Air conditioner baffle fixing support
Patent Information
- Application Number
- CN202522195656.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-10-17
AI Technical Summary
[0004]该便于拆卸的空调挡水板,挡水板仅通过安装槽嵌合与封盖板间接限位固定,无主动夹紧结构,当挡水板磨损或安装间隙过大出现松动时,无法补偿间隙并施加持续夹持力,易在空调气流吹动下发生振动
该空调挡水板固定支架,通过设置的锁止机构,夹紧组件中两个转动座配合抵紧弹簧,可主动向挡水板边缘施加预紧力,使得挡水板安装后能获得持续的夹持力,即便挡水板长期使用出现轻微磨损或安装时存在微小间隙,抵紧弹簧的弹性作用力也能补偿间隙、维持夹持状态,避免挡水板因松动在气流吹动下发生振动。
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Figure CN224730807U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioning vapor-water separation technology, specifically an air conditioning baffle fixing bracket. Background Technology
[0002] During air conditioning operation, the evaporator produces water vapor due to temperature differences. If this water vapor is directly discharged with the airflow, it may affect the surrounding environment or equipment. The air conditioning baffle mounting bracket is an important component in the air conditioning system that assists in water vapor separation. It provides a stable installation base for the baffle, helping it to efficiently block water vapor in the airflow. This ensures that the air conditioning system maintains a good operating environment while achieving its temperature regulation function, making it an indispensable part of the normal operation of the air conditioning system.
[0003] Utility model patent CN219955624U discloses an easily detachable air conditioner water deflector. This easily detachable air conditioner water deflector includes a base frame, an mounting frame mounted on the upper part of the base frame, grooves on the upper and lower inner walls of the mounting frame, a sliding mounting plate slidably mounted on the inner wall of the grooves, a vibration component on the outer side of the mounting frame, a throttle fixedly mounted at the output end of a drive motor, a groove on the outer side of the mounting frame, a fixed rod fixedly mounted inside the groove, a movable slotted plate slidably mounted on the outer side of the fixed rod, and a buffer spring wound around the outer side of the fixed rod. This easily detachable air conditioner water deflector, through the drive motor, groove, fixed rod, throttle, movable slotted plate, buffer spring, groove, and sliding mounting plate, achieves automatic cleaning of water droplets adhering to the deflector, preventing damage caused by long-term water vapor adhesion, extending the service life of the deflector, and ensuring effective water vapor separation.
[0004] This easily detachable air conditioner water deflector is only indirectly fixed to the cover plate by fitting into a mounting groove, lacking an active clamping structure. When the water deflector wears or becomes loose due to excessive installation gaps, it cannot compensate for the gaps and apply continuous clamping force, making it prone to vibration under the airflow of the air conditioner. Therefore, we propose an air conditioner water deflector fixing bracket. Utility Model Content
[0005] The purpose of this utility model is to provide a fixing bracket for an air conditioner water baffle to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: An air conditioner water baffle fixing bracket includes a mounting frame, in which a plurality of water baffles are inserted. Locking mechanisms are rotatably connected at the top and bottom ends of the front and rear end faces of the mounting frame. The locking mechanisms are used to clamp and fix the plurality of water baffles. The locking mechanisms include a square rod rotatably connected between the left and right ends of the mounting frame and a plurality of clamping components sleeved on the square rod. Square rods are rotatably provided on the upper and lower sides of the front and rear end faces of the mounting frame. The number of clamping components is equal to the number of water baffles. The edges of the water baffles are inserted into the corresponding clamping components. The square rod is fixed with several circular plate-shaped fixed abutments at equal intervals along its axial direction. Several clamping assemblies are respectively arranged between two adjacent fixed abutments. The clamping assembly includes a pair of symmetrically arranged rotating seats on the square rod and abutting springs respectively fitted inside the outer ends of the two rotating seats. The rotating seats are fitted on the outside of the square rod and can slide along the axial direction of the square rod. The outer end of the abutting spring abuts against the corresponding fixed abutment. An oblique opening is provided at the outer edge of the inner end of the rotating seat. A lever is fixed at the right end of the square rod.
[0007] Preferably, the mounting frame includes two side plates arranged symmetrically on the left and right, a water receiving tray welded and fixed between the bottom ends of the two side plates, and a top cover detachably connected between the top ends of the two side plates by bolts, and a number of water baffles are arranged between the front end and the rear end of the two side plates. In this design, the top cover is connected by bolts for easy disassembly and maintenance of the baffle plate. It also seals the top of the mounting frame to prevent impurities from falling in and affecting the operation of the baffle plate.
