Energy-saving refrigerated container and control method thereof
By partitioning the refrigerated box with heat absorption and heat dissipation components, and combining them with row-pushing and lifting components, the high cost and energy-saving problems of storing multiple products are solved, achieving rapid cooling and energy-saving storage and retrieval.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-06
- Publication Date
- 2026-04-07
AI Technical Summary
Existing refrigerated boxes require multiple electronic locks when storing multiple products, resulting in high production costs and an inability to optimize energy consumption based on product inventory.
An energy-saving refrigerator was designed, which adopts a partitioned arrangement of heat absorption and heat dissipation components, combined with a row of push components and a lifting component. By controlling the components to monitor the temperature and adjust the cooling area, rapid cooling and energy-saving storage and retrieval can be achieved.
It effectively prevents accidental and theft, reduces the use of electrical equipment, has a simple structure, and achieves energy-saving effects by adjusting the cooling zone according to the existing stock.
Smart Images

Figure CN116558181B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of refrigerator technology, specifically to an energy-saving refrigerator and its control method. Background Technology
[0002] Refrigerated containers are storage devices used to refrigerate various items, including: freezers, wine cabinets, beverage cabinets, blood refrigerators, medicine cabinets, and biological storage cabinets.
[0003] For example, Chinese utility model patent CN201820547164.X describes a vertical transparent door refrigerator, which includes a refrigerator body. The refrigerator body has, from top to bottom, a light box area, a refrigerator compartment, and a compressor compartment. A keypad is located on the front panel of the light box area, and a control module is located within the light box area. The refrigerator compartment includes a glass door, an inner liner, and compartment cabinets. The glass door is equipped with an electronic lock. The inner liner is located inside the glass door, and the compartment cabinets are installed inside the inner liner. Each compartment cabinet includes several sheet metal shelves and several sheet metal grids, dividing the cabinet into M×N compartment units. Each compartment unit is equipped with a compartment unit door and an electronic lock for opening or closing the compartment unit door. The electronic lock, the electronic lock, and the keypad are all connected to the control module. This utility model can improve the security and intelligence of the refrigerator, thereby meeting the requirements of new retail methods such as unmanned payment and electronic payment.
[0004] However, the above structure has the following problems: only one set of products can be stored in the grid cabinet. When storing multiple products, multiple electronic locks are required. The production cost of multiple electronic locks is high, which is not conducive to practical use. At the same time, the space required for cooling is inconvenient, and it is impossible to adjust according to the product inventory, thus making it impossible to use in an energy-saving manner.
[0005] Based on this, the present invention designs an energy-saving refrigerator and its control method to solve the above problems. Summary of the Invention
[0006] In view of the above-mentioned shortcomings of the existing technology, the present invention provides an energy-saving refrigerator and its control method.
[0007] To achieve the above objectives, the present invention provides the following technical solution:
[0008] An energy-saving refrigerator includes a box body, with first hinges installed at equal intervals on the upper end of the rear side wall of the box body, and a cover plate connected to the first hinges.
[0009] The box is fixedly connected to a sealing support frame, and the rectangular array of stored items is placed on top of the sealing support frame. The sealing support frame divides the box into a cold storage compartment and a heat conduction compartment, with the cold storage compartment located above the heat conduction compartment.
[0010] The cabinet is also connected to a refrigeration component, which includes a heat absorption component and a heat dissipation component. The heat absorption component is located in the refrigerator compartment, and the heat dissipation component is located in the heat conduction compartment. The heat absorption component and the heat dissipation component are connected. The condensate in the heat absorption component absorbs the heat from the refrigerator compartment, and the heat dissipation component cools down the condensate after it has absorbed the heat. The cooled condensate then enters the refrigerator compartment to absorb heat again, thereby achieving rapid cooling and refrigeration.
[0011] The top of the sealing support frame is connected to an anti-theft sealing assembly, and the stored items are located below the anti-theft sealing assembly, which is used for anti-theft protection.
[0012] The top of the blocking support frame is connected to a row of pushing components, which are used to move the entire row of stored items.
[0013] The sealing support frame is fixedly connected to the left side wall with individual horizontal pushing components and lifting components. The tops of the individual horizontal pushing components and lifting components are flush with the top of the horizontal part of the sealing support frame. The lifting components are located at the front end of the individual horizontal pushing components. The entire row of pushing components pushes the entire row of stored items onto the individual horizontal pushing components and lifting components. The lifting components push one stored item out from the anti-theft cover component. Then, the individual horizontal pushing components push the stored items on top of the individual horizontal pushing components one by one to the top of the lifting components. The lifting components then push them out one by one. The individual horizontal pushing components, lifting components, and the entire row of pushing components work together to push the stored items in the rectangular array outward one by one, which can effectively prevent mistaken taking and theft.
[0014] The cabinet is connected to a control unit, which is electrically connected to the refrigeration unit, the individual horizontal pushing unit, the lifting unit, and the stored items. The control unit is used to monitor the temperature inside the refrigerator.
[0015] Furthermore, the heat dissipation assembly includes a vent, a return pipe, a first serpentine pipe, an intermediate pipe, a liquid pump, and a second fan. The vent, return pipe, first serpentine pipe, intermediate pipe, liquid pump, and second fan are all located below the sealing support frame. The liquid pump and second fan are installed at the bottom of the housing. The input end of the liquid pump is fixedly connected to one end of the first serpentine pipe, and the output end of the liquid pump is fixedly connected to the intermediate pipe. The other end of the first serpentine pipe is fixedly connected to the return pipe, and the second fan blows air toward the first serpentine pipe.
[0016] Furthermore, the heat absorption component includes a first fan, a second serpentine tube, and air holes. The first fan, the second serpentine tube, and the air holes are all located above the horizontal part of the sealing support frame. The first fan is fixedly installed on the inner wall of the box. The two ends of the second serpentine tube are fixedly connected to the intermediate tube and the return tube, respectively. Air holes are provided on the vertical part of the sealing support frame.
[0017] Furthermore, the anti-theft sealing assembly includes an electronic lock, a movable cover plate, a second hinge, and a retrieval hole. The upper part of the upright part of the sealing support frame is evenly connected with the second hinge, and the movable cover plate is fixedly connected to the second hinge. The retrieval hole is opened on the right side of the front end of the movable cover plate, and the electronic lock is fixedly connected to the top of the movable cover plate. The lock hole opened on the inner wall of the box is inserted into the lock rod of the electronic lock.
[0018] Furthermore, the entire push assembly includes a second motor, a threaded rod, and a second push plate. The second motor is fixedly installed on the side wall of the upright part of the housing. The drive end of the second motor is fixedly connected to the threaded rod. The second push plate is threadedly connected to the threaded rod through a threaded sleeve. The bottom wall of the second push plate is slidably connected to the top of the sealing support frame. The front and rear ends of the second push plate are slidably connected to the inner wall of the housing. The top of the second push plate is slidably connected to the bottom of the movable cover plate.
[0019] Furthermore, the horizontally driven components include a drive wheel, a pulley, and a first motor. The upright part of the blocking support frame is rotatably connected to the drive wheel via a bearing. A pulley is rotatably connected to the outer wall of the drive wheel. The first motor is fixedly connected to the side wall of the blocking support frame. The drive end of the first motor is fixedly connected to a set of the drive wheels. The top of the pulley is flush with the top of the horizontal part of the blocking support frame.
[0020] Furthermore, the lifting assembly includes an electric push rod and a first push plate. The electric push rod is fixedly installed at the bottom of the sealing support frame, and the first push plate is fixedly connected to the drive end of the electric push rod. The first push plate is located directly below the pick-up and drop-off hole.
[0021] Furthermore, when the telescopic end of the electric push rod moves to its lowest point, the top of the first push plate is flush with the top of the pulley and the top of the lateral part of the sealing support frame.
[0022] The present invention also provides a control method for an energy-saving refrigerator, comprising the following steps:
[0023] 1. When placing stored items, open the cover plate. The control component controls the electronic lock of the anti-theft cover component to separate from the lock hole opened in the box. The movable cover plate rotates along the second hinge. Then, place the rectangular array of stored items on the sealing support frame to achieve quick placement of stored items. Then, rotate the movable cover plate to a horizontal state. The control component controls the electronic lock to engage with the lock hole opened in the box. The movable cover plate limits the storage items, and only one stored item can be taken out of the retrieval hole at a time.
[0024] II. The control component controls the refrigeration component. The vents of the heat absorption component of the refrigeration component are used for gas flow in the refrigerator compartment. At the same time, the first fan drives the gas in the refrigerator compartment to accelerate the flow. The gas containing heat moves to the second serpentine tube. The cooled refrigerant cools the second serpentine tube. The cooled second serpentine tube absorbs the heat in the refrigerator compartment. Meanwhile, the liquid pump and return pipe of the heat dissipation component draw the refrigerant in the second serpentine tube to the first serpentine tube. The second fan and the vent work together to drive the air flow. The flowing air blows away the heat in the first serpentine tube, thus cooling the refrigerant. The cooled refrigerant is then pumped back into the second serpentine tube by the liquid pump to achieve rapid cooling and achieve refrigeration.
[0025] 3. When retrieving and storing items, the control unit controls the row-wide pushing component, the individual horizontal pushing component, and the lifting component. The second motor of the row-wide pushing component drives the threaded rod to rotate, which in turn moves the second pushing plate to the right. The second pushing plate pushes the entire row of stored items to the right, facilitating the movement of the entire row of stored items. Simultaneously, the space requiring cooling during the rightward movement of the second pushing plate is adjusted according to the amount of stored items, eliminating the need for complete cooling of the top of the sealing support frame, thus achieving energy savings. The row-wide pushing component pushes the entire row of stored items to the belt of the individual horizontal pushing component. At the top of the wheel, the first motor drives the drive wheel to rotate, which in turn drives the pulley to rotate. The pulley moves the stored item on top of the pulley to the top of the lifting assembly. The electric push rod of the lifting assembly moves to its lowest point, and the horizontal pushing assembly pushes the stored items near the lifting assembly to the top of the first push plate. The electric push rod pushes the first push plate upward, and the first push plate pushes the stored items on top of the first push plate upward. The stored items on top of the first push plate move through the retrieval hole to the top of the movable cover, and the desired stored item is pushed out from the anti-theft sealing assembly. Beneficial effects
[0026] This invention uses a combination of horizontal pushing components, lifting components, and row pushing components to push the stored items in a rectangular array outward one by one, effectively preventing accidental or theft. It uses fewer electrical devices and has a simple overall structure, making it easy to use. Meanwhile, the second motor of the row pushing component drives the threaded rod to rotate, which in turn drives the second pushing plate to move to the right. The second pushing plate pushes the entire row of stored items to the right, facilitating the movement of the entire row of stored items. At the same time, the space requiring cooling when the second pushing plate moves to the right is adjusted according to the amount of stored items, eliminating the need to cool the entire top of the sealing support frame, thus achieving energy saving.
[0027] In this invention, the locking bar of the electronic lock of the anti-theft sealing assembly is separated from the lock hole opened in the box. The movable cover plate rotates along the second hinge, and then the rectangular array of stored items is placed on the sealing support frame to realize the rapid placement of stored items. Then the movable cover plate is rotated to a horizontal state, and the control component controls the locking bar of the electronic lock to be inserted into the lock hole opened in the box. The movable cover plate limits the storage items, and only one stored item can be taken out of the retrieval hole at a time. Attached Figure Description
[0028] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without any creative effort.
[0029] Figure 1 This invention provides a three-dimensional structure for the main body of an energy-saving refrigerator. Figure 1 ;
[0030] Figure 2 This is a front view of the structure of an energy-saving refrigerator according to the present invention;
[0031] Figure 3 This is a left view of the main structure of an energy-saving refrigerator according to the present invention;
[0032] Figure 4 For along Figure 2 A sectional view along the AA direction;
[0033] Figure 5 For along Figure 2 BB direction sectional view;
[0034] Figure 6 For along Figure 3 A cross-sectional view along the CC direction;
[0035] Figure 7 For along Figure 3 DD direction section Figure 1 ;
[0036] Figure 8 For along Figure 3 DD direction section Figure 2 ;
[0037] Figure 9 for Figure 4 Enlarged view of point E in the middle.
[0038] The labels in the diagram represent:
[0039] 1. Cabinet 2. Refrigeration Components 21. Vent 22. Return Pipe 23. First Serpentine Pipe 24. Intermediate Pipe 25. Liquid Pump 26. First Fan 27. Second Serpentine Pipe 28. Air Hole 29. Second Fan 3. Display Screen 4. Cover Plate 5. First Hinge 6. Individual Horizontal Push Components 61. Drive Wheel 62. Pulley 63. First Motor 7. Lifting Components 71. Electric Push Rod 72. First Push Plate 8. Sealing Support Frame 9. Controller 10. Row Push Components 101. Second Motor 102. Threaded Rod 103. Second Push Plate 11. Anti-theft Cover Components 111. Electronic Lock 112. Movable Cover Plate 113. Second Hinge 114. Retrieval Hole 12. Stored Items 13. Temperature Sensor. Detailed Implementation
[0040] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0041] The present invention will be further described below with reference to embodiments.
[0042] In some embodiments, please refer to the appendix to the instruction manual. Figure 1-9 An energy-saving refrigerator includes a box body 1, with first hinges 5 installed at equal intervals on the upper end of the rear side wall of the box body 1, and a cover plate 4 connected to the first hinges 5.
[0043] The cabinet 1 is fixedly connected to a sealing support frame 8. The stored items 12 are arranged in a rectangular array above the sealing support frame 8. The sealing support frame 8 divides the cabinet 1 into a cold storage compartment and a heat conduction compartment, with the cold storage compartment located above the heat conduction compartment.
[0044] The cabinet 1 is also connected to a refrigeration component 2, which includes a heat absorption component and a heat dissipation component. The heat absorption component is located in the refrigerator compartment, and the heat dissipation component is located in the heat conduction compartment. The heat absorption component and the heat dissipation component are connected. The condensate in the heat absorption component absorbs the heat from the refrigerator compartment, and the heat dissipation component cools down the condensate after it has absorbed the heat. The cooled condensate then enters the refrigerator compartment to absorb heat again, thus achieving rapid cooling and refrigeration.
[0045] The heat dissipation assembly includes a vent 21, a return pipe 22, a first serpentine pipe 23, an intermediate pipe 24, a liquid pump 25, and a second fan 29. The vent 21, return pipe 22, first serpentine pipe 23, intermediate pipe 24, liquid pump 25, and second fan 29 are all located below the sealing support frame 8. The liquid pump 25 and the second fan 29 are installed at the bottom of the housing 1. The input end of the liquid pump 25 is fixedly connected to one end of the first serpentine pipe 23, and the output end of the liquid pump 25 is fixedly connected to the intermediate pipe 24. The other end of the first serpentine pipe 23 is fixedly connected to the return pipe 22. The second fan 29 blows air toward the first serpentine pipe 23.
[0046] The heat absorption assembly includes a first fan 26, a second serpentine tube 27, and an air hole 28. The first fan 26, the second serpentine tube 27, and the air hole 28 are all located above the horizontal part of the sealing support frame 8. The first fan 26 is fixedly installed on the inner wall of the housing 1. The two ends of the second serpentine tube 27 are fixedly connected to the intermediate tube 24 and the return tube 22, respectively. The air hole 28 is provided on the vertical part of the sealing support frame 8.
[0047] The vent 28 of the heat absorption component of the refrigeration component 2 is used for gas flow in the refrigerator compartment. At the same time, the first fan 26 drives the gas in the refrigerator compartment to accelerate the flow. The gas containing heat moves to the second serpentine tube 27. The cooled condensate cools down the second serpentine tube 27. The cooled second serpentine tube 27 absorbs heat from the refrigerator compartment. Meanwhile, the liquid pump 25 and return pipe 22 of the heat dissipation component draw the condensate in the second serpentine tube 27 to the first serpentine tube 23. The second fan 29 and the vent 21 work together to drive the air flow. The flowing air blows away the heat in the first serpentine tube 23, thereby cooling the condensate. The cooled condensate then enters the second serpentine tube 27 through the liquid pump 25 to achieve rapid cooling and achieve refrigeration.
[0048] The top of the sealing support frame 8 is connected to an anti-theft sealing assembly 11, and the stored item 12 is located below the anti-theft sealing assembly 11. The anti-theft sealing assembly 11 is used for anti-theft processing.
[0049] The anti-theft sealing assembly 11 includes an electronic lock 111, a movable cover plate 112, a second hinge 113, and a pick-up and put-out hole 114. The upper part of the upright part of the sealing support frame 8 is evenly connected with the second hinge 113. The movable cover plate 112 is fixedly connected to the second hinge 113. The pick-up and put-out hole 114 is opened on the right side of the front end of the movable cover plate 112. The electronic lock 111 is fixedly connected to the top of the movable cover plate 112, and the lock hole opened on the inner wall of the box body 1 is inserted into the lock rod of the electronic lock 111.
[0050] When the stored item 12 is placed, the locking bar of the electronic lock 111 of the anti-theft sealing assembly 11 separates from the lock hole opened in the box 1. The movable cover 112 rotates along the second hinge 113, and then the rectangular array of stored items 12 is placed on the sealing support frame 8 to realize the rapid placement of stored items 12. Then the movable cover 112 is rotated to a horizontal state, and the control assembly controls the locking bar of the electronic lock 111 to be inserted into the lock hole opened in the box 1. The movable cover 112 limits the storage item 12, and only one storage item 12 can be taken out of the retrieval hole 114 at a time.
[0051] The top of the blocking support frame 8 is connected to a row of pushing components 10, which are used to move the entire row of stored items 12.
[0052] The entire row of push assembly 10 includes a second motor 101, a threaded rod 102, and a second push plate 103. The second motor 101 is fixedly installed on the side wall of the upright part of the housing 1. The drive end of the second motor 101 is fixedly connected to the threaded rod 102. The second push plate 103 is threadedly connected to the threaded rod 102 through a threaded sleeve. The bottom wall of the second push plate 103 is slidably connected to the top of the sealing support frame 8. The front and rear ends of the second push plate 103 are slidably connected to the inner wall of the housing 1. The top of the second push plate 103 is slidably connected to the bottom of the movable cover plate 112.
[0053] The second motor 101 of the whole row push assembly 10 drives the threaded rod 102 to rotate, and the threaded rod 102 drives the second push plate 103 to move to the right. The second push plate 103 pushes the whole row of stored items 12 to the right, which facilitates the movement of the whole row of stored items 12. At the same time, the space that needs to be cooled when the second push plate 103 moves to the right is adjusted according to the amount of stored items 12, so there is no need to cool the top of the sealing support frame 8 completely, thus achieving energy saving.
[0054] The sealing support frame 8 is fixedly connected to the left side wall with individual horizontal pushing components 6 and lifting components 7. The tops of the individual horizontal pushing components 6 and lifting components 7 are flush with the top of the horizontal part of the sealing support frame 8. The lifting component 7 is located at the front end of the individual horizontal pushing components 6. The entire row of pushing components 10 pushes the entire row of stored items 12 onto the individual horizontal pushing components 6 and lifting components 7. The lifting component 7 pushes one stored item 12 out from the anti-theft cover component 11. Then, the individual horizontal pushing components 6 push the stored items 12 on top of the individual horizontal pushing components 6 one by one onto the top of the lifting component 7. The lifting component 7 then pushes them out one by one. The individual horizontal pushing components 6, lifting components 7 and the entire row of horizontal pushing components 6 push the stored items 12 on top of the individual horizontal pushing components 6 one by one onto the top of the lifting component 7. The lifting component 7 then pushes them out one by one. The row pushing component 10 works in conjunction to push the rectangular array of stored items 12 outward one by one, effectively preventing accidental or theft. The overall electrical equipment is minimal, and the simple overall structure facilitates practical use. Meanwhile, the second motor 101 of the row pushing component 10 drives the threaded rod 102 to rotate, and the threaded rod 102 drives the second pushing plate 103 to move to the right. The second pushing plate 103 pushes the entire row of stored items 12 to the right, facilitating the movement of the entire row of stored items 12. At the same time, the space requiring cooling when the second pushing plate 103 moves to the right is adjusted according to the amount of stored items 12, eliminating the need to completely cool the top of the sealing support frame 8, thus achieving energy saving.
[0055] The horizontally driven component 6 includes a drive wheel 61, a pulley 62, and a first motor 63. The upright part of the blocking support frame 8 is rotatably connected to the drive wheel 61 via a bearing. The pulley 62 is rotatably connected to the outer wall of the drive wheel 61. The first motor 63 is fixedly connected to the side wall of the blocking support frame 8. The drive end of the first motor 63 is fixedly connected to a group of drive wheels 61. The top of the pulley 62 is flush with the top of the horizontal part of the blocking support frame 8.
[0056] The row-pushing assembly 10 pushes the row of stored items 12 to the top of the pulleys 62 of the individual horizontal pushing assembly 6. The first motor 63 drives the drive wheel 61 to rotate, the drive wheel 61 drives the pulley 62 to rotate, and the pulley 62 moves the stored items 12 at the top of the pulley 62 to the top of the lifting assembly 7.
[0057] The lifting assembly 7 includes an electric push rod 71 and a first push plate 72. The electric push rod 71 is fixedly installed at the bottom of the sealing support frame 8. The first push plate 72 is fixedly connected to the drive end of the electric push rod 71. The first push plate 72 is located directly below the pick-up and drop hole 114. When the telescopic end of the electric push rod 71 moves to the lowest point, the top of the first push plate 72 is flush with the top of the pulley 62 and the top of the horizontal part of the sealing support frame 8.
[0058] The electric push rod 71 of the lifting assembly 7 moves to the lowest point, and the horizontal push assembly 6 pushes the stored items 12 near the lifting assembly 7 to the top of the first push plate 72. The electric push rod 71 pushes the first push plate 72 upward, and the first push plate 72 pushes the stored items 12 on the top of the first push plate 72 upward. The stored items 12 on the top of the first push plate 72 move through the retrieval hole 114 to the top of the movable cover plate 112, and push out the required stored item 12 from the anti-theft sealing assembly 11.
[0059] The cabinet 1 is connected to a control component, which is electrically connected to the refrigeration component 2, the sequential horizontal pushing component 6, the lifting component 7, and the stored items 12. The control component is used to monitor the temperature inside the refrigerator compartment.
[0060] The control components include a display screen 3, a controller 9, and a temperature sensor 13. The display screen 3 is fixedly installed on the top of the cover plate 4, the controller 9 is fixedly installed on the bottom of the cabinet 1, and the temperature sensor 13 is fixedly installed on the left side of the inner wall of the cabinet 1. The controller 9 is electrically connected to the display screen 3, the temperature sensor 13, the liquid pump 25, the first fan 26, the second fan 29, the electric push rod 71, the first motor 63, the second motor 101, and the electronic lock 111.
[0061] The present invention also provides a control method for an energy-saving refrigerator, comprising the following steps:
[0062] 1. When placing the stored item 12, open the cover plate 4. The control component controls the locking bar of the electronic lock 111 of the anti-theft cover assembly 11 to separate from the lock hole opened in the box body 1. The movable cover plate 112 rotates along the second hinge 113. Then, place the rectangular array of stored items 12 onto the sealing support frame 8 to achieve quick placement of stored items 12. Then, rotate the movable cover plate 112 to a horizontal state. The control component controls the locking bar of the electronic lock 111 to insert into the lock hole opened in the box body 1. The movable cover plate 112 limits the storage item 12, and only one storage item 12 can be taken out of the retrieval hole 114 at a time.
[0063] 2. The control component controls the refrigeration component 2. The vent 28 of the heat absorption component of the refrigeration component 2 is used for gas flow in the refrigerator compartment. At the same time, the first fan 26 drives the gas in the refrigerator compartment to accelerate the flow. The gas containing heat moves to the second serpentine tube 27. The cooled condensate cools down the second serpentine tube 27. The cooled second serpentine tube 27 absorbs the heat in the refrigerator compartment. At the same time, the liquid pump 25 and return pipe 22 of the heat dissipation component draw the condensate in the second serpentine tube 27 to the first serpentine tube 23. The second fan 29 and the vent 21 work together to drive the air flow. The flowing air blows away the heat in the first serpentine tube 23, realizing the cooling of the condensate. The cooled condensate enters the second serpentine tube 27 again through the liquid pump 25 to achieve rapid cooling and realize refrigeration.
[0064] 3. When retrieving the stored item 12, the control component controls the row-pushing component 10, the individual horizontal pushing component 6, and the lifting component 7. The second motor 101 of the row-pushing component 10 drives the threaded rod 102 to rotate, and the threaded rod 102 drives the second push plate 103 to move to the right. The second push plate 103 pushes the entire row of stored items 12 to the right, facilitating the movement of the entire row of stored items 12. At the same time, the space requiring cooling when the second push plate 103 moves to the right is adjusted according to the amount of stored items 12, eliminating the need for complete cooling of the top of the sealing support frame 8, thus achieving energy saving. The row-pushing component 10 pushes the entire row of stored items 12 to the top of the pulley 62 of the individual horizontal pushing component 6. The first motor 63 drives the drive wheel 61 to rotate, and the drive wheel 61 drives the pulley 62 to rotate. The pulley 62 moves the stored item 12 on top of the pulley 62 to the top of the lifting assembly 7. The electric push rod 71 of the lifting assembly 7 moves to the lowest point. The horizontal pushing assembly 6 pushes the stored item 12 near the lifting assembly 7 to the top of the first push plate 72. The electric push rod 71 pushes the first push plate 72 upward. The first push plate 72 pushes the stored item 12 on top of the first push plate 72 upward. The stored item 12 on top of the first push plate 72 passes through the retrieval hole 114 and moves above the movable cover plate 112, pushing out the required stored item 12 from the anti-theft sealing assembly 11.
[0065] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. An energy-saving refrigerator, comprising a cabinet (1), characterized in that: The upper rear side wall of the box (1) is equipped with first hinges (5) at equal intervals, and the first hinges (5) are connected to the cover plate (4). The box (1) is fixedly connected to a sealing support frame (8), and the stored items (12) are arranged in a rectangular array above the sealing support frame (8). The sealing support frame (8) divides the box (1) into a cold storage compartment and a heat conduction compartment, and the cold storage compartment is located above the heat conduction compartment. The cabinet (1) is also connected to a refrigeration component (2). The refrigeration component (2) includes a heat absorption component and a heat dissipation component. The heat absorption component is located in the cold storage chamber, and the heat dissipation component is located in the heat conduction chamber. The heat absorption component and the heat dissipation component are connected. The condensate in the heat absorption component absorbs the heat in the cold storage chamber. The heat dissipation component cools down the condensate after it has absorbed the heat. The cooled condensate then enters the cold storage chamber to absorb heat, thereby achieving rapid cooling and refrigeration. The top of the sealing support frame (8) is connected to an anti-theft sealing assembly (11), and the stored items (12) are located below the anti-theft sealing assembly (11). The anti-theft sealing assembly (11) is used for anti-theft treatment. The top of the blocking support frame (8) is connected to a row of push assembly (10), which is used to move the row of stored items (12); The sealing support frame (8) is fixedly connected to the left side wall with individual horizontal pushing components (6) and lifting components (7). The top of the individual horizontal pushing components (6) and lifting components (7) is flush with the top of the horizontal part of the sealing support frame (8). The lifting components (7) are located at the front end of the individual horizontal pushing components (6). The entire row of pushing components (10) pushes the entire row of stored items (12) onto the individual horizontal pushing components (6) and lifting components (7). The lifting components (7) pushes a stored item (12) out of the anti-theft sealing component (11). Then, the individual horizontal pushing components (6) push the stored items (12) on the top of the individual horizontal pushing components (6) one by one to the top of the lifting components (7). The lifting components (7) then push them out one by one. The individual horizontal pushing components (6), lifting components (7) and the entire row of pushing components (10) work together to push the rectangular array of stored items (12) outward one by one, which can effectively prevent mistaken taking and theft. The cabinet (1) is connected to a control component, which is electrically connected to the refrigeration component (2), the horizontal pushing component (6), the lifting component (7), and the stored items (12). The control component is used to monitor the temperature inside the refrigerator.
2. The energy-saving refrigerator according to claim 1, characterized in that, The heat dissipation assembly includes a vent (21), a return pipe (22), a first serpentine pipe (23), an intermediate pipe (24), a liquid pump (25), and a second fan (29). The vent (21), return pipe (22), first serpentine pipe (23), intermediate pipe (24), liquid pump (25), and second fan (29) are all located below the sealing support frame (8). The liquid pump (25) and second fan (29) are installed at the bottom of the housing (1). The input end of the liquid pump (25) is fixedly connected to one end of the first serpentine pipe (23), and the output end of the liquid pump (25) is fixedly connected to the intermediate pipe (24). The other end of the first serpentine pipe (23) is fixedly connected to the return pipe (22), and the second fan (29) blows air toward the first serpentine pipe (23).
3. The energy-saving refrigerator according to claim 2, characterized in that, The heat absorption assembly includes a first fan (26), a second serpentine tube (27), and an air hole (28). The first fan (26), the second serpentine tube (27), and the air hole (28) are all located above the horizontal part of the sealing support frame (8). The first fan (26) is fixedly installed on the inner wall of the box (1). The two ends of the second serpentine tube (27) are fixedly connected to the middle tube (24) and the return tube (22) respectively. The air hole (28) is provided on the vertical part of the sealing support frame (8).
4. The energy-saving refrigerator according to claim 3, characterized in that, The anti-theft sealing assembly (11) includes an electronic lock (111), a movable cover plate (112), a second hinge (113), and a pick-up and put-out hole (114). The upper part of the upright part of the sealing support frame (8) is evenly connected with the second hinge (113). The movable cover plate (112) is fixedly connected to the second hinge (113). The pick-up and put-out hole (114) is opened on the right side of the front end of the movable cover plate (112). The electronic lock (111) is fixedly connected to the top of the movable cover plate (112), and the lock hole opened on the inner wall of the box (1) is inserted into the lock rod of the electronic lock (111).
5. The energy-saving refrigerator according to claim 4, characterized in that, The push assembly (10) includes a second motor (101), a threaded rod (102), and a second push plate (103). The second motor (101) is fixedly installed on the side wall of the upright part of the housing (1). The drive end of the second motor (101) is fixedly connected to the threaded rod (102). The second push plate (103) is threadedly connected to the threaded rod (102) through a threaded sleeve. The bottom wall of the second push plate (103) is slidably connected to the top of the sealing support frame (8). The front and rear ends of the second push plate (103) are slidably connected to the inner wall of the housing (1). The top of the second push plate (103) is slidably connected to the bottom of the movable cover plate (112).
6. The energy-saving refrigerator according to claim 5, characterized in that, The horizontally driven assembly (6) includes a drive wheel (61), a pulley (62) and a first motor (63). The upright part of the blocking support frame (8) is rotatably connected to the drive wheel (61) via a bearing. The outer wall of the drive wheel (61) is rotatably connected to the pulley (62). The side wall of the blocking support frame (8) is fixedly connected to the first motor (63). The drive end of the first motor (63) is fixedly connected to a set of the drive wheels (61). The top of the pulley (62) is flush with the top of the horizontal part of the blocking support frame (8).
7. The energy-saving refrigerator according to claim 6, characterized in that, The lifting assembly (7) includes an electric push rod (71) and a first push plate (72). The electric push rod (71) is fixedly installed at the bottom of the sealing support frame (8). The first push plate (72) is fixedly connected to the drive end of the electric push rod (71). The first push plate (72) is located directly below the pick-up and drop-off hole (114).
8. The energy-saving refrigerator according to claim 7, characterized in that, When the telescopic end of the electric push rod (71) moves to the lowest point, the top of the first push plate (72) is flush with the top of the pulley (62) and the top of the horizontal part of the sealing support frame (8).
9. A control method for an energy-saving refrigerator as described in claim 8, characterized in that, Includes the following steps:
1. When placing the stored items (12), open the cover plate (4), and the control component controls the locking rod of the electronic lock (111) of the anti-theft sealing component (11) to separate from the lock hole opened in the box (1). The movable cover plate (112) rotates along the second hinge (113), and then the rectangular array of stored items (12) is placed on the sealing support frame (8) to realize the quick placement of stored items (12). Then, rotate the movable cover plate (112) to the horizontal state, and the control component controls the locking rod of the electronic lock (111) to be inserted into the lock hole opened in the box (1). The movable cover plate (112) limits the storage items (12), and the take-out hole (114) can only take out one stored item (12) at a time. II. Control Components: The refrigeration component (2) is controlled by the heat absorption component of the refrigeration component (2). The vent (28) of the heat absorption component is used for the gas flow in the refrigerator compartment. At the same time, the first fan (26) drives the gas in the refrigerator compartment to accelerate the flow. The gas containing heat moves to the second serpentine tube (27). The cooled condensate cools down the second serpentine tube (27). The cooled second serpentine tube (27) absorbs the heat in the refrigerator compartment. At the same time, the liquid pump (25) and return pipe (22) of the heat dissipation component draw the condensate in the second serpentine tube (27) to the first serpentine tube (23). The second fan (29) and vent (21) work together to drive the air flow. The flowing air blows away the heat in the first serpentine tube (23) to achieve the cooling of the condensate. The cooled condensate enters the second serpentine tube (27) again through the liquid pump (25) to achieve rapid cooling and achieve refrigeration.
3. When retrieving and storing items (12), the control component controls the row-pushing component (10), the individual horizontal pushing component (6), and the lifting component (7). The second motor (101) of the row-pushing component (10) drives the threaded rod (102) to rotate. The threaded rod (102) drives the second pushing plate (103) to move to the right. The second pushing plate (103) pushes the row of stored items (12) to the right, which facilitates the movement of the row of stored items (12). At the same time, the space that needs to be cooled when the second pushing plate (103) moves to the right is adjusted according to the amount of stored items (12). There is no need to cool the top of the sealing support frame (8) completely, thus achieving energy saving. The row-pushing component (10) pushes the row of stored items (12) to the top of the pulley (62) of the individual horizontal pushing component (6). The first motor (6) 3) Drive the drive wheel (61) to rotate. Drive the drive wheel (61) to rotate the pulley (62). The pulley (62) moves the stored item (12) on the top of the pulley (62) to the top of the lifting assembly (7). The electric push rod (71) of the lifting assembly (7) moves to the lowest end. The horizontal push assembly (6) pushes the stored item (12) near the lifting assembly (7) to the top of the first push plate (72). The electric push rod (71) pushes the first push plate (72) to move upward. The first push plate (72) pushes the stored item (12) on the top of the first push plate (72) to move upward. The stored item (12) on the top of the first push plate (72) passes through the pick-up and drop-off hole (114) and moves to the top of the movable cover plate (112). The required stored item (12) is pushed out from the anti-theft sealing assembly (11).
Citation Information
Patent Citations
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