Energy-saving refrigerator with automatic defrosting
By incorporating deodorizing components and a sliding structure into the energy-saving freezer, the activated carbon pack is automatically replaced and the adsorption port is cleaned, solving the problem of the need for regular cleaning of activated carbon and improving the convenience and hygiene of the freezer.
Patent Information
- Application Number
- CN202310943776.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-31
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2043-07-31
AI Technical Summary
Existing automatic defrosting energy-saving freezers require regular cleaning of the activated carbon box; otherwise, the activated carbon's adsorption capacity will decrease, leading to the spread of odors in the meat storage space.
An energy-saving freezer with automatic defrosting was designed. By setting up deodorizing components inside the meat storage box, including a deodorizing box, toothed plate, rotating structure and brush, the activated carbon pack can be replaced automatically and the adsorption port can be cleaned. Combined with the design of sliding structure and sorting basket, space occupation and cross-contamination of bacteria are reduced.
Automatic replacement of activated carbon packs reduces the probability of odor blockage at the adsorption port, minimizes space occupation and bacterial growth inside the freezer, and improves ease of use and hygiene.
Smart Images

Figure CN116972569B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of energy-saving refrigerator technology, specifically to an energy-saving refrigerator with automatic defrosting capability. Background Technology
[0002] Energy-efficient freezers are already quite common; please refer to [link / reference] for details. Figure 1 ,like Figure 1 As shown, the energy-saving freezer body 1 is connected to an external power source. After opening the freezer lid 3, the food to be refrigerated is placed inside the energy-saving freezer body 1. The temperature inside the energy-saving freezer body 1 is controlled through the control panel to cool and store the food. At the same time, during operation, the defrost device 4 inside the energy-saving freezer body 1 will also perform regular defrosting to reduce the possibility of frost forming on the inner wall of the energy-saving freezer body 1. Due to continuous technological advancements, most of the existing energy-saving freezer bodies 1 are energy-saving freezers.
[0003] Existing energy-saving refrigerators with automatic defrosting typically have multiple baskets inside for different types of food, allowing for easy categorization and retrieval. However, when raw meat is stored inside the refrigerator body, cross-contamination of odors and bacteria can occur. Therefore, a refrigerator that can store meat separately is needed, along with deodorization of the meat storage space. Current deodorization methods rely on activated carbon adsorption, placing the activated carbon in the meat storage area. However, the activated carbon box needs regular cleaning; otherwise, its adsorption capacity will decrease over time, causing odors to re-spread. Therefore, a refrigerator with an automatic defrosting system and an activated carbon box structure with automatic lifting function is required. Summary of the Invention
[0004] The purpose of this invention is to provide an energy-saving freezer with automatic defrosting capability, in order to solve the problem mentioned in the background art that the activated carbon box inside the automatic defrosting energy-saving freezer needs to be cleaned regularly, otherwise the activated carbon will experience a decrease in adsorption capacity after long-term use, leading to the re-spread of odors in the meat storage space.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an energy-saving freezer with automatic defrosting capability, comprising an energy-saving freezer body, wherein a meat storage box is provided inside the energy-saving freezer body, and an odor-removing component is provided inside the meat storage box;
[0006] The deodorizing component includes a deodorizing box fixed to the inner wall of the meat storage box. The deodorizing box has internal grooves on both sides of its inner side walls, which extend through both sides. A matching base plate is provided inside the deodorizing box. Toothed plates are fixed to both sides of the base plate, and a top plate is provided at the top of each toothed plate. The bottom of the top plate is fixed to the top of the toothed plates. Rotating structures are provided on both sides of the deodorizing box. Several adsorption ports are opened on one side of the deodorizing box opposite to the meat storage box. A brush is fixed to the side of the base plate near the adsorption ports, and the brush abuts against the adsorption ports.
[0007] Preferably, the meat storage box has an insertion slot on one side and an internal limiting slot inside. The internal limiting slot and the insertion slot are located on the four sides of the meat storage box, and the insertion slot and the internal limiting slot are interconnected.
