CN218238043U - Cooling device for enzyme-inactivated kudzu root slurry - Google Patents
Cooling device for enzyme-inactivated kudzu root slurry Download PDFInfo
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- CN218238043U CN218238043U CN202222347173.3U CN202222347173U CN218238043U CN 218238043 U CN218238043 U CN 218238043U CN 202222347173 U CN202222347173 U CN 202222347173U CN 218238043 U CN218238043 U CN 218238043U
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Abstract
The utility model is suitable for a root of kudzu vine processing equipment technical field provides a cooling device through enzyme that goes out root of kudzu vine thick liquids, including storage mechanism and cooling body, have the storage case of cooling plate through setting up, the cooling plate is hollow structure and is used for storing the coolant liquid, and the cooling plate can absorb the heat of storage incasement thick liquids through the coolant liquid, then dispels the heat in order to carry out the high efficiency through the recirculated cooling liquid. Still have radiator fan's overhead guard through the setting, when providing the protection to the top of storage case, can accelerate the circulation of air speed on thick liquids surface through radiator fan, and then accelerate the radiating efficiency.
Description
Technical Field
The utility model belongs to the technical field of root of kudzu vine processing equipment, especially, relate to a cooling device through enzyme that goes out root of kudzu vine thick liquids.
Background
Radix Puerariae is dried root of Pueraria lobata Ohwi of Leguminosae. Collected in autumn and winter, and cut into thick slices or small pieces when fresh; and (5) drying. It is commonly indicated for exterior syndrome with fever, strong pain of neck and back, measles without adequate eruption, thirst due to fever, thirst due to yin deficiency, dysentery due to heat-purging, diarrhea due to spleen deficiency. In order to use the kudzuvine root as a raw material of food or health care products, the kudzuvine root needs to be preprocessed and processed into powder or paste, and after the kudzuvine root is heated and stirred into paste, the kudzuvine root needs to be cooled and then can be processed subsequently.
At present, the cooling tank is generally adopted to carry out standing cooling on the slurry, and because the cooling tank is in the cooling process, the air circulation is slow, the cooling efficiency is low, the whole cooling efficiency is not favorably promoted, and the subsequent production efficiency is more favorably promoted.
SUMMERY OF THE UTILITY MODEL
The utility model provides a cooling device of enzyme-deactivating kudzu root slurry, which aims to solve the problems existing in the prior art.
The utility model discloses a realize like this, a cooling device through enzyme kudzu vine root thick liquids that goes out, include:
the material storage mechanism comprises a material storage box and a cooling plate; the top of the storage box is open, and the side wall of the storage box is connected with a feeding pipe for inputting slurry and a discharging pipe for outputting the slurry; the cooling plate is of a hollow structure and is used for containing a cooling medium; the top of the cooling plate is connected with a liquid inlet pipe for inputting a cooling medium and a liquid outlet pipe for outputting the cooling medium; a gap for slurry to flow is formed between the cooling plate and the upper surface of the bottom wall of the storage box;
and the cooling mechanism comprises a top cover, the top cover is covered at the top of the storage box, and the top cover is provided with a plurality of cooling fans.
Preferably, the top cover comprises two oppositely arranged side plates and a top plate fixedly connected to the tops of the two side plates;
the top plate is provided with four radiating fans distributed in a matrix manner; the air outlet direction of the heat radiation fan is upward.
Preferably, the detachable dust screens are installed at the edges of the two sides of the side plates.
Preferably, the number of the cooling plates is two, and the two cooling plates are arranged in parallel relatively;
a rotatable rotating shaft penetrates through the center of the cooling plate; a through groove for the rotating shaft to pass through is reserved on the cooling plate; the through groove is not communicated with the inner space of the cooling plate; a plurality of stirring blades are arranged on the rotating shaft;
the outer wall of the storage box is fixedly provided with a motor, the output end of the motor extends into the storage box and is in transmission connection with one end of the rotating shaft, and the motor is used for driving the rotating shaft to rotate.
Preferably, two end walls of the cooling plate are fixed with limiting blocks extending outwards; the limiting block is lapped on the upper edge of the side wall of the storage box.
Preferably, a stainless steel base is arranged below the bottom wall of the material storage box; the base supports the storage bin.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses a through cooling device of enzyme-deactivating radix puerariae thick liquids has the storage case of cooling plate through the setting, and the cooling plate is hollow structure and is used for storing the coolant liquid, and the cooling plate can absorb the heat of thick liquids in the storage case through the coolant liquid, then dispels the heat in order to carry out high efficiency through the recirculated cooling liquid. Still have radiator fan's overhead guard through the setting, when providing the protection to the top of storage case, can accelerate the circulation of air speed on thick liquids surface through radiator fan, and then accelerate the radiating efficiency.
Drawings
Fig. 1 is a schematic view of the overall structure of a cooling device for enzyme-deactivated pueraria slurry of the present invention;
fig. 2 is a schematic structural view of the material storing mechanism of the present invention;
fig. 3 is a side view of the internal structure of the magazine according to the present invention.
