CN222401205U - Mixer with cooling function - Google Patents
Mixer with cooling function Download PDFInfo
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- CN222401205U CN222401205U CN202420675382.7U CN202420675382U CN222401205U CN 222401205 U CN222401205 U CN 222401205U CN 202420675382 U CN202420675382 U CN 202420675382U CN 222401205 U CN222401205 U CN 222401205U
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- 238000001816 cooling Methods 0.000 title claims abstract description 71
- 238000003756 stirring Methods 0.000 claims abstract description 87
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 67
- 238000007599 discharging Methods 0.000 claims description 18
- 238000002156 mixing Methods 0.000 claims description 18
- 238000010411 cooking Methods 0.000 claims description 16
- 230000005540 biological transmission Effects 0.000 claims description 7
- 238000000926 separation method Methods 0.000 claims description 7
- 238000009423 ventilation Methods 0.000 claims description 6
- 238000000034 method Methods 0.000 abstract description 13
- 238000004519 manufacturing process Methods 0.000 abstract description 10
- 238000010025 steaming Methods 0.000 abstract description 10
- 239000002994 raw material Substances 0.000 description 18
- 241000255789 Bombyx mori Species 0.000 description 14
- 239000000843 powder Substances 0.000 description 9
- 230000001105 regulatory effect Effects 0.000 description 8
- 238000009395 breeding Methods 0.000 description 7
- 238000010438 heat treatment Methods 0.000 description 7
- 230000001488 breeding effect Effects 0.000 description 6
- 230000000384 rearing effect Effects 0.000 description 5
- 230000000694 effects Effects 0.000 description 4
- 238000005516 engineering process Methods 0.000 description 4
- 230000007547 defect Effects 0.000 description 3
- 230000029087 digestion Effects 0.000 description 3
- 230000007423 decrease Effects 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000001914 filtration Methods 0.000 description 2
- 235000012054 meals Nutrition 0.000 description 2
- 235000008708 Morus alba Nutrition 0.000 description 1
- 240000000249 Morus alba Species 0.000 description 1
- 230000000712 assembly Effects 0.000 description 1
- 238000000429 assembly Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000009835 boiling Methods 0.000 description 1
- 230000001276 controlling effect Effects 0.000 description 1
- 239000012535 impurity Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000007921 spray Substances 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
Landscapes
- Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)
Abstract
The utility model discloses a stirrer with a cooling function, which comprises a machine body and a stirring box arranged on the machine body, and also comprises a cooling system, wherein the cooling system adopts a vacuum unit, and the vacuum unit is used for vacuumizing and cooling the stirring box and vacuum cooling steamed feed. The vacuum unit comprises a vacuum machine case and a vacuum pipe, wherein the vacuum pipe is connected with the stirring box, the vacuum machine case is used for vacuumizing the stirring box, and concretely, a water supply pipeline, a vacuum pump set and a main vacuum pipe are arranged in the vacuum machine case, the water supply pipeline is connected with the vacuum pump set, the vacuum pump set is connected with the main vacuum pipe, the main vacuum pipe is connected with the vacuum pipe, and the stirring box is vacuumized through the vacuum pump set. According to the utility model, the cooling system is added in the stirrer, so that the steamed feed is cooled, the cooling is integrated into the stirrer, the stirring, steaming and cooling are integrated, the process of barrelling after steaming is omitted, and the production efficiency is improved. Meanwhile, cooling equipment is reduced, equipment cost is reduced, and workshop land is saved.
Description
Technical Field
The utility model belongs to the field of production of factory silkworm feed, and particularly relates to a stirrer in the feed production process, wherein the stirrer has a cooling function.
Background
The traditional silkworm breeding mode is household type small workshop breeding, is a fully artificial silkworm breeding method, is realized through manual operation from silkworm egg adults to cocoon picking, is time-consuming and labor-consuming, has very low breeding efficiency, is limited by season conditions, can only feed silkworm worms in specific time, has extremely low annual output of silkworm cocoons, cannot meet the requirements of the current society at all, and has been phased out by the society. In order to make up for the defects of the conventional workshop type silkworm rearing, the large-scale and factory-like silkworm rearing technology is applied to the large-scale silkworm rearing technology, and in the large-scale silkworm rearing technology, if mulberry leaves are adopted as feed, the requirement of factory-like silkworm rearing cannot be met at all. Therefore, the artificial feed plays an important role in the factory and large-scale silkworm breeding technology.
