)-A. Levitt. |
Agnew Chem., 83, Nr. 7, 253 (1971)-Hadicke et al. |
J. of Research Nat'l. Bur. Standards, 53, No. 4, 245 (1954). |
Polymer, 14 (8), 433-439 (1973), Kiji et al. |
Die Makromole Kulare Chemie, 154 (1972), 35-48, CA 83, 60939m (1975). |
Divisions (1)
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Number |
Date |
Country |
Parent |
537488 |
Dec 1974 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
704856 |
Jul 1976 |
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