Efficiently-installed box body and heat exchanger
By providing the first groove and the second groove on the top of the limiting plate, the problem of low installation efficiency of the existing heat exchanger box is solved, and a more efficient installation process and a more efficient production cost are achieved.
Patent Information
- Application Number
- CN202421599385.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-08
AI Technical Summary
The box of existing heat exchangers is less efficient when installing the connecting pipe of the heat exchange assembly, and requires disassembly and re-welding, which increases production costs.
An efficiently mounted box is designed, by providing a first groove and a second groove on the top of the limiting plate, the connecting pipe of the heat exchange assembly can be placed directly in these grooves, thereby simplifying the installation process.
Improves the installation efficiency of heat exchange components, reduces production costs, and simplifies the installation process.
Smart Images

Figure CN222881778U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of heat exchangers, and in particular relates to a box body and a heat exchanger with high efficiency installation. Background Art
[0002] When installing the connecting pipe of the heat exchange component of the existing heat exchanger box, it is necessary to pass it through one of the split boxes. The connecting pipe needs to be removed separately, and then an opening is opened on one side of the split box, and one end of the connecting pipe is passed through the opening, and then the connecting pipe is welded. This installation method is inefficient and increases production costs.
[0003] Therefore, it is urgent to propose a new technical solution to solve the above problems. Utility Model Content
[0004] One of the purposes of the utility model is to address the deficiencies of the prior art and provide a box body with efficient installation, which allows the connecting pipe of the heat exchange component to be directly placed in the first groove or the second groove, thereby improving the installation efficiency of the heat exchange component and reducing production costs.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] A box body with efficient installation includes a first placement piece, a second placement piece and a transverse plate, wherein a first accommodating cavity is formed inside the first placement piece, and a second accommodating cavity is formed inside the second placement piece, the first placement piece and the second placement piece are relatively arranged on the same surface of the transverse plate, one end of the first placement piece and one end of the second placement piece are both connected to the surface of the transverse plate, a support piece is arranged between the first placement piece and the second placement piece, a limiting plate is arranged between the first placement piece and the supporting piece, the surface of the limiting plate is connected to the side of the first placement piece, a first groove and a second groove are arranged on the top of the limiting plate, and the first accommodating cavity is connected to the second accommodating cavity through the first groove or the second groove.
[0007] Preferably, at least one bending portion is further provided on the top of the limiting plate, and a notch is formed between two adjacent bending portions.
[0008] Preferably, the surface of the transverse plate has a ventilation opening, and the first placement member has at least one ventilation hole on a side away from the transverse plate, and the ventilation hole and the ventilation opening are both connected to the first accommodating cavity.
[0009] Preferably, the supporting member includes a top plate and a side plate, the side of the top plate is connected to the side of the side plate, the top plate is horizontally arranged between the limiting plate and the side plate, one end of the side plate away from the top plate abuts against a side of the second placing member away from the horizontal plate, and the side of the side plate is connected to the side of the second placing member.
[0010] Preferably, a wire passing bracket is provided at one end of the first placement member, and an end of the wire passing bracket has a through hole, and the through hole is communicated with the first accommodating cavity.
[0011] Preferably, the second placing piece includes a placing body and a tilting body, one end of the placing body is connected to one end of the tilting body, the other end of the placing body is connected to the first accommodating cavity, and the width of the cross section of the tilting body decreases along the direction from the placing body to the tilting body.
[0012] Preferably, the side of the placement body away from the transverse plate has at least one first ventilation hole, and the side of the inclined body away from the transverse plate has at least one second ventilation hole, and the first ventilation hole and the second ventilation hole are both connected to the second accommodating cavity.
[0013] Preferably, the surface of the transverse plate has an exhaust hole, and the surface of the transverse plate is provided with an exhaust bracket, the exhaust bracket is arranged toward the second accommodating cavity, and the exhaust bracket is respectively connected to the exhaust hole and the second accommodating cavity.
[0014] Preferably, a first transverse column and a second transverse column are provided at one end of the second placement piece away from the transverse plate, the first transverse column and the second transverse column are relatively arranged on two sides of the second placement piece, and the first transverse column and the second transverse column are used to reinforce the second placement piece.
