Barrel cabinet with a lighting lamp

By designing the condensate in the barrel cabinet to flow along the door body to the sink and evaporate with the lamp strip, the problem of poor drainage effect of condensate is solved, and the dual effects of automated drainage and commercial lighting are achieved.

CN116481238BActive Publication Date: 2025-07-25QINGDAO HIRON COMML COLD CHAIN
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Patent Information

Application Number
CN202310620905.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-29
Publication Date
2025-07-25
Estimated Expiration
2043-05-29

AI Technical Summary

Technical Problem

The condensate generated by existing barrel cabinets during operation has poor drainage effect and requires manual wiping, which is a waste of manpower and low efficiency.

Method used

A round barrel cabinet with lighting lamp is designed. When the door body is opened, the condensed water flows along the door body to the water connection tank on the cross beam, and illuminates the inner barrel through the lamp strip. At the same time, the condensed water is evaporated by the temperature of the lamp strip, thereby improving the discharge efficiency.

Benefits of technology

The automatic discharge of condensate water is achieved, manual intervention is reduced, the efficiency of condensate water is improved, the pollution of water droplets on the goods is avoided, and the user experience is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a cylindrical cabinet with a lighting lamp, belonging to the field of refrigeration equipment. The cylindrical cabinet with a lighting lamp comprises: the cylindrical cabinet includes an outer barrel, an inner barrel, a base, a door body, a cross beam and a light bar. The outer barrel is arranged above the base, and the inner barrel is located inside the outer barrel; the door body is arranged at the top of the outer barrel and is used for opening or closing the inner barrel; the door body is hinged to the top of the outer barrel through a rotating shaft; the cross beam is arranged below the rotating shaft, and the length direction of the cross beam is the same as that of the rotating shaft and the cross beam is arranged below the rotating shaft; a water receiving groove is formed in the upper surface of the cross beam, and the length direction of the water receiving groove is the same as that of the cross beam; the light bar is arranged on the cross beam. When the door body is opened, the condensed water on the door body flows downward along the door body and drips into the water receiving groove on the cross beam, the light bar illuminates the commodities inside the inner barrel, and the temperature of the light bar raises the temperature of the condensed water in the water receiving groove to evaporate, improving the discharge efficiency of the condensed water.
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Description

Technical Field

[0001] The present invention belongs to the technical field of refrigeration equipment, and particularly relates to a round barrel cabinet with a lighting lamp. Background Art

[0002] A freezer is a device for storing food and other items at low temperatures. It is divided into household and commercial types. Commercial freezers are used in restaurants, water bars, food processing, and supermarkets. Among them, the round barrel cabinet is a type of commercial freezer, which has a round barrel shape and a unique appearance that can attract customers.

[0003] Currently, condensate water is generated during the operation of the round barrel cabinet. In the prior art, the condensate water is only drained by manual wiping or a simple water receiving tank, which is labor-consuming and has a poor drainage effect. Summary of the Invention

[0004] In view of the deficiencies in the related art, the present invention provides a round barrel cabinet with a lighting lamp. When the door body is opened, the condensate water on the door body flows downward along the door body and drips into the water receiving tank on the cross beam. The lighting lamp bar illuminates the goods inside the inner barrel, and the temperature of the lighting lamp bar raises the temperature of the condensate water in the water receiving tank for evaporation, improving the drainage efficiency of the condensate water. To solve the technical problem of poor drainage effect of condensate water in the prior art.

[0005] The present invention provides a round barrel cabinet with a lighting lamp, including a base;

[0006] An outer barrel, which is arranged above the base;

[0007] An inner barrel, which is located inside the outer barrel;

[0008] A rotating shaft, which is arranged at the top of the inner barrel;

[0009] A door body, which is arranged at the top of the outer barrel and is used to open or close the inner barrel; the door body is hinged to the top of the outer barrel through the rotating shaft;

[0010] A cross beam, which is arranged below the rotating shaft, and the length direction of the cross beam is the same as that of the rotating shaft and is arranged below the rotating shaft; a water receiving tank is opened on the upper surface of the cross beam, and the length direction of the water receiving tank is the same as that of the cross beam;

[0011] A lighting lamp bar, which is arranged on the cross beam.

[0012] In the technical solution, when the door body is opened, the condensate water on the door body flows downward along the door body and drips into the water receiving tank on the cross beam. The lighting lamp bar illuminates the goods inside the inner barrel, and the temperature of the lighting lamp bar raises the temperature of the condensate water in the water receiving tank for evaporation, improving the drainage efficiency of the condensate water.

