CN205522556U - Equipment is made around fashioned pipeline to continuous fibers reinforcing thermoplasticity preimpregnation tape winding - Google Patents
Equipment is made around fashioned pipeline to continuous fibers reinforcing thermoplasticity preimpregnation tape winding Download PDFInfo
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- CN205522556U CN205522556U CN201620038323.4U CN201620038323U CN205522556U CN 205522556 U CN205522556 U CN 205522556U CN 201620038323 U CN201620038323 U CN 201620038323U CN 205522556 U CN205522556 U CN 205522556U
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- continuous fiber
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- pipeline
- fiber reinforced
- control mould
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Abstract
The utility model discloses an equipment is made around fashioned pipeline to continuous fibers reinforcing thermoplasticity preimpregnation tape winding, including support slip track, support, axle, continuous fibers reinforcing thermoplasticity slice preimpregnation material, heating tension control mould unreel, the support is fixed on support slip track, unreel axle, continuous fibers reinforcing thermoplasticity slice preimpregnation material, heating tension control mould and fix on the support, wherein continuous fibers reinforcing thermoplasticity slice preimpregnation material cover unreel epaxial, heating tension control mould, internal layout have a dip tank, this dip tank and a thermoplasticity melting resin runner intercommunication, and the position arranges that the wrong standard width of a room in an old -style house separates the gyro wheel that sets up about in this dip tank, upward the bottom roller has continuous fibers and passes the clearance, dip tank below and heating tension control mould inside have the heat -conducting oil cavity. The utility model discloses can solve the technical problem who how to make a thermoplasticity pipeline.
Description
Technical field
This utility model relates to a kind of manufacture equipment using the Wrapping formed pipeline of continuous fiber reinforced thermoplastic prepreg tape.
Background technology
Plastic conduit is divided into thermoplastic pipeline and thermosetting plastics pipeline.Thermoplastic pipe kind is a lot, such as PE pipe, PVC pipe, PP pipe etc., and the Typical Representative of thermoset pipes is exactly fiberglass fibers dural-phase contrast scan, it is commonly called as fiberglass, is to use the unsaturated polyester resin of glass-fiber reinforced thermo-setting, epoxy resin etc..
Both tubing is respectively arranged with quality, the most all occupies certain market share, and heavy caliber high pressure power is based on thermosetting, and small-bore low-pressure is based on thermoplasticity.Thermoplastic pipe has easy recovery, strong shock resistance, fracture toughness is good, molding cycle is short, production efficiency high, but its intensity and elastic modelling quantity are low, it is difficult to adapt to heavy caliber, high rigidity and the requirement of high pressure;The thermoset pipes of glass fiber reinforcement is because having long fibre to be wound around and strengthening, thus there is high intensity and higher elastic modelling quantity, can adapt in heavy caliber, high rigidity and the requirement of elevated pressures, but its production process has certain pollution and is difficult to reclaim, effect on environment is big, and shock resistance is poor.
Current pipeline market only fiber reinforcement thermosetting pipeline and there is no fiber reinforced thermolplastic pipeline, because thermosetting resin the most just can have stronger mobility, easily be combined with glass fibre, processing performance is good, thermosetting then the most just must can have certain mobility, be difficult to fiber directly in conjunction with, processing performance is poor.
Utility model content
The purpose of this utility model is to provide the Wrapping formed pipeline of a kind of continuous fiber reinforced thermoplastic prepreg tape and manufactures equipment, solves how to manufacture the technical problem of a kind of thermoplastic pipe.
The pipeline manufacture equipment that continuous fiber reinforced thermoplastic prepreg tape is Wrapping formed, including bracket slide track, support, unreeling shaft, continuous fiber reinforced thermoplastic lamellar prepreg, adds hot tensile strength control mould;Support is fixed on bracket slide track, unreeling shaft, continuous fiber reinforced thermoplastic lamellar prepreg, add hot tensile strength control mould be fixed on support, wherein continuous fiber reinforced thermoplastic lamellar prepreg is enclosed within unreeling shaft;Adding hot tensile strength and control mould, inside is disposed with a maceration tank, this maceration tank and a thermoplastic fusion resin flow channel connection, and in this maceration tank, upper-lower position is disposed with the spaced roller that staggers, and upper bottom roller has continuous fiber through gap;Below maceration tank and add hot tensile strength control mould inside there is heat-conducting oil heating cavity.
