A portable bar cabinet that can be disassembled and assembled

Through the modularly designed refrigeration system and glass cabinet body, the problem of bar cabinet being unable to be disassembled and repaired is solved, and rapid disassembly and installation is achieved, energy consumption is reduced, and display effect and user experience is improved.

CN115597277BActive Publication Date: 2025-07-11青岛澳柯玛冷链集成有限公司
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Patent Information

Application Number
CN202211187603.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-28
Publication Date
2025-07-11
Estimated Expiration
2042-09-28

AI Technical Summary

Technical Problem

The existing bar cabinet cannot be disassembled and repaired, and the complex structure leads to severe cold leakage and heat exchange, high energy consumption and low utilization rate.

Method used

The refrigeration system adopts a modular design, the refrigeration components can be detachably fixed on the bottom plate, installed in the refrigeration room through support beams and card interfaces, and the door and cabinets are made of glass materials to achieve rapid disassembly and installation.

Benefits of technology

It realizes convenient maintenance and efficient disassembly of refrigeration components, improves display effect and user experience, and reduces energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a portable bar cabinet, which relates to the technical field of refrigeration. The bar cabinet includes a cabinet body, a door body and a refrigeration unit. The door body is hinged to the cabinet body. The cabinet body includes a refrigerating chamber and a refrigeration chamber. There are several support beams in the refrigeration chamber. The refrigeration unit includes a bottom plate, and a compressor, a condenser, an evaporator and a throttling device in the refrigeration system are detachably fixed on the bottom plate. The bottom plate has several first card interfaces that can be adapted to the support beams. The bottom plate can be placed in the refrigeration chamber along the support beams through the first card interfaces and refrigerate the refrigerating chamber. Through the modular installation method between the refrigeration unit and the cabinet body, the present invention makes it convenient to move, install and disassemble between the refrigeration unit and the refrigeration chamber, and is convenient for maintenance in case of failure in the later stage.
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Description

Technical Field

[0001] The present invention relates to the technical field of refrigeration, and particularly to a portable bar cabinet that can be disassembled and assembled. Background Art

[0002] Most of the bar cabinets on the market at present are foamed cabinets. The all-glass cabinet is not only complex to manufacture, but also cannot be simply disassembled for repair and replacement after installation. Once it is disassembled, the cabinet is basically scrapped, and the structure has serious cold leakage and heat exchange, resulting in high energy consumption and low availability.

[0003] The bar cabinet is generally placed in indoor places such as bars, hotels, and restaurants, used to display and sell beverages such as beer and drinks. And for the best display effect, the foamed cabinet is abandoned, and it has an independent cold storage room. Without damaging the cabinet, the refrigeration system can be taken out as a whole to achieve quick disassembly and repair and efficient modular assembly production. Summary of the Invention

[0004] Aiming at the problems that the above-mentioned bar cabinet cannot intuitively display the beverages in the cabinet, cannot be disassembled, replaced, or repaired after installation, and the complex structure leads to serious cold leakage and heat exchange, resulting in high energy consumption, the present invention provides a portable bar cabinet that can be disassembled and assembled.

[0005] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0006] A portable bar cabinet that can be disassembled and assembled, including a cabinet body, a door body, and a refrigeration part. The door body is hinged to the cabinet body. The cabinet body includes a cold storage room and a refrigeration room. There are several support beams in the refrigeration room. The refrigeration part includes a bottom plate, and the compressor, condenser, evaporator, and throttling device in the refrigeration system are detachably fixed on the bottom plate. The bottom plate has several first card interfaces that can be adapted to the support beams. The bottom plate can be placed in the refrigeration room along the support beams through the first card interfaces and refrigerate the cold storage room.

[0007] Further, the side wall of the cabinet body is made of glass. The cold storage room has an opening. The door body is made of glass and is adapted to the opening of the cold storage room. The door body is hermetically connected to the cold storage room through a sealing strip.

[0008] Further, the refrigeration room is located at the top of the cold storage room. The top wall and the front side wall of the refrigeration room each have an opening. The top of the refrigeration room has a cover body.

