Air conditioner base and air conditioner
By using a crank-connecting rod structure and a slot pin design, the problems of laborious transmission and system complexity of the rotating chassis of the air conditioner base are solved, achieving stable and safe intermittent rotation and personalized air guiding effect.
Patent Information
- Application Number
- CN202423218065.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2034-12-25
AI Technical Summary
The existing rotating chassis drive mechanism of the air conditioner base is laborious to transmit power and cannot achieve intermittent transmission, which increases the complexity of the system and the space occupied, and affects the aesthetics and safety.
The rotating chassis is driven by a crank-connecting rod structure. The intermittent rotation of the rotating chassis is achieved through the periodic motion of the crank-connecting rod structure. Combined with the design of the slot and pin, power transmission and stability are ensured.
It achieves stable and reliable intermittent rotation of the rotating chassis, simplifies the structure, reduces the failure rate, improves safety and aesthetics, and provides personalized airflow effects.
Smart Images

Figure CN223826473U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to air conditioning technical field especially, relate to a kind of air conditioner base and air conditioner. BACKGROUND
[0002] A kind of air conditioner cabinet of existing, including base and the cabinet main body being set on base, the cabinet can realize the up and down air outlet of cabinet, base.The base of this cabinet includes base and rotating bottom disc, rotating bottom disc is rotatably arranged on base, rotating bottom disc is provided with decorative plate on the periphery, base side wall is provided with air outlet grille, rotating bottom disc works and changes air direction, to realize different angle air supply, meet the needs of user.
[0003] Reference Figure 1 , the drive mechanism of rotating bottom disc of existing generally includes motor and rack, rack is annularly arranged on rotating bottom disc, gear is driven by motor, gear is engaged with rack to realize the rotation of rotating air deflector, to change wind direction.This transmission mode due to the smaller radius of gear, shorter force arm, lead to transmission effort, and the continuity of transmission mechanism makes it cannot realize intermittent transmission.Therefore, it is necessary to realize anti-pinch function by means of photoelectric switch, which further increases the complexity of the whole air conditioning system.Due to the increase of photoelectric switch at the bottom of bottom disc, bottom disc is lifted by at least 30mm, which not only affects the overall appearance of bottom disc, but also adversely affects the appearance and space occupation of air conditioner.
[0004] Therefore, the air conditioner base needs to be improved to overcome the defects of the prior art. INVENTION CONTENTS
[0005] To overcome the problems in the related art, one of the purposes of the utility model is to provide an air conditioner base, which drives the rotation of the rotating bottom disc through a crank and connecting rod structure, can realize intermittent control of the rotation of the rotating bottom disc, and the structure is reliable and stable, which can prolong the service life of the base.
[0006] An air conditioner base, comprising a base;
[0007] A rotating bottom disc is provided on the base, and the rotating bottom disc is pivotally connected to the base.
[0008] Further comprising a drive system, the drive system comprises a driving device and a crank and connecting rod structure, the driving device is fixed on the base, the crank and connecting rod structure is provided with a first input end and a first output end, and the output end of the driving device is fixedly connected with the first input end.
[0009] The driving device drives the movement of the crank and connecting rod structure, so that the first output end of the crank and connecting rod structure is periodically connected with the rotating bottom disc, thereby driving the rotation of the rotating bottom disc.
[0010] During use, the driving device (motor) drives the crank of the crank and connecting rod structure to rotate one circle around the motor (rotation center). When the motor starts, its output end drives the crank of the crank and connecting rod structure to start rotating. With the rotation of the crank, the first output end not only rotates around the rotation center of the motor, but also produces displacement along the diameter direction.
[0011] When the first output end moves to the clamping position of the rotating base, the two are tightly combined, and the movement of the crank and connecting rod structure is converted into the rotating power of the rotating base to drive the base to rotate by a certain angle.
[0012] Subsequently, the first output end continues to move and is disengaged from the clamping of the rotating base, and the base stops rotating due to the loss of power and maintains the current position.
[0013] Through the continuous rotation of the motor, the above process is periodically repeated to realize the intermittent rotation of the rotating base, thereby adjusting the direction of the air outlet of the air conditioner to achieve the expected air guiding effect. By adjusting the rotation speed of the motor, the stopping time and rotation speed of the rotating base can be accurately controlled to meet the air guiding needs in different scenes.
