Device for arranging fish tofu before stringing
By designing a pre-arrangement device for fish tofu before skewering, the fish tofu is automatically arranged using a hopper, conveyor belt, and a stirring mechanism, which solves the problems of high labor intensity, time and effort required for manual arrangement and improves skewering efficiency.
Patent Information
- Application Number
- CN202422740858.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-11
AI Technical Summary
In existing technologies, fish tofu needs to be manually arranged into a string before it can be skewered, which is labor-intensive, time-consuming, and affects skewering efficiency.
A fish tofu skewering arrangement device was designed, including a hopper, a first conveyor belt, a stirring mechanism, and an electrical control component. The hopper holds the fish tofu, the first conveyor belt transports it, and the stirring mechanism automatically arranges the fish tofu into strings. The electrical control component enables automatic control.
This technology enables the automatic arrangement of fish tofu into strings, reducing manual labor intensity and improving skewering efficiency.
Smart Images

Figure CN223591961U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the food processing technical field, more specifically, relate to a fish bean curd stringing front arrangement device. BACKGROUND
[0002] Fish bean curd is also called fried fish cake, which is in the form of a square structure, mainly made of fish meat, and is extruded into a block shape by mixing other auxiliary materials with the fish meat paste. It is made by curing and frying. It has a good appearance of golden yellow and can eliminate fishy smell, so it is favored by consumers. Fish bean curd products are relatively elastic, with fine and glossy cutting surface without bubbles, and have the unique flavor of fried fish cake. In the processing of fish bean curd, multiple fish bean curds are threaded with a plate-shaped bamboo stick, which facilitates the packaging of fish bean curd products. Fish bean curd threading methods include manual threading and threading equipment. However, before threading, multiple fish bean curds need to be arranged in a string shape manually for threading. That is, multiple fish bean curds are placed in the fish bean curd threading mold by hand, and after the multiple fish bean curds are arranged, they are threaded with a bamboo stick by hand or by equipment. However, manually arranging multiple fish bean curds in a string shape is troublesome, labor-intensive, time-consuming and laborious, and has low automation, which also affects the threading efficiency. SUMMARY
[0003] The utility model aims at providing a fish bean curd stringing front arrangement device, which aims to solve the technical problem of arranging multiple fish bean curds in a string shape manually before threading in the prior art, which is labor-intensive, time-consuming and laborious, and also affects the threading efficiency.
[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of providing a fish bean curd stringing front arrangement device, which comprises:
[0005] A hopper is used to accommodate multiple fish bean curds, and one side is provided with an outlet.
[0006] A first conveyor belt is arranged on the inside bottom of the hopper. The first conveyor belt has a first input end and a first output end. The conveying direction of the first conveyor belt is from the first input end to the first output end. The first input end is arranged close to the end of the hopper away from the outlet, and the first output end passes through the outlet and is located outside the hopper. After multiple fish bean curds are placed in the hopper, they fall onto the first input end. The first conveyor belt is suitable for conveying multiple groups of string-shaped fish bean curds arranged at intervals outside the hopper.
[0007] A poking mechanism is rotatably connected to the inside of the hopper and located above the first conveyor belt. The poking mechanism is suitable for moving multiple fish bean curds located at the upper end of the first conveyor belt and arranging them into multiple groups of string-shaped fish bean curds arranged at intervals on the first conveyor belt.
[0008] An electric control assembly is electrically connected to the first conveying belt and the poking mechanism respectively and controls the operation of the first conveying belt and the poking mechanism respectively.
[0009] As another embodiment of the present application, the fish tofu skewering arrangement further comprises:
[0010] A conveyor has a second input end and a second output end, the second input end is located below the first output end, and the conveyor is adapted to receive the plurality of groups of fish tofu skewers output from the first output end and to convey the plurality of groups of fish tofu skewers in a straight line.
[0011] As another embodiment of the present application, the first conveying belt comprises a plurality of placement plates connected end to end along the length direction of the first conveying belt, and each placement plate is provided with a placement cavity adapted to accommodate a plurality of fish tofu skewers at the upper end of the placement plate.
[0012] As another embodiment of the present application, the placement cavity extends through both sides of the first conveying belt near the end of the width direction of the first conveying belt, and the placement cavity comprises a plurality of cavities connected end to end along the width direction of the first conveying belt, and each cavity is adapted to accommodate a piece of fish tofu inside.
