![]() Method of manufacturing reinforced tubular article
专利摘要:
A reinforced tubular article such as a hose is manufactured by at least partially vulcanizing a rubber composition to form an inner tube and forming on the outer surface of said inner tube an assembly of reinforcing members which are united with the inner tube by a solidifiable liquid polymer material which when solidified bonds to both the reinforcing members and the outer surface of the tube. 公开号:SU1369681A3 申请号:SU782675104 申请日:1978-09-20 公开日:1988-01-23 发明作者:Биггс Ян;Стансфилд Гой Рональд;Эд Вайтхэд Кеннет 申请人:Данлоп Лимитед (Фирма); IPC主号:
专利说明:
with Od but 00 sn The invention relates to methods for manufacturing reinforced articles, in particular hoses. The aim of the invention is to improve the quality of the tubular product by simplifying its manufacturing technology. FIG. 1 shows equipment for performing one embodiment of a method; in fig. 2 -. The details of the equipment of FIG. one; in fig. 3 — equipment for performing another embodiment of the method The inner tube, a ruby 1 of styrene butadiene rubber for a lining layer of a hose with an inner diameter of 10 mm is extruded from extruder 2. The wall thickness of the pipe is 2 mm. When leaving the extruder 2, the outer surface of the inner tube 1 is processed before vulcanization in the device 3 with a chlorinating agent — an acetone or ethyl acetate solution containing 1% trichloroisocyanuric acid (in Fisons Chlorine 91), which has the formula About C1 / C1 N --- N ABOUT / ABOUT C1 Then the pipe 1 with the treated surface passes through the vulcanizer 4 with a fluidized bed for vulcanization. In order to achieve a uniform vulcanization of the pipe material around its periphery, infrared heaters (not shown) are provided above the surface of the fluidized bed to ensure full vulcanization of part of the pipe 1 Bbmie and / or near the surface of the fluidized bed. Processing the pipe 1 before vulcanization inhibits the stickiness of the surface of the pipe 1, so that when passing through the fluidized bed almost none of the fluidized particles adheres to the surface of the pipe 1, so without any cleaning of the outer surface of the pipe 1 is fed into the device 5 (Fig. 2) for applying reinforcement. The device 5 consists of the mouthpiece 6, where with the help of the pump 7 a thin coating of liquid polymer is applied around the cooled pipe 1 five 0 material) plastisol, which is a vinyl chloride polymer or polyurethane), and two drums 8, rotating in opposite directions and winding spirally around pipe 1 treated with plastisol, a pair of reinforcing elements 9 made of nylon cord. The mouthpiece 6 is cooled with water, not allowing the plastisol to heat up during the passage of the pipe 1 and this ensures its uniform viscosity. The output of the device 5 is equipped with a smoothing mouthpiece 10, which slightly compresses the cord and plastisol so that the plastisol penetrates into the gaps between the cords and, moreover, the mouthpiece 10 makes the surface of the pipe coming out of the device 5 smooth. The pipe 1 passes around the dump drum 11, and then through the heating chamber 12, where the heat supplied to the chamber 12 and the heat of the evay-cured pipe 1 cause plastisol to solidify. The described process of vulcanization of pipe 1 occurs in the fluidized bed, which supports pipe 1 as if floating, which contributes to the preservation of Kpyrjjoro; a cross section, which can also be provided by creating a small pressure inside the pipe 1 of air supplied from extruder 2 (not shown). However, vulcanization can be carried out by other known means, for example, by microwave heating or by using hot air chambers. The tubular product (hose) thus obtained passes through the extruder 13, which imposes a layer of polyvinyl chloride 14 on the hose approximately 2 mm thick, then the hose passes through the cooling bath 15 before winding onto the drum 16. Reinforcing elements before laying on the inner pipe 1 can be immersed in a hardening liquid polymer material - plastisol. In the above process, prior to vulcanization, the treatment of the inner tube 1 of the tubular product with a chlorinating agent is used to ensure good bonding with the plastisol. The treatment also serves to counteract the adherence of the particles of the fluidized bed to the outer surface of the inner tube 1. 