![]() Solution for impregnating cellulose material
专利摘要:
1510218 Flame retardant impregnated sheet structure DYNAMIT NOBEL AG 23 May 1975 [4 June 1974] 22739/75 Heading DIP [Also in Divisions B5 and C3] A process for the production of a fireretardant impregnated sheet structure for use in the production of a laminated structure comprises impregnating a woven or non- woven fibrous sheet structure with a phenolresol resin-containing impregnating solution and drying the impregnated sheet to further condense the resin, the resin being an ammonically condensed resin having a solids content of from 50 to 80% by weight and the following molecular weight distribution as determined by gel chromatography (expressed in % per unit area): dimers 20 to 26%, trimers and tetramers 6 to 12%, pentamers and higher oligomers 22 to 36%; the impregnating solution additionally containing hexamethylene tetramine in a quantity of from 1 to 15% by weight thereof, a plasticiser and a flame proofing agent. The sheet may be paper, a woven or non-woven synthetic fibre fabric or may be formed of glass fibres. Specified plasticisers are tributyl phosphate, tri-(2-ethyl-hexyl) phosphate, triphenyl phosphate, tricresyl phosphate and diphenyl cresyl phosphate; the exemplified flame-proofing agent being pentabromodiphenyl ether. 公开号:SU961563A3 申请号:SU752138773 申请日:1975-05-28 公开日:1982-09-23 发明作者:Франц Арнольд;Кепник Зигфрид 申请人:Динамит Нобель Аг (Фирма); IPC主号:
专利说明:
(54) PULSANT STEELING SOLUTION The invention relates to the production of non-combustible press materials, in particular, to a solution for impregnating cellulosic material - a raw material for the production of a press material. A known solution for impregnating cellulosic material containing a phenolresol resin obtained in the presence of ammonia, a plasticizer and a solvent Li 3. The disadvantage of this solution is that the fire resistance of the press material corresponds only to the burning class HB. The closest to the invention in its technical essence and the effect achieved is a solution for impregnating cellulosic material containing a phenolresol resin with a solids content of 50-80% by weight, obtained in the presence of ammonia, a plasticizer, a flame retardant and a solvent t2. MATERIAL The disadvantage of the known solution lies in its insufficient fire resistance. The aim of the invention is to achieve high fire resistance of the press. material. This goal is achieved in that the solution for impregnating cellulosic material containing a phenolresol resin with a solids content of 50-80, obtained in the presence of ammonia, a plasticizer and a solvent, contains a phenolresol resin containing 20-26 dimers, 6-12% as a phenolresol resin tries of tetramers, 24 g3% of penta-and oligomers and 26-48 highly condensed components, water or water-methanol mixture as a solvent and additionally hexamethylenetetramine in the following ratio of components, weight. Phenolresol resin Plasticizer 396 Hexamethylenetetramine 1-15 Water or water-methanol mixture Remaining As a plasticizer, the solution contains ester of phosphoric, phthalic, sebacic or adipic acid. Said phenolresol resin is obtained by condensation of phenol with formaldehyde in a molar ratio of 1: (0.91, 1) at 80-95 ° C in the presence of 2-3% ammonia (before phenol content), followed by vacuum distillation at a pressure of 50 -60 mm Hg to achieve a viscosity of condensate of 500-5000 cP. . A sample with dimensions of 12.7 x 102 mm, whose longitudinal axis is located L in the vertical direction, is clamped so that the front edge is 9.5 mm above the end of the Bunsen burner with a diameter of 9.5 mm. The burner is mounted so that the blue flame has a height of 19 mm and is centrically held under the lower end of the sample for 10 s. The flame is removed and the burnout period is determined. After complete cooling of the sample, the sample is again ignited with a Bunsen burner under the same conditions. The burnout period is then determined again. The burning class is determined by the burnout duration. The highest requirements are for classes V-0 and V-1. In this case, the duration of burnout to 10 s corresponds to class V-0, and the duration of burning out 11-30 s - to class V-1. Example 1. Sulfate kraft paper with a width of 2700 mm and surface paper with a width of / uu mm and miv rliis with a weight of 180 m / g is passed through an impregnating bath containing 54 weight of phenolresol resin obtained in the presence of