[0013] As another embodiment of the present application, the minimum width of the placement cavity inside along the length direction of the first conveying belt is greater than the outer diameter of the bamboo stick, and the bamboo stick is inserted into the placement cavity along the width direction of the first conveying belt and passes through a plurality of fish tofu, so that a plurality of fish tofu are skewered.
[0014] As another embodiment of the present application, the poking mechanism is a plurality of and is connected to the inside of the hopper in a spaced manner, both ends of the poking mechanism are rotatably connected with the side of the hopper and are used to push the fish tofu away from the outlet, so that a plurality of fish tofu fall into the placement cavity and are arranged in a skewer shape.
[0015] As another embodiment of the present application, the poking mechanism comprises:
[0016] A rotating shaft is arranged horizontally and rotatably connected with both sides of the hopper, and one end of the rotating shaft passes through the side of the hopper.
[0017] A motor is arranged on the outer wall of the hopper and is drivingly connected with one end of the rotating shaft, and the motor is used to drive the rotating shaft to rotate, and the motor is electrically connected with the electric control assembly and the operation is controlled by the electric control assembly.
[0018] A sleeve is sleeved on the rotating shaft and located inside the hopper, and the sleeve is fixedly connected with the rotating shaft.
[0019] A plurality of groups of the poking teeth are arranged along the outer circumference of the sleeve and form an annular array, and the poking teeth are used to move a plurality of fish tofu pieces on the first conveying belt away from the outlet direction to move the plurality of fish tofu pieces to the inside of the placing cavity.
[0020] As another embodiment of the present application, one end of the poking teeth is connected to the outer wall of the sleeve, and the other end is a free end. The length direction of the poking teeth is along the radial direction of the sleeve, and the poking teeth are made of elastic material.
[0021] As another embodiment of the present application, the poking teeth include a plurality of spaced and parallel arranged poking rods. One end of the poking rod is connected to the outer wall of the sleeve, and the other end is a free end and is suitable for moving the fish tofu away from the outlet direction. The spacing between the adjacent two poking rods is less than the length, width or height of the fish tofu.
[0022] As another embodiment of the present application, the conveyor includes:
[0023] The support frame is height-adjustable.
[0024] The drive roller is rotatably connected to one end of the support frame.
[0025] The driven roller is rotatably connected to the other end of the support frame.
[0026] The drive motor is power transmission connected to the drive roller through the power output end and is used to drive the drive roller to rotate. The drive motor is electrically connected with the electric control assembly and is controlled by the electric control assembly.
[0027] The second conveying belt has the same structure as the first conveying belt, is wrapped around the drive roller and the driven roller and forms a closed shape. The drive roller drives the second conveying belt to circulate and convey, thereby moving a plurality of fish tofu pieces in a string shape. The second input end and the second output end are the input end and the output end of the second conveying belt, respectively.
[0028] The beneficial effects of the fish tofu skewering pre-arrangement device provided by this utility model are as follows: Compared with the prior art, the fish tofu skewering pre-arrangement device of this utility model includes a hopper, a first conveyor belt, a tossing mechanism, and an electrical control component. The hopper is used to hold multiple pieces of fish tofu and has an outlet on one side. The first conveyor belt is located at the bottom inside the hopper and has a first input end and a first output end. The conveying direction of the first conveyor belt is from the first input end to the first output end. The first input end is located near the hopper and away from the outlet, and the first output end passes through the outlet and is located outside the hopper. After multiple pieces of fish tofu are placed in the hopper, they fall to the first input end. This device is suitable for conveying multiple sets of fish tofu in a string at intervals to the outside of the hopper. The actuating mechanism is rotatably connected inside the hopper and located above the first conveyor belt. The actuating mechanism is suitable for moving multiple pieces of fish tofu located at the upper end of the first conveyor belt, so that the multiple pieces of fish tofu are arranged in multiple sets of a string at intervals on the first conveyor belt. The electrical control components are electrically connected to the first conveyor belt and the actuating mechanism respectively and control their operation. This solves the technical problem that arranging multiple pieces of fish tofu into a string manually is labor-intensive, time-consuming, and affects the efficiency of stringing. It has the technical effect of automatically arranging fish tofu into a string, reducing the intensity of manual labor, and improving the efficiency of stringing. Attached Figure Description
[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0030] Figure 1 A schematic diagram of a pre-arrangement device for skewering fish tofu provided in an embodiment of this utility model (the arrows in the diagram indicate the conveying direction of the first conveyor belt);
[0031] Figure 2 This is a schematic diagram of the structure of a fish tofu skewering device connected to a conveyor according to an embodiment of the present invention.