[0008] Preferably, the insertion slot is provided with an odor-proof structure, the odor-proof structure including a second sliding plate inserted into the insertion slot, and an insulating rubber ring fixed on the periphery of the second sliding plate, the total length between the second sliding plate and the insulating rubber ring being adapted to the length of the insertion slot.
[0009] Preferably, the rotating structure includes two rotating rods, one end of which is rotatably connected to the inner wall of the meat storage box, and an elastic rope is wound around the surface of the rotating rod. One end of the elastic rope is fixed to the surface of the rotating rod, and the other end of the elastic rope is fixed to the bottom end of the second sliding plate.
[0010] Preferably, the built-in groove includes a first groove, a second groove, and a third groove, with the first groove and the second groove on opposite sides of the third groove, and the cross-sections of the third groove, the second groove, and the first groove having a "convex" shape design.
[0011] Preferably, a rotating gear is fixed to the surface of the rotating rod, the width of the rotating gear is adapted to the width of the first groove, and the circumference of the rotating rod is provided with teeth that mesh with the toothed plate.
[0012] Preferably, a second sorting basket is provided above the odor-proof structure. Two symmetrically designed semi-circular connectors are fixed at the bottom of the second sorting basket and the top of the second sliding plate. Each semi-circular connector has a through hole, and a snap-fit structure is provided between adjacent semi-circular connectors.
[0013] Preferably, the snap-fit structure includes snap-fit members disposed between the semi-circular connectors. The top and bottom ends of the snap-fit members are provided with slots. Two snap-fit plates are provided on both sides of the snap-fit members. The outer diameter of the snap-fit plates is adapted to the inner diameter of the through hole.
[0014] Preferably, external slide rails are provided on the side walls of the two opposite sides of the second classification basket, a first classification basket is provided above the second classification basket, a first sliding plate is fixed on both sides of the opposite side of the first classification basket, a sliding structure is provided between the first classification basket and the second classification basket, internal slide rails adapted to and slidably connected to the first sliding plate are provided on both sides of the interior of the energy-saving freezer body, a freezer lid is rotatably connected to the top of the energy-saving freezer body, a defroster is fixed on one side of the energy-saving freezer body, the defroster extends into the interior of the energy-saving freezer body, and handles are fixed on the two opposite sides of the energy-saving freezer body away from the defroster.
[0015] Preferably, the sliding structure includes two connecting blocks disposed at the bottom of the first sorting basket. Mounting plates are disposed on both sides of each connecting block. The top end of each mounting plate is fixedly connected to the bottom end of the first sorting basket. A rotating shaft is rotatably connected to adjacent surfaces of each mounting plate. The other end of each rotating shaft is fixedly connected to the side wall of the connecting block. A torsion spring is wound around the surface of each rotating shaft. One end of each torsion spring is fixedly connected to the side wall of the connecting block, and the other end is fixedly connected to the side wall of the mounting plate. A limiting block is fixed to the side of each connecting block near the external slide rail, and the limiting block is adapted to the external slide rail.
[0016] Compared with the prior art, the beneficial effects of the present invention are: the energy-saving freezer with automatic defrosting not only makes it convenient for users to replace the built-in activated carbon pack, reducing the probability of odors after the adsorption port is blocked, and reducing the space occupied when the freezer is opened, but also realizes the replacement and maintenance between the second classification basket and the second sliding plate and meets the user's need for a large space.
[0017] (1) By setting an odor-proof structure, odor-removing components, top plate, rotating rod, odor-removing box, toothed plate, built-in groove, bottom plate, adsorption port and brush inside the meat storage box, the movement of the odor-proof structure will cause the odor-removing components to rotate, and the rotating structure will drive the bottom plate inside the odor-removing box to rise and fall automatically, so as to facilitate the user to replace the built-in activated carbon pack.
[0018] (2) By setting up a brush, toothed plate, bottom plate and rotating structure in the deodorizing box, the rotating structure will drive the bottom plate up and down when in use. At this time, the brush will clean the adsorption port on the side wall of the deodorizing box, reducing the probability of odor after the adsorption port is blocked.
