Motor mounting structure and air conditioner
The motor mounting structure, which combines a limiting housing and an end plate, utilizes the elastic deformation of locking components and locking slots to solve the problem of low installation efficiency in existing motors. This enables rapid installation and convenient disassembly of the motor, improving its stability and installation efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- NINGBO AUX ELECTRIC CO LTD
- Filing Date
- 2022-05-20
- Publication Date
- 2026-05-01
AI Technical Summary
The existing motor mounting structure is inefficient in wall-mounted air conditioners and is inconvenient for maintenance and replacement.
The motor mounting structure, which combines a limiting housing and an end plate, achieves stable installation and quick disassembly of the motor through the elastic deformation of the locking components and locking grooves. Combined with the design of the output shaft fixing hole and guide rib, it improves installation efficiency and connection strength.
It enables quick installation and convenient disassembly of the motor, improves the connection strength and stability between the motor and the limiting housing, and enhances the motor installation efficiency.
Smart Images

Figure CN117128640B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioning technology, and more specifically, to a motor mounting structure and an air conditioner. Background Technology
[0002] Currently, in existing wall-mounted air conditioners, the indoor unit's air deflector is driven by a stepper motor. This stepper motor is usually fixed to the end face of the air outlet on the base with two screws. Therefore, the existing motor installation structure has the problem of low installation efficiency and inconvenience for maintenance and replacement. Summary of the Invention
[0003] The problem solved by this invention is that the installation efficiency of motors is low in existing motor mounting structures.
[0004] To address the above problems, the present invention provides a motor mounting structure and an air conditioner.
[0005] On one hand, the present invention provides a motor mounting structure, including a motor for driving an air guide plate, and further including: an end plate, one side of which is an air guide plate mounting space; a limiting housing located on the side of the end plate away from the air guide plate mounting space, the limiting housing and the end plate forming a motor mounting space, one end of the motor being disposed in the motor mounting space; and at least one locking component, including a detachably connected locking member and a locking groove, one of the locking member and the locking groove being located on the side of the motor, and the other of the locking member and the locking groove being located on the side of the end plate or the limiting housing facing the motor mounting space; wherein the locking member is capable of elastic deformation in a direction perpendicular to the side of the motor.
[0006] Compared with existing technologies, the technical effects achieved by this solution are as follows: After the motor is installed in the motor mounting space, the opposite sides of the motor are limited by the end plate and the limiting housing, thereby preventing the motor from wobbling along its axis; during the process of installing the motor into the motor mounting space, the locking member is compressed and deforms in a direction perpendicular to the side of the motor. When the locking member and the locking groove are aligned, the locking member springs back and engages with the locking groove, further improving the connection strength between the motor and the limiting housing, or the connection strength between the motor and the end plate, thus improving the stability of the motor; and the locking member and the locking groove can automatically engage, requiring only the placement of the motor during installation, thus effectively improving the installation efficiency of the motor.
[0007] Furthermore, the end plate includes: an end plate body and an output shaft fixing hole, the output shaft fixing hole connecting to the edge of the end plate body to form an output shaft mounting entrance; the motor includes a motor body and an output shaft, the output shaft passing through the output shaft fixing hole into the air guide plate mounting space, and the width of the output shaft mounting entrance being smaller than the diameter of the output shaft fixing hole.
[0008] The technical effects achieved by adopting this technical solution are as follows: During the process of installing the motor into the motor mounting space, the output shaft of the motor is simultaneously installed from the output shaft mounting inlet; the output shaft fixing hole is used to support and lock the output shaft, so that the motor can stably transmit power to the air guide plate mounting space; the width of the output shaft mounting inlet is smaller than the diameter of the output shaft fixing hole, so that the output shaft mounting inlet can prevent the output shaft from sliding out, further improving the connection strength between the output shaft and the output shaft fixing hole.
[0009] Furthermore, the end plate also includes an elastic groove formed in the end plate body. The elastic groove has a U-shaped structure, and an elastic element capable of elastic deformation along a direction perpendicular to the end plate body is formed in the elastic groove. The locking element is located on the side of the elastic element facing the motor mounting space.
[0010] The technical effects achieved by adopting this technical solution are as follows: the elastic groove allows at least one side of the elastic member to separate from the end plate body, so that the end of the elastic member can bend relative to the end plate body, for example, deforming into the air guide plate installation space, so that the locking member can avoid the motor body, and cooperate with the locking groove through the rebound of the elastic member.