[0032] Figure 3 A schematic diagram of the actuating mechanism of a fish tofu skewering device provided in this embodiment of the present invention. Figure 3 The middle arrow indicates the direction of rotation of the shaft;
[0033] Figure 4 A top view of the first conveyor belt of a fish tofu skewering and arranging device provided in an embodiment of this utility model;
[0034] Figure 5 for Figure 4Structure diagram of each section of the first conveying belt in the fish tofu stringing device;
[0035] Figure 6 The structure diagram of the fish tofu stringing device provided by the fish tofu stringing device is shown in the figure.
[0036] In the figure: 1, the stock bin; 11, the outlet; 12, the roller; 2, the first conveying belt; 21, the first input end; 22, the first output end; 23, the placement plate; 24, the placement cavity; 25, the cavity; 3, the poking mechanism; 31, the rotating shaft; 32, the motor; 33, the sleeve; 34, the poking tooth; 341, the poking rod; 35, the belt; 4, the electric control assembly; 5, the conveyor; 51, the second input end; 52, the second output end; 53, the support frame; 54, the driving roller; 55, the driven roller; 56, the driving motor; 57, the second conveying belt; 58, the telescopic column; 6, the fish tofu; 7, the bamboo stick. DETAILED DESCRIPTION
[0037] In order to make the technical problems, technical solutions and beneficial effects of the fish tofu stringing device clearer and more understandable, the fish tofu stringing device will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the fish tofu stringing device and do not limit the fish tofu stringing device.
[0038] Please refer to Figures 1 to 6 , a fish tofu stringing device provided by the fish tofu stringing device will be described. The fish tofu stringing device comprises a stock bin 1, a first conveying belt 2, a poking mechanism 3 and an electric control assembly 4. The stock bin 1 is used to accommodate a plurality of fish tofus 6 and is provided with an outlet 11 on one side. The first conveying belt 2 is arranged on the inside bottom of the stock bin 1. The first conveying belt 2 has a first input end 21 and a first output end 22. The conveying direction of the first conveying belt 2 is from the first input end 21 to the first output end 22. The first input end 21 is arranged close to the stock bin 1 and away from the outlet 11. The first output end 22 passes through the outlet 11 and is located outside the stock bin 1. After the plurality of fish tofus 6 are placed in the stock bin 1, they fall to the first input end 21. The first conveying belt 2 is suitable for conveying a plurality of groups of spaced string-shaped fish tofus 6 outside the stock bin 1. The poking mechanism 3 is rotatably connected to the inside of the stock bin 1 and located above the first conveying belt 2. The poking mechanism 3 is suitable for moving the plurality of fish tofus 6 located at the upper end of the first conveying belt 2 and making the plurality of fish tofus 6 form a plurality of groups of spaced string-shaped fish tofus on the first conveying belt 2. The electric control assembly 4 is electrically connected to the first conveying belt 2 and the poking mechanism 3 and controls the operation of the first conveying belt 2 and the poking mechanism 3.
[0039] The fish bean curd stringing front arrangement device compared with prior art, through setting up the bunker 1 can accommodate and place the multiple fish bean curd 6 to be strung, through the first conveying belt 2 can transport the multiple fish bean curd 6 arranged in string shape to the outside of the bunker 1, through the poking mechanism 3 can arrange the multiple fish bean curd 6 in string shape and fall on the first conveying belt 2, through setting up the electric control assembly 4 realizes the automatic control of the first conveying belt 2 and the poking mechanism 3, realizes the automatic control of fish bean curd 6 stringing, solves the technical problem that manual arranges multiple fish bean curd 6 in string shape, and the arrangement operation labor intensity is big, time-consuming and laborious, also can influence the stringing efficiency, has the technical effect that can make fish bean curd 6 arrange in string shape automatically, reduce the artificial labor intensity, improve the stringing efficiency.