[0019] (3) By setting a first classification basket, a second classification basket, a meat storage box, a sliding structure, a snap-fit structure, an odor-proof structure and a semi-circular connector inside the meat storage box, the first classification basket will move under the action of the second classification basket or above the sliding structure when in use. At the same time, the second classification basket will move the second sliding plate synchronously. When the sliding structure is moved, the odor-proof structure at the top of the second classification basket will move synchronously, reducing the space occupied when the freezer is opened.
[0020] (4) By setting a semi-circular connector, through hole, snap-fit and snap-fit plate between the second sliding plate and the second sorting basket, the snap-fit is a pressable block when in use, and the snap-fit plates on both sides will cooperate with the through hole to realize the replacement and maintenance between the second sorting basket and the second sliding plate.
[0021] (5) By setting an external slide rail, connecting block, limiting block, rotating shaft, torsion spring and mounting plate between the first and second classification baskets, the limiting block will slide in cooperation with the external slide rail during use, so as to realize the sliding between the first and second classification baskets. At the same time, the design of the torsion spring and rotating shaft makes the limiting block and the external slide rail detachable, which is convenient for later maintenance or to meet the user's need for a large space. Attached Figure Description
[0022] Figure 1 A schematic diagram of the main structure of an existing automatic defrosting energy-saving freezer;
[0023] Figure 2 This is a schematic diagram of an energy-saving freezer with automatic defrosting according to the present invention;
[0024] Figure 3 This is a schematic diagram of the exploded structure of the first and second sorting baskets of the present invention;
[0025] Figure 4 For the present invention Figure 3 A magnified view of the structure at point A in the middle;
[0026] Figure 5 This is a three-dimensional structural diagram of the sliding structure of the present invention;
[0027] Figure 6 This is a bottom view of the meat storage box structure of the present invention;
[0028] Figure 7 A schematic diagram showing the open structure of the first sorting basket, the second sorting basket, and the meat storage box of the present invention;
[0029] Figure 8 This is a schematic diagram of the exploded structure of the meat storage box of the present invention;
[0030] Figure 9 For the present invention Figure 8 A magnified view of the structure at point A in the middle;
[0031] Figure 10 This is a schematic diagram of the open structure of the deodorizing component of the present invention;
[0032] Figure 11 This is a three-dimensional structural diagram of the deodorizing box of the present invention;
[0033] Figure 12 This is a schematic diagram of the three-dimensional structure of the base plate and toothed plate of the present invention.
[0034] In the picture:
[0035] 1. Energy-saving freezer body; 2. Handle; 3. Freezer lid; 4. Defroster;
[0036] 5. First sorting basket; 51. First sliding plate;
[0037] 6. Built-in slide rails;
[0038] 7. Sliding structure; 71. Connecting block; 72. Limiting block; 73. Rotating shaft; 74. Torsion spring; 75. Mounting plate;
[0039] 8. Second category basket; 81. External sliding rail;
[0040] 9. Meat storage box; 91. Insertion slot; 92. Internal limiting slot;
[0041] 10. Odor-proof structure; 101. Second sliding plate; 102. Insulating rubber ring;
[0042] 11. Semicircular connector; 111. Through hole;
[0043] 12. Odor removal component; 121. Top plate; 122. Rotating structure; 1221. Rotating gear; 1222. Rotating rod; 1223. Elastic rope; 123. Odor removal box; 124. Toothed plate; 125. Internal groove; 1251. First groove; 1252. Second groove; 1253. Third groove; 126. Bottom plate; 127. Adsorption port; 128. Brush;
[0044] 13. Snap-fit structure; 131. Snap-fit component; 132. Snap-fit plate. Detailed Implementation
