Protective container for compressor and capable of preventing environment temperature rise
By introducing folding baffles and inclined heat dissipation blinds into the compressor container, combined with temperature sensor control, the problems of poor heat dissipation and low-temperature air intake are solved, efficient heat dissipation and intake temperature regulation are achieved, and waterproofing and structural strength are enhanced.
Patent Information
- Application Number
- CN202421916075.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The heat dissipation effect of traditional compressor containers is poor, and the low intake air temperature in a low temperature environment affects the normal operation of the compressor, and is susceptible to rainwater corrosion and insufficient strength, resulting in accidents.
A protective container is designed, including a folding baffle and tilting heat dissipation blind. The opening and closing of the folding baffle is controlled through a temperature sensor, and combined with a cooling air duct and a return air duct to achieve effective discharge of hot air and adjustment of intake air temperature, and has waterproof and silent functions.
It improves the heat dissipation effect, avoids the impact of excessive or low ambient temperature on the compressor, prevents rainwater corrosion, enhances structural strength, and meets the actual needs of the compressor.
Smart Images

Figure CN223075687U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of containers for compressors, and particularly relates to a protective container for a compressor that prevents environmental temperature rise. Background Art
[0002] When a compressor is used outdoors and exposed, in case of heavy rain, rainwater is likely to corrode the compressor; in case of a hurricane, due to the weak overall strength of the compressor, serious accidents such as deformation or even detachment of the compressor box board are likely to occur. Therefore, when the compressor is used outdoors, it is generally placed in a container. When a traditional container is used, problems such as excessive regional temperature and poor heat dissipation are likely to occur. If the outdoor temperature is relatively low, too low temperature of the air inhaled by the compressor will also affect the normal operation of the compressor. Therefore, we have designed a protective container for a compressor with good heat dissipation and can also increase the intake air temperature. Content of the Utility Model
[0003] The utility model provides a protective container for a compressor that prevents environmental temperature rise to solve the defects in the prior art.
[0004] The utility model is realized through the following technical solutions:
[0005] A protective container for a compressor that prevents environmental temperature rise includes a box body. One side of the box body is provided with an observation window. A compressor is placed inside the box body. The front and rear sides of the top of the box body are respectively provided with openings. The middle part of the opening on the front side of the top of the box body is provided with a first cover plate for blocking it. The first cover plate divides the front opening into two left and right heat dissipation outlets. The rear side of the top of the box body is provided with several second cover plates for blocking it. One of the second cover plates is provided with a grid for heat dissipation. The front and rear sides of the box body are respectively hinged with intake louvers, and the intake louvers are communicated with the outside. An isolation power distribution cabinet is fixedly installed on one side of the box body. The electrical components in the isolation power distribution cabinet are connected to the compressor through cables. Heat dissipation louvers are respectively arranged in the heat dissipation outlets. The heat dissipation louvers are fixedly installed on the first cover plate. Folding baffles are respectively arranged at the bottom sides of the heat dissipation louvers. Water collecting boxes are respectively arranged on one side of the folding baffles. The water collecting boxes are arranged on the box body. Side plates are respectively fixedly installed on the front sides of the water collecting boxes. One side of the folding baffle is hinged to the side plate, and the other side is hinged to the box body. The spaces between the two sides of the compressor and the box body are return air ducts. The space between the compressor and the top of the folding baffle is a heat dissipation duct. One side of the folding baffle can abut against the compressor.
[0006] A protective container for a compressor to prevent environmental temperature rise as described above. The overall frame of the box body is composed of sheet metal parts, including a bracket at the bottom and a cross beam at the top. The left and right side walls of the box body are composed of several door panels and columns. One end of the column is fixedly connected to the bracket, and the other end of the column is fixedly connected to the corresponding cross beam. One side of the door panel is hinged to the adjacent column. Sound-absorbing cotton is fixedly installed on the door panel, and a sealing strip is fixedly installed on one side of the door panel. One side of the sealing strip abuts against the adjacent column. A sealing baffle is provided between the column and the sound-absorbing cotton, and the sealing baffle is fixedly installed on the corresponding column. The sound-absorbing cotton, the sealing strip and the sealing baffle form a double-layer sealed, waterproof and soundproof structure between the door panel and the column.
[0007] A protective container for a compressor to prevent environmental temperature rise as described above. A ladder is fixedly installed on one side of the box body.
