Cartoon biscuit forming machine
By designing the automated assembly line production process of the cartoon biscuit molding machine, the high cost and low efficiency problems caused by manual operations are solved, and the efficient production of multi-color cartoon biscuits is achieved.
Patent Information
- Application Number
- CN202421693970.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-17
AI Technical Summary
In the prior art, the molding method of cartoon biscuits relies on manual operations, resulting in high employment costs, high labor intensity and low production efficiency.
A cartoon biscuit forming machine is designed, including a skin pressing mechanism, a cake conveying mechanism, a water spraying mechanism, a dough conveying component and a dough attachment component. Through the automated assembly line production process, the dough pressing, water spraying, conveying and adhesion of the dough is achieved to form a cartoon shape.
It improves the forming efficiency of cartoon biscuits, reduces employment costs and labor intensity for workers, ensures production efficiency, and can make multi-color cartoon biscuits.
Smart Images

Figure CN223157808U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of pasta making, and particularly relates to a cartoon biscuit forming machine. Background Art
[0002] Cartoon biscuits are foods with a crispy or crunchy texture, which are mainly made of wheat flour, added with sugar, oil and other raw materials, and processed through processes such as dough mixing, forming, and baking. Cartoon biscuits usually take well-known cartoon images as shapes, and there are also other patterns such as animals and plants. They are simple to make and have a good taste, and are quite popular among children.
[0003] In the prior art, the forming method of cartoon biscuits is usually that workers use engraving molds to make shapes such as cartoon eyes and mouths manually, and then manually paste the dough pieces of the made eyes, mouths, etc. on the biscuit blanks. This method not only increases the labor cost but also increases the labor intensity of workers, and at the same time, the production efficiency of cartoon biscuits is not high. Therefore, it is urgent to research a cartoon biscuit forming machine to solve the above problems. Summary of the Utility Model
[0004] The utility model aims to provide a cartoon biscuit forming machine, and the purpose is to solve the technical problems put forward in the above background art.
[0005] To solve the above technical problems, the utility model is realized through the following technical solutions:
[0006] The utility model provides a cartoon biscuit forming machine, which includes a dough pressing mechanism, a biscuit blank conveying mechanism, and a dough pasting mechanism; the dough pressing mechanism and the biscuit blank conveying mechanism are arranged side by side; a water spraying mechanism is installed above the biscuit blank conveying mechanism; the dough pasting mechanism includes a protection box; accommodating openings are formed in opposite side walls of the protection box; a dough conveying component corresponding to the dough pressing mechanism and a finished product conveying component corresponding to the biscuit blank conveying mechanism are arranged side by side in the protection box; the dough conveying component passes through the accommodating opening and is arranged parallel to the output end of the dough pressing mechanism; the finished product conveying component passes through the accommodating opening and is arranged parallel to the output end of the biscuit blank conveying mechanism; a dough attaching component is installed between the dough conveying component and the finished product conveying component.
[0007] As a preferred technical solution of the present utility model, the dough pressing mechanism includes a vertically arranged support table; a pair of first cross beams are horizontally fixed on one side wall of the support table; a first power conveyor belt is horizontally installed between the two first cross beams; the output end of the first power conveyor belt is fixedly provided with a pair of bearing boxes side by side along the conveying direction of the first power conveyor belt; import and export openings are formed on the opposite side walls of the two bearing boxes; a pair of first rotating shafts are rotatably connected in the two bearing boxes side by side from top to bottom, and a second rotating shaft is rotatably connected in parallel below each first rotating shaft; a plurality of pressing rollers are fixedly sleeved on the two pairs of first rotating shafts and the two pairs of second rotating shafts side by side, and a material guiding plate is obliquely fixed on one side of each first rotating shaft close to the first power conveyor belt and on the side far from the first power conveyor belt; the material guiding plate is inserted into the import and export opening; a plurality of partition bars are fixedly arranged side by side on the upper surface of the material guiding plate, and a dough guiding space corresponding to the pressing roller is formed between two adjacent partition bars; one ends of the first rotating shafts located at the lower parts of the two bearing boxes are respectively fixedly connected to the output shafts of a pair of servo motors, and a gear is fixedly sleeved on one end of the first rotating shaft and on one end of the second rotating shaft above it; adjacent two gears are meshed with each other; first belt wheels are fixedly sleeved on the other ends of the two pairs of first rotating shafts; second belt wheels are fixedly sleeved on the other ends of the two pairs of second rotating shafts; each first belt wheel and the second belt wheel below it are connected by a synchronous belt in a transmission manner, and a third belt wheel and a fourth belt wheel are connected in a transmission manner side by side on the synchronous belt; the third belt wheel and the fourth belt wheel are rotatably connected in the bearing box.
