CN222572661U - Auxiliary device is used in various card production - Google Patents
Auxiliary device is used in various card production Download PDFInfo
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- CN222572661U CN222572661U CN202420529287.6U CN202420529287U CN222572661U CN 222572661 U CN222572661 U CN 222572661U CN 202420529287 U CN202420529287 U CN 202420529287U CN 222572661 U CN222572661 U CN 222572661U
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Abstract
The utility model provides an auxiliary device for producing color cards, which comprises: compared with the prior art, the automatic feeding and discharging device has the advantages that the feeding box can be placed on the left side of the main body through the feeding box and the three groups of feeding drawers, cut color card raw materials can fall into the feeding drawers from the discharging holes, the feeding is facilitated, the color card raw materials in the three groups of feeding drawers are sequentially fed from top to bottom, the cyclic feeding effect is achieved, the working efficiency is improved, the working area is guaranteed to be orderly, potential safety hazards are avoided, the sliding bars and the sliding grooves are arranged, the feeding and discharging of the feeding drawers are smooth and convenient, and the stability of the feeding are guaranteed through the arrangement of the magnet I and the magnet II.
Description
Technical Field
The utility model belongs to the technical field of color card production, and particularly relates to an auxiliary device for color card production.
Background
The auxiliary device for the color card production refers to equipment or tools used for improving efficiency, improving quality or simplifying operation in the color card production process. The automatic card cutting machine can be mechanical equipment or manual auxiliary tools, and in the field of color cards, the card is a color card which is frequently used, and in the production process of the card, a cutting machine is often used for cutting card raw materials into card blanks with equal sizes.
Traditional guillootine is cutting the back to various card raw materials, and the raw materials of output often need the workman to manually pick up, also is provided with a special mechanism of receiving the material for accomodate the various card raw materials after cutting, but after the continuous work of guillootine, the various card raw materials in the receiving mechanism can increase, still need the workman constantly take away the various card raw materials of receiving mechanism inside this moment, just can guarantee that the various card raw materials of receiving mechanism inside can not produce and pile up the phenomenon, this work load that just leads to the workman of increase.
Secondly, when some cutting machines without receiving mechanisms work, workers are required to manually store the cut raw materials, so that the working efficiency is reduced, meanwhile, accumulation phenomenon can be caused when the workers receive the raw materials in time, the working area becomes messy, the working area is tidy and orderly, and meanwhile, the messy working environment can possibly cause the increase of safety risks.
To sum up, if the auxiliary device for color card production is not provided with a mechanism for recycling and collecting materials, a series of problems such as raw material accumulation, low working efficiency, environmental cleaning problem and safety risk will be caused, so it is desired to develop an auxiliary device for color card production for solving the above problems.
Disclosure of utility model
Aiming at the defects existing in the prior art, the utility model aims to provide an auxiliary device for producing color cards.
The utility model is realized by the following technical scheme that the auxiliary device for producing the color cards comprises a main body, a material receiving box and a material receiving drawer, wherein a group of bases are arranged below the main body, a group of feed inlets are arranged above the right side of the main body, a group of discharging plates are arranged above the right side of the feed inlets, and a discharging groove is formed in the left side of each discharging plate;
Four groups of first supporting feet are arranged at four corners of the bottom of the base, a group of discharge holes are formed in the left side of the main body, a group of material receiving boxes are formed in the left side of the discharge holes, four groups of second supporting feet are arranged at four corners of the bottom of each material receiving box, and three groups of mounting holes are formed in the left side of each material receiving box from top to bottom in sequence;
a group of sliding grooves are formed in the front side and the rear side of the inside of each group of mounting openings, each group of sliding grooves extend rightwards to the inside of the material receiving box, a group of material receiving drawers are arranged in each group of mounting openings, the tops of the material receiving drawers are inwards sunken to form a group of material receiving grooves, a group of sliding strips are arranged in the front side and the rear side of the material receiving drawers, and a group of handles are arranged in the center of the left side of the material receiving drawers.
As a preferred embodiment, the main body is a die cutting machine, and the inside of the main body consists of a feeding mechanism, a die cutting mechanism, a positioning mechanism, a driving mechanism, a control mechanism and a feeding mechanism.
As a preferred embodiment, the first supporting leg and the second supporting leg are made of rubber, and the heights of the first supporting leg and the second supporting leg are the same.
As a preferred embodiment, the length and height of the mounting opening are greater than the length and height of the receiving drawer, and the length, width and height of the chute are greater than the length, width and height of the slide bar.