[0008] Preferably, bottom strips with an L-shaped cross-section are fixed at the front and rear edges of the bottom of the two side plates, and the bottom of the baffle plate overlaps the bottom strips. Top connecting strips are fixed at the front and rear edges of the top of the two side plates, and the top of the baffle plate overlaps the top connecting strips. In this setup, the L-shaped bottom strip provides stable support for the bottom of the baffle, preventing it from sinking due to its own weight; the top connecting strip limits the top edge of the baffle, working in conjunction with the bottom strip to keep the baffle vertical and prevent it from tilting.
[0009] Preferably, a number of protruding partitions are fixed on the inner sidewalls of the bottom strip and the top connecting strip along their length direction, and the front and rear edges of the baffle plate are provided with protruding edges, which are inserted into the gaps formed by two adjacent partitions. In this setup, the gaps formed by the partitions cooperate with the protruding edges of the baffles to position the baffles in the front and back directions, preventing the baffles from shifting due to airflow; at the same time, it can evenly separate multiple baffles, ensuring a fixed spacing between each baffle and ensuring the water-blocking effect.
[0010] Preferably, a pair of protruding plates are fixed at the front and rear edges of the top and bottom of the side plate, and the left and right ends of the square rod are integrally formed with protruding shafts, which pass through the protruding plates and are rotatably connected to the protruding plates. In this configuration, the convex plate provides stable support for the convex shaft of the square rod. The convex shaft is rotatably connected to the convex plate, allowing the square rod to rotate smoothly around its own axis, providing a reliable rotational basis for adjusting the posture of the locking mechanism.
[0011] Preferably, the left rear end of the lever is fixedly connected to the convex shaft located at the right end of the square rod. The front end of the lever faces the same direction as the bevel. A shank bolt is fitted on the right front end of the lever. Threaded holes are provided on the side plate and convex plate corresponding to the right end of the square rod. By moving the front end of the lever, the front end of the lever is aligned with the corresponding threaded hole, and the shank bolt is tightened to make the threaded part of the shank bolt threadedly connected to the threaded hole. When the front end of the lever faces the inside of the mounting frame, the bevel faces the edge of the baffle plate. The two bevels on the two rotating seats form the insertion path of the baffle plate, which facilitates the vertical insertion of the baffle plate into the mounting frame. When the lever is rotated 180° after the baffle plate is installed, the lever drives the clamping assembly to rotate through the square rod, so that the edge of the baffle plate is clamped between the two rotating seats under the guidance of the bevel. In this configuration, the orientation of the lever tip indicates the position of the angled opening, improving ease of operation; the shank bolt and threaded hole can fix the lever and clamping assembly in their positions; rotating the lever can switch the angled opening state, which facilitates the insertion of the baffle plate and allows the baffle plate to be clamped by the clamping assembly.
[0012] Preferably, the rotating seat has a through hole at its axis, the hole being square, through which the square rod slides. In this configuration, the square hole sleeve engages with the square rod to prevent the rotating seat from rotating around the square rod's own axis, ensuring that the square rod rotates synchronously with the rotating seat, avoiding clamping direction deviation, and ensuring consistent action of the clamping components.
[0013] Preferably, a cavity is provided on the outer end face of the rotating seat, and the inner end of the clamping spring abuts against the bottom of the cavity, and the clamping spring is in a compressed state between the rotating seat and the fixed plate. In this configuration, the sleeve cavity can limit the inner end of the clamping spring, preventing the spring from shifting laterally and ensuring that the elastic force is along the axis of the square rod. The clamping spring in the compressed state can apply a force toward the baffle plate to the rotating seat, so that the rotating seat continuously clamps the baffle plate. It can also compensate for the wear or installation gap of the baffle plate and prevent the baffle plate from loosening.
[0014] Compared with the prior art, the beneficial effects of this utility model are: The air conditioner baffle fixing bracket, through the locking mechanism, uses two rotating seats in the clamping assembly to work with the clamping springs to actively apply pre-tightening force to the edge of the baffle, so that the baffle can obtain a continuous clamping force after installation. Even if the baffle has slight wear after long-term use or there are small gaps during installation, the elastic force of the clamping springs can compensate for the gaps and maintain the clamping state, preventing the baffle from vibrating due to loosening under the airflow. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is an exploded view of the mounting bracket in this utility model; Figure 3 This is a schematic diagram of the structure of the water baffle in this utility model; Figure 4 This is a schematic diagram of the locking mechanism in this utility model; Figure 5 This is a schematic diagram of the structure of the Chinese rod in this utility model; Figure 6 This is an exploded view of the clamping component in this utility model; The meanings of the labels in the diagram are as follows: 100. Mounting bracket; 110. Side panel; 111. Bottom strip; 112. Top connecting strip; 113. Partition; 114. Protruding plate; 120. Water tray; 130. Top cover; 200. Water baffle; 210. Raised edge; 300. Locking mechanism; 310. Square rod; 311. Fixed abutment plate; 312. Lever; 313. Bolt with handle; 320. Clamping assembly; 321. Rotating seat; 3211. Sleeve hole; 3212. Slanted opening; 3213. Sleeve cavity; 322. Abutment spring. Detailed Implementation
[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0017] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or component 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 of this utility model.