[0008] As a preferred technical solution of the present utility model, the cake blank conveying mechanism includes a support; a second power conveyor belt parallel to the first power conveyor belt is horizontally installed on the top of the support.
[0009] As a preferred technical solution of the present utility model, the water spraying mechanism includes a photoelectric sensor fixed on one side of the input end of the second power conveyor belt; a water storage tank is vertically fixed on one side of the photoelectric sensor; a spray head is vertically connected to the bottom of the water storage tank; the spray head is arranged above the second power conveyor belt.
[0010] As a preferred technical solution of the present utility model, the dough conveying assembly includes a pair of second cross beams fixedly arranged side by side in a protection box; the two second cross beams are inserted into the two accommodation openings; a third power conveyor belt is horizontally installed between the two second cross beams; a positioning roller is horizontally connected above the input end of the third power conveyor belt; side support plates are fixedly arranged on the opposite sides of the output end of the third power conveyor belt; a plurality of lane dividing rollers are rotatably connected between the two side support plates.
[0011] As a preferred technical solution of the present utility model, the finished product conveying assembly includes a pair of third crossbeams fixedly arranged side by side inside the protection box; both of the third crossbeams are inserted into the two accommodating openings; a fourth power conveyor belt is horizontally installed between the two third crossbeams.
[0012] As a preferred technical solution of the present utility model, the dough attaching assembly includes a pair of first linear guides installed side by side inside the protection box; both of the first linear guides are arranged parallel to the second crossbeam; the two first linear guides are connected by a second linear guide; a third linear guide is vertically connected to the second linear guide; the output end of the third linear guide is horizontally fixed with a mounting plate; a plurality of air valves are fixedly arranged side by side on the lower surface of the mounting plate; the lower surfaces of the plurality of air valves are vertically connected with negative pressure suction nozzles and positive pressure blowing nozzles, and a die engraving knife is vertically fixed on the lower surface of each air valve; the negative pressure suction nozzles and positive pressure blowing nozzles are arranged inside the die engraving knife.
[0013] The present utility model has the following beneficial effects:
[0014] The present utility model conveys and presses multiple strip-shaped doughs through a dough pressing mechanism, conveys multiple side-by-side arranged biscuit blanks through a biscuit blank conveying mechanism, simultaneously sprays water on the upper surfaces of multiple biscuit blanks in sequence through a water spraying mechanism, then conveys the dough pressed by the dough pressing mechanism through a dough conveying assembly, and then engraves and adsorbs the dough on the dough conveying assembly through a dough attaching assembly. At the same time, the biscuit blank conveying mechanism conveys the water-sprayed biscuit blanks to the finished product conveying assembly, and then the dough attaching assembly conveys and blows the engraved dough onto the upper surface of the biscuit blanks on the finished product conveying assembly, thereby realizing the production of cartoon biscuits. This not only effectively improves the forming efficiency of cartoon biscuits, but also reduces the labor cost and the labor intensity of workers, and at the same time ensures the production efficiency of cartoon biscuits, having a high market application value.
[0015] Of course, it is not necessary for any product implementing the present utility model to achieve all the above-mentioned advantages simultaneously. Description of the Drawings
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0017] Figure 1 It is a schematic structural diagram of a cartoon biscuit forming machine of the present utility model.
