Evaporator assembly and ceiling machine
The evaporator bracket structure, which connects the support member and the connecting part, is equipped with reinforcement members and flanged limiting parts on the inner side. Combined with the extension plate and microporous structure, it solves the problems of unstable evaporator fixation and high noise, and achieves more stable and reliable evaporator operation and noise reduction.
Patent Information
- Application Number
- CN202311405686.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-27
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2043-10-27
AI Technical Summary
In existing technologies, the fixed structure of evaporators has poor strength, is prone to deformation, is not securely fixed, has limited function, and is prone to fin deformation during transportation and use, which affects the heat exchange effect.
The evaporator support structure adopts a connection between the support component and the connecting part, with reinforcements on the inner side, flanges and limiting parts to improve stability, extension plates to guide airflow and reduce noise, microporous structure to enhance the strength of the connecting part, and optimized evaporator fixing method.
It improves the fixing strength and stability of the evaporator, reduces noise, enhances the reliability of the equipment and user comfort, adapts to temperature and pressure changes, and reduces the impact of shock and vibration.
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Figure CN119934583B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, in particular to an evaporator assembly and a ceiling machine. BACKGROUND
[0002] The evaporator of the indoor unit of the commercial ceiling machine on the market generally adopts a ring structure. The head and tail of the evaporator are connected through an evaporator connecting plate and then fixed to the top plate by screws.
[0003] This evaporator fixing method is not firm enough. Although the head and tail are fixed, other parts can still move due to the ring structure. The consistency of the assembly position during production is poor, and the evaporator may collide with the surrounding electric heater, foam and other materials due to the small gap between them. During the whole machine turnover, handling and transportation, the evaporator fins are more likely to be deformed and cause the fins to be hit, which directly affects the heat exchange effect of the evaporator and the performance of the product.
[0004] The prior art discloses an evaporator fixing structure, comprising: a first horizontal plate, a second horizontal plate, a first vertical plate and a second vertical plate; the first end of the first vertical plate in the length direction and the first end of the second vertical plate in the length direction are respectively connected to the two ends of the first horizontal plate to form a clamping groove; the size of the clamping groove is matched with the size of the evaporator to be fixed; the second horizontal plate is connected to the second end of the second vertical plate in the length direction; the second horizontal plate is provided with a screw hole for fixing the top plate above the evaporator to be fixed. The prior art has the following problems: (1) the strength of the evaporator fixing structure is poor, which is prone to deformation, so that the evaporator is not firmly fixed; (2) the evaporator fixing structure has a single function and only has a fixing and supporting function. SUMMARY
[0005] Therefore, the present application aims to provide an evaporator assembly and a ceiling machine to solve the problems of poor strength of the evaporator fixing structure in the prior art, which is prone to deformation, so that the evaporator is not firmly fixed, and the evaporator fixing structure has a single function and only has a fixing and supporting function.
[0006] To achieve the above-mentioned purpose, the technical scheme of the present application is as follows:
[0007] An evaporator assembly, comprising an evaporator and an evaporator bracket, the evaporator bracket comprising at least a support, a connecting part and a reinforcing part, the support being connected to the connecting part, and the reinforcing part being arranged on the inner side of the support, and the reinforcing part cooperating with the evaporator to fix the evaporator.
[0008] The support is connected with the connecting part in the arrangement, so that the evaporator support is more stable and can provide stable support for the evaporator. The inside of the support is provided with a reinforcing part, which not only improves the fixing strength of the evaporator support and makes it less likely to deform, but also makes the fixing of the evaporator more stable and enables the evaporator to work more stably.
[0009] Further, the reinforcing part is movably connected with the support.
[0010] The arrangement can not only better adapt to the deformation and displacement of the evaporator caused by factors such as temperature change and pressure change during work, but also make the connection between the support and the fixing part more flexible, so as to better absorb impact and vibration and reduce the influence of noise and vibration on the equipment.
[0011] Further, the reinforcing part slides on the support.
[0012] The arrangement not only adapts to the deformation and displacement of the evaporator caused by various factors during work, but also better maintains the stability and reliability of the equipment.
[0013] Further, the reinforcing part is provided with a first flange connected to one end of the support near the connecting part. The connecting part includes a limiting part for limiting the first flange.
