Mashed taro filling device
By introducing impact shaking mechanism and material conveying assembly into the taro mud filling device, the problem of easy blockage of the taro mud filling device is solved, and efficient and hygienic taro mud filling is achieved.
Patent Information
- Application Number
- CN202422325029.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-24
AI Technical Summary
Traditional taro mud filling devices are prone to taro mud bonding pipes, which lead to blockage and waste, affecting the filling quality.
A taro mud filling device containing an impact shaking mechanism is designed to shake the filling pipes through the impact shaking mechanism to promote the flowability of taro mud, and to improve the filling efficiency through feeding components such as comb slings and pushing plates.
It effectively avoids clogging of taro mud bonding pipes, ensures filling quality and efficiency, and improves the hygienic quality and efficiency of filling.
Smart Images

Figure CN223150272U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of taro paste filling, and particularly relates to a taro paste filling device. Background Technique
[0002] The background technique of the taro paste filling device mainly stems from the rapid development of the food processing industry and the diversification of consumer demands. With the acceleration of the modern life rhythm, foods that are convenient, delicious, and have certain nutritional value are increasingly favored by the market. As a traditional food raw material, taro paste occupies an important position in the food market due to its unique taste and rich nutritional value. However, the traditional production and preservation methods of taro paste have problems such as short shelf life and easy flavor change, which limit its long-distance sales and market expansion. Therefore, corresponding filling devices are needed to fill taro paste.
[0003] When filling taro paste, due to the certain viscosity of taro paste, during the filling process, affected by the fluidity of taro paste, when discharging taro paste for filling, the situation of taro paste adhering to the inner wall of the pipeline is likely to occur. On the one hand, the filling is likely to be blocked. On the other hand, because the inner wall of the pipeline adheres to taro paste, when filling other materials again, it is easily contaminated by the taro paste adhered to the inner wall of the pipeline, affecting the purity of the filling material and then affecting the filling quality of the material. Therefore, corresponding improvements are needed. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the utility model provides a taro paste filling device to solve the problem that the existing taro paste filling device is prone to taro paste adhering to the material pipe during use, resulting in waste and blockage as mentioned in the above background technique.
[0005] To achieve the above purpose, the utility model is realized through the following technical solutions:
[0006] A taro paste filling device includes a filling platform, a bracket, a taro paste storage tank, and a taro paste filling tank. The bracket is installed on the filling platform, and the taro paste storage tank is installed on the bracket. A feeding component is arranged inside the taro paste storage tank. The bottom end of the taro paste storage tank is connected with a filling material pipe, and a valve is arranged on the filling material pipe. A taro paste filling tank is arranged on the filling platform corresponding to the outlet position of the filling material pipe. Several impact and vibration mechanisms for impacting the side of the filling material pipe are installed at the bottom of the taro paste filling tank.
[0007] Furthermore, the impact and jitter mechanism includes a support plate, a vertical plate, a vertical frame, a cam, a spring, and an impact hammer. The support plate is fixed to the bottom end of the taro paste storage tank. The vertical plate and the vertical frame are connected to the support plate. The cam is rotatably installed on the vertical frame. The vertical plate is located on the side of the cam close to the filling pipe. The impact hammer includes a horizontally arranged transverse moving column, and a convex block and an impact block respectively connected to both ends of the transverse moving column. The vertical plate is provided with a horizontally penetrating hole. The transverse moving column passes through the horizontally penetrating hole on the vertical plate. The spring is sleeved on the transverse moving column and pushes against the convex block and the vertical plate so that the convex block contacts the cam. The impact block faces the filling pipe.
[0008] Furthermore, two symmetrical impact and jitter mechanisms are provided. The filling pipe is located between the two impact and jitter mechanisms. The cam of one impact and jitter mechanism is installed on the vertical frame through a main shaft. The main shaft is connected to a driving motor, and the driving motor drives the cam to rotate. The cam of the other impact and jitter mechanism is rotatably installed on the vertical frame through a secondary shaft. The secondary shaft is connected to the driving motor through a power transmission assembly.
[0009] Furthermore, the power transmission assembly includes a rotating transition shaft, a first belt assembly, and a second belt assembly. The rotating transition shaft is fixed outside the taro paste storage tank. The second belt assembly includes a driving wheel, a driven wheel, and a transmission belt. The driving wheel is sleeved on the main shaft, the driven wheel is sleeved on the rotating transition shaft, and the driving wheel and the driven wheel are connected by the transmission belt. The first belt assembly includes a driving pulley, a linkage pulley, and a driving belt. The driving pulley is sleeved on the rotating transition shaft, the linkage pulley is sleeved on the secondary shaft, and the driving pulley and the linkage pulley are connected by the driving belt.
[0010] Furthermore, the feeding assembly includes a rotating motor, a lead screw, a pushing plate, and a combing auger. The rotating motor is installed on the top of the taro paste storage tank. The lead screw is vertically installed inside the taro paste storage tank and connected to the rotating motor. The pushing plate is located inside the taro paste storage tank and is sleeved on the lead screw through a threaded sleeve. A plurality of pushing columns are installed on the bottom surface of the pushing plate. The combing auger is connected to the bottom end of the lead screw. One end of the combing auger extends into the taro paste storage tank, and the other end extends into the filling pipe.
[0011] Furthermore, a clamping mechanism for clamping the taro paste filling cans is provided on the filling platform. The clamping mechanism includes a clamping motor, a horizontal shaft, a gear, two toothed plates, and two limiting plates. The clamping motor is arranged inside the filling platform. The clamping motor is connected to the horizontal shaft. The gear is sleeved on the horizontal shaft. The two toothed plates are horizontally arranged and respectively mesh with the top and bottom of the gear. The two limiting plates are respectively vertically connected to the two toothed plates. The two toothed plates drive the two limiting plates to move synchronously and in opposite directions to clamp the taro paste filling cans located between the two limiting plates.
[0012] The utility model has the following beneficial effects:
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: The taro paste filling device is provided with an impact and vibration mechanism, which can not only impact the filling material pipe to make it vibrate, avoid waste and blockage caused by taro paste sticking to the pipe, but also has the effect of quickly transporting taro paste for filling. On the one hand, the impact and vibration mechanism promotes the fluidity of the taro paste and reduces the blockage phenomenon. On the other hand, it helps to clean the residual taro paste on the inner wall of the filling material pipe, ensuring that each filling is fresh and clean taro paste, thereby improving the hygiene quality and filling efficiency of the product. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic front sectional view of the taro paste filling device of the present utility model;
[0015] Figure 2 is a schematic front structural view of the taro paste filling device of the present utility model;
[0016] Figure 3 is a schematic three-dimensional structural view of the pushing plate and the pushing column of the present utility model;
[0017] Figure 4 is of the present utility model Figure 1 magnified schematic view at A;
[0018] Figure 5 is a schematic side sectional view of the filling platform of the present utility model.
[0019] Explanation of the reference numerals in the drawings: 1, filling platform; 2, clamping mechanism; 201, clamping motor; 202, horizontal shaft; 203, gear; 204, toothed plate; 205, limiting plate; 3, taro paste filling tank; 4, taro paste storage tank; 5, bracket; 6, impact and vibration mechanism; 601, secondary shaft; 602, main shaft; 603, support plate; 604, vertical frame; 605, cam; 606, convex block; 607, transverse moving column; 608, impact block; 609, vertical plate; 610, driving motor; 7, rotating motor; 8, lead screw; 9, pushing plate; 901, pushing column; 10, combing auger; 11, rotating transition shaft; 12, first belt assembly; 13, second belt assembly; 14, filling material pipe; 15, valve. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0021] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.
[0022] As Figures 1 to 5 shown, this embodiment discloses a taro paste filling device, which includes a filling platform 1, a bracket 5, a taro paste storage tank 4, and a taro paste filling tank 3. The bracket 5 is installed on the filling platform 1, and the taro paste storage tank 4 is installed on the bracket 5. A feeding component is arranged inside the taro paste storage tank 4. The bottom end of the taro paste storage tank 4 is connected with a filling material pipe 14, and a valve 15 is arranged on the filling material pipe 14. A taro paste filling tank 3 is arranged on the filling platform 1 corresponding to the outlet position of the filling material pipe 14. A plurality of impact jitter mechanisms 6 for impacting the side surface of the filling material pipe 14 are installed at the bottom of the taro paste filling tank 3.
[0023] The impact jitter mechanism 6 includes a support plate 603, a vertical plate 609, a vertical frame 604, a cam 605, a spring, and an impact hammer. The support plate 603 is fixed to the bottom end of the taro paste storage tank 4. The vertical plate 609 and the vertical frame 604 are connected to the support plate 603. The cam 605 is rotatably installed on the vertical frame 604. The vertical plate 609 is located on the side of the cam 605 close to the filling material pipe 14. The impact hammer includes a horizontally arranged transverse moving column 607, and a convex block 606 and an impact block 608 respectively connected to both ends of the transverse moving column 607. A transverse through hole is arranged on the vertical plate 609. The transverse moving column 607 passes through the transverse through hole on the vertical plate 609. The spring is sleeved on the transverse moving column 607 and pushes against the convex block 606 and the vertical plate 609 so that the convex block 606 contacts the cam 605, and the impact block 608 faces the filling material pipe 14.
[0024] The impact jitter mechanisms 6 are provided as two symmetrical ones. The filling material pipe 14 is located between the two impact jitter mechanisms 6. The cam 605 of one impact jitter mechanism 6 is installed on the vertical frame 604 through a main shaft 602. The main shaft 602 is connected with a driving motor 610, and the driving motor 610 drives the cam 605 to rotate. The cam 605 of the other impact jitter mechanism 6 is rotatably installed on the vertical frame 604 through a secondary shaft 601, and the secondary shaft 601 is connected with the driving motor 610 through a power transmission component.
[0025] The drive motor 610 drives the main shaft 602 to rotate, cooperates with the second belt assembly 13 to make the rotating intermediate shaft 11 rotate, further cooperates with the first belt assembly 12 to make the auxiliary shaft 601 rotate synchronously, and then makes the main shaft 602 rotate, thus making the two groups of cams 605 rotate. During the rotation of the cams 605, they collide with the bumps 606, pushing the bumps 606 to move horizontally, and pushing the horizontal moving column 607 and the impact block 608 to move synchronously. Cooperating with the spring wound around the horizontal moving column 607, the impact block 608 makes a horizontal reciprocating motion, which can impact the filling pipe 14 for taro paste. On the one hand, it promotes the fluidity of the taro paste and reduces the blockage phenomenon. On the other hand, it helps to clean the residual taro paste on the inner wall of the filling pipe 14, ensuring that the taro paste filled each time is fresh and clean, thereby improving the hygienic quality and filling efficiency of the product.
[0026] The power transmission assembly includes a rotating intermediate shaft 11, a first belt assembly 12 and a second belt assembly 13. The rotating intermediate shaft 11 is fixed outside the taro paste storage tank 4. The second belt assembly 13 includes a driving wheel, a driven wheel and a transmission belt. The driving wheel is sleeved on the main shaft 602, the driven wheel is sleeved on the rotating intermediate shaft 11, and the driving wheel and the driven wheel are connected by the transmission belt. The first belt assembly 12 includes a driving wheel, a linkage wheel and a driving belt. The driving wheel is sleeved on the rotating intermediate shaft 11, the linkage wheel is sleeved on the auxiliary shaft 601, and the driving wheel and the linkage wheel are connected by the driving belt.
[0027] The material conveying assembly includes a rotating motor 7, a lead screw 8, a pushing plate 9 and a combing auger 10. The rotating motor 7 is installed on the top of the taro paste storage tank 4. The lead screw 8 is vertically installed inside the taro paste storage tank 4 and connected to the rotating motor 7. The pushing plate 9 is located inside the taro paste storage tank 4 and is sleeved on the lead screw 8 through a thread. A plurality of pushing columns 901 are installed on the bottom surface of the pushing plate 9. The combing auger 10 is connected to the bottom end of the lead screw 8. One end of the combing auger 10 extends into the taro paste storage tank 4 and the other end extends into the filling pipe 14 for taro paste. By driving the lead screw 8 to rotate through the rotating motor 7, under the action of the thread fit between the lead screw 8 and the pushing plate 9, the pushing plate 9 can move downward and drive a plurality of groups of pushing columns 901 to move synchronously. Then, during the process of filling the taro paste, the pushing columns 901 are used to promote the fluidity of the taro paste, which helps the taro paste to be smoothly filled. During this process, the lead screw 8 drives the combing auger 10 to rotate synchronously, and then while mixing the taro paste, the flowing taro paste is conveyed downward, realizing the rapid feeding of the taro paste and improving the filling efficiency of the taro paste.
[0028] On the filling platform 1, there is a clamping mechanism 2 for clamping the taro paste filling can 3. The clamping mechanism 2 includes a clamping motor 201, a horizontal shaft 202, a gear 203, two toothed plates 204 and two limiting plates 205. The clamping motor 201 is arranged inside the filling platform 1. The clamping motor 201 is connected to the horizontal shaft 202. The gear 203 is sleeved on the horizontal shaft 202. The two toothed plates 204 are horizontally arranged and respectively mesh with the top and bottom of the gear 203. The two limiting plates 205 are respectively vertically connected to the two toothed plates 204. The two toothed plates 204 drive the two limiting plates 205 to move synchronously and in opposite directions to clamp the taro paste filling can 3 located between the two limiting plates 205.
[0029] When this embodiment is in use, the clamping motor 201 drives the horizontal shaft 202 and the gear 203 to rotate in sequence, and by using the meshing action between the gear 203 and the toothed plate 204, the two groups of toothed plates 204 can be made to move horizontally towards each other, and the limiting plates 205 are driven to move synchronously until the two groups of limiting plates 205 are attached to the outer wall of the taro paste filling can 3, so as to clamp and limit the taro paste filling can 3, enabling it to remain stable during taro paste filling and avoiding the situation of tipping over during the filling process.
[0030] As described above, the embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention. Therefore, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
Claims
1. A taro paste filling device, characterized in that, It includes a filling platform, a bracket, a taro paste storage tank, and a taro paste filling tank. The bracket is installed on the filling platform, and the taro paste storage tank is installed on the bracket. A feeding component is arranged inside the taro paste storage tank. The bottom end of the taro paste storage tank is connected with a filling material pipe, and a valve is arranged on the filling material pipe. A taro paste filling tank is arranged at the outlet position of the filling material pipe corresponding to the filling platform. A plurality of impact and vibration mechanisms for impacting the side of the filling material pipe are installed at the bottom of the taro paste filling tank.
2. The taro paste filling device according to claim 1, wherein The impact and vibration mechanism includes a support plate, a vertical plate, a vertical frame, a cam, a spring, and an impact hammer. The support plate is fixed to the bottom end of the taro paste storage tank. The vertical plate and the vertical frame are connected to the support plate. The cam is rotatably installed on the vertical frame. The vertical plate is located on the side of the cam close to the filling material pipe. The impact hammer includes a horizontally arranged transverse moving column, and a convex block and an impact block respectively connected to both ends of the transverse moving column. A transverse through hole is arranged on the vertical plate. The transverse moving column passes through the transverse through hole on the vertical plate. The spring is sleeved on the transverse moving column and pushes against the convex block and the vertical plate so that the convex block contacts the cam. The impact block faces the filling material pipe.
3. The taro paste filling device according to claim 2, characterized in that, Two symmetrical impact and vibration mechanisms are provided. The filling material pipe is located between the two impact and vibration mechanisms. The cam of one impact and vibration mechanism is installed on the vertical frame through a main shaft. The main shaft is connected with a driving motor, and the driving motor drives the cam to rotate. The cam of the other impact and vibration mechanism is rotatably installed on the vertical frame through a secondary shaft, and the secondary shaft is connected with the driving motor through a power transmission component.
4. The taro paste filling device according to claim 3, characterized in that, The power transmission component includes a rotating transition shaft, a first belt component, and a second belt component. The rotating transition shaft is fixed on the outside of the taro paste storage tank. The second belt component includes a driving wheel, a driven wheel, and a transmission belt. The driving wheel is sleeved on the main shaft, the driven wheel is sleeved on the rotating transition shaft, and the driving wheel and the driven wheel are connected through the transmission belt. The first belt component includes a driving wheel, a linkage wheel, and a driving belt. The driving wheel is sleeved on the rotating transition shaft, the linkage wheel is sleeved on the secondary shaft, and the driving wheel and the linkage wheel are connected through the driving belt.
5. The taro paste filling device according to claim 1, characterized in that, The feeding component includes a rotating motor, a lead screw, a pushing plate, and a combing auger. The rotating motor is installed on the top of the taro paste storage tank. The lead screw is vertically installed inside the taro paste storage tank and connected to the rotating motor. The pushing plate is located inside the taro paste storage tank and is sleeved on the lead screw through a thread. A plurality of pushing columns are installed on the bottom surface of the pushing plate. The combing auger is connected to the bottom end of the lead screw. One end of the combing auger extends into the taro paste storage tank, and the other end extends into the filling material pipe.
6. The taro paste filling device according to claim 1, wherein, A clamping mechanism for clamping the taro paste filling tank is arranged on the filling platform. The clamping mechanism includes a clamping motor, a horizontal shaft, a gear, two tooth plates, and two limiting plates. The clamping motor is arranged inside the filling platform. The clamping motor is connected to the horizontal shaft. The gear is sleeved on the horizontal shaft. The two tooth plates are horizontally arranged and respectively meshed with the top and bottom of the gear. The two limiting plates are respectively vertically connected to the two tooth plates. The two tooth plates drive the two limiting plates to move synchronously and reversely to clamp the taro paste filling tank located between the two limiting plates.