The artificial feed production process comprises three steps of raw material treatment, cooking and feed cooling, wherein the raw material treatment step is to mix the raw materials after crushing and the like to obtain dry powder, the cooking step is to mix the dry powder with water to obtain raw materials, the raw materials are cooked to obtain feed, and finally the cooked feed is cooled through the feed cooling step.
The utility model patent with publication number CN114287523A discloses a large-scale artificial feed production process applied to factory silkworm breeding, and specifically discloses a step 2 of stirring and mixing powder and water, wherein the water and the powder are automatically added into a stirrer to start stirring, whether the state and the color of the feed are normal or not is observed in the stirring process, and the feed is discharged into a raw material bin after the stirring is completed and then is discharged from a raw material bin. And 3, cooking the feed, namely feeding the mixed raw materials into a cam rotor pump from the raw material bin, conveying the feed to a cooking line by the cam rotor pump, conveying the feed on the cooking line, introducing steam into the cooking line, and continuously performing through cooking, and 4, obtaining hot feed after cooking, loading the hot feed, and then conveying the hot feed into vacuum cooling equipment for cooling to obtain the feed. The steaming and boiling method is characterized in that vacuum cooling is independently arranged, and the following defects are that 1, after the feed is steamed, the feed needs to be barreled firstly and then put into vacuum cooling equipment for cooling, so that the production efficiency is affected, and 2, the independent vacuum cooling equipment needs to be arranged, so that the equipment cost is high, and the occupied area is large.
Disclosure of utility model
The utility model aims to provide a stirrer with a cooling function, aiming at the defects in the prior art, a cooling system is added in the stirrer, so that the steamed feed is cooled, the cooling is integrated into the stirrer, the stirring, steaming and cooling are integrated, the process of barrelling after steaming is omitted, and the production efficiency is improved. Meanwhile, cooling equipment is reduced, equipment cost is reduced, and workshop land is saved.
In order to solve the technical problems, the following technical scheme is adopted:
The stirrer with the cooling function is characterized by comprising a stirring box and a cooling system, wherein the cooling system is used for cooling the stirring box and cooling the steamed feed.
Further, the cooling system is a vacuum unit and is used for vacuumizing and cooling the stirring box and cooling the steamed feed.
Further, the vacuum unit comprises a vacuum machine box and a vacuum tube, the vacuum tube is connected with the stirring box, and the vacuum machine box is used for vacuumizing the stirring box, so that the purpose of vacuum cooling is achieved.
Further, a water supply pipeline, a vacuum pump set and a main vacuum pipe are arranged in the vacuum cabinet, the water supply pipeline is connected with the vacuum pump set, the vacuum pump set is connected with the main vacuum pipe, the main vacuum pipe is connected with the vacuum pipe, and the stirring tank is vacuumized through the vacuum pump set.
Further, the vacuum pump set comprises a water ring pump and a Roots pump which are connected, wherein the water ring pump is used as a primary pump, and the Roots pump is used as a secondary pump.
Further, the water ring pump is connected with a steam-water separation pipe, the steam-water separation pipe is connected with a steam-water separator, and the steam-water separator is connected with an exhaust pipe and a drain pipe.
Further, the stirring box is provided with a feeding hole, a feeding cover is arranged at the feeding hole and is opened or closed through a feeding opening and closing assembly, the feeding opening and closing assembly comprises a feeding cylinder and a feeding opening and closing rod, the feeding cylinder is hinged to a feeding cylinder seat, a piston rod of the feeding cylinder is hinged to the feeding opening and closing rod, the feeding opening and closing rod is fixed to the feeding cover and is hinged to the feeding opening and closing rod seat, and the feeding cover can be controlled to be opened or closed automatically through the feeding cylinder, so that powder can be added conveniently.