[0040] In order to realize long-distance conveying of the multiple fish bean curd 6 output from the bunker 1, in some embodiments, please refer to Figures 1 to 6 The fish bean curd stringing front arrangement device further comprises a conveyor 5 having a second input end 51 and a second output end 52, the second input end 51 is located below the first output end 22, the conveyor 5 is adapted to receive the multiple groups of fish bean curd 6 arranged in string shape output from the first output end 22, and is adapted to convey the multiple groups of fish bean curd 6 arranged in string shape in a straight line direction. Because the first conveying belt 2 passes through the outlet 11, a bamboo stick 7 can be used to string the multiple groups of fish bean curd 6 one by one near the outlet 11, or a stringing device can be used to string the output fish bean curd 6 one by one. In order to prolong the conveying length of the first conveying belt 2, a conveyor 5 is provided at the outlet 11, which also has the same conveying function as the first conveying belt 2 and the function of arranging the multiple fish bean curd 6 in string shape. The multiple fish bean curd 6 falling from the first output end 22 of the first conveying belt 2 can accurately fall onto the corresponding position of the conveyor 5 and form a string shape, which is convenient for manual stringing or device stringing.
[0041] In the embodiment, the bunker 1 is arranged in an inclined manner, and the upper end opening is in a wide-mouth shape. The height of one end of the outlet 11 is greater than the height of the end away from the outlet 11 (the height does not affect the falling of the fish bean curd 6 from the first conveying belt 2 or the conveying of the fish bean curd 6). In this way, the fish bean curd 6 placed inside the bunker 1 can fall onto the first input end 21 and be conveyed by the first conveying belt 2, and the poking mechanism 3 can also poke the fish bean curd 6. The conveyor 5 is electrically connected to the electric control assembly 4 and operates under the control of the electric control assembly 4. The electric control assembly 4 includes a PLC controller, control buttons, and a control circuit, etc. Through the electrical connection of the first conveying belt 2, the poking mechanism 3, and the conveyor 5, they can be controlled separately. In the embodiment, the poking mechanism 3 is arranged in three groups and is arranged at equal intervals along the length direction of the bunker 1. In actual operation, multiple poking mechanisms 3 can be reasonably arranged according to the length of the bunker 1.
[0042] To realize that the plurality of fish bean curds 6 can be arranged in a string shape on the first conveying belt 2, in some embodiments, please refer to Figures 1 to 6 , the first conveying belt 2 comprises a plurality of placement plates 23 connected end to end along the length direction thereof, and each of the placement plates 23 is provided with a placement cavity 24 at the upper end thereof, which is suitable for accommodating the plurality of fish bean curds 6 arranged in a string shape. The plurality of placement plates 23 are connected end to end to form a closed structure, i.e., the first conveying belt 2, and the placement plates 23 can realize the conveying of the fish bean curds 6 in the circulating conveying process. The fish bean curds 6 fall into the placement cavities 24 at the corresponding positions. If the plurality of fish bean curds 6 output from the outlet 11 are not arranged in a string shape, or the fish bean curds 6 are placed obliquely or not fall into the placement cavities 24, at this time, the fish bean curds 6 can be manually placed into the placement cavities 24 for stringing operation. The fish bean curds 6 located in the placement cavities 24 cannot be pushed by the pushing mechanism 3, and the fish bean curds 6 located at the upper end of the first conveying belt 2 and not falling into the placement cavities 24 can be pushed by the pushing mechanism 3, so that the fish bean curds 6 fall into the placement cavities 24, or because the placement cavities 24 are full of fish bean curds 6, at this time, the pushing mechanism 3 can push the fish bean curds 6 to move away from the outlet 11, i.e., most of the plurality of fish bean curds 6 output from the outlet 11 can be arranged in a string shape.
[0043] Specifically, rollers 12 are arranged inside and outside the hopper 1, which are located inside the first conveying belt 2 and outside the hopper 1, respectively. The rollers 12 outside the hopper 1 are supported and fixed by supports connected to the outer wall of the hopper 1, and the rollers 12 and the supports are rotationally connected. The rollers 12 are used to drive the first conveying belt 2 to form a circulating conveying. A driver is arranged on the outer wall of the hopper 1, which is power transmission connected with one of the rollers 12 and can drive the roller 12 to rotate, thereby driving the first conveying belt 2 to rotate to realize the conveying of the fish bean curds 6. The driver 13 is electrically connected with the electric control assembly 4 and its operation is controlled by the electric control assembly 4. The adjacent two placement plates 23 are rotationally or hingedly connected (or connected in the form of a plate chain or a track), which can be wrapped around a plurality of rollers 12 to realize the circulating conveying.