[0011] Furthermore, the limiting housing includes: a base plate, a limiting plate, and a side support plate, the limiting plate being opposite to the end plate, and the base plate and the side support plate being connected between the limiting plate and the end plate; wherein, the base plate, the limiting plate, and the side support plate surround to form a motor mounting opening located at the top of the motor mounting space.
[0012] The technical effects achieved by adopting this technical solution are as follows: the limiting plate and the end plate are used to limit the axial movement of the motor, the bottom plate is used to support the motor, and the side support plate is used to limit the movement of the side of the motor.
[0013] Furthermore, the limiting housing includes: a clearance groove, the clearance groove being formed in the base plate; the elastic member extending along the clearance groove to the side of the base plate away from the motor mounting space, forming a disassembly end; the end plate also includes a disassembly protrusion, the disassembly protrusion being disposed on the side of the disassembly end away from the air guide plate mounting space.
[0014] The technical effects achieved by adopting this technical solution are as follows: the bottom plate of the limiting housing is connected to the end plate, and the clearance groove is used to separate the elastic element on the end plate from the bottom plate, so that the part of the elastic element extending out of the bottom plate can deform towards the side of the air guide plate installation space; and the elastic element extending out of the bottom plate makes it easy to push the elastic element outside the limiting housing, thereby manually controlling the locking part on the elastic element to separate from the locking groove on the motor, realizing the quick disassembly of the motor; the disassembly protrusion can increase the stroke of the end of the elastic element and avoid the end plate body from hindering the further deformation of the elastic element when the elastic element is manually pushed.
[0015] Furthermore, the limiting housing includes an extension member that connects to the top of the side support plate and extends in a direction away from the motor mounting space.
[0016] The technical effects achieved by adopting this technical solution are as follows: On the one hand, the extension can increase the connection area between the limiting housing and the end plate, and improve the stability of the side support plate and the bottom plate; on the other hand, the extension can guide the motor. During the process of the motor being installed in the motor installation space, after the bottom of the motor contacts the extension, it can slide into the motor installation space, thereby facilitating the installation of the motor.
[0017] Furthermore, the motor also includes: a support foot, the support foot being disposed in the motor mounting space; the limiting plate includes a motor support opening, and the motor body is disposed in the motor support opening.
[0018] The technical effects achieved by adopting this technical solution are as follows: the support leg is locked by the end plate and the limiting housing. At the same time, the support leg is supported by the base plate, and the motor body cooperates with the motor support port and is supported by the limiting plate, making the connection between the motor and the limiting housing more stable.
[0019] Furthermore, the side of the motor body connected to the output shaft is a motor mounting surface, and the motor further includes: a first guide rib, which is disposed on the motor mounting surface; the end plate includes: a second guide rib, which is disposed on the side of the end plate body facing the motor mounting space.
[0020] The technical effect achieved by adopting this technical solution is that the second guide rib slides relative to the first guide rib, and the first guide rib guides the support leg into the motor mounting space, which facilitates the engagement of the locking member and the locking groove.
[0021] Furthermore, the top of the locking element is provided with a guide surface.
[0022] The technical effect achieved by this solution is that the guide surface facilitates the deformation of the locking member and the elastic member by the motor. Specifically, during the process of the motor being installed in the motor mounting space, the bottom of the motor first slides relative to the guide surface, and the motor pushes the locking member and the elastic member to deform towards one side of the air guide plate mounting space. When the locking member and the locking groove are aligned, locking is completed.
[0023] On the other hand, the present invention provides an air conditioner, comprising: a motor mounting structure as provided in any of the above embodiments; an air guide plate, the air guide plate being disposed in the air guide plate mounting space, and the air guide plate being drivenly connected to the motor.
[0024] The technical effects achieved by adopting this technical solution are as follows: the motor mounting structure enables the rapid installation of the motor, making the motor used in the air guide plate easy to disassemble, install, and maintain.
[0025] In summary, the above embodiments of this application can have one or more of the following advantages or beneficial effects: i) During the process of installing the motor into the motor mounting space, the output shaft of the motor cooperates with the output shaft fixing hole, the support leg cooperates with the end plate body, the limiting plate, the bottom plate and the side support plate, and the locking member cooperates with the locking groove, which makes the installation efficiency of the motor higher, and the motor, the limiting housing and the end plate can be stably connected; ii) The guide surface is used to guide the bottom of the motor body, push the locking member and the elastic member to deform, the first guide rib and the second guide rib cooperate to guide the support leg, and the extension member is used to guide the side of the motor body, thereby further improving the installation efficiency of the motor; iii) After the motor and the motor mounting space are engaged, the disassembly end of the elastic member and the disassembly protrusion are easy to separate the elastic member from the limiting housing, which facilitates the unlocking of the locking member and the locking groove, and improves the disassembly efficiency of the motor. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of a motor mounting structure provided in the first embodiment of the present invention.