[0014] The first flange and the support form a stable connection, and the limiting part can prevent the movement of the first flange, greatly improving the stability of the entire structure. In addition, the presence of the first flange can also make the connection between the reinforcing part and the support more secure, effectively enhancing the strength of the entire structure and making the fixing of the evaporator more stable. Finally, the first flange makes it more convenient to install and disassemble the reinforcing part.
[0015] Further, the connecting part includes a main plate in contact with the inner wall of the evaporator, and the main plate is connected with the support.
[0016] The arrangement can improve the stability of the evaporator fixing.
[0017] Further, the connecting part further includes an extension plate connected with the main plate, and the extension plate is perpendicular to the main plate. The extension plate is provided with a plurality of first through hole structures.
[0018] The extension plate in the arrangement can effectively guide and slow down the airflow, reducing the impact force of the airflow on the surface of the evaporator, thereby reducing the noise caused by impact. The micro-hole structure not only improves the overall strength of the connecting part, making the fixing of the evaporator more stable, but also disperses the airflow, achieving the purpose of noise reduction.
[0019] Further, the reinforcing member is provided with a second flange, which is connected to one end of the support member away from the connecting part.
[0020] The second flange and the support member form a stable connection, which can greatly improve the stability of the entire structure. In addition, the presence of the second flange can make the connection between the reinforcing member and the support member more secure, effectively enhancing the strength of the entire structure, making the evaporator more stable. Finally, the second flange makes the installation and removal of the reinforcing member more convenient.
[0021] Further, the support member and the reinforcing member form a second support groove, which is sized to match the size of the evaporator to be fixed.
[0022] Further, the evaporator assembly further comprises a mounting part connected to the connecting part.
[0023] This arrangement can improve the reliability of the evaporator connection.
[0024] Compared with the prior art, the evaporator assembly of the present application has the following advantages:
[0025] 1) The support member and the connecting part are connected, making the evaporator bracket more stable and providing stable support for the evaporator. The reinforcing member inside the support member makes the evaporator bracket more stable and less likely to deform, making the evaporator more stable and reliable.
[0026] 2) The first flange and the second flange are connected to the support member, and the limiting part prevents the movement of the first flange, which can greatly improve the stability of the entire structure. In addition, the presence of the first flange and the second flange can make the connection between the reinforcing member and the support member more secure, effectively enhancing the strength of the entire structure, making the evaporator more stable. Finally, the first flange and the second flange make the installation and removal of the reinforcing member more convenient.
[0027] 3) The extension plate can effectively guide and slow down the airflow, reducing the impact force of the airflow on the surface of the evaporator, thereby reducing the noise caused by the impact. The micro-porous structure not only improves the overall strength of the connecting part, making the evaporator more stable, but also disperses the airflow, achieving the purpose of noise reduction, thereby improving the comfort of the user.
[0028] The present application also provides a ceiling machine, which comprises the above-mentioned evaporator assembly, and further comprises a fan, a chassis and a housing. The evaporator is arranged around the fan, and the fan and the evaporator are arranged in the housing and connected to the chassis.
[0029] The ceiling machine has the same advantages as the above-mentioned evaporator assembly relative to the prior art, and thus will not be described again here. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 Fig. 1 is a schematic diagram of the overall structure of a ceiling machine according to the present application;
[0031] Figure 2 Fig. 2 is a schematic diagram of the partial structure of an evaporator assembly according to the present application;
[0032] Figure 3 Fig. 3 is a top view of Fig. 2; Figure 2
[0033] Figure 4 Fig. 4 is a schematic diagram of the structure of an evaporator support according to the present application;
[0034] Figure 5 Fig. 5 is an enlarged view of part a of Fig. 4; Figure 4
[0035] Figure 6 Fig. 6 is a schematic diagram of the structure of a spoiler according to the present application;
[0036] Figure 7 Fig. 7 is a schematic diagram of the connection structure of a spoiler and an evaporator according to the present application;
[0037] Figure 8 Fig. 8 is a schematic diagram of the partial structure of a ceiling machine according to the present application;
[0038] Figure 9 Fig. 9 is a schematic diagram of the structure of an evaporator connecting plate according to the present application; Figure 1
[0039] Figure 10 Fig. 10 is a schematic diagram of the structure of an evaporator connecting plate according to the present application. Figure 2