[0044] To accommodate the plurality of fish bean curds 6 and arrange the fish bean curds 6 in a string shape, in some embodiments, please refer to Figures 1 to 6The placement cavity 24 extends through both sides of the first conveying belt 2 near the end of the width direction of the first conveying belt 2, and includes a plurality of cavities 25 connected end to end through the width direction of the first conveying belt 2. Each cavity 25 is adapted to accommodate a piece of fish tofu 6. Each piece of fish tofu 6 falls into a cavity 25, and the fish tofu 6 outside the cavity 25 is moved by the pushing mechanism 3 or falls into another cavity 25. A plurality of pieces of fish tofu 6 fall into a plurality of cavities 25 to form a string. If some fish tofu 6 falls into the cavity 25 in an inclined manner, or some fish tofu 6 does not fall into the cavity 25, or the cavity 25 is empty, the fish tofu 6 can be manually placed in the cavity 25 to facilitate the subsequent manual or equipment threading operation.
[0045] To facilitate threading of a plurality of pieces of fish tofu 6, the bamboo stick 7 can pass through the placement cavity 24. In some embodiments, referring to Figures 1 to 6 The minimum width of the placement cavity 24 in the length direction of the first conveying belt 2 is greater than the outer diameter of the bamboo stick 7. The bamboo stick 7 passes through the placement cavity 24 in the width direction of the first conveying belt 2 and passes through a plurality of pieces of fish tofu 6, so that the plurality of pieces of fish tofu 6 are threaded into a string. The bamboo stick 7 passes through the placement cavity 24 in the width direction of the first conveying belt 2, which can thread a plurality of pieces of fish tofu 6 into a string. In this embodiment, this arrangement is to facilitate the threading operation of the bamboo stick 7.
[0046] In some embodiments, referring to Figures 1 to 6 The pushing mechanism 3 is a plurality of and is connected to the inside of the bin 1 in a spaced manner. The two ends of the pushing mechanism 3 are rotationally connected to the side of the bin 1 and are used to push the fish tofu 6 away from the outlet 11, so that a plurality of pieces of fish tofu 6 fall into the placement cavity 24 and are arranged in a string. The pushing mechanism 3 continuously rotates and continuously pushes the fish tofu 6 away from the end of the bin 1. The pushed fish tofu 6 is the fish tofu 6 that does not fall into the placement cavity 24.
[0047] In some embodiments, referring to Figures 1 to 6The dialing mechanism 3 comprises a rotating shaft 31, a motor 32, a sleeve 33 and a plurality of dialing teeth 34. The rotating shaft 31 is horizontally arranged and rotatably connected to the two side portions of the hopper 1. The rotating shaft 31 penetrates through the side portion of the hopper 1. The motor 32 is arranged on the outer wall of the hopper 1 and drivingly connected to one end of the rotating shaft 31 (the driving connection can be achieved by a belt 35 or a chain, or the motor 32 can be directly connected to the rotating shaft 31 in a coaxial manner). The motor 32 is used to drive the rotating shaft 31 to rotate. The motor 32 is electrically connected to the electric control assembly 4 and operates under the control of the electric control assembly 4. The sleeve 33 is sleeved on the rotating shaft 31 and located inside the hopper 1. The sleeve 33 is fixedly connected to the rotating shaft 31. The plurality of dialing teeth 34 are arranged along the outer circumference of the sleeve 33 and form an annular array. The dialing teeth 34 are used to dial the plurality of fish bean curds 6 on the first conveying belt 2 to move away from the outlet 11, so as to dial the plurality of fish bean curds 6 into the placement cavity 24. The outer end of the dialing tooth 34 is the end away from the sleeve 33. The length of the dialing tooth 34 is slightly smaller than the distance between the bottom end of the sleeve 33 and the upper end of the first conveying belt 2. At this time, the dialing tooth 34 will not contact the first conveying belt 2, and can still play a role in dialing the fish bean curds 6 on the first conveying belt 2. In the embodiment, the sleeve 33 can be fixedly connected to the rotating shaft 31 through the top wire penetrating the sleeve 33. The rotating shaft 31 drives the sleeve 33 to rotate, and the sleeve 33 drives the plurality of dialing teeth 34 to rotate. Bearings are arranged on the two side portions of the hopper 1. The rotating shaft 31 penetrates through the two bearings to form a rotating connection with the hopper 1. In the embodiment, the dialing teeth 34 are arranged in four groups and are uniformly distributed along the circumference of the sleeve 33.