Described thermoplastic fusion resin flow channel is communicated with an extruder, this extruder has a controller controlling molten resin outflow speed, also has a velometer in above-mentioned thermoplastic fusion resin flow channel, and controller noted above is connected with velometer.
The described hot tensile strength that adds controls to be also equipped with a pressing wheel mechanism on mould, and this mechanism includes a pinch roller, stage clip, a support arm;Pinch roller is fixed on support arm by stage clip.
The pipeline of this utility model manufacture has intensity more more preferable than traditional thermoplasticity or thermoset pipes, rigidity, shock resistance, fracture toughness, heat-proof corrosion resistant erosion performance, leakage performance etc., there is more preferable economic performance and the little feature of effect on environment simultaneously, can be widely applied to the fields such as Water and Waste Water Engineering, petroleum chemical industry, the conveying of coal gas natural gas, desalinization, nuclear power, and be adaptable to special environment and the demands such as heavy caliber, high rigidity, high intensity, highly corrosive;Owing to continuous fiber and thermoplastic fusion resin are mutually to impregnate at mould inside, the most not with air contact, thus both do not have bubble, so that both dippings are completely;Owing to having individual velometer in thermoplastic fusion resin flow channel, this velometer is connected with the controller controlling molten resin outflow speed on extruder, the most real-time molten resin inflow amount controlling molten resin runner.
Accompanying drawing explanation
Fig. 1 is the schematic diagram that the Wrapping formed pipeline of continuous fiber reinforced thermoplastic prepreg tape manufactures equipment;
Fig. 2 is the schematic diagram that the pipeline in Fig. 1 manufactures equipment opposite side;
Fig. 3 is to add hot tensile strength to control the schematic diagram of mould;
1. bracket slide tracks, 2. support, 3. unreeling shaft, 4. continuous fiber reinforced thermoplastic lamellar prepreg in figure, 5. add hot tensile strength and control mould, 51. maceration tanks, 52. thermoplastic fusion resin flow channels, 53. rollers, 54. heat-conducting oil heating cavitys, 55. velometers, 57. extruders, 6. pressing wheel mechanism, 61. pinch rollers, 62. support arms, 7. pipeline outer wall.
Detailed description of the invention
Refer to Fig. 1 to Fig. 3, the Wrapping formed pipeline of continuous fiber reinforced thermoplastic prepreg tape in figure manufactures equipment, adds hot tensile strength including 1, support of a bracket slide track, 3, two continuous fiber reinforced thermoplastic lamellar prepregs of 2, two unreeling shafts 4, and controls 5, pressing wheel mechanism 6 of mould.Continuous fiber reinforced thermoplastic lamellar prepreg 4 can be continuous print glass fibre, carbon fiber, aramid fiber, basalt fibre etc.;Thermoplastic resin includes polypropylene, polyethylene, polyamide, polyphenylene sulfide, polyether-ether-ketone, polyimides etc..
Support 2 be fixed on bracket slide track 1 and to unreeling shaft 3, continuous fiber reinforced thermoplastic lamellar prepreg 4, add hot tensile strength control mould 5 be supported, the most each continuous fiber reinforced thermoplastic lamellar prepreg 4 is enclosed within each unreeling shaft 3.Bracket slide track 1 makes support 2 horizontally or vertically move.The effect of unreeling shaft 3 is fixing continuous fiber reinforced thermoplastic lamellar prepreg 4.Lamellar impregnant in continuous fiber reinforced thermoplastic lamellar prepreg 4 gradually imports to add hot tensile strength and controls in mould 5.There is on unreeling shaft 3 regulation tension mechanism, the tension force of unreeling shaft 3 can be controlled.
Add hot tensile strength and control mould 5, inside is disposed with a maceration tank 51, this maceration tank 51 connects with a thermoplastic fusion resin flow channel 52, and in this maceration tank 51, upper-lower position is disposed with the spaced roller 53 that staggers, and upper bottom roller 53 has continuous fiber through gap;Below maceration tank 51 and add hot tensile strength and control that mould 5 is internal has heat-conducting oil heating cavity 54.Heat-conducting oil heating cavity 54 makes the heating-up temperature in mould be 60-350 degree.