[0040] BRIEF DESCRIPTION OF DRAWINGS
[0041] 100-evaporator, 101-first over-flow wall, 1011-first end, 102-second over-flow wall, 103-third over-flow wall, 104-fourth over-flow wall, 105-fifth over-flow wall, 1051-second end, 106-refrigerant pipe, 200-fan wheel, 300-bottom disc, 400-casing, 500-water pan assembly, 600-evaporator support, 700-evaporator connecting plate, 800-turbolator, 801-first turbolator section, 802-second turbolator section, 803-mounting protrusion, 1-supporting piece, 11-first vertical plate, 12-first horizontal plate, 13-second vertical plate, 2-connection part, 21-main plate, 211-transition section, 212-strengthening section, 22-extension plate, 221-limiting part, 222-first through hole, 23-mounting part, 3-reinforcing piece, 31-third vertical plate, 311-first flange, 32-second horizontal plate, 33-fourth vertical plate, 331-second flange, 34-second supporting groove, 4-noise reduction plate, 41-microporous structure, 5-first side plate, 51-second through hole, 52-supporting plate, 53-third through hole, 531-first section, 532-second section, 533-third section, 54-third flange, 541-first connecting hole, 6-second side plate, 61-wire passing hole, 611-wire pressing buckle, 62-fourth flange, 621-second connecting hole, 7-circuit connector, 8-reinforcing rib. DETAILED DESCRIPTION
[0042] In order to make the above objectives, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings. In addition, the orientation involved in the following specific embodiments will be briefly described: the "upper", "lower", "left", "right", "front", "rear" direction or position relationship referred to in the embodiments refers to the orientation or position relationship shown in the drawings.
[0043] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0044] Reference should be made to Figures 1-10As shown, the air conditioner provided by the embodiment of the present application comprises an evaporator assembly, a fan wheel 200, a chassis 300, a shell 400, and a water pan assembly 500. The evaporator assembly comprises an evaporator 100, which is arranged around the fan wheel 200. The fan wheel 200 and the evaporator are both arranged in the shell 400 and connected to the chassis 300. The evaporator 100 is connected to the water pan assembly 500 at an end away from the chassis 300.
[0045] In the embodiment of the present application, the evaporator assembly further comprises an evaporator bracket 600 for fixing the evaporator 100. The evaporator bracket 600 is provided with a second support groove 34, which is adapted to the evaporator 100.
[0046] Specifically, the evaporator 100 comprises a first flow wall 101, a second flow wall 102, a third flow wall 103, a fourth flow wall 104, and a fifth flow wall 105, which are connected to each other. The first flow wall 101 is arranged opposite to the fourth flow wall 104, and the third flow wall 103 is arranged opposite to the fifth flow wall 105. The second flow wall 102 is at an angle to the first flow wall 101 and the third flow wall 103, respectively. Preferably, a plurality of evaporator brackets 600 can be provided, and at least one of the evaporator brackets 600 is arranged on the second flow wall 102, which can improve the firmness of the evaporator.
[0047] Specifically, the evaporator bracket 600 comprises a support member 1 and a connecting portion 2 connected in sequence. The inner side of the support member 1 is provided with a reinforcing member 3. The support member 1 and the reinforcing member 3 form the second support groove 34. The support member 1 is connected to the connecting portion 2. The reinforcing member 3 cooperates with the evaporator 100 to reinforce the evaporator 100. The connecting portion 2 is in contact with the inner side wall of the evaporator 100.
[0048] The evaporator bracket further comprises a mounting portion 23. One end of the connecting portion 2 is connected to the support member, and the other end of the connecting portion is connected to the mounting portion 23. The mounting portion 23 is fixed to the chassis 300. The structure design of the evaporator bracket in the embodiment can achieve the effects of being more stable, reliable, adaptable, and durable, and can provide all-around support and fixation for the evaporator.
[0049] In some embodiments of the present application, the support 1 and the fixing member 3 can be fixedly connected or movably connected. Preferably, the support 1 and the fixing member 3 are movably connected, and the support 1 and the fixing member 3 are detachably connected. The movable connection in this arrangement can allow certain relative movement between the support and the fixing member, thereby better adapting to the deformation and displacement of the evaporator caused by temperature, pressure and other factors during operation. In addition, the movable connection can also make the connection between the support 1 and the fixing member 3 more flexible, better absorbing impact and vibration, and reducing the influence of noise and vibration on the equipment. More preferably, the fixing member 3 can have a small amount of sliding displacement relative to the support 1. This arrangement can further increase the adaptability between the support and the fixing member, so that they can better adapt to the deformation and displacement of the evaporator caused by various factors during operation, thereby better maintaining the stability and reliability of the equipment.