[0014] In particular, when it is necessary to prevent accidental touch of the fan blades by the user, a slower rotation speed and a longer stopping time can be set to effectively realize the anti-pinch hand function and improve the use safety.
[0015] The air conditioner base of the present application can flexibly adjust the direction of the air outlet as needed to provide more personalized comfortable experience for the user. By accurately controlling the movement of the rotating base, the risk of pinching hands that may exist in traditional air conditioner bases is effectively avoided, and it is particularly suitable for use in families with children or pets. The user can realize different air guiding effects by simply adjusting the rotation speed of the motor according to the actual needs, and the operation is simple and the experience is upgraded.
[0016] In the preferred technical scheme of the present application, the rotating base comprises a base body, a connecting shaft is arranged in the middle of the base body, the axis of the connecting shaft coincides with the axis of the base body, and the bottom of the connecting shaft is pivotally connected with the base.
[0017] The base body is pivotally connected with the base through the bottom of the connecting shaft, so that the rotating base can rotate on the base.
[0018] In the preferred technical scheme of the present application, a plurality of connecting grilles are arranged on the top of the base body, the connecting grilles are uniformly distributed on the base body along the circumferential direction of the base body, one end of each connecting grille extends to the center of the base body, a connecting sleeve is fixed at the center of the base body, and the connecting sleeve is fixedly connected with the connecting shaft.
[0019] The crank connecting rod structure comprises a crank and a push rod, one end of the crank is pivotally connected with the push rod, and the opposite end is fixedly connected with the output end of the driving device; one end of the push rod is provided with a clamping groove, the clamping groove forms the first output end; the end of the push rod away from the clamping groove penetrates through the connecting sleeve; the top of the chassis body is provided with a plurality of insertion pins; the driving device drives the crank to rotate, so that the crank drives the push rod to move, thereby periodically clamping the insertion pins in the clamping groove.
[0020] The crank connecting rod structure is optimized. The crank connecting rod structure is composed of a crank and a push rod. One end of the crank is pivotally connected with the push rod, and the opposite end is fixedly connected with the output end of the driving device (such as a motor). This design enables the driving device to efficiently transmit power to the push rod.
[0021] One end of the push rod is provided with a clamping groove, which constitutes the first output end of the crank connecting rod structure. The end of the push rod away from the clamping groove penetrates through the connecting sleeve, so that the push rod can move freely in the connecting sleeve. The top of the chassis body is provided with a plurality of insertion pins, which cooperate with the clamping groove to achieve periodic clamping of the push rod and the chassis body.
[0022] When the driving device starts, it drives the crank to rotate. The rotation of the crank drives the push rod to move in the connecting sleeve. When the clamping groove of the push rod moves to a position opposite to a certain insertion pin, the clamping groove will clamp the insertion pin, thereby driving the chassis body to rotate. With the continuous rotation of the crank, the clamping groove and the insertion pin are disengaged, and the chassis body stops rotating. This process is repeated periodically to achieve intermittent rotation of the rotating chassis.
[0023] The design of the connecting shaft coinciding with the axis of the chassis body, and the reinforcing effect of the connecting grid and the connecting sleeve, significantly improves the stability of the rotating chassis during rotation. The clamping design of the clamping groove and the insertion pin is simple and effective, ensuring reliable connection between the push rod and the chassis body, and reducing failures caused by poor clamping. The design of the connecting grid not only enhances the structural strength, but also achieves more uniform air guiding effect through its circumferential uniformity.
[0024] In the preferred technical solution of the present application, a plurality of insertion pins are circumferentially distributed on the top of the chassis body, and each insertion pin is located at the end of a connecting grid.
[0025] In the preferred technical solution of the present application, the connecting grid is provided with 4-12 strips on the top of the chassis body.
