Efficient mashed taro quantitative filling device
By using a conveyor belt and transmission gear system, combined with a drive motor and meshing gears, quantitative filling of taro paste and gas evacuation are achieved, solving the problems of operational complexity and instability of existing equipment, and improving production efficiency and yield.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2026-04-10
AI Technical Summary
The existing taro paste filling equipment is complex in design, inconvenient to maintain and start/stop, and the filling process is unstable, resulting in inaccurate taro paste weight and air bubbles, which affects production efficiency.
The system employs a conveyor belt to drive the contact extension plate and transmission gear system, combined with a drive motor and meshing gears, to achieve quantitative filling of taro paste and gas dispersion, ensuring the stability and efficiency of the filling process.
It improves the convenience and stability of filling operations, reduces the generation of air bubbles, and increases the yield and efficiency of finished products.
Smart Images

Figure CN224105536U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to taro puree processing technical field, specifically for efficient taro puree quantitative filling device. BACKGROUND
[0002] Taro is an important vegetable and food crop, high in nutrition and medicinal value, known as "emperor's food", taro is often cooked and mashed with red dates, cherries, melon kernels, winter melon sugar, sugar, osmanthus and lard to make taro puree, and then filled into taro containers with a filling device.
[0003] The existing filling device is open type, and dust in the air can fall into the taro, affecting the quality of the taro. When filling, the taro is easy to stick to the inner wall of the device, causing excessive waste of taro. The bubbles at the outlet break, causing the taro to stick to the inner wall of the outlet pipe, affecting the weight of the taro, resulting in inaccurate taro weight, and affecting the filling stability of the taro.
[0004] In order to overcome the above-mentioned defects, the prior art (publication number: CN221438474U, application date: 2024-07-30 Chinese patent) discloses taro filling technical field. The utility model discloses a kind of taro quantitative filling device, including feed hopper, sealing cover, piston, telescopic mechanism, vibration motor, discharge pipe, push assembly and first electromagnetic valve, the top of feed hopper is equipped with feed inlet, the bottom of feed hopper is equipped with discharge pipe, sealing cover is opened and sealed cover is equipped on feed inlet, piston is movably arranged in feed hopper, telescopic mechanism is fixed on the inner surface of sealing cover, telescopic mechanism is used to drive piston to move up and down, vibration motor is arranged on the outer side wall of feed hopper, the feed end of discharge pipe is connected with the discharge end of discharge pipe, first electromagnetic valve is arranged on the discharge end of discharge pipe, push assembly is arranged on discharge pipe for pushing material in discharge pipe out of discharge pipe, effectively reduce the content of dust mixed into taro and the bubble between taro, improve the quality of taro, reduce taro waste, improve filling stability.
[0005] The above design can solve the above problems, but when quantitative filling operation is needed, the design is too complex, and it is not convenient to operate when maintenance or start-stop operation is needed. The filling process mainly relies on electric opening and closing connection, which is not stable enough. At the same time, when filling taro, a large amount of taro is poured at one time, which can cause a large amount of bubbles in the barrel. The quantitative filling process cannot guarantee the final filling effect, which can cause more bubbles in the can, so that the finished product cannot meet the appropriate production yield, and the production efficiency is reduced. UTILITY MODEL CONTENTS
[0006] The utility model discloses a high -efficient taro puree quantitative filling device to solve the need of quantitative filling operation when the operation is inconvenient when needing to carry out maintenance or start -stop operation in the background art of above -mentioned, and the filling process mainly relies on the electric open -close connection relation not enough stable, and at the same time, when the filling work of taro is carried out, a large amount of taro is poured at a time and will make a large amount of bubble in the bucket, and the quantitative filling process can not guarantee the last filling effect, and a large number of bubbles can be produced in the can, so that the finished product can not reach the suitable production yield, and the production efficiency problem is reduced.