As a preferred implementation mode, a group of magnets II are respectively embedded in the front and back positions of the right side of the material receiving drawer, three groups of magnets I are respectively arranged in the front and back positions of the right side of the material receiving box, and the positions of the six groups of magnets I and the six groups of magnets II are opposite one to one and opposite in opposite polarity.
As a preferred embodiment, the top of the material receiving box is of a through structure, the length, width and height of the inside of the material receiving box are all greater than those of the material receiving drawer, the material receiving box and the material receiving drawer are made of aluminum alloy materials, when the material receiving box is in actual use, color card raw materials drop into the inside of the uppermost material receiving drawer after falling down, after the uppermost material receiving drawer is fully received, the handle is held to draw the uppermost material receiving drawer leftwards, at the moment, the two groups of magnets are separated from and adsorbed by the two groups of magnets, so that the fixed connection between the uppermost material receiving drawer and the inside of the material receiving box is relieved, and meanwhile, the two groups of sliding strips slide in the two groups of sliding grooves, so that the taking out and mounting of the uppermost material receiving drawer are smoother and more labor-saving.
As a preferred embodiment, the width at the top of the material receiving box is larger than the width of the material outlet, the width of the material receiving box is equal to the width of the main body, when in actual use, the upper, middle and lower three groups of material receiving drawers can be taken out respectively, the material receiving drawers are convenient to maintain and clean, the material receiving box is convenient to maintain and clean, time and labor are saved, the three groups of material receiving drawers are inserted into the material receiving box through the three groups of mounting holes respectively according to steps after the maintenance is finished, the material receiving drawers are fixed with the interior of the material receiving box through the adsorption of the first magnet and the second magnet, and the cleaning and the mounting of the material receiving drawers and the material receiving box can be completed.
After the technical scheme is adopted, the collecting box and the three groups of collecting drawers are arranged, the collecting box can be placed on the left side of the main body, the top of the collecting box is communicated with the position right below the discharge hole, so that cut color card raw materials can fall into the collecting drawers from the discharge hole conveniently, the collecting is convenient, the effect of recycling the materials is achieved by sequentially collecting the color card raw materials in the three groups of collecting drawers from top to bottom, the working efficiency is improved, the neatly and orderly working area is ensured, potential safety hazards are avoided due to the fact that the raw materials are accumulated, the collecting drawers are installed and taken out smoothly and conveniently by arranging the sliding strips and the sliding grooves, the fixing of the collecting drawers and the inside of the collecting boxes can be facilitated by arranging the magnet I and the magnet II, and the stability of the collecting drawers and the stability of the collecting materials are guaranteed.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained according to these drawings without inventive faculty for a person skilled in the art.
Fig. 1 is a schematic diagram of an auxiliary device for color card production according to the present utility model.
Fig. 2 is a schematic structural diagram of a material receiving box in an auxiliary device for producing color cards.
Fig. 3 is a schematic structural diagram of a receiving drawer in an auxiliary device for color card production.
Fig. 4 is a schematic structural diagram of a slide bar and a second magnet in the auxiliary device for producing color cards.
In the figure, 100-main body, 110-discharging plate, 120-feeding hole, 130-discharging hole, 140-receiving box, 150-receiving drawer, 160-mounting hole, 170-sliding groove, 180-sliding bar, 190-receiving groove, 200-handle, 210-magnet I and 220-magnet II.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are only one end embodiment of the present utility model, not the all-end embodiment. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 4, an auxiliary device for producing color cards comprises a main body 100, a material receiving box 140 and a material receiving drawer 150, wherein a group of bases are arranged below the main body 100, a group of feeding holes 120 are arranged above the right side of the main body 100, a group of discharging plates 110 are arranged above the right side of the feeding holes 120, and a discharging groove is formed in the left side of the discharging plates 110;
Four groups of first supporting legs are arranged at four corners of the bottom of the base, a group of discharge holes 130 are formed in the left side of the main body 100, a group of material receiving boxes 140 are arranged on the left side of the discharge holes 130, four groups of second supporting legs are arranged at four corners of the bottom of each material receiving box 140, and three groups of mounting holes 160 are formed in the left side of each material receiving box 140 from top to bottom in sequence;
A group of sliding grooves 170 are formed in the front side and the rear side of the inside of each group of mounting ports 160, each group of sliding grooves 170 extend rightwards to the inside of the material receiving box 140, a group of material receiving drawers 150 are arranged in each group of mounting ports 160, the tops of the material receiving drawers 150 are inwards recessed to form a group of material receiving grooves 190, a group of sliding strips 180 are arranged in the front side and the rear side of the material receiving drawers 150, and a group of handles 200 are arranged in the center of the left side of the material receiving drawers 150.