Further, the feed inlet department installs the breather valve group, and the breather valve group includes ventilative pipeline and connects in breather line's inflation valve and discharge valve, and the inflation valve is used for aerifing to the agitator tank, and discharge valve is used for exhausting to the agitator tank. In the steam heating process, redundant steam in the stirring tank is discharged through the exhaust valve, and after vacuum cooling, air is supplemented to the stirring tank through the charging valve, so that the pressure in the tank reaches normal pressure.
Further, the stirring box is provided with a discharge hole, a discharge cover is arranged at the discharge hole and is opened or closed through a discharge opening and closing assembly, the discharge opening and closing assembly comprises a discharge cylinder and a discharge opening and closing rod, the discharge cylinder is hinged to a discharge cylinder seat, a piston rod of the discharge cylinder is hinged to a transmission piece, the transmission piece is hinged to the discharge opening and closing rod, the discharge opening and closing rod is fixed to the discharge cover and is hinged to the discharge opening and closing rod seat, and the discharge opening and closing rod is controlled by means of the discharge cylinder so as to control the discharge cover to be opened or closed.
Further, the transmission piece comprises a connecting rod, a curved rod, a guide rod and a guide rod seat, one end of the connecting rod is hinged with a piston rod of the discharging cylinder, the other end of the connecting rod is hinged with the curved rod, the curved rod comprises a crank and a double-end hinged rod, one end of the crank is provided with a crank hole, the guide rod is hinged with the crank hole, the other end of the crank is hinged with the double-end hinged rod, the double-end hinged rod is hinged with the discharging opening and closing rod, the guide rod is arranged on the guide rod seat, and the guide rod seat is fixed on the surface of the stirring box.
Further, install stirring subassembly in the agitator tank, stirring subassembly includes stirring motor group, (mixing) shaft and stirring paddle, and stirring motor group connects and drives the (mixing) shaft, installs stirring paddle on the (mixing) shaft.
Due to the adoption of the technical scheme, the method has the following beneficial effects:
According to the utility model, the vacuum unit is added in the stirrer, so that vacuum cooling is carried out on the steamed feed, the vacuum cooling is integrated into the stirrer, the steaming production efficiency is improved, the vacuum cooling equipment is reduced, the equipment cost is reduced, and the workshop space is saved.
Drawings
The utility model is further described below with reference to the accompanying drawings:
FIG. 1 is a schematic diagram of the complete machine of a blender;
FIG. 2 is a schematic view of the structure of the interior of the agitator tank;
FIG. 3 is a schematic view of the structure of the feed inlet;
FIG. 4 is a schematic diagram of the structure of the discharge port;
FIG. 5 is a schematic structural view of a steam system;
FIG. 6 is a schematic view of the internal components of the vacuum enclosure;
Fig. 7 is a schematic view of the structure of the curved lever.
The device is characterized by comprising a machine body 1, a motor box 11, a stirring box 2, a stirring motor unit 21, a stirring shaft 22, stirring paddles 23, a feeding port 3, a feeding cover 4, a feeding opening and closing assembly 41, a feeding cylinder 411, a feeding opening and closing rod 412, a feeding cylinder seat 413, a feeding opening and closing rod seat 414, a ventilation valve group 42, a ventilation pipeline 421, a charging valve 422, an exhaust valve 423, a discharging cover 5, a discharging opening and closing assembly 51, a discharging cylinder 511, a discharging cylinder seat 512, a connecting rod 513, a curved rod 514, a crank 5141, a double-headed hinged rod 5142, a crank hole 5143, a discharging opening and closing rod 515, a guide rod seat 516, a guide rod 517, a guide plate 52, a steam system 6, a stop valve 61, a filter 62, a first flange pipeline 63, a flowmeter 64, a second flange pipeline 65, a regulating valve 66, an angle seat valve 661, an air inlet pipe 67, a shunt pipe 68, a guide branch pipe 69, a spray nozzle 691, a vacuum cabinet 7, a water supply pipeline 71, a water ring pump 72, a Roots pump 73, a main vacuum pipe 74, a steam-water separator 75, a steam-water separator 76, an exhaust pipe 77, a drain pipe 78, and a vacuum pipe 8.
