Multi-tow carbon fiber spreading and pre-impregnation system
Provided is a multi-tow carbon fiber spreading and pre-impregnation system, which is used to solve the technical problems of large thickness, high porosity and the like of a prepreg tape product caused by low spread ratio and insufficient pre-impregnation in the production process of existing thermoplastic prepreg tapes. The system includes a filament release module, a filament doubling module, an airflow spreading module, a process deviation correction module, a traction module, a slurry impregnation module, an infrared melting module, a hot-pressing shaping module, a floating roller module, a cutting module, a leftover collecting module, a winding deviation correction module and a winding module which are sequentially arranged along a feeding direction. The filament release module includes at least two filament release assemblies, and carbon fibers are placed on the filament release assemblies.
1 . A multi-tow carbon fiber spreading and pre-impregnation system, comprising a discharge mechanism, a spreading mechanism, an impregnation shaping mechanism, a cutting mechanism and a winding mechanism which are sequentially arranged along a feeding direction, wherein the discharge mechanism comprises a filament release module and a filament doubling module; and the filament release module is located at a feed end of the filament doubling module, and comprises at least two filament release assemblies, on which carbon fibers are placed;
the spreading mechanism comprises an airflow spreading module, which is located at a discharge end of the filament doubling module;
the impregnation shaping mechanism comprises a slurry impregnation module, an infrared melting module and a hot-pressing shaping module which are sequentially arranged along the feeding direction; a process deviation correction module and a traction module are arranged between the slurry impregnation module and the airflow spreading module, and the process deviation correction module is located at a feed end of the traction module;
the cutting mechanism comprises a cutting module, and a floating roller module is arranged between the cutting module and the hot-pressing shaping module;
the winding mechanism comprises a leftover collecting module and a winding module, wherein both the leftover collecting module and the winding module are located at a discharge end of the cutting module, and a winding deviation correction module is arranged between the winding module and the cutting module;
wherein the airflow spreading module comprises two airflow spreading assemblies, a sliding module ( 68 ) is arranged between the two airflow spreading assemblies, a tension adjusting shaft mounting seat ( 69 ) is slidingly arranged on the sliding module ( 68 ), a tension adjusting shaft ( 79 ) is arranged on the tension adjusting shaft mounting seat ( 69 ), and spreading guide shafts are arranged on two upper sides of the tension adjusting shaft ( 79 ); each airflow spreading assembly comprises a centrifugal fan, the centrifugal fan communicates with an exhaust pipe, the exhaust pipe communicates with a bottom of an airflow spreading duct, and a top of the airflow spreading duct is provided with three polished shafts arranged side by side.
2 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 1 , wherein each filament release assembly in the filament release module comprises an unwinding air shaft, the carbon fiber is placed on the unwinding air shaft, and the unwinding air shaft is connected to an unwinding servo motor by a coupling; a tension sensor is arranged above the unwinding air shaft, and the unwinding servo motor and the tension sensor are both connected to a tension controller; two sides of the tension sensor are both provided with unwinding guide shafts; the filament doubling module comprises a filament doubling guide shaft I ( 24 ), a filament splitting grid I ( 25 ), a filament splitting grid II ( 26 ), and a filament doubling guide shaft II ( 27 ); the filament doubling guide shaft I ( 24 ), the filament splitting grid I ( 25 ), the filament splitting grid II ( 26 ) and the filament doubling guide shaft ( 27 ) are arranged in a W-shaped structure in the feeding direction.
3 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 1 , wherein the process deviation correction module comprises a photoelectric deviation correction module I ( 33 ), and two sides of the photoelectric deviation correction module I ( 33 ) are respectively provided with a deviation correction guide shaft I ( 32 ) and a deviation correction guide shaft II ( 67 ); the traction module adopts a five-axis traction roller set, which comprises a traction roller I ( 34 ), a traction roller II ( 66 ), a traction roller III ( 35 ), a traction roller IV ( 65 ), and a traction roller V ( 36 ); the traction roller I ( 34 ), the traction roller II ( 66 ), the traction roller III ( 35 ), the traction roller IV ( 65 ) and the traction roller V ( 36 ) are arranged in a W-shaped structure along the feeding direction.