[0018] Figure 2 It isFigure 1 Structural schematic diagram from another perspective.
[0019] Figure 3 is Figure 1 structural top view of
[0020] Figure 4 Structural schematic diagram of the dough pressing mechanism of the present utility model.
[0021] Figure 5 is Figure 4 structural front view of
[0022] Figure 6 Relative position schematic diagram between the pressing roller and the material chute of the present utility model.
[0023] Figure 7 is Figure 6 structural front view of
[0024] Figure 8 Structural schematic diagram of the connection between the first rotating shaft and the second rotating shaft of the present utility model.
[0025] Figure 9 Structural schematic diagram of the cake blank conveying mechanism of the present utility model.
[0026] Figure 10 is Figure 9 structural front view of
[0027] Figure 11 Structural schematic diagram of the skin pasting mechanism of the present utility model.
[0028] Figure 12 is Figure 11 structural schematic diagram from another perspective of
[0029] Figure 13 is Figure 11 structural top view of
[0030] Figure 14 Structural schematic diagram of the dough skin attaching assembly of the present utility model.
[0031] Figure 15 Structural schematic diagram of the connection between multiple air valves of the present utility model.
[0032] In the attached drawings, the list of components represented by each reference numeral is as follows:
[0033] 1 - Dough pressing mechanism, 2 - Cake blank conveying mechanism, 3 - Skin attaching mechanism, 4 - Water spraying mechanism, 5 - Protection box, 6 - Dough conveying assembly, 7 - Finished product conveying assembly, 8 - Dough attaching assembly, 101 - Support platform, 102 - First cross beam, 103 - First power conveyor belt, 104 - Loading box, 105 - First rotating shaft, 106 - Second rotating shaft, 107 - Pressing roller, 108 - Chute plate, 109 - Partition bar, 110 - Servo motor, 111 - Gear, 112 - First pulley, 113 - Second pulley, 114 - Third pulley, 115 - Fourth pulley, 201 - Bracket, 202 - Second power conveyor belt, 401 - Photoelectric sensor, 402 - Water storage tank, 403 - Nozzle, 501 - Accommodation port, 601 - Second cross beam, 602 - Third power conveyor belt, 603 - Positioning roller, 604 - Side support plate, 605 - Lane dividing roller, 701 - Third cross beam, 702 - Fourth power conveyor belt, 801 - First linear guide rail, 802 - Second linear guide rail, 803 - Third linear guide rail, 804 - Mounting plate, 805 - Air valve, 806 - Negative pressure suction nozzle, 807 - Positive pressure blowing nozzle, 808 - Die cutting knife. Detailed implementation manners
[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
[0035] Embodiment 1:
[0036] Please refer to Figures 1-3As shown in the figure, the utility model relates to a cartoon biscuit forming machine, which comprises a dough pressing mechanism 1, a biscuit blank conveying mechanism 2 and a dough pasting mechanism 3; the dough pressing mechanism 1 and the biscuit blank conveying mechanism 2 are arranged side by side; a water spraying mechanism 4 is installed above the biscuit blank conveying mechanism 2; the dough pasting mechanism 3 comprises a protective box 5; rectangular accommodating openings 501 are formed in the opposite side walls of the protective box 5; a dough conveying component 6 corresponding to the dough pressing mechanism 1 and a finished product conveying component 7 corresponding to the biscuit blank conveying mechanism 2 are arranged side by side in the protective box 5; the dough conveying component 6 passes through the accommodating opening 501 and is arranged parallel to the output end of the dough pressing mechanism 1; the finished product conveying component 7 passes through the accommodating opening 501 and is arranged parallel to the output end of the biscuit blank conveying mechanism 2; a dough attaching component 8 is installed between the dough conveying component 6 and the finished product conveying component 7. During use, the dough pressing mechanism 1 conveys and presses multiple strip-shaped doughs, the biscuit blank conveying mechanism 2 conveys multiple side-by-side biscuit blanks, the water spraying mechanism 4 sequentially sprays the upper surfaces of the multiple biscuit blanks, then the dough conveying component 6 conveys the dough pressed by the dough pressing mechanism 1, and then the dough attaching component 8 cuts and adsorbs the dough on the dough conveying component 6. At the same time, the biscuit blank conveying mechanism 2 conveys the water-sprayed biscuit blanks to the finished product conveying component 7, and then the dough attaching component 8 conveys and blows the cut dough onto the upper surface of the biscuit blanks on the finished product conveying component 7, so as to realize the production of cartoon biscuits, which not only effectively improves the forming efficiency of cartoon biscuits, but also reduces the labor cost and the labor intensity of workers, and at the same time ensures the production efficiency of cartoon biscuits; in addition, it should be noted that the utility model can produce cartoon biscuits such as pig biscuits, cow biscuits, panda biscuits, rabbit biscuits and other dough pasting products.