[0048] In order to prevent the dialing teeth 34 from causing damage to the fish bean curds 6 or destroying the fish bean curds 6 during rotation, in some embodiments, please refer to Figures 1 to 6 The one end of the dialing tooth 34 is connected to the outer wall of the sleeve 33, and the other end is a free end. The length direction of the dialing tooth 34 is along the radial direction of the sleeve 33. The dialing tooth 34 is made of an elastic material. The dialing tooth 34 has elasticity and can prevent rigid contact with the fish bean curds 6 during dialing, thereby avoiding damage to the fish bean curds 6.
[0049] The length of the sleeve 33 and the dialing tooth 34 is slightly smaller than the width of the hopper 1. In order to prevent omission during dialing of the fish bean curds 6, in some embodiments, please refer to Figures 1 to 6 The dialing tooth 34 comprises a plurality of dialing rods 341 arranged in parallel at intervals. One end of the dialing rod 341 is connected to the outer wall of the sleeve 33, and the other end is a free end and is suitable for dialing the fish bean curds 6 to move away from the outlet 11. The interval between the two adjacent dialing rods 341 is smaller than the length, width or height of the fish bean curds 6. Therefore, the plurality of dialing teeth 34 can dial the plurality of fish bean curds 6 during rotation, thereby preventing some fish bean curds 6 from being dialled and being discharged from the outlet 11. The structure of the dialing tooth 34 is a plurality of dialing rods 341. The interval between the dialing rods 341 is smaller than the length, width or height of the fish bean curds 6. The dialing rod 341 is made of an elastic material.
[0050] In some embodiments, please refer to The conveyor 5 comprises a support frame 53, a driving roller 54, a driven roller 55, a driving motor 56 and a second conveying belt 57. The height of the support frame 53 is adjustable. The driving roller 54 is rotatably connected to one end of the support frame 53. The driven roller 55 is rotatably connected to the other end of the support frame 53. The driving motor 56 is drivingly connected to the driving roller 54 and is used to drive the driving roller 54 to rotate. The driving motor 56 is electrically connected to the electric control assembly 4 and is controlled by the electric control assembly 4. The second conveying belt 57 has the same structure as the first conveying belt 2, is wrapped around the driving roller 54 and the driven roller 55 and forms a closed shape. The driving roller 54 drives the second conveying belt 57 to circulate and move the fish tofu 6 in a string shape. The second input end 51 and the second output end 52 are the input end and the output end of the second conveying belt 57, respectively. Through the operation of the electric control assembly 4, the driving motor 56 is controlled to run, so as to control the circulation of the second conveying belt 57. The conveying direction of the second conveying belt 57 is the same as that of the first conveying belt 2, and the second conveying belt 57 can receive the fish tofu 6 in a string shape falling from the first output end 22. That is, the fish tofu 6 in the placing cavity 24 of the first conveying belt 2 can be docked with the placing cavity 24 on the second conveying belt 57, that is, the placing cavities 24 of the two remain in a docking or corresponding relationship during conveying. The support frame 53 is provided with a plurality of telescopic columns 58 at the bottom. The telescopic columns 58 can be adjusted in length, so as to adapt to the height of the outlet 11 of the silo 1. The adjustment is simple and easy to operate, and the length of the telescopic column 58 after extension can be limited.
[0051] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement and improvement within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A device for arranging fish tofu before threading, characterized in that, The application relates to a fish bean curd conveying device, which comprises the following parts: a material bin for containing a plurality of fish bean curds, one side of which is provided with an outlet; a first conveying belt arranged on the inner bottom of the material bin, the first conveying belt having a first input end and a first output end, the conveying direction of the first conveying belt being from the first input end to the first output end, the first input end being arranged close to the end of the material bin far from the outlet, the first output end penetrating through the outlet and being located outside the material bin, a plurality of fish bean curds falling to the first input end after being placed in the material bin, the first conveying belt being suitable for conveying a plurality of groups of fish bean curds in string shape and arranged at intervals to the outside of the material bin; a poking mechanism rotatably connected to the inside of the material bin and located above the first conveying belt, the poking mechanism being suitable for moving a plurality of fish bean curds located on the upper end of the first conveying belt and making the fish bean curds arranged in groups in string shape and arranged at intervals on the first conveying belt; an electric control assembly electrically connected to the first conveying belt and the poking mechanism and respectively controlling the operation.
