CN217398041U - Automatic carbon fiber cloth cutting and stacking machine - Google Patents

Automatic carbon fiber cloth cutting and stacking machine Download PDF

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Publication number
CN217398041U
CN217398041U CN202221270059.9U CN202221270059U CN217398041U CN 217398041 U CN217398041 U CN 217398041U CN 202221270059 U CN202221270059 U CN 202221270059U CN 217398041 U CN217398041 U CN 217398041U
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China
Prior art keywords
yarn
cutting
slide rail
laying
pressing
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CN202221270059.9U
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Chinese (zh)
Inventor
王景山
章海冰
刘阳
杨军俭
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Xiamen Hongji Weiye Industrial Co ltd
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Xiamen Hongji Weiye Industrial Co ltd
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Abstract

The utility model discloses an automatic machine of laying that cuts of carbon fiber cloth, including the frame, spread the yarn platform, spread yarn device and cutting device, just be located in the frame spread yarn bench side level and be equipped with and spread the yarn slide rail, it slides and sets up to spread the yarn device on the yarn slide rail, spread the yarn device including spreading the yarn bed frame and setting up spread yarn mechanism with a plurality of groups on the yarn bed frame, spread yarn mechanism and be used for following spread yarn bench and lay carbon cloth, cutting device sets up it cuts to be used for on the yarn mechanism to lay good carbon cloth. The utility model provides an automatic stacking machine that cuts of carbon fiber cloth, degree of automation is high, improves product cutting efficiency, and it is even to cut the cloth of stacking, and the wheel rim after the shaping inner and outer lane appearance levels beautifully, solves the low-quality problem of traditional artificial inefficiency.

