Claims
- 1. A process for the production of a high-heat-resistant, crystalline block copolymer comprising (A) at least one poly(arylene thioetherketoneketone) block and (B) at least one poly(arylene thioether) block, which comprises at least the following two steps:
- i) heating in the presence of water an organic amide solvent containing a dihalogenated aromatic compound, which consists principally of a dihalobenzene, and an alkali metal sulfide, whereby a reaction mixture containing a poly(arylene thioether) prepolymer having at least 50 wt. % recurring units of the formula ##STR26## and reactive terminal groups is formed, and ii) mixing the reaction mixture, which has been obtained in the step i), with a dihalogenated aromatic compound consisting principally of a bis(halobenzoyl)benzene and, if necessary, an alkali metal sulfide, an organic amide solvent or water and heating the resultant mixture to form a poly(arylene thioetherketoneketone) block having at least 50 wt. % recurring units of the formula ##STR27## thereby obtaining the block copolymer, said first and second steps i) and ii) being conducted under the following conditions (a)-(f):
- (a) in the first step i), the ratio of the water content to the amount of the charged organic amide solvent being 0.1-15 (mol/kg), the ratio of the amount of the charged dihalogenated aromatic compound to the amount of the charged alkali metal sulfide being 0.7-1.05 (mol/mol), and the polymerization being conducted until the weight average molecular weight of the poly(arylene thioether) prepolymer becomes at least 1,000,
- (b) in the second step, the ratio of the water content to the amount of the charged organic amide solvent being controlled within a range of 0.1-15 (mol/kg),
- (c) in the second step, the ratio of the total amount of the charged dihalogenated aromatic compound, said total amount being the amount of the whole dihalogenated aromatic compounds including the dihalobenzene and the bis(halobenzoyl)benzene, to the total amount of the charged alkali metal sulfide, said latter total amount being the total amount of the alkali metal sulfide charged in the first step i) and that charged in the second step ii) as needed, being controlled within a range of 0.95-1.2 (mol/mol),
- (d) the ratio of the charged amount of the dihalogenated aromatic compound consisting principally of the dihalobenzene to the charged amount of the dihalogenated aromatic compound consisting principally of the bis(halobenzoyl)benzene being controlled within a range of 0.25-26 (mol/mol),
- (e) the reaction of the second step ii) being conducted within a temperature range of 150.degree.-300.degree. C. with the proviso that the reaction time at 210.degree. C. and higher is not longer than 10 hours, and
- (f) in the second step ii), the reaction is conducted until the melt viscosity of the resulting block copolymer becomes 2-100,000 poises as measured at 380.degree. C. and a shear rate of 1,200/sec.
- 2. The process as claimed in claim 1, wherein the poly(arylene thioetherketoneketone) block (A) has at least 50 wt. % recurring units of the formula ##STR28## and the poly(arylene thioether) block (B) has at least 50 wt. % recurring units of the formula ##STR29##
- 3. The process as claimed in claim 1, wherein the poly(arylene thioetherketoneketone) block (A) has at least 50 wt. % recurring units of the formula ##STR30## and the poly(arylene thioether) block (B) has at least 50 wt. % recurring units of ##STR31##
- 4. The process as claimed in claim 1, wherein a reactor at least a portion of which, said portion being brought into contact with the reaction mixtures, is made of a corrosion-resistant material is used.
- 5. The process as claimed in claim 4, wherein the corrosion-resistant material is a titanium material.
- 6. The process as claimed in claim 1, wherein the organic amide solvent is at least one pyrrolidone selected from N-methylpyrrolidone and N-ethylpyrrolidone.
- 7. The process as claimed in claim 1, wherein upon obtaining the block copolymer, at least 50 wt. % of the resulting block copolymer is in the form of granules recoverable on a sieve having an opening size of 75 .mu.m.
Priority Claims (2)
Number |
Date |
Country |
Kind |
1-342968 |
Dec 1989 |
JPX |
|
2-320810 |
Nov 1990 |
JPX |
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Parent Case Info
This application is a division of application Ser. No. 07/633,892 filed Dec. 26, 1990, now U.S. Pat. No. 5,248,743.
US Referenced Citations (4)
Foreign Referenced Citations (8)
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Jun 1986 |
EPX |
210377 |
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369620 |
May 1990 |
EPX |
3405523A1 |
Feb 1984 |
DEX |
52-12240 |
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JPX |
Divisions (1)
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Number |
Date |
Country |
Parent |
633892 |
Dec 1990 |
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