Subpackaging device for semi-solid fermentation materials
By designing a semi-solid fermentation material partitioning device using paper calipers and hydraulic cylinders, the problem of high noise when discharged by the dispensing device in the prior art is solved, and a quieter and more stable partitioning process is achieved.
Patent Information
- Application Number
- CN202422344684.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The existing solid beverage dispensing device is prone to noise when discharged, mainly due to the excessive force caused by the vertebral structure of the dispensing barrel.
A semi-solid fermentation material is designed, and the sliding tube is operated by driving screws to move downwards, and the paper-shaped cam is input into the vehicle. The material is input into the paper-shaped cam in the U-circuit structure through the output of the two sets of hydraulic cylinders, reducing impact force and reducing noise.
It effectively reduces the impact force and noise during discharge, and improves the stability and quietness of the assembly process.
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Figure CN223001744U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of semi-solid fermentation, in particular to a sub-packaging device for semi-solid fermentation materials. Background Technique
[0002] Semi-solid fermentation refers to the process of placing fermentation materials in a solid matrix with a certain proportion and using the metabolic action of microorganisms to produce useful substances. Compared with traditional liquid fermentation, semi-solid fermentation does not require adding too much water, which can not only save resources but also effectively improve fermentation efficiency and product quality. Semi-solid fermentation has been widely used in the fields of food, medicine, chemical industry, etc. The food produced by semi-solid fermentation technology has a stronger taste and better taste; at the same time, high-value-added biological products such as proteins, amino acids, mycelia, and fermentation broth can be produced through semi-solid fermentation, and its application prospects are very broad.
[0003] When the existing loading and unloading device is in use, for example, the utility model with the publication number CN215205459U discloses a sub-packaging device for solid beverages, including a material cylinder, a sub-packaging barrel, and a quantitative mechanism; the material cylinder: a bracket is arranged on the inner wall of the upper opening thereof, a motor is arranged in the middle of the upper surface of the bracket, the output shaft of the motor passes through the through hole in the middle of the bracket and a rotating shaft is arranged at the lower end, and the input end of the motor is electrically connected to the output end of an external control switch; the sub-packaging barrel: the inner wall of the upper opening thereof is slidably connected to the outer arc surface of the discharge port at the lower end of the material cylinder, and the fixed threaded cylinder rotatably connected to the lower end of the material cylinder is threadedly connected to the thread on the upper outer arc surface of the sub-packaging barrel; however, in the above technology, the sub-packaging barrel is of a conical structure, so when discharging, due to too much acting force, noise is generated. Therefore, the utility model proposes a sub-packaging device for semi-solid fermentation materials to solve the problems existing in the prior art. Content of the Utility Model
[0004] In view of the above problems, the utility model proposes a sub-packaging device for semi-solid fermentation materials. The sub-packaging device for semi-solid fermentation materials mainly uses the driving of the screw rod to make the sliding tube move downward so that the U-shaped convex tube is input into the carrier. After the output operation of the two hydraulic cylinders, the materials in the hopper cabin are input into the U-shaped convex tube. Since the U-shaped convex tube is of a U-shaped loop structure, when falling, the impact force can be effectively reduced, thereby reducing the generation of noise.
[0005] To achieve the purpose of the utility model, the utility model is realized through the following technical solutions: a sub-packaging device for semi-solid fermentation materials, including a carrier running mechanism and a filling component, a mixing and feeding component assembled by bolts is arranged above the side of the carrier running mechanism, and a filling component sleeved by bolts is arranged at the output end of the mixing and feeding component;
[0006] The filling component includes a bottom bin, a hopper bin, a middle partition board, a first hydraulic cylinder, a bearing plug cover, a second hydraulic cylinder, an annular plug cover, a bottom inlet pipe, a sliding pipe, a lifting plate, a driving lead screw, and a return-shaped convex pipe. The bottom bin is bolted to the output end of the mixing and feeding component. A hopper bin is arranged below the bottom bin. A middle partition board is arranged on the inner side of the bottom bin. A first hydraulic cylinder is arranged above the middle of the middle partition board. The output end of the first hydraulic cylinder is provided with a bearing plug cover. A second hydraulic cylinder is arranged below the middle partition board. The output end of the second hydraulic cylinder is provided with an annular plug cover. The output end of the hopper bin is provided with a bottom inlet pipe installed in a sleeved manner. A sliding pipe is arranged on the outer side below the bottom inlet pipe. Lifting plates threadedly connected to the driving lead screws are arranged at both ends of the sliding pipe. A return-shaped convex pipe is arranged below the sliding pipe in a sleeved manner.