Description

Automatic carbon fiber cloth cutting and stacking machine
Technical Field
The utility model relates to a carbon fiber processing technology field, concretely relates to automatic machine of laying that cuts of carbon fiber cloth.
Background
The carbon fiber cloth has the characteristics of high strength, small density, thin thickness, no increase of the self weight of the member and the section size basically after being cured, and wide application range. The bicycle rim inner and outer ring structure manufactured by coiling and re-solidifying carbon fiber cloth is adopted in the market at present, and compared with the traditional rim, the bicycle rim inner and outer ring structure is higher in strength and light in weight.
Carbon fiber cloth need roll up carbon cloth and stack up again through cutting and just can roll up the system plastic, and carbon fiber cloth on the existing market cuts with the manual work and piles up more, and this mode is inefficient, and the quality is unstable.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic machine of laying up that cuts of carbon fiber cloth, degree of automation is high, improves product cutting efficiency, and the cloth that cuts the laying is even, and the wheel rim after the shaping inner and outer lane appearance levels beautifully, solves the low-quality problem of traditional artificial inefficiency.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an automatic machine of folding that cuts of carbon fiber cloth, includes the frame, spreads the yarn platform, spreads yarn device and cutting device, just be located in the frame spread yarn platform top level and be equipped with and spread the yarn slide rail, spread the yarn device and slide and set up on spreading the yarn slide rail, spread the yarn device including spread the yarn bed frame and set up a plurality of groups on spreading the yarn bed frame and spread yarn mechanism, spread yarn mechanism and be used for along spread yarn bench and lay carbon cloth, cutting device sets up spread and be used for cutting the carbon cloth who lays in the yarn mechanism.
Preferably, two sides of the yarn paving base frame are provided with yarn paving sliding seats which are clamped on the yarn paving sliding rails in a sliding mode, the yarn paving base frame comprises a plurality of yarn paving base plates which are arranged at intervals and connecting rods which are connected with the yarn paving base plates, and an installation space for installing the yarn paving mechanisms is formed between every two adjacent groups of yarn paving base plates.
Preferably, the yarn paving mechanism comprises an unwinding roller set, a winding roller set and yarn pressing heads, the unwinding roller set and the winding roller set are arranged between two adjacent yarn paving base plates, a plurality of yarn guide rollers are further rotatably arranged between the two adjacent yarn paving base plates, a yarn pressing slide rail is vertically arranged at the discharge end of each yarn paving base frame, a yarn pressing base frame is slidably arranged on the yarn pressing slide rail and driven by a yarn pressing cylinder, and the yarn pressing base frame is provided with a plurality of yarn pressing heads.
Preferably, unreel the roller set including unreeling the roller and unreeling the mount pad, the both ends of unreeling the roller rotate respectively and set up one unreel on the mount pad, it sets firmly to unreel the mount pad on spreading the yarn base plate, receive the membrane roller set including receive the membrane roller and receive the membrane mount pad, the both ends of receiving the membrane roller rotate respectively and set up one receive on the membrane mount pad, it sets firmly to receive the membrane mount pad spread on the yarn base plate.
Preferably, the yarn pressing base frame comprises a plurality of yarn pressing mounting frames which are connected in a stepped mode along the horizontal direction, the yarn pressing head is arranged on the yarn pressing mounting frames and comprises a yarn supporting strip and a yarn pressing roller, the yarn supporting strip is arranged on the yarn pressing base frame, and the yarn pressing roller is rotatably arranged on the yarn pressing base frame and located at the discharge end of the yarn supporting strip.
Preferably, the cutting device is arranged at the discharge end of the yarn pressing head on the yarn pressing base frame, the cutting device comprises a lower pressing slide rail, a lower pressing head, a cutting slide rail, a cutting press plate, a cutting head, a cutting knife and a cutting cylinder, the lower pressing slide rail is vertically arranged on the yarn pressing mounting rack, the lower pressing head is arranged on the lower pressing slide rail in a lifting way, and is driven by a lower pressing cylinder, the cutting slide rail is horizontally arranged on the lower pressing head, connecting plates are arranged at two ends of the cutting slide rail, the cutting pressing plate is arranged on the connecting plate and is positioned below the cutting slide rail, a plurality of cutting heads are arranged on the cutting slide rail in a sliding manner, two adjacent groups of cutting heads are connected through a connecting rod, the cutting cylinder is used for driving the first group of cutting head, and the cutting knife is vertically arranged on the cutting head and used for cutting along the horizontal direction.
Preferably, the yarn laying table comprises a circulating slide rail, a circulating slide block and a material laying plate, the circulating slide rail is an annular slide rail fixedly arranged on the rack, the circulating slide rail is provided with a plurality of circulating slide blocks which slide, and the material laying plate is arranged on the circulating slide block.
After the technical scheme is adopted, compared with the background art, the utility model, have following advantage:
1. the utility model relates to an automatic stacking machine that cuts of carbon fiber cloth, shop's yarn device is through moving along the flitch and laying the carbon cloth spreading the yarn slide rail, cuts the mechanism and cuts laying the carbon cloth, and the flitch removes after next station through circulating the slide rail, and the above-mentioned action of repetition carries out the secondary and piles up the yarn action of spreading on original laid carbon cloth, can be according to actually spreading the yarn layer number, and the adjustment sets up the feed mechanism and cuts the quantity of mechanism, piles up a lot of and pile up after the yarn. Degree of automation is high, improves product cutting efficiency, and it is even to cut the cloth of laying, and the rim inner and outer lane appearance after the shaping is leveled pleasing to the eye, solves the low-quality problem of traditional artificial inefficiency.