[0050] Preferably, the support 1 is made of a high polymer material; and the reinforcing member 3 is made of a metal product.
[0051] Specifically, as shown in Figure 5 the support 1 includes a horizontally extending first horizontal plate 12 and two vertically extending first vertical plates 11 and second vertical plates 13, the two vertical plates are connected at both ends of the horizontal plate, and the first vertical plate 11, the second vertical plate 13 and the first horizontal plate 12 define a first support groove, and the reinforcing member 3 is defined in the second support groove.
[0052] Specifically, the first horizontal plate 12 and the two vertically extending first vertical plates 11 and second vertical plates 13 are connected by arc-shaped structures, and the first vertical plate 11 is connected to the connecting portion 2.
[0053] Specifically, as shown in Figure 5 the reinforcing member 3 includes a horizontally extending second horizontal plate 32 and two vertically extending third vertical plates 31 and fourth vertical plates 33, the two vertical plates are connected at both ends of the horizontal plate, and the third vertical plate 31, the fourth vertical plate 33 and the second horizontal plate 32 define a second support groove 34. The end of the evaporator 100 away from the base plate is supported in the second support groove 34. Thus, by providing the second support groove 34 to support the evaporator 100, the fixing method of the evaporator 100 is simple, and the structure of the evaporator bracket 600 is simple.
[0054] Specifically, the second horizontal plate 32 and the two vertically extending third vertical plates 31 and fourth vertical plates 33 are connected by arc-shaped structures.
[0055] Specifically, the third vertical plate 31 slides on the first vertical plate 11, and the fourth vertical plate 33 slides on the second vertical plate 13, preferably, the sliding displacement of the third vertical plate 31 and the fourth vertical plate 33 is 0-5mm, preferably, the sliding displacement is 1-3mm.
[0056] Specifically, the reinforcing piece 3 is provided with a first flange 311 connected to one end of the support piece 1 close to the connecting part 2. Preferably, the first flange 311 is arranged on the third vertical plate 31; the first flange 311 is folded outward along the inner side of the third vertical plate 31; the connecting part 2 comprises a limiting part 221 limiting the first flange 311.
[0057] More specifically, the limiting part 221 is arranged on the extension plate 22 away from the mounting part 23. Preferably, the limiting plate is an inclined slope. This arrangement increases the firmness of the reinforcing piece and improves the strength of the evaporator bracket, thereby improving the stability of the evaporator.
[0058] Specifically, the reinforcing piece 3 is provided with a second flange 331 connected to one end of the support piece 1 away from the connecting part 2. Preferably, the second flange 331 is arranged on the fourth vertical plate 33, and the second flange 331 is folded outward along the inner side of the fourth vertical plate 33.
[0059] Specifically, the connecting part 2 comprises a main plate 21 connected with an extension plate 22, the main plate 21 contacts with the inner side wall of the evaporator 100, and the extension plate 22 is provided with a plurality of first through hole structures 222. Wherein, the distance between any adjacent first through hole structures 222 is equal. Preferably, the first through hole structure 222 is designed as an oval-shaped track structure.
[0060] The extension plate in this arrangement can effectively guide and slow down the airflow, reducing the impact force of the airflow on the surface of the evaporator, thereby reducing the noise generated by the impact.
[0061] Specifically, the extension plate 22 extends away from the first horizontal plate or the second horizontal plate along the contact surface of the main plate 21 and the evaporator 100, and the extension plate 22 is perpendicular to the main plate 21.
[0062] Specifically, one end of the main plate 21 away from the bottom plate is connected with the first vertical plate 11.
[0063] Specifically, the main body plate 21 comprises a transition section 211, a reinforcing section 212, one end of the transition section 211 is connected with the first vertical plate 11, the other end of the transition section 211 is connected with one end of the reinforcing section 212, and the other end of the reinforcing section is connected with the mounting portion 23. Preferably, the reinforcing section is a reinforcing rib, so that the evaporator is fixed more firmly.
[0064] Please refer to Figures 6-7 In the embodiment of the present application, the evaporator assembly further comprises a spoiler 800, the spoiler 800 is arranged on the inner side wall of the evaporator 100 close to one end of the bottom of the shell 400, and the spoiler 800 is located in the gap between the fan wheel and the evaporator.
[0065] It should be noted that, in order to ensure that any one spoiler wall can effectively disturb the flow, when the same flow wall is provided with a spoiler and an evaporator support at the same time, the distance L1 between the spoiler 800 and the evaporator support is L1≥6mm, at this time, the height of the evaporator away from the chassis is H1, the height of the end of the spoiler away from the chassis is H2, and 0.5<H2 / H1<0.8. This setting not only can effectively disturb the flow and reduce the noise effect, but also can improve the heat exchange efficiency of the evaporator.
[0066] The spoiler 800 comprises a blade body and a mounting protrusion 803 protruding from one side of the blade body, the blade body comprises a first spoiler section 801 and a second spoiler section 802, the first spoiler section 801 and the second spoiler section 802 can disperse the flow direction of the fluid, reduce the impact force of the airflow on the surface of the evaporator, thereby reducing the noise generated by the impact.
[0067] As Figure 7 shown, the evaporator 100 further comprises a plurality of refrigerant pipes 106, the plurality of refrigerant pipes 106 are embedded in the plurality of flow walls, and the plurality of refrigerant pipes 106 extend along the circumference of the fan wheel, and the mounting protrusion 803 of the spoiler 800 is inserted into the gap between the adjacent two refrigerant pipes 106. The mounting protrusion 803 is connected with one end of the second spoiler section 802, and the other end of the second spoiler section 802 is connected with the first spoiler section 801.
[0068] Specifically, the height of the first spoiler section 801 is H3, and the height of the second spoiler section 802 is H4, wherein 0.3<H3 / H4<0.6, preferably H3 / H4=0.5, this setting forms a gap between the first spoiler section and the second spoiler section, ensures the heat exchange efficiency of the evaporator, and at the same time reduces the noise generated by the airflow impacting on the evaporator.
[0069] In addition, in the prior art, the two ends of the evaporator are connected by the evaporator connecting plate, and the two ends of the evaporator are completely blocked by the evaporator connecting plate, which causes a large noise when the airflow contacts the evaporator connecting plate, and is not conducive to the use comfort of the user; the line arrangement at the two ends of the evaporator is relatively complex, and brings great inconvenience during installation, maintenance or replacement; the bottom end of the fixing piece of the wire hole is arranged, and the space for installing the line of the wire hole is limited, and when the line of the evaporator connecting plate is installed and maintained, the entire evaporator connecting plate needs to be disassembled, which is troublesome to operate.
[0070] Therefore, the evaporator assembly in the present application further comprises an evaporator connecting plate, the two ends of the evaporator are connected by the evaporator connecting plate, the height of the one end of the evaporator connecting plate away from the bottom plate is h1, and the height of the one end of the fan away from the bottom plate is h2, wherein h1 < 1 / 2 h2. In this setting, the end of the evaporator is provided with the evaporator connecting plate, which improves the firmness of the two ends of the evaporator, and by setting the ratio between the height of the evaporator connecting plate and the height of the bottom plate and the height of the fan and the height of the bottom plate, the noise generated by the ceiling machine during operation can be reduced, and the user comfort can be improved.
[0071] The two ends of the evaporator 100 comprise a first end 1011 and a second end 1051, the first end 101 is connected with the evaporator connecting plate 700, and the side of the evaporator connecting plate 700 facing the second end 1051 is connected with the second end 1051. More preferably, the first end 1011 is located on the first flow wall 101, and the second end 1051 is located on the fifth flow wall 105.
[0072] Please refer to Figures 9-10 In some embodiments of the present application, the evaporator connecting plate 700 comprises a noise reduction plate 4, and the noise reduction plate 4 is provided with a micropore structure 41, and the micropore structure 41 is located in the upper middle part of the noise reduction plate 4. In the present embodiment, the upper middle part refers to a position near the top of the noise reduction plate 4 or the evaporator connecting plate, that is, a position near the top of the noise reduction plate 4 or the evaporator connecting plate. Preferably, the micropore structure can be designed as a multi-row structure, which not only improves the strength of the evaporator connecting plate, thereby increasing the stability of the evaporator and the evaporator connecting plate, but also reduces the noise generated by the fan assembly, thereby improving the user comfort.
[0073] Preferably, the micropore structure is located in the upper middle part of the noise reduction plate, the micropore structure is opened as two rows of micropores, and the spacing between any adjacent micropores is uniform.
[0074] Please refer to Figures 9-10In some embodiments of the present application, the evaporator connecting plate 700 comprises a noise reduction plate 4, a first side plate 5 and a second side plate 6 are connected to the noise reduction plate 4, the first side plate 5 is close to the first end 1011, and the second side plate 6 is close to the second end 1051. The structure formed by the first side plate 5, the noise reduction plate 4 and the second side plate 6 is a convex structure towards the direction of the wind wheel. A second through hole 51 is formed in the first side plate 5, the second through hole 51 is arranged at one end of the first side plate 5 away from the chassis 300, and a circuit connector 7 is mounted in the second through hole 51. Preferably, the circuit connector 7 is a mating terminal. Since the structure formed by the first side plate, the noise reduction plate and the second side plate is a convex structure towards the direction of the wind wheel, when the wind wheel rotates, the airflow will not directly hit the circuit connector, thereby improving the reliability of the wiring terminal during use. In addition, the arrangement of the second through hole and the circuit connector on the evaporator connecting plate of the present application can conveniently electrically connect the two ends of the evaporator with the external circuit, thereby improving the electrical connectivity and reliability of the entire system. In addition, due to the presence of the circuit connector, complicated wiring operations can be avoided at the two ends of the evaporator, thereby greatly simplifying the installation process. If the evaporator needs to be repaired or replaced due to failure, the influence on the entire circuit system can be avoided due to the presence of the circuit connector, thereby improving the maintainability of the equipment.
[0075] Preferably, the structure of the second through hole is consistent with the outer structure of the circuit connector, so as to facilitate the placement of the circuit connector in the second through hole.
[0076] Please refer to Figure 9 , Figure 10 In some embodiments of the present application, the first side plate 5 is provided with a support plate 52, the support plate 52 is located at the lower end of the second through hole 51, and the support plate 52 is arranged on the side of the first side plate 5 away from the wind wheel 2. The support plate in this arrangement can improve the stability of the circuit connector, thereby improving the electrical connectivity and reliability of the entire system.
[0077] Please refer to Figure 4 In some embodiments of the present application, the first side plate 5 is further provided with a third through hole 53, the third through hole 53 is a U-shaped structure, and the second through hole 51 is arranged in the U-shaped structure of the third through hole 53. The U-shaped structure of the third through hole 53 in this arrangement not only reduces the noise during the operation of the air conditioner, but also facilitates the wiring of the pipeline or line, and facilitates the installation and maintenance of the evaporator connecting plate.
[0078] In some embodiments of the present application, the third through hole 53 comprises a first section 531, a second section 532 and a third section 533 connected in sequence, the first section 531 and the third section 533 are located on both sides of the second through hole 51, and the second section is located at the lower end of the second through hole, the support plate 52 is arranged between the first section 531 and the third section 533, and the lower end of the support plate 52 is the second section 532.
[0079] Please refer to Figure 9 In some embodiments of the present application, an overline hole 61 is formed at the end of the evaporator connecting plate away from the bottom plate, the wire body of the ceiling machine can pass through the overline hole for wiring, without being arranged inside the ceiling machine, and the wire body of the ceiling machine is conveniently arranged. Further, the overline hole 61 is arranged on the second side plate 6, and the side of the overline hole 61 away from the noise reduction plate 4 is in an arc structure, so that the wire body is conveniently inserted into the overline hole, and a wire pressing buckle 611 is arranged on the side of the overline hole close to the noise reduction plate, so that the wire body is fixed to avoid loosening of the wire.
[0080] Please refer to Figure 5 In some embodiments of the present application, a reinforcing rib 8 is arranged on the evaporator connecting plate 700, the reinforcing rib 8 is arranged on the side of the evaporator connecting plate away from the fan, the reinforcing rib 8 is in a transverse groove structure, the reinforcing rib 8 is arranged on the middle lower part of the evaporator connecting plate 700, the middle lower part refers to the lower middle position of the evaporator connecting plate 700, that is, the position close to the bottom of the evaporator connecting plate, and the end of the reinforcing rib 8 away from the second side plate 6 is close to the third through hole, the reinforcing rib not only improves the overall strength of the evaporator connecting plate, but also hinders the propagation of noise and reduces the diffusion of noise, thereby reducing the noise. Further, the reinforcing rib 8 is recessed in the direction of the fan along the side of the evaporator connecting plate 700 away from the fan.