Detailed Description
The utility model aims to provide a stirrer with a cooling function, wherein a steam system is added in the stirrer, steam is introduced while stirring, so that the steam directly heats mixed raw materials, a vacuum unit realizes vacuum cooling of steamed feed, the steam heating and the vacuum cooling are integrated into the stirrer, the stirring, steaming and cooling are integrated, the raw material conveying process is omitted, the steaming production efficiency is improved, meanwhile, steaming and cooling equipment is reduced, the equipment cost is reduced, and the workshop space is saved.
The technical scheme of the utility model is described in detail below with reference to specific embodiments:
The stirrer with the cooling function comprises a machine body 1, a stirring box 2, a steam system 6 and a cooling system for selecting a vacuum unit, wherein the stirring box 2 comprises a feed inlet 3, a discharge hole (not shown in the figure) and a stirring assembly, powder is put into the stirring box 2 through the feed inlet 3, raw materials are obtained after being stirred and mixed uniformly through the stirring assembly, steam is introduced into the stirring box 2 through the steam system 6 in the stirring process, heating and cooking of the raw materials are realized, and finally, the raw materials are obtained after being cooled in vacuum through the vacuum unit, and are sent out from the discharge hole. The utility model adds the steam system 6 in the stirrer to realize stirring and simultaneously introduce steam so that the steam directly heats and cooks the mixed raw materials, and simultaneously adds the vacuum unit to realize vacuum cooling of the heated and cooked feed, integrates stirring, cooking and vacuum cooling, avoids the raw material conveying process, improves the cooking production efficiency, reduces cooking and cooling equipment, reduces equipment cost and indirectly improves the economic benefit of factory silkworm breeding.
As shown in FIG. 3, a feeding opening 3 is mounted at the upper end of a stirring tank 2, the feeding opening 3 is rectangular and is convenient for feeding powder into the stirring tank 2, a feeding cover 4 is mounted at the feeding opening 3, the shape of the feeding cover 4 is matched with that of the feeding opening 3, the feeding cover 4 is controlled to be opened or closed by a feeding opening and closing component 41, specifically, the feeding opening and closing component 41 comprises a feeding cylinder 411 and a feeding opening and closing rod 412, the tail part of the feeding cylinder 411 is hinged to a feeding cylinder seat 413, the feeding cylinder seat 413 is mounted on a shell of the stirring tank 2, the feeding cylinder 411 can rotate, a piston rod at the head part of the feeding cylinder 411 is hinged to the feeding opening and closing rod 412, the feeding cylinder 411 can rotate relative to the feeding opening and closing rod 412, the feeding opening and closing rod 412 is L-shaped and is fixedly arranged on the feeding cover 4, the feeding opening and closing rod seat 414 is fixedly mounted at the feeding opening and closing rod 412 is hinged to the feeding opening and closing rod seat 414, and the feeding cover 4 can rotate relative to the feeding opening and closing rod seat 414 in the opening and closing process. Based on the feeding opening and closing assembly 41, the feeding cover 4 can be controlled to be automatically opened or closed, powder is convenient to add, manual operation is not needed, an automatic operation procedure can be realized, and safety and working efficiency are improved.
The feed inlet 3 department installs breather valve group 42, and breather valve group 42 includes ventilative pipeline 421 and connects in breather valve 422 and discharge valve 423 of ventilative pipeline 421, and breather pipeline 421 switches on with the inner chamber of agitator tank 2, and discharge valve 423 is used for to agitator tank 2 exhaust, in steam heating process, along with the gradual release of steam, can not avoid producing more steam, can discharge unnecessary steam in the agitator tank 2 through discharge valve 423, maintains agitator tank 2 internal balance. The air charging valve 422 is used for charging air into the stirring tank 2, and after vacuum cooling, the stirring tank 2 is in a vacuum state, so that the air is supplied to the stirring tank 2 through the air charging valve 422 to ensure that the pressure in the tank body reaches normal pressure.
The stirring subassembly is installed in agitator tank 2, is provided with two sets of, and every stirring subassembly of group all includes stirring motor group 21, and (mixing) shaft 22 and stirring paddle 23, and stirring motor group 21 is external installs in motor case 11, and stirring motor group 21 is connected and drive (mixing) shaft 22 rotation, and stirring paddle 23 has been arranged to the rule on the (mixing) shaft 22, and stirring paddle 23 comprises connecting rod and paddle two parts, turns over through the paddle and sweeps in order to reach the effect of stirring and mixing. And two sets of stirring components mutually support and can promote stirring effect.