In the figure: 1. a material storage mechanism; 11. a material storage box; 111. a feeding pipe; 112. a discharge pipe; 12. a cooling plate; 121. a liquid inlet pipe; 122. a liquid outlet pipe; 123. a limiting block; 13. a base; 14. a rotating shaft; 141. stirring blades; 15. a motor; 2. a cooling mechanism; 21. a top cover; 22. a heat dissipation fan.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1-3, the present invention provides a technical solution: a cooling device for enzyme-inactivated radix Puerariae slurry comprises a storage mechanism 1 and a cooling mechanism 2.
The storage mechanism 1 comprises a storage box 11 and a cooling plate 12; the top of the storage tank 11 is open, and the side wall of the storage tank 11 is connected with a feeding pipe 111 for inputting slurry and a discharging pipe 112 for outputting slurry; the cooling plate 12 is a hollow structure and is used for accommodating a cooling medium; the top of the cooling plate 12 is connected with a liquid inlet pipe 121 for inputting a cooling medium and a liquid outlet pipe 122 for outputting the cooling medium; a gap for slurry to flow through is formed between the cooling plate 12 and the upper surface of the bottom wall of the storage box 11.
The storage tank 11 is used for storing slurry to be cooled, the slurry is input through the input pipe 111, and the cooled slurry is output through the output pipe 112. The feeding pipe 111 is located at the upper edge of the side wall of the storage tank 11, and the discharging pipe 112 is located at the lower edge of the side wall of the storage tank 11. In the present embodiment, the cooling medium is water which is easy to obtain, and cold water is input into the cooling plate 12 through the liquid inlet pipe 121, absorbs heat, and is output through the liquid outlet pipe 122. And the cooling medium can be powered by a water pump, so that continuous cooling operation is performed. Cooling plate 12 is vertical setting to its surface and thick liquids contact, realize the heat exchange, thick liquids can circulate through the clearance between cooling plate 12 and the diapire of storage case 11, can realize even heat dissipation.
Specifically, the number of the cooling plates 12 is two, and the two cooling plates 12 are arranged in parallel relatively; a rotatable rotating shaft 14 penetrates through the center of the cooling plate 12; a through groove for the rotating shaft 14 to pass through is reserved on the cooling plate 12; the through groove is not communicated with the inner space of the cooling plate 12; a plurality of stirring blades 141 are mounted on the rotating shaft 14; a motor 15 is fixed on the outer wall of the storage box 11, the output end of the motor 15 extends into the storage box 11 and is in transmission connection with one end of a rotating shaft 14, and the motor 15 is used for driving the rotating shaft 14 to rotate.
Wherein, two cooling plates 12 are respectively towards the both sides wall of storage case 11 to two cooling plates 12 are the same with the distance between the lateral wall that faces it, and two cooling plates 12 are placed evenly, can evenly dispel the heat. The rotating shaft 14 has one part between the two cooling plates 12 and two parts between the two cooling plates 12 and the side wall of the storage tank 11, and the three parts are all provided with the stirring blades 141, so that the rotating shaft 14 can stir the slurry in the storage tank 11 through the stirring blades 141 when rotating, the heat distribution in the slurry is more uniform, the hotter slurry can continuously flow to the upper surface of the slurry, and the heat dissipation is accelerated. And the user can thicken the wall thickness of logical groove department when making cooling plate 12, reduces the risk that produces the weeping by wearing and tearing.
Further, two end walls of the cooling plate 12 are fixed with a limiting block 123 extending outwards; the stop block 123 is overlapped on the upper edge of the sidewall of the storage box 11. The limiting block 123 is integrally formed with the cooling plate 12, and the limiting block 123 is used for supporting the cooling plate 12, so that the cooling plate 12 can be stably installed in the material storage box 11, and the disassembly is convenient.
The cooling mechanism 2 includes a top cover 21 covering the top of the magazine 11, and a plurality of heat radiation fans 22 are mounted on the top cover 21. The top cover 21 has an inverted U-shaped configuration. Shielding and protection can be provided for the top of the storage box 11, and the air circulation speed near the surface of the slurry can be increased by the heat dissipation fan 22, so that heat dissipation is accelerated.
Specifically, the top cover 21 includes two side plates disposed oppositely and a top plate fixedly connected to the tops of the two side plates; the top plate is provided with four radiating fans 22 distributed in a matrix shape; the air outlet direction of the heat dissipation fan 22 is upward. The four heat dissipation fans 22 can draw out air in the top cover 21 and make up external air from both sides of the top cover 21.
In addition, if the cleanness in the workshop cannot be ensured, if necessary, a dustproof measure needs to be set, in the embodiment, detachable dustproof nets (not shown) can be installed on the two side edges of the side plates, and the dustproof nets can effectively reduce the dust carried by the supplemented air.
Additionally, a stainless steel base 13 is arranged below the bottom wall of the material storage box 11; the base 13 supports the magazine 11. Base 13 can stably support storage case 11, also can absorb heat fast and dispel the heat, further promotes the radiating efficiency.
The utility model discloses a theory of operation and use flow: the utility model discloses install the back, thick liquids are imported by inlet pipe 111, and the thick liquids that the cooling was accomplished are exported by discharging pipe 112. Cold water is input into the cooling plate 12 through the liquid inlet pipe 121, absorbs heat, and is output through the liquid outlet pipe 122. And the cooling medium can be powered by a water pump, so that continuous cooling operation is performed. Starter motor 15, motor 15 drive pivot 14 is rotatory, and pivot 14 can stir the thick liquids in the storage case 11 through stirring leaf 141 when rotatory for heat distribution in the thick liquids is more even, also makes the upper surface of flow to thick liquids that hotter thick liquids can last, accelerates the heat dissipation. The top cover 21 can provide shielding and protection for the top of the storage box 11, and can accelerate the air circulation speed near the surface of the slurry by the heat dissipation fan 22, thereby accelerating heat dissipation.
To sum up, the utility model discloses a through cooling device of enzyme-killing root of kudzu vine thick liquids has the storage case 11 of cooling plate 12 through the setting, and cooling plate 12 is hollow structure and be used for storing the coolant liquid, and cooling plate 12 can absorb the heat of thick liquids in the storage case 11 through the coolant liquid, then dispel the heat in order to carry out the high efficiency through the recirculated cooling liquid. Still through the top shroud 21 that sets up to have radiator fan 22, when providing the protection to the top of storage case 11, can accelerate the circulation of air speed on thick liquids surface through radiator fan 22, and then accelerate the radiating efficiency.
The above description is only exemplary of the present invention and should not be construed as limiting the present invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.
Claims (6)
1. A cooling device of enzyme-deactivated kudzuvine root slurry is characterized in that: the method comprises the following steps:
the storage mechanism (1) comprises a storage box (11) and a cooling plate (12); the top of the storage box (11) is open, and the side wall of the storage box (11) is connected with a feeding pipe (111) for inputting slurry and a discharging pipe (112) for outputting slurry; the cooling plate (12) is of a hollow structure and is used for containing a cooling medium; the top of the cooling plate (12) is connected with a liquid inlet pipe (121) for inputting a cooling medium and a liquid outlet pipe (122) for outputting the cooling medium; a gap for slurry to flow is formed between the cooling plate (12) and the upper surface of the bottom wall of the storage box (11);
and the cooling mechanism (2) comprises a top cover (21) which covers the top of the material storage box (11), and a plurality of cooling fans (22) are installed on the top cover (21).
2. The cooling apparatus of a de-enzymed puerariae lobata slurry as claimed in claim 1, wherein: the top cover (21) comprises two side plates which are oppositely arranged and a top plate which is fixedly connected to the tops of the two side plates;
the top plate is provided with four radiating fans (22) distributed in a matrix manner; the air outlet direction of the heat radiation fan (22) is upward.
3. The cooling apparatus for enzyme-inactivated pueraria slurry according to claim 2, wherein: and the two side edges of the side plates are provided with detachable dust screens.
4. The cooling apparatus of a de-enzymed puerariae lobata slurry as claimed in claim 1, wherein: the number of the cooling plates (12) is two, and the two cooling plates (12) are oppositely arranged in parallel;
a rotatable rotating shaft (14) penetrates through the center of the cooling plate (12); a through groove for the rotating shaft (14) to pass through is reserved on the cooling plate (12); the through grooves are not communicated with the inner space of the cooling plate (12); a plurality of stirring blades (141) are arranged on the rotating shaft (14);
be fixed with motor (15) on the outer wall of storage case (11), the output of motor (15) stretches into in storage case (11) and the transmission is connected the one end of pivot (14), motor (15) are used for the drive pivot (14) are rotatory.
5. The cooling apparatus of a de-enzymed puerariae lobata slurry as claimed in claim 1, wherein: two end walls of the cooling plate (12) are respectively fixed with a limiting block (123) extending outwards; the limiting block (123) is lapped on the upper edge of the side wall of the material storage box (11).
6. The cooling apparatus of a de-enzymed puerariae lobata slurry as claimed in claim 1, wherein: a stainless steel base (13) is arranged below the bottom wall of the material storage box (11); the base (13) supports the storage bin (11).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222347173.3U CN218238043U (en) | 2022-09-01 | 2022-09-01 | Cooling device for enzyme-inactivated kudzu root slurry |
Applications Claiming Priority (1)
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CN202222347173.3U CN218238043U (en) | 2022-09-01 | 2022-09-01 | Cooling device for enzyme-inactivated kudzu root slurry |
Publications (1)
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CN218238043U true CN218238043U (en) | 2023-01-06 |
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CN202222347173.3U Active CN218238043U (en) | 2022-09-01 | 2022-09-01 | Cooling device for enzyme-inactivated kudzu root slurry |
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2022
- 2022-09-01 CN CN202222347173.3U patent/CN218238043U/en active Active
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