Garland conveying device of food manufacturing machine
By designing a latte art conveying device for a food manufacturing machine, the conveyor belt driven by a servo motor and the clamping cylinder are used to achieve precise positioning and stable conveying of food manufacturing containers, solving the problem of latte art pattern deviation and improving conveying efficiency and aesthetics.
Patent Information
- Application Number
- CN202422547874.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-22
AI Technical Summary
Existing food manufacturing machines are unable to accurately position food manufacturing containers, resulting in deviations in the position, size, and shape of the latte art pattern, affecting the aesthetics and consistency. In addition, the frozen baking trays slip due to the liquefied water vapor and cannot be accurately positioned and transported.
A latte art conveying device for a food making machine was designed, which includes a conveying component, a limiting component, a moving component, and a rotating component. Precise positioning is achieved through a conveyor belt driven by a servo motor and a clamping cylinder. A drying fan is combined to treat moisture and optimize the hot air flow path.
It achieves stable transportation and precise positioning of food manufacturing containers, ensures the beauty and consistency of latte art effects, improves transportation efficiency and reduces energy loss.
Smart Images

Figure CN223356550U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food making machines, and specifically to a latte art conveying device of a food making machine. Background Art
[0002] Food making machines, also known as food machinery, refer to mechanical equipment used in the process of making food, mainly used to process food raw materials into edible products.
[0003] With the popularization of latte art culture, latte art has become an indispensable part of food manufacturing. However, in traditional food manufacturing, latte art operations mostly rely on manual labor, which is not only inefficient but also difficult to ensure the consistency and aesthetics of the latte art patterns. It is necessary to develop a latte art conveying device for a food manufacturing machine to perform conveying operations on food manufacturing containers.
[0004] Chinese Patent Publication No.: CN205526253U discloses "A Conveyor", which solves the problem of reduced production efficiency caused by the need to carry obstacles when the conveyor moves during operation. The key points of its technical solution are a conveyor, including a frame, rollers rotatably connected to the frame, and a conveying component for conveying bagged grain. The conveying component is installed on the frame, and a friction component for braking the rollers and a control component for driving the friction component to rise and fall are installed on the frame, thereby facilitating the braking of the conveyor and improving production efficiency.
[0005] The above-mentioned prior art is equipped with a friction component for roller braking and a control component for driving the friction component to rise and fall on the frame, which achieves the purpose of facilitating the braking of the conveyor and thus improving production efficiency. However, the existing device is unable to accurately position the food manufacturing container during use. The latte art equipment cannot accurately position the food manufacturing container during operation, which will cause deviations in the position, size, and shape of the latte art pattern, affecting the aesthetics and consistency of the latte art effect. In addition, the baking tray after freezing will slip due to the water vapor generated by liquefaction and cannot be accurately positioned and conveyed. Utility Model Content
[0006] The purpose of the present invention is to provide a latte art conveying device for a food manufacturing machine to solve the problem that the food manufacturing container cannot be accurately positioned in the above-mentioned background technology. The latte art equipment cannot accurately position the food manufacturing container during operation, which will cause deviations in the position, size and shape of the latte art pattern, affecting the beauty and consistency of the latte art effect. In addition, the baking tray after freezing will slip due to the water vapor generated by liquefaction and cannot be accurately positioned and conveyed.
[0007] In order to solve the above technical problems, the present invention provides the following technical solutions: a latte art conveying device for a food making machine, comprising a frame, a conveying assembly mounted on the upper end of the frame, a limit assembly disposed on the upper end of the conveying assembly, a moving assembly mounted on both sides of the conveying assembly, a rotating assembly mounted on one side of the moving assembly, and a drying fan disposed on one side of the rotating assembly;
[0008] The conveying assembly includes a first servo motor, a first rotating rod is installed at the output end of the first servo motor, an outer side of the first rotating rod is provided with an external conveyor belt, a second servo motor is provided on one side of the external conveyor belt, a second rotating rod is installed at the output end of the second servo motor, an outer side of the second rotating rod is provided with a synchronous wheel, an outer side of the synchronous wheel is provided with an internal conveyor belt, a rotary clamping cylinder is installed at the upper end of the internal conveyor belt, and a baking tray is placed at the upper end of the rotary clamping cylinder;
[0009] The limiting assembly includes a limiting ring, a placement chamber is provided inside the limiting ring, a spring is provided inside the placement chamber, one side of the spring is connected to a limiting block, one side of the limiting block is provided with a protrusion, and one side of the protrusion is provided with a stop block;
[0010] The moving assembly includes a mounting plate, a third servo motor is mounted on one side of the mounting plate, a screw is mounted on the output end of the third servo motor, a moving block is sleeved on the outer side of the screw, a sliding groove is opened on the mounting plate at a position corresponding to the movement of the moving block, and a fixed block is mounted on one side of the moving block;
[0011] The rotating assembly includes a bracket, a fixed bin is installed on one side of the bracket, a fourth servo motor is installed on one side of the fixed bin, a first gear is installed on the output end of the fourth servo motor, a second gear is provided on one side of the first gear, a flip rod is provided on one side of the second gear, and a rotating block is provided on the outer side of the flip rod.