The discharge hole is arranged on one side of the stirring box 2 and is provided with two discharge holes, the two discharge holes are respectively in one-to-one correspondence with the two stirring assemblies, a discharge cover 5 is arranged at the discharge hole, the discharge cover 5 is opened or closed through a discharge opening and closing assembly 51, the discharge opening and closing assembly 51 comprises a discharge cylinder 511 and a discharge opening and closing rod 515, the tail part of the discharge cylinder 511 is hinged to a discharge cylinder seat 512, the discharge cylinder seat 512 is fixed on the surface of the stirring box 2, the discharge cylinder 511 can rotate, a connecting rod 513 is hinged to a piston rod at the head part of the discharge cylinder 511, the other end of the connecting rod 513 is hinged to a crank 5141 of a crank 514, a crank hole 5143 is arranged at the upper end of the crank 5141, a guide rod 517 is hinged to the crank hole 5143, the guide rod 517 is arranged on a guide rod seat 516 at the two ends, and the guide rod seat 516 is fixed on the surface of the stirring box 2. The lower end of the crank 5141 is hinged to the upper hinge of the double-end hinge rod 5142, the lower hinge of the double-end hinge rod 5142 is hinged to the discharging opening and closing rod 515, the discharging opening and closing rod 515 is fixed to the discharging cover 5, and the tail end of the discharging opening and closing rod is hinged to a discharging opening and closing rod seat (not shown) based on the transmission member, and the linear motion of the discharging cylinder 511 is converted into the rotation motion for opening or closing the discharging cover 5. Based on the discharging opening and closing assembly 51, the discharging cover 5 can be controlled to be automatically opened or closed, after the steaming and cooling are finished, the fodder is conveniently sent out, manual operation is not needed, an automatic operation procedure can be realized, and the safety and the working efficiency are improved.
A guide plate 52 is further arranged below the discharge hole, and the guide plate 52 is obliquely downwards arranged and can collect feed into the charging basket in an oriented manner.
The machine body 1 is also provided with a steam system 6, the steam system 6 is connected with the stirring tank 2, and in the process that the stirring tank 2 mixes powder and water to form raw materials, steam is introduced into the stirring tank 2 through the steam system 6 to realize the cooking and heating of the raw materials, so that cooked feed is obtained after cooking.
The steam system 6 comprises a steam control pipeline and a steam pipeline, the steam control pipeline is connected with the steam pipeline, the steam pipeline is connected with the stirring tank 2, the steam control pipeline is used for controlling whether steam is introduced and adjusting the flow of the introduced steam, and the steam pipeline is used for conveying the steam into the stirring tank 2. The steam control pipeline is sequentially provided with a stop valve 61, a filter 62, a first flange pipeline 63, a flowmeter 64, a second flange pipeline 65 and a regulating valve 66 from outside to inside, the stop valve 61 is externally connected with a steam supply pipeline and is used for opening and closing the pipeline to control whether steam is introduced or not, the filter 62 is connected to the inner side of the stop valve 61, the filter 62 is a U-shaped filter 62 and is used for filtering foreign matters in steam, the filter 62 is connected to the first flange pipeline 63, the flowmeter 64 is connected between the first flange pipeline 63 and the second flange pipeline 65, and the flowmeter 64 is a vortex shedding flowmeter 64 and is used for detecting the steam flow in real time, so that a worker can conveniently regulate proper steam flow according to actual working conditions. The first flange pipe 63 and the second flange pipe 65 are used for improving the air tightness of the steam control pipeline, so that the problem of steam leakage is avoided. The second flanged pipe 65 is connected to a regulating valve 66, the regulating valve 66 being a pneumatic diaphragm regulating valve 66 for regulating the steam flow. The pneumatic film regulating valve 66 is connected with an angle seat valve 661, the angle seat valve 661 adopts the pneumatic angle seat valve 661 to assist the pneumatic film regulating valve 66, and accurate and stable flow control is realized.