[0027] Figure 2 for Figure 1 A schematic diagram of the motor mounting structure from another perspective.
[0028] Figure 3 for Figure 1 A schematic diagram of the middle plate.
[0029] Figure 4 for Figure 3 A cross-sectional view along the AA direction.
[0030] Figure 5 for Figure 3 A structural schematic diagram of the middle plate from another perspective.
[0031] Figure 6 for Figure 1 A schematic diagram of the structure of the electric motor.
[0032] Figure 7 for Figure 6 A structural schematic diagram of the motor from another perspective.
[0033] Figure 8 This is a schematic diagram of the structure of an air conditioner provided in the first embodiment of the present invention.
[0034] Explanation of reference numerals in the attached figures:
[0035] 100-Motor mounting structure; 101-Air guide plate mounting space; 102-Motor mounting space; 110-Motor; 111-Motor body; 112-Output shaft; 113-Locking groove; 114-Support leg; 115-First guide rib; 120-End plate; 121-End plate body; 122-Output shaft fixing hole; 123-Output shaft mounting inlet; 124-Locking component; 125-Elastic groove; 126-Elastic component; 127-Removal protrusion; 128-Second guide rib; 130-Limiting housing; 131-Base plate; 132-Limiting plate; 133-Side support plate; 134-Allowing groove; 135-Extension component; 136-Motor support port; 200-Air conditioner. Detailed Implementation
[0036] The purpose of this invention is to provide a motor mounting structure and an air conditioner to improve the installation efficiency of motors.
[0037] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0038] [First Embodiment]
[0039] See Figure 1-7The first embodiment of the present invention provides a motor mounting structure 100, including a motor 110 for driving an air guide plate, and further including an end plate 120, a limiting housing 130, and at least one locking component. One side of the end plate 120 is an air guide plate mounting space 101; the limiting housing 130 is located on the side of the end plate 120 away from the air guide plate mounting space 101, and a motor mounting space 102 is formed between the limiting housing 130 and the end plate 120, with one end of the motor 110 disposed in the motor mounting space 102; the locking component includes a detachably connected locking member 124 and a locking groove 113, one of which is located on the side of the motor 110, and the other of which is located on the side of the end plate 120 or the limiting housing 130 facing the motor mounting space 102; wherein, the locking member 124 is capable of elastic deformation in a direction perpendicular to the side of the motor 110.
[0040] In this embodiment, after the motor 110 is installed into the motor mounting space 102, the opposite sides of the motor 110 are respectively limited by the end plate 120 and the limiting housing 130, thereby preventing the motor 110 from shaking along its axial direction. During the process of the motor 110 being installed into the motor mounting space 102, the locking member 124 is compressed and deforms in a direction perpendicular to the side of the motor 110. When the locking member 124 and the locking groove 113 are matched, the locking member 124 rebounds and cooperates with the locking groove 113 to lock the motor 110 to the motor mounting space 102. The locking member 124 further improves the connection strength between the motor 110 and the limiting housing 130, or the connection strength between the motor 110 and the end plate 120, thereby improving the stability of the motor 110. Moreover, the locking member 124 and the locking groove 113 can automatically cooperate, and only the action of placing the motor 110 is required when installing the motor 110, thus effectively improving the installation efficiency of the motor 110.
[0041] For example, the locking groove 113 is formed on at least one side of the motor 110, such as the side of the motor 110 facing the end plate 120, and / or the side of the motor 110 away from the end plate 120, and / or the other two opposite sides of the motor 110; correspondingly, the locking member 124 is provided on the end plate 120 and / or the limiting housing 130 at the position corresponding to the locking groove 113, and can be deformed to facilitate the motor 110 being installed into the motor mounting space 102. When multiple sides of the motor 110 are engaged with the motor mounting space 102 by the locking assembly, the connection strength between the motor 110 and the motor mounting space 102 can be further improved.