[0007] As a preferred embodiment of the present invention, the return-shaped convex pipe has a U-shaped loop structure.
[0008] As a preferred embodiment of the present invention, the carrier running mechanism includes a cushion block, a backing plate, a strip-shaped bracket, a box-aligning plate, a driving motor, a transmission pulley set, a roller shaft rod, and a conveyor belt. The top of the cushion block is provided with a backing plate. A strip-shaped bracket assembled by bolts is arranged above the middle of the backing plate. A box-aligning plate assembled by bolts is arranged at the top of the strip-shaped bracket.
[0009] As a preferred embodiment of the present invention, a transmission pulley set connected to the output end of the driving motor is arranged on the outer side of one end of the box-aligning plate. A roller shaft rod is arranged at the output end of the transmission pulley set. The roller shaft rod is wound with a conveyor belt.
[0010] As a preferred embodiment of the present invention, the mixing and feeding component includes an end-to-end frame, a lifting frame, an annular base plate, a bolt base ring, a mixing bin, a feeding pipe, a driving auger, a water inlet valve block, a top cover, a rotating motor, a rotating shaft, and a stirring rod. The end-to-end frame is bolted to the upper side of the edge of the backing plate. A lifting frame is arranged at the top of the end-to-end frame. An annular base plate is arranged at the top of the lifting frame. The mixing bin is bolted to the annular base plate through the bolt base ring. A feeding pipe is arranged on one side above the mixing bin. A driving auger is arranged inside the feeding pipe. A water inlet valve block is arranged on one side above the feeding pipe.
[0011] As a preferred embodiment of the present invention, a top cover is arranged at the top of the mixing bin. A rotating motor is arranged at the top of the top cover. The output end of the rotating motor is provided with a rotating shaft. Stirring rods are arranged on the outer side of the rotating shaft.
[0012] The beneficial effects of the present invention are:
[0013] The utility model mainly utilizes the operation of a driving lead screw to make a sliding tube move downward, so that a U-shaped convex tube is input into a carrier. After the output operation of two hydraulic cylinders, the materials in a hopper are input into the U-shaped convex tube. Since the U-shaped convex tube has a U-shaped loop structure, when it falls, the impact force can be effectively reduced, thereby reducing the generation of noise. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a three-dimensional structural schematic diagram of the utility model;
[0015] Figure 2 is a bottom three-dimensional structural schematic diagram of the utility model;
[0016] Figure 3 is a sectional three-dimensional structural schematic diagram of the utility model;
[0017] Figure 4 is a three-dimensional structural schematic diagram of the filling component of the utility model.
[0018] Wherein: 1. Carrier running mechanism; 101. Pad; 102. Base plate; 103. Strip-shaped support; 104. Opposing box plate; 105. Driving motor; 106. Transmission pulley set; 107. Roller shaft bar; 108. Conveyor belt; 2. Mixing and feeding component; 201. End opposing frame; 202. Lifting frame; 203. Ring-shaped base plate; 204. Bolt base ring; 205. Mixing bin; 206. Feed pipe; 207. Driving auger; 208. Water inlet valve block; 209. Top cover; 2010. Rotating motor; 2011. Rotating shaft; 2012. Stirring rod; 3. Filling component; 301. Bottom bin; 302. Hopper; 303. Middle partition plate; 304. First hydraulic cylinder; 305. Bearing plug cover; 306. Second hydraulic cylinder; 307. Ring-shaped plug cover; 308. Bottom inlet pipe; 309. Sliding tube; 3010. Lifting plate; 3011. Driving lead screw; 3012. U-shaped convex tube. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] In order to deepen the understanding of the utility model, the following will further elaborate on the utility model in combination with embodiments. These embodiments are only used to explain the utility model and do not constitute a limitation to the protection scope of the utility model.