2. The fish-fillet stringing device according to claim 1, wherein The application further comprises: a conveyor having a second input end and a second output end, the second input end being located below the first output end, the conveyor being suitable for receiving a plurality of groups of fish bean curds in string shape output from the first output end and suitable for conveying the groups of fish bean curds in string shape in a straight line direction.
3. The fish-fillet stringing device of claim 1, wherein The first conveying belt comprises a plurality of placement plates connected to each other in a head-to-tail manner along the length direction of the first conveying belt, and the upper end of each placement plate is provided with a placement cavity suitable for containing a plurality of fish bean curds in string shape.
4. The fish-fillet stringing device according to claim 3, wherein The placement cavity extends through to both sides of the first conveying belt close to the end of the width direction of the first conveying belt, and the placement cavity comprises a plurality of cavities rotatably connected to each other in a head-to-tail manner along the width direction of the first conveying belt, and the inside of each cavity is suitable for containing one fish bean curd.
5. The fish-fillet stringing device according to claim 4, wherein The minimum width of the inside of the placement cavity along the length direction of the first conveying belt is greater than the outer diameter of a bamboo stick, the bamboo stick penetrating into the placement cavity along the width direction of the first conveying belt and penetrating through a plurality of fish bean curds, so that the plurality of fish bean curds are penetrated into string shape.
6. The fish-fillet stringing device of claim 3, wherein The poking mechanism is a plurality of and arranged at intervals in the inside of the material bin, the two ends of the poking mechanism are rotatably connected to the side of the material bin and used for poking the fish bean curds in a direction away from the outlet, so that the plurality of fish bean curds fall into the inside of the placement cavity and are arranged in string shape.
7. The fish-fillet stringing device as claimed in claim 6, wherein The poking mechanism comprises: a rotating shaft arranged in a horizontal manner and rotatably connected to the two sides of the material bin, one end of the rotating shaft penetrating through the side of the material bin; a motor arranged on the outer wall of the material bin and power transmission connected to one end of the rotating shaft, the motor being used for driving the rotating shaft to rotate, the motor being electrically connected to the electric control assembly and the operation being controlled by the electric control assembly; a sleeve sleeved on the rotating shaft and located in the inside of the material bin, the sleeve being fixedly connected to the rotating shaft; a plurality of poking teeth arranged in a circumferential direction on the sleeve and forming an annular array, the poking teeth being used for poking a plurality of fish bean curds located on the first conveying belt to move in a direction away from the outlet, so that the plurality of fish bean curds are poked into the inside of the placement cavity.
8. The fish-fillet stringing device according to claim 7, wherein The prong is connected to the outer wall of the sleeve at one end and is free at the other end, the length direction of the prong is along the radial direction of the sleeve, and the prong is made of elastic material.
9. The fish tofu skewering arrangement device as described in claim 7, characterized in that, The prong includes a plurality of prongs arranged in parallel at intervals, one end of the prong is connected to the outer wall of the sleeve, the other end is free and is suitable for moving the fish tofu away from the outlet, and the interval between two adjacent prongs is less than the length, width or height of the fish tofu.
10. The fish-fillet stringing device of claim 2, wherein The conveyor includes: a support frame with adjustable height; a drive roller rotatably connected to one end of the support frame; a driven roller rotatably connected to the other end of the support frame; a drive motor with a power output end drivingly connected to the drive roller and used to drive the drive roller to rotate, the drive motor is electrically connected with the electric control assembly and is controlled by the electric control assembly; a second conveying belt with the same structure as the first conveying belt, wrapped around the drive roller and the driven roller and forming a closed shape, the drive roller drives the second conveying belt to circulate and convey, thereby moving a plurality of fish tofu in a string shape, and the second input end and the second output end are the input end and the output end of the second conveying belt respectively.