[0045] 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 embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0046] like Figure 2-12 As shown, an energy-saving freezer with automatic defrosting capability includes an energy-saving freezer body 1, which is a rectangular hollow cabinet with an interior space for storing various items that need to be frozen. Inside the energy-saving freezer body 1, there is a meat storage box 9, which is an integrated compartment with the interior of the energy-saving freezer body 1. The top of the meat storage box 9 is open to facilitate the placement of frozen items. It is separated by four side panels made of the same material as the energy-saving freezer body 1 to store some raw meat and prevent raw meat from mixing with other frozen items. The meat storage box 9 has three insertion slots 91 on one side, which are interconnected inside the meat storage box 9. The meat storage box 9 also has internal limiting slots 92 that extend through the side wall of the meat storage box 9. The internal limiting slots 92 and the insertion slots 91 are located on the four sides of the meat storage box 9 and are interconnected. An odor-isolating structure 10 is installed inside the insertion slots 91. The odor-isolating structure 10 includes a second sliding plate 101 inserted into the insertion slot 91. The second sliding plate 101 is a rectangular plate that covers the opening at the top of the meat storage box 9 during use to isolate odors. Insulating rubber rings 102 are fixed around the periphery of 101. The insulating rubber ring 102 is a rectangular frame. Its inner side wall fits perfectly with the side wall of the second sliding plate 101, and its outer side wall fits with the insertion groove 91, further isolating the odor inside the meat storage box 9. The total length between the second sliding plate 101 and the insulating rubber ring 102 is adapted to the length of the insertion groove 91. Specifically, in use, some raw meat can be placed inside the meat storage box 9. Then, the opening at the top of the meat storage box 9 is covered by the second sliding plate 101 and the insulating rubber ring 102, so that the inside of the meat storage box 9 forms an independent frozen storage space, thereby reducing the possibility of cross-contamination of odors inside the energy-saving freezer body 1.
[0047] A second classification basket 8 is provided above the odor-proof structure 10. The second classification basket 8 is a hollow storage basket, which makes it convenient to classify and store different objects, reducing the time for users to find stored items. Two symmetrical semi-circular connectors 11 are fixed at the bottom of the second classification basket 8 and the top of the second sliding plate 101. The semi-circular connectors 11 are semi-circular designs.
[0048] Each semicircular connector 11 has a through hole 111 extending through it. All through holes 111 are coaxially designed. A snap-fit structure 13 is provided between adjacent semicircular connectors 11. The snap-fit structure 13 includes a snap-fit member 131 positioned between the semicircular connectors 11. The top and bottom ends of the snap-fit member 131 have slots. The snap-fit member 131 is made of soft rubber. Two snap-fit plates 132 are provided on both sides of the snap-fit member 131. The snap-fit plate 132 and the snap-fit member 131 are integrated. The snap-fit plate 132 has a circular design, and its outer surface is straight. The diameter of the through hole 111 is adapted to the internal diameter of the through hole. Specifically, when the second sliding plate 101 and the second classification basket 8 are disassembled, the snap-fit piece 131 can be pressed. At this time, the snap-fit piece 131 will reduce the distance between the two blocks separated at both ends under the action of the groove inside the snap-fit piece 131. The snap-fit plate 132 will separate from the through hole 111 that is adapted for insertion. Then the second classification basket 8 and the second sliding plate 101 are separated and the second classification basket 8 and the second sliding plate 101 are cleaned to reduce the probability of bacterial growth inside the main body 1 of the energy-saving freezer.