[0020] According to Figures 1-4 as shown, this embodiment proposes a semi-solid fermentation material dispensing device, including a carrier running mechanism 1 and a filling component 3. A mixing and feeding component 2 assembled by bolts is arranged above the side of the carrier running mechanism 1, and the output end of the mixing and feeding component 2 is provided with a filling component 3 sleeved by bolts;
[0021] The filling component 3 includes a bottom bin 301, a hopper bin 302, a middle partition plate 303, a first hydraulic cylinder 304, a bearing plug cover 305, a second hydraulic cylinder 306, an annular plug cover 307, a bottom inlet pipe 308, a sliding pipe 309, a lifting plate 3010, a driving lead screw 3011, and a return-shaped convex pipe 3012. The bottom bin 301 is bolted to the output end of the mixed feeding component 2. A hopper bin 302 is arranged below the bottom bin 301. A middle partition plate 303 is arranged on the inner side of the bottom bin 301. A first hydraulic cylinder 304 is arranged above the middle of the middle partition plate 303. The output end of the first hydraulic cylinder 304 is provided with a bearing plug cover 305. A second hydraulic cylinder 306 is arranged below the middle partition plate 303. The output end of the second hydraulic cylinder 306 is provided with an annular plug cover 307. The output end of the hopper bin 302 is provided with a bottom inlet pipe 308 installed in a socket manner. A sliding pipe 309 is arranged on the outer side below the bottom inlet pipe 308. Lifting plates 3010 threadedly connected to the driving lead screw 3011 are arranged at both ends of the sliding pipe 309. A return-shaped convex pipe 3012 is installed in a socket manner below the sliding pipe 309.
[0022] The return-shaped convex pipe 3012 has a U-shaped loop structure.
[0023] In this embodiment, after fermentation is completed, when the driving lead screw 3011 outputs and runs, the lifting plate 3010 runs, so that the return-shaped convex pipe 3012 descends to a suitable height position. Then, the outputs of the first hydraulic cylinder 304 and the second hydraulic cylinder 306 are started in sequence to open the bearing plug cover 305 and the annular plug cover 307, so that the bottom bin 301 and the hopper bin 302 cooperate with the bottom inlet pipe 308 and the sliding pipe 309, and finally are poured into the target container through the return-shaped convex pipe 3012 to achieve the effect of sub-packaging.
[0024] The carrier running mechanism 1 includes a cushion block 101, a backing plate 102, a strip-shaped bracket 103, a box-aligning plate 104, a driving motor 105, a transmission pulley group 106, a roller shaft rod 107, and a conveyor belt 108. The top of the cushion block 101 is provided with a backing plate 102. A strip-shaped bracket 103 assembled by bolts is arranged above the middle of the backing plate 102. A box-aligning plate 104 assembled by bolts is arranged at the top of the strip-shaped bracket 103.
[0025] In this embodiment, during use, the equipment is placed at the processing location through the cushion block 101 and the backing plate 102, so that the backing plate 102 cooperates with the strip-shaped bracket 103 and the end-to-end frame 201 to splice each component.
[0026] A transmission pulley group 106 connecting the output end of the driving motor 105 is arranged on the outer side of one end of the box-aligning plate 104. A roller shaft rod 107 is arranged at the output end of the transmission pulley group 106. The conveyor belt 108 is wound around the roller shaft rod 107.