[0037] Embodiment 2:
[0038] On the basis of Embodiment 1, as Figures 4-8As shown, the leather pressing mechanism 1 includes a vertically arranged support platform 101; a pair of first beams 102 are horizontally bolted to one side wall of the support platform 101; a conventional first power conveyor belt 103 in the field is horizontally installed between the two first beams 102; the first power conveyor belt 103 is composed of a pair of rollers arranged side by side, a conveyor belt connected between the two rollers, and a stepping motor coaxially connected to one roller; a pair of carrying boxes 104 are arranged side by side at the output end of the first power conveyor belt 103 along the conveying direction of the first power conveyor belt 103; the two carrying boxes 104 The two carrier boxes 104 are both bolted to one side wall of the support platform 101; the opposite side walls of the two carrier boxes 104 are provided with an inlet and outlet; a pair of first rotating shafts 105 parallel to the rollers are connected in rotation from top to bottom in the two carrier boxes 104, and a second rotating shaft 106 is connected to the lower side of each first rotating shaft 105 in parallel; a plurality of pressure rollers 107 are connected to the two pairs of first rotating shafts 105 and the two pairs of second rotating shafts 106 in parallel, and each first rotating shaft 105 is inclined on the side close to the first power conveyor belt 103 and the side away from the first power conveyor belt 103. A material stripping plate 108 is bolted to the material stripping plate 108, which is inserted into the inlet and outlet. Multiple dividing bars 109 are bolted to the upper surface of the material stripping plate 108 in parallel, with a dough guide space corresponding to the pressing roller 107 formed between two adjacent dividing bars 109. One end of a first rotating shaft 105 located below the two carrying boxes 104 is fixedly connected to the output shafts of a pair of servo motors 110, and one end of the first rotating shaft 105 and one end of the second rotating shaft 106 above it are both keyed to gears 111. Adjacent gears 111 mesh with each other. The servo motor 110 is bolted to the carrying box 104; the other ends of the two pairs of first rotating shafts 105 are keyed to the first pulley 112; the other ends of the two pairs of second rotating shafts 106 are keyed to the second pulley 113; each first pulley 112 is connected to the second pulley 113 below it through a synchronous belt transmission, and the third pulley 114 and the fourth pulley 115 are connected side by side on the synchronous belt; the third pulley 114 and the fourth pulley 115 are equivalent to tensioning pulleys; the third pulley 114 and the fourth pulley 115 are both rotatably connected to the carrying box 104. When in use, multiple strips of dough are placed side by side or stacked on the first powered conveyor belt 103, and the strips of dough are placed between two adjacent dividing strips 109. The strips of dough are then passed through the pressure roller 107 on the first rotating shaft 105 and the pressure roller 107 on the second rotating shaft 106 below the first rotating shaft 105, thereby realizing the conveying and pressing of the dough. Doughs of different colors can be pressed together, thereby facilitating the production of multi-colored cartoon biscuits in the shape of eyes, noses, mouths, etc.