The main body 100 is a die cutting machine, and the inside of the main body 100 is composed of a feeding mechanism, a die cutting mechanism, a positioning mechanism, a driving mechanism, a control mechanism and a sending mechanism.
The first supporting leg and the second supporting leg are made of rubber materials, and the heights of the first supporting leg and the second supporting leg are the same.
The length and height of the mounting opening 160 are greater than the length and height of the receiving drawer 150, and the length, width and height of the chute 170 are greater than the length, width and height of the slider 180.
A group of magnets II 220 are respectively embedded in the front and back positions of the right side of the material receiving drawer 150, three groups of magnets I210 are respectively arranged in the front and back positions of the right side of the material receiving box 140, and the positions of the six groups of magnets I210 and the six groups of magnets II 220 are opposite one to one and opposite in opposite polarity.
The top of the material receiving box 140 is of a through structure, the length, width and height of the inside of the material receiving box 140 are larger than those of the material receiving drawer 150, the material receiving box 140 and the material receiving drawer 150 are made of aluminum alloy materials, when the material receiving box is in actual use, color card raw materials drop into the material receiving drawer 150 at the uppermost layer downwards after dropping into the material receiving box 140, after the material receiving drawer 150 at the uppermost layer is fully received, the handle 200 is held to draw the material receiving drawer 150 at the uppermost layer leftwards, at the moment, the two groups of magnets 210 and the two groups of magnets 220 are separated from adsorption, so that the fixed connection between the material receiving drawer 150 at the uppermost layer and the inside of the material receiving box 140 is relieved, and meanwhile, the two groups of sliding strips 180 slide in the two groups of sliding grooves 170, so that the material receiving drawer 150 at the uppermost layer is more smoothly taken out and installed.
The width at material receiving box 140 top is greater than the width of discharge gate 130, material receiving box 140's width equals the width of main part 100, when in actual use, can take out three sets of material receiving drawers 150 from top to bottom respectively, be convenient for maintain and clean material receiving drawer 150, be convenient for maintain and clean material receiving box 140 simultaneously, labour saving and time saving, it inserts three sets of material receiving drawers 150 to material receiving box 140 inside respectively to step by step after the maintenance is accomplished, and make material receiving drawer 150 and material receiving box 140 inside fixed through the absorption effect of magnet one 210 and magnet two 220, can accomplish the cleanness and the installation of material receiving drawer 150 and material receiving box 140.
Referring to fig. 1 to 4, in actual use, firstly, a main body 100 is placed on the upper surface of a base, then the main body 100 is powered on with an external power supply, a receiving box 140 is placed on the left side of the base, a through position at the top of the receiving box 140 is located under a discharge hole 130, then a color card raw material is picked up, the color card raw material is placed on the left side of a discharging plate 110, after the main body 100 works, a feeding mechanism in the main body 100 conveys the color card raw material to the lower part of a die-cutting mechanism in the main body 100 through the feed hole 120, the position of the color card raw material and the size to be cut are determined through a positioning mechanism, a driving mechanism is controlled by a control mechanism to drive the die-cutting mechanism to cut the color card raw material, and the cut color card raw material is conveyed to the discharge hole 130 through the discharge hole 130 and falls down into the receiving box 140 (the main body 100 is the prior art, the model of which can be selected by a person skilled in the art and is not repeated here);
After the color card raw materials fall into the bin 140, the color card raw materials drop downwards into the uppermost bin 150, after the uppermost bin 150 is fully collected, the handle 200 is held to draw the uppermost bin 150 leftwards, at this time, the two groups of magnets 210 and the two groups of magnets 220 are separated from adsorption, so that the fixed connection between the uppermost bin 150 and the bin 140 is relieved, simultaneously, the two groups of sliding strips 180 slide in the two groups of sliding grooves 170, the uppermost bin 150 is taken out and mounted more smoothly and easily, after the uppermost bin 150 is taken out, the color card raw materials cut in the uppermost bin 150 are conveyed to an external storage mechanism, the next processing is waited, after the uppermost bin 150 is taken out, the middle bin 150 starts to be collected, after the middle bin 150 is fully collected, the middle bin 150 is taken out according to steps, at this time, the lowermost bin 150 starts to be collected, after the lowermost bin 150 is collected, firstly, the uppermost bin 150 is chaotic and is mounted into the bin 140 along the bin 160 again, the inner bin 160 is mounted in a position, the bin is prevented from being inserted into the bin 140, the inner bin is prevented from being completely, the hidden danger of the inner bin is avoided, and the hidden danger of the inner bin is avoided.