[0026] A plurality of latches are evenly distributed circumferentially on the top of the chassis body, which ensures that the rotating process of the lever can be uniformly clamped with each latch, thereby achieving smooth rotation of the rotating chassis. Each latch is located at the end of a connection grid, which enhances the connection strength between the latches and the chassis body, and also makes the latches more visually concealed, improving the overall aesthetics. The connection grid is provided with 4-12 strips on the top of the chassis body, which ensures that the chassis body has sufficient structural strength and provides enough latch mounting positions, thereby achieving the effect of periodically driving the rotating chassis to rotate.
[0027] In actual application, an appropriate number of connection grids can guide air flow and achieve more uniform air guiding effect. Meanwhile, the spacing and angle of the grids can be adjusted as needed to meet different air guiding requirements.
[0028] In the preferred technical solution of the present application, the clamping groove is a U-shaped groove, and the depth of the clamping groove is 3cm-12cm.
[0029] The clamping groove is designed as a U-shaped groove. The shape of the U-shaped groove has good clamping stability and guiding property, which can ensure that the lever is accurately and stably clamped with the latch during movement, and facilitate the entry and disengagement of the latch.
[0030] The depth of the clamping groove is controlled within the range of 3cm-12cm. This depth range not only ensures that the clamping groove has enough space to securely clamp the latch, but also avoids excessive depth that causes excessive resistance or jamming when the lever moves.
[0031] By reasonably controlling the depth of the clamping groove, it not only ensures that the lever has enough driving force to clamp the latch during movement, but also avoids the increase of moving resistance caused by excessive depth, making the movement of the lever more relaxed and flexible.
[0032] In the preferred technical solution of the present application, a decorative plate is provided on the periphery of the rotating chassis, and air outlet grilles are provided on the decorative plate.
[0033] A decorative plate is provided on the periphery of the rotating chassis, which not only beautifies the appearance, but also protects the mechanical structure inside the rotating chassis from direct contact and damage by external objects. The air outlet grilles are carefully designed on the decorative plate, which are distributed in a specific pattern and arrangement, ensuring smooth air circulation and guiding airflow to blow out in a more uniform and comfortable way, improving the user's experience.
[0034] The second purpose of the present application is to provide an air conditioner, which comprises a machine body and an air conditioner base as described above, and the machine body is arranged on the air conditioner base.
[0035] In the preferable technical scheme of the utility model, the machine body comprises a refrigeration system and a shell, the shell is arranged at the periphery of the refrigeration system, and a rotating bottom disc is arranged on the shell.
[0036] The air conditioner can easily adjust the angle and direction of the machine body according to needs through the rotating function of the air conditioner base, so that more flexible and comfortable air conditioner use experience is realized. Through the firm structure and reasonable design of the air conditioner base, the stability of the machine body during rotation is ensured, and the generation of shaking and noise is reduced.
[0037] The utility model discloses a beneficial effect that:
[0038] The utility model provides a kind of air conditioner base, which comprises base and drive system.Rotating bottom disc is provided on base, and rotating bottom disc is pivoted with base.Drive system includes driving device and crank connecting rod structure, and driving device is fixed on base, and first input and first output are provided on crank connecting rod structure, and the output of driving device is fixedly connected with first input.Driving device drives the movement of crank connecting rod structure, so that the first output of crank connecting rod structure is periodically connected with rotating bottom disc, to drive rotating bottom disc to rotate.The base is used, driving device drives the reciprocating motion of crank connecting rod, so that the first output of crank connecting rod structure is periodically connected with rotating bottom disc, and connecting piece for clamping with the first output of crank connecting rod structure can be provided on rotating bottom disc, so that the two can be clamped with each other.After the clamping of crank connecting rod structure and rotating bottom disc, crank connecting rod structure drives rotating bottom disc to rotate, to realize the periodic rotation of rotating bottom disc.The base realizes the controllable intermittent rotation of rotating bottom disc by the cooperation of driving device and crank connecting structure, can simplify the overall structure of base, reduce production and maintenance cost.Moreover, the control mode of crank connecting structure is high in stability and good in reliability, reduces failure, and improves user experience.