[0015] Preferably, a mounting piece is provided on the outer peripheral edge of the transverse plate, and the mounting piece is used for connecting with an external device.
[0016] Preferably, an air guide is provided at the outer opening of the exhaust hole.
[0017] Preferably, the surface of the transverse plate has a connecting hole, and the connecting hole is used to connect the transverse plate and the bending portion.
[0018] The second object of the utility model is to provide a heat exchanger, comprising the efficiently installed box body as described above, a first heat exchange member, a second heat exchange member, a first conduit and a second conduit, the first heat exchange member being arranged on one side of the box body, the second heat exchange member being arranged on the other side of the box body, the side of the first heat exchange member close to the second heat exchange member being connected with the side of the second heat exchange member away from the first heat exchange member through the first conduit, the side of the first heat exchange member away from the second heat exchange member being connected with the side of the second heat exchange member close to the first heat exchange member through the second conduit, the limit plate being arranged between the first heat exchange member and the second heat exchange member, the surface of the limit plate being in contact with the side of the first heat exchange member, the first conduit passing through the first groove, and the second conduit passing through the second groove.
[0019] Preferably, a limiting body is arranged on the top of the limiting plate, and the limiting body is arranged on the outer side of the second groove.
[0020] Preferably, the first conduit includes a first connecting member, a first conveying member, a first transition member and a first transmission member, the first heat exchange member is connected to the first conveying member through the first connecting member, the first conveying member is connected to the first transmission member through the first transition member, and the end of the first transmission member away from the first transition member is connected to the second heat exchange member.
[0021] Preferably, the first conveying member includes a first conveying body and a second conveying body, and a first connecting body is arranged between the first conveying body and the second conveying body.
[0022] Preferably, the second conduit includes a second connecting member, a bending member, a second conveying member, a second transition member and a second transmission member, the first heat exchange member is connected to the bending member through the second connecting member, the bending member is connected to the second transition member through the second conveying member, and the second transition member is connected to the second heat exchange member through the second transmission member.
[0023] Preferably, the second conveying member includes a first conveying portion and a second conveying portion, and a second connecting body is provided between the first conveying portion and the second conveying portion.
[0024] Preferably, a first baffle is provided at one end of the first heat exchange element, and a second baffle is provided at the other end of the first heat exchange element.
[0025] Preferably, a first closing plate is provided at one end of the second heat exchange element, and a second closing plate is provided at the other end of the second heat exchange element.
[0026] Preferably, a third conduit is provided on a side of the second heat exchange element close to the first heat exchange element, and the third conduit is communicated with the second heat exchange element.
[0027] The beneficial effects of the utility model are as follows: the utility model comprises a first placement piece, a second placement piece and a transverse plate, the first placement piece forms a first accommodating cavity inside, the second placement piece forms a second accommodating cavity inside, the first placement piece and the second placement piece are relatively arranged on the same surface of the transverse plate, one end of the first placement piece and one end of the second placement piece are both connected to the surface of the transverse plate, a support piece is arranged between the first placement piece and the second placement piece, a limiting plate is arranged between the first placement piece and the support piece, the surface of the limiting plate is connected to the side of the first placement piece, the top of the limiting plate is provided with a first groove and a second groove, and the first accommodating cavity is connected to the second accommodating cavity through the first groove or the second groove. The utility model provides the first groove and the second groove on the top of the limiting plate, so that the connecting pipe of the heat exchange assembly can be placed in the first groove or the second groove, thereby improving the installation efficiency of the heat exchange assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 This is one of the overall structural schematic diagrams of the box body of the present utility model.
[0029] Figure 2 This is the second schematic diagram of the overall structure of the box body of the present utility model.
[0030] Figure 3 This is the third schematic diagram of the overall structure of the box body of the present utility model.
[0031] Figure 4 This is one of the overall structural schematic diagrams of the heat exchanger of the present utility model.
[0032] Figure 5 This is the second schematic diagram of the overall structure of the heat exchanger of the present utility model.