[0012] Preferably, the first servo motor is detachably arranged on one side of the frame, the output end of the first servo motor is detachably connected to the first rotating rod, and the external conveyor belts are in multiple groups, which are symmetrically arranged on the outside of the first rotating rod.
[0013] Preferably, the external conveyor belt matches the first rotating rod, the second servo motor is detachably arranged on the upper end of the frame, and the output end of the second servo motor is detachably connected to the second rotating rod.
[0014] Preferably, there are multiple groups of synchronous wheels, which are symmetrically arranged on the outside of the second rotating rod, and there are multiple groups of internal conveyor belts, which are symmetrically arranged on both sides of the rotary clamping cylinder, and the synchronous wheels match the internal conveyor belts.
[0015] Preferably, there are multiple groups of limiting rings, which are evenly and equidistantly arranged on the baking tray, and there are multiple groups of placement bins, which are symmetrically arranged in the limiting rings.
[0016] Preferably, the limiting block is slidably arranged in the placement chamber, the protrusion passes through the placement chamber and extends to the outside of the limiting ring, and the stop block is detachably arranged on one side of the protrusion.
[0017] Preferably, there are two groups of mounting plates, which are symmetrically arranged on the upper end of the frame. The output end of the third servo motor is detachably connected to the lead screw, and the moving block matches the lead screw.
[0018] Preferably, one end of the movable block is slidably connected to the sliding groove, and the brackets are in multiple groups, and the multiple groups of brackets are symmetrically arranged on one side of the fixed block.
[0019] Preferably, the fourth servo motor is detachably arranged on one side of the fixed bin, and the output end of the fourth servo motor is detachably connected to the first gear, and the first gear is meshed with the second gear.
[0020] Preferably, the flip rod passes through the bracket and extends to the outside thereof, the flip rod is detachably connected to the rotating block, and the drying fan is detachably arranged on one side of the rotating block.
[0021] Compared with the prior art, the beneficial effects achieved by this utility are:
[0022] First, the utility model provides a conveying component to prevent the frozen baking tray from slipping due to water vapor generated by liquefaction and being unable to be accurately positioned and conveyed. During the operation, the food manufacturing container is accurately positioned to ensure the beauty and consistency of the latte art effect. The conveying structure is divided into external conveying and internal conveying. The external conveying only performs ordinary conveying, and the internal conveying realizes precise positioning and conveying. The baking tray is conveyed to the appropriate position by the external conveyor belt. The frozen baking tray enters the internal conveyor belt position B from the feed port A through the external conveyor belt. When the baking tray enters the B position, the external conveyor belt makes a corresponding action through photoelectric sensing. The two rotary clamping cylinders on the internal conveyor belt clamp and position the baking tray, and then the second servo motor drives the second rotating rod to rotate, the second rotating rod drives the synchronous wheel to rotate, and the synchronous wheel drives the internal conveyor belt to drive. The internal conveyor belt makes the baking tray move stably and orderly to the C position. When the baking tray enters the C position, the rotary clamping cylinder is released and it moves quickly to the B position, waiting for the next baking tray to enter. The released baking tray enters the next work station through the external conveyor belt.