[0008] A protective container for a compressor to prevent environmental temperature rise as described above. A water receiving tank is fixedly installed inside the box body. The water receiving tank is located below the grid of the second cover plate. Drain ports are also provided on both sides of the water receiving tank, and a water baffle is provided above the water receiving tank.
[0009] A protective container for a compressor to prevent environmental temperature rise as described above. A filter layer net is fixedly installed on one side of the intake louvers.
[0010] A protective container for a compressor to prevent environmental temperature rise as described above. A driving mechanism for driving the folding baffle to rotate is provided inside the box body. The driving mechanism includes a temperature sensor fixedly installed at the air inlet of the compressor. The temperature sensor is electrically connected to a controller fixedly installed on the box body. First electromagnets are respectively fixedly installed on the heat dissipation louvers, and second electromagnets are respectively fixedly installed on the folding baffle corresponding to the first electromagnets. The first electromagnets and the second electromagnets are respectively electrically connected to the controller, and the first electromagnets can be adsorbed together with the corresponding second electromagnets.
[0011] A protective container for a compressor to prevent environmental temperature rise as described above. A first baffle is fixedly installed in the return air duct on the right side of the box body, and the first baffle is located at the right rear of the front side air outlet of the compressor. A second baffle is fixedly installed in the return air duct on the left side of the box body, and the second baffle is located at the left front of the front side air outlet of the compressor.
[0012] The advantages of the present utility model are as follows: The structure of the present utility model is simple and ingeniously conceived. When the folding baffle is closed, the hot air generated by the operation of the compressor can be directly discharged through the heat dissipation air duct and the heat dissipation outlet at the top, with good heat dissipation effect. The inclined heat dissipation louvers can effectively block rainwater without affecting heat dissipation. When the folding baffle is opened, part of the hot air generated by the compressor can enter the return air duct, thereby increasing the intake air temperature of the compressor, avoiding the influence of low ambient temperature on the operation of the compressor, meeting the actual needs, and being suitable for popularization.
[0013] BRIEF DESCRIPTION OF THE DRAWINGS To more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0014] Figure 1 is the structural schematic diagram of the present utility model; Figure 2 is the schematic diagram of the double-layer sealed, waterproof and soundproof structure of the door panel; Figure 3 is Figure 1 the right rear view of Figure 4 is the front view of the present utility model when there is rain; Figure 5 is the air flow schematic diagram of the front view of the present utility model; Figure 6 is Figure 1 the air flow schematic diagram of the right front view of Figure 7 is Figure 1 the air flow schematic diagram of the left rear view; Figure 8 is Figure 1 the right front view of Figure 9 is Figure 8 the schematic diagram without the first cover plate; Figure 10 is the schematic diagram of the water receiving tank; Figure 11 is Figure 1 the right view of
[0015] Reference numerals: 1, compressor; 2, folding baffle; 3, heat dissipation louvers; 4, first cover plate; 5, heat dissipation outlet; 6, water receiving tank; 7, water baffle; 8, second cover plate; 9, intake louvers; 10, first baffle; 11, second baffle; 12, sound-absorbing cotton; 13, ladder; 14, drain opening; 15, observation window; 16, door panel; 17, isolated power distribution cabinet; 18, column; 19, sealing baffle; 20, sealing rubber strip; 21, bracket; 22, cross beam; 31, return air duct; 32, heat dissipation duct; 33, water collecting box; 34, partition board; 50, U-shaped pipe; 51, piston; 52, slide bar; 53, rack; 54, gear; 55, spring; 56, side plate; 60, temperature sensor; 61, controller; 62, first electromagnet; 63, second electromagnet. Detailed implementation manners
[0016] For the purpose of making the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Apparently, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.
[0017] A protective container for a compressor to prevent environmental temperature rise, as Figure 1 、 2As shown in Figures 3, 4, 5, 6, 7, 8, 9, 10, 11, it includes a box body. An observation window 15 is provided on one side of the box body. A compressor 1 is placed inside the box body. There are openings on the front and rear sides of the top of the box body. In the middle part of the front-side opening at the top of the box body, there is a first cover plate 4 that shields it. The first cover plate 4 divides the front-side opening into two left and right heat dissipation outlets 5. Inside the heat dissipation outlets 5, several evenly distributed partition plates 34 are fixedly installed. On the rear side of the top of the box body, there are several second cover plates 8 that shield it. One of the second cover plates 8 is provided with a grid for heat dissipation. On the front and rear sides of the box body, intake louvers 9 are respectively hinged. The intake louvers 9 communicate with the outside. The intake port of the compressor 1 faces the corresponding intake louver 9. An isolated power distribution cabinet 17 is fixedly installed on one side of the box body. The electrical components inside the isolated power distribution cabinet 17 are connected to the compressor 1 through cables. Heat dissipation louvers 3 are respectively provided inside the heat dissipation outlets 5. The heat dissipation louvers 3 are fixedly installed on the first cover plate 4. The brackets of the heat dissipation louvers 3 are fixedly installed at the bottom of the first cover plate 4. The heat dissipation louvers 3 are inclined. The heat dissipation louvers 3 on both sides are symmetrically distributed left and right. The side of the heat dissipation louvers 3 on the left and right sides that face each other is higher, and the side that faces away from each other is lower. Folding baffles 2 are respectively provided at the bottom sides of the heat dissipation louvers 3. Water collecting boxes 33 are respectively provided on one side of the folding baffles 2. The water collecting boxes 33 are arranged on the box body. Side plates 56 are respectively fixedly installed on the front sides of the water collecting boxes 33. One side of the folding baffle 2 is hinged to the side plate 56, and the other side is hinged to the box body. The space between the two sides of the compressor 1 and the box body is the return air duct 31. The space between the compressor 1 and the top of the folding baffle 2 is the heat dissipation duct 32. One side of the folding baffle 2 can abut against the compressor 1 so that the return air duct 31 can be disconnected from the heat dissipation duct 32. The structure of the utility model is simple and ingenious. When the folding baffle 2 is closed, the hot air generated by the operation of the compressor 1 can be directly discharged through the heat dissipation duct 32 at the top and the heat dissipation outlet 5, and the heat dissipation effect is good. The inclined heat dissipation louvers 3 can effectively block rainwater without affecting heat dissipation. When the folding baffle 2 is opened, part of the hot air generated by the compressor 1 can enter the return air duct 31, thereby increasing the intake air temperature of the compressor and avoiding the influence of low ambient temperature on the operation of the compressor, which can meet the actual needs and is suitable for popularization.When the ambient temperature is suitable and not cold, rotate the folding baffle 2 to make it horizontally closed. The return air duct 31 is not connected to the heat dissipation duct 32. The hot air discharged from the outlet of the compressor 1 can directly pass through the heat dissipation louvers 3 and the heat dissipation outlet 5 and be directly discharged upward, with good heat dissipation effect. When the ambient temperature is low and affects the operation of the compressor 1, rotate and open the folding baffle 2 to connect the return air duct 31 with the heat dissipation duct 32. A part of the hot air discharged from the outlet of the compressor 1 can flow back into the container interior from below the folding baffle 2. During this process, the intake air temperature of the compressor is increased. This direct exhaust method omits the height of the duct, improves the heat dissipation effect, and also avoids the problems of excessive regional temperature rise and freezing in winter. When it rains outdoors, the heat dissipation louvers 3 have an inclined angle, which can effectively block rainwater while ensuring the heat dissipation effect. The blocked rainwater can be discharged from the drain openings 14 on both sides of the box body.
[0018] Specifically, as Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 shown, the overall frame of the box body in this embodiment is composed of sheet metal parts, including the bracket 21 at the bottom and the cross beam 22 at the top. The cross beams 22 of different lengths are sequentially fixedly connected to form a rectangular frame. A cross beam 22 is also fixedly installed in the middle of the rectangular frame at the top. This cross beam 22 divides the front and rear openings on the top side of the box body. The left and right side walls of the box body are composed of several door panels 16 and columns 18. The widths of the two columns on the front side of the box body are greater than those of the other columns 18. One end of the column 18 is fixedly connected to the bracket 21, and the other end of the column 18 is fixedly connected to the corresponding cross beam 22. One side of the door panel 16 is hinged to the adjacent column 18. Sound-absorbing cotton 12 is fixedly installed on the door panel 16. A sealing strip 20 is fixedly installed on one side of the door panel 16. One side of the sealing strip 20 abuts against the adjacent column 18. A sealing baffle 19 is provided between the column 18 and the sound-absorbing cotton 12. The sealing baffle 19 is fixedly installed on the corresponding column 18. The sound-absorbing cotton 12, the sealing strip 20 and the sealing baffle 19 form a double-layer sealed, waterproof and sound-proof structure between the door panel 16 and the column 18. The double-layer sealed, waterproof and sound-proof structure can prevent the propagation of the noise generated by the operation of the compressor 1. The sound-absorbing cotton 12 absorbs part of the noise, reducing noise pollution. This structure has a good sealing effect and can also play a waterproof role, facilitating use.
[0019] Specifically, as Figure 1 , Figure 8 , Figure 9 , Figure 11 shown, a ladder 13 is fixedly installed on one side of the box body in this embodiment. The ladder 13 is fixedly installed on a column 18 on the front side. It can be climbed through the ladder 13, which is convenient for the disassembly of the lifting hook for box body transportation.
[0020] Further, as Figure 10 shown, a water receiving tank 6 is fixedly installed inside the box body of this embodiment. The left and right ends of the water receiving tank 6 are fixedly connected to the corresponding cross beams 22. The water receiving tank 6 is located below the grid on the second cover plate 8. Drain openings 14 are also provided on both sides of the water receiving tank 6. A water baffle 7 is provided above the water receiving tank 6. The bottom side of the water baffle 7 does not contact the water receiving tank 6. The two ends of the water baffle 7 are fixedly connected to the corresponding cross beams 22. The water baffle 7 can prevent rainwater from entering the air outlet of the compressor 1 through the grid on the second cover plate 8. The water receiving tank 6 can collect the rainwater entering from the grid and then discharge it from the drain openings 14 on both sides.
[0021] Furthermore, as shown in the figure, a filter layer net is fixedly installed on one side of the intake louver 9 of this embodiment. The filter layer net is not shown in the figure. The intake louver 9 is hinged to the corresponding column 18. The filter layer net can effectively filter sand, catkins, and dust in the air.
[0022] Furthermore, as Figure 1 shown, a driving mechanism for driving the folding baffle 2 to rotate is provided inside the box body of this embodiment. The driving mechanism includes a temperature sensor 60. The temperature sensor 60 is fixedly installed at the air inlet of the compressor 1. The temperature sensor 60 is electrically connected to a controller 61. The controller 61 is fixedly installed on the box body. First electromagnets 62 are respectively fixedly installed on the heat dissipation louvers 3. Second electromagnets 63 are respectively fixedly installed on the folding baffle 2 corresponding to the first electromagnets 62. The first electromagnets 62 and the second electromagnets 63 are respectively electrically connected to the controller 61. The first electromagnet 62 can adsorb to the corresponding second electromagnet 63 together. When the temperature sensor 60 detects that the temperature is lower than the set value, a signal is transmitted to the controller 61. The controller 61 then controls the first electromagnet 62 and the second electromagnet 63 to be energized. The first electromagnet 62 and the second electromagnet 63 attract each other to make the folding baffle 2 rotate and open. The return air duct 31 is communicated with the heat dissipation duct 32. The hot air generated by the operation of the compressor 1 can then flow back into the return air duct 31 through the space below the folding baffle 2, thereby increasing the intake air temperature of the compressor. When the temperature sensor 60 detects that the temperature is higher than the set value, the controller 61 controls the first electromagnet 62 and the second electromagnet 63 to be de-energized. The first electromagnet 62 and the second electromagnet 63 no longer adsorb together. The folding baffle 2 rotates under the action of its own gravity, so as to be horizontally closed, and the return air duct 31 is no longer communicated with the heat dissipation duct 32.
[0023] Further, as shown in the figure, a first baffle 10 is fixedly installed in the air return duct 31 on the right side of the box body in this embodiment. The first baffle 10 is located at the right rear of the front side air outlet of the compressor 1. A second baffle 11 is fixedly installed in the air return duct 31 on the left side of the box body. The second baffle 11 is located at the left front of the front side air outlet of the compressor 1. The first baffle 10 and the second baffle 11 are fixedly installed on the corresponding columns 18. The first baffle 10 can block the hot air flowing back from the right side from flowing back to the rear of the box body, so that more hot air on the right side flows back to the front side of the box body. The second baffle 11 can block the hot air flowing back from the left side from flowing back to the front side of the box body, so that more hot air on the left side flows back to the rear side of the box body. The first baffle 10 and the second baffle 11 play a role in diverting the hot air and can better increase the temperature inside the box body.
[0024] Finally, it should be noted that 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 foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. However, such modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A protective container for a compressor to prevent environmental temperature rise, comprising a box body. One side of the box body is provided with an observation window (15). A compressor (1) is placed inside the box body. There are openings at the front and rear sides of the top of the box body. In the middle part of the front opening at the top of the box body, there is a first cover plate (4) for shielding it. The first cover plate (4) divides the front opening into two left and right heat dissipation outlets (5). There are several second cover plates (8) for shielding the rear side of the top of the box body. One of the second cover plates (8) is provided with a grid for heat dissipation. The front and rear sides of the box body are respectively hinged with intake louvers (9). The intake louvers (9) are communicated with the outside. One side of the box body is fixedly installed with an isolated power distribution cabinet (17). The electrical components in the isolated power distribution cabinet (17) are connected to the compressor (1) through cables. It is characterized in that: The heat dissipation outlets (5) are respectively provided with heat dissipation louvers (3). The heat dissipation louvers (3) are fixedly installed on the first cover plate (4). The bottom sides of the heat dissipation louvers (3) are respectively provided with folding baffles (2). Water collecting boxes (33) are respectively arranged on one side of the folding baffles (2). The water collecting boxes (33) are arranged on the box body. Side plates (56) are fixedly installed on the front sides of the water collecting boxes (33). One side of the folding baffle (2) is hinged to the side plate (56), and the other side is hinged to the box body. The spaces between the two sides of the compressor (1) and the box body are return air ducts (31). The space between the compressor (1) and the top of the folding baffle (2) is a heat dissipation duct (32). One side of the folding baffle (2) can abut against the compressor (1).
2. The protective container for a compressor to prevent environmental temperature rise according to claim 1, characterized in that: The overall frame of the box body is composed of sheet metal parts, including a bracket (21) at the bottom and a cross beam (22) at the top. The left and right side walls of the box body are composed of several door panels (16) and columns (18). One end of the column (18) is fixedly connected to the bracket (21), and the other end of the column (18) is fixedly connected to the corresponding cross beam (22). One side of the door panel (16) is hinged to the adjacent column (18). Sound-absorbing cotton (12) is fixedly installed on the door panel (16). A sealing strip (20) is fixedly installed on one side of the door panel (16). One side of the sealing strip (20) abuts against the adjacent column (18). A sealing baffle (19) is arranged between the column (18) and the sound-absorbing cotton (12). The sealing baffle (19) is fixedly installed on the corresponding column (18). The sound-absorbing cotton (12), the sealing strip (20) and the sealing baffle (19) form a double-layer sealed, waterproof and sound-proof structure between the door panel (16) and the column (18).
3. A protective container for a compressor to prevent environmental temperature rise according to claim 2, characterized in that: A ladder (13) is fixedly installed on one side of the box body.
4. A protective container for a compressor to prevent environmental temperature rise according to claim 3, characterized in that: A water receiving tank (6) is fixedly installed inside the box body. The water receiving tank (6) is located below the grid on the second cover plate (8). Drainage openings (14) are also provided on both sides of the water receiving tank (6). A water baffle (7) is arranged above the water receiving tank (6).
5. A protective container for a compressor to prevent environmental temperature rise according to claim 4, characterized in that: A filter layer net is fixedly installed on one side of the air inlet louvers (9).
6. A protective container for a compressor to prevent environmental temperature rise according to claim 2, characterized in that: A driving mechanism for driving the folding baffle (2) to rotate is arranged inside the box body. The driving mechanism includes a temperature sensor (60). The temperature sensor (60) is fixedly installed at the air inlet of the compressor (1). The temperature sensor (60) is electrically connected to a controller (61). The controller (61) is fixedly installed on the box body. First electromagnets (62) are respectively fixedly installed on the heat dissipation louvers (3). Second electromagnets (63) are respectively fixedly installed on the folding baffle (2) corresponding to the first electromagnets (62). The first electromagnets (62) and the second electromagnets (63) are respectively electrically connected to the controller (61). The first electromagnet (62) can be adsorbed together with the corresponding second electromagnet (63).
7. A protective container for a compressor to prevent environmental temperature rise according to claim 2, characterized in that: A first baffle (10) is fixedly installed in the return air duct (31) on the right side of the box body. The first baffle (10) is located at the right rear of the front side air outlet of the compressor (1). A second baffle (11) is fixedly installed in the return air duct (31) on the left side of the box body. The second baffle (11) is located at the left front of the front side air outlet of the compressor (1).