The steam pipeline is connected to the pneumatic angle seat valve 661, the steam pipeline includes intake pipe 67, shunt tubes 68 and water conservancy diversion branch pipe 69, the pneumatic angle seat valve 661 is connected to the intake pipe 67 outer end, two shunt tubes 68 are connected to the inner, all be connected with water conservancy diversion branch pipe 69 on two shunt tubes 68, water conservancy diversion branch pipe 69 is in a set of with two, be provided with 5 groups, two water conservancy diversion branch pipes 69 with the group branch with certain contained angle setting, the end connection of every water conservancy diversion branch pipe 69 has shower nozzle 691, shower nozzle 691 arranges in agitator tank 2, and does not take place to contact with stirring paddle 23. Through this steam pipe from bottom to top to each position in the agitator tank 2 carry steam, realize the steam heating digestion to the raw meal, steam can flow through the inside of raw meal, and heating digestion effect is excellent, and the digestion is even and thoroughly.
The vacuum unit is external and comprises a vacuum cabinet 7 and a vacuum tube 8, wherein the vacuum tube 8 is connected with the stirring tank 2, and the vacuum cabinet 7 vacuumizes the stirring tank 2 through the vacuum tube 8 so as to achieve the purpose of vacuum cooling. The vacuum cabinet 7 is internally provided with a water supply pipeline 71, water ring pumps 72, roots pumps 73 and a main vacuum pipe 74, the water supply pipeline 71 is connected with the water ring pumps 72, the number of the water ring pumps 72 is two, the water supply pipeline 71 supplies water to the two water ring pumps 72, the Roots pumps 73 are two, each water ring pump 72 is correspondingly connected with one Roots pump 73, the Roots pump 73 is connected with the main vacuum pipe 74, and the main vacuum pipe 74 is connected with the vacuum pipe 8. The water supply pipe 71 supplies water to the water ring pump 72, and the water ring pump 72 is a preceding-stage vacuum pump, and the roots pump 73 is used to realize vacuum cooling of the stirring tank 2.
The water ring pump 72 is used as a primary pump, the Roots pump 73 is used as a secondary pump, the two pumps are matched with each other to form a low vacuum degree in the stirring tank, the vacuum cooling process is that 1, a water supply pipeline 71 supplies water to the water ring pump 72, the water ring pump 72 is started, 2, the vacuum degree in the stirring tank 2 starts to decrease, 3, when the vacuum degree in the stirring tank is 80mbar, the Roots pump 73 is started, and 4, the water ring pump 72 and the Roots pump 73 stop running until the vacuum degree in the stirring tank 2 decreases to about 30 mbar.
The water ring pump 72 is connected with a steam-water separation pipe 75, the steam-water separation pipe 75 is connected with two steam-water separators 76, two steam-water separators 76 are correspondingly arranged, and the two steam-water separators 76 are connected with the same exhaust pipe 77 and the drain pipe 78, so that the steam-water separation purpose is achieved.
The water supply pipeline 71 is connected with a filter, an electromagnetic valve, a water flow switch and a manual ball valve, the filter is used for filtering impurities in water, the electromagnetic valve is used for opening or closing the water supply pipeline 71, the water flow switch is used for detecting water flow, and the manual ball valve can manually control the water supply pipeline 71.
Besides the cooling of the vacuum unit, other cooling devices and cooling modes can be adopted for cooling, such as air cooling devices, water cooling devices, pipeline cooling devices and the like.
The above is only a specific embodiment of the present utility model, but the technical features of the present utility model are not limited thereto. Any simple changes, equivalent substitutions or modifications made on the basis of the present utility model to solve the substantially same technical problems and achieve the substantially same technical effects are encompassed within the scope of the present utility model.
Claims (9)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420675382.7U CN222401205U (en) | 2024-04-02 | 2024-04-02 | Mixer with cooling function |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420675382.7U CN222401205U (en) | 2024-04-02 | 2024-04-02 | Mixer with cooling function |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222401205U true CN222401205U (en) | 2025-01-28 |
Family
ID=94350251
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420675382.7U Active CN222401205U (en) | 2024-04-02 | 2024-04-02 | Mixer with cooling function |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222401205U (en) |
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2024
- 2024-04-02 CN CN202420675382.7U patent/CN222401205U/en active Active
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