[0039] Embodiment three:
[0040] Based on Example 2, Figures 9-10As shown, the pie blank conveying mechanism 2 includes a bracket 201; a second power conveyor belt 202 parallel to the first power conveyor belt 103 is horizontally installed at the top of the bracket 201; the second power conveyor belt 202 is a conventional component in the art, and it is composed of a pair of rollers arranged side by side, a conveyor belt drivingly connected between the two rollers, and a stepping motor coaxially connected to one of the rollers; the water spraying mechanism 4 includes a photoelectric sensor 401 fixed to one side of the input end of the second power conveyor belt 202; the photoelectric sensor 401 is a conventional component in the art; a water storage tank 402 is vertically fixed to one side of the photoelectric sensor 401; a nozzle 403 is vertically connected to the bottom of the water storage tank 402; the nozzle 403 is a conventional electric control nozzle in the art; the nozzle 403 is arranged above the second power conveyor belt 202. During use, by placing multiple pie blanks side by side on the second power conveyor belt 202, when the photoelectric sensor 401 detects a pie blank, the nozzle 403 evenly sprays the water in the water storage tank 402 onto the upper surface of the pie blank, so as to facilitate the subsequent stable adhesion of the dough pieces in the shapes of eyes, mouths, etc. made to the pie blank.
[0041] Embodiment 4:
[0042] Based on Embodiment 3, as Figures 11-15As shown, the dough conveying assembly 6 includes a pair of second crossbeams 601 bolted side by side to the protective box 5; the two second crossbeams 601 are inserted into the two accommodating openings 501; a conventional third power conveyor belt 602 in the field is horizontally installed between the two second crossbeams 601; the third power conveyor belt 602 is composed of a pair of rollers arranged side by side, a conveyor belt connected between the two rollers, and a stepping motor coaxially connected to one roller; a positioning roller 603 is horizontally connected above the input end of the third power conveyor belt 602; the output end of the third power conveyor belt 602 The two opposite sides of the outlet are bolted with side support plates 604; a plurality of lane rollers 605 are rotatably connected between the two side support plates 604; the plurality of lane rollers 605 are arranged according to the outline of an isosceles trapezoid; the finished product conveying assembly 7 includes a pair of third crossbeams 701 bolted side by side to the protective box 5; the two third crossbeams 701 are inserted into the two accommodating ports 501; a conventional fourth power conveyor belt 702 in the field is horizontally installed between the two third crossbeams 701; the fourth power conveyor belt 702 consists of a pair of rollers arranged side by side, a transmission connected to the conveyor belt between the two rollers. The dough skin attaching assembly 8 includes a pair of first linear guide rails 801 installed side by side in the protective box 5; the two first linear guide rails 801 are arranged parallel to the second crossbeam 601; the two first linear guide rails 801 are connected by a second linear guide rail 802; the second linear guide rail 802 is vertically connected to the third linear guide rail 803; the first linear guide rail 801, the second linear guide rail 802 and the third linear guide rail 803 are all conventional structures in the field, which are respectively composed of a linear motor and a guide rail; the third linear guide rail 803 is a plurality of linear guide rails, each of which is connected to the second crossbeam 601. The output end of the linear guide rail 803 is horizontally bolted to a mounting plate 804; a plurality of conventional air valves 805 in this field are fixed side by side on the lower surface of the mounting plate 804; the lower surfaces of the plurality of air valves 805 are vertically connected to a conventional negative pressure suction nozzle 806 in this field and a conventional positive pressure blow nozzle 807 in this field, and a conventional die cutting knife 808 in this field is vertically fixed to the lower surface of each air valve 805; the negative pressure suction nozzle 806 and the positive pressure blow nozzle 807 are arranged on the inner side of the die cutting knife 808; the shape of the die cutting knife 808 is consistent with the contours of the eyes, mouth and nose.In use, the dough sheet pressed by the dough pressing mechanism 1 is conveyed between the third power conveyor belt 602 and the positioning roller 603 and then continuously conveyed by the third power conveyor belt 602. When the dough sheet on the third power conveyor belt 602 corresponds to the position of the air valve 805, the third linear guide rail 803 drives the mounting plate 804 to move downward, prompting the die-cutting knife 808 to press the dough sheet. At the same time, the negative pressure suction nozzle 806 sucks the cut dough sheet and then the mounting