4 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 3 , wherein the slurry impregnation module comprises an ultrasonic impregnation tank ( 63 ), the ultrasonic impregnation tank ( 63 ) is filled with resin powder suspension, three rotating polished shafts are arranged side by side at a bottom of the ultrasonic impregnation tank ( 63 ), and resin powder is attached to the inner and outer surfaces of the carbon fiber after the carbon fiber is impregnated in the resin powder suspension under the guidance of the three rotating polished shafts; two sides of the ultrasonic impregnation tank ( 63 ) are respectively provided with an impregnation guide shaft II ( 38 ) and an impregnation guide shaft III ( 39 ), and an impregnation guide shaft I ( 64 ) is also arranged between the impregnation guide shaft II ( 38 ) and the traction roller V ( 36 ).
5 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 4 , wherein the infrared melting module comprises an upper infrared heating assembly ( 40 ) and a lower infrared heating assembly ( 61 ) which are correspondingly arranged up and down; the upper infrared heating assembly ( 40 ) and the lower infrared heating assembly ( 61 ) are both internally provided with medium-long wave infrared heating tubes; and the carbon fiber attached with the resin powder forms a prepreg tape ( 62 ) after being heated by the medium-long wave infrared heating tubes; the hot-pressing shaping module adopts a precision hot-pressing roller set ( 42 ), wherein the precision hot-pressing roller set ( 42 ) comprises an upper hot-pressing roller and a lower hot-pressing roller which are correspondingly arranged up and down, and a hot-pressing guide shaft ( 41 ) is arranged at the feed end of the precision hot-pressing roller set ( 42 )).
6 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 5 , wherein the cutting module comprises a cutting module ( 58 ) for cutting the prepreg tape ( 62 ), and two sides of the cutting module ( 58 ) are provided with a tensioning roller module I ( 45 ) and a tensioning roller module II ( 46 ), respectively; a thickness sensor ( 47 ) is arranged at a discharge end of the tensioning roller module II ( 46 ).
7 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 5 , wherein the leftover collecting module comprises a leftover winding air shaft, a leftover winding reel ( 56 ) is mounted on the leftover winding air shaft ( 57 ), and a winding guide shaft ( 59 ) is arranged at a feed end of the leftover winding reel ( 56 ).
8 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 5 , wherein the floating roller module comprises a floating roller module ( 43 ), and two sides of the floating roller module ( 43 ) are respectively provided with a positioning guide shaft I ( 60 ) and a positioning guide shaft II ( 44 ); the winding deviation correction module comprises a photoelectric deviation correction module II ( 48 ), and two sides of the photoelectric deviation correction module II ( 48 ) are respectively provided with a deviation correction guide shaft III ( 55 ) and a deviation correction guide shaft IV ( 54 ).
9 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 5 , wherein the leftover collecting module comprises a leftover winding air shaft, a leftover winding reel ( 56 ) is mounted on the leftover winding air shaft ( 57 ), and a winding guide shaft ( 59 ) is arranged at a feed end of the leftover winding reel ( 56 ).
10 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 9 , wherein the winding module comprises a prepreg tape winding reel ( 50 ), the prepreg tape winding reel ( 50 ) is mounted on a winding air shaft ( 51 ), and the winding air shaft ( 51 ) is connected to a winding servo motor ( 53 ) through a transmission assembly; a winding guide shaft II ( 49 ) is arranged at a feed end of the prepreg tape winding reel ( 50 ).
11 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 10 , wherein the floating roller module comprises a floating roller module ( 43 ), and two sides of the floating roller module ( 43 ) are respectively provided with a positioning guide shaft I ( 60 ) and a positioning guide shaft II ( 44 ); the winding deviation correction module comprises a photoelectric deviation correction module II ( 48 ), and two sides of the photoelectric deviation correction module II ( 48 ) are respectively provided with a deviation correction guide shaft III ( 55 ) and a deviation correction guide shaft IV ( 54 ).
12 . The multi-tow carbon fiber spreading and pre-impregnation system according to claim 5 , wherein the floating roller module comprises a floating roller module ( 43 ), and two sides of the floating roller module ( 43 ) are respectively provided with a positioning guide shaft I ( 60 ) and a positioning guide shaft II ( 44 ); the winding deviation correction module comprises a photoelectric deviation correction module II ( 48 ), and two sides of the photoelectric deviation correction module II ( 48 ) are respectively provided with a deviation correction guide shaft III ( 55 ) and a deviation correction guide shaft IV ( 54 ).