Above-mentioned thermoplastic fusion resin flow channel 52 is communicated with an extruder 57, and this extruder 57 has a controller controlling molten resin outflow speed, and figure middle controller does not shows;Also having a velometer 55 in above-mentioned thermoplastic fusion resin flow channel 52, controller noted above is connected with velometer 55.
Adding hot tensile strength to control to be also equipped with a pressing wheel mechanism 6 on mould 5, this mechanism includes 61, stage clip of a pinch roller, a support arm 62, and in figure, stage clip is not shown in the diagram;Pinch roller 61 is fixed on support arm 62 by stage clip, and the pressure of pinch roller 61 is 0.6-20mpa.So from add hot tensile strength control mould 5 derive be impregnated with hot-melt resin just can under the effect of pinch roller 61 with pipeline outer wall 7 fit be wound work.
Claims (3)
1. the pipeline that continuous fiber reinforced thermoplastic prepreg tape is Wrapping formed manufactures equipment, it is characterised in that: include bracket slide track, support, unreeling shaft, continuous fiber reinforced thermoplastic lamellar prepreg, add hot tensile strength control mould;Support is fixed on bracket slide track, unreeling shaft, continuous fiber reinforced thermoplastic lamellar prepreg, add hot tensile strength control mould be fixed on support, wherein continuous fiber reinforced thermoplastic lamellar prepreg is enclosed within unreeling shaft;Adding hot tensile strength and control mould, inside is disposed with a maceration tank, this maceration tank and a thermoplastic fusion resin flow channel connection, and in this maceration tank, upper-lower position is disposed with the spaced roller that staggers, and upper bottom roller has continuous fiber through gap;Below maceration tank and add hot tensile strength control mould inside there is heat-conducting oil heating cavity.
2. manufacture equipment according to the pipeline that the continuous fiber reinforced thermoplastic prepreg tape described in claim 1 is Wrapping formed, it is characterized in that: described thermoplastic fusion resin flow channel is communicated with an extruder, there is on this extruder a controller controlling molten resin outflow speed, also having a velometer in above-mentioned thermoplastic fusion resin flow channel, controller noted above is connected with velometer.
3. manufacture equipment according to the pipeline that the continuous fiber reinforced thermoplastic prepreg tape described in claim 1 is Wrapping formed, it is characterized in that: described in add hot tensile strength and control to be also equipped with a pressing wheel mechanism on mould, this mechanism includes a pinch roller, stage clip, a support arm;Pinch roller is fixed on support arm by stage clip.
Priority Applications (1)
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CN201620038323.4U CN205522556U (en) | 2016-01-16 | 2016-01-16 | Equipment is made around fashioned pipeline to continuous fibers reinforcing thermoplasticity preimpregnation tape winding |
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CN201620038323.4U CN205522556U (en) | 2016-01-16 | 2016-01-16 | Equipment is made around fashioned pipeline to continuous fibers reinforcing thermoplasticity preimpregnation tape winding |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108262987A (en) * | 2016-12-31 | 2018-07-10 | 浙江双林机械股份有限公司 | Continuous fiber plastics composite pressure pipe Wiring apparatus and winding method |
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2016
- 2016-01-16 CN CN201620038323.4U patent/CN205522556U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108262987A (en) * | 2016-12-31 | 2018-07-10 | 浙江双林机械股份有限公司 | Continuous fiber plastics composite pressure pipe Wiring apparatus and winding method |
CN108262987B (en) * | 2016-12-31 | 2024-01-09 | 浙江双林机械股份有限公司 | Winding equipment and winding method for continuous fiber plastic composite pressure pipe |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20190814 Address after: 318000 Huajing Mingyuan Building, Jiaojiang District, Taizhou City, Zhejiang Province, Room 1603, Unit 1 Patentee after: Huang Fuhe Address before: 215427 No. 2-191, West Ring Road, Huangjing Town, Taicang City, Suzhou City, Jiangsu Province Co-patentee before: Zhang Guang Patentee before: Tao Xiaodi |
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TR01 | Transfer of patent right |