[0027] In this embodiment, when operation is required, the driving motor 105 is used to output power to drive the output end to operate, so that the driving motor 105 outputs power to drive the transmission pulley set 106 to perform output operation, and after the transmission pulley set 106 operates, it drives the roller rod 107 and the conveyor belt 108 to perform output operation, and then the container operates.
[0028] The mixing and feeding component 2 includes an end-to-end frame 201, a lifting frame 202, an annular base plate 203, a bolt base ring 204, a mixing bin 205, a feed pipe 206, a driving auger 207, a water inlet valve block 208, a top cover 209, a rotating motor 2010, a rotating shaft 2011 and a stirring rod 2012. The end-to-end frame 201 is bolted to the upper side of the edge of the backing plate 102. The top end of the end-to-end frame 201 is provided with a lifting frame 202, and the top end of the lifting frame 202 is provided with an annular base plate 203. The top end of the annular base plate 203 is bolt-sleeved with a mixing bin 205 through a bolt base ring 204. One side above the mixing bin 205 is provided with a feed pipe 206, and a driving auger 207 is arranged inside the feed pipe 206. One side above the feed pipe 206 is provided with a water inlet valve block 208.
[0029] In this embodiment, then the water inlet valve block 208 is opened, so that the liquid is input into the mixing bin 205 through the output end of the water inlet valve block 208, and in cooperation with the output operation of the driving auger 207 in the feed pipe 206, the material is input into the mixing bin 205 through the output end of the feed pipe 206 to achieve the storage effect.
[0030] The top end of the mixing bin 205 is provided with a top cover 209, and the top end of the top cover 209 is provided with a rotating motor 2010. The output end of the rotating motor 2010 is provided with a rotating shaft 2011, and a stirring rod 2012 is arranged on the outer side of the rotating shaft 2011.
[0031] In this embodiment, when accelerated fermentation is required, the rotating motor 2010 above the top cover 209 is used to output power to drive the output end to operate, so that after the rotating motor 2010 outputs power and operates, it drives the rotating shaft 2011 and the stirring rod 2012 to perform output operation, so as to achieve the effect of stirring and mixing the product.
[0032] The working principle of the semi-solid fermentation material packaging device is as follows: When in use, the device is placed at the processing site through the cushion block 101 and the backing plate 102, so that the backing plate 102 cooperates with the strip-shaped support 103 and the end-to-end frame 201 to splice each component. When running is required, the driving motor 105 outputs power to drive the output end to operate, so that the driving motor 105 outputs power to drive the transmission pulley group 106 to output and operate. After the transmission pulley group 106 operates, it drives the roller shaft rod 107 and the conveyor belt 108 to output and operate, so that the container operates. Then, the water inlet valve block 208 is opened, so that the liquid is input into the mixing bin 205 through the output end of the water inlet valve block 208, and cooperates with the feeding pipe 206 and the output operation of the driving auger 207, so that the material is input into the mixing bin 205 through the output end of the feeding pipe 206 to achieve the storage effect. When accelerated fermentation is required, the rotating motor 2010 above the top cover 209 outputs power to drive the output end to operate. After the rotating motor 2010 outputs power and operates, it drives the rotating shaft 2011 and the stirring rod 2012 to output and operate, so as to achieve the effect of stirring and mixing the product. After fermentation is completed, the driving lead screw 3011 outputs and operates, so that the lifting plate 3010 operates, so that the return-shaped convex pipe 3012 descends to a suitable height position, and the output operations of the first hydraulic cylinder 304 and the second hydraulic cylinder 306 are sequentially started to achieve the process of opening the bearing plug cover 305 and the annular plug cover 307, so that the bottom bin 301, the hopper bin 302 cooperate with the bottom inlet pipe 308 and the sliding pipe 309 and finally are poured into the target container through the return-shaped convex pipe 3012 to achieve the packaging effect.