[0049] External slide rails 81 are provided on the side walls of the two opposite sides of the second sorting basket 8. A first sorting basket 5 is provided above the second sorting basket 8. The first sorting basket 5 is a hollow storage basket, which is convenient for classifying and storing different objects, reducing the time for users to find stored items. First sliding plates 51 are fixed on both sides of the opposite sides of the first sorting basket 5. The first sliding plates 51 and the first sorting basket 5 are integrally formed. Built-in slide rails 6 adapted for sliding connection with the first sliding plates 51 are provided on both sides inside the energy-saving freezer main body 1. The cross-section of the built-in slide rail 6 is designed in a concave shape, and the cross-section of the first sliding plate 51 is designed in a convex shape. The built-in slide rail 6 and the first sliding plate 51 are in sliding connection, so as to facilitate the first sorting basket 5 to slide inside the energy-saving freezer main body 1, so as to facilitate the access and arrangement of the inside of the second sorting basket 8 and the meat storage box 9. A freezer cover 3 is rotatably connected to the top end of the energy-saving freezer main body 1. One side of the bottom end of the freezer cover 3 is rotatably connected to one side of the top end of the energy-saving freezer main body 1, which is convenient for the operation of the entire energy-saving freezer main body 1. A defroster 4 is fixed to one side of the energy-saving freezer main body 1 through a connecting member. The principle of the defroster 4 is to use the hot air flow in the refrigeration cycle system to melt the frost inside the refrigerator cabinet. Specifically, the defroster controls the hot air flow in the refrigeration cycle system through a heater and a sensor. When the temperature inside the refrigerator cabinet reaches a certain level, the heater will automatically start, guiding the hot air flow in the refrigeration cycle system to the inside of the refrigerator cabinet to melt the frost. The sensor monitors the temperature inside the refrigerator cabinet. When the temperature reaches a certain level, the heater will automatically turn off, and the hot air flow in the refrigeration cycle system will also stop. The defroster 4 is a publicly known technology and will not be elaborated below. The defroster 4 extends into the energy-saving freezer main body 1 to operate the defroster 4. Handles 2 are fixed to the two opposite sides of the energy-saving freezer main body 1 away from the defroster 4. The handles 2 are fixed to the side wall of the energy-saving freezer main body 1 through fixing bolts, and the handles 2 facilitate the handling of the energy-saving freezer main body 1.
[0050] A sliding structure 7 is provided between the first sorting basket 5 and the second sorting basket 8. The sliding structure 7 includes two connecting blocks 71 provided at the bottom of the first sorting basket 5. The two connecting blocks 71 are designed oppositely. Installation plates 75 are provided on both sides of the connecting blocks 71. The top ends of the installation plates 75 are welded to the bottom end of the first sorting basket 5. Rotating shafts 73 are rotatably connected to the adjacent surfaces of the installation plates 75. The rotating shafts 73 realize the opening of the two connecting blocks 71. The other ends of the rotating shafts 73 are fixed to the side walls of the connecting blocks 71. Torsion springs 74 are wound on the surfaces of the rotating shafts 73. One end of the torsion spring 74 is fixed to the side wall of the connecting block 71, and the other end of the torsion spring 74 is fixed to the side wall of the installation plate 75. In the natural state, the torsion spring 74 limits the connecting block 71. At this time, the angle between the connecting block 71 and the installation plate 75 is Figure 5In this state, the connecting block 71 is fixed with a limit block 72 on the side near the external slide rail 81. The connecting block 71 and the limit block 72 are integrally molded. The limit block 72 is adapted to the external slide rail 81. Specifically, when separating the second classification basket 8 and the meat storage box 9, the connecting block 71 is rotated to enlarge the opening between the two adjacent connecting blocks 71, and the limit block 72 is separated from the external slide rail 81, thus separating the second classification basket 8 and the meat storage box 9 to achieve the function of separation between the second classification basket 8 and the meat storage box 9. When reconnecting the second classification basket 8 and the meat storage box 9, the second classification basket 8 is reset and the connecting block 71 is released, so that the limit block 72 and the connecting block 71 are reset again. At this time, the limit block 72 will be in contact with the external slide rail 81. The external slide rail 81 can be plugged in. When classifying and placing items in the first category basket 5, the items can be placed in the first category basket 5 first, and then the first category basket 5 can be pushed. At this time, the limiting block 72 will slide inside the external slide rail 81. When classifying and placing items in the second category basket 8, the second category basket 8 is pushed first. At this time, the second category basket 8 will slide under the action of the limiting block 72 and the external slide rail 81. The first category basket 5 will not slide synchronously. After placing the meat storage box 9, all the storage baskets are put back in place. At this time, the meat storage box 9, the second category basket 8 and the first category basket 5 are in a straight line, which increases the storage space on one side of the energy-saving freezer body 1.