0 five 0 five 0 five 3 The tubular product (the hose according to the first embodiment is manufactured with horizontal movement of the inner pipe 1, but if space allows, then vertical movement can be used, preferably upwards. During vertical operation, liquids applied to pipe 1, i.e. a chlorinating agent or plastisol, do not flow around pipe 1, which ensures uniform coating thickness. In the second embodiment, the uncured tube 1 is formed by an extruder 17, its outer surface is treated with a chlorinating agent in the application device 18 and vulcanized in a vulcanizer with Pseudo-liquefied layer 19 in the same way as in the first embodiment. However, before plastisol is applied to the outer surface of the inner pipe 1, this surface is cooled. This is achieved by passing the inner tube 1 through the chamber 20, where it is sprayed with liquid nitrogen. The surface of the inner tube 1 thus cooled is then coated with plastisol in the application device 21, located next to the chamber 20. The plastisol-treated pipe 1 then passes through a winding device 22, which spirally winds two layers of cord reinforcement elements in opposite directions on the tube 1 and, after passing through the infrared heater 23, the hose gets covered, cooled And it is wound in the same way as in the first about before applying the reinforcing elements of the method. This method of cooling the surface of the inner pipe 1 with liquid nitrogen temporarily causes a very steep temperature gradient in the wall of pipe 1 and this inhibits the initial solidification of the plastisol prior to the introduction and embedding of reinforcing elements. However, after the spiral winding of the reinforcing elements, the heat contained in the pipe 1 flows to its outer surface and plastisol promotes solidification, and the infrared heater 23 serves to supply the heat necessary for complete solidification. The extruder 24 applies a coating layer of polymer material, then the finished hose is cooled 45 50 55 Combi and / or reinforcing elements are immersed in a hardening liquid polymer material before being applied to the inner tube. 2. A method according to claim 1, wherein the hardened liquid polymer material is formed around the inner tube until it is completely cooled to ambient temperature after partial vulcanization. 3. Method according to paragraphs. 1 and 2, characterized in that the outer surface of the inner pipe is cooled before the application of the hardening liquid polymer material. ten 69681 is provided in chamber 25 and wound by aggregate 26. All operations are performed sequentially, continuously one after the other, but there may be cases of stepwise operation consisting of two or more stages separated by a considerable time interval. Invention Formula 0 1. A method of manufacturing a reinforced tubular article, comprising 5 forming an inner tube, in: at least partially vulcanized rubber without a rigid inner mandrel, applying reinforcing elements on its outer surface, which are connected to the inner tube with a hardening liquid polymer material, and forming a covering layer of polymer material, characterized in that , 5 in order to increase the quality of the tubular product, to simplify its manufacturing technology, before partial vulcanization, chlorinating is applied to the outer surface of the inner pipe 0 agent, and the inner tube is subjected to internal pressure during the application of reinforcing elements and during partial vulcanization, while partial vulcanization is carried out in a fluidized-bed vulcanizer, and hardening flexible polymeric material is formed from vinyl chloride polymer or polyurethane, which is applied inner tube five before applying reinforcing elements Combi and / or reinforcing elements are immersed in a hardening liquid polyester material before being applied to the inner tube. 2. The method according to claim 1, wherein the hardening liquid polymer material is formed around the inner tube until it is completely cooled to ambient temperature after partial vulcanization. 3. Method according to paragraphs. 1 and 2, characterized in that the outer surface of the inner tube is cooled before applying a hardening liquid polymer material. g i j Jk 3cb {i f2 1 14 JS Itf /; 20 21 .22
权利要求:
Claims (3) [1] Claim 1. A method of manufacturing a reinforced tubular product, comprising the formation of an inner tube, according to: l of at least partially vulcanized rubber without a rigid inner mandrel, applying reinforcing elements to its outer surface that are connected to the inner tube with a hardening liquid polymer material, and forming a coating layer of polymer material, characterized in that, in order to improve the quality of the tubular product by simplifying the technology of its manufacture, before partial vulcanization on the outer surface of the inner tube is coated with a chlorinating agent, and the inner tube is subjected to internal pressure during the application of the reinforcing elements and during partial vulcanization, while partial vulcanization is carried out in a fluidized bed vulcanizer, and the hardening liquid polymer material is formed from a vinyl chloride polymer or