[0023] Secondly, the present invention provides a limit assembly, which facilitates the clamping of food manufacturing containers of different sizes, ensures that the food manufacturing containers maintain a stable posture and position during transportation, and improves the stability of the movement of the food manufacturing containers. The cross-section of the cup body of the food manufacturing container is a trapezoidal structure. The bottom end of the food manufacturing container presses the block to move, and the movement of the block causes the protrusion to move. The movement of the protrusion drives the limit block to move, causing the spring to compress, and the block is used to press against the outside of the food manufacturing container.
[0024] Third, the present invention facilitates the drying operation of residual moisture at different positions on the external conveyor belt through the provision of a moving component, thereby ensuring the stability of the external conveyor belt in conveying the baking tray. By starting the third servo motor, the third servo motor drives the screw rod to rotate, the rotation of the screw rod drives the moving block to move, and the movement of the moving block drives the fixed block to move, thereby conveniently driving the drying fan to move and perform drying operations on residual moisture at different positions on the external conveyor belt.
[0025] Fourth, the present invention provides a rotating component to facilitate adjustment of the angle of the drying fan, optimize the flow path of hot air, reduce energy loss, shorten drying time, and improve efficiency. By starting the fourth servo motor, the fourth servo motor drives the first gear to rotate, the rotation of the first gear drives the second gear to rotate, the rotation of the second gear drives the flip rod to rotate, the rotation of the flip rod drives the rotating block to rotate, and the rotation of the rotating block adjusts the angle of the drying fan. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is a schematic diagram of the structure of this utility;
[0027] Figure 2 This is a cross-sectional view for practical use;
[0028] Figure 3 This is a cross-sectional view of the practical rotary clamping cylinder;
[0029] Figure 4 Practical Figure 1 A magnified view of the structure at point A;
[0030] Figure 5 This is a schematic structural diagram of the practical rotating assembly;
[0031] Figure 6 Schematic diagram of the structure of the practical limit assembly.
[0032] In the figure: 1. frame; 2. conveying assembly; 201. first servo motor; 202. first rotating rod; 203. external conveyor belt; 204. second servo motor; 205. second rotating rod; 206. synchronous wheel; 207. internal conveyor belt; 208. rotary clamping cylinder; 209. baking tray; 3. limiting assembly; 301. limiting ring; 302. placing bin; 303. spring; 304. limiting block; 305. protrusion; 306. stop block; 4. moving assembly; 401. mounting plate; 402. third servo motor; 403. screw rod; 404. moving block; 405. slide; 406. fixed block; 5. rotating assembly; 501. bracket; 502. fixed bin; 503. fourth servo motor; 504. first gear; 505. second gear; 506. flip rod; 507. rotating block; 6. drying fan DETAILED DESCRIPTION
[0033] The following will be combined with the drawings in the practical embodiment to clearly and completely describe the technical solutions in the practical embodiment. Obviously, the described embodiment is only a part of the embodiment of this utility, not all of the embodiments. Based on the embodiment of this utility, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this utility.
[0034] See also Figures 1-6A food processing machine conveying device for a latte art comprises a frame 1, a conveying assembly 2 is mounted on the upper end of the frame 1, a limit assembly 3 is provided on the upper end of the conveying assembly 2, and a moving assembly 4 is mounted on both sides of the conveying assembly 2, a rotating assembly 5 is mounted on one side of the moving assembly 4, and a drying fan 6 is provided on one side of the rotating assembly 5; the conveying assembly 2 comprises a first servo motor 201, a first rotating rod 202 is mounted on the output end of the first servo motor 201, and an outer sleeve of the first rotating rod 202 is provided with an outer conveyor belt 2 03, a second servo motor 204 is provided on one side of the external conveyor belt 203, a second rotating rod 205 is installed on the output end of the second servo motor 204, a synchronous wheel 206 is provided on the outer side of the second rotating rod 205, an internal conveyor belt 207 is provided on the outer side of the synchronous wheel 206, a rotary clamping cylinder 208 is provided on the upper end of the internal conveyor belt 207, a baking tray 209 is placed on the upper end of the rotary clamping cylinder 208; the limiting assembly 3 includes a limiting ring 301, and a placement bin 309 is provided inside the limiting ring 301. 2. A spring 303 is provided inside the placement bin 302, one side of the spring 303 is connected to a limit block 304, one side of the limit block 304 is provided with a protrusion 305, and one side of the protrusion 305 is provided with a stop block 306; the moving assembly 4 includes a mounting plate 401, one side of the mounting plate 401 is provided with a third servo motor 402, the output end of the third servo motor 402 is provided with a screw rod 403, the outer side of the screw rod 403 is provided with a moving block 404, and the mounting plate 401 moves relative to the moving block 404 A slide groove 405 is provided at the corresponding position, and a fixed block 406 is installed on one side of the moving block 404; the rotating component 5 includes a bracket 501, a fixed warehouse 502 is installed on one side of the bracket 501, a fourth servo motor 503 is installed on one side of the fixed warehouse 502, a first gear 504 is installed on the output end of the fourth servo motor 503, a second gear 505 is provided on one side of the first gear 504, a flip rod 506 is provided on one side of the second gear 505, and a rotating block 507 is sleeved on the outer side of the flip rod 506.