[0051] The meat storage box 9 is equipped with an odor removal component 12. The odor removal component 12 includes an odor removal box 123 fixed to the inner wall of the meat storage box 9. The odor removal box 123 and the inner wall of the meat storage box 9 are fixed by bolts.
[0052] The deodorizing box 123 has a matching base plate 126 inside, which can hold activated carbon packets for odor absorption. When the base plate 126 is raised, the user can view the activated carbon packets and replace them as needed. Both sides of the base plate 126 are welded with toothed plates 124. The inner side walls of the deodorizing box 123 are each provided with an internal groove 125, which cooperates with the toothed plates 124. The internal groove 125 extends through both sides of the deodorizing box 123 and includes a first section groove 1251. The second groove 1252 and the third groove 1253, the first groove 1251 and the second groove 1252 are respectively on both sides of the third groove 1253. The cross-section of the third groove 1253, the second groove 1252 and the first groove 1251 is convex. Specifically, when in use, the bottom plate 126 fits against the inner wall of the deodorizing box 123 inside the deodorizing box 123. At the same time, the toothed plate 124 extends through the built-in groove 125 to the top of the deodorizing box 123. When in use, the toothed plate 124 will slide up and down inside the built-in groove 125.
[0053] A top plate 121 is provided at the top of the toothed plate 124, and the bottom end of the top plate 121 is fixed to the top of the toothed plate 124. The top plate 121 and the toothed plate 124 are fixed together by bolts. Rotating structures 122 are provided on both sides of the deodorizing box 123. The rotating structure 122 includes two rotating rods 1222. One end of the rotating rod 1222 is rotatably connected to the inner wall of the meat storage box 9, so that the rotating rod 1222 can rotate to drive the toothed plate 124 to move up and down. An elastic rope 1223 is wound around the surface of the rotating rod 1222. One end of the elastic rope 1223 is fixed to the surface of the rotating rod 1222, and the other end of the elastic rope 1223 is fixed to the bottom end of the second sliding plate 101. That is, when the second sliding plate 101 moves, it will pull the elastic rope 1223. At this time, the elastic rope 1223 will drive the rotating rod 1222 to rotate. A rotating gear 1221 is provided, the width of which is adapted to the width of the first groove 1251. The circumference of the rotating rod 1222 is provided with teeth that mesh with the toothed plate 124. That is, when the second sliding plate 101 is opened during use, the second sliding plate 101 will pull the elastic rope 1223. At this time, the elastic rope 1223 will drive the rotating rod 1222 to rotate, which will cause the rotating gear 1221 on the surface of the rotating rod 1222 to rotate synchronously. At this time, the rotating rod 1222 will drive the toothed plate 124 to move upward, so that the bottom plate 126 rises, making it convenient for the user to replace the activated carbon bag on the top of the bottom plate 126. When the second sliding plate 101 and the top of the meat storage box 9 are closed, the rotating rod 1222 will rotate in the opposite direction under the elastic force of the elastic rope 1223, resetting the bottom plate 126, so that the activated carbon bag can re-enter the interior of the deodorizing box 123.
[0054] The deodorizing box 123 has several adsorption ports 127 on one side opposite the meat storage box 9. The adsorption ports 127 are evenly distributed on the surface of the deodorizing box 123. A brush 128 is fixed on the side of the bottom plate 126 near the adsorption ports 127. The brush 128 abuts against the adsorption ports 127. Specifically, when the bottom plate 126 rises and falls, it cleans the adsorption ports 127 on the surface of the deodorizing box 123, reducing the phenomenon of the adsorption ports 127 becoming blocked, which would cause the activated carbon pack inside the bottom plate 126 to run empty.
[0055] Working principle: When using this energy-saving freezer with automatic defrosting and connected to an external power source, firstly, when sorting and placing items in the first category basket 5, the items can be placed in the first category basket 5 first, and then the first category basket 5 is pushed. At this time, the limiting block 72 will slide inside the external slide rail 81. Then, sort and place items inside the second category basket 8. When placing items inside the meat storage box 9, first push the second category basket 8. At this time, the second category basket 8 will slide under the action of the limiting block 72 and the external slide rail 81. At this time, the first category basket 5 will not slide synchronously. After placing the meat storage box 9, return all the storage baskets to their positions. At this time, the meat storage box 9, the second category basket 8 and the first category basket 5 are in a straight line, increasing the storage space on one side of the main body 1 of the energy-saving freezer.
[0056] Next, when the second sliding plate 101 is opened, the second sliding plate 101 will pull the elastic rope 1223. At this time, the elastic rope 1223 will drive the rotating rod 1222 to rotate, which will cause the rotating gear 1221 on the surface of the rotating rod 1222 to rotate synchronously. At this time, the rotating rod 1222 will drive the toothed plate 124 to move upward, so that the bottom plate 126 rises, making it convenient for the user to replace the activated carbon bag on the top of the bottom plate 126. When the second sliding plate 101 and the top of the meat storage box 9 are closed, the rotating rod 1222 will rotate in the opposite direction under the elastic force of the elastic rope 1223, reset the bottom plate 126, and allow the activated carbon bag to re-enter the interior of the deodorizing box 123.
[0057] Finally, when disassembling the second sliding plate 101 and the second sorting basket 8, the locking piece 131 can be pressed. At this time, the locking piece 131, under the action of its internal slot, reduces the distance between the two separated blocks, and the locking plate 132 separates from the through hole 111. Then, the second sorting basket 8 and the second sliding plate 101 can be separated. The second sorting basket 8 and the second sliding plate 101 can be cleaned to reduce the probability of bacterial growth inside the energy-saving freezer body 1. Simultaneously, when separating the second sorting basket 8 and the meat storage box 9, the connecting block 71 can be rotated to... The opening between the two adjacent connecting blocks 71 is enlarged, separating the limiting block 72 and the external slide rail 81, thus separating the second category basket 8 and the meat storage box 9 to achieve the function of separation between the second category basket 8 and the meat storage box 9. When reconnecting the second category basket 8 and the meat storage box 9, the second category basket 8 is reset and the connecting block 71 is released, so that the limiting block 72 and the connecting block 71 are reset again. At this time, the limiting block 72 will be inserted into the external slide rail 81. Finally, the storage temperature inside the energy-saving freezer body 1 is controlled by the control panel to complete the operation of the energy-saving freezer with automatic defrosting.
[0058] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An energy-saving freezer with automatic defrosting capability, characterized in that: The refrigerator includes an energy-saving freezer body (1), and a meat storage box (9) is provided inside the energy-saving freezer body (1). A deodorizing component (12) is provided inside the meat storage box (9). The deodorizing component (12) includes a deodorizing box (123) fixed to the inner wall of the meat storage box (9). An internal groove (125) is provided on each of the two inner side walls of the deodorizing box (123). The internal groove (125) extends through both sides of the deodorizing box (123). A matching base plate (126) is provided inside the deodorizing box (123). Toothed plates (124) are fixed on both sides of the base plate (126). The top of each toothed plate (124) is provided with... The top plate (121) is fixed to the top of the toothed plate (124) at its bottom end. Rotating structures (122) are provided on both sides of the deodorizing box (123). The deodorizing box (123) has several adsorption ports (127) on the side opposite to the meat storage box (9). A brush (128) is fixed on the side of the bottom plate (126) near the adsorption port (127). The brush (128) abuts against the adsorption port (127).
2. The energy-saving refrigerator with automatic defrosting capability according to claim 1, characterized in that: The meat storage box (9) has a plug-in slot (91) on one side and a built-in limiting slot (92) inside. The built-in limiting slot (92) and the plug-in slot (91) are located on the four sides inside the meat storage box (9), and the plug-in slot (91) and the built-in limiting slot (92) are connected to each other.
3. The energy-saving refrigerator with automatic defrosting capability according to claim 2, characterized in that: The insertion slot (91) is provided with an odor-proof structure (10). The odor-proof structure (10) includes a second sliding plate (101) inserted into the insertion slot (91). An insulating rubber ring (102) is fixed on the periphery of the second sliding plate (101). The total length between the second sliding plate (101) and the insulating rubber ring (102) is adapted to the length of the insertion slot (91).
4. The energy-saving refrigerator with automatic defrosting capability according to claim 3, characterized in that: The rotating structure (122) includes two rotating rods (1222). One end of the rotating rod (1222) is rotatably connected to the inner wall of the meat storage box (9). An elastic rope (1223) is wound around the surface of the rotating rod (1222). One end of the elastic rope (1223) is fixed to the surface of the rotating rod (1222), and the other end of the elastic rope (1223) is fixed to the bottom end of the second sliding plate (101).
5. An energy-saving freezer with automatic defrosting capability according to claim 4, characterized in that: The built-in groove (125) includes a first groove (1251), a second groove (1252) and a third groove (1253). The first groove (1251) and the second groove (1252) are respectively on both sides of the third groove (1253). The cross-section of the third groove (1253), the second groove (1252) and the first groove (1251) is convex.
6. The energy-saving refrigerator with automatic defrosting capability according to claim 5, characterized in that: A rotating gear (1221) is fixed on the surface of the rotating rod (1222). The width of the rotating gear (1221) is adapted to the width of the first groove (1251). The circumference of the rotating rod (1222) is provided with teeth that mesh with the toothed plate (124).
7. An energy-saving freezer with automatic defrosting capability according to claim 3, characterized in that: A second sorting basket (8) is provided above the odor-proof structure (10). Two symmetrically designed semi-circular connectors (11) are fixed at the bottom of the second sorting basket (8) and the top of the second sliding plate (101). The interior of each semi-circular connector (11) is provided with a through hole (111). A snap-fit structure (13) is provided between each two adjacent semi-circular connectors (11).
8. An energy-saving freezer with automatic defrosting capability according to claim 7, characterized in that: The snap-fit structure (13) includes a snap-fit member (131) disposed between the semi-circular connectors (11). The top and bottom ends of the snap-fit member (131) are provided with slots. Two snap-fit plates (132) are provided on both sides of the snap-fit member (131). The outer diameter of the snap-fit plate (132) is adapted to the inner diameter of the through hole (111).
9. An energy-saving freezer with automatic defrosting capability according to claim 7, characterized in that: External slide rails (81) are provided on the two opposite side walls of the second classification basket (8). A first classification basket (5) is provided above the second classification basket (8). A first sliding plate (51) is fixed on both sides of the opposite side of the first classification basket (5). A sliding structure (7) is provided between the first classification basket (5) and the second classification basket (8). An internal slide rail (6) adapted to slide and connect with the first sliding plate (51) is provided on both sides of the interior of the energy-saving freezer body (1). A freezer cover (3) is rotatably connected to the top of the energy-saving freezer body (1). A defrost device (4) is fixed on one side of the energy-saving freezer body (1). The defrost device (4) extends into the interior of the energy-saving freezer body (1). A handle (2) is fixed on both opposite sides of the energy-saving freezer body (1) away from the defrost device (4).
10. An energy-saving freezer with automatic defrosting capability according to claim 9, characterized in that: The sliding structure (7) includes two connecting blocks (71) disposed at the bottom of the first sorting basket (5). Mounting plates (75) are provided on both sides of the connecting blocks (71). The top of the mounting plates (75) is fixedly connected to the bottom of the first sorting basket (5). A rotating shaft (73) is rotatably connected to the adjacent surfaces of the mounting plates (75). The other end of the rotating shaft (73) is fixedly connected to the side wall of the connecting block (71). A torsion spring (74) is wound around the surface of the rotating shaft (73). One end of the torsion spring (74) is fixedly connected to the side wall of the connecting block (71). The other end of the torsion spring (74) is fixedly connected to the side wall of the mounting plate (75). A limiting block (72) is fixed on the side of the connecting block (71) near the external slide rail (81). The limiting block (72) is adapted to the external slide rail (81).
Citation Information
Patent Citations
Freezer convenient to use in hot outdoor environment
CN112728840A
Refrigerator deodorizing box convenient for activated carbon activation
CN211782222U