[0042] In one specific embodiment, the end plate 120 includes, for example, an end plate body 121 and an output shaft fixing hole 122. The output shaft fixing hole 122 communicates with the edge of the end plate body 121, forming an output shaft mounting inlet 123. The motor 110 includes a motor body 111 and an output shaft 112. The output shaft 112 passes through the output shaft fixing hole 122 and enters the air guide plate mounting space 101. During the process of the motor 110 being installed into the motor mounting space 102, the output shaft 112 of the motor 110 is simultaneously installed from the output shaft mounting inlet 123. The output shaft fixing hole 122 is used to support and lock the output shaft 112, so that the motor 110 can stably transmit power to the air guide plate mounting space 101.
[0043] Preferably, the width of the output shaft mounting inlet 123 gradually decreases along the outer side of the output shaft mounting inlet 123 to the output shaft fixing hole 122. For example, the two sides of the output shaft mounting inlet 123 are inclined or curved surfaces, which guide the output shaft 112 and are less likely to be scratched, thus facilitating the insertion of the output shaft 112 into the output shaft fixing hole 122.
[0044] Preferably, the width of the output shaft mounting inlet 123 is smaller than the diameter of the output shaft fixing hole 122. Specifically, the width of the transition position between the output shaft mounting inlet 123 and the output shaft fixing hole 122 is smaller than the diameter of the output shaft fixing hole 122. During the process of inserting the output shaft 112 into the output shaft fixing hole 122, the output shaft 112 pushes the output shaft mounting inlet 123 to both sides. When the output shaft 112 is fully inserted into the output shaft fixing hole 122, the output shaft fixing hole 122 and the output shaft 112 match, thereby preventing the output shaft 112 from slipping out of the mounting opening and further improving the connection strength between the output shaft 112 and the output shaft fixing hole 122.
[0045] In one specific embodiment, the end plate 120 further includes, for example, an elastic groove 125 formed in the end plate body 121. The elastic groove 125 has a U-shaped structure, and an elastic member 126 capable of elastic deformation along a direction perpendicular to the end plate body 121 is formed within the elastic groove 125. A locking member 124 is located on the side of the elastic member 126 facing the motor mounting space 102. The elastic groove 125 allows at least one side of the elastic member 126 to separate from the end plate body 121, enabling the end of the elastic member 126 to bend relative to the end plate body 121. For example, during the contact between the bottom of the motor body 111 and the locking member 124, the locking member 124 and the elastic member 126 deform in the direction of the guide vane mounting space 101, allowing the locking member 124 to avoid the motor body 111 and engage with the locking groove 113 through the rebound of the elastic member 126.
[0046] In one specific embodiment, the limiting housing 130 includes, for example, a base plate 131, a limiting plate 132, and a side support plate 133. The limiting plate 132 is opposite to the end plate 120, and the base plate 131 and the side support plate 133 are connected between the limiting plate 132 and the end plate 120. The base plate 131, the limiting plate 132, and the side support plate 133 surround and form a motor 110 mounting opening located at the top of the motor mounting space 102. The limiting plate 132 and the end plate 120 are used to limit the motor 110 in the output shaft 112 direction, the base plate 131 is used to support the motor 110, and the side support plate 133 is used to limit the side of the motor 110.
[0047] In one specific embodiment, the limiting housing 130 may further include, for example, a clearance groove 134 formed in the base plate 131; an elastic member 126 extends along the clearance groove 134 to the side of the base plate 131 away from the motor mounting space 102, forming a disassembly end. For example, the bottom end of the U-shaped structure of the elastic groove 125 is located on the side of the base plate 131 away from the motor mounting space 102; and the base plate 131 is connected to the end plate body 121, and the base plate 131 is separated from the elastic member 126, so that the part of the elastic member 126 extending out of the base plate 131 can deform to one side of the guide vane mounting space 101, which facilitates manually pushing the elastic member 126 from the outside of the limiting housing 130 to control the locking member 124 on the elastic member 126 to separate from the locking groove 113 on the motor 110, thereby realizing the quick disassembly of the motor 110.
[0048] Preferably, the end plate 120 further includes, for example, a disassembly protrusion 127, which is located on the side of the disassembly end away from the air guide plate mounting space 101. The disassembly protrusion 127 increases the stroke of the end of the elastic member 126, facilitating deformation of the elastic member 126 and preventing the portion of the end plate body 121 corresponding to the disassembly end from obstructing the user's movement when manually pushing the elastic member 126, thus preventing the disassembly end from deforming towards the air guide plate mounting space 101. The disassembly protrusion 127 can be of any shape and is not limited here.