[0035] Through the above technical solution, by setting up the conveying component 2, it is avoided that the baking tray after freezing will not slip due to the water vapor generated by liquefaction, making it impossible to accurately position and convey. During the operation, the food manufacturing container is accurately positioned to ensure the beauty and consistency of the latte art effect. The conveying structure is divided into external conveying and internal conveying. The external conveying is only for ordinary conveying, and the internal conveying realizes accurate positioning and conveying. The baking tray 209 is conveyed to the appropriate position by the external conveyor belt 203. The frozen baking tray 209 enters the internal conveyor belt 207B position from the feed port A position through the external conveyor belt 203. When the baking tray 209 enters the B position, the external conveyor belt 203 makes a corresponding action through the photoelectric sensing, and the internal conveyor belt 207 The two rotating clamping cylinders 208 on the upper portion clamp the positioning baking tray 209, and then the second servo motor 204 drives the second rotating rod 205 to rotate, the second rotating rod 205 drives the synchronous wheel 206 to rotate, and the synchronous wheel 206 drives the internal conveyor belt 207 to transmit. The internal conveyor belt 207 makes the baking tray 209 move to the C position stably and orderly. When the baking tray 209 enters the C position, the rotating clamping cylinder 208 is released and quickly moves to the B position, waiting for the next baking tray 209 to enter. The released baking tray 209 enters the next station through the external conveyor belt 203. The limit assembly 3 is provided to facilitate the clamping of food manufacturing containers of different sizes, ensuring that the food manufacturing containers remain stable during the transportation process. The fixed posture and position improve the stability of the movement of the food manufacturing container. The cross-section of the cup body of the food manufacturing container is a trapezoidal structure. The bottom end of the food manufacturing container presses the block 306 to move. The block 306 moves to move the protrusion 305. The movement of the protrusion 305 drives the limit block 304 to move, so that the spring 303 is compressed. The block 306 is used to press against the outside of the food manufacturing container. Through the provided moving component 4, it is convenient to dry the water vapor remaining at different positions on the external conveyor belt 203, and ensure the stability of the external conveyor belt 203 in conveying the baking tray 209. By starting the third servo motor 402, the third servo motor 402 drives the screw rod 403 to rotate, and the rotation of the screw rod 403 drives the moving Block 404 moves, and the movement of the moving block 404 drives the fixed block 406 to move, which is convenient for driving the drying fan 6 to move, and drying the residual moisture at different positions on the external conveyor belt 203. Through the provided rotating component 5, the angle of the drying fan 6 is conveniently adjusted, the flow path of the hot air is optimized, the energy loss is reduced, the drying time is shortened, and the efficiency is improved. By starting the fourth servo motor 503, the fourth servo motor 503 drives the first gear 504 to rotate, the rotation of the first gear 504 drives the second gear 505 to rotate, the rotation of the second gear 505 drives the flip rod 506 to rotate, the rotation of the flip rod 506 drives the rotating block 507 to rotate, and the rotating block 507 rotates to adjust the angle of the drying fan 6.
[0036] Specifically, the first servo motor 201 is detachably arranged on one side of the frame 1 , the output end of the first servo motor 201 is detachably connected to the first rotating rod 202 , and there are multiple groups of external conveyor belts 203 symmetrically arranged on the outside of the first rotating rod 202 .
