Process for preparing silicon carbide whiskers |
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Polycrystalline transparent spinel sintered body and method of producing the same |
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Dielectric ceramic composition |
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Polymeric boron nitrogen dopant |
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Carbon resistor and method for producing same |
| OF THE INVENTION The ceramic resistor of the instant invention, and the method for the production ... |
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Method of making silicon nitride base cutting tools -II |
| OF THE INVENTION An illustrative method mode for carrying out the inventive method of making ... |
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Aerator |
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Low thermal expansion modified cordierites |
| OF THE INVENTION Referring now to FIG. 1, there is seen a flow sheet showing the process for ... |
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Method of manufacturing low thermal expansion modified cordierite ceramics |
| Briefly, the present invention is directed to define a method of fabricating a germanium-cordierite ... |
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Continuous dyeing of polyester fibers and cellulose fibers
| Details |
Inventors: Freyberg, Peter; Horn, Dieter; Oppenlaender, Knut; Wolf, Hans; Distler, Dieter;
Assignee: BASF Aktiengesellschaft (Ludwigshafen, DT)
Primary Examiner: Clingman; A. Lionel
Assistant Examiner:
Attorney, Agent or Firm: Keil, Thompson & Shurtleff
Polyester fibers and cellulose fibers, and blends of these fibers, are dyed continuously with disperse dyes, or dispersed dyes, by continuous application of an aqueous dye liquor which contains, as the essential dyeing assistant, a polyoxyalkylated amine, a polyoxyalkylated amine-oxide and/or a quaternized polyoxyalkylated amine which in 1% strength aqueous solution has a cloud point of not less than 18.degree. C and which is derived from amines which contain at least 2 nitrogen atoms and at least one group which can be oxyalkylated, followed by drying and fixing. |
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DETAILED DESCRIPTION We claim: 1. A process for the continuous dyeing of polyester fibers, cellulose fibers or blends of these fibers, which process comprises: continuously applying to said fibers an aqueous dye liquor which contains I. a disperse dye for polyester fibers, and for cellulose fibers a dye selected from the group consisting of vat dyes, naphthol dyes, sulfur dyes and direct dyes, and Ii. from 0. 5 to 70 g/l of said aqueous dye liquor of an antimigration agent selected from the group consisting of polyoxyalkylated amines, amine oxides of polyoxyalkylated amines and quaternized polyoxyalkylated amines which in 1% strength aqueous solution have a cloud point of at least 18. degree. C and which are each derived from amines which contain at least 2 nitrogen atoms and at least one group which can be oxyalkylated and in which the polyoxyalkylene chain contains a. ethylene oxide units and b. a second component selected from the group consisting of propylene oxide, butylene oxide, cyclohexene oxide and styrene oxide units in the molar ratio a:b of from 10:1 to 0. 1:1, said continuous application being carried out at a temperature below that at which the dye or dyes flocculate from the liquor; drying the fibers while heating at an elevated temperature sufficient to flocculate the dye or dyes from the liquor; and fixing the dye or dyes to said fibers. 2. A process as claimed in claim 1, in which from 2 to 50 g/l of aqueous dye liquor of the antimigration agent are employed. 3. A process as claimed in claim 1, in which the polyoxyalkylated amine, amine oxide or quaternized amine is derived from 1,6-hexamethylenediamine, ethylenediamine, triethylenetetramine, orthophenylenediamine or polyethyleneimine. 4. A process as claimed in claim 3, in which the antimigration agent employed is a polyethyleneimine which is first oxyalkylated with ethylene oxide and then with propylene oxide, and is finally quaternized. 5. A process as claimed in claim 1, in which the pH of the dye liquor is from 3 to 6
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