[0013] In some of these embodiments, a receiving groove is formed in the cross beam; the receiving groove is located below the water receiving tank, and the light bar is arranged in the receiving groove.

[0014] In the technical solution, through the receiving groove, the light bar is closer to the water receiving tank, improving the evaporation effect of the condensed water in the water receiving tank.

[0015] In some of these embodiments, the length direction of the receiving groove is the same as the length direction of the water receiving tank, and the length direction of the light bar is arranged along the length direction of the receiving groove.

[0016] In the technical solution, since the length direction of the light bar is the same as the length direction of the water receiving tank, the temperature conducted by the light bar to the water receiving tank also increases, enhancing the heating effect on the inside of the water receiving tank to improve the evaporation efficiency of the condensed water in the water receiving tank.

[0017] In some of these embodiments, the water receiving tank has a first tank wall and a second tank wall, and the length directions of the first tank wall and the second tank wall are the same; the bottoms of the first tank wall and the second tank wall are close to each other and the tops are far from each other.

[0018] In the technical solution, when the condensed water drops into the water receiving tank, it contacts the first tank wall or the second tank wall and flows to the center of the water receiving tank and is then discharged to the water connecting pipe, improving the flow effect of the condensed water.

[0019] In some of these embodiments, the connection at the bottom of the first tank wall and the second tank wall is connected by a fillet.

[0020] In the technical solution, the condensed water flows along the first tank wall and the second tank wall to the fillet, and the condensed water at the fillet flows along the length direction of the water receiving tank to the water connecting pipe.

[0021] In some of these embodiments, when the door body closes the inner barrel, the upper surface of the cross beam and the lower surface of the door body are arranged at intervals.

[0022] In the technical solution, when the door body is opened, the condensed water on the door body flows downward along the door body and drops onto the water receiving tank on the cross beam. The door body and the cross beam are arranged at intervals to avoid interference when the door body is opened.

[0023] In some of these embodiments, two water baffle plates are arranged on the upper surface of the cross beam, and the two water baffle plates are respectively arranged on both sides of the water receiving tank; the top ends of the water baffle plates are used to abut against the lower surface of the door body.

[0024] In the technical solution, when the door body is opened, the condensed water on the door body flows downward along the door body and drops onto the water receiving tank on the cross beam. When the condensed water drops onto the water receiving tank, the water baffle plates prevent the water from splashing and contaminating the goods.

[0025] In some of these embodiments, two door bodies are provided and both are hinged to a rotating shaft; the upper surfaces of the two water baffle plates respectively abut against the lower surfaces of the two door bodies.

[0026] In the technical solution, when the door body is opened, the side of the door body close to the rotating shaft is lower, and the side of the door body far from the rotating shaft is higher. The condensed water on the upper surface of the door body flows downward along the surface of the door body and drips downward through the gap between the two door bodies into the water receiving tank, ensuring the drainage effect of the condensed water.

[0027] In some of these embodiments, the cross beam is made of a metal material.

[0028] In the technical solution, the metal material has good heat conduction effect, which increases the temperature of the tank wall of the water receiving tank and provides the evaporation rate of the condensed water in the water receiving tank.

[0029] In some of these embodiments, the material of the cross beam at the position of the water receiving tank is a light-tight material; the material of the cross beam below the light bar is a light-transmitting material.

[0030] In the technical solution, the upper half of the cross beam is light-tight, avoiding the direct light of the light bar at the opening of the round barrel cabinet, preventing the user from being dazzled by the light bar, and improving the user experience.

[0031] Based on the above technical solution, in the embodiment of the present invention, when the door body is opened, the condensed water on the door body flows downward along the door body and drips into the water receiving tank on the cross beam. The light bar illuminates the goods inside the inner barrel, and the temperature of the light bar raises the temperature of the condensed water in the water receiving tank for evaporation, improving the discharge efficiency of the condensed water. Description of the Drawings

[0032] The drawings described herein are used to provide a further understanding of the present invention, form a part of this application, and the illustrative embodiments and descriptions of the present invention are used to explain the present invention and do not constitute an improper limitation to the present invention. In the drawings:

[0033] Figure 1 is a schematic diagram of the overall structure of an embodiment of a round barrel cabinet with a lighting lamp according to the present invention;

[0034] Figure 2 is a cross-sectional view of an embodiment of a round barrel cabinet with a lighting lamp according to the present invention;

[0035] Figure 3 is a cross-sectional view of an embodiment of a round barrel cabinet with a lighting lamp according to the present invention;

[0036] Figure 4 is Figure 3 an enlarged view of part A in

[0037] Figure 5This is a schematic structural diagram of the cross beam in a round barrel cabinet with a lighting lamp according to the present invention.

