Claims
- 1. A process for producing carbon fibers comprising the steps of:
- (a) preparing, by melt-spinning, polybutadiene fibers consisting essentially of polybutadiene which contains at least 85% of vinyl structure and has a melting point of 140 through 195.degree. C and a reduced viscosity of 0.3 to 1.2 dl/g;
- (b) drawing said melt-spun fibers at a draw ratio of about 1.3 to about 6.0;
- (c) heat setting said drawn fibers at a temperature 20.degree. C less than the melting point of the polybutadiene and not less than 70.degree. C;
- (d) treating said polybutadiene fibers with a solution or suspension of a Lewis acid in an amount of 1 to 100 g per 1000 ml of inert organic liquid at a temperature of 0 through 100.degree. C to such an extent that the treated polybutadiene fibers become insoluble in an eutectic mixture of 1 part by weight of diphenyl and 3 parts by weight of diphenylether at a temperature of 120 to 130.degree. C, but still maintain their tensile strength at a level of at least 30% based on the tensile strength of the original polybutadiene fibers to cyclize and cross-link said polybutadiene, said Lewis acid being selected from the group consisting of fluorides, chlorides and bromides of boron, aluminum, titanium, tin, antimony, iron, berylium, magnesium, zinc and cadmium, compounds of the formula (II):
- r.sub.n AlY.sub.3-n (II)
- wherein R represents an alkyl radical of 1 to 3 carbon atoms, Y represents a chlorine or bromine atom and n is an integer of 1 or 2, and mixtures of two or more of the above mentioned compounds;
- (e) treating said polybutadiene fibers treated in step (d) with a sulphur melt at a temperature of 170 to 300.degree. C under a tensile stress of 4 to 40 kg/cm.sup.2 to such an extent that said treated polybutadiene fibers in this step are rendered to have a ratio (H/C) of the number of hydrogen atoms to carbon atoms in a range of 0.2 to 1.0 to dehydrogenate and aromatize said polybutadiene treated in step (d), and then,
- (f) carbonizing said fibers treated in step (e) by heating them to a temperature of 750.degree. to 3000.degree. C, whereby said fibers are converted into carbon fibers.
- 2. A process for producing carbon fibers comprising the steps of:
- (a) preparing, by melt-spinning, polybutadine fibers consisting essentially of polybutadiene which contains at least 85% of vinyl structure and has a melting point of 140 through 195.degree. C and a reduced viscosity of 0.3 to 1.2 dl/g and 0.03 to 3% by weight based on the weight of said polybutadiene of at least one acrylic compound of the formula: ##STR2## wherein X represents a member selected from the group consisting of --OCH.sub.2 NH--; --NH-- and --O--; R, and R.sub.2 each represent an alkyl radical having 1 to 4 carbon atoms, and R.sub.3 is a member selected from the group consisting of hydrogen and methyl;
- (b) drawing said melt-spun fibers at a draw ratio of about 1.3 to about 6.0;
- (c) heat setting said drawn fibers at a temperature 20.degree. C less than the melting point of the polybutadiene and not less than 70.degree. C;
- (d) treating said polybutadiene fibers with a solution or suspension of a Lewis acid in an amount of 1 to 100 g per 1000 ml of inert organic liquid at a temperature of 0 through 100.degree. C to such an extent that the treated polybutadiene fibers become insoluble in an eutectic mixture of 1 part by weight of diphenyl and 3 parts by weight of diphenylether at a temperature of 120 to 130.degree. C, but still maintain their tensile strength at a level of at least 30% based on the tensile strength of the original polybutadiene fibers to cyclize and cross-link said polybutadiene, said Lewis acid being selected from the group consisting of fluorides, chlorides and bromides of boron, aluminum, titanium, tin, antimony, iron, berylium, magnesium, zinc and cadmium, compounds of the formula (II):
- r.sub.n AlY.sub.3-n (II)
- wherein R represents an alkyl radical of 1 to 3 carbon atoms, Y represents a chlorine or bromine atom and n is an integer of 1 to 2, and mixtures of two or more of the above mentioned compounds;
- (e) treating said polybutadiene fibers treated in step (d) with a sulphur melt at a temperature of 170 to 300.degree. C under a tensile stress of 4 to 40 kg/cm.sup.2 to such an extent that said treated polybutadiene fibers in this step are rendered to have a ratio (H/C) of the number of hydrogen atoms to carbon atoms in a range of 0.2 to 1.0 to dehydrogenate and aromatize said polybutadiene treated in step (d), and then,
- (f) carbonizing said fibers treated in step (e) by heating them to a temperature of 750.degree. C to 3000.degree. C under a tensile stress of 4 to 40 kg/cm.sup.2, whereby said fibers are converted into carbon fibers.
- 3. A process as claimed in claim 1, wherein said Lewis acid is selected from the group consisting of boron trifluoride, boron tribromide, aluminium chloride, aluminium bromide, titanium tetrachloride, tin tetrachloride, antimony pentachloride, iron trichloride, berylium bromide, magnesium chloride, zinc chloride, cadmium chloride, cadmium bromide, diethyl-aluminium monocloride and monoethyl aluminium dichloride.
- 4. A process as claimed in claim 1, wherein said inert organic liquid for dissolving or suspending said Lewis acid is selected from the group consisting of saturated aliphatic hydrocarbons, alicyclic hydrocarbons, halogenated hydrocarbons, aromatic hydrocarbons, nitrohydrocarbons or mixtures of two or more of the above-mentioned compounds.
- 5. A process as claimed in claim 1, wherein said Lewis acid is aluminium bromide and said inert organic liquid is benzene.
- 6. A process as claimed in claim 1, wherein said treatment in step b) is carried out at a temperature less than the melting point of said polybutadiene fibers.
- 7. A process as claimed in claim 6, wherein said treating temperature in step b) is 10 to 60.degree. C.
- 8. A process as claimed in claim 1, wherein said treatment in step b) is carried out with a tensile stress of at most 190 kg/cm.sup.2 on said polybutadiene fibers.
- 9. A process as claimed in claim 1, wherein said sulphur in step c) is in the form of a melt.
Priority Claims (1)
Number |
Date |
Country |
Kind |
49-34619 |
Mar 1974 |
JP |
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Parent Case Info
This is a continuation of application Ser. No. 465,131 filed Apr. 29, 1974 now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3720759 |
Overhoff |
Mar 1973 |
|
3928544 |
Yokota et al. |
Dec 1975 |
|
3937775 |
Horikiri et al. |
Feb 1976 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
48-94697 |
Dec 1973 |
JP |
Continuations (1)
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Number |
Date |
Country |
Parent |
465131 |
Apr 1974 |
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