In embodiment 2, referring to fig. 1 to 4, after the work is completed, the upper, middle and lower three groups of material receiving drawers 150 can be taken out respectively, so that the material receiving drawers 150 can be maintained and cleaned conveniently, meanwhile, the material receiving boxes 140 can be maintained and cleaned conveniently, time and labor are saved, the three groups of material receiving drawers 150 are inserted into the material receiving boxes 140 through the three groups of mounting ports 160 respectively according to steps after the maintenance is completed, the material receiving drawers 150 and the material receiving boxes 140 are fixed inside through the adsorption of the first magnet 210 and the second magnet 220, and the cleaning and mounting of the material receiving drawers 150 and the material receiving boxes 140 can be completed.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.
Claims (7)
1. The auxiliary device for producing the color cards comprises a main body (100), a material receiving box (140) and a material receiving drawer (150), and is characterized in that a group of bases are arranged below the main body (100), a group of feeding holes (120) are formed in the upper right side of the main body (100), a group of discharging plates (110) are arranged in the upper right side of the feeding holes (120), and a material discharging groove is formed in the left side of each discharging plate (110);
Four groups of first supporting feet are arranged at four corners of the bottom of the base, a group of discharge holes (130) are formed in the left side of the main body (100), a group of material collecting boxes (140) are arranged on the left side of the discharge holes (130), four groups of second supporting feet are arranged at four corners of the bottom of each material collecting box (140), and three groups of mounting holes (160) are formed in the left side of each material collecting box (140) from top to bottom in sequence;
Every group spout (170) have all been seted up to the inside front and back side of installing port (160), every group spout (170) all extend to the inside of receipts workbin (140) right, every group inside a set of receipts material steamer tray (150) that all is equipped with of installing port (160), the inside sunken material groove (190) that form of receipts material steamer tray (150) top, receipts material steamer tray (150) front and back side all is equipped with a set of draw runner (180), receipts material steamer tray (150) left side central point department installs a set of handle (200).
2. The auxiliary device for producing the color card according to claim 1, wherein the main body (100) is a die cutting machine, and the main body (100) is internally composed of a feeding mechanism, a die cutting mechanism, a positioning mechanism, a driving mechanism, a control mechanism and a sending mechanism.
3. The auxiliary device for producing color cards according to claim 1 wherein the first supporting leg and the second supporting leg are made of rubber materials, and the heights of the first supporting leg and the second supporting leg are the same.
4. The auxiliary device for producing the color card according to claim 1, wherein the length and the height of the mounting opening (160) are larger than the length and the height of the receiving drawer (150), and the length, the width and the height of the sliding groove (170) are larger than the length, the width and the height of the sliding strip (180).
5. The auxiliary device for producing the color card according to claim 1, wherein a group of magnets II (220) are respectively embedded in the front and rear positions of the right side of the material receiving drawer (150), three groups of magnets I (210) are respectively arranged in the front and rear positions of the right side of the material receiving box (140), and the positions of the six groups of magnets I (210) and the six groups of magnets II (220) are opposite one to one and opposite.
6. The auxiliary device for producing the color card according to claim 1, wherein the top of the material receiving box (140) is of a through structure, the length, the width and the height of the inside of the material receiving box (140) are larger than those of the material receiving drawer (150), and the material receiving box (140) and the material receiving drawer (150) are made of aluminum alloy materials.
7. The auxiliary device for producing the color card according to claim 6, wherein the width of the top of the material receiving box (140) is larger than the width of the material outlet (130), and the width of the material receiving box (140) is equal to the width of the main body (100).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420529287.6U CN222572661U (en) | 2024-03-19 | 2024-03-19 | Auxiliary device is used in various card production |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420529287.6U CN222572661U (en) | 2024-03-19 | 2024-03-19 | Auxiliary device is used in various card production |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222572661U true CN222572661U (en) | 2025-03-07 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420529287.6U Active CN222572661U (en) | 2024-03-19 | 2024-03-19 | Auxiliary device is used in various card production |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222572661U (en) |
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- 2024-03-19 CN CN202420529287.6U patent/CN222572661U/en active Active
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