[0038] In the figure:

[0039] 100, outer barrel; 200, inner barrel; 300, base; 400, door body; 500, ring seat; 600, receiving groove; 700, cross beam; 701, first groove wall; 702, second groove wall; 800, water receiving tray; 900, water receiving pipe; 901, first water receiving section; 902, second water receiving section; 110, expansion section; 120, water baffle. Detailed implementation manners

[0040] Next, the technical solutions in the embodiments will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0041] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "transverse", "longitudinal", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.

[0042] The terms "first", "second", "third" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined with "first", "second", "third" may explicitly or implicitly include one or more of such features.

[0043] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", "connection" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a direct connection, or an indirect connection through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0044] As shown in all the attached drawings, in a schematic embodiment of the cylindrical cabinet with a lighting lamp according to the present invention, the cylindrical cabinet includes an outer barrel 100, an inner barrel 200, a rotating shaft, a base 300 and a door body 400. The outer barrel 100 is disposed above the base 300, and the inner barrel 200 is located inside the outer barrel 100. The door body 400 is disposed at the top of the outer barrel 100 and is used to open or close the inner barrel 200. The rotating shaft is disposed at the top of the inner barrel 200, and the door body 400 is hinged to the top of the outer barrel 100 through the rotating shaft. A cross beam 700 and a water connection pipe 900, wherein the cross beam 700 is disposed below the rotating shaft, and the length direction of the cross beam 700 is the same as the length direction of the cross beam 700 disposed below the rotating shaft and the same as the rotating shaft. A water receiving groove is formed on the upper surface of the cross beam 700, and the length direction of the water receiving groove is the same as the length direction of the cross beam 700. One end of the water connection pipe 900 is communicated with the water receiving groove. When the door body 400 is opened, the condensed water on the door body 400 flows downward along the door body 400 and drips into the water receiving groove on the cross beam 700, and the condensed water in the water receiving groove is discharged through the water connection pipe 900, completing the discharge of the condensed water.

[0045] In some embodiments, the base 300 is in the shape of a disc, and the axis of the base 300 is vertically disposed. The outer barrel 100 is cylindrical, the axis of the outer barrel 100 is vertically disposed, and the bottom of the outer barrel 100 is connected to the upper surface of the base 300. The outer diameter of the base 300 is the same as the outer diameter or inner diameter of the bottom end of the outer barrel 100. The inner barrel 200 is cylindrical, and the inner barrel 200 is located inside the outer barrel 100. The axes of the inner barrel 200, the base 300 and the outer barrel 100 are collinear.

[0046] In other embodiments, the outer diameter of the top of the outer barrel 100 is greater than the outer diameter of the bottom of the outer barrel 100.

[0047] In some embodiments, two water baffle plates 120 are disposed on the upper surface of the cross beam 700, and the two water baffle plates 120 are respectively disposed on both sides of the water receiving groove; the top ends of the water baffle plates 120 are used to abut against the lower surface of the door body 400. When the door body 400 is opened, the condensed water on the door body 400 flows downward along the door body 400 and drips into the water receiving groove on the cross beam 700. When the condensed water drips into the water receiving groove, the water baffle plates 120 prevent the water flow from splashing and contaminating the goods.

[0048] Further, the two water baffle plates 120 are vertically disposed, and the length direction of the two water baffle plates 120 is the same as the length direction of the cross beam 700. Both ends of the baffle are connected to the inner peripheral wall of the inner barrel 200.

[0049] Please refer to all the attached drawings. In some embodiments, there are two door bodies 400, both of which are hinged to the rotating shaft; the upper surfaces of the two water baffle plates 120 respectively abut against the lower surfaces of the two door bodies 400. When the door body 400 is opened, the side of the door body 400 close to the rotating shaft is lower, and the side of the door body 400 far from the rotating shaft is higher. The condensed water on the upper surface of the door body 400 flows downward along the surface of the door body 400 and drips downward through the gap between the two door bodies 400 into the water receiving tank, ensuring the drainage effect of the condensed water.

[0050] Further, the length direction of the rotating shaft is perpendicular to the axial direction of the inner barrel 200. The midpoint of the rotating shaft is located on the axis of the inner barrel 200. The two ends of the rotating shaft are respectively connected to the two ends of the inner barrel 200, and the rotating shaft is located at the diameter of the inner barrel 200. The two door bodies 400 are both in the shape of semi-circular plates, and the straight edges of the two semi-circular plates are both in the same direction as the length direction of the rotating shaft and are hinged to the rotating shaft. When the door body 400 is opened, the side of the door body 400 far from the rotating shaft tilts upward, and the opened door body 400 tilts downward from top to bottom toward the side close to the rotating shaft. When the two door bodies 400 are not in the same plane, a gap is generated between the two door bodies 400, and the condensed water can flow downward along the door body 400 and drip into the water receiving tank through the gap between the two door bodies 400.

[0051] Further, the cross beam 700 is in the shape of a rectangular rod, and the two ends of the cross beam 700 are respectively connected to the inner peripheral wall of the inner barrel 200. There is a gap between the cross beam 700 and the rotating shaft to avoid affecting the flipping of the door body 400. The gap between the cross beam 700 and the rotating shaft is small to prevent water droplets from splashing into the inner barrel 200 after dropping into the water receiving tank and contaminating the goods.

[0052] In some embodiments, the rotating shaft is located above the water receiving tank and in the middle of the water receiving tank. The water receiving tank is opened on the upper surface of the cross beam 700.

[0053] In some embodiments, a light bar is provided on the cross beam 700. The light bar illuminates the goods inside the inner barrel 200, and the temperature of the light bar raises the temperature of the condensed water in the water tank for evaporation, improving the discharge efficiency of the condensed water.

[0054] In some embodiments, a receiving groove 600 is formed inside the cross beam 700; the receiving groove 600 is located below the water receiving tank, and the light bar is arranged in the receiving groove 600 to prevent the light bar from being damaged by water vapor.

[0055] Further, the receiving groove 600 is a rectangular groove, and the receiving groove 600 penetrates through both ends of the cross beam 700 in the length direction. The side wall thicknesses on the left and right sides of the receiving groove 600 are the same. When the receiving groove 600 is opened, damage to the cross beam 700 is avoided, and the structural strength is improved.

[0056] Please refer to all the attached drawings. In some embodiments, the length direction of the receiving groove 600 is the same as that of the water receiving groove, and the length direction of the light bar is arranged along the length direction of the receiving groove 600. Since the length direction of the light bar is the same as that of the water receiving groove, the temperature of the light bar conducted to the water receiving groove also increases, enhancing the effect of heating the inside of the water receiving groove to improve the evaporation efficiency of the condensed water in the water receiving groove.

[0057] Further, clamping strips are provided on both vertical side walls of the receiving groove 600, and clamping grooves are respectively formed on the two vertical side walls of the light bar. The light bar is inserted into the receiving groove 600 along one end of the receiving groove 600, and the clamping grooves on both sides of the light bar are respectively clamped with the corresponding clamping strips.

[0058] Please refer to all the attached drawings. In some embodiments, the water receiving groove has a first groove wall 701 and a second groove wall 702, and the length directions of the first groove wall 701 and the second groove wall 702 are the same; the bottoms of the first groove wall 701 and the second groove wall 702 are close to each other and the tops are far from each other. When the condensed water drops into the water receiving groove, it contacts the first groove wall 701 or the second groove wall 702 and flows to the center of the water receiving groove and then is discharged to the water connection pipe 900, improving the flow effect of the condensed water.

[0059] Further, the minimum angle between the first side wall and the ground is the same as the minimum angle between the second side wall and the ground. The cross-section of the water receiving groove is an inverted triangle. The lowest point of the water receiving groove is close to the light bar, and the temperature of the light bar evaporates the condensed water in the water receiving groove.

[0060] In some embodiments, the bottom connection of the first groove wall 701 and the second groove wall 702 is connected by a rounded corner. The condensed water flows along the first groove wall 701 and the second groove wall 702 to the rounded corner, and the condensed water at the rounded corner flows along the length direction of the water receiving groove to the water connection pipe 900.

[0061] In other embodiments, the water receiving groove is arranged as a rectangular groove, and the bottom wall of the water receiving groove is horizontally arranged. The opposite side walls of the water receiving groove are vertically arranged.