[0009] Further, there is a through-hole penetrating up and down on each of the left and right sides where the refrigeration room is connected to the cold storage room. The refrigeration room is communicated with the cold storage room through the through-hole.

[0010] Further, the four support beams are fixed at the four corner positions of the refrigeration chamber in the up and down direction, and the bottom ends are fixedly connected to the bottom wall of the refrigeration chamber.

[0011] Further, on the left side of the front part of the top surface of the bottom plate, there are several support platforms protruding upward. The compressor is detachably and fixedly connected to the bottom plate through the support platforms. On the right side of the bottom plate, there are several screw hole columns protruding upward. The condenser is detachably and fixedly connected to the bottom plate through the several screw hole columns. On the left and right sides of the rear part of the bottom plate, there is a downward concave communication part respectively. On the bottom plate between the two communication parts, there are several screw hole columns protruding upward. The evaporator is detachably and fixedly connected to the bottom plate through the screw hole columns, and a sealing cover is sleeved outside the evaporator.

[0012] Further, a condensation fan is detachably and fixedly connected to the top of the condenser. On the left and right sides of the front end of the bottom plate, there is an inward concave second card interface respectively, and the second card interface can be adapted to the opening on the front side wall of the refrigeration chamber.

[0013] Further, the edges of each communication part have upward convex rib plates, and the lower sides of the side walls of each communication part have several ventilation holes. The communication parts can be placed in the communication holes in a matching manner and are communicated with the refrigerating chamber through the ventilation holes.

[0014] Further, the height of the rear part of the bottom plate is greater than the height of the front part of the bottom plate. The front edge of the top surface of the bottom plate has a first rib plate protruding upward in a ring shape. The rear edge of the top surface of the bottom plate has a second rib plate and a third rib plate protruding upward in a ring shape. The third rib plate is located inside the second rib plate. The lower end of the sealing cover is arranged between the second rib plate and the third rib plate, and there is also a diversion cavity between the second rib plate and the third rib plate. The bottom of the second rib plate located in front of the diversion cavity is penetrated with a first diversion hole in the front and rear direction. The bottom of the third rib plate located behind the diversion cavity has a second diversion hole. The bottom of the diversion cavity has a fourth rib plate protruding upward in the left and right direction.

[0015] Further, the sealing cover separates the evaporator from the condenser, and the two are only communicated through the first diversion hole, the second diversion hole and the diversion cavity. The bottom plate located inside the third rib plate is in a funnel-shaped structure, and the second diversion hole is located at the lowest part of the funnel-shaped structure. The height of the fourth rib plate is greater than the height of the first diversion hole.

[0016] The beneficial effects of the present invention are as follows: Through the modular installation method between the refrigeration unit and the cabinet body, the refrigeration unit and the refrigeration chamber are convenient to install and disassemble, and are convenient for maintenance in case of failure in the later stage. The side wall and the door body of the bar cabinet are both made of glass or other transparent materials, which can visually display the drinks in the cabinet, improving the aesthetics and the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 The structural principle schematic diagram of an embodiment of the present invention is shown.

[0018] Figure 2 It is a structural schematic diagram of the refrigeration unit.

[0019] Figure 3 For Figure 2 It is a structural schematic diagram of the middle bottom plate.

[0020] Figure 4 The sectional view of the bottom plate is shown.

[0021] Figure 5 For Figure 4 It is the front view of the middle section.

[0022] Figure 6 The structural schematic diagram of the refrigeration chamber and the refrigerating chamber is shown.

[0023] Reference numerals: 1, door body; 2, refrigeration unit; 201, bottom plate; 202, compressor; 203, condenser; 204, sealing cover; 205, condensing fan; 206, support platform; 207, connecting part; 208, ventilation hole; 209, first rib plate; 210, second rib plate; 211, first clamping interface; 212, third rib plate; 213, second clamping interface; 214, diversion cavity; 215, fourth rib plate; 216, first diversion hole; 217, second diversion hole; 3, refrigeration chamber; 301, support beam; 302, connecting hole; 4, refrigerating chamber. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] The present invention discloses a portable and detachable bar cabinet, and the following specifically describes an embodiment of the present invention with reference to the drawings.

[0025] As Figure 1 shown, it includes a cabinet body, a door body 1 and a refrigeration unit 2. The side wall of the cabinet body is made of glass. The cabinet body includes a refrigerating chamber 4 and a refrigeration chamber 3. The refrigeration chamber 3 is located at the top of the refrigerating chamber 4. The refrigerating chamber 4 has an opening. The door body 1 is made of glass and is adapted to the opening of the refrigerating chamber 4. The door body 1 is hinged to the front side of the refrigerating chamber 4 and is sealed to the refrigerating chamber 4 through a sealing strip. The top of the refrigeration chamber 3 has an opening and has a cover body adapted to the top of the refrigeration chamber 3. The front side of the refrigeration chamber 3 also has an opening, which is convenient for installing or disassembling the refrigeration unit 2 and for heat dissipation. AsFigure 6 As shown, on both the left and right sides at the junction of the refrigerating chamber 3 and the refrigerating compartment 4, there is a through communication hole 302 each. The refrigerating chamber 3 is communicated with the refrigerating compartment 4 through the communication holes 302. There are several support beams 301 in the refrigerating chamber 3. The bottom plate 201 can be clamped into the refrigerating chamber 3 along the support beams 301. Further, there are four support beams 301 in the refrigerating chamber 3. Each support beam 301 is in the shape of a right triangle and is fixedly arranged at the four corner positions of the refrigerating chamber 3 in an up-and-down adaptation manner. The bottom ends of the support beams 301 are fixedly connected to the bottom wall of the refrigerating chamber 3. In addition, the support beams 301 can also be in the shape of a cuboid and other shapes, and are fixedly arranged on the side walls around the refrigerating chamber 3 in an up-and-down adaptation manner. The bottom ends of the support beams 301 are fixedly connected to the bottom wall of the refrigerating chamber 3.

[0026] As Figure 3 shown, at the four corner positions of the bottom plate 201, there are first card interfaces 211 that can be adapted to the support beams 301. The bottom plate 201 can be placed in the refrigerating chamber 3 along the support beams 301 through the first card interfaces 211. On both the left and right sides at the front end of the bottom plate 201, there is an inward concave second card interface 213 each. The second card interface 213 can be adapted to the opening at the front side wall of the refrigerating chamber 3. The bottom plate 201 is clamped to the side walls on both sides of the opening at the front side wall of the refrigerating chamber 3 through the second card interfaces 213. The height of the rear part of the top surface of the bottom plate 201 is greater than the height of the front part of the top surface of the bottom plate 201. At the front edge of the top surface of the bottom plate 201, there is a first rib plate 209 that protrudes upward in a ring shape. On the left side inside the first rib plate 209, there are two support platforms 206 that protrude upward. The compressor 202 is detachably and fixedly connected to the bottom plate 201 through the support platforms 206. On the right side inside the first rib plate 209, there are several screw hole columns that protrude upward. The condenser 203 is detachably and fixedly connected to the bottom plate 201 through the several screw hole columns. A condensation fan 205 is detachably and fixedly connected to the top of the condenser 203.