[0018] Please see Figures 1-6 An air conditioner deflector mounting bracket includes a mounting frame 100, within which several deflectors 200 are inserted. The mounting frame 100 includes two side plates 110 arranged symmetrically, a water collection tray 120 welded and fixed between the bottom ends of the two side plates 110, and a top cover 130 detachably connected to the top ends of the two side plates 110 by bolts. The deflectors 200 are positioned between the front and rear ends of the two side plates 110. The welded fixing of the water collection tray 120 ensures a tight seal between it and the side plates 110, preventing leakage of water vapor blocked by the deflectors 200 from the connection point. The bolt-detachable connection of the top cover 130 facilitates subsequent disassembly, assembly, or maintenance of the deflectors 200. Simultaneously, the top cover 130 can seal the top of the mounting frame 100, preventing external impurities from falling into the interior and affecting the operation of the deflectors 200.
[0019] like Figure 1 and Figure 2 As shown, in this utility model, bottom strips 111 with an L-shaped cross-section are fixed to the front and rear edges of the bottom of the two side plates 110. The bottom end of the baffle 200 overlaps the bottom strips 111. Top connecting strips 112 are fixed to the front and rear edges of the top of the two side plates 110. The top end of the baffle 200 overlaps the top connecting strips 112. The L-shaped bottom strips 111 provide a stable support surface for the bottom of the baffle 200, ensuring reliable support at the bottom when the baffle 200 is installed vertically, preventing the baffle 200 from sinking due to its own weight. The top connecting strips 112 limit the top edge of the baffle 200, and together with the bottom strips 111, keep the baffle 200 in a vertical position within the mounting frame 100, preventing the baffle 200 from tilting.
[0020] Furthermore, several protruding partitions 113 are fixed along the length of the inner sidewalls of the bottom strip 111 and the top connecting strip 112. The front and rear edges of the baffle plate 200 are each provided with a protruding edge 210, which inserts into the gap formed by two adjacent partitions 113. The partitions 113 are protruding and distributed along the length, and the gaps between adjacent partitions 113 can precisely match the protruding edges 210 of the baffle plate 200. The insertion of the protruding edges 210 into the gaps allows for positioning of the baffle plate 200 in the front-rear direction, preventing it from shifting under airflow. Simultaneously, the multiple partitions 113 evenly separate the multiple baffle plates 200, ensuring a fixed distance between them to guarantee the water-blocking effect.
[0021] like Figure 1 and Figure 4 As shown, specifically, locking mechanisms 300 are rotatably connected to the top and bottom ends of the front and rear end faces of the mounting frame 100. The locking mechanisms 300 are used to clamp and fix the several baffles 200. The locking mechanism 300 includes a square rod 310 rotatably connected between the left and right ends of the mounting frame 100 and several clamping components 320 sleeved on the square rod 310. The square rod 310 is rotatably provided on the upper and lower sides of the front and rear end faces of the mounting frame 100. The number of clamping components 320 is equal to the number of baffles 200. The edges of the upper and lower sides of the baffles 200 are inserted into the corresponding clamping components 320.
[0022] In use, the locking mechanism 300 is set at the top and bottom ends of the front and rear end faces of the mounting bracket 100, which can clamp the baffle 200 from the front and rear sides and the top and bottom positions to ensure that the baffle 200 is subjected to balanced force. The number of clamping components 320 is equal to the number of baffles 200, which can realize the individual clamping of each baffle 200, and avoid the loosening of a single baffle 200 from affecting the stability of other baffles 200. The insertion of the clamping components 320 into the edge of the baffle 200 provides a point of application for the subsequent clamping components 320 to apply clamping force to it.