ammonia with a solids content of 75 containing 25% dimers, 10% of tri- and tetramers, 30% of penta-and oligomers and 35% of highly condensed components, 23 weight of plasticizer - tricresyl phosphate, 7 weight% of hexamethylene tetramine and 16 weight%, of water. The dive time is 30 seconds. Then, the impregnated strip of paper is successively passed between two steel rollers and through a drying channel, in which the drying is carried out for about 5 minutes, the material is cut into pieces with a length of 2800 mm and a width of 1300 mm. Eight such paper sheets are folded and heated to 1b5 ° C under a pressure of 100 kgf / cm for 60 minutes. Example 2 Example 1 is repeated with the difference that an impregnation bath containing 50 wt.% Phenolresol resin obtained in the presence of ammonia with a solids content of 80%, containing 20% of diameters, 6% of tri- and tetramers, 2b is used. penta- and oligomers and kB%, highly condensed components, 35 wtL of plasticizer-dioctyl phthalate, io wt.% hexamethylenetetramine and 5 wt.% of water. Example 3. Example 1 is repeated, with the difference that an impregnation bath containing 80 wt. phenolresol obtained in the presence of ammonia with a solids content of 50, containing 2b% of diamers, 12 tri-4i tetramers, 36% of rent- and oligomers and 2b% of highly concentrated components, 15 wt. plasticizer - dihexyl adipate, weight,% hexamethylenetetramine and k.% water. An example. Example 1 is repeated with the difference that an impregnation bath containing 50 wt. the phenolresol resin obtained in the presence of ammonia with a solids content of 70%, containing 25 diamers, 101 tri- and tetramers, 2k% penta- and oligomers and U highly condensed components, 25 wt. of plasticizer - dibutyl sebacate, 15 wt. hexamethylenetetramine, wt% methanol and 8 wt. water, Example 5, Example 1 is repeated, with the difference that an impregnation bath containing 50% by weight of phenolresol resin according to Example 1, 20% by weight of plasticizer — dinonyl sebacate, 10% by weight of hexamethylenetetramine in 17 is used. wt.% water and 3 wt.% methanol. Comparative example I (the proposed solution without hexamethylenetetramine). Example 1 is repeated, with the difference that the impregnation bath used does not contain hexamethylenetetramine. In this case, instead of 7% by weight of hexamethylenetetramine and 16% by weight of water, the bath contains 23% by weight of water. Comparative example II (the proposed solution with another hardener). . Example 1 is repeated, with the difference that the impregnation bath used instead of 7% by weight of hexamethylenetetramine contains 7% of benzyldimethylamine. Comparative example 111 (solution of a different composition with hexamethylenetetramine and tricresyl phosphate). Example 1 is repeated, with the difference that the impregnation bath used contains 5 weights of a phenolresol resin obtained in the presence of ammonia, containing 18.5 dimers, 2k% tries of tetramers, 50% penta-and oligomers and 7.5% of highly condensed components. The fire resistance of press materials containing a solution for impregnating cellulosic material is presented in the table.
权利要求:
Claims (1) [1] Claim A solution for the impregnation of cellulosic material containing phenolresol 40 resin with a solids content of 50-80%, obtained in the presence of ammonia, a plasticizer solvent, characterized in that, in order to achieve a high pressure resistance of 45 press material, it is used as a phenolresol resin contains phenolresol resin containing 2026% of dimers, 6-12% of tri- and tetramers 24 ~ 3b% of penta- and oligomers and 26-48% of highly condensed components, water or water-methanol mixture as a solvent and additional 50-80 15-35 1-15 hexamethylenetetramine with barely. the corresponding ratio of components, wt.%: Phenolresol resin Plasticizer G Ecamethylenetetramine Water or water-methanol mixture
类似技术:
公开号 | 公开日 | 专利标题 SU961563A3|1982-09-23|Solution for impregnating cellulose material US2801198A|1957-07-30|Decorative core stock laminating varnishes and phenolic resin core and decorative laminates produced therefrom US2629674A|1953-02-24|Method for treating cellulose and product thereof US4291101A|1981-09-22|Wood fibrous material and a method for improving the qualities thereof EP0094165B1|1988-07-06|Resin inpregnated filter papers US3383267A|1968-05-14|Method for the manufacture of products of resin impregnated, fibrous material US2629701A|1953-02-24|Compositions containing esters of a glycol and polycarboxylic acids and the treatment of cellulose therewith US3157613A|1964-11-17|Flame resistant composition containing an organic polymer and a halogenated diphosphate EP1697589A1|2006-09-06|Process for the flame-retardant of fiber products EP0077067B1|1986-07-16|Aqueous melamine formaldehyde resin solutions and a method for their preparation US3406038A|1968-10-15|Treatment of wood with a polyhydric alcohol and an alkylene oxide CA1220593A|1987-04-14|Warp resistant laminates having a core impregnatedwith a mixture of phenolic resin and alkylsubstituted phenol US4240948A|1980-12-23|Accelerated resole binder US2482525A|1949-09-20|Odorless phenol-formaldehyde resinous products US2151975A|1939-03-28|Varnish US3637429A|1972-01-25|Impregnated cellulosic sheet members wherein impregnant is a c{11 {14 c{11 {11 carbocyclic substituted resole US4397882A|1983-08-09|Process for the production of hard paper US4157937A|1979-06-12|Resole resin and polyvinyl acetate impregnated filter paper US4440833A|1984-04-03|Copper-laminated hard paper made of a fire resistant laminate US3537952A|1970-11-03|Plasticized phenolic resin impregnation system US3804693A|1974-04-16|Paper base laminates and method for the manufacture thereof SU834775A1|1981-05-30|Composition for electroinsulation plastics SU603345A3|1978-04-15|Incombustible moulding material US4056656A|1977-11-01|Flame-resistant laminates US2346934A|1944-04-18|Impregnated fibrous material
同族专利:
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引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US2193941A|1936-04-27|1940-03-19|Bakelite Corp|Bonded article| US2801672A|1954-07-15|1957-08-06|Westinghouse Electric Corp|Resinous compositions and fire-resistant laminates prepared therefrom| US2817386A|1955-11-22|1957-12-24|Monsanto Chemicals|Plasticized nuclear alkylphenol-formaldehyde resins and paper laminates prepared therefrom| US2941918A|1957-06-12|1960-06-21|Curtiss Wright Corp|Novel polymeric products and process| US2937159A|1957-12-23|1960-05-17|Monsanto Canada Ltd|Stabilized phenol-formaldehyde resins| US2956037A|1959-12-14|1960-10-11|Vimasco Corp|Fire-retardant coating composition| US3133034A|1960-12-16|1964-05-12|Koppers Co Inc|Resorcinol-formaldehyde resins and adhesives made therefrom| US3377317A|1964-08-05|1968-04-09|Lowell E. Hoxie|Flame resistant compositions and methods of making same, said compositions comprising the reaction product of a phenol-aldehyde resol and a phosphoric acid ester| NL146852B|1966-11-05|1975-08-15|Philips Nv|PROCESS FOR THE PREPARATION OF A WATER CONTAINING EMULSION OF A PHENOLFORMALDEHYDER RESOL RESIN SUITABLE FOR IMPREGNATION OF FIBER MATERIAL.| US3715310A|1968-07-17|1973-02-06|Bakelite Xylonite Ltd|Fire-retardant compositions| DE2142890B2|1971-08-27|1973-09-27|Dynamit Nobel Ag, 5210 Troisdorf|Process for the production of reinforced laminate and application of the laminates produced according to the process|DE2729527A1|1977-06-30|1979-01-11|Hoechst Ag|PROCESS FOR MANUFACTURING SELF-EXTINGUISHING LAYER COMPRESSES| JPS5477683A|1977-11-04|1979-06-21|Kiyoharu Imanaka|Recorder for rubber vulcanization test| US4360560A|1979-03-08|1982-11-23|Dynamit Nobel Aktiengesellschaft|Base material for the production of printed circuits and process for the preparation of the base material| US4379553A|1979-07-20|1983-04-12|General Electric Company|Bowling lane with fire retardant decorative surface| DE3022431C2|1980-06-14|1984-03-08|Dynamit Nobel Ag, 5210 Troisdorf|Process for the production of hard paper| DE3143121C1|1981-10-30|1983-02-24|Dynamit Nobel Ag, 5210 Troisdorf|Copper-clad hard paper made from a flame-retardant laminate| JPS633852Y2|1982-12-27|1988-01-30| CA1288637C|1986-04-04|1991-09-10|John S. Luckanuck|Fire resistant steel door| US5401793A|1991-03-20|1995-03-28|Dainippon Ink And Chemicals, Inc.|Intumescent fire-resistant coating, fire-resistant material, and process for producing the fire-resistant material| JP5464863B2|2009-01-19|2014-04-09|旭有機材工業株式会社|Foamable resol-type phenol resin molding material, method for producing the same, and phenol resin foam| CN105773763B|2016-03-15|2017-12-19|东北林业大学|The preparation method of wet-heat resisting low cost insulation phenolic sheet|
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申请号 | 申请日 | 专利标题 DE2426862A|DE2426862C3|1974-06-04|1974-06-04|Process for the production of flame-retardant laminates| 相关专利
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