[0049] Preferably, the width of the top of the elastic member 126 is greater than the width of the disassembly end, making the elastic member 126 more stable when it deforms. When the locking member 124 is pushed by the motor body 111, or when the disassembly protrusion 127 is pushed, the elastic member 126 is less likely to break. The width of the elastic member 126 decreases from the top to the disassembly end. The two sides of the elastic member 126 can be inclined surfaces, curved surfaces, or stepped surfaces, which are not limited here.
[0050] It should be noted that increasing the width of the top of the elastic element 126 can also increase the distance between the top of the elastic groove 125 and the output shaft fixing hole 122, preventing the output shaft fixing hole 122 and the elastic groove 125 from being disconnected, thereby improving the overall stability of the end plate 120 structure.
[0051] In one specific embodiment, the limiting housing 130 may further include, for example, an extension 135, which connects to the top of the side support plate 133 and extends in a direction away from the motor mounting space 102. The extension 135 increases the connection area between the limiting housing 130 and the end plate 120, improving the stability of the side support plate 133 and the base plate 131. For example, the extension 135 may be horizontally positioned, or the end of the extension 135 away from the side support plate 133 may be higher than the end of the extension 135 connected to the support member.
[0052] Preferably, the connection between the end plate 120 and the side support plate 133 is rounded, allowing the extension 135 to guide the motor 110. Specifically, during the process of installing the motor 110 into the motor mounting space 102, when the bottom of the motor 110 contacts the extension 135, or when the bottom of the motor 110 contacts the connection between the extension 135 and the side support plate 133, the motor 110 can slide into the motor mounting space 102, thereby improving the installation efficiency of the motor 110.
[0053] In one specific embodiment, the motor 110 further includes, for example, a support leg 114 disposed in the motor mounting space 102; and a limiting plate 132 including a motor support port 136, with the motor body 111 disposed in the motor support port 136. The support leg 114 engages with the end plate 120 and the limiting housing 130 to achieve locking. Simultaneously, the support leg 114 supports the base plate 131, and the motor body 111 supports the limiting plate 132. Furthermore, the engagement of the motor body 111 with the motor support port 136 makes the connection between the motor 110 and the limiting housing 130 more stable.
[0054] Preferably, the bracket connects to both sides of the bottom of the motor body 111, and the gap between the two support legs 114 corresponds to the clearance groove 134, thereby providing operating space for disassembling the protrusion 127.
[0055] Preferably, the sides of the two legs 114 that are far apart from each other cooperate with the side support plate 133 on the side where the legs 114 are located, so that the side support plate 133 can clamp the legs 114 and improve the stability of the legs 114.
[0056] Furthermore, the distance between the two side support plates 133 gradually decreases from the top to the bottom of the side support plates 133. Correspondingly, the distance between the two legs 114 that are far apart from each other gradually decreases from the top to the bottom of the legs 114. This allows the side support plates 133 to guide the legs 114 and further improve the efficiency of the legs 114 being installed in the motor mounting space 102.
[0057] In one specific embodiment, the side of the motor body 111 connected to the output shaft 112 is the mounting surface of the motor 110. The motor 110 further includes, for example, a first guide rib 115, which is disposed on the mounting surface of the motor 110. The end plate 120 includes, for example, a second guide rib 128, which is disposed on the side of the end plate body 121 facing the motor mounting space 102. The opposing surfaces of the first guide rib 115 and the second guide rib 128 cooperate with each other. The second guide rib 128 can slide relative to the first guide rib 115. The first guide rib 115 can guide the support leg 114 into the motor mounting space 102, thereby facilitating the cooperation between the motor 110 and the limiting housing 130, and the cooperation between the locking member 124 and the locking groove 113.
[0058] In one specific embodiment, the top of the locking member 124 is provided with a guide surface. For example, the end of the guide surface away from the elastic member 126 is lower than the end of the guide surface near the elastic member 126. The guide surface facilitates the deformation of the locking member 124 and the elastic member 126 by the motor 110, making the process of the motor body 111 pushing the locking member 124 smoother. Specifically, during the process of the motor 110 being inserted into the motor mounting space 102, the bottom of the motor 110 slides downward along the guide surface, while the motor 110 pushes the locking member 124 and the elastic member 126 to deform to one side of the air guide plate mounting space 101. When the locking member 124 and the locking groove 113 are aligned, the locking member 124 springs back to complete the locking.