[0037] Through the above technical solution, the first servo motor 201 is connected to an external power supply and a controller to ensure the independent operation of each device. The first servo motor 201 is used to drive the first rotating rod 202 to rotate. The rotation of the first rotating rod 202 drives the external conveyor belt 203 to convey the baking tray 209 placed on the external conveyor belt 203. Multiple groups of symmetrically arranged external conveyor belts 203 ensure the stability of the conveying structure.
[0038] Specifically, the external conveyor belt 203 matches the first rotating rod 202 , the second servo motor 204 is detachably provided on the upper end of the frame 1 , and the output end of the second servo motor 204 is detachably connected to the second rotating rod 205 .
[0039] Through the above technical solution, the second servo motor 204 is connected to an external power supply and controller to ensure the independent operation of each device. The second servo motor 204 is used to drive the second rotating rod 205 to rotate, and the rotation of the second rotating rod 205 drives the multiple sets of synchronous wheels 206 to rotate.
[0040] Specifically, there are multiple groups of synchronous wheels 206, which are symmetrically arranged on the outside of the second rotating rod 205, and there are multiple groups of internal conveyor belts 207, which are symmetrically arranged on both sides of the rotating clamping cylinder 208. The synchronous wheels 206 are matched with the internal conveyor belts 207.
[0041] Through the above technical solution, the second rotating rod 205 is used to drive the synchronous wheel 206 to rotate, and the synchronous wheel 206 drives the internal conveyor belt 207 to transmit. The internal conveyor belt 207 enables the rotating clamping cylinder 208 to clamp and position the baking tray 209 and move stably and orderly. The rotating clamping cylinder 208 is a prior art and will not be described in detail here. The rotating clamping cylinder 208 is divided into two groups, which is convenient for clamping the two ends of the baking tray 209.
[0042] Specifically, there are multiple groups of limiting rings 301 , which are evenly and equidistantly arranged on the baking tray 209 , and there are multiple groups of placing bins 302 , which are symmetrically arranged inside the limiting rings 301 .
[0043] Through the above technical solution, the food manufacturing container can be conveniently placed in the limiting ring 301, which is convenient for transporting multiple groups of food manufacturing containers and convenient for setting multiple groups of blocks 306 to uniformly limit the outer side of the food manufacturing container and improve stability.
[0044] Specifically, the limiting block 304 is slidably arranged in the placement chamber 302 , the protrusion 305 passes through the placement chamber 302 and extends to the outside of the limiting ring 301 , and the stop block 306 is detachably arranged on one side of the protrusion 305 .
[0045] Through the above technical solution, the limit block 304 prevents the protrusion 305 from excessive movement, ensuring the stability and safety of the structure. The abutment block 306 set on one side of the protrusion 305 can be easily abutted against the outside of the food manufacturing container, improving its movement stability.
[0046] Specifically, there are two groups of mounting plates 401 symmetrically arranged on the upper end of the frame 1 . The output end of the third servo motor 402 is detachably connected to the screw rod 403 , and the moving block 404 matches the screw rod 403 .
[0047] Through the above technical solution, the symmetrically arranged mounting plate 401 facilitates the drying operation of the symmetrically arranged external conveyor belt 203, thereby preventing moisture from remaining on the upper end of the external conveyor belt 203 and affecting the conveying effect. The third servo motor 402 is connected to an external power supply and a controller to ensure the independent operation of each device. The third servo motor 402 drives the screw rod 403 to rotate, and the rotation of the screw rod 403 drives the moving block 404 to move.
[0048] Specifically, one end of the moving block 404 is slidably connected to the sliding groove 405 , and there are multiple groups of brackets 501 , which are symmetrically arranged on one side of the fixed block 406 .
[0049] Through the above technical solution, the slide groove 405 ensures the stability of the movement of the moving block 404, and the symmetrically arranged brackets 501 play a certain supporting role on the flip rod 506, ensuring the stability of the rotation of the flip rod 506.
[0050] Specifically, the fourth servo motor 503 is detachably provided on one side of the fixed compartment 502 , and the output end of the fourth servo motor 503 is detachably connected to the first gear 504 , and the first gear 504 is meshed with the second gear 505 .