2. The utility model relates to an automatic machine of stacking that cuts of carbon fiber cloth, because the yarn pressing bed frame is the echelonment through a plurality of yarn pressing mounting brackets along the horizontal direction and connects and form, the event sets up the yarn pressing head on the yarn pressing bed frame and cuts the mechanism and be the echelonment along the horizontal direction and distribute, and because it sets up down on the pressure head to cut the slide rail, the event cuts the route of cutting of sword and is the slash, stagger between every layer of carbon cloth that the appearance prefab piles up from this, when crooked solidification shaping wheel rim inner and outer lane, can not cause the tip to link up inconveniently because the difference of the inside and outside footpath of wheel rim inner and outer lane, and the face of linking up of each layer is not on same plane, during travel, if one deck carbon cloth links up the face fracture, be difficult for causing other layers of carbon cloth also follow fracture, improve the intensity of whole rim.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the yarn laying table of the present invention;
FIG. 3 is a schematic structural view of the yarn laying device and the cutting device of the present invention;
FIG. 4 is a schematic view of another angle structure of the yarn laying device and the cutting device of the present invention;
FIG. 5 is a schematic view of the yarn pressing head structure of the present invention;
fig. 6 is a schematic structural view of the cutting device of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
In the present invention, it should be noted that the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are all based on the orientation or position relationship shown in the drawings, and are only for convenience of description and simplification of the present invention, but do not indicate or imply that the device or element of the present invention must have a specific orientation, and thus, should not be construed as limiting the present invention.
Examples
Please refer to fig. 1 to 6 for illustration, the utility model discloses an automatic machine of folding that cuts of carbon fiber cloth, frame 1, shop yarn platform 2, shop yarn device 3 and cutting device 4, just lie in the frame 1 and spread 2 top levels of yarn platform and be equipped with shop yarn slide rail 11, shop yarn device 3 slides and sets up on shop yarn slide rail 11, shop yarn device 3 spreads yarn mechanism 32 including spreading yarn bed frame 31 and setting up a plurality of groups on spreading yarn bed frame 31, shop yarn mechanism 32 is used for laying the carbon cloth on spreading yarn platform 2, cutting device 4 sets up and is used for cutting the carbon cloth of laying well on spreading yarn mechanism 32.
Two sides of the yarn laying base frame 31 are provided with a yarn laying slide seat 33 which is slidably clamped on the yarn laying slide rail 11, the yarn laying base frame 31 comprises a plurality of yarn laying base plates 311 which are arranged at intervals and connecting rods 312 which are connected with the yarn laying base plates 311, and an installation space for installing the yarn laying mechanism 32 is formed between two adjacent groups of yarn laying base plates 311.
The yarn laying mechanism 32 comprises an unwinding roller set 321, a film winding roller set 322 and a yarn pressing head 323, the unwinding roller set 321 and the film winding roller set 322 are arranged between two adjacent yarn laying base plates 311, a plurality of yarn guide rollers 324 are further rotatably arranged between the two adjacent yarn laying base plates 311, a yarn pressing slide rail 325 is vertically arranged at the discharge end of the yarn laying base frame 311, a yarn pressing base frame 326 is slidably arranged on the yarn pressing slide rail 325 and driven by a yarn pressing cylinder 327, and a plurality of yarn pressing heads 323 are arranged on the yarn pressing base frame 326.
Unreel roller set 321 including unreeling roller 3211 and unreeling mount pad 3212, unreel roller 3211's both ends and rotate respectively and set up on one unreels mount pad 3212, unreel mount pad 3212 and set firmly on spreading yarn base plate 311, receive membrane roller set 322 including receive membrane roller 3221 and receive membrane mount pad 3222, receive membrane roller 3221's both ends and rotate respectively and set up on one receipts membrane mount pad 3222, receive membrane mount pad 3222 and set firmly on spreading yarn base plate 311. The unwinding roller 3211 is used for placing a carbon cloth roll, the carbon cloth on the carbon cloth roll is conveyed to the yarn pressing head 323 through the yarn guide roller 324 for spreading, and the carbon cloth film after spreading is conveyed to the film collecting roller 3221 through the yarn guide roller 324 for film collecting
The yarn pressing base frame 326 comprises a plurality of yarn pressing mounting frames 3261 which are connected in a stepped mode along the horizontal direction, a yarn pressing head 323 is arranged on the yarn pressing mounting frames 3261, the yarn pressing head 323 comprises a yarn supporting strip 3231 and a yarn pressing roller 3232, the yarn supporting strip 3231 is arranged on the yarn pressing base frame 326, and the yarn pressing roller 3232 is rotatably arranged on the yarn pressing base frame 326 and is located at the discharge end of the yarn supporting strip 3231.
The discharge end that lies in yarn pressing head 323 on yarn pressing bed frame 326 is equipped with cutting device 4, cutting device 4 is including pushing down slide rail 41, lower pressure head 42, cut slide rail 43, cut the clamp plate 44, cut head 45, cut sword 46 and cut cylinder 47, push down the vertical setting of slide rail 41 on yarn pressing mounting bracket 3261, lower pressure head 42 liftable sets up on pushing down slide rail 41, and it drives through pushing down cylinder 48, cut slide rail 43 level setting on lower pressure head 42, the both ends that cut slide rail 43 are equipped with connecting plate 431, it sets up on connecting plate 431 and lies in and cuts the slide rail 43 below to cut clamp plate 44, it is equipped with a plurality of cutting heads 45 to slide on cutting slide rail 43, adjacent two sets of cutting heads 45 connect through connecting rod 48, it is used for driving first set of cutting head 45 to cut the cylinder 47, it is used for cutting along the horizontal direction cutting to cut the vertical setting of sword 46 on cutting head 45.
The yarn spreading table 2 comprises a circulating slide rail 21, a circulating slide block 22 and a material spreading plate 23, the circulating slide rail 21 is an annular slide rail fixedly arranged on the rack 1, the circulating slide rail 21 is provided with a plurality of circulating slide blocks 22 which slide, and the circulating slide blocks 22 are provided with material spreading plates 23.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (7)

1. The utility model provides an automatic machine of laying up that cuts of carbon fiber cloth which characterized in that: the carbon cloth cutting machine comprises a rack, a yarn laying table, a yarn laying device and a cutting device, wherein a yarn laying slide rail is horizontally arranged above the yarn laying table on the rack, the yarn laying device is arranged on the yarn laying slide rail in a sliding mode, the yarn laying device comprises a yarn laying base frame and a plurality of groups of yarn laying mechanisms arranged on the yarn laying base frame, the yarn laying mechanisms are used for laying carbon cloth on the yarn laying table, and the cutting device is arranged on the yarn laying mechanisms and used for cutting the laid carbon cloth.
2. The automatic carbon fiber cloth cutting and laying machine as claimed in claim 1, wherein: the yarn spreading device is characterized in that yarn spreading sliding seats clamped on the yarn spreading sliding rails in a sliding mode are arranged on two sides of the yarn spreading base frame, the yarn spreading base frame comprises a plurality of yarn spreading base plates arranged at intervals and connecting rods connected with the yarn spreading base plates, and an installation space for installing the yarn spreading mechanism is formed between every two adjacent yarn spreading base plates.
3. The automatic carbon fiber cloth cutting and laying machine as claimed in claim 2, wherein: the yarn spreading mechanism comprises an unwinding roller set, a winding roller set and yarn pressing heads, the unwinding roller set and the winding roller set are arranged between every two adjacent yarn spreading substrates, a plurality of yarn guide rollers are further rotatably arranged between every two adjacent yarn spreading substrates, a yarn pressing slide rail is vertically arranged at the discharge end of the yarn spreading base frame, a yarn pressing base frame is slidably arranged on the yarn pressing slide rail and driven by a yarn pressing cylinder, and the yarn pressing heads are arranged on the yarn pressing base frame.
4. The automatic carbon fiber cloth cutting and laying machine as claimed in claim 3, wherein: the unwinding roller set comprises an unwinding roller and an unwinding mounting seat, the two ends of the unwinding roller are respectively rotatably arranged on the unwinding mounting seat, the unwinding mounting seat is fixedly arranged on the yarn paving substrate, the film winding roller set comprises a film winding roller and a film winding mounting seat, the two ends of the film winding roller are respectively rotatably arranged on the film winding mounting seat, and the film winding mounting seat is fixedly arranged on the yarn paving substrate.
5. The automatic carbon fiber cloth cutting and laying machine as claimed in claim 3, wherein: the yarn pressing base frame comprises a plurality of yarn pressing mounting frames which are connected in a stepped mode along the horizontal direction, a yarn pressing head is arranged on the yarn pressing mounting frames and comprises a yarn supporting strip and a yarn pressing roller, the yarn supporting strip is arranged on the yarn pressing base frame, and the yarn pressing roller is rotatably arranged on the yarn pressing base frame and located at the discharge end of the yarn supporting strip.
6. The automatic carbon fiber cloth cutting and laying machine as claimed in claim 5, wherein: the cutting device comprises a downward pressing slide rail, a downward pressing head, a cutting slide rail, a cutting press plate, a cutting head, a cutting knife and a cutting cylinder, wherein the downward pressing slide rail is vertically arranged on the pressing yarn mounting frame, the downward pressing head is arranged in a lifting mode on the downward pressing slide rail and is driven by the downward pressing cylinder, the cutting slide rail is horizontally arranged on the downward pressing head, the two ends of the cutting slide rail are provided with connecting plates, the cutting press plate is arranged on the connecting plates and is located below the cutting slide rail, the cutting slide rail is provided with a plurality of cutting heads in a sliding mode, the adjacent two groups of cutting heads are connected through the connecting rods, the cutting cylinder is used for driving the first group of cutting heads, and the cutting knife is vertically arranged on the cutting heads and used for cutting along the horizontal direction.
7. The automatic carbon fiber cloth cutting and laying machine as claimed in claim 1, wherein: the yarn paving table comprises a circulating slide rail, a circulating slide block and a material paving plate, the circulating slide rail is an annular slide rail fixedly arranged on the rack, the circulating slide rail is provided with a plurality of circulating slide blocks which slide, and the material paving plate is arranged on the circulating slide blocks.
CN202221270059.9U 2022-05-24 2022-05-24 Automatic carbon fiber cloth cutting and stacking machine Active CN217398041U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221270059.9U CN217398041U (en) 2022-05-24 2022-05-24 Automatic carbon fiber cloth cutting and stacking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221270059.9U CN217398041U (en) 2022-05-24 2022-05-24 Automatic carbon fiber cloth cutting and stacking machine

Publications (1)

Publication Number Publication Date
CN217398041U true CN217398041U (en) 2022-09-09

Family

ID=83146013

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221270059.9U Active CN217398041U (en) 2022-05-24 2022-05-24 Automatic carbon fiber cloth cutting and stacking machine

Country Status (1)

Country Link
CN (1) CN217398041U (en)

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