[0033] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A semi-solid fermentation material dispensing device, comprising a carrier operating mechanism (1) and a filling component (3), characterized in that: A mixing and feeding component (2) assembled with bolts is arranged above the side of the carrier operating mechanism (1), and a filling component (3) sleeved with bolts is arranged at the output end of the mixing and feeding component (2); The filling component (3) comprises a bottom bin (301), a bucket (302), a middle baffle (303), a first hydraulic cylinder (304), a bearing plug cover (305), a second hydraulic cylinder (306), an annular plug cover (307), a bottom inlet pipe (308), a sliding pipe (309), a lifting plate (3010), a driving screw (3011) and a circular convex pipe (3012); the bottom bin (301) is bolted to the output end of the mixing and feeding component (2); the bucket (302) is arranged below the bottom bin (301); the middle baffle (303) is arranged on the inner side of the bottom bin (301); and a middle baffle (303) is arranged above the middle of the middle baffle (303). A first hydraulic cylinder (304), the output end of the first hydraulic cylinder (304) is provided with a bearing plug cover (305), a second hydraulic cylinder (306) is provided below the middle partition plate (303), the output end of the second hydraulic cylinder (306) is provided with a ring plug cover (307), the output end of the bucket (302) is provided with a bottom entry pipe (308) which is sleeved and installed, a sliding pipe (309) is provided below and outside the bottom entry pipe (308), and lifting plates (3010) which are threadedly connected to a driving screw rod (3011) are provided at both ends of the sliding pipe (309), and a sleeved and installed circular convex pipe (3012) is provided below the sliding pipe (309).
2. A semi-solid fermentation material packaging device according to claim 1, characterized in that: The circular convex tube (3012) has a U-shaped loop structure.
3. A semi-solid fermentation material packaging device according to claim 1, characterized in that: The carrier operating mechanism (1) comprises a cushion block (101), a cushion plate (102), a strip bracket (103), a box alignment plate (104), a driving motor (105), a transmission wheel group (106), a roller rod (107) and a conveyor belt (108); the cushion plate (102) is arranged at the top of the cushion block (101), and a strip bracket (103) assembled with bolts is arranged above the middle of the cushion plate (102); and the box alignment plate (104) assembled with bolts is arranged at the top of the strip bracket (103).
4. A semi-solid fermentation material packaging device according to claim 3, characterized in that: A transmission wheel group (106) connected to the output end of the drive motor (105) is arranged on the outer side of one end of the box-matching plate (104), and a roller rod (107) is arranged at the output end of the transmission wheel group (106), and a conveyor belt (108) is wound around the roller rod (107).
5. A semi-solid fermentation material packaging device according to claim 3, characterized in that: The mixing and feeding component (2) comprises an end-to-end frame (201), a lifting frame (202), an annular base plate (203), a bolt base ring (204), a mixing chamber (205), a feeding pipe (206), a driving auger (207), a water inlet valve block (208), a top cover (209), a rotating motor (2010), a rotating shaft (2011) and a stirring rod (2012). The end-to-end frame (201) is bolted to the upper side of the backing plate (102). 01) is provided with a lifting frame (202) at the top, and an annular base plate (203) is provided at the top of the lifting frame (202), a mixing chamber (205) is bolted to the top of the annular base plate (203) via a bolt base ring (204), a feed pipe (206) is provided on the upper side of the mixing chamber (205), a driving auger (207) is provided inside the feed pipe (206), and a water inlet valve block (208) is provided on the upper side of the feed pipe (206).
6. A semi-solid fermentation material packaging device according to claim 5, characterized in that: A top cover (209) is provided at the top of the mixing bin (205), and a rotating motor (2010) is provided at the top of the top cover (209). A rotating shaft (2011) is provided at the output end of the rotating motor (2010), and a stirring rod (2012) is provided on the outer side of the rotating shaft (2011).
Citation Information
Patent Citations
Solid beverage split charging device
CN215205459U