Wire pressing plate for air conditioner and air conditioner
By designing a tilt-pressure board for air conditioners, the problem of motor short circuit caused by water leakage in the air conditioner is solved, and the effect of improving safety and reducing maintenance costs is achieved.
Patent Information
- Application Number
- CN202421893017.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-06
AI Technical Summary
In the air conditioner, water leakage will seep into the chassis and drip along the holes of the chassis onto the motor terminals, causing the motor to be short-circuited, posing safety hazards and increasing maintenance costs.
A wire plate for air conditioning is designed. The wire plate and the chassis are arranged together with the wiring duct through which the motor line is passed and inclined in a direction away from the motor to ensure that water cannot drip on the motor terminals.
Through the tilting design, water can flow away from the motor under the action of its own gravity, preventing water from dripping onto the motor terminals, thereby preventing the motor from short circuit, improving safety and reducing maintenance costs.
Smart Images

Figure CN222993132U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of air conditioners, and particularly to a wire pressing plate for an air conditioner and an air conditioner. Background Art
[0002] Currently, in an air conditioner, a wire pressing plate is provided on a chassis. The wire pressing plate and the chassis define a wire routing groove for fixing motor wires.
[0003] The related art provides a chassis of an air conditioner, which is provided with a motor mounting portion and a wire pressing groove. The motor has motor wires. The motor is arranged at the motor mounting portion, and the motor wires are located in the wire pressing groove. The wire pressing plate is located on one side of the chassis where the wire pressing groove is provided. The wire pressing plate is fixed on the chassis to press the motor wires between the wire pressing plate and the wire pressing groove. A wind wheel is arranged on one side of the wire pressing plate and is connected to the motor and is driven by the motor.
[0004] In the process of implementing the embodiments of the present disclosure, it is found that at least the following problems exist in the related art:
[0005] When there is a water leakage problem for the upper - layer user, water will seep onto the chassis. The water drips onto the motor terminals along the holes on the upper surface of the chassis, causing a motor short - circuit problem, creating a safety hazard and increasing the after - sales maintenance cost.
[0006] It should be noted that the information disclosed in the above background art section is only used to enhance the understanding of the background of this application. Therefore, it may include information that does not constitute the prior art known to those of ordinary skill in the art. Summary of the Utility Model
[0007] To have a basic understanding of some aspects of the disclosed embodiments, a simple summary is given below. This summary is not a general review, nor is it intended to identify key / important constituent elements or delineate the protection scope of these embodiments. Instead, it serves as a preface to the subsequent detailed description.
[0008] The embodiments of the present disclosure provide a wire pressing plate for an air conditioner and an air conditioner to solve the problem that water drops caused by water leakage of the upper - layer user drip on the fan terminals, resulting in a motor short - circuit problem.
[0009] According to the first aspect of the embodiments of the present invention, a wire pressing plate for an air conditioner is provided. The indoor unit of the air conditioner includes a chassis and a motor arranged on the chassis. The wire pressing plate is adapted to be installed on the chassis, and the surface of the wire pressing plate facing the chassis and the chassis jointly enclose a wire routing groove for the motor wires to pass through. Among them, along the direction away from the motor, the surface of the wire pressing plate facing the chassis slopes downward.
[0010] According to a second aspect of the embodiments of the present utility model, an air conditioner is provided, which includes an indoor unit. The indoor unit includes: a chassis; a motor disposed on the chassis; a wire pressing plate for the air conditioner as described in any one of the above embodiments, the wire pressing plate is installed on the chassis, and the surface of the wire pressing plate facing the chassis and the chassis jointly enclose a wire routing groove for the motor wire to pass through.
[0011] The wire pressing plate for the air conditioner and the air conditioner provided by the embodiments of the present disclosure can achieve the following technical effects:
[0012] The indoor unit of the air conditioner includes a chassis and a motor disposed on the chassis. The wire pressing plate is installed on the chassis, and the wire pressing plate and the chassis jointly enclose a wire routing groove for the motor wire to pass through. The wire pressing plate fixes the motor wire in the wire routing groove. The wire pressing plate is designed as an inclined structure, and one end of the wire pressing plate close to the motor is higher than the end of the wire pressing plate far from the motor. In this way, water can flow in the direction away from the motor under the action of its own gravity, that is, water cannot flow towards the direction close to the motor, and water will not drip on the motor terminals, thereby preventing the motor from short-circuiting, improving safety, and avoiding the problem of high after-sales maintenance cost caused by short-circuiting.
[0013] The above general description and the following description are only exemplary and explanatory, and are not used to limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] One or more embodiments are exemplarily illustrated by corresponding drawings. These exemplary illustrations and the drawings do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings are shown as similar elements. The drawings do not constitute a proportional limitation, and among them:
[0015] Figure 1 is a schematic structural diagram of a wire pressing plate from a first perspective provided by Embodiment 1 of the present disclosure;
[0016] Figure 2 is a schematic structural diagram of a wire pressing plate from a second perspective provided by Embodiment 1 of the present disclosure;
[0017] Figure 3 is a schematic structural diagram of a wire pressing plate from a third perspective provided by Embodiment 1 of the present disclosure;
[0018] Figure 4 is a schematic structural diagram of the assembly of a wire pressing plate and a chassis provided by Embodiment 1 of the present disclosure;
[0019] Figure 5 is Figure 4 an enlarged structural diagram of part A in
[0020] Figure 6 is a cross-sectional view of the assembly of a wire pressing plate and a chassis provided by Embodiment 1 of the present disclosure;
[0021] Figure 7 is Figure 6 The enlarged structural schematic diagram of part B;
[0022] Figure 8 It is the structural schematic diagram of a wire pressing plate from the first perspective provided in the third embodiment of the present disclosure;
[0023] Figure 9 It is the structural schematic diagram of a wire pressing plate from the second perspective provided in the third embodiment of the present disclosure;
[0024] Figure 10 It is the structural schematic diagram of the second raised section and the guiding raised section provided in the third embodiment of the present disclosure;
[0025] Figure 11 It is the structural schematic diagram of a wire pressing plate from the third perspective provided in the third embodiment of the present disclosure;
[0026] Figure 12 It is the structural schematic diagram of the assembly of a wire pressing plate and a chassis provided in the third embodiment of the present disclosure;
[0027] Figure 13 is Figure 12 The enlarged structural schematic diagram of part E;
[0028] Figure 14 It is the structural schematic diagram of a chassis provided in the third embodiment of the present disclosure;
[0029] Figure 15 is Figure 14 The enlarged structural schematic diagram of part H;
[0030] Figure 16 It is the structural schematic diagram of another chassis provided in the third embodiment of the present disclosure;
[0031] Figure 17 It is the structural schematic diagram of a wire pressing plate from the first perspective provided in the second embodiment of the present disclosure;
[0032] Figure 18 It is the structural schematic diagram of a wire pressing plate from the second perspective provided in the second embodiment of the present disclosure;
[0033] Figure 19 It is the structural schematic diagram of a wire pressing plate from the third perspective provided in the second embodiment of the present disclosure;
[0034] Figure 20 It is the structural schematic diagram of a wire pressing plate from the fourth perspective provided in the second embodiment of the present disclosure;
[0035] Figure 21 It is the structural schematic diagram of a chassis from the first perspective provided in the second embodiment of the present disclosure;
[0036] Figure 22is a structural schematic diagram of a chassis from a second viewing angle provided in the second embodiment of the present disclosure;
[0037] Figure 23 is a schematic diagram of a chassis and a wire pressing plate assembly structure provided in the second embodiment of the present disclosure, wherein the buckle has not moved to the limit position;
[0038] Figure 24 yes Figure 23 The enlarged structural diagram of the middle K part;
[0039] Figure 25 is a schematic diagram of a chassis and a wire pressing plate assembly structure provided in the second embodiment of the present disclosure, wherein the buckle is located at a limit position;
[0040] Figure 26 yes Figure 25 Schematic diagram of the enlarged structure of the middle M part.
[0041] Reference numerals:
[0042] 10: wire pressing plate; 110: wire harness portion; 1101: first extension portion; 1102: second extension portion; 1103: extension portion; 1021: groove bottom wall; 1022: first groove side wall; 1023: second groove side wall; 1024: groove; 103: first connection portion; 104: second connection portion; 1041: first sub-connection portion; 1042: second sub-connection portion; 105: buckle; 105 1: first clamping portion; 1052: guide portion; 1053: second bend; 1054: second clamping portion; 1055: second bend; 106: first protruding section; 107: second protruding section; 1071: first limiting section; 1072: second limiting section; 1073: third limiting section; 108: guide protruding section; 109: body; 111: clamping portion; 112: notch; 113: opening;
[0043] 20: chassis; 201: first connection matching part; 202: second connection matching part; 2021: first sub-connection matching part; 2022: second sub-connection matching part; 203: slot; 2031: first side wall; 2032: second side wall; 204: positioning part; 2043: first bend; 2044: limiting protrusion; 205: limiting hole; 2051: first hole section; 2052: second hole section; 2053: first escape section; 2054: second escape section; 2055: third escape section; 2056: first side edge; 2057: second side edge; 206: locking part matching part; 207: elastic slot; 208: first bend;
[0044] 30: motor; 31: wiring groove; 301: first end; 302: second end; 303: branching groove; 32: reinforcing rib; 33: positioning protrusion; 331: first positioning section; 332: second positioning section. Detailed Implementation Manner
[0045] In order to more comprehensively understand the features and technical content of the embodiments of the present disclosure, the implementation of the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings. The attached drawings are for reference and illustration only and are not intended to limit the embodiments of the present disclosure. In the following technical description, for the sake of explanation, numerous details are provided to give a full understanding of the disclosed embodiments. However, one or more embodiments can still be implemented without these details. In other cases, well-known structures and devices can be shown in a simplified manner to simplify the drawings.
[0046] In the description of the embodiments of the present disclosure, the terms "first", "second", etc. in the specification, claims and the above-mentioned drawings are used to distinguish similar objects and do not necessarily describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances for the embodiments of the present disclosure described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion.
[0047] In the embodiments of the present disclosure, the orientation or positional relationships indicated by the terms "upper", "lower", "inner", "middle", "outer", "front", "rear", etc. are based on the orientation or positional relationships shown in the drawings. These terms are mainly used to better describe the embodiments of the present disclosure and their embodiments, and are not used to limit that the indicated devices, elements or components must have a specific orientation or be constructed and operated in a specific orientation. And, in addition to being able to represent orientation or positional relationships, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in the embodiments of the present disclosure can be understood according to specific circumstances.
[0048] In addition, the terms "arrange", "connect", "fix" should be understood in a broad sense. For example, "connect" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there is internal communication between two devices, elements or components. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present disclosure can be understood according to specific circumstances.
[0049] Unless otherwise specified, the term "plurality" means two or more.
[0050] In the embodiments of the present disclosure, the character " / " indicates that the objects before and after are in an "or" relationship. For example, A / B means: A or B.
[0051] The term "and / or" describes the associated relationship of objects, indicating that there can be three relationships. For example, A and / or B means: A, or B, or A and B.
[0052] It should be noted that, without conflict, the embodiments in this disclosure and the features in the embodiments can be combined with each other.
[0053] Embodiment 1:
[0054] Combined with Figure 1-7 As shown, the present disclosure embodiment provides a wire pressing plate 10 for an air conditioner, and the wire pressing plate 10 is used for an indoor unit. The indoor unit includes a chassis 20 and a motor 30.
[0055] The motor 30 is provided on the chassis 20, the wire pressing plate 10 is installed on the chassis 20, and the surface of the wire pressing plate 10 facing the chassis 20 and the chassis 20 jointly enclose a wire routing groove 31 for the motor wire to pass through, wherein the motor wire is connected to the motor 30.
[0056] Among them, as Figure 7 shown, along the direction away from the motor 30, the surface of the wire pressing plate 10 facing the chassis 20 (as shown at F in Figure 1 ) slopes downward.
[0057] The wire pressing plate 10 is installed on the chassis 20, and the wire pressing plate 10 and the chassis 20 jointly enclose a wire routing groove 31 for the motor wire to pass through. The wire pressing plate 10 fixes the motor wire in the wire routing groove 31. Among them, the wire pressing plate 10 is designed as an inclined structure. One end of the wire pressing plate 10 close to the motor 30 is higher than the end of the wire pressing plate 10 away from the motor 30. Water can flow in the direction away from the motor 30 under the action of its own gravity, resulting in water not approaching the motor 30, so that water cannot drip on the motor 30 terminals, thereby preventing the motor 30 from short - circuiting, improving safety, and reducing the after - sales maintenance cost caused by short - circuiting.
[0058] Optionally, as Figure 7 shown, along the direction away from the motor 30, the surface of the wire pressing plate 10 facing the chassis 20 gradually slopes downward.
[0059] The wire pressing plate 10 is high at the end close to the motor 30 and low at the end away from the motor 30, making the wire pressing plate 10 have an inclined structure on the bottom plate and a gradually inclined structure. This makes the water flow more smoothly along the wire pressing plate 10 in the direction away from the motor 30, so that the water can be discharged from the wire routing groove 31 in time, and thus the wire pressing plate 10 plays a role in protecting the motor 30.
[0060] Optionally, as Figure 2As shown, a groove 1024 is formed by the surface of the wire pressing plate 10 facing the chassis 20 being recessed. The groove 1024 and the chassis 20 jointly define a wire routing groove 31. Among them, along the direction away from the motor 30, the surface of the groove bottom wall 1021 of the groove 1024 facing the chassis 20 slopes downward.
[0061] The surface of the wire pressing plate 10 facing the chassis 20 is recessed to form a groove 1024 with an opening facing the chassis 20. The groove 1024 includes a groove bottom wall 1021, a first groove side wall 1022, and a second groove side wall 1023. The first groove side wall 1022 and the second groove side wall 1023 are arranged on opposite sides of the groove bottom wall 1021. The groove bottom wall 1021 and the first groove side wall 1022 are connected and a first bend 2043 is formed at the connection. The groove bottom wall 1021 and the second groove side wall 1023 are connected and a second bend 1053 is formed at the connection.
[0062] The air conditioner can be an embedded air conditioner. At this time, the chassis 20 is installed on the ceiling and is arranged above the wire pressing plate 10. Along the direction away from the motor 30, the surface of the groove bottom wall 1021 of the groove 1024 facing the chassis 20 (i.e., the upper surface of the groove bottom wall 1021 of the groove 1024) slopes downward, so that the water flowing into the groove 1024 can only flow out along the groove bottom wall 1021 to the lower place (the direction away from the motor 20), thereby preventing water droplets from dripping onto the motor 30, avoiding short - circuit of the motor circuit, improving safety, and reducing the after - sales maintenance cost caused by short - circuit.
[0063] Optionally, along the direction close to the groove bottom wall 1021 of the groove 1024, the surface of the groove side wall 1021 of the groove 1024 facing the chassis 20 slopes downward to form a guiding surface.
[0064] The groove side wall of the groove 1024 includes a first groove side wall 1022 and a second groove side wall 1023. Along the direction close to the groove bottom wall 1021 of the groove 1024, the surface of the first groove side wall 1022 and / or the second groove side wall 1023 facing the chassis 20 slopes downward to form a guiding surface, and the guiding surface has a guiding effect on the water flow. An angle greater than 90 degrees is formed between the groove side wall and the groove bottom wall 1021. In this way, when water droplets fall on the groove side wall, the water will flow along the guiding surface to the groove bottom wall 1021 under the action of its own gravity, and then flow along the groove bottom wall 1021 in the direction away from the motor 30, avoiding the water flowing to the motor 30.
[0065] Optionally, the chassis 20 is provided with a connection and cooperation part, and the wire pressing plate 10 is provided with a connection part connected to the connection and cooperation part. The connection and cooperation part cooperates with the connection part to position the wire pressing plate 10 on the chassis 20.
[0066] Optionally, the connecting and mating parts include a first connecting and mating part 201 and a second connecting and mating part 202 provided on the chassis 20, and the connecting part includes a first connecting part 103 connected to the first connecting and mating part 201 and a second connecting part 104 connected to the second connecting and mating part 202 provided on the wire pressing plate 10; wherein, the first connecting part 103 and the second connecting part 104 are respectively located on opposite sides of the wire routing groove 31.
[0067] As Figure 5 shown, through the cooperation of the first connecting part 103 and the first connecting and mating part 201, and the cooperation of the second connecting part 104 and the second connecting and mating part 202, the positioning between the wire pressing plate 10 and the chassis 20 is achieved.
[0068] The first connecting part 103 and the second connecting part 104 are respectively located on opposite sides of the wire routing groove 31, and the first connecting and mating part 201 and the second connecting and mating part 202 are also located on opposite sides of the wire routing groove 31, so that the wire pressing plate 10 is evenly stressed at opposite sides of the wire routing groove 31, improving the stability and reliability of the connection between the wire pressing plate 10 and the chassis 20.
[0069] Optionally, as Figure 1 and Figure 2 shown, the wire pressing plate 10 of the air conditioner includes a wire bundling part 110 and an extension part 1103.
[0070] The wire bundling part 110 and the chassis 20 jointly enclose the wire routing groove 31, and the wire bundling part 110 includes the groove bottom wall 1021 and the groove side wall.
[0071] The extension part is provided on one side of the wire bundling part 110, and along the width direction of the wire routing groove 31, the extension part and the wire bundling part 110 are arranged in sequence.
[0072] Wherein, along the direction away from the motor 30, the surface of the extension part facing the chassis 20 slopes downward, or, along the direction close to the wire routing groove 31, the surface of the extension part facing the chassis 20 slopes downward and is higher than the wire bundling part 110.
[0073] When the surface of the extension part facing the chassis 20 (the upper surface of the extension part) slopes downward along the direction away from the motor 30, the water flow dripping on the surface of the extension part facing the chassis 20 will flow away from the motor 30 under the action of its own gravity, avoiding the water flow towards the motor 30.
[0074] It can also be that along the direction close to the wire routing groove 31, the surface of the extension part facing the chassis 20 slopes downward and is higher than the wire bundling part 110. In this way, the height of the extension part near the wire bundling part 110 is lower than the height of the extension part far from the wire bundling part 110. The water flow dripping on the extension part will flow towards the wire bundling part 110 under the action of its own gravity, and thus flow into the wire bundling part and flow away from the motor 30 along the groove bottom wall 1021 of the groove.
[0075] Taking the connection method between the connecting part and the connecting and mating part as a screw connection as an example, the water on the ceiling will flow through the screw holes (connecting and mating parts) on the chassis 20 and the screw holes (connecting parts) on the wire pressing plate 10 to the extension part, and the water flowing into the extension part will flow away from the motor 30 along the inclined direction of the extension part.
[0076] The extension part 110 includes a first extension part 1101 and a second extension part 1102. The first extension part 1101 is arranged on one side of the wire bundling part 110, and the first connecting part 103 is arranged on the first extension part 1101; the second extension part 1102 is arranged on the other side of the wire bundling part 110, and the second connecting part 104 is arranged on the second extension part 1102.
[0077] Wherein, along the direction away from the motor 30, the surfaces of the first extension part 1101 and / or the second extension part 1102 facing the chassis 20 are inclined downward, or along the direction close to the wire routing groove 31, the surfaces of the first extension part 1101 and / or the second extension part 1102 facing the chassis 20 are inclined downward and higher than the wire bundling part 110.
[0078] Optionally, as Figure 3 shown, the wire pressing plate 10 is provided with a wire dividing groove 303, and the wire dividing groove 303 is communicated with the wire routing groove 31.
[0079] A wire dividing groove 303 is provided on the wire pressing plate 10, and the wire dividing groove 303 is arranged on the second extension part 1102.
[0080] The second connecting and mating part 201 includes a first sub-connecting and mating part 2021 and a second sub-connecting and mating part 2022, the second connecting part 104 includes a first sub-connecting part 1041 and a second sub-connecting part 1042, the first sub-connecting and mating part 2021 is matched with the first sub-connecting part 1041, such as screw connection or snap connection, and the second sub-connecting and mating part 2022 is matched with the second sub-connecting part 1042, such as screw connection or snap connection.
[0081] The first sub-connecting part 1041 and the second sub-connecting part 1042 are arranged on opposite sides of the wire dividing groove 303. The wire dividing groove 303 is in an arch shape, and the wire dividing groove 303 is communicated with the wire routing groove 31. The wire routing groove 31 passes through the motor wire. After the motor wire enters from the first end 301 of the wire routing groove 31, it is divided into two parts. One part extends out from the second end 302 of the wire routing groove 31, and the other part can extend out from the wire dividing groove 303.
[0082] It can also be that after the motor wire enters from the second end 302 of the wire routing groove 31, it is divided into two parts. One part extends out from the first end 301 of the wire routing groove 31, and the other part can extend out from the wire dividing groove 303.
[0083] Optionally, an embodiment of the present disclosure further provides an air conditioner, including an indoor unit. The indoor unit includes a chassis 20, a motor 30, and a wire pressing plate 10 for an air conditioner as described in any one of the above embodiments.
[0084] The motor 30 is disposed on the chassis 20. The wire pressing plate 10 is installed on the chassis 20. The surface of the wire pressing plate 10 facing the chassis 20 and the chassis 20 jointly define a wire routing groove 31 for the motor wire to pass through.
[0085] The air conditioner provided by this application includes the wire pressing plate as described in any one of the above embodiments, and thus has all the beneficial effects of the wire pressing plate as described in any one of the above embodiments, which will not be elaborated here.
[0086] Optionally, the motor 20 is disposed in the middle of the chassis 20. The chassis 20 is provided with a plurality of reinforcing ribs 32. The wire pressing plate 10 is at least partially disposed between two adjacent reinforcing ribs 32, and jointly defines the wire routing groove 31 with the part of the chassis 20 located between two adjacent reinforcing ribs 32, so that the setting of the wire pressing plate 10 does not affect the setting of the reinforcing ribs 32 on the chassis, does not damage the strength of the reinforcing ribs 32, and reasonably utilizes the space between two adjacent reinforcing ribs 32.
[0087] As Figure 16 shown, a plurality of reinforcing ribs 32 are radially distributed around the motor 30, which can improve the structural strength of each part of the chassis 20.
[0088] At least part of the wire pressing plate 10 is provided with reinforcing ribs 32 to increase the structural strength of the chassis 20. The reinforcing ribs 32 on the chassis 20 can be integrally formed by stamping, with simple process and convenient manufacturing.
[0089] The chassis 20 is provided with a first connection and cooperation part 201 and a second connection and cooperation part 202. The first connection and cooperation part 201 is connected to the first connection part 103, and the second connection and cooperation part 202 is connected to the second connection part 104. Among them, the first connection and cooperation part 201 is disposed on the reinforcing rib 32, and the second connection and cooperation part 202 is disposed on the reinforcing rib 32 adjacent to the reinforcing rib 32 where the first connection and cooperation part 201 is located.
[0090] Embodiment 2:
[0091] On the basis of Embodiment 1, as Figures 17 to 26 shown, one of the chassis 20 and the wire pressing plate 10 is provided with a buckle 105, and the other of the chassis 20 and the wire pressing plate 10 is provided with a clamping groove 203.
[0092] The chassis 20 is provided with a positioning portion 204. The buckle 105 can move relative to the card slot 203 in the first direction. When it moves to the limit position, the buckle 105 or the card slot 203 provided on the wire pressing plate 10 cooperates with the positioning portion 204 to limit the position of the wire pressing plate 10 relative to the chassis 20; or, the wire pressing plate 10 is provided with a positioning portion 204. The buckle 105 can move relative to the card slot 203 in the first direction. When it moves to the limit position, the buckle 105 or the card slot 203 provided on the chassis 20 cooperates with the positioning portion 204 to limit the position of the wire pressing plate 10 relative to the chassis 20.
[0093] When the chassis 20 is provided with a positioning portion 204, the first connection and cooperation portion 201 includes the buckle 105 or the card slot 203 provided on the chassis 20, and includes the positioning portion 204. The first connection portion 1051 includes the buckle 105 or the card slot 203 provided on the wire pressing plate 10. When the wire pressing plate 10 is provided with a positioning portion 204, the first connection and cooperation portion 201 includes the buckle 105 or the card slot 203 provided on the chassis 20. The first connection portion 103 includes the buckle 105 or the card slot 203 provided on the wire pressing plate 10, and includes the positioning portion 204.
[0094] When the chassis 20 is provided with a positioning portion 204 and the wire pressing plate 10 is provided with a buckle 105, when the buckle 105 can move relative to the card slot 203 in the first direction to the limit position, the buckle 105 cooperates with the positioning portion 204, which can limit the position of the wire pressing plate 10 relative to the chassis 20. When the chassis 20 is provided with a positioning portion 204 and the wire pressing plate 10 is provided with a card slot 203, when the buckle 105 can move relative to the card slot 203 in the first direction to the limit position, the card slot 203 cooperates with the positioning portion 204 to limit the position of the wire pressing plate 10 relative to the chassis 20, realizing the positioning of the wire pressing plate 10 relative to the chassis. This positioning method is simple and easy to operate, does not require screwing, and has high production efficiency.
[0095] It is also possible that the wire pressing plate 10 is provided with a positioning portion 204. When the wire pressing plate 10 is provided with a positioning portion 204 and the chassis 20 is provided with a buckle 105, when the buckle 105 can move relative to the card slot 203 in the first direction to the limit position, the buckle 105 cooperates with the positioning portion 204, which can limit the position of the wire pressing plate 10 relative to the chassis 20. When the wire pressing plate 10 is provided with a positioning portion 204 and the chassis 20 is provided with a card slot 203, when the buckle 105 can move relative to the card slot 203 in the first direction to the limit position, the card slot 203 cooperates with the positioning portion 204 to limit the position of the wire pressing plate 10 relative to the chassis 20, realizing the positioning of the wire pressing plate 10 relative to the chassis 20. This positioning method is simple and easy to operate, does not require screwing, and has high production efficiency.
[0096] Among them, the number of the buckles 105 or the card slots 203 provided on the wire pressing plate 10 is one or more. When there are multiple ones, the multiple buckles 105 or card slots 203 are arranged opposite to each other in sequence along the length direction of the wire pressing plate 10. Among them, the number of the buckles 105 and the card slots 203 is equal and they correspond to each other one by one.
[0097] Optionally, at the limiting position, the buckle 105 or the card slot 203 cooperates with the positioning portion 204 to limit the movement of the buckle 105 relative to the card slot 203 in the second direction, where the second direction is opposite to the first direction. As Figure 26 shown, the wire pressing plate is provided with buckles, the chassis is provided with a positioning portion and a card slot, and the buckle is at the limiting position.
[0098] At the limiting position, taking the chassis 20 being provided with the positioning portion 204 and the wire pressing plate 10 being provided with the buckle 105 as an example, as Figure 24 shown, when the buckle 105 moves in the first direction to approach the positioning portion 204, the buckle 105 cooperates with the positioning portion 204, and can limit the movement of the buckle 105 relative to the card slot 203 in the second direction, that is, can limit the movement of the buckle 105 in the direction away from the positioning portion 204, and prevent the buckle 105 from being separated from the positioning portion 204.
[0099] As Figure 26 shown, the first direction is the direction from the card slot 203 to the positioning portion 204, and is also the direction from the end of the card slot 203 far from the positioning portion 204 to the end close to the positioning portion 204.
[0100] Optionally, the card slot 203 extends along the length direction of the wire routing groove 31, and the buckle 105 moves relative to the card slot 203 along the length direction of the card slot 203; when the positioning portion 204 is provided on the chassis 20, the positioning portion 204 and the buckles 105 or card slots 203 provided on the chassis 20 are arranged in sequence along the length direction of the card slot 203; when the positioning portion 204 is provided on the wire pressing plate 10, the positioning portion 204 and the buckles 105 or card slots 203 provided on the wire pressing plate 10 are arranged in sequence along the length direction of the card slot 203.
[0101] The card slot extends along the length direction of the wire routing groove 31, and the buckle 105 moves relative to the card slot 203 along the length direction of the card slot 203. In this way, after the buckle 105 is inserted into the card slot 203, it moves relative to the card slot 203 along the length direction of the wire routing groove 31 to move to the limiting position. That is, during the installation process of assembling the wire pressing plate 10 onto the chassis 20, after the buckle 105 is inserted into the card slot 203, the wire pressing plate 10 moves relative to the chassis 20 along the length direction of the wire routing groove 31, and prevents interference between the wire pressing plate 10 and the chassis 20 during the movement process.
[0102] For example, the positioning part 204 and the clamping groove 203 are arranged on the chassis 20, the buckle 105 is arranged on the wire pressing plate 10, the buckle 105 or the clamping groove 203 arranged on the positioning part 204 and the chassis 20 are arranged in sequence along the length direction of the clamping groove 203. The buckle 105 is inserted into the clamping groove 203. When the buckle 105 moves towards the positioning part 204, the buckle 105 moves along the length direction of the clamping groove 203. When it moves to the limit position, the buckle 105 cooperates with the positioning part 204, so that the wire pressing plate 10 is fixed on the chassis, which is convenient for installation, improves the installation efficiency and reduces the cost.
[0103] Another example is that the clamping groove 203 and the positioning part 204 are arranged on the wire pressing plate 10, the buckle 105 is arranged on the chassis 20, the buckle 105 or the clamping groove 203 arranged on the positioning part 204 and the wire pressing plate 10 are arranged in sequence along the length direction of the clamping groove 203. The buckle 105 is inserted into the clamping groove 203. When the buckle 105 moves towards the positioning part 204, the buckle 105 moves along the length direction of the clamping groove 203. When it moves to the limit position, the buckle 105 cooperates with the positioning part 204, so that the wire pressing plate 10 is fixed on the chassis 20, which is convenient for installation, improves the installation efficiency and reduces the cost.
[0104] Optionally, as Figure 26 shown, the positioning part 204 includes a positioning protrusion 33. At the limit position, the buckle 105 abuts against the positioning protrusion 33 to limit the movement of the buckle 105 relative to the clamping groove 203 in the second direction.
[0105] As Figure 24 shown, the positioning protrusion 33 includes a first positioning section 331 and a second positioning section 332.
[0106] The first positioning section 331 and the second positioning section 332 are arranged in sequence in the first direction. The first positioning section 331 and the second positioning section 332 are connected and a first bend 208 is formed at the connection. The positioning protrusion 33 can be in a triangular structure.
[0107] As Figure 24 shown, the first bend 208 is a structure bulging upwards, or can also be a structure sunken downwards.
[0108] Among them, at the limit position, the buckle 105 abuts against the first bend 208 and / or abuts against the second positioning section 332.
[0109] The positioning part 204 includes a positioning protrusion 33. When at the limit position, the buckle abuts against the first bend 208 and / or abuts against the second positioning section 332, which can limit the movement of the buckle 105 relative to the clamping groove 203 in the second direction, prevent the buckle 105 from separating from the positioning part 204, and can also limit the movement of the buckle 105 towards the wire trough 31, making the connection between the wire pressing plate 10 and the chassis 20 more firmly clamped.
[0110] Optionally, as Figure 24 shown, along the first direction, the second positioning section 332 is inclined in a direction away from the buckle 105.
[0111] The buckle 105 includes a first engaging portion 1051. In the limiting position, the first engaging portion 1051 abuts against the second positioning section 332, and the inclination direction is the same as that of the second positioning section 332.
[0112] The first engaging portion 1051 is provided on the surface of the buckle 105 facing the second positioning section 332. The inclination directions of the second positioning section 332 and the first engaging portion 1051 are such that in the limiting position, the second positioning section 332 can limit the movement of the buckle 105 in the second direction. Moreover, the first engaging portion 1052 has the same inclination direction as the second positioning section 332, so that the contact area between the first engaging portion 1051 and the second positioning section 332 is increased. The surfaces of the first engaging portion 1051 for abutting against the second positioning section 332 and the second positioning section 332 for abutting against the first engaging portion 1051 have the same shape, so as to further increase the contact area between the first engaging portion 1051 and the second positioning section 332. For example, both are planar, increasing the mutual acting force along between the first engaging portion 1051 and the second positioning section 332 and making the abutment between the two more firm.
[0113] Optionally, as Figure 24 shown, the buckle 105 further includes a guiding portion 1052. The first engaging portion 1051 is connected to the guiding portion 1052 and arranged in sequence along the first direction. Along the first direction, the guiding portion 1052 is inclined in a direction away from the positioning protrusion 33.
[0114] Among them, the inclination direction of the first positioning section 331 is the same as that of the guiding portion 1052.
[0115] The guiding portion 1052 is connected to the first engaging portion 1051 and has a different inclination direction, so that a fold angle is formed at the connection between the guiding portion 1052 and the first engaging portion 1051.
[0116] The first positioning section 331 has the same inclination direction as the guiding portion 1052. The first positioning section 331 and the guiding portion 1052 cooperate with each other, which is beneficial for the guiding portion 1052 to move along the first direction to the limiting position, making the guiding portion 1052 slide more smoothly and conveniently over the first positioning section 331 during the sliding process, playing a guiding role, so that the buckle 105 can smoothly reach the limiting position.
[0117] Optionally, the buckle 105 further includes a second engaging portion 1054. Along the first direction, the second engaging portion 1054 and the first engaging portion 1051 are arranged in sequence, and the second engaging portion 1054 is inclined in a direction away from the positioning protrusion 33, so that a second bending 1055 is formed at the connection between the second engaging portion 1054 and the first engaging portion 1051, and the second bending 1055 corresponds to the first bending 208.
[0118] The second engaging portion 1054 is inclined in a direction away from the positioning protrusion 33, that is, the inclination direction of the second engaging portion 1054 is the same as the inclination direction of the first positioning section 331, and the second bending 1055 corresponds to the first bending 208, and the second engaging portion 1054 corresponds to the first positioning section 331. Thus, when the buckle 105 moves to the limit position, the first engaging portion 1051 abuts against the second positioning section 332, the second engaging portion 1054 abuts against the first positioning section 331, and the second bending 1055 corresponds to the first bending 208. In this way, the second engaging portion 1054 can limit the buckle 105 from continuing to move in the first direction after moving to the limit position.
[0119] Optionally, as Figure 24 shown, the side wall of the card slot 203 includes a first side wall 2031 and a second side wall 2032. The second side wall 2032 is arranged opposite to the first side wall 2031, and the first side wall 2031 and the second side wall 2032 are arranged in sequence along the first direction; wherein, at the limit position, the buckle 105 abuts against the second side wall 2032.
[0120] The card slot 203 is in a long strip shape. At one end of the card slot 203 in the length direction close to the positioning portion 204 is the second side wall 2032, and at the end far from the positioning portion 204 is the first side wall 2031. The first side wall 2031 and the second side wall 2032 are arranged opposite to each other, and the first side wall 2031 and the second side wall 2032 are arranged in sequence along the first direction. When the buckle 105 is inserted into the card slot 203, the first side wall 2031 and the second side wall 2032 are arranged on opposite sides of the buckle 105 along the length direction of the card slot 203.
[0121] When installing the wire pressing plate 10, the buckle 105 is inserted into the card slot 203. When the buckle 105 moves in the first direction along the length direction of the card slot 203, the first side wall 2032 of the buckle 105 away from the card slot 203 approaches the second side wall 2032 of the card slot 203. When the buckle 105 moves to the limit position, the buckle 105 abuts against the second side wall 2032 of the card slot 203, and the second side wall 2032 restricts the buckle 105 from continuing to move in the first direction at the limit position, thereby playing a role in limiting the buckle 105.
[0122] Optionally, as Figure 24As shown, an elastic groove 207 is provided at the connection between the positioning portion 204 and the chassis 20 or the wire pressing plate 10 where it is located.
[0123] When the positioning portion 204 is provided on the chassis 20, an elastic groove is provided at the connection between the positioning portion 204 and the chassis 20. When the positioning portion 204 is provided on the wire pressing plate 10, an elastic groove is provided at the connection between the positioning portion 204 and the wire pressing plate 10.
[0124] Providing an elastic groove at the connection between the positioning portion 204 and the chassis 20 or the wire pressing plate 10 where it is located can enhance the elasticity and deformation ability of the limiting convex portion, making it easier for the buckle 105 to move to the limiting position in the first direction, reducing the installation difficulty, and improving the installation efficiency of the wire pressing plate 10.
[0125] Taking the buckle 105 provided on the wire pressing plate 10 as an example, the buckle 105 can be formed by bending the material of the wire pressing plate 10 itself. An opening is provided at the connection between the buckle and the wire pressing plate to increase the elasticity of the buckle. The positioning portion 204 can be formed by pressing the material on the chassis 20 or the wire pressing plate 10 where it is located.
[0126] Embodiment Three:
[0127] Based on Embodiment One, as Figures 8 to 16 shown, one of the chassis 20 and the wire pressing plate 10 is provided with a limiting protrusion 2044, and the other of the chassis 20 and the wire pressing plate 10 is provided with a limiting hole 205.
[0128] Among them, as Figure 13 and Figure 15 shown, the limiting hole 205 includes a first hole section 2051 and a second hole section 2052 that are connected and communicated. The opening size of the first hole section 2051 is larger than the opening size of the second hole section 2052. The limiting protrusion 2044 is limited in the second hole section 2052, and the opening size of the first hole section 2051 is larger than or equal to the size of the limiting protrusion 2044, so that the limiting protrusion 2044 can slide into the first hole section 2051 and can escape from the first hole section 2051 under the action of an external force.
[0129] When the chassis 20 is provided with the limiting hole 205, the first connection and cooperation portion 201 includes the limiting hole 205, and the first connection portion 103 includes the limiting protrusion 2044 provided on the wire pressing plate 10. When the wire pressing plate 10 is provided with the limiting protrusion 2044, the first connection and cooperation portion 201 includes the limiting hole 205 provided on the chassis 20, and the first connection portion 103 includes the limiting protrusion 2044 provided on the wire pressing plate 10.
[0130] A limiting hole 205 is provided in one of the chassis 20 and the wire pressing plate 10, and a limiting protrusion 2044 is provided in the other of the chassis 20 and the wire pressing plate 10. Through the cooperation of the limiting hole 205 and the limiting protrusion 2044, the positioning of the wire pressing plate 10 relative to the chassis 20 is realized.
[0131] When a limiting hole 205 is provided on the chassis 10 and a limiting protrusion is provided on the wire pressing plate 10, after the limiting protrusion 2044 is inserted into the second hole section 5220, it is limited in the second hole section 2052. Through the cooperation between the limiting protrusion 2044 and the second hole section 2052, the position of the wire pressing plate 10 relative to the chassis 20 can be limited. When a limiting protrusion 2044 is provided on the chassis 20 and a limiting hole 205 is provided on the wire pressing plate 10, after the limiting protrusion 2044 is inserted into the second hole section 2052, it is limited in the second hole section 2052. Through the cooperation between the limiting protrusion 2044 and the second hole section 2052, the position of the wire pressing plate 10 relative to the chassis 20 can be limited.
[0132] Through the cooperation between the limiting protrusion 2044 and the second hole section 2052, the position of the wire pressing plate 10 relative to the chassis 20 can be limited, realizing the positioning or fixing of the wire pressing plate 10 relative to the chassis 20. This positioning method is simple and easy to operate, does not require screwing, and has high production efficiency.
[0133] When disassembling the wire pressing plate 10, an external force is applied to the limiting protrusion 2044. Under the action of the external force, the limiting protrusion 2044 slides from the second hole section 2052 into the first hole section 2051. Since the opening size of the first hole section 2051 is greater than or equal to the size of the limiting protrusion 2044, the limiting protrusion 2044 can be disengaged from the first hole section 2051, thereby releasing the limitation between the wire pressing plate 10 and the chassis 20 and realizing the disassembly of the wire pressing plate 10. And compared with the screw connection between the wire pressing plate 10 and the chassis 20, there is no problem of thread slipping due to multiple disassembly of the screws in this application. Therefore, the wire pressing plate 10 can be disassembled repeatedly, improving production efficiency, reducing costs, and increasing the after-sales maintenance speed.
[0134] Optionally, as Figure 13 shown, the opening size of the first hole section 2051 is greater than the opening size of the second hole section 2052.
[0135] The opening size of the second hole section 2052 is smaller than the size of the limiting protrusion 2044, thereby realizing the limitation of the limiting protrusion 2044. The opening size in the first hole section 2051 is greater than or equal to the size of the limiting protrusion 2044, thereby realizing that the limiting protrusion 2044 can be disengaged from the first hole section 2051.
[0136] The limiting protrusion 2044 is a three-dimensional structure with multiple dimensions. The limiting protrusion 2044 has a dimension in the first direction. The second hole section 2052 limits the limiting protrusion 2044 by limiting the dimension in the first direction. Then, in the statement "the opening dimension of the first hole section 2051 is larger than the opening dimension of the second hole section 2052", the opening dimension refers to the dimension in the first direction. The statement "the opening dimension of the first hole section 2051 is larger than or equal to the dimension of the limiting protrusion 2044" means that "the dimension of the first hole section 2051 in the first direction is larger than or equal to the dimension of the limiting protrusion 2044 in the first direction".
[0137] For example, the dimension of the limiting protrusion 2044 in the first direction is the dimension in the length direction. When the limiting protrusion 2044 is located in the second hole section 2052, it is because the dimension of the limiting protrusion 2044 in the length direction is larger than the dimension of the second hole section 2052 in the length direction, resulting in the inability of the limiting protrusion 44 to escape from the second hole section 2052, that is, the second hole section 2052 limits the limiting protrusion 2044. Then, the length dimension of the first hole section 2051 is larger than the length dimension of the second hole section 2052, and the length dimension of the first hole section 2052 is larger than the length dimension of the limiting protrusion 2044.
[0138] Optionally, the limiting protrusion 2044 includes a first protrusion section 106 and a second protrusion section 107. The first protrusion section 106 is disposed inside the second hole section 2052; the second protrusion section 107 passes through the second hole section 2052 and is connected to the first protrusion section 106. The dimension of the second protrusion section 107 is larger than the opening dimension of the second hole section 2052 to prevent the second protrusion section 107 from escaping from the second hole section 2052, and the dimension of the second protrusion section 107 is less than or equal to the opening dimension of the first hole section 2051 so that the second protrusion section 107 can slide into the first hole section 2051 and escape from the first hole section 2051 under an external force.
[0139] Along the direction in which the limiting protrusion 2044 is inserted into the second hole section 2052, the first protrusion section 106 and the second protrusion section 107 are arranged in sequence. When assembling the wire pressing plate 10 and the chassis 20, the limiting protrusion 2044 is inserted into the limiting hole 205, and the second protrusion section 107 passes through the first hole section 2051. At this time, the first protrusion section 106 is offset from the second hole section 2052. Since the wire pressing plate 10 itself has a certain elasticity, for example, the wire pressing plate 10 is a sheet metal part to meet the elastic requirements of the wire pressing plate 10, under the elastic action of the wire pressing plate 10, the first protrusion section 106 corresponds to the second hole section 2052, and the first protrusion section 106 is inserted into the second hole section 2052 to realize the limitation of the first protrusion section 106 by the second hole section 2052.
[0140] The opening size of the second convex section 107 is less than or equal to the opening size of the first hole section 2051, so that the second convex section 107 can smoothly pass through the first hole section 2051, realizing the detachment or insertion of the second convex section 107 from the first hole section 2051. The opening size of the second hole section 2052 is less than the size of the second convex section 107, and the second hole section 2052 can limit the second convex section 107.
[0141] When disassembling the wire pressing plate 10, only an external force needs to be applied to the second convex section 107. Under the action of the external force, the second convex section 107 slides into the first hole section 2051 from the second hole section 2052, and the second convex section 107 can easily escape from the first hole section 2051; and the wire pressing plate 10 can be disassembled repeatedly, reducing costs and improving production efficiency.
[0142] Optionally, the size of the first convex section 106 is less than or equal to the opening size of the second hole section 2052, so that when the wire pressing plate 10 is assembled on the chassis 20, it is more convenient for the first convex section 106 to be inserted into the second hole section 2052.
[0143] Both the first convex section 106 and the second convex section 107 are three-dimensional structures with multiple dimensions. The second convex section 107 has a dimension in the first direction. The second hole section 2052 limits the second convex section 107 by limiting the dimension in the first direction, preventing the second convex section 107 from escaping from the second hole section 2052. Then, "the size of the second convex section 107 is greater than the opening size of the second hole section 2052" means "the dimension of the second convex section 107 in the first direction is greater than the opening dimension of the second hole section 107 in the first direction", "the size of the second convex section 107 is less than or equal to the opening size of the first hole section 106" means "the dimension of the second convex section 107 in the first direction is less than or equal to the opening dimension of the first hole section 5051 in the first direction", and "the size of the first convex section 106 is less than or equal to the opening size of the second hole section 2052" means "the dimension of the first convex section 106 in the first direction is less than or equal to the opening dimension of the second hole section 2052 in the first direction".
[0144] The dimension in the first direction is the dimension in the length direction ( Figure 10 the left-right direction in
[0145] Optionally, as Figure 10As shown, the second protruding section 107 includes a first limiting section 1071, a second limiting section 1072 and a third limiting section 1073. The second limiting section 1072 is arranged at one side of the first limiting section 1071; the third limiting section 1073 is connected to the first limiting section 1071 and arranged opposite to the second limiting section 1072; wherein, the orthographic projection of the first limiting section 1071 on the chassis 20 or the wire pressing plate 10 where the limiting hole 205 is located is located inside the second hole section 2052, and the orthographic projections of the second limiting section 1072 and the third limiting section 1073 on the chassis 10 or the wire pressing plate 10 where the limiting hole 205 is located are located outside the second hole section 2052.
[0146] The second protruding section 107 includes a first limiting section 1071, a second limiting section 1072, and a third limiting section 1073 sequentially arranged along the first direction. When the wire pressing plate 10 is assembled in place on the chassis 20, the first limiting section 1071 is arranged corresponding to the second hole section 2052, and the second limiting section 1072 and the third limiting section 1073 are staggered with the second hole section 2052, so that the second limiting section 1072 and the third limiting section 1073 cannot escape from the second hole section 2052, so that the second hole section 1052 can limit the second protruding section 107.
[0147] Alternatively, if Figure 13 As shown, the first hole section 2051 includes a second escape section 2054, a first escape section 2053 and a third escape section 2055 which are arranged in sequence. When the limiting protrusion 2044 enters the first hole section 2051, the first limiting section 1071 corresponds to the first escape section 2053, the second limiting section 1072 corresponds to the second escape section 2054, and the third limiting section 1073 corresponds to the third escape section 2055.
[0148] When installing the wire pressing plate 10, the second protruding section 107 passes through the first hole section 2051. Specifically, the first limiting section 1071 corresponds to the first escape section 2053, the second limiting section 1072 corresponds to the second escape section 2054, the first limiting section 1071 is inserted into the first escape section 2053, the second limiting section 1072 is inserted into the second escape section 2054, and the third limiting section 1073 is inserted into the third escape section 2055, so that the second protruding section 107 is inserted into the first hole section 2051; when the wire pressing plate 10 is disassembled, the limiting protrusion 2044 slides from the second hole section 2052 into the first hole section 2051 under the action of external force, so that the first limiting section 1071 is disengaged from the first disengaging section 2053, the second limiting section 1072 is disengaged from the second disengaging section 2054, and the third limiting section 1073 is disengaged from the third disengaging section 2055, so that the limiting protrusion 2044 can be disengaged from the limiting hole 205.
[0149] Alternatively, if Figure 10As shown, the limiting protrusion 2044 further includes a guiding protrusion section 108. The first protrusion section 106, the second protrusion section 107, and the guiding protrusion section 108 are arranged in sequence. The guiding protrusion section 108 is disposed on the side of the second protrusion section 2042 facing the first hole section 2051, and an obtuse angle is formed at the connection with the second protrusion section 107.
[0150] The guiding protrusion section 108 is connected to the second protrusion section 107 to form an obtuse angle. The guiding protrusion section 108 is disposed on the side of the second protrusion section 107 facing the first hole section 2051. The first hole section 2051 includes a first side 2056 and a second side 2057, and the first side 2056 and the second side 2057 are arranged in sequence along the direction from the first hole section 2051 to the second hole section 2052. In this way, when the wire pressing plate 10 is assembled, the guiding protrusion section 108 first slides into the first hole section 2051, and abuts against the second side 2057 during the sliding process, playing a guiding role, guiding the second protrusion section 107 to insert into the first hole section 2051, and driving the second protrusion section 107 to deform in the direction away from the second hole section 2052 during the guiding process. Thus, after the second protrusion section 107 enters and exits the first hole section 2051, the restoring force of the limiting protrusion 2044 due to deformation will guide the limiting protrusion 2044 to move towards the first hole section 2051, so that the first protrusion section 106 slides into the second hole section 2052.
[0151] Optionally, as Figure 11 shown, the wire pressing plate 10 or the chassis 20 provided with the limiting protrusion 2044 includes: a body 109, the body 109 is provided with a notch 112, and the limiting protrusion 2044 is connected to the side wall of the notch 112.
[0152] This can enhance the deformation ability of the limiting protrusion 2044. Thus, when the wire pressing plate 10 is installed, the second protrusion section 107 can pass through the first hole section 2051 and move towards the second hole section 2052 to abut against the second hole section 2052, fixing the wire pressing plate 10 on the chassis 20; when the wire pressing plate 10 is disassembled, the second protrusion section 107 can slide into the first hole section 2051 again under the action of an external force, enabling the second protrusion section 107 to be disengaged from the first hole section 2051, and the wire pressing plate 10 can be disassembled.
[0153] Optionally, the chassis assembly of the air conditioner further includes a clamping portion 111 and a clamping and mating portion 206. The clamping portion 111 is disposed on one of the wire pressing plate 10 and the chassis 20; the clamping and mating portion 206 is disposed on the other of the wire pressing plate 10 and the chassis 20 and is clamped with the clamping portion 111.
[0154] A clamping and mating portion 206 is provided on the chassis 20, and a clamping portion 111 is provided on the wire pressing plate 10, or a clamping portion 111 is provided on the chassis 20 and a clamping and mating portion 206 is provided on the wire pressing plate 10. One of the clamping portion 111 and the clamping and mating portion 206 is a snap, and the other is a slot. The snap is snap-fitted with the slot, which can limit the wire pressing plate 10 to prevent the wire pressing plate 10 from shifting or misaligning during installation, making the connection between the wire pressing plate 10 and the chassis 20 more stable and also enhancing the connection strength between the wire pressing plate 10 and the chassis 20.
[0155] Among them, one or more clamping portions 111 and clamping and mating portions 206 can be provided, and the numbers of the clamping portions 111 and the clamping and mating portions 206 are equal and correspond one by one.
[0156] The limiting protrusion 2044 and the clamping portion 111 are provided on opposite sides in the width direction of the wire routing groove 31.
[0157] Optionally, along the direction in which the clamping portion 111 and the clamping and mating portion 206 are snap-fitted, the second hole section 2052 and the first hole section 2051 are arranged in sequence.
[0158] When removing the wire pressing plate 10, an external force is applied to the second protruding section 107, so that the second protruding section 107 slides into and out of the first hole section 2051. The direction of the external force is the direction in which the clamping portion 111 and the clamping and mating portion 206 are snap-fitted, that is, the direction in which the connection between the two is more reliable, avoiding the separation of the clamping portion 111 and the clamping and mating portion 206 due to the external force.
[0159] It can be understood that in the second embodiment, the chassis assembly can also include a clamping portion 111 and a clamping and mating portion 206. The clamping portion 111 is provided on one of the wire pressing plate 10 and the chassis 20; the clamping and mating portion 206 is provided on the other of the wire pressing plate 10 and the chassis 20 and is snap-fitted with the clamping portion 111.
[0160] The above description and the drawings fully illustrate the embodiments of the present disclosure so that those skilled in the art can practice them. Other embodiments may include structural and other changes. The embodiments only represent possible variations. Unless explicitly required, the individual components and functions are optional, and the order of operations can vary. Some parts and features of some embodiments can be included in or replaced by parts and features of other embodiments. The embodiments of the present disclosure are not limited to the structures already described and shown in the drawings and can be modified and changed without departing from its scope. The scope of the present disclosure is only limited by the appended claims.
Claims
1. A wire pressing plate for an air conditioner, characterized in that: The indoor unit of the air conditioner comprises a chassis and a motor arranged on the chassis, the wire pressing plate is suitable for being installed on the chassis, and the surface of the wire pressing plate facing the chassis and the chassis together enclose a wiring groove for the power supply line to pass through; Wherein, along the direction away from the motor, the wire pressing plate is inclined downward toward the surface of the chassis.
2. The wire pressing plate for air conditioner according to claim 1, characterized in that: Along the direction away from the motor, the wire pressing plate gradually slopes downward toward the surface of the chassis.
3. The wire pressing plate for air conditioner according to claim 1 or 2, characterized in that: The surface of the wire pressing plate facing the chassis is sunken to form a groove, and the groove and the chassis together define a wiring groove, wherein along the direction away from the motor, the bottom wall of the groove is inclined downward toward the surface of the chassis.
4. The wire pressing plate for air conditioner according to claim 3, characterized in that: Along the direction close to the groove bottom wall of the groove, the surface of the groove side wall facing the bottom plate is inclined downward to form a guide surface.
5. The wire pressing plate for air conditioner according to claim 1 or 2, characterized in that: include: The cable harness part is suitable for setting a cable duct together with the chassis; The extension part is arranged at one side of the wire harness part, and the extension part and the wire harness part are arranged in sequence along the width direction of the wiring trough; The extending portion along a direction away from the motor is inclined downward toward the surface of the chassis, or the extending portion along a direction close to the wiring groove is inclined downward toward the surface of the chassis and is higher than the wiring harness portion.
6. The wire pressing plate for air conditioner according to claim 5, characterized in that: The chassis is provided with a connection matching portion, the wire pressing plate is provided with a connection portion connected to the connection matching portion, and the connection matching portion cooperates with the connection portion so that the wire pressing plate is positioned on the chassis; Wherein, the connecting portion is arranged on the extending portion.
7. The wire pressing plate for air conditioner according to claim 1 or 2, characterized in that: The wire pressing plate is provided with a branching groove, which is connected with the wiring groove.
8. An air conditioner, characterized in that: Including indoor unit, the indoor unit includes: Chassis; A motor, arranged on the chassis; The wire pressing plate for an air conditioner as claimed in any one of claims 1 to 7, wherein the wire pressing plate is mounted on a chassis, and a surface of the wire pressing plate facing the chassis and the chassis together enclose a wiring groove through which the power supply wire passes.
9. The air conditioner according to claim 8, characterized in that: The motor is arranged in the middle of the chassis, the chassis is provided with a plurality of reinforcing ribs, the wire pressing plate is at least partially arranged between two adjacent reinforcing ribs, and together with the part of the chassis located between two adjacent reinforcing ribs, a wire running groove is enclosed.
10. The air conditioner according to claim 9, characterized in that: A plurality of reinforcing ribs are radially distributed around the motor.