[0051] Through the above technical solution, the fourth servo motor 503 is connected to an external power supply and a controller to ensure the independent operation of each device. The fourth servo motor 503 is used to drive the first gear 504 to rotate, and the rotation of the first gear 504 drives the second gear 505 meshing with it to rotate.
[0052] Specifically, the flip rod 506 passes through the bracket 501 and extends to the outside thereof. The flip rod 506 is detachably connected to the rotating block 507 , and the drying fan 6 is detachably arranged on one side of the rotating block 507 .
[0053] Through the above technical solution, the turning rod 506 is rotated to drive the rotating block 507 to rotate, and the rotating block 507 rotates to adjust the angle of the drying fan 6. The drying fan 6 is adjusted to a suitable angle to optimize the flow path of the hot air and reduce energy loss. The drying fan 6 is an existing technology and will not be described in detail here.
[0054] During use, when it is necessary to transport the food manufacturing container, the first servo motor 201 is started, and the first servo motor 201 drives the first rotating rod 202 to rotate. The rotation of the first rotating rod 202 drives the external conveyor belt 203 to transport the baking tray 209. The frozen baking tray 209 enters the position B of the internal conveyor belt 207 from the feed port A through the external conveyor belt 203. When the baking tray 209 enters the position B, the external conveyor belt 203 makes a corresponding action through photoelectric sensing, and the two rotary clamping cylinders 208 on the internal conveyor belt 207 are started to clamp and position the baking tray 209. The second servo motor The machine 204 drives the second rotating rod 205 to rotate, and the second rotating rod 205 drives the synchronous wheel 206 to rotate, and the synchronous wheel 206 drives the internal conveyor belt 207 to transmit. The internal conveyor belt 207 enables the baking tray 209 clamped and positioned by the rotary clamping cylinder 208 to move stably and orderly to the C position. When the baking tray 209 enters the C position, the rotary clamping cylinder 208 is released, and the rotary clamping cylinder 208 quickly moves to the B position, waiting for the next baking tray 209 to enter. The released baking tray 209 enters the next station through the external conveyor belt 203. When it is necessary to clamp food manufacturing containers of different sizes, the food manufacturing The bottom end of the food manufacturing container presses the block 306 to move, and the block 306 moves to move the protrusion 305, and the protrusion 305 moves to drive the limit block 304 to move, and the limit block 304 moves to compress the spring 303, and the block 306 is pressed against the outside of the food manufacturing container. When it is necessary to dry the residual moisture at different positions on the external conveyor belt 203, the third servo motor 402 is started, and the third servo motor 402 drives the screw rod 403 to rotate, and the rotation of the screw rod 403 drives the moving block 404 to move, and the movement of the moving block 404 drives the fixed block 406 to move, and the movement of the fixed block 406 drives the rotating assembly 5 to move. The rotating assembly 5 moves, driving the drying fan 6 to move, and performs a drying operation on the residual moisture at different positions on the external conveyor belt 203. When it is necessary to adjust to a suitable angle for drying operation, the fourth servo motor 503 is started, and the fourth servo motor 503 drives the first gear 504 to rotate. The rotation of the first gear 504 drives the second gear 505 to rotate. The rotation of the second gear 505 drives the flip rod 506 to rotate. The rotation of the flip rod 506 drives the rotating block 507 to rotate. The rotating block 507 rotates to adjust the angle of the drying fan 6. When it is adjusted to a suitable angle, the flow path of the hot air is optimized and energy loss is reduced.
[0055] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit thereof, and the scope is defined by the appended claims and their equivalents.