[0081] Specifically, one end of the reinforcing rib 8 is arranged on the first side plate 5, the other end of the reinforcing rib 8 extends to the second side plate 6, and the reinforcing rib 8 is arranged at the lower end of the overline hole, the microporous structure, the second through hole and the third through hole.
[0082] Preferably, one end of the reinforcing rib 8 is arranged at the lower end of the overline hole 61, and the other end of the reinforcing rib 8 extends to the lower end of the third through hole 53.
[0083] In some embodiments of the present application, the evaporator connecting plate further comprises a third flange 54 and a fourth flange 62, the third flange 54 is connected with the first side plate 5, and the fourth flange 62 is connected with the second side plate 6.
[0084] Specifically, the third flanging 54 is provided with a first connecting hole 541, and the first connecting hole is inserted by a screw to realize the connection of the third flanging and the connecting plate of the first end portion 1011. The fourth flanging 62 is provided with a second connecting hole 621, and the second connecting hole is inserted by a screw to realize the connection of the fourth flanging and the connecting plate of the second end portion 1051. The arrangement can improve the connection stability of the evaporator and the evaporator connecting plate.
[0085] Although the present application has been disclosed with reference to the above embodiments, it is not intended to limit the present application to the above embodiments. Any person skilled in the art, without departing from the spirit and scope of the present application, can make various changes and modifications, and the protection scope of the present application should be subject to the scope defined by the claims.
Claims
1. An evaporator assembly, characterized in that, The device includes an evaporator (100) and an evaporator support (600). The evaporator support (600) includes at least a support member (1), a connecting part (2), and a reinforcing member (3). The support member (1) is connected to the connecting part (2). The reinforcing member (3) is disposed inside the support member (1) and cooperates with the evaporator (100) to fix the evaporator (100). The reinforcing member (3) is movably connected to the support member (1). The reinforcing member (3) is provided with a first flange (311), which is connected to one end of the support member (1) near the connecting part (2). The connecting part (2) includes a limiting part (221), which limits the first flange (311). Limiting; the support member (1) includes a horizontally extending first horizontal plate (12) and two vertically extending first vertical plates (11) and second vertical plates (13), the two vertical plates are respectively connected to the two ends of the horizontal plate, and the first vertical plate (11), the second vertical plate (13) and the first horizontal plate (12) define a first support groove; the reinforcement member (3) includes a horizontally extending second horizontal plate (32) and two vertically extending third vertical plates (31) and fourth vertical plates (33), the two vertical plates are respectively connected to the two ends of the horizontal plate, and the third vertical plate (31), the fourth vertical plate (33) and the second horizontal plate (32) define a second support groove (34), and the end of the evaporator (100) away from the chassis extends into the second support groove (34).
2. The evaporator assembly according to claim 1, characterized in that, The reinforcing member (3) slides relative to the support member (1).
3. The evaporator assembly according to claim 1, characterized in that, The connecting part (2) includes a main plate (21), which contacts the inner wall of the evaporator (100) and is connected to the support member (1).
4. The evaporator assembly according to claim 3, characterized in that, The connecting part (2) further includes an extension plate (22), which is connected to the main body plate (21) and is perpendicular to the main body plate (21). The extension plate (22) is provided with a plurality of first through hole structures (222).
5. The evaporator assembly according to claim 1, characterized in that, The reinforcement member (3) is provided with a second flange (331), which is connected to one end of the support member (1) away from the connecting part (2).
6. The evaporator assembly according to claim 1, characterized in that, The support member (1) and the reinforcement member (3) form a second support groove (34), the size of which is adapted to the size of the evaporator (100) to be fixed.
7. The evaporator assembly according to claim 1, characterized in that, The evaporator assembly also includes a mounting part (23) which is connected to the connecting part (2).
8. A ceiling machine, characterized in that, The evaporator assembly according to any one of claims 1 to 7 further includes a fan (200), a chassis (300), and a housing (400), wherein the evaporator (100) is arranged around the fan (200), and both the fan (200) and the evaporator (100) are disposed within the housing (400) and connected to the chassis (300).
Citation Information
Patent Citations
Evaporator assembly and ceiling machine
CN221146652U