[0023] like Figure 4 and Figure 5 As shown, furthermore, a pair of protruding plates 114 are fixed at the front and rear edges of the top and bottom of the side plate 110. The left and right ends of the square rod 310 are integrally formed with protruding shafts, which pass through the protruding plates 114 and are rotatably connected to them. The protruding plates 114, fixed to the edges of the side plate 110, provide a stable support structure for the protruding shafts of the square rod 310. The protruding shafts, passing through the protruding plates 114 and being rotatable, allow the square rod 310 to rotate smoothly around its own axis, ensuring no jamming when the clamping assembly 320 is adjusted by rotating the square rod 310, and providing a reliable rotational basis for the operation of the locking mechanism 300.
[0024] Furthermore, a lever 312 is installed at the right end of the square rod 310. The left rear end of the lever 312 is fixedly connected to the convex shaft located at the right end of the square rod 310. The fixed connection between the lever 312 and the convex shaft of the square rod 310 allows the operator to drive the convex shaft and the square rod 310 to rotate synchronously by moving the lever 312, without having to directly rotate the square rod 310, thus reducing the difficulty of operation and making the adjustment of the locking mechanism 300 more convenient.
[0025] like Figures 4-6 As shown, in addition, several circular plate-shaped fixing plates 311 are fixed at equal intervals along the axial direction of the square rod 310, and several clamping assemblies 320 are respectively arranged between two adjacent fixing plates 311. The clamping assembly 320 includes a pair of symmetrically arranged rotating seats 321 sleeved on the square rod 310 and abutting springs 322 respectively sleeved in the outer ends of the two rotating seats 321. The rotating seats 321 are sleeved on the outside of the square rod 310 and can slide along the axial direction of the square rod 310. The outer ends of the abutting springs 322 abut against the corresponding fixing plates 311. An oblique opening 3212 is provided at the outer edge of the inner end of the rotating seat 321.
[0026] In use, multiple fixed abutments 311 are fixed at equal intervals on the square rod 310, which can divide the square rod 310 into multiple independent areas along the axial direction. This provides a dedicated installation space for each clamping component 320 to prevent the clamping component 320 from moving along the axial direction of the square rod 310. The two rotating seats 321 are symmetrically fitted and can slide along the axial direction of the square rod 310. With the cooperation of the clamping spring 322, a clamping force can be applied to the edge of the middle baffle 200. The outer end of the clamping spring 322 abuts against the fixed abutment 311, so that the fixed abutment 311 can provide support for the clamping spring 322 and ensure that the clamping spring 322 generates a stable elastic force when compressed. The bevel 3212 is opened on the outer edge of the inner end of the rotating seat 321. It can play a guiding role when the baffle 200 is inserted, so that the edge of the baffle 200 can smoothly enter between the two rotating seats 321.
[0027] like Figure 1 , Figure 2 and Figure 6As shown, it is worth noting that the front end of the lever 312 faces the same direction as the bevel 3212. A shank bolt 313 is fitted onto the front right side of the lever 312. Threaded holes are provided on the side plate 110 and the protruding plate 114 corresponding to the right end of the square rod 310. By moving the front end of the lever 312 to align it with the corresponding threaded hole, tightening the shank bolt 313 allows the threaded part of the shank bolt 313 to be threadedly connected to the threaded hole. Because the front end of the lever 312 faces the same direction as the bevel 3212, the operator can determine the position of the bevel 3212 by observing the orientation of the front end of the lever 312, without needing to directly observe the clamping assembly 320, thus improving operational convenience. The shank bolt 313, fitted onto the front right side of the lever 312, can fix the lever 312 in its current position after tightening, thereby fixing the posture of the square rod 310 and the clamping assembly 320, preventing the clamping assembly 320 from rotating on its own during operation and causing clamping failure.
[0028] Furthermore, when the front end of the lever 312 faces the mounting bracket 100, the bevel 3212 faces the edge of the baffle 200. The two bevels 3212 on the two rotating seats 321 form the insertion path of the baffle 200, facilitating the vertical insertion of the baffle 200 into the mounting bracket 100. At this time, tightening the shank bolt 313 allows the threaded part of the shank bolt 313 to be screwed into the threaded hole on the side plate 110. When the front end of the lever 312 faces the mounting bracket 100, the bevel 3212 simultaneously faces the edge of the baffle 200. The insertion path formed by the two bevels 3212 is consistent with the vertical insertion direction of the baffle 200, reducing the resistance when the baffle 200 is inserted to ensure smooth installation. The shank bolt 313 screwed into the threaded hole on the side plate 110 can fix the lever 312 in this position, keeping the insertion path stable to prevent the clamping assembly 320 from rotating when the baffle 200 is inserted.