[0027] As Figure 2 shown, on the rear part of the top surface of the bottom plate 201, there are a second rib plate 210 and a third rib plate 212 that protrude upward in a ring shape. The second rib plate 210 protrudes from the edge of the bottom plate 201. The third rib plate 212 is adjacent to and located inside the second rib plate 210. On both the left and right sides inside the third rib plate 212, there is a downward concave communication part 207 each. The edges of each communication part 207 all have rib plates that protrude upward, which can prevent condensed water from flowing into the communication parts 207. On the bottom plate 201 at the middle position between the two communication parts 207, there are also several screw hole columns that protrude upward. The evaporator is detachably and fixedly connected to the bottom plate 201 through the screw hole columns. A sealing cover 204 is sleeved outside the evaporator. The lower end of the sealing cover 204 is hermetically connected between the second rib plate 210 and the third rib plate 212. On the lower side of the side wall of each communication part 207, there are several ventilation holes 208. The communication parts 207 can be adapted to be placed in the communication holes 302 and are communicated with the refrigerating compartment 4 through the ventilation holes 208. CombinedFigure 4 and Figure 5 As shown in Figure 5 , there is a diversion cavity 214 between the second rib plate 210 and the third rib plate 212. The bottom of the second rib plate 210 located on the front side of the diversion cavity 214 is penetrated in the front-back direction by a first diversion hole 216, and the bottom of the third rib plate 212 located on the rear side of the diversion cavity 214 has a second diversion hole 217. The bottom plate 201 located inside the third rib plate 212 has a funnel-shaped structure, and the second diversion hole 217 is located at the lowest point of the funnel-shaped structure. The evaporator is prevented from having air circulation with the condenser 203 through the sealing cover 204. The third rib plate 212 is only communicated with the first rib plate 209 through the first diversion hole 216, the second diversion hole 217 and the diversion cavity 214. There is a fourth rib plate 215 protruding upward in the diversion cavity 214, and the height of the fourth rib plate 215 is greater than the height of the first diversion hole 216.

[0028] Install the components of the refrigeration system on the bottom plate 201, align the first card interface 211 of the bottom plate 201 with the support beam 301, and at the same time, also align the second card interface 213 of the second bottom plate 201 with the side walls on the left and right sides at the front opening of the refrigeration chamber 3 for clamping connection. Then, place the refrigeration unit 2 into the refrigeration chamber 3 from top to bottom. The communication part 207 in the refrigeration unit 2 is adaptively inserted into the communication hole 302 and communicated with the refrigerating chamber 4 through the ventilation hole 208. The bottom plate 201 can be fixed to the bottom of the refrigeration chamber 3 by bolts. The installation and disassembly are extremely simple, and the modular design makes the bar cabinet very convenient to move and carry. When the refrigeration system is operating, the evaporator exchanges heat with the refrigerating chamber 4 through the ventilation hole 208 to refrigerate the refrigerating chamber 4. A sealing cover 204 is sleeved outside the evaporator to prevent air circulation with the condenser 203 through the sealing cover 204 and prevent heat exchange between the two from reducing the refrigeration effect. When the evaporator is operating, condensed water is generated. The rib plate protruding from the edge of the communication part 207 can prevent the condensed water from entering the communication part 207 and prevent the ventilation hole 208 from being blocked. The condensed water gathers at the second diversion hole 217 through the funnel-shaped structure, flows into the diversion cavity 214 through the second diversion hole 217 and is blocked by the fourth rib plate 215. The condensed water located between the fourth rib plate 215 and the second rib plate 210 can prevent air circulation between the evaporator and the condenser 203. As the condensed water is generated, it gradually overflows the fourth rib plate 215 and flows into the front part of the bottom plate 201 through the first diversion hole 216. The condensed water flowing into the front part of the bottom plate 201 can be accelerated to evaporate through the heating pipe of the condenser 203 and the condensate fan 205 to avoid the accumulation of condensed water.

[0029] Certainly, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by those skilled in the art within the scope of the essence of the present invention should also fall within the protection scope of the present invention.