[0059] [Second Embodiment]
[0060] On the other hand, see Figure 8 The second embodiment of the present invention provides an air conditioner 200, including: a motor mounting structure 100 as provided in any of the above specific embodiments; an air guide plate, the air guide plate being disposed in the air guide plate mounting space 101, the air guide plate and the motor 110 being drivenly connected, for example, the baffle plate and the output shaft 112 of the motor 110 being connected by a coupling, so that the motor 110 can drive the air guide plate to rotate.
[0061] Before installing the motor 110, the motor 110 is inserted between the end plate 120 and the limiting housing 130, while the output shaft 112 is inserted into the output shaft fixing hole 122. When the locking member 124 and the locking groove 113 cooperate, the motor 110 is assembled. Therefore, the motor mounting structure 100 enables the rapid installation of the motor 110 and also facilitates the disassembly and maintenance of the air guide plate.
[0062] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.
Claims
1. A motor mounting structure, comprising a motor (110) for driving an air guide plate, characterized in that, Also includes: End plate (120), one side of which is the air guide plate installation space (101); A limiting housing (130) is located on the side of the end plate (120) away from the air guide plate mounting space (101). A motor mounting space is formed between the limiting housing (130) and the end plate (120). One end of the motor (110) is located in the motor mounting space. At least one locking component includes a detachably connected locking element (124) and a locking groove (113), one of the locking element (124) and the locking groove (113) being located on the side of the motor (110), and the other of the locking element (124) and the locking groove (113) being located on the side of the end plate (120) or the limiting housing (130) facing the motor mounting space; The locking member (124) is capable of elastic deformation toward or away from the limiting housing (130); The end plate (120) includes: an end plate body (121) and an output shaft fixing hole (122), wherein the output shaft fixing hole (122) is connected to the edge of the end plate body (121) to form an output shaft mounting inlet (123). The motor (110) includes a motor body (111) and an output shaft (112). The output shaft (112) passes through the output shaft fixing hole (122) and enters the air guide plate mounting space (101). The width of the output shaft mounting inlet (123) is smaller than the diameter of the output shaft fixing hole (122). The end plate (120) further includes an elastic groove (125) formed in the end plate body (121), and an elastic element (126) is formed in the elastic groove (125) that can elastically deform in a direction perpendicular to the end plate body (121). The locking member (124) is located on the side of the elastic member (126) facing the motor mounting space.
2. The motor mounting structure according to claim 1, characterized in that, The limiting housing (130) includes: A limiting plate (132) is positioned opposite to the end plate (120).
3. The motor mounting structure according to claim 2, characterized in that, The limiting housing (130) includes: a base plate (131) and a side support plate (133), wherein the base plate (131) and the side support plate (133) are connected between the limiting plate (132) and the end plate (120); The base plate (131), the limiting plate (132), and the side support plate (133) surround each other to form a motor (110) mounting opening located at the top of the motor mounting space.
4. The motor mounting structure according to claim 3, characterized in that, The limiting housing (130) includes: a relief groove (134), which is formed on the base plate (131). The elastic element (126) extends along the relief groove (134) to the side of the base plate (131) away from the motor mounting space, forming a disassembly end; The end plate (120) also includes a disassembly protrusion (127), which is located on the side of the disassembly end away from the air guide plate installation space (101).
5. The motor mounting structure according to claim 3, characterized in that, The limiting housing (130) includes: An extension (135) is connected to the top of the side support plate (133) and extends in a direction away from the motor mounting space.
6. The motor mounting structure according to any one of claims 2-5, characterized in that, The motor (110) also includes: Support leg (114), the support leg (114) is provided in the motor mounting space; The limiting plate (132) includes a motor support port (136), and the motor body (111) is located in the motor support port (136).
7. The motor mounting structure according to claim 6, characterized in that, The side of the motor body (111) connected to the output shaft (112) is the motor (110) mounting surface. The motor (110) further includes: a first guide rib (115), which is located on the motor (110) mounting surface. The end plate (120) includes a second guide rib (128), which is located on the side of the end plate body (121) facing the motor mounting space.
8. The motor mounting structure according to claim 1, characterized in that, The top of the locking member (124) is provided with a guide surface.
9. An air conditioner, characterized in that, include: The motor mounting structure as described in any one of claims 1-8; An air guide plate is provided in the air guide plate installation space (101), and the air guide plate and the motor (110) are drivenly connected.
Citation Information
Patent Citations
Motor mounting structure and air conditioner
CN217541051U