[0039] The application also provides an air conditioner comprising the air conditioner base, which rotates the machine body of the air conditioner through the rotating bottom disc on the air conditioner base, is high in use stability, is not prone to failure, has lower production cost and higher market competitiveness. BRIEF DESCRIPTION OF DRAWINGS
[0040] Figure 1 It is the schematic view of the existing drive mechanism provided in the embodiment of the utility model, which comprises motor and rack rotating bottom disc;
[0041] Figure 2 It is the perspective view of air conditioner base provided in the embodiment of the utility model;
[0042] Figure 3 It is the schematic view of air conditioner base when slot is inserted into bolt in the embodiment of the utility model;
[0043] Figure 4 is a schematic view of the air conditioner base when the clamping groove is separated from the latch provided in the embodiments of the present application
[0044] Figure 5 is a perspective view of the air conditioner provided in the embodiments of the present application.
[0045] Reference signs:
[0046] 1, rotating base; 11, gear; 12, rack; 13, decorative plate; 14, air outlet grille; 15, connecting grille; 151, connecting sleeve; 16, latch; 2, driving device; 3, crank connecting rod structure; 31, crank; 32, lever; 321, clamping groove; 4, base; 100, machine body; 110, refrigeration system; 120, shell; DETAILED DESCRIPTION
[0047] The preferred embodiments of the present application will be described in more detail below with reference to the accompanying drawings. Although the preferred embodiments of the present application are shown in the drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the embodiments described herein. On the contrary, these embodiments are provided to make the present application more thorough and complete, and to convey the scope of the present application to those skilled in the art.
[0048] A conventional air conditioner cabinet includes a base and a cabinet main body arranged on the base. The cabinet can achieve up and down air outlet of the cabinet body and the base. The base of the cabinet includes a base and a rotating base. The rotating base is rotatably arranged on the base. A decorative plate is arranged on the periphery of the rotating base. An air outlet grille is arranged on the side wall of the base. The rotating base changes the air outlet direction when working, thereby achieving different angle air supply to meet the needs of users.
[0049] However, the driving mechanism of the conventional rotating base generally includes a motor and a rack. The rack is arranged in a ring shape on the rotating base. The motor drives the gear, and the gear is engaged with the rack to achieve rotation of the rotating air deflector, thereby changing the air direction. This transmission mode is laborious due to the small radius and short force arm of the gear, and the continuity of the transmission mechanism makes it impossible to achieve intermittent transmission. Therefore, a photoelectric switch is needed to realize the anti-pinch function, which further increases the complexity of the entire air conditioning system. Due to the increase of the photoelectric switch at the bottom of the base, the overall base will be lifted by at least 30 mm, which not only affects the overall appearance of the base, but also adversely affects the aesthetics and space occupation of the air conditioner.
[0050] Based on this, the present application provides an air conditioner base.
[0051] Embodiment 1
[0052] Referring to Figures 2-4The embodiment provides an air conditioner base, which comprises a base 4;
[0053] A rotating base 1 is arranged on the base 4 and is pivotally connected to the base 4.
[0054] A driving system is further arranged, which comprises a driving device 2 and a crank linkage structure 3.
[0055] The driving device 2 drives the crank linkage structure 3 to move, so that the first output end of the crank linkage structure 3 is periodically connected to the rotating base 1, thereby driving the rotating base 1 to rotate.
[0056] During use, the driving device 2 (motor) drives the crank 31 of the crank linkage structure 3 to rotate one circle around the motor (rotation center). When the motor is started, the output end drives the crank 31 of the crank linkage structure 3 to start rotating. With the rotation of the crank 31, the first output end not only rotates around the rotation center of the motor, but also produces displacement along the diameter direction.
[0057] When the first output end moves to the clamping position of the rotating base 1, the two are closely combined, the movement of the crank linkage structure 3 is converted into the rotating power of the rotating base 1, and the base is driven to rotate by a certain angle.
[0058] Subsequently, the first output end continues to move and is disengaged from the clamping of the rotating base 1, the base stops rotating due to the loss of power and keeps the current position.
[0059] Through the continuous rotation of the motor, the above process is periodically repeated, the intermittent rotation of the rotating base 1 is realized, the direction of the air outlet of the air conditioner is adjusted, and the expected air guiding effect is achieved. By adjusting the rotation speed of the motor, the stopping time and the rotating speed of the rotating base 1 can be accurately controlled, and the air guiding demand in different scenes can be met.
[0060] In particular, when it is necessary to prevent the user from accidentally touching the fan blades, a slower rotating speed and a longer stopping time can be set to effectively realize the anti-pinch function and improve the use safety.
[0061] The air conditioner base of the application can flexibly adjust the direction of the air outlet as required, and provides more personalized comfortable experience for the user. By accurately controlling the movement of the rotating base 1, the risk of pinching the hand that may exist in the traditional air conditioner base is effectively avoided, and the air conditioner base is particularly suitable for use in families with children or pets. The user can realize different air guiding effects by simply adjusting the rotating speed of the motor according to the actual demand, the operation is simple, and the experience is upgraded.
[0062] Embodiment 2
[0063] This embodiment is based on the optimization of embodiment 1.
[0064] Referring to Figures 2-4 , this embodiment provides a specific embodiment of the crank connecting rod structure 3. In this embodiment, the rotating chassis 1 comprises a chassis body, a connecting shaft is arranged in the middle of the chassis body, the axis of the connecting shaft coincides with the axis of the chassis body, and the bottom of the connecting shaft is pivotally connected with the base 4.
[0065] The chassis body is pivotally connected with the base 4 through the bottom of the connecting shaft, so that the rotating chassis 1 can rotate on the base 4. Specifically, the bottom of the connecting shaft of the present application is pivotally connected with the base 4, that is, a bearing is arranged on the base 4, and the bottom of the connecting shaft passes through the bearing, thereby realizing the rotating function. The connecting shaft and the chassis body are fixed with each other, so that the rotation of the connecting shaft can drive the chassis body to rotate.
[0066] In this embodiment, the top of the chassis body is provided with a plurality of connecting grates 15, the connecting grates 15 are uniformly distributed on the chassis body along the circumference of the chassis body, and one end of each of the connecting grates 15 extends to the center of the chassis body; a connecting sleeve 151 is fixed at the center of the chassis body, and the connecting sleeve 151 is fixedly connected with the connecting shaft.
[0067] The crank connecting rod structure 3 comprises a crank 31 and a lever 32, one end of the crank 31 is pivotally connected with the lever 32, and the opposite end is fixedly connected with the output end of the driving device 2; one end of the lever 32 is provided with a clamping groove 321, and the clamping groove 321 forms the first output end; the end of the lever 32 away from the clamping groove 321 penetrates the connecting sleeve 151; the top of the chassis body is provided with a plurality of insertion pins 16, and the driving device 2 drives the crank 31 to rotate, so that the crank 31 drives the lever 32 to move, thereby making the clamping groove 321 periodically clamped on the insertion pin 16.
[0068] The present application optimizes the crank connecting rod structure 3. The crank connecting rod structure 3 is composed of a crank 31 and a lever 32. One end of the crank 31 is pivotally connected with the lever 32, and the opposite end is fixedly connected with the output end of the driving device 2 (such as a motor). This design enables the driving device 2 to efficiently transmit power to the lever 32.
[0069] One end of the poking rod 32 is provided with a clamping groove 321, which constitutes the first output end of the crank connecting rod structure 3. The end of the poking rod 32 away from the clamping groove 321 penetrates the connecting sleeve 151, so that the poking rod 32 can move freely in the connecting sleeve 151. The top of the chassis body is provided with a plurality of pins 16, which are matched with the clamping groove 321 to realize the periodic clamping of the poking rod 32 and the chassis body.
[0070] When the driving device 2 starts, it drives the rotation of the crank 31. The rotation of the crank 31 drives the movement of the poking rod 32 in the connecting sleeve 151. When the clamping groove 321 of the poking rod 32 moves to a position opposite to a certain pin 16, the clamping groove 321 will clamp the pin 16, thereby driving the rotation of the chassis body. With the continuous rotation of the crank 31, the clamping groove 321 and the pin 16 are disengaged, and the chassis body stops rotating. This process is repeated periodically to realize the intermittent rotation of the rotating chassis 1.