[0033] Figure 6 It is a cross-sectional view of the heat exchanger of the present utility model.
[0034] Figure 7 For the utility model Figure 2 Enlarged structural diagram at A in the middle.
[0035] Figure 8 For the utility model Figure 4 Enlarged structural diagram at B in the middle.
[0036] Fig. 9 For the utility model Figure 4 Enlarged structural diagram at point C in the middle.
[0037] Among them: 1. first placement piece; 11. first accommodating cavity; 12. ventilation hole; 13. wire support; 131. perforation; 132. fixing piece; 2. second placement piece; 21. second accommodating cavity; 22. placement body; 221. first ventilation perforation; 23. inclined body; 231. second ventilation perforation; 24. first cross column; 25. second cross column; 3. cross plate; 31. ventilation port; 32. exhaust hole; 33. exhaust support; 34. air guide piece; 35. connecting hole; 36. mounting piece; 4. support piece; 41. top plate; 42. side plate; 5. limit plate; 51. first groove; 52. second groove; 53. bending part; 54. notch; 55. limit body; 6. first guide hole; 7. second guide hole; 01. box body; 02. The first heat exchange member; 021, the first baffle; 022, the second baffle; 03, the second heat exchange member; 031, the first joint plate; 032, the second joint plate; 033, the third conduit; 04, the first conduit; 041, the first connecting member; 042, the first conveying member; 0421, the first conveying body; 0422, the second conveying body; 0423, the first connecting member; 043, the first transition member; 044, the first transmission member; 05, the second conduit; 051, the second connecting member; 052, the bending member; 053, the second conveying member; 0531, the first conveying part; 0532, the second conveying part; 0533, the second connecting member; 054, the second transition member; 055, the second transmission member; 06, the sensor; 07, the wire; 08, the power cord. DETAILED DESCRIPTION
[0038] If certain words are used in the specification and claims to refer to specific components, those skilled in the art should understand that manufacturers may use different terms to refer to the same component. This specification and claims do not use differences in names as a way to distinguish components, but use differences in the functions of components as the criteria for distinction. As mentioned throughout the specification and claims, "including" is an open term and should be interpreted as "including but not limited to". "Approximately" means that within an acceptable error range, those skilled in the art can solve technical problems within a certain error range and basically achieve technical effects.
[0039] In the utility model, unless otherwise clearly specified and limited, the terms "install", "connect", "connect", "fix" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be an indirect connection through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the utility model can be understood according to the specific circumstances.
[0040] The following is combined with Figures 1 to 9The utility model is further described in detail with specific embodiments, but is not intended to limit the utility model.
[0041] Example 1
[0042] A box body 01 with efficient installation includes a first placement piece 1, a second placement piece 2 and a transverse plate 3. The first placement piece 1 forms a first accommodating chamber 11 inside, and the first accommodating chamber 11 is used to place the first heat exchange piece 02. The second placement piece 2 forms a second accommodating chamber 21 inside, and the second accommodating chamber 21 is used to place the second heat exchange piece 03. The first placement piece 1 and the second placement piece 2 are relatively arranged on the same surface of the transverse plate 3. One end of the first placement piece 1 and one end of the second placement piece 2 are both connected to the surface of the transverse plate 3. The first placement piece 1 and the second placement piece 2 are both installed and fixed on the same surface of the transverse plate 3. The transverse plate 3 is used to install and fix the entire box body 01, so that the first heat exchange piece 02 and the second heat exchange piece 03 can quickly convert heat through a refrigerant. A support piece 4 is arranged between the first placement piece 1 and the second placement piece 2, and the second placement piece 2 on one side of the support piece 4 The end portion is connected, the support member 4 and the second placement member 2 form a closed air duct, which ensures the normal operation of the second heat exchange member 03, and one end of the support member 4 abuts against one side of the second placement member 2, and the other end of the support member 4 abuts against one side of the cross plate 3, which plays a role in supporting the second placement member 2. A limiting plate 5 is arranged between the first placement member 1 and the support member 4, and the surface of the limiting plate 5 is connected to the side of the first placement member 1. The limiting plate 5 cooperates with the first placement member 1 to form two independent spaces between the first placement member 1 and the second placement member 2, avoiding interference between the first heat exchange member 02 and the second heat exchange member 03. A first groove 51 and a second groove 52 are arranged on the top of the limiting plate 5. The top of the limiting plate 5 is one end close to the cross plate 3 and abuts against the cross plate 3. The first accommodating chamber 11 is connected to the second accommodating chamber 21 through the first groove 51 or the second groove 52. By providing the first groove 51 and the second groove 52 on the top of the limiting plate 5, the connecting pipe of the heat exchange assembly can be placed in the first groove 51 or the second groove 52, thereby improving the installation efficiency of the heat exchange assembly. The heat exchange assembly is a first heat exchange member 02 and a second heat exchange member 03 connected by a first conduit 04 and a second conduit 05.
[0043] In this embodiment, at least one bending portion 53 is further provided at the top of the limiting plate 5, and a notch 54 is formed between two adjacent bending portions 53, and the notch 54 can prevent interference between the bending portions 53. The contact area between the limiting plate 5 and the horizontal plate 3 is increased by providing the bending portion 53, so that the limiting plate 5 is not easy to shake, and the bending portion 53 and the horizontal plate 3 can be connected by screws, bolts or rivets, thereby enhancing the stability of the limiting plate 5.
[0044] In this embodiment, the surface of the horizontal plate 3 has a vent 31, which is connected to the first accommodating chamber 11. The first placement member 1 has at least one vent 12 on a side away from the horizontal plate 3, which is connected to the first accommodating chamber 11. The vent 12 is provided so that the airflow can enter the first accommodating chamber 11, and the aperture of the vent 12 is small, which can prevent impurities from entering the first accommodating chamber 11 and avoid affecting the normal operation of the first heat exchange member 02. The vent 31 is provided so that the airflow can enter from the vent 12 and then flow out from the vent 31, thereby completing the heat conversion. The airflow can also flow in from the vent 31 and then flow out from the vent 12.
[0045] In this embodiment, the support member 4 includes a top plate 41 and a side plate 42, the side of the top plate 41 is connected to the side of the side plate 42, the top plate 41 is horizontally arranged between the limit plate 5 and the side plate 42, one end of the side plate 42 away from the top plate 41 abuts against a side of the second placement member 2 away from the horizontal plate 3, and the side of the side plate 42 is connected to the side of the second placement member 2. A first small baffle and a second small baffle are arranged oppositely at both ends of the top plate 41, and the ends of the first small baffle and the second small baffle away from the top plate 41 abut against a side of the horizontal plate 3 facing the top plate 41, thereby forming a closed passage, and the first conduit 04 and the second conduit 05 pass through this passage, thereby preventing external interference from affecting the normal operation of the first conduit 04 and the second conduit 05.
[0046] In this embodiment, a wire passing bracket 13 is provided at one end of the first placement member 1, and the end of the wire passing bracket 13 has a through hole 131, and the through hole 131 is connected to the first accommodating cavity 11. The wire passing bracket 13 is a structure concave toward the first accommodating cavity 11, and a fixing member 132 is provided on the side of the wire passing bracket 13, and the fixing member 132 is used to fix the wire 07. The wire passing bracket 13 is used for passing the sensor 06, that is, one end of the wire 07 is electrically connected to the sensor 06, and the other end of the wire 07 passes through the through hole 131. The sensor 06 is arranged in the first accommodating cavity 11, and the wire 07 passes through the through hole 131 and is electrically connected to the sensor 06. The sensor 06 can be a temperature sensor or a humidity sensor.
[0047] In this embodiment, the second placing piece 2 includes a placing body 22 and an inclined body 23, one end of the placing body 22 is connected to one end of the inclined body 23, the other end of the placing body 22 is connected to the first accommodating cavity 11, the width of the cross section of the inclined body 23 decreases along the direction from the placing body 22 to the inclined body 23, the side of the placing body 22 away from the horizontal plate 3 has at least one first ventilation hole 221, the side of the inclined body 23 away from the horizontal plate 3 has at least one second ventilation hole 231, the first ventilation hole 221 and the second ventilation hole 231 are both connected to the second accommodating cavity 21. One end of the second heat exchanger 03 abuts against the position where the placement body 22 and the inclined body 23 are connected, and the side of the second heat exchanger 03 away from the horizontal plate 3 abuts against the surface of the inclined body 23. The second heat exchanger 03 forms an inverted L-shaped cavity inside the second accommodating chamber 21, thereby forming an air duct, and the wind resistance of this air duct is smaller, which is conducive to heat exchange. The airflow enters the second accommodating chamber 21 from the first ventilation perforation 221, completes the heat conversion after passing through the second heat exchanger 03, and then flows out through the second ventilation perforation 231, thus completing a heat conversion process. The airflow can also flow in from the second ventilation perforation 231 and flow out from the first ventilation perforation 221.
[0048] In this embodiment, the surface of the horizontal plate 3 has an exhaust hole 32, and the surface of the horizontal plate 3 is provided with an exhaust bracket 33, which is arranged toward the second accommodating cavity 21, and the exhaust bracket 33 is respectively connected to the exhaust hole 32 and the second accommodating cavity 21. Some electronic components inside the cabinet will generate gases such as hydrogen during operation, and the exhaust bracket 33 and the exhaust hole 32 cooperate to discharge these gases from the inside of the heat exchanger.
[0049] In this embodiment, a first transverse column 24 and a second transverse column 25 are provided at one end of the second placement piece 2 away from the transverse plate 3. The first transverse column 24 and the second transverse column 25 are relatively arranged on both sides of the second placement piece 2, and the first transverse column 24 and the second transverse column 25 are used to reinforce the second placement piece 2.
[0050] In this embodiment, a mounting member 36 is provided on the outer peripheral edge of the transverse plate 3 , and the mounting member 36 is used to connect with an external device.
[0051] In this embodiment, an air guide 34 is provided at the outer opening of the exhaust hole 32. The air guide 34 is used to guide the gas exhausted by the exhaust bracket 33 to diffuse outward, and the air guide 34 can prevent water on the side close to the first heat exchange component 02 from flowing into the exhaust hole 32, thereby playing a waterproof role.
[0052] In this embodiment, the surface of the transverse plate 3 has a connection hole 35, and the connection hole 35 is used to connect the transverse plate 3 and the bending portion 53. By providing the connection hole 35, the transverse plate 3 and the bending portion 53 can be connected by screws, bolts or rivets, and the rivets can play a waterproof role.
[0053] Example 2
[0054] A first guide hole 6 is provided on the side of the first placement piece 1, and a second guide hole 7 is provided on the side of the second placement piece 2. The wire 07 or the power cord 08 passes through the first guide hole 6 into the first accommodating cavity 11, then passes through the first groove 51 or the second groove 52 into the second accommodating cavity 21, and finally passes out from the second guide hole 7. The wire 07 or the power cord 08 passes through the first guide hole 6 and the second guide hole 7 respectively to power external devices, and the signal of the temperature sensor or the humidity sensor can be transmitted to the inside of the heat exchanger without passing the wire 07 or the power cord 08 from the outside, thereby enhancing the sealing effect.
[0055] The other structures of this embodiment are the same as those of Embodiment 1 and will not be described again here.
[0056] Example 3
[0057] The present embodiment provides a heat exchanger, comprising a box body 01, a first heat exchange element 02, a second heat exchange element 03, a first conduit 04, and a second conduit 05 which are efficiently installed as described in Embodiment 1. The first heat exchange element 02 is arranged on one side of the box body 01, and the second heat exchange element 03 is arranged on the other side of the box body 01. The side of the first heat exchange element 02 close to the second heat exchange element 03 is connected to the side of the second heat exchange element 03 away from the first heat exchange element 02 through the first conduit 04, and the side of the first heat exchange element 02 away from the second heat exchange element 03 is connected to the side of the second heat exchange element 03 close to the first heat exchange element 02 through the second conduit 05. The limiting plate 5 is arranged between the first heat exchange element 02 and the second heat exchange element 03, and the surface of the limiting plate 5 abuts against the side of the first heat exchange element 02. The first conduit 04 passes through the first groove 51, and the second conduit 05 passes through the second groove 52. By setting the first groove 51 and the second groove 52, the first conduit 04 can be directly placed in the first groove 51, and the second conduit 05 can be placed in the second groove 52, thereby improving the installation efficiency of the heat exchanger. The first groove 51 and the second groove 52 are provided with sealing materials, which are used to prevent air from passing through the first groove 51 or the second groove 52, so that the first heat exchanger 02 and the second heat exchanger 03 can only exchange heat through the first conduit 04 and the second conduit 05, thereby improving the stability of heat exchange. The sealing material can be glue. When in use, the first heat exchanger 02 is on the top and the second heat exchanger 03 is on the bottom, and the heat exchanger as a whole runs in a vertical downward manner, so that the refrigerant in the first heat exchanger 02 can quickly return to the second heat exchanger 03, thereby improving the operating efficiency of the heat exchanger.
[0058] In this embodiment, a limiting body 55 is disposed on the top of the limiting plate 5, and the limiting body 55 is disposed adjacent to the outer side of the second groove 52. The limiting body 55 can limit the second conduit 05, making it less likely to shake, thereby ensuring the normal operation of the heat exchanger.
[0059] In this embodiment, the first conduit 04 includes a first connecting member 041, a first conveying member 042, a first transition member 043 and a first transmission member 044. The first heat exchange member 02 is connected to the first conveying member 042 through the first connecting member 041, the first conveying member 042 is connected to the first transmission member 044 through the first transition member 043, and the end of the first transmission member 044 away from the first transition member 043 is connected to the second heat exchange member 03.
[0060] In this embodiment, the first conveying member 042 includes a first conveying body 0421 and a second conveying body 0422, and a first connecting body 0423 is provided between the first conveying body 0421 and the second conveying body 0422. By providing the first connecting body 0423, it is convenient to disassemble and install the first conveying body 0421 and the second conveying body 0422, thereby disassembling and installing the first heat exchange member 02 and the second heat exchange member 03.
[0061] In this embodiment, the second conduit 05 includes a second connecting member 051, a bending member 052, a second conveying member 053, a second transition member 054 and a second transmission member 055. The first heat exchange member 02 is connected to the bending member 052 through the second connecting member 051, the bending member 052 is connected to the second conveying member 053 and the second transition member 054 through the second transmission member 055, and the second transition member 054 is connected to the second heat exchange member 03 through the second transmission member 055.
[0062] In this embodiment, the second conveying member 053 includes a first conveying portion 0531 and a second conveying portion 0532, and a second connecting body 0533 is provided between the first conveying portion 0531 and the second conveying portion 0532. By providing the second connecting body 0533, it is convenient to disassemble and install the first conveying portion 0531 and the second conveying portion 0532, thereby disassembling and installing the first heat exchange member 02 and the second heat exchange member 03.
[0063] In this embodiment, a first baffle 021 is provided at one end of the first heat exchanger 02, and a second baffle 022 is provided at the other end of the first heat exchanger 02. By providing the first baffle 021 and the second baffle 022, the airflow can flow from one side of the first heat exchanger 02 to the other side of the first heat exchanger 02, playing a role of guiding the flow. There are multiple first heat exchangers 02, and by providing the first baffle 021 and the second baffle 022, the multiple first heat exchangers 02 can be fixed to enhance stability, and can play a supporting role, providing a stable space for the normal operation of the first heat exchanger 02.
[0064] In this embodiment, a first closing plate 031 is provided at one end of the second heat exchanger 03, and a second closing plate 032 is provided at the other end of the second heat exchanger 03. By providing the first closing plate 031 and the second closing plate 032, the airflow can flow from one side of the second heat exchanger 03 to the other side of the second heat exchanger 03, which plays a role of guiding the flow. There are multiple second heat exchangers 03, and by providing the first closing plate 031 and the second closing plate 032, multiple second heat exchangers 03 can be fixed to enhance stability, and can play a supporting role, providing a stable space for the normal operation of the second heat exchanger 03.
[0065] In this embodiment, a third conduit 033 is provided on one side of the second heat exchanger 03 close to the first heat exchanger 02, and the third conduit 033 is in communication with the second heat exchanger 03. The third conduit 033 is used to add refrigerant to the first heat exchanger 02 and the second heat exchanger 03. The first heat exchanger 02 and the second heat exchanger 03 are first evacuated through the third conduit 033, and then refrigerant is added to the first heat exchanger 02 and the second heat exchanger 03 through the third conduit 033. Finally, the opening of the third conduit 033 is blocked, and the opening of the third conduit 033 can be welded by welding methods such as flame brazing and high-frequency welding.
[0066] The first placement member 1 includes a first placement left plate, a first placement right plate, a first placement top plate 41 and a first ventilation plate. The first placement left plate is arranged at one end of the first heat exchange member 02, the first placement right plate is arranged at the other end of the first heat exchange member 02, the first placement top plate 41 is arranged on the side of the first heat exchange member 02 away from the limiting plate 5, and the ventilation holes 12 are arranged on the surface of the first ventilation plate.
[0067] The second placement member 2 includes a second placement left plate, a second placement right plate, a second placement bottom plate and a second ventilation plate. The second placement left plate is arranged at one end of the second heat exchange member 03, the second placement right plate is arranged at the other end of the second heat exchange member 03, the second placement bottom plate is arranged on the side of the second heat exchange member 03 away from the limiting plate 5, and the first ventilation hole 221 and the second ventilation hole 231 are both arranged on the surface of the second ventilation plate.
[0068] The first heat exchange component 02 is specifically a condenser, which is used for condensation and heat dissipation. Cold air enters the first accommodating chamber 11 from the ventilation hole 12, and the cold source is conducted to the inside of the condenser, so that the gaseous refrigerant inside the condenser is condensed. After liquefaction, it returns to the second heat exchange component 03 through the first conduit 04. After passing through the condenser, the cold air becomes hot air and is discharged from the vent; the second heat exchange component 03 is specifically an evaporator, which is used for evaporation and cooling. Hot air enters the second accommodating chamber 21 from the first ventilation perforation 221, and the heat source is conducted to the inside of the evaporator, so that the liquid refrigerant inside the evaporator evaporates. After gasification, it is transmitted to the condenser through the first conduit 04 and takes away a large amount of heat. After passing through the evaporator, the hot air becomes cold air and is discharged from the second ventilation perforation 231, and the cycle is repeated.
[0069] Obviously, the utility model includes a first placement piece, a second placement piece and a transverse plate, the first placement piece forms a first accommodating cavity inside, the second placement piece forms a second accommodating cavity inside, the first placement piece and the second placement piece are relatively arranged on the same surface of the transverse plate, one end of the first placement piece and one end of the second placement piece are both connected to the surface of the transverse plate, a support piece is arranged between the first placement piece and the second placement piece, a limiting plate is arranged between the first placement piece and the support piece, the surface of the limiting plate is connected to the side of the first placement piece, the top of the limiting plate is provided with a first groove and a second groove, and the first accommodating cavity is connected to the second accommodating cavity through the first groove or the second groove. The utility model provides the first groove and the second groove on the top of the limiting plate, so that the connecting pipe of the heat exchange assembly can be placed in the first groove or the second groove, thereby improving the installation efficiency of the heat exchange assembly.
[0070] According to the disclosure and teaching of the above description, the technicians in the field of the utility model can also change and modify the above implementation. Therefore, the utility model is not limited to the above specific implementation, and any obvious improvement, replacement or modification made by the technicians in this field on the basis of the utility model belongs to the protection scope of the utility model. In addition, although some specific terms are used in this specification, these terms are only for the convenience of explanation and do not constitute any limitation to the utility model.