Claims
1. A food processing machine conveying device for a latte art, comprising a frame (1), characterized in that: A conveying assembly (2) is installed at the upper end of the frame (1), a limiting assembly (3) is provided at the upper end of the conveying assembly (2), and moving assemblies (4) are installed on both sides of the conveying assembly (2), a rotating assembly (5) is installed on one side of the moving assembly (4), and a drying fan (6) is provided on one side of the rotating assembly (5); The conveying assembly (2) includes a first servo motor (201), an output end of the first servo motor (201) is equipped with a first rotating rod (202), an outer sleeve of the first rotating rod (202) is provided with an external conveyor belt (203), a second servo motor (204) is provided on one side of the external conveyor belt (203), an output end of the second servo motor (204) is equipped with a second rotating rod (205), an outer sleeve of the second rotating rod (205) is provided with a synchronous wheel (206), an outer sleeve of the synchronous wheel (206) is provided with an internal conveyor belt (207), a rotary clamping cylinder (208) is installed on the upper end of the internal conveyor belt (207), and a baking tray (209) is placed on the upper end of the rotary clamping cylinder (208); The limiting assembly (3) comprises a limiting ring (301), a placement chamber (302) is provided inside the limiting ring (301), a spring (303) is provided inside the placement chamber (302), one side of the spring (303) is connected to a limiting block (304), one side of the limiting block (304) is provided with a protrusion (305), and one side of the protrusion (305) is provided with a stop block (306); The moving assembly (4) includes a mounting plate (401), a third servo motor (402) is mounted on one side of the mounting plate (401), a screw rod (403) is mounted on the output end of the third servo motor (402), a moving block (404) is sleeved on the outer side of the screw rod (403), a sliding groove (405) is provided on the mounting plate (401) at a position corresponding to the movement of the moving block (404), and a fixed block (406) is mounted on one side of the moving block (404); The rotating assembly (5) comprises a bracket (501), a fixed bin (502) is mounted on one side of the bracket (501), a fourth servo motor (503) is mounted on one side of the fixed bin (502), a first gear (504) is mounted on the output end of the fourth servo motor (503), a second gear (505) is mounted on one side of the first gear (504), a flip rod (506) is mounted on one side of the second gear (505), and a rotating block (507) is sleeved on the outer side of the flip rod (506).
2. The garland conveying device for a food production machine according to claim 1, characterized in that: The first servo motor (201) is detachably arranged on one side of the frame (1); the output end of the first servo motor (201) is detachably connected to the first rotating rod (202); the external conveyor belts (203) are multiple groups, and the multiple groups of external conveyor belts (203) are symmetrically arranged on the outside of the first rotating rod (202).
3. The garland conveying device for a food production machine according to claim 1, characterized in that: The external conveyor belt (203) matches the first rotating rod (202), the second servo motor (204) is detachably arranged at the upper end of the frame (1), and the output end of the second servo motor (204) is detachably connected to the second rotating rod (205).
4. The garland conveying device for a food production machine according to claim 1, characterized in that: There are multiple groups of synchronous wheels (206), which are symmetrically arranged on the outside of the second rotating rod (205); there are multiple groups of internal conveyor belts (207), which are symmetrically arranged on both sides of the rotating clamping cylinder (208); and the synchronous wheels (206) are matched with the internal conveyor belts (207).
5. The garland conveying device for a food production machine according to claim 1, characterized in that: There are multiple groups of the limiting rings (301), which are evenly and equidistantly arranged on the baking tray (209); there are multiple groups of the placing bins (302), which are symmetrically arranged in the limiting rings (301).
6. The garland conveying device for a food production machine according to claim 1, characterized in that: The limiting block (304) is slidably arranged in the placement chamber (302), the protrusion (305) penetrates the placement chamber (302) and extends to the outside of the limiting ring (301), and the stop block (306) is detachably arranged on one side of the protrusion (305).
7. The garland conveying device for a food production machine according to claim 1, characterized in that: The mounting plates (401) are in two groups, and the two groups of mounting plates (401) are symmetrically arranged on the upper end of the frame (1). The output end of the third servo motor (402) is detachably connected to the screw rod (403), and the moving block (404) matches the screw rod (403).
8. The garland conveying device for a food production machine according to claim 1, characterized in that: One end of the movable block (404) is slidably connected to the slide groove (405), and the brackets (501) are multiple groups, and the multiple groups of brackets (501) are symmetrically arranged on one side of the fixed block (406).
9. The garland conveying device for a food production machine according to claim 1, characterized in that: The fourth servo motor (503) is detachably arranged on one side of the fixed bin (502), and the output end of the fourth servo motor (503) is detachably connected to the first gear (504), and the first gear (504) is meshed with the second gear (505).
10. The garland conveying device for a food production machine according to claim 1, characterized in that: The flip rod (506) passes through the bracket (501) and extends to the outside thereof. The flip rod (506) is detachably connected to the rotating block (507). The drying fan (6) is detachably arranged on one side of the rotating block (507).
Citation Information
Patent Citations
Conveyer
CN205526253U