[0007] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: high -efficient taro puree quantitative filling device, including conveying drive belt, the outer surface of conveying drive belt is installed with the elevated support frame, and the inside of elevated support frame is installed with the elastic sliding mechanism that half circle intercepts the flow board and rotates, the elastic sliding mechanism includes filling storage tank, and the lower end of filling storage tank is installed with the through output, the outer surface of through output is installed with second transmission gear bar, and second transmission gear bar rotation is installed in the inner surface of elevated support frame, the inner surface of filling storage tank is installed with the limit sliding frame, and the inner surface of limit sliding frame is installed with the resistance transmission mechanism that is up and down sliding to the up and down flip board.
[0008] Further, the resistance transmission mechanism includes a drive motor, and the drive motor is fixedly installed on the top of the filling storage tank, the output end outer surface of the drive motor is installed with the first meshing gear, and the inside of the filling storage tank is installed with the first driven gear bar.
[0009] Further, the first meshing gear and the first driven gear bar are engaged with each other, and the outer surface of the first driven gear bar is installed with a mixed rotating plate, the outer surface of the first driven gear bar is installed with a semicircular resistance rod, and the inner surface of the filling storage tank is installed with a fixed resistance frame, the inner surface of the fixed resistance frame is installed with a vertical downward pressure spring, and the lower surface of the vertical downward pressure spring is installed with a connection extension plate.
[0010] Further, the other end outer surface of the second transmission gear bar is installed with an equal division resistance plate, and the outer surface of the corresponding side of the conveying drive belt is installed with a resistance extension plate, the rotation track of the resistance extension plate is resisted to the equal division resistance plate, and the inside of the through output is installed with a third transmission gear bar.
[0011] Further, the second transmission gear bar and the third transmission gear bar are engaged with each other, and the third transmission gear bar is rotationally installed in the inside of the elevated support frame, the outer surface of the end of the third transmission gear bar is installed with a fixed extension rod, and the inner surface of the elevated support frame is installed with an inclined resistance spring, the rotation track of the fixed extension rod is resisted to the top end of the inclined resistance spring, and the outer surface of the third transmission gear bar is installed with a semicircular intercepting plate.
[0012] Further, the inner surface bottom surface of the through output port is arc-shaped, and the semicircular intercepting plate is matched with the inner surface arc surface of the through output port, the second transmission gear rod and the third transmission gear rod penetrate the inside of the through output port, and the filling storage tank and the through output port are in through design.
[0013] Further, the lower surface of the abutting extension plate is provided with a connecting abutting rod, and the rotation track of the semicircular abutting rod abuts the lower end of the connecting abutting rod, and the lower surface of the connecting extension plate is provided with an up-down flipping plate, and the up-down flipping plate slides up and down along the inside of the limiting sliding frame.
[0014] Compared with the prior art, the beneficial effects of the high-efficiency taro puree quantitative filling device are that when filling operation is needed, the conveying transmission belt is directly started to drive the abutting extension plate, so that the abutting extension plate drives the second transmission gear rod to rotate through the equal division abutting plate, at this time, the third transmission gear rod and the semicircular intercepting plate are driven to rotate, and the semicircular intercepting plate opens the opening of the through output port when rotating, so that the taro puree can be quickly and quantitatively filled, and such design makes the operation more convenient when maintenance or start-stop operation is needed, and the filling process is more stable.
[0015] Further, when the gas in the filling storage tank needs to be dispersed and discharged, the first driving gear rod is directly driven to rotate by the first meshing gear through the driving motor, and the abutting extension plate is lifted up by the connecting abutting rod through the semicircular abutting rod during rotation, at this time, the two groups of up-down flipping plates are synchronously moved, so that the taro puree does not produce bubbles during filling, such design improves the production yield of products and improves the production efficiency;
[0016] Further, after the abutting extension plate and the equal division abutting plate are separated, the third transmission gear rod is reset by the fixed extension rod due to the lifting of the inclined abutting spring, so that the semicircular intercepting plate blocks the output port of the through output port, and the use stability of the equipment is ensured without seepage risk. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a three-dimensional structure schematic view of the first driving gear rod of the utility model;
[0018] Figure 2 It is a three-dimensional structure schematic view of the filling storage tank of the utility model;
[0019] Figure 3 It is a three-dimensional structure schematic view of the conveying transmission belt of the utility model;
[0020] Figure 4The utility model discloses a through output three-dimensional structure schematic diagram for the utility model.
[0021] Figure 5 The utility model discloses a fixed resistance frame three-dimensional structure schematic diagram for the utility model.
[0022] Figure 6 The utility model discloses a mixed rotation plate three-dimensional structure schematic diagram.
[0023] In the drawing: 1, conveying drive belt, 2, resistance extension board, 3, lifting support frame, 4, filling storage tank, 5, drive motor, 6, first meshing gear, 7, first driven gear rod, 8, equal resistance board, 9, second transmission gear rod, 10, through output, 11, third transmission gear rod, 12, fixed extension rod, 13, obliquely placed resistance spring, 14, semicircular intercepting plate, 15, fixed resistance frame, 16, semicircular resistance rod, 17, mixed rotation plate, 18, vertical downward spring, 19, limit sliding frame, 20, up-down flipping plate, 21, connecting resistance rod, 22, connecting extension board. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the utility model.
[0025] Embodiment one: please refer to Figures 1-6 The utility model provides the following technical scheme: efficient taro puree quantitative filling device, including conveying drive belt 1, the outer surface of conveying drive belt 1 is installed with lifting support frame 3, and the inside of lifting support frame 3 is installed with the elastic sliding mechanism that rotates half circle intercepting plate 14, and the elastic sliding mechanism includes filling storage tank 4, and the lower end of filling storage tank 4 is installed with through output 10, the outer surface of through output 10 is installed with second transmission gear rod 9, and second transmission gear rod 9 is rotatably installed on the inner surface of lifting support frame 3, the inner surface of filling storage tank 4 is installed with limit sliding frame 19, and the inner surface of limit sliding frame 19 is installed with resistance transmission mechanism that slides up and down to up-down flipping plate 20.
[0026] As Figure 2 , Figure 3 , Figure 4The technical scheme is shown, in order to solve the problem that the design is too complex when quantitative filling operation is needed, the operation is inconvenient when maintenance or start-stop operation is needed, and the filling process mainly relies on the unstable electrically opened and closed connection relationship, the second transmission gear rod 9 is provided with an equal division resistance plate 8 on the outer surface of the other end, the corresponding side of the conveying transmission belt 1 is provided with a resistance extension plate 2 on the outer surface, the rotation track of the resistance extension plate 2 is in contact with the equal division resistance plate 8, a third transmission gear rod 11 is installed in the inside of the through output port 10, the second transmission gear rod 9 and the third transmission gear rod 11 are in mesh with each other, the third transmission gear rod 11 is rotatably installed in the inside of the lifting support frame 3, a fixed extension rod 12 is installed on the outer surface of the end of the third transmission gear rod 11, an inclined resistance spring 13 is installed on the inner surface of the lifting support frame 3, the rotation track of the fixed extension rod 12 is in contact with the top end of the inclined resistance spring 13, a semicircular flow cutting plate 14 is installed on the outer surface of the third transmission gear rod 11, the inner surface bottom of the through output port 10 is designed in an arc shape, the semicircular flow cutting plate 14 and the inner surface arc surface of the through output port 10 are mutually attached, the second transmission gear rod 9 and the third transmission gear rod 11 both penetrate the inside of the through output port 10, and the filling storage tank 4 and the through output port 10 are designed in a through type.
[0027] When the mashed potatoes need to be continuously quantitatively outputted for filling operation, the packaging cans are directly conveyed by starting the conveying transmission belt 1, at this time, the abutting extension plate 2 fixedly installed on the side end outer surface of the conveying transmission belt 1 is synchronously driven, and in the moving process of the abutting extension plate 2, the equidivision abutting plate 8 is abutted, since the center position of the equidivision abutting plate 8 is fixedly installed with the second transmission gear rod 9, and the second transmission gear rod 9 is rotatably installed in the lifting support frame 3 fixedly installed on the outer surface of the conveying transmission belt 1, so the equidivision abutting plate 8 and the second transmission gear rod 9 are driven to rotate in a circle, since the end of the second transmission gear rod 9 is designed as a gear, so in the rotating process of the second transmission gear rod 9, the second transmission gear rod 9 will produce meshing movement with the third transmission gear rod 11 which is in contact with the outer surface and drive it to rotate, the rotating of the third transmission gear rod 11 will drive the semicircular intercepting plate 14 fixedly installed on the outer surface to rotate correspondingly, after the rotating of the semicircular intercepting plate 14, the output port of the through output port 10 which is in contact with it will be opened, since the filling storage tank 4 and the through output port 10 are designed as a through type, so the mashed potatoes in the filling storage tank 4 will flow out through the through output port 10 to complete the filling operation, while the third transmission gear rod 11 is rotating, the fixed extension rod 12 fixedly installed at the end will be driven to rotate synchronously, in the rotating process of the fixed extension rod 12, the obliquely arranged abutting spring 13 fixedly installed on the inner surface of the lifting support frame 3 will be abutted and contracted, after the abutting extension plate 2 and the equidivision abutting plate 8 are separated, the obliquely arranged abutting spring 13 will make the through output port 10 and the semicircular intercepting plate 14 correspondingly contact to complete the flow stopping operation of the mashed potatoes.
[0028] Example two: as Figure 1 , Figure 5 , Figure 6The technical scheme is shown, in order to solve the problem that a large amount of taro paste is poured at one time when filling the taro paste, a large amount of bubbles is generated in the barrel, the quantitative filling process cannot guarantee the final filling effect, and a large amount of bubbles may be generated in the can, so that the finished product cannot reach the appropriate production yield, and the production efficiency is reduced. To solve the problem, a resistance transmission mechanism is disclosed, which comprises a driving motor 5 fixedly installed on the top of the filling storage tank 4, a first meshing gear 6 installed on the output end surface of the driving motor 5, a first driven gear rod 7 installed in the filling storage tank 4, the first meshing gear 6 and the first driven gear rod 7 are engaged with each other, a mixed rotating plate 17 is installed on the outer surface of the first driven gear rod 7, a semicircular resistance rod 16 is installed on the outer surface of the first driven gear rod 7, a fixed resistance frame 15 is installed on the inner surface of the filling storage tank 4, a vertical downward spring 18 is installed on the inner surface of the fixed resistance frame 15, a connecting extension plate 22 is installed on the lower surface of the vertical downward spring 18, a connecting resistance rod 21 is installed on the lower surface of the connecting extension plate 22, and the rotating track of the semicircular resistance rod 16 is in contact with the lower end of the connecting resistance rod 21. The lower surface of the connecting extension plate 22 is provided with an up-down flipping plate 20, and the up-down flipping plate 20 slides up and down along the inside of the limiting sliding frame 19.
[0029] When the taro paste inside the filling storage tank 4 does not generate too many bubbles, the driving motor 5 fixedly installed on the top of the filling storage tank 4 is directly started to drive the first meshing gear 6 to rotate, at this time the first meshing gear 6 drives the first driven gear rod 7 rotatingly installed in the filling storage tank 4 to rotate, at the same time the semicircular resistance rod 16 and the mixed rotating plate 17 fixedly installed on the outer surface of the first driven gear rod 7 are driven to rotate synchronously, the rotation of the mixed rotating plate 17 makes the mixing of the taro paste inside more uniform to achieve better eating effect, because the semicircular resistance rod 16 is designed in a semicircular shape, so the rotation of the semicircular resistance rod 16 will contact the connecting resistance rod 21, the connecting resistance rod 21 is also designed in a semicircular shape at the lower end, so the connecting resistance rod 21 will be correspondingly lifted by the connecting extension plate 22 fixedly installed at the top due to the resistance effect of the lower end, the upward movement of the connecting extension plate 22 will drive the vertical downward spring 18 fixedly installed at the top, because the top of the vertical downward spring 18 is fixedly installed in the fixed resistance frame 15 fixedly installed in the filling storage tank 4, so the connecting resistance rod 21 will move upward as a whole and then be quickly reset downward, the movement of the connecting extension plate 22 will drive the two groups of up-down flipping plates 20 fixedly installed on the lower surface to move synchronously, so that the up-down flipping plates 20 will exhaust the gas inside the taro paste to achieve better filling effect, and the up-down flipping plates 20 will achieve stable movement effect through the limiting sliding frame 19 fixedly installed on the corresponding position of the inner surface of the filling storage tank 4.