[0029] Furthermore, after the baffle plate 200 is installed, when the shank bolt 313 is loosened and the lever 312 is rotated 180°, the lever 312 drives the clamping assembly 320 to rotate through the square rod 310, so that the edge of the baffle plate 200 is clamped between the two rotating seats 321 under the guidance of the inclined opening 3212. At this time, tightening the shank bolt 313 will allow the threaded part of the shank bolt 313 to be screwed into the threaded hole on the protruding plate 114. Loosening the shank bolt 313 provides space for the lever 312 to rotate. Rotating the lever 312 180° can drive the square rod 310 and the clamping assembly 320 to rotate synchronously, so that the bevel 3212 switches from the guiding state to the clamping state. The edge of the baffle plate 200 enters between the two rotating seats 321 under the guidance of the bevel 3212 to ensure accurate clamping position. The shank bolt 313 screwed into the threaded hole on the protrusion plate 114 can fix the clamping posture of the clamping assembly 320 and prevent it from loosening. At the same time, the protrusion plate 114 is rotatably connected to the square rod 310, and the position of the threaded hole is adapted to the clamping posture of the clamping assembly 320 to ensure the fixing effect.
[0030] like Figure 6 As shown, it is worth noting that a through-hole 3211 is provided at the axis of the rotating seat 321. The through-hole 3211 is a square hole, through which the square rod 310 slides. The square hole 3211, which slides through the square rod 310, prevents the rotating seat 321 from rotating around the axis of the square rod 310. This ensures that when the square rod 310 rotates, it can drive the rotating seat 321 to rotate synchronously, avoiding relative rotation between the rotating seat 321 and the square rod 310 that could cause a shift in the clamping direction and ensuring the consistency of the clamping assembly 320's operation.
[0031] Furthermore, a cavity 3213 is provided on the outer end face of the rotating seat 321. The inner end of the clamping spring 322 abuts against the bottom of the cavity 3213, and the clamping spring 322 is in a compressed state between the rotating seat 321 and the fixed abutment plate 311. The cavity 3213 can limit the inner end of the clamping spring 322, preventing the clamping spring 322 from shifting laterally during compression or extension, ensuring that its elastic force is always along the axis of the square rod 310. The clamping spring 322, in a compressed state, can continuously apply an elastic force toward the baffle plate 200 to the rotating seat 321, so that the rotating seat 321 always keeps the edge of the baffle plate 200 clamped. Even if the baffle plate 200 experiences slight wear or has a small gap during long-term use, the clamping spring 322 can elastically compensate for the gap, maintain the clamping effect, and prevent the baffle plate 200 from loosening.
[0032] In this embodiment, when using the air conditioner baffle fixing bracket, firstly, loosen the bolt 313 with handle on the right end of the lever 312, and move the lever 312 so that its front end faces the mounting bracket 100. At this time, the square rod 310 drives the clamping assembly 320 to rotate, and the bevel 3212 on the rotating seat 321 faces the edge of the baffle 200 and forms an insertion path. Then tighten the bolt 313 with handle to fix the lever 312 in this position. Then open the top cover 130, align the convex edge 210 of the baffle 200 with the gap formed by the adjacent spacers 113 on the bottom connecting strip 111 and the top connecting strip 112, and vertically insert the baffle 200 so that the bottom end of the baffle 200 overlaps the bottom connecting strip 111. Then, loosen the bolt 313 with handle and rotate the lever 312 180°. 2. The lever 312 drives the clamping assembly 320 to rotate synchronously via the square rod 310. The edge of the baffle plate 200 enters between the two rotating seats 321 under the guidance of the inclined opening 3212. At this time, the elastic force generated by the compression of the clamping spring 322 pushes the rotating seat 321 towards the baffle plate 200, thereby clamping the baffle plate 200. Next, the threaded part of the bolt with handle 313 is screwed into the threaded hole on the protruding plate 114 to fix the clamping posture of the lever 312 and the clamping assembly 320 and prevent them from loosening. Finally, the top cover 130 is put on and fixed to the top connecting strip 112 at the top of the side plate 110 with bolts to complete the installation of the baffle plate 200. If the baffle plate 200 needs to be disassembled later, the above steps can be reversed.
[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. An air conditioner water baffle fixing bracket, comprising a mounting frame (100), wherein a plurality of water baffles (200) are inserted into the mounting frame (100), characterized in that: Locking mechanisms (300) are rotatably connected at the top and bottom ends of the front and rear end faces of the mounting frame (100). The locking mechanisms (300) are used to clamp and fix a number of baffