Wire outlet clamp structure, motor and air conditioner
By designing an arc-shaped groove and a multi-layered closed structure for the cable clamp, the problem of water flowing into the motor in the air conditioner cabinet indoor unit was solved, achieving a waterproof effect for the motor and improving its stability and service life.
Patent Information
- Application Number
- CN202423211424.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Water in the indoor unit of an air conditioner cabinet can easily flow into the motor through the outlet clamp, causing damage to the motor.
Design a cable clamp structure, including a main body and a groove structure. The bottom of the groove is arc-shaped, and the arc-shaped opening faces away from the motor shaft. The motor housing is connected to the main body through the groove. Combined with the partition and the protruding structure, a multi-layer seal is formed to prevent water from entering the motor.
It effectively prevents water from entering the motor, reduces the chance of water leakage, improves the stability and service life of the motor, and avoids motor damage.
Smart Images

Figure CN223885044U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to motor technical field, concretely relates to a wire outlet clamp structure, motor, air conditioner. BACKGROUND
[0002] In the current industry, unlike the horizontally assembled air conditioner outer fan, the air conditioner cabinet type inner machine has a relatively compact internal space, and the installation mode of the cabinet machine motor matched with the centrifugal fan blade needs to be vertical upward.
[0003] Because the air conditioner cabinet type inner machine motor generally uses the shaft extension direction vertical upward installation structure, in the long-term use of the air conditioner, the condensate water easily enters the motor interior along the rotor shaft; at the same time, when the air conditioner cabinet type inner machine is cleaned, the cleaning water flow is easy to flow into the motor interior from the motor wire outlet clamp, causes bearing rust, motor electronic device corrosion or rotor abnormal corrosion, leads to air conditioner operation noise, unable to run and other after-sales abnormalities.
[0004] Because the water in the air conditioner cabinet type inner machine in the prior art is easy to flow into the motor interior through the wire outlet clamp, causes the motor damage and other technical problems, therefore the utility model researches and designs a wire outlet clamp structure, motor, air conditioner. CONTENT OF THE UTILITY MODEL
[0005] Therefore, the utility model provides a wire outlet clamp structure, motor, air conditioner, can solve the technical problem that the water in the air conditioner cabinet type inner machine in the prior art is easy to flow into the motor interior through the wire outlet clamp, causes the motor damage.
[0006] In order to solve the above problem, the utility model provides a wire outlet clamp structure, comprising: main body, the main body is assembled on the motor shell, the main body has the first end of the extension end towards the motor rotating shaft, the first recess is arranged on the first end, the extension direction of the first recess is matched with the motor shell, the first recess penetrates the main body, along the extension direction of the first recess, the groove bottom of the first recess is arc-shaped, the opening of the arc shape is away from the extension end of the motor rotating shaft, the motor shell is connected with the main body through the first recess.
[0007] In some embodiments, along the extension direction of the first recess, the groove bottom of the first recess is provided with the first partition, the first partition divides the first recess into the third recess and the fourth recess, the groove bottom of the third recess is arc-shaped, the opening of the arc shape is away from the extension end of the motor rotating shaft, the motor shell is connected with the main body through the fourth recess.
[0008] In some embodiments, the main body comprises a first part and a second part, the first recess is arranged on the first part, the second part is provided with a second recess at one end thereof facing the first part, the first part is provided with a second recess at one end thereof facing the second part, the second recess extends through the first part and the second part in the wire outlet direction of the wire outlet clamp structure, and the lead-out wire of the motor is led out from the second recess.
[0009] In some embodiments, the second part is provided with a plurality of second protrusions at one end thereof facing the first part, the first part is provided with a plurality of seventh recesses at one end thereof facing the second part, the second protrusions correspond to the seventh recesses one by one, and the second protrusions match the seventh recesses.
[0010] In some embodiments, a plurality of second partitions are arranged in the second recess of the second part at intervals, the width direction of the second recess is perpendicular to the wire outlet direction of the wire outlet clamp structure, the plurality of second partitions are arranged at intervals in the width direction of the second recess, the second partitions extend in the wire outlet direction of the wire outlet clamp structure, one end of the second partitions is arranged at the bottom of the second recess, and the lead-out wire is fixed between the other end of the second partitions and the bottom of the first part.
[0011] In some embodiments, a plurality of third partitions are arranged in the second recess of the first part at intervals, the width direction of the second recess is perpendicular to the wire outlet direction of the wire outlet clamp structure, the plurality of third partitions are arranged at intervals in the width direction of the second recess, the third partitions extend in the wire outlet direction of the wire outlet clamp structure, and any second partition is located between two adjacent third partitions when the first part and the second part are assembled.
[0012] In some embodiments, the second partitions and the sidewalls of the second recess of the second part, and adjacent two second partitions are connected by first protrusions, the height direction of the first protrusions is the groove depth direction of the second recess, the height of the first protrusions is less than the height of the second partitions, the third partitions are provided with sixth recesses, the sixth recesses extend through the second partitions in the thickness direction of the second partitions, and the sixth recesses match the first protrusions.
[0013] In some embodiments, third protrusions are arranged between adjacent two third partitions, the third protrusions are arranged close to the motor housing, and the height direction of the third protrusions is the groove depth direction of the second recess, the height of the third protrusions is less than the height of the third partitions.
[0014] In some embodiments, the other end of the second partition plate is provided with a fifth groove, the fifth groove extends along the wire outlet direction of the wire outlet clamp structure, and the fifth groove and the bottom of the second groove of the first part form a lead shape channel.
[0015] In some embodiments, the bottom of the second groove of the second part has an inclined surface, the second partition plate is located between the inclined surface and the motor housing along the wire outlet direction of the wire outlet clamp structure, and the second part is away from the motor.
[0016] The utility model also provides a motor which comprises the wire outlet clamp structure.
[0017] The utility model also provides an air conditioner which comprises the motor.
[0018] The wire outlet clamp structure, the motor and the air conditioner provided by the utility model have the following beneficial effects:
[0019] The bottom of the first groove is arc-shaped along the extension direction of the first groove, the opening of the arc shape faces away from the extension end of the motor shaft, and the motor housing and the main body are connected through the first groove. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. The drawings in the following description are only exemplary, and for those skilled in the art, without paying creative labor
[0021] Figure 1 It is the structure schematic of the wire outlet clamp structure of the utility model Figure 1 ;
[0022] Figure 2 It is the structure schematic of the wire outlet clamp structure of the utility model Figure 2 ;
[0023] Figure 3 It is the structure schematic of the wire outlet clamp structure of the utility model Figure 3 ;
[0024] Figure 4 It is the structure schematic of the wire outlet clamp structure of the utility model Figure 4 ;
[0025] Figure 5is a structure schematic view of the first part in the wire outlet clamp structure of the utility model;
[0026] Figure 6 is a structure schematic view of the second part in the wire outlet clamp structure of the utility model;
[0027] Figure 7 is a structure schematic view of the wire outlet clamp structure of the utility model Figure 5 ;
[0028] Figures 1-8 is an assembly structure view of the wire outlet clamp structure of the utility model.
[0029] The signs are:
[0030] 1, first part;2, second part;3, third groove;4, fourth groove;5, first partition;6, second partition;7, third partition;8, inclined surface;9, first protrusion;10, fifth groove;11, second protrusion;12, sixth groove;13, seventh groove;14, third protrusion;15, lead-out wire. Specific implementation
[0031] The technical solutions in the embodiments of the utility model will be apparently and completely described in combination with the drawings in the embodiments of the utility model, obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. The description of at least one exemplary embodiment is actually only illustrative, rather than any limitation on the utility model and its application or use. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0032] In the description of the utility model, it is understood that the orientation words such as 'front, back, upper, lower, left, right', 'transverse, vertical, perpendicular, horizontal' and 'top, bottom' and the like indicated orientation or position relationship usually is based on the orientation or position relationship shown in the drawing, only for the convenience of describing the utility model and simplifying the description, under the condition of not making the opposite statement, these orientation words do not indicate and imply that the indicated device or element must have a particular orientation or be constructed and operated in a particular orientation, therefore, it can not be understood as the limitation on the protection scope of the utility model;The orientation words 'in, out' refer to the inside and outside relative to the contour of each component.
[0033] For ease of description, spatial relative terms, such as "above", "upper", "top", "bottom", and the like, can be used herein for ease of description to describe the positional relationship between one device or feature and another device or feature as shown in the drawings. It should be understood that the spatial relative terms are intended to include different orientations in use or operation in addition to the orientation of the device described in the drawings. For example, if the device in the drawing is inverted, the device described as "above" or "above" the other device or structure will be positioned "below" or "below" the other device or structure. Thus, the exemplary term "above" can include both "above" and "below" orientations. The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein are interpreted accordingly.
[0034] In addition, it should be noted that the use of the words "first", "second" and the like to define parts is only for the convenience of distinguishing the corresponding parts, and the above words have no special meaning unless otherwise stated, and therefore cannot be understood as limiting the scope of protection of the utility model.
[0035] For reference Figure 1 As shown in the drawings, according to the embodiment of the utility model, a wire outlet clamp structure is provided, comprising: a main body, the main body is assembled on the motor shell, the main body has a first end towards the extension end of the motor rotating shaft, a first groove is arranged on the first end, the extension direction of the first groove matches the motor shell, the first groove penetrates the main body, along the extension direction of the first groove, the groove bottom of the first groove is arc-shaped, the opening of the arc shape faces away from the extension end of the motor rotating shaft, and the motor shell and the main body are connected through the first groove. In this technical solution, along the extension direction of the first groove, the groove bottom of the first groove is arc-shaped, the opening of the arc shape faces away from the extension end of the motor rotating shaft, and the motor shell and the main body are connected through the first groove. When the water droplets on the motor flow to the first groove along the motor shell, the water flow in the first groove can be quickly discharged due to the arc-shaped groove bottom of the first groove, water accumulation on the wire outlet clamp is avoided, and the water seepage probability of the wire outlet clamp is reduced.
[0036] Further, the motor shell and the main body are connected through the first groove. Generally, the wire outlet clamp is fixed through the motor shell and the motor end cover. In the wire outlet clamp structure of the utility model, the motor shell is clamped into the first groove, so that the shell and the wire outlet clamp are more sealed, water seepage is avoided, and the extension direction of the first groove matches the motor shell. When the motor shell is a cylinder, the extension direction of the first groove is also arc-shaped, which is to better fit the motor shell, that is, to reduce the length of the wire outlet clamp along the radial direction of the shell and to reduce the volume of the wire outlet clamp.
[0037] In the cable outlet clamp structure of this utility model, when the motor is used in an air conditioner, the direction of the extended end of the motor shaft is the top of the motor. Generally speaking, the cable outlet clamp is located on the lower side of the motor. Furthermore, the main body extends into the motor housing. The part of the main body extending into the motor housing can be encapsulated together with the stator. In order to improve the stability of the cable outlet clamp, multiple protruding structures can be set along the circumference of the stator at the end of the main body extending into the motor housing, thereby increasing the fixing area of the cable outlet clamp and ensuring the stability of the cable outlet clamp.
[0038] In some embodiments, along the extending direction of the first groove, a first partition 5 is provided at the bottom of the first groove, dividing the first groove into a third groove 3 and a fourth groove 4. The bottom of the third groove 3 is arc-shaped, and the arc-shaped opening faces away from the protruding end of the motor shaft. The motor housing and the main body are connected through the fourth groove 4. In this technical solution, see [reference needed]. Figure 8 As shown, the first partition 5 divides the first groove into two slots. The motor housing is installed in the fourth groove 4. Preferably, the fourth groove 4 is located on the upper surface of the main body. Of course, the fourth groove 4 can also be provided on the side wall and lower end of the main body. This makes it easier for the fourth groove 4 to fit with the motor housing. Furthermore, the width of the fourth groove 4 is equal to the thickness of the motor housing. The motor housing and the fourth groove 4 are fitted with an interference fit to further improve the sealing between the outlet clamp and the motor housing. When water flows down the motor, the water will flow into the third groove 3 through the first partition 5. Under the action of the arc-shaped surface at the bottom of the third groove 3, the water flows out quickly, avoiding water accumulation in the outlet clamp.
[0039] See also Figures 1 to 4 As shown, the wire clamp structure of this utility model is matched with the injection-molded stator, and the wire clamp is divided into upper and lower parts. The upper part matches the injection-molded stator, and the lower part matches the end cover. When assembling the whole machine, the end cover is pressed into the stator to fix the wire clamp at the same time.
[0040] In other words, in the cable outlet clamp structure of this utility model, the upper cable outlet clamp structure is divided into an internal part of the motor and an external part. The external part is designed with a pointed third groove 3. The external third groove 3 of the upper cable outlet clamp fits with the outer circle of the injection-molded stator. The third groove 3 should extend a certain length beyond the surface of the injection-molded stator and have an arc or angle. The arc or angle should be as large as possible to ensure that the water flow can be effectively discharged, avoid water droplet accumulation, and further reduce the chance of water leakage. The external water guide plate should be considered for the overall assembly of the air conditioner and should not be too long. It is used to block and guide water dripping inside the air conditioner. The guide groove is not limited to the pointed "︿" structure, but can be selected from similar structures such as the arc-shaped "︵".
[0041] The inner part of the upper wire outlet clamp is designed with a fourth groove 4, and the fourth groove 4 forms a "ji" - shaped step structure on the main body to prevent water droplets from entering the interior of the motor.
[0042] In some embodiments, the main body includes a first part 1 and a second part 2. The first groove is provided on the first part 1. At one end of the second part 2 facing the first part 1 and at one end of the first part 1 facing the second part 2, there are second grooves. Along the wire - outlet direction of the wire outlet clamp structure, the second grooves penetrate through the first part 1 and the second part 2, and the lead - out wire of the motor is led out from the second grooves. In this technical solution, referring to Figure 6 As shown, the main body is divided into a first part 1 and a second part 2. By providing second grooves on the end faces of the first part 1 and the second part 2 facing each other, along the wire - outlet direction, the second grooves penetrate through the main body, so that the two second grooves enclose to form a wire - outlet channel, and the motor lead - out wire is led out from the wire - outlet channel.
[0043] In some embodiments, at one end of the second part 2 facing the first part 1, there are multiple second protrusions 11, and at one end of the first part 1 facing the second part 2, there are multiple seventh grooves 13. The second protrusions 11 and the seventh grooves 13 correspond to each other one by one, and the second protrusions 11 and the seventh grooves 13 match each other. In this technical solution, referring to FIGS. 5 and Figure 5 As shown, the first part 1 and the second part 2 are fixed by the cooperation of the second protrusions 11 and the seventh grooves 13. Preferably, the arrangement of the second protrusions 11 and the seventh grooves 13 should avoid the second grooves, so as to ensure that the second protrusions 11 and the seventh grooves 13 do not affect the normal wire outlet.
[0044] In some embodiments, multiple second partitions 6 are arranged at intervals in the second groove of the second part 2. Taking the direction perpendicular to the wire - outlet direction of the wire outlet clamp structure as the width direction of the second groove, along the width direction of the second groove, the multiple second partitions 6 are arranged at intervals. The second partitions 6 extend along the wire - outlet direction of the wire outlet clamp structure, one end of the second partition 6 is arranged at the bottom of the second groove, and the lead - out wire 15 is fixed between the other end of the second partition 6 and the bottom of the first part 1. In this technical solution, referring to Figure 2As shown, a plurality of second partitions 6 are arranged in the second groove of the second part 2, and the second groove is divided by the second partitions 6. Specifically, the number of the second partitions 6 is determined according to the number of the connecting wires in the motor wire harness. Each connecting wire is fixed between the second partition 6 and the groove bottom of the second groove, so as to avoid the disorder of the connecting wires in the wire harness and ensure the stability of the lead-out wires. Since the thickness of the second partition 6 is limited, that is, the lead-out channel formed between each second partition 6 and the groove bottom of the second groove is limited, and the thickness of the second partition 6 can match the outer diameter of the lead-out wire, so as to further ensure the sealing of the lead-out wire and avoid the influence of water flow on the lead-out wire.
[0045] That is, the wire outlet clamp has a certain groove space between the lead-out wires, and the lead-out wire protection groove is formed after cooperation, so as to avoid water flow entering the motor. The lead-out wire should be matched with the wire outlet clamp well, and should not be loose.
[0046] In some embodiments, a plurality of third partitions 7 are arranged in the second groove of the first part 1, and the width direction of the second groove is perpendicular to the lead-out direction of the wire outlet clamp structure. The third partitions 7 are arranged in the width direction of the second groove, and the third partitions 7 extend in the lead-out direction of the wire outlet clamp structure. When the first part and the second part are assembled, any second partition 6 is located between two adjacent third partitions 7. In this technical solution, see Figure 6 and Figure 4 As shown, a plurality of third partitions 7 are arranged in the second groove of the first part 1, and when the first part and the second part are assembled, any second partition 6 is located between two adjacent third partitions 7, that is, a nested plug-in structure is formed between the second partition 6 and the third partition 7, so as to further improve the sealing of the lead-out channel of the wire outlet clamp.
[0047] In some embodiments, the second partition 6 and the second groove side wall of the second part 2 are connected by a first protrusion 9, and the height of the first protrusion 9 is less than the height of the second partition 6. The third partition 7 is provided with a sixth groove 12, and the sixth groove 12 penetrates the second partition 6 in the thickness direction of the second partition 6, and the sixth groove 12 matches the first protrusion 9. In this technical solution, see Figure 5 and Figure 4As shown, by the first protrusion 9, the water flow between the two adjacent second partitions 6 can be blocked. The first protrusion 9 forms a multiple blocking structure while the third partition 7 blocks the two adjacent second partitions 6. Since the second part 2 is below the first part 1, water is easy to flow into the motor through the space between the two adjacent second partitions 6 in the second part 2. The multiple blocking structure further improves the sealing performance of the wire clamp to prevent water from flowing into the motor.
[0048] In some embodiments, in combination with Figure 6 As shown, the first protrusion 9 can adopt an inverted trapezoidal structure, that is, the end of the first protrusion 9 connecting the bottom of the second groove is a short side. Through such a structure, water is further prevented from flowing into the motor between the two adjacent second partitions 6.
[0049] That is, the upper and lower parts of the wire clamp are designed with a nested plug-in groove. The lower half of the wire clamp is designed with a first protrusion 9 that penetrates through the entire lower half of the wire clamp. The first protrusion 9 has a certain inclination angle and is designed as an inverted inclined structure with an obtuse angle. The upper half of the wire clamp is provided with a sixth groove 12 at the corresponding position, which forms a nested engagement structure after assembly with the lower half of the wire clamp. The overall sealing performance is improved. Water droplets can be effectively prevented from flowing into the motor cavity along the wire holes.
[0050] In some embodiments, a third protrusion 14 is arranged between the two adjacent third partitions 7, which is close to the motor housing, and the height of the third protrusion 14 is less than the height of the third partition 7 in the direction of the groove depth of the second groove. In this technical solution, in combination with Figure 7 and Figure 5 As shown, when the lead-out wire is led out, the lead-out wire forms a stepped wire-out structure between the second partition 6 and the bottom of the second groove, which can ensure the stability of the lead-out wire and prevent water from seeping in.
[0051] The wire clamp and the outer diameter of the injection molded stator should be designed to fit closely to further improve the waterproof capability and stability of the structure. Further, the wire clamp can be designed to match the number of wire harness holes according to the number of leads of the used model, and the size of the wire harness hole is designed according to the wire gauge of the used wire harness, which further improves the assembly tightness and fixing stability. Further, the wire pressing structure of the upper and lower parts of the wire clamp should have a corresponding third protrusion 14, so that the wire harness presents a Z-shaped wiring inside the wire groove. This wiring method can prevent the power cord from sliding inside the wire clamp, effectively improve the fastening capability of the wire clamp to the wire harness, and at the same time prevent water droplets from flowing into the motor along the power cord.
[0052] In some embodiments, a fifth groove 10 is provided at the other end of the second partition 6. The fifth groove 10 extends along the wire exit direction of the wire exit clamp structure, and a wire guide channel is formed between the fifth groove 10 and the bottom of the second groove of the first part 1. In this technical solution, see [reference needed]. Figure 3 As shown, a lead wire channel is formed between the fifth groove 10 and the bottom of the second groove of the first part 1, which makes the lead wire channel fit the lead wire better, improves the sealing between the lead wire and the lead wire clamp, and facilitates the assembly of the lead wire.
[0053] In some embodiments, the bottom of the second groove of the second portion 2 has an inclined surface 8. Along the cable outlet direction of the cable clamp structure, the second partition 6 is located between the inclined surface 8 and the motor housing. Furthermore, along the direction of the second portion 2 away from the motor housing, the inclined surface 8 is inclined away from the first portion 1. In this technical solution, see [reference needed]. Figure 4 and As shown, the main body has a wire outlet away from the motor housing. The inner bottom surface of the wire outlet is an inclined surface 8. Along the wire outlet direction, the inclined surface 8 is inclined downward. The second partition 6 is located between the inclined surface 8 and the stator, thereby preventing water from entering the wire clamp through the wire outlet.
[0054] In other words, the opening of the cable clamp is designed with an inclined structure. The opening of the lower cable clamp is inclined vertically downward at a certain angle of 10°~30° along the mating surface of the cable clamp, so as to avoid water accumulation at the opening of the cable clamp and effectively prevent splashed water droplets from flowing into the motor from the cable outlet.
[0055] Because the installation space for the motor in the cabinet is limited, and the motor is installed vertically, the existing waterproof structure at the motor outlet occupies a large space and is prone to interference with the assembly of other components such as the fan blades. The cable clamp structure of this invention allows for miniaturization of the protective clamp, reducing the installation space occupied by the sheath structure while improving protective capabilities.
[0056] This utility model's cable clamp structure is designed to protect the motor cable outlet from water ingress. Through the cooperation of the cable clamp, injection-molded stator, and end cap, it effectively diverts and blocks various unnecessary water droplets and flows, such as condensate and cleaning water, generated during the use and cleaning of the air conditioner. This solves the problem of water ingress at the motor leads of air conditioner cabinet indoor units in the industry, ensuring more stable and reliable motor operation and extending the motor's service life.
[0057] This utility model also provides a motor, including the above-described wire clamp structure.
[0058] The motor of the utility model, its outgoing line clamp and stator cooperation structure, through outgoing line place combination design, effective solution shaft extension vertical upward installation time, vertical direction condensation water drop infiltrate motor lead wire place problem;Optimize the cooperation structure, effectively promote outgoing line clamp place the protection ability of lateral water flow invasion, avoid air conditioner use, cleaning time motor outgoing line place water in.
[0059] The utility model discloses a motor assembly outgoing line clamp's step is:
[0060] First step: through injection mold and make into shape to the upper and lower line clamp;
[0061] Second step: through injection mold and make into injection molded stator to the winding stator;
[0062] Third step: through servo press and make into an organic whole to the upper and lower line clamp, motor wire harness, injection molded stator, end cover.
[0063] The utility model also provides a kind of air conditioner, including above-mentioned motor.
[0064] The air conditioner of the utility model, through the cooperation of each component of motor, the clean water, condensate water and other types of unnecessary water droplets, water flow generated in the use process of air conditioner are effectively drained and blocked, solve the motor water inlet problem of air conditioner cabinet type indoor unit in industry.
[0065] It is easy for those skilled in the art to understand that the advantageous technical features of the above-mentioned methods can be freely combined and added without conflict.
[0066] The above is only the preferred embodiment of the utility model, and does not limit the utility model, and any modification, equivalent replacement and improvement within the spirit and principle of the utility model should be included in the protection scope of the utility model. The above is only the preferred embodiment of the utility model, and it should be pointed out that, for ordinary skilled in the art, without departing from the technical principle of the utility model, a number of improvements and variations can be made, and these improvements and variations should be regarded as the protection scope of the utility model.
Claims
1. A wire outlet clip structure, characterized by: The utility model relates to a motor outgoing line clamp structure, including: The main body is assembled on the motor casing, the main body has the first end to the protruding end of motor rotating shaft, is provided with the first recess on the first end, the extension direction of first recess matches with the motor casing, the first recess penetrates the main body, along the extension direction of first recess, the groove bottom of first recess is arc, the opening of arc faces away from the protruding end of motor rotating shaft, and the motor casing is connected with the main body through the fourth recess (4).
2. The outlet clip structure according to claim 1, wherein: Along the extension direction of first recess, the groove bottom of first recess is provided with first partition (5), and the first recess is divided into third recess (3) and fourth recess (4), the groove bottom of third recess (3) is arc, the opening of arc faces away from the protruding end of motor rotating shaft, and the motor casing is connected with the main body through the fourth recess (4).
3. The outlet clip structure according to claim 1, wherein: The main body includes first part (1) and second part (2), the first recess is arranged on the first part (1), and the second part (2) is provided with the second recess to one end of the first part (1) and one end of the first part (1) to the second part (2), along the outgoing line direction of outgoing line clamp structure, the second recess penetrates the first part (1) and the second part (2), and the outgoing line of motor is led out from the second recess.
4. The outlet clip structure according to claim 3, wherein: The second part (2) is provided with a plurality of second protrusions (11) to one end of the first part (1), and the first part (1) is provided with a plurality of seventh recesses (13) to one end of the second part (2), the second protrusion (11) corresponds to the seventh recess (13), and the second protrusion (11) matches with the seventh recess (13).
5. The outlet clip structure according to claim 3, wherein: The second recess of the second part (2) is provided with a plurality of second partitions (6) at intervals, the width direction of the second recess is perpendicular to the outgoing line direction of outgoing line clamp structure, a plurality of second partitions (6) are arranged at intervals along the width direction of the second recess, the second partition (6) extends along the outgoing line direction of outgoing line clamp structure, one end of the second partition (6) is arranged on the groove bottom of the second recess, and the outgoing line (15) is fixed between the other end of the second partition (6) and the groove bottom of the first part (1).
6. The outlet clip structure according to claim 5, wherein: The second recess of the first part (1) is provided with a plurality of third partitions (7) at intervals, the width direction of the second recess is perpendicular to the outgoing line direction of outgoing line clamp structure, a plurality of third partitions (7) are arranged at intervals along the width direction of the second recess, the third partition (7) extends along the outgoing line direction of outgoing line clamp structure, and when the first part is assembled with the second part, any second partition (6) is located between adjacent two third partitions (7).
7. The outlet clip structure according to claim 6, wherein: The second partition plate (6) is connected with the second recess sidewall of the second part (2) and adjacent two second partition plates (6) through a first protrusion (9). The height direction is the groove depth direction of the second recess. The height of the first protrusion (9) is less than the height of the second partition plate (6). The third partition plate (7) is provided with a sixth recess (12). The sixth recess (12) penetrates the second partition plate (6) along the thickness direction of the second partition plate (6). The sixth recess (12) is matched with the first protrusion (9).
8. The outlet clip structure according to claim 6, wherein: Adjacent two third partition plates (7) are provided with a third protrusion (14). The third protrusion (14) is arranged close to the motor casing. The height of the third protrusion (14) is less than the height of the third partition plate (7) along the height direction of the groove depth direction of the second recess.
9. The outlet clip structure of claim 5, wherein: The other end of the second partition plate (6) is provided with a fifth recess (10). The fifth recess (10) extends along the wire outlet direction of the wire clamp structure. The fifth recess (10) and the groove bottom of the second recess of the first part (1) form a lead wire passage.
10. The outlet clip structure of claim 5, wherein: The groove bottom of the second recess of the second part (2) has an inclined surface (8). The second partition plate (6) is located between the inclined surface (8) and the motor casing along the wire outlet direction of the wire clamp structure. The inclined surface (8) is inclined away from the first part (1) along the direction away from the motor casing of the second part (2).
11. An electric machine characterized by The wire clamp structure comprises the wire clamp structure according to any one of claims 1 to 10.
12. An air conditioner characterized by comprising: The motor comprises the wire clamp structure according to claim 11.