plate 804 resets upward. Then, the dough sheet sucked by the negative pressure suction nozzle 806 is conveyed above the cake blank on the fourth power conveyor belt 702 through the second linear guide rail 802. Then, the third linear guide rail 803 drives the mounting plate 804 to move downward. At the same time, the negative pressure suction nozzle 806 cuts off the air supply and the positive pressure blowing nozzle 807 blows the dough sheet onto the upper surface of the cake blank, thus realizing the forming of cartoon cookies. And, when the position of the dough sheet attached to the cake blank is incorrect, the first linear guide rail 801 and the second linear guide rail 802 can be used to make the position of the dough sheet coincide with that of the cake blank. In addition, during the process of the air valve 805 returning from the skin-pasting position to the skin-cutting position, the positive pressure blowing nozzle 807 has been working to blow out the impurities such as flour in the die-cutting knife 808 to prevent affecting the next skin-cutting. Finally, the remaining dough sheet after skin-cutting enters the corresponding recycling box through the diverting roller 605 for repeated use. The diverting roller 605 enables the dough sheets of different colors to enter different recycling boxes so that the colors do not stain each other, which is convenient for the repeated use of the dough sheet and effectively improves the use effect of the entire device.
[0043] The preferred embodiments of the present utility model disclosed above are only used to help illustrate the present utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the present utility model to the specific embodiments described. Obviously, many modifications and variations can be made according to the content of this specification. These embodiments are selected and specifically described in this specification to better explain the principle and practical application of the present utility model, so that those skilled in the technical field can well understand and utilize the present utility model. The present utility model is only limited by the claims and their full scope and equivalents.
Claims
1. A cartoon biscuit forming machine, characterized in that, It includes a dough pressing mechanism (1), a cake blank conveying mechanism (2), and a skin attaching mechanism (3); the dough pressing mechanism (1) is arranged side by side with the cake blank conveying mechanism (2); a water spraying mechanism (4) is installed above the cake blank conveying mechanism (2). The skin attaching mechanism (3) includes a protective box (5); accommodating openings (501) are formed in the opposite side walls of the protective box (5); a dough conveying assembly (6) corresponding to the dough pressing mechanism (1) and a finished product conveying assembly (7) corresponding to the cake blank conveying mechanism (2) are installed side by side in the protective box (5); the dough conveying assembly (6) passes through the accommodating opening (501) and is arranged parallel to the output end of the dough pressing mechanism (1); the finished product conveying assembly (7) passes through the accommodating opening (501) and is arranged parallel to the output end of the cake blank conveying mechanism (2); a dough attaching assembly (8) is installed between the dough conveying assembly (6) and the finished product conveying assembly (7).
2. The cartoon biscuit forming machine according to claim 1, characterized in that, The dough pressing mechanism (1) includes a vertically arranged support table (101); a pair of first cross beams (102) are horizontally fixed to one side wall of the support table (101); a first power conveyor belt (103) is horizontally installed between the two first cross beams (102); a pair of bearing boxes (104) are fixedly arranged side by side at the output end of the first power conveyor belt (103) along the conveying direction of the first power conveyor belt (103); inlet and outlet openings are formed in the opposite side walls of the two bearing boxes (104); a pair of first rotating shafts (105) are rotatably connected side by side from top to bottom in each of the two bearing boxes (104), and a second rotating shaft (106) is rotatably connected in parallel below each first rotating shaft (105); a plurality of pressing rollers (107) are fixedly sleeved side by side on the two pairs of first rotating shafts (105) and the two pairs of second rotating shafts (106), and a plurality of material guiding plates (108) are obliquely fixed to one side of each first rotating shaft (105) close to the first power conveyor belt (103) and on the side away from the first power conveyor belt (103); the material guiding plates (108) are inserted into the inlet and outlet openings; a plurality of partition bars (109) are fixedly arranged side by side on the upper surface of the material guiding plates (108), and a dough guiding space corresponding to the pressing rollers (107) is formed between two adjacent partition bars (109).