Claims

1. A portable bar cabinet, characterized in that: It includes a cabinet body, a door body (1) and a refrigeration unit (2). The door body (1) is hinged to the cabinet body. The cabinet body includes a refrigerating chamber (4) and a freezing chamber (3). There are several support beams (301) in the freezing chamber (3). The refrigeration unit (2) includes a bottom plate (201). The compressor (202), condenser (203), evaporator and throttling device in the refrigeration system are detachably fixed on the bottom plate (201). The bottom plate (201) has several first card interfaces (211) that can be adapted to the support beams (301). The bottom plate (201) can be placed in the freezing chamber (3) along the support beams (301) through the first card interfaces (211) and refrigerate the refrigerating chamber (4): The four support beams (301) are fixed at the four corner positions of the freezing chamber (3) in the up and down direction, and the bottom ends are fixedly connected to the bottom wall of the freezing chamber (3); On the left side of the front part of the top surface of the bottom plate (201), there are several upward protruding support platforms (206). The compressor (202) is detachably and fixedly connected to the bottom plate (201) through the support platforms (206). On the right side of the bottom plate (201), there are several upward protruding screw hole columns. The condenser (203) is detachably and fixedly connected to the bottom plate (201) through several screw hole columns. On the left and right sides of the rear part of the bottom plate (201), there is a downward concave communication part (207) respectively. On the bottom plate (201) between the two communication parts (207), there are several upward protruding screw hole columns. The evaporator is detachably and fixedly connected to the bottom plate (201) through the screw hole columns. A sealing cover (204) is sleeved outside the evaporator; The height of the rear part of the bottom plate (201) is greater than the height of the front part of the bottom plate (201). The front edge of the top surface of the bottom plate (201) has a first rib plate (209) protruding upward in a ring shape. The rear part of the top surface of the bottom plate (201) has a second rib plate (210) and a third rib plate (212) protruding in a ring shape. The second rib plate (210) protrudes from the edge of the bottom plate (201). The third rib plate (212) is located inside the second rib plate (210). The lower end of the sealing cover (204) is arranged between the second rib plate (210) and the third rib plate (212). There is also a diversion cavity (214) between the second rib plate (210) and the third rib plate (212); The bottom of the second rib plate (210) located in the front of the diversion cavity (214) is penetrated in the front and rear direction by a first diversion hole (216). The bottom of the third rib plate (212) located in the rear of the diversion cavity (214) has a second diversion hole (217). The bottom of the diversion cavity (214) has a fourth rib plate (215) protruding upward in the left and right direction.

2. The portable bar cabinet according to claim 1, characterized in that: The side wall of the cabinet body is made of glass. The refrigerating chamber (4) has an opening. The door body (1) is made of glass and is adapted to the opening of the refrigerating chamber (4). The door body (1) is hermetically connected to the refrigerating chamber (4) through a sealing strip.

3. The portable bar cabinet according to claim 1, characterized in that: The refrigerating chamber (3) is located at the top of the refrigerating compartment (4). The top wall and the front side wall of the refrigerating chamber (3) each have an opening, and the top of the refrigerating chamber (3) is provided with a cover body.

4. The portable bar cabinet according to claim 3, wherein: On the left and right sides of the junction of the refrigerating chamber (3) and the refrigerating compartment (4), there is a through-hole (302) penetrating up and down. The refrigerating chamber (3) communicates with the refrigerating compartment (4) through the through-hole (302).

5. The portable bar cabinet according to claim 1, wherein: The top of the condenser (203) is detachably and fixedly connected with a condensation fan (205). On the left and right sides of the front end of the bottom plate (201), there is a concave second clamping interface (213) each, and the second clamping interface (213) can be adapted to the opening on the front side wall of the refrigerating chamber (3).

6. The portable bar cabinet according to claim 4, characterized in that: The edge of each of the connecting parts (207) has an upwardly protruding rib plate. On the lower side of the side wall of each of the connecting parts (207), there are a plurality of ventilation holes (208). The connecting parts (207) can be adaptively placed in the through-holes (302) and communicate with the refrigerating compartment (4) through the ventilation holes (208).

7. The portable bar cabinet according to claim 1, characterized in that: The sealing cover (204) separates the evaporator from the condenser (203), and the two are only communicated through the first diversion hole (216), the second diversion hole (217) and the diversion cavity (214); The bottom plate (201) located within the third rib plate (212) has a funnel-shaped structure. The second diversion hole (217) is located at the lowest point of the funnel-shaped structure, and the height of the fourth rib plate (215) is greater than the height of the first diversion hole (216).

Citation Information

Patent Citations

  • Refrigerator

    CN103140730A

  • Modular refrigerating unit system

    CN210374237U