polyurethane, which is applied on the inner tube and wound in the same way as in the first embodiment of the method. The indicated method of cooling the surface of the inner pipe 1 with liquid nitrogen temporarily causes a very sharp temperature gradient in the wall of the pipe 1 and this inhibits the initial hardening of the plastisol before the introduction and termination of the reinforcing elements. However, after spiral winding of the reinforcing elements, the heat contained in the pipe 1 flows to its outer surface and contributes to the hardening of the plastisol, and the infrared heater 23 serves to supply the heat necessary for complete solidification. The extruder 24 applies a coating layer of polymer material, then the finished hose is cooled before applying the reinforcing elements, and / or the reinforcing elements are immersed in the hardened liquid polymer material before being applied to the inner tube. [2] 2. The method according to p. ^ Characterized in that the hardened liquid polymer material is formed around the inner pipe until it is completely cooled to ambient temperature after partial vulcanization. [3] 3. The method according to PP. 1 and 2, characterized in that the outer surface of the inner pipe is cooled before applying the hardening liquid polymer material. Fig.Z
类似技术:
公开号 | 公开日 | 专利标题 US4104098A|1978-08-01|Method and apparatus for curing and reinforcing hose SU1369681A3|1988-01-23|Method of manufacturing reinforced tubular article US5026451A|1991-06-25|Method and apparatus for applying thermo-plastic protective coating to pipes US3988189A|1976-10-26|Method of constructing a hose US4112031A|1978-09-05|Process and apparatus for producing rubber hose with textile thread reinforcing JPS61297118A|1986-12-27|Manufacture of hose provided with thin inner pipe made of synthetic resin CN85106852A|1986-12-17|The method of continuously vulcanizing hoses US3861973A|1975-01-21|Polyamide hose and preparation thereof US4385018A|1983-05-24|Method and apparatus for making insulated, reinforced flexible hose US3586558A|1971-06-22|Continuous manufacture of reinforced hose US2308951A|1943-01-19|Continuous manufacture of rubber sheeting US4032677A|1977-06-28|Method of forming a coating of a rubber or a synthetic resin having an even thickness on the external surface of a tubular textile jacket US2763316A|1956-09-18|Method of making a multi-layer braid-reinforced hose US4212327A|1980-07-15|Polymeric hose US4178968A|1979-12-18|Process for manufacturing reinforced elastomeric hoses and resultant product US4289555A|1981-09-15|Method of making polymeric hose ES369962A1|1971-07-16|Improvements in the manufacture of flexible hose pipes PL124259B1|1983-01-31|Method of manufacturing a reinforced conduit US4200125A|1980-04-29|Tubular article US2894483A|1959-07-14|Apparatus for coating hose GB1358273A|1974-07-03|Hose manufacture US3914146A|1975-10-21|Polyester hose and preparation thereof EP0157956A1|1985-10-16|A method of producing rubber-covered hose KR840002424B1|1984-12-27|Method of making reinforced tubular artides JP3192183B2|2001-07-23|Continuous production method of reinforced hose
同族专利:
公开号 | 公开日 ZA785182B|1979-08-29| BE870663A|1979-01-15| US4311547A|1982-01-19| BE870664A|1979-01-15| ZA785224B|1979-08-29| SU1060120A3|1983-12-07|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US3038523A|1959-02-12|1962-06-12|Us Rubber Co|Apparatus for continuously producing braided elastomeric hose| US3721271A|1971-10-28|1973-03-20|Imp Eastman Corp|Hose construction| US3988189A|1973-09-14|1976-10-26|Parker-Hannifin Corporation|Method of constructing a hose| US4121962A|1975-06-06|1978-10-24|Dayco Corporation|Method of making a hose| GB1541409A|1975-04-25|1979-02-28|Dunlop Ltd|Reinforced elastomeric articles| US4104098A|1977-03-18|1978-08-01|The Gates Rubber Company|Method and apparatus for curing and reinforcing hose|US4361455A|1980-03-03|1982-11-30|The Gates Rubber Company|Method of forming hose with improved resistance to deformation| DE3121241C2|1980-05-28|1984-07-19|Dainippon Ink And Chemicals, Inc., Tokio/Tokyo|Method of manufacturing a composite plastic pipe from thermoplastic resin| CA1206105A|1983-12-05|1986-06-17|William S. Peltzman|Hose and method for curing| US4957792A|1987-11-09|1990-09-18|Toyo Tire & Rubber Co., Ltd.|Self-molding hose and a continuous vulcanization method| US5124878A|1989-02-02|1992-06-23|Teleflex Incorporated|Coated braided hose method| ES2088359B1|1994-04-19|1997-02-01|Prod & Mangueras Especiales|PROCEDURE FOR OBTAINING MULTIPLE LAYER HOSES.| US6607831B2|2000-12-28|2003-08-19|3M Innovative Properties Company|Multi-layer article| CN113400865A|2020-03-17|2021-09-17|住友橡胶工业株式会社|Laminate, method for producing the same, and airless tire|
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