Air-cooling circulation efficient flat plate instant freezer
By symmetrically laying the fan in the flat plate quick-freezer and forming a dislocation cycle, combining the baffle plate and support plate design to optimize the cold air flow, the problem of low cooling efficiency of the traditional flat plate quick-freezer mechanism is solved, and efficient freezing and cooling utilization are improved.
Patent Information
- Application Number
- CN202422198712.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-09-09
AI Technical Summary
The traditional plate quick freezing mechanism has low cooling efficiency, severe waste of cooling capacity, long freezing time, and low production efficiency.
In the flat plate quick-freezer, by symmetrically laying the fan and forming a dislocation cycle, combining the baffle plate and support plate design, the cold air flow is optimized, the cooling capacity loss is reduced, and the freezing efficiency is improved.
Improve refrigeration efficiency, reduce cooling capacity loss, shorten freezing time, and improve production efficiency.
Smart Images

Figure CN223191926U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an air-cooled circulation high-efficiency flat plate quick-freezer, belonging to the field of flat plate quick-freezers. Background Art
[0002] In conventional shelf-type plate freezers, only the bottom surface of the goods comes into direct contact with the plate top, resulting in low cooling efficiency and prolonged freezing times. Another type incorporates a fan on one side of the plate. However, this design prevents the airflow from circulating within the freezer, preventing some of the goods from being reached. Consequently, some of the cooling capacity within the freezer cannot be used to quickly freeze the goods, resulting in wasted cooling, increased production time, increased energy consumption, and low cooling efficiency. Summary of the Invention
[0003] According to the problem described in the background, the problem to be solved by the utility model is: to provide an air-cooled circulation high-efficiency flat plate quick freezer, by adding fans through a reasonable layout on both sides of the flat plate, forming an upper and lower staggered cold air circulation on the opposite sides of the quick freezer warehouse, and on the basis of combining the flat plate directly contacting the food to transfer cold freezing method, the fans on both sides suck in the remaining cold energy inside the warehouse that has not directly contacted the food to freeze, and blow it to the goods through the fans to take away its heat, and then make the cold air flow smoother through the bending of the deflector, and finally because of the holes on the support plate, the flow rate is accelerated and the heat is reduced, which greatly improves the refrigeration efficiency, reduces the cold loss, and improves the production efficiency.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: Provide an air-cooled circulation high-efficiency flat plate quick freezer, including goods, characterized in that it also includes a base, a storage body, a freezing flat plate, a flat plate support, a bracket, a fan, baffle 1, baffle 2, baffle 3, baffle 4, a support plate and a fan bracket. The storage body is installed on the base, and a bracket is vertically installed inside the storage body. A plurality of flat plate supports are evenly distributed and installed on the bracket. The freezing flat plate is located on the flat plate support in the same plane and between the brackets. The fan bracket is installed on both sides of the freezing flat plate and fixed by the bracket. The fan is symmetrically installed on the fan bracket to make the wind circulate. The support plate is horizontally installed on both sides of the freezing flat plate. Baffle 1, baffle 2, baffle 3 and baffle 4 are installed on both sides of the freezing flat plate from the outside to the inside and one end is connected to the freezing flat plate. The other ends of baffle 1, baffle 2, baffle 3 and baffle 4 are connected to the support plate. The goods are evenly stacked on the freezing flat plate.
[0005] Preferably, the fan is installed in a symmetrical up and down staggered manner to allow the cold air to circulate.
[0006] Preferably, an opening is provided in the middle of the support plate, and the openings on the outer side of the support plate are small, and the remaining opening is large, so that the cold air can reduce the heat again through the Bernoulli principle.
[0007] Preferably, when baffle 1, baffle 2, baffle 3 and baffle 4 are connected to the support plate, baffle 1 is connected to the outermost, uppermost and lowermost freezing plates of the support plate, baffle 2 is connected to the second outermost, second uppermost and second lowermost freezing plates of the support plate, and so on, so as to better cooperate with the support plate.
[0008] Working principle: After normal goods are placed on the freezing flat plate, in addition to the frozen goods part, some cold energy and the cold energy on the goods are lost. Therefore, when using this device, the fans on both sides blow air to the freezing flat plate to take away the excess cold energy. Then the cold air passes through the baffle to reduce the baffle loss, and then passes through the support plate. When it leaves the baffle, the space becomes smaller, the flow rate increases, and the pressure becomes smaller. Then, when it expands to the next environment, the pressure increases, and the heat is reduced again. Finally, the cold air is blown into the remaining flat plates through the fan to complete a cycle.
[0009] The beneficial effects of the utility model are:
[0010] 1. By adding fans symmetrically along the center and arranging them in a reasonable position, the excess cooling capacity can be circulated, thereby improving the cooling efficiency.
[0011] 2. The baffle reduces collision and baffle loss during circulation of cold air, thus reducing cooling loss.
[0012] 3. The shrinkage of the holes in the support plate reduces the heat of the cold air again, thus improving the cooling efficiency.
[0013] 4. This design has a simple structure and clever layout, which greatly improves the refrigeration efficiency of the flat quick freezer, reduces cold loss, refrigerates quickly, shortens freezing time, and improves production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural diagram of the utility model;
[0015] Figure 2 It is a structural diagram of the utility model;
[0016] In the figure: 1 is the base; 2 is the warehouse body; 3 is the freezing plate; 4 is the plate support; 5 is the bracket; 6 is the fan; 7 is the baffle 1; 8 is the baffle 2; 9 is the baffle 3; 10 is the baffle 4; 11 is the support plate; 12 is the fan bracket; 13 is the goods. DETAILED DESCRIPTION
[0017] The following is a further description of the embodiments of the present invention with reference to the accompanying drawings:
[0018] Example 1
[0019] like Figure 1 、 Figure 2As shown, the utility model includes cargo 13, characterized in that it also includes a base 1, a storage body 2, a freezing flat plate 3, a flat plate support 4, a bracket 5, a fan 6, a baffle 1 7, a baffle 2 8, a baffle 3 9, a baffle 4 10, a support plate 11 and a fan bracket 12. The storage body 2 is installed on the base 1, and the bracket 5 is vertically installed inside the storage body 2. A plurality of flat plate supports 4 are evenly distributed on the bracket 5. The freezing flat plate 3 is located on the flat plate support 4 on the same plane and between the brackets 5. The fan bracket 12 It is installed on both sides of the freezing flat plate 3 and fixed by the bracket 5. The fan 6 is installed on the fan bracket 12 with center symmetry to make the wind circulate. The support plate 11 is installed horizontally on both sides of the freezing flat plate 3. The baffle 1 7, baffle 2 8, baffle 3 9 and baffle 4 10 are installed on both sides of the freezing flat plate 3 from the outside to the inside and one end is connected to the freezing flat plate 3. The other end of the baffle 1 7, baffle 2 8, baffle 3 9 and baffle 4 10 is connected to the support plate 11. The goods 13 are evenly stacked on the freezing flat plate 3.
[0020] The fan 6 is installed in a symmetrical up-down staggered manner to allow the cold air to circulate.
[0021] The support plate 11 is provided with four openings in the middle, and three openings on the outer side of the support plate 11 are small, while the remaining opening is large, so that the cold air can reduce the heat again through the Bernoulli principle.
[0022] When the baffle plate 1 7 , baffle plate 2 8 , baffle plate 3 9 and baffle plate 4 10 are connected to the support plate 11 , baffle plate 1 7 is connected to the outermost, uppermost and lowermost freezing plates 3 of the support plate 11 , baffle plate 2 8 is connected to the second outermost, second uppermost and second lowermost freezing plates 3 of the support plate 11 , and so on, so as to better cooperate with the support plate.
[0023] After normal goods are placed on the freezing flat plate 3, in addition to the frozen goods 13, some cold energy and the cold energy on the goods 13 are lost. Therefore, when using this device, the fans 6 on both sides blow air to the freezing flat plate 3 to take away the excess cold energy. Then the cold air passes through the baffle to reduce the baffle loss, and then passes through the support plate. When it leaves the baffle, the space becomes smaller, the flow rate increases, and the pressure becomes smaller. Then, when it reaches the next environment, it expands, the pressure increases, and the heat is reduced again. Finally, the cold air is blown into the remaining flat plates through the fan 6 to complete a cycle.
Claims
1. An air-cooled cycle high-efficiency flat plate quick freezer, comprising goods (13), characterized in that: The invention also comprises a base (1), a storage body (2), a freezing plate (3), a plate support (4), a bracket (5), a fan (6), a baffle plate 1 (7), a baffle plate 2 (8), a baffle plate 3 (9), a baffle plate 4 (10), a support plate (11) and a fan bracket (12). The storage body (2) is mounted on the base (1). The bracket (5) is vertically mounted inside the storage body (2). A plurality of plate supports (4) are evenly distributed and mounted on the bracket (5). The freezing plate (3) is located on the plate supports (4) on the same plane and between the brackets (5). The fan bracket (12) is mounted on the base (1). The freezing plate (3) is fixed on both sides by a bracket (5), the fan (6) is symmetrically installed on the fan bracket (12), the support plate (11) is horizontally installed on both sides of the freezing plate (3), the baffle plate 1 (7), the baffle plate 2 (8), the baffle plate 3 (9) and the baffle plate 4 (10) are sequentially installed on both sides of the freezing plate (3) from the outside to the inside and one end is connected to the freezing plate (3), the other end of the baffle plate 1 (7), the baffle plate 2 (8), the baffle plate 3 (9) and the baffle plate 4 (10) are connected to the support plate (11), and the goods (13) are evenly stacked on the freezing plate (3).
2. The air-cooled cycle high-efficiency plate quick freezer according to claim 1, characterized in that: The fan (6) is installed in a symmetrical up-down staggered manner.
3. The air-cooled cycle high-efficiency plate quick freezer according to claim 1, characterized in that: The support plate (11) is provided with four openings in the middle, and three openings on the outer side of the support plate (11) are small, while the remaining opening is large.
4. The air-cooled cycle high-efficiency plate quick freezer according to claim 1, characterized in that: When the baffle plate 1 (7) and the baffle plate 2 (8) are connected to the support plate (11), the baffle plate 1 (7) is connected to the outermost, uppermost and lowermost freezing flat plates (3) of the support plate (11), and the baffle plate 2 (8) is connected to the second outermost, uppermost and lowermost freezing flat plates (3) of the support plate (11).