[0062] In other embodiments, the opposite two side walls of the water receiving groove are inclined, and the two side walls are inclined away from each other from bottom to top.

[0063] In some embodiments, when the door body 400 closes the inner barrel 200, the upper surface of the cross beam 700 and the lower surface of the door body 400 are arranged at an interval. When the door body 400 is opened, the condensed water on the door body 400 flows downward along the door body 400 and drops onto the water receiving groove on the cross beam 700. The door body 400 and the cross beam 700 are arranged at an interval to avoid interference between the door body 400 and the cross beam 700 when the door body 400 is opened.

[0064] In some embodiments, the cross beam 700 is made of metal. The metal material has good heat conduction effect, which can increase the temperature of the tank wall of the water receiving tank and improve the evaporation rate of the condensed water in the water receiving tank.

[0065] In some embodiments, the material of the cross beam 700 at the position of the water receiving tank is light-tight material; the material of the cross beam 700 under the light bar is light-transmitting material. The upper half of the cross beam 700 is light-tight, which can prevent the direct light of the light bar at the opening of the round barrel cabinet, avoid dazzling the user with the light bar, and improve the user experience.

[0066] Furthermore, the cross beam 700 is injection molded.

[0067] In some embodiments, the length direction of the cross beam 700 is inclined downward from top to bottom towards the water connecting pipe 900, which is convenient for the condensed water in the water receiving tank to flow into the water connecting pipe 900.

[0068] In some embodiments, the top of the water connecting pipe 900 is vertically arranged. The water connecting pipe 900 is located between the outer barrel 100 and the inner barrel 200, and the top of the water connecting pipe 900 is perpendicular to the cross beam 700. When the condensed water flows into the water connecting pipe 900, the stability of the condensed water entering the water connecting pipe 900 is increased.

[0069] In other embodiments, there are water connecting pipes 900 at both ends of the water receiving tank. The structures of the two water connecting pipes 900 are the same, and the two water connecting pipes 900 are respectively communicated with the two ends of the water receiving tank.

[0070] In some embodiments, a ring seat 500 is arranged at the top of the outer barrel 100. The ring seat 500 is connected to the outer barrel 100 and the inner barrel 200. The rotating shaft is connected to the ring seat 500, and the door body 400 is arranged on the ring seat 500. Both the rotating shaft and the cross beam 700 are connected to the ring seat 500.

[0071] In some embodiments, the top of the water connecting pipe 900 has an expansion section 110. The diameter of the expansion section 110 is larger than that of the water connecting pipe 900; the upper surface of the expansion section 110 is attached to the bottom wall of the cross beam 700. When the condensed water passes through the water receiving tank and flows back along the bottom wall of the cross beam 700, the condensed water contacts the expansion section 110 and flows down along the peripheral wall of the expansion section 110 into the water connecting pipe 900, which improves the drainage efficiency and avoids the backflow of the condensed water.

[0072] In some embodiments, the water connecting pipe 900 includes a first water receiving section 901 and a second water receiving section 902. The top of the first water receiving section 901 is the expansion section 110. The expansion section 110 and the first water receiving section 901 are integrally formed with the ring seat 500. One end of the cross beam 700 close to the expansion section 110 is located above the expansion section 110.

[0073] In some embodiments, a water receiving tray 800 is arranged on the base 300, and the bottom of the water connecting pipe 900 is communicated with the water receiving tray 800.

[0074] In some embodiments, an electric heating wire is disposed in the water receiving tank, and the condensed water in the water receiving tank is heated by the electric heating wire.

[0075] In some embodiments, the positive and negative electrodes of the electric heating wire are spaced apart. When there is condensed water in the water receiving tank, the condensed water is electrically connected to start the electric heating wire to heat the water in the water receiving tank. When there is no condensed water in the water receiving tank, the electric heating wire is not started.

[0076] In some embodiments, the bottom wall of the inner barrel 200 is circular; a drainage groove is formed in the inner bottom wall of the inner barrel 200, and the length direction of the drainage groove is arranged along the radial direction of the housing; a plurality of drainage grooves are arranged at intervals around the axis of the bottom wall of the inner barrel 200; a connecting groove is arranged on the inner bottom wall of the inner barrel 200, and the connecting groove communicates with all the drainage grooves; a drain pipe is arranged outside the bottom wall of the inner barrel 200. The drain pipe is arranged to communicate with the connecting groove. The sewage at the bottom of the inner barrel 200 is discharged through the drain pipe. When the amount of sewage in the inner barrel 200 is small, the sewage enters the drainage groove, and the sewage in each drainage groove converges into the connecting groove and is discharged through the drain pipe. At the same time, even if a small amount of sewage cannot be discharged in the inner barrel 200, the sewage is located in the drainage groove or the connecting groove, and the sewage is at a certain distance from the goods placed on the bottom wall of the inner barrel 200, avoiding pollution of the goods by the sewage.

[0077] Through the description of multiple embodiments of the round barrel cabinet with a lighting lamp of the present invention, it can be seen that the embodiments of the round barrel cabinet with a lighting lamp of the present invention have at least one or more of the following advantages:

[0078] 1. When the door body 400 is opened, the condensed water on the door body 400 flows downward along the door body 400 and drips into the water receiving tank on the cross beam 700, and the condensed water in the water receiving tank is discharged through the water receiving pipe 900 to complete the discharge of the condensed water;

[0079] 2. The goods inside the inner barrel 200 are illuminated by the lamp strip, and the temperature of the lamp strip is used to raise the temperature of the condensed water in the water tank for evaporation, improving the discharge efficiency of the condensed water.

[0080] Finally, it should be noted that the various embodiments in this specification are described in a progressive manner, and the key points of each embodiment are the differences from other embodiments. The same and similar parts among the various embodiments can be referred to each other.

[0081] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them; although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that: still, the specific implementation manners of the present invention can be modified or some technical features can be equivalently replaced; without departing from the spirit of the technical solutions of the present invention, they should all be covered within the scope of the technical solutions claimed by the present invention.

Claims

1. A round barrel cabinet with a lighting lamp, characterized in that, Comprising: Base; Outer barrel, the outer barrel is arranged above the base; Inner barrel, the inner barrel is located inside the outer barrel; Rotating shaft, the rotating shaft is arranged at the top of the inner barrel; Door body, the door body is arranged at the top of the outer barrel and is used to open or close the inner barrel; the door body is hinged to the top of the outer barrel through a rotating shaft; Cross beam, the cross beam is arranged below the rotating shaft, the length direction of the cross beam is the same as that of the cross beam arranged below the rotating shaft and the length direction is the same as that of the rotating shaft; a water receiving groove is formed on the upper surface of the cross beam, and the length direction of the water receiving groove is the same as that of the cross beam; Light strip, the light strip is arranged on the cross beam.

2. The barrel cabinet with a lighting lamp according to claim 1, characterized in that A receiving groove is formed inside the cross beam; the receiving groove is located below the water receiving groove, and the light strip is arranged in the receiving groove.

3. The barrel cabinet with a lighting lamp according to claim 2, characterized in that, The length direction of the receiving groove is the same as that of the water receiving groove, and the length direction of the light strip is arranged along the length direction of the receiving groove.

4. The drum cabinet with a lighting lamp according to claim 1, characterized in that, The water receiving groove has a first groove wall and a second groove wall, and the length directions of the first groove wall and the second groove wall are the same; the bottoms of the first groove wall and the second groove wall are close to each other and the tops are far from each other.

5. The barrel cabinet with a lighting lamp according to claim 4, characterized in that, The connection at the bottom of the first groove wall and the second groove wall is connected by a fillet.

6. The barrel cabinet with a lighting lamp according to claim 1, characterized in that, When the door body closes the inner barrel, the upper surface of the cross beam and the lower surface of the door body are arranged at an interval.

7. The barrel cabinet with a lighting lamp according to claim 6, characterized in that, Two water baffle plates are arranged on the upper surface of the cross beam, and the two water baffle plates are respectively arranged on both sides of the water receiving groove; the top of the water baffle plate is used to abut against the lower surface of the door body.

8. The round barrel cabinet with a lighting lamp according to claim 7, characterized in that, There are two door bodies and both are hinged to the rotating shaft; the upper surfaces of the two water baffle plates respectively abut against the lower surfaces of the two door bodies.

9. The barrel cabinet with a lighting lamp according to claim 1, characterized in that, The cross beam is made of metal material.

10. The barrel cabinet with a lighting lamp according to claim 1, characterized in that, The material of the cross beam at the water receiving groove is an opaque material; the material of the cross beam below the light strip is a light-transmitting material.

Citation Information

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