[0071] The design of the connecting shaft coinciding with the axis of the chassis body, and the reinforcing effect of the connecting grid 15 and the connecting sleeve 151, significantly improves the stability of the rotating chassis 1 during rotation. The clamping design of the clamping groove 321 and the pin 16 is simple and effective, which ensures the reliable connection between the poking rod 32 and the chassis body, and reduces the failure caused by poor clamping. The design of the connecting grid 15 not only enhances the structural strength, but also realizes more uniform air guide effect through its circumferential uniformity.
[0072] Further, a plurality of said pins 16 are circumferentially distributed on the top of said chassis body, and each said pin 16 is located at the end of one said connecting grid 15.
[0073] More specifically, said connecting grid 15 is provided with 4-12 on the top of said chassis body.
[0074] A plurality of pins 16 are circumferentially distributed on the top of the chassis body, which ensures that the poking rod 32 can be uniformly clamped with each pin 16 during rotation, thereby realizing the smooth rotation of the rotating chassis 1. Each pin 16 is located at the end of one connecting grid 15, which enhances the connection strength between the pin 16 and the chassis body, and also makes the pin 16 more visually concealed, improving the overall aesthetics. The connecting grid 15 is provided with 4-12 on the top of the chassis body, which guarantees that the chassis body has sufficient structural strength, and provides enough pin 16 mounting positions, thereby realizing the effect of periodically driving the rotation of the rotating chassis 1.
[0075] In practical applications, the optimal number of connecting grilles 15 can be selected according to specific usage requirements and the size of the air conditioning equipment. For example, for larger air conditioning equipment, a larger number of grilles can be selected to enhance structural stability; for smaller equipment, fewer grilles can be selected to reduce air flow resistance.
[0076] In practical applications, an appropriate number of connecting grilles 15 can guide air flow and achieve more uniform air guiding effects. At the same time, the spacing and angle of the grilles can also be adjusted as needed to meet different air guiding requirements.
[0077] In this embodiment, the clamping groove 321 is a U-shaped groove, and the depth of the clamping groove 321 is 3-12 cm. It should be noted that the depth of the clamping groove 321 refers to the distance between the opening of the clamping groove 321 and the bottom of the clamping groove 321.
[0078] The clamping groove 321 is designed as a U-shaped groove. The shape of the U-shaped groove has good clamping stability and guiding property, which can ensure that the lever 32 is accurately and stably clamped with the bolt 16 during movement, and facilitate the entry and exit of the bolt 16.
[0079] The depth of the clamping groove 321 is controlled within the range of 3-12 cm. This depth range not only ensures that the clamping groove 321 has enough space to securely clamp the bolt 16, but also avoids excessive depth that causes excessive resistance or jamming when the lever 32 moves.
[0080] By reasonably controlling the depth of the clamping groove 321, it not only ensures that the lever 32 has enough driving force to clamp the bolt 16 during movement, but also avoids the increase of moving resistance caused by excessive depth, making the movement of the lever 32 more relaxed and flexible.
[0081] Embodiment 3
[0082] This embodiment is an optimization based on embodiment 1.
[0083] Reference Figures 2-4 In this embodiment, the outer periphery of the rotating base 1 is provided with a decorative plate 13, and the decorative plate 13 is provided with an air outlet grille 14.
[0084] The outer periphery of the rotating base 1 is provided with a decorative plate 13, which not only beautifies the appearance, but also protects the mechanical structure inside the rotating base 1 from direct contact and damage by external objects. The decorative plate 13 is carefully designed with air outlet grilles 14, which can be distributed in a specific pattern and arrangement, ensuring smooth air circulation and guiding airflow to blow out in a more uniform and comfortable way, improving the user's experience.
[0085] Embodiment 4
[0086] Referring to Figures 2-5 The embodiment provides an air conditioner, which comprises a body 100 and an air conditioner base as described above, and the body 100 is arranged on the air conditioner base.
[0087] Specifically, the body 100 comprises a refrigeration system 110 and a shell 120, the shell 120 is arranged at the periphery of the refrigeration system 110, and an air outlet is arranged on the shell 120.
[0088] The refrigeration system 110 is the core component of the air conditioner, which comprises a compressor, a condenser, an evaporator, an expansion valve and other key components, and air refrigeration (or heating) is realized through cyclic work. The shell 120 is arranged at the periphery of the refrigeration system 110, which plays a role of isolating the internal and external environment, protecting the internal components and guiding the airflow. The air outlet is carefully designed on the shell 120 to ensure that the cold (or hot) air can be smoothly blown out, meeting the refrigeration (or heating) needs of the user.
[0089] Through the rotation function of the air conditioner base, the user can easily adjust the angle and direction of the body 100 according to the needs, realizing more flexible and comfortable air conditioner use experience. Through the above solid structure and reasonable design of the air conditioner base, the stability of the body 100 in the rotation process is ensured, and the generation of shaking and noise is reduced.
[0090] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of the components and steps described in these embodiments do not limit the scope of this application. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings. In the description of this application, it should be understood that the orientation or positional relationship indicated by directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" is usually based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this application; the directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.
[0091] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0092] In addition, it needs to be explained that the use of "first", "second" and the like to limit the parts is only for the convenience of distinguishing the corresponding parts, and the above words have no special meaning if there is no further declaration, so it cannot be understood as a limitation on the protection scope of the application. The above is only the preferred embodiment of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement and the like made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An air conditioner base, comprising a base (4), characterized in that: A rotating base (1) is provided on the base (4), and the rotating base (1) is pivotally connected to the base (4); It also includes a drive system, which includes a drive device (2) and a crank-connecting rod structure (3). The drive device (2) is fixed on the base (4). The crank-connecting rod structure (3) is provided with a first input end and a first output end. The output end of the drive device (2) is fixedly connected to the first input end. The driving device (2) drives the crank-connecting rod structure (3) to move, so that the first output end of the crank-connecting rod structure (3) is periodically connected to the rotating chassis (1), thereby driving the rotating chassis (1) to rotate.
2. The air conditioner base according to claim 1, characterized in that: The rotating chassis (1) includes a chassis body, a connecting shaft is provided in the middle of the chassis body, the axis of the connecting shaft coincides with the axis of the chassis body, and the bottom of the connecting shaft is pivotally connected to the base (4).
3. The air conditioner base according to claim 2, characterized in that: The base (4) is provided with a bearing, and the bottom of the connecting shaft passes through the bearing and is pivotally connected to the base (4).
4. The air conditioner base according to claim 2, characterized in that: The top of the chassis body is provided with multiple connecting grilles (15), which are evenly distributed on the chassis body along the circumference of the chassis body, and one end of each connecting grille (15) extends to the center of the chassis body; a connecting sleeve (151) is fixed at the center of the chassis body, and the connecting sleeve (151) is fixedly connected to the connecting shaft. The crank-connecting rod structure (3) includes a crank (31) and a lever (32). The first end of the crank (31) is pivotally connected to the lever (32), and the opposite end is fixedly connected to the output end of the drive device (2). One end of the lever (32) is provided with a slot (321), which forms the first output end. The end of the lever (32) away from the slot (321) passes through the connecting sleeve (151). The top of the chassis body is provided with multiple pins (16). The drive device (2) drives the crank (31) to rotate, so that the crank (31) drives the lever (32) to move, thereby causing the slot (321) to periodically engage with the pins (16).
5. The air conditioner base according to claim 4, characterized in that: The plurality of pins (16) are circumferentially distributed on the top of the chassis body, and each pin (16) is located at the end of a connecting grille (15).
6. The air conditioner base according to claim 4, characterized in that: The connecting grille (15) has 4-12 bars on the top of the chassis body.
7. The air conditioner base according to claim 4, characterized in that: The card slot (321) is a U-shaped groove, and the depth of the card slot (321) is 3cm-12cm.
8. The air conditioner base according to any one of claims 1-7, characterized in that: The outer periphery of the rotating chassis (1) is provided with a decorative panel (13), and the decorative panel (13) is provided with an air outlet grille (14).
9. An air conditioner, characterized in that, It includes a body (100) and an air conditioner base as described in any one of claims 1-7, wherein the body (100) is disposed on the air conditioner base.
10. The air conditioner according to claim 9, characterized in that: The body (100) includes a refrigeration system (110) and a shell (120). The shell (120) is located around the refrigeration system (110) and has an air outlet.