3. A cartoon biscuit forming machine according to claim 2, characterized in that, One end of the first rotating shafts (105) located at the lower part of the two bearing boxes (104) is respectively fixedly connected to the output shafts of a pair of servo motors (110), and gears (111) are fixedly sleeved on one end of the first rotating shafts (105) and one end of the second rotating shafts (106) above them; adjacent two gears (111) are meshed with each other; first belt pulleys (112) are fixedly sleeved on the other ends of the two pairs of first rotating shafts (105); second belt pulleys (113) are fixedly sleeved on the other ends of the two pairs of second rotating shafts (106); each first belt pulley (112) is in transmission connection with the second belt pulley (113) below it through a synchronous belt, and a third belt pulley (114) and a fourth belt pulley (115) are in side-by-side transmission connection on the synchronous belt; the third belt pulley (114) and the fourth belt pulley (115) are both rotatably connected in the bearing box (104).
4. A cartoon biscuit forming machine according to claim 2 or 3, characterized in that, The cake blank conveying mechanism (2) includes a bracket (201); a second power conveyor belt (202) parallel to the first power conveyor belt (103) is horizontally installed at the top of the bracket (201).
5. A cartoon biscuit forming machine according to claim 4, characterized in that, The water spraying mechanism (4) includes a photoelectric sensor (401) fixed on one side of the input end of the second power conveyor belt (202); a water storage tank (402) is vertically fixed on one side of the photoelectric sensor (401); a spray head (403) is vertically connected to the bottom of the water storage tank (402); the spray head (403) is arranged above the second power conveyor belt (202).
6. A cartoon biscuit forming machine according to claim 5, characterized in that, The dough conveying assembly (6) includes a pair of second cross beams (601) fixedly arranged side by side in the protection box (5); the two second cross beams (601) are both inserted into the two accommodating openings (501); a third power conveyor belt (602) is horizontally installed between the two second cross beams (601); a positioning roller (603) is horizontally connected above the input end of the third power conveyor belt (602); side support plates (604) are fixed on both opposite sides of the output end of the third power conveyor belt (602); a plurality of lane dividing rollers (605) are rotatably connected between the two side support plates (604).
7. A cartoon biscuit forming machine according to claim 6, characterized in that, The finished product conveying assembly (7) includes a pair of third cross beams (701) fixedly arranged side by side in the protection box (5); the two third cross beams (701) are both inserted into the two accommodating openings (501); a fourth power conveyor belt (702) is horizontally installed between the two third cross beams (701).
8. A cartoon biscuit molding machine according to claim 7, characterized in that, The dough sheet attaching component (8) includes a pair of first linear guide rails (801) arranged side by side in the protection box (5); both of the first linear guide rails (801) are arranged parallel to the second cross beam (601); the two first linear guide rails (801) are connected by a second linear guide rail (802); a third linear guide rail (803) is vertically connected to the second linear guide rail (802); an output end of the third linear guide rail (803) is horizontally fixed with a mounting plate (804); a plurality of air valves (805) are fixed side by side on a lower surface of the mounting plate (804); a negative pressure suction nozzle (806) and a positive pressure blowing nozzle (807) are vertically connected to lower surfaces of the plurality of air valves (805), and a die engraving knife (808) is vertically fixed on a lower surface of each air valve (805); the negative pressure suction nozzle (806) and the positive pressure blowing nozzle (807) are arranged inside the die engraving knife (808).
Citation Information
Cited By
Cartoon biscuit forming machine
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