[0030] In the description of the utility model, it is necessary to explain, unless another explicit provision and limitation, the term "link", "connection" should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connected;Can be mechanical connection, also can be electrical connection;Can be directly connected, also can be indirectly connected through the intermediate medium.
[0031] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. High -efficient sweet potato puree quantitative filling device, including conveying drive belt (1), the outer surface of conveying drive belt (1) is installed with the elevated support frame (3), and the inside of elevated support frame (3) is installed with the elastic sliding mechanism that rotates half circle intercepts the flow board (14); characterized in that The elastic sliding mechanism includes filling storage tank (4), and the lower end of filling storage tank (4) is installed with through output (10), the outer surface of through output (10) is installed with second drive gear bar (9), and second drive gear bar (9) is rotatably installed in the inner surface of elevated support frame (3), the inner surface of filling storage tank (4) is installed with limit sliding frame (19), and the inner surface of limit sliding frame (19) is installed with the resistance transmission mechanism that slides up and down to the up and down flip board (20).
2. The high efficiency puree filling apparatus according to claim 1, wherein: The resistance transmission mechanism includes drive motor (5), and drive motor (5) is fixedly installed on the top of filling storage tank (4), the output end outer surface of drive motor (5) is installed with first meshing gear (6), and the inside of filling storage tank (4) is installed with first driven gear bar (7).
3. The high efficiency puree filling apparatus according to claim 2, wherein: The first meshing gear (6) and first driven gear bar (7) are engaged with each other, and the outer surface of first driven gear bar (7) is installed with mixed rotating plate (17), the outer surface of first driven gear bar (7) is installed with semicircular resistance rod (16), and the inner surface of filling storage tank (4) is installed with fixed resistance frame (15), the inner surface of fixed resistance frame (15) is installed with vertical down pressure spring (18), and the lower surface of vertical down pressure spring (18) is installed with connection extension plate (22).
4. The high efficiency puree filling apparatus as claimed in claim 1, wherein: The other end outer surface of second drive gear bar (9) is installed with equal division resistance plate (8), and the outer surface of corresponding side of conveying drive belt (1) is installed with resistance extension plate (2), the rotating track of resistance extension plate (2) is resisted to equal division resistance plate (8), and the inside of through output (10) is installed with third drive gear bar (11).
5. The high efficiency puree filling apparatus as claimed in claim 4, wherein: The second drive gear bar (9) and third drive gear bar (11) are engaged with each other, and third drive gear bar (11) is rotatably installed in the inside of elevated support frame (3), the outer surface of the end of third drive gear bar (11) is installed with fixed extension rod (12), and the inner surface of elevated support frame (3) is installed with inclined resistance spring (13), the rotating track of fixed extension rod (12) is resisted to the top end of inclined resistance spring (13), and the outer surface of third drive gear bar (11) is installed with half circle intercepts the flow board (14).
6. The high efficiency puree filling apparatus as claimed in claim 5, wherein: The inner surface bottom of through output (10) is arc design, and half circle intercepts the flow board (14) and the inner surface arc surface of through output (10) are mutually pasted, the inside of through output (10) is penetrated by second drive gear bar (9) and third drive gear bar (11), and filling storage tank (4) and through output (10) are through design.
7. The efficient sweet potato puree filling apparatus according to claim 3, wherein: The lower surface of the connecting extension plate (22) is provided with a connecting resisting rod (21), and the rotating track of the semicircular resisting rod (16) resists the lower end of the connecting resisting rod (21). The lower surface of the connecting extension plate (22) is provided with an up-and-down flipping plate (20), and the up-and-down flipping plate (20) slides up and down along the inside of the limiting sliding frame (19).
Citation Information
Patent Citations
Mashed taro quantitative filling device
CN221438474U