Claims
1. A box with efficient installation, characterized in that: The invention comprises a first placement piece (1), a second placement piece (2) and a transverse plate (3); a first accommodating cavity (11) is formed inside the first placement piece (1), a second accommodating cavity (21) is formed inside the second placement piece (2); the first placement piece (1) and the second placement piece (2) are arranged on the same surface of the transverse plate (3) relative to each other; one end of the first placement piece (1) and one end of the second placement piece (2) are both connected to the surface of the transverse plate (3); a support piece (4) is arranged between the first placement piece (1) and the second placement piece (2); a limiting plate (5) is arranged between the first placement piece (1) and the supporting piece (4); the surface of the limiting plate (5) is connected to the side of the first placement piece (1); a first groove (51) and a second groove (52) are arranged on the top of the limiting plate (5); the first accommodating cavity (11) is connected to the second accommodating cavity (21) through the first groove (51) or the second groove (52).
2. The efficient installation box according to claim 1, characterized in that: At least one bending portion (53) is also provided on the top of the limiting plate (5), and a notch (54) is formed between two adjacent bending portions (53).
3. The efficient installation box according to claim 1, characterized in that: The surface of the transverse plate (3) has a ventilation opening (31), and the side of the first placement member (1) away from the transverse plate (3) has at least one ventilation hole (12), and the ventilation hole (12) and the ventilation opening (31) are both connected to the first accommodating cavity (11).
4. The efficient installation box according to claim 1, characterized in that: The support member (4) comprises a top plate (41) and a side plate (42), the side of the top plate (41) is connected to the side of the side plate (42), the top plate (41) is horizontally arranged between the limiting plate (5) and the side plate (42), one end of the side plate (42) away from the top plate (41) is in contact with a side of the second placement member (2) away from the horizontal plate (3), and the side of the side plate (42) is connected to the side of the second placement member (2).
5. The efficient installation box according to claim 1, characterized in that: A wire passing bracket (13) is provided at one end of the first placement member (1), and an end of the wire passing bracket (13) has a through hole (131), and the through hole (131) is connected to the first accommodating cavity (11).
6. The efficient installation box according to claim 1, characterized in that: The second placement piece (2) comprises a placement body (22) and an inclined body (23), one end of the placement body (22) is connected to one end of the inclined body (23), the other end of the placement body (22) is connected to the first accommodating cavity (11), and the width of the cross section of the inclined body (23) decreases along the direction from the placement body (22) to the inclined body (23).
7. The efficient installation box according to claim 6, characterized in that The side of the placement body (22) away from the transverse plate (3) has at least one first ventilation hole (221), and the side of the inclined body (23) away from the transverse plate (3) has at least one second ventilation hole (231), and the first ventilation hole (221) and the second ventilation hole (231) are both connected to the second accommodating cavity (21).
8. The efficient installation box according to claim 1, characterized in that: The surface of the transverse plate (3) has an exhaust hole (32), and the surface of the transverse plate (3) is provided with an exhaust bracket (33), the exhaust bracket (33) is arranged toward the second accommodating chamber (21), and the exhaust bracket (33) is respectively connected to the exhaust hole (32) and the second accommodating chamber (21).
9. A heat exchanger, characterized in that: The invention comprises a highly efficient installation box (01) as claimed in any one of claims 1 to 8, a first heat exchanger (02), a second heat exchanger (03), a first conduit (04) and a second conduit (05), wherein the first heat exchanger (02) is arranged on one side of the box (01), the second heat exchanger (03) is arranged on the other side of the box (01), and a side of the first heat exchanger (02) close to the second heat exchanger (03) is connected to a side of the second heat exchanger (03) away from the first heat exchanger (02) through the first conduit (04) and the second heat exchanger (03). The first heat exchange component (02) and the second heat exchange component (03) are connected, the side of the first heat exchange component (02) away from the second heat exchange component (03) is connected with the side of the second heat exchange component (03) close to the first heat exchange component (02) through the second conduit (05), the limiting plate (5) is arranged between the first heat exchange component (02) and the second heat exchange component (03), the surface of the limiting plate (5) abuts against the side of the first heat exchange component (02), the first conduit (04) passes through the first groove (51), and the second conduit (05) passes through the second groove (52).
10. The heat exchanger according to claim 9, characterized in that A limiting body (55) is arranged on the top of the limiting plate (5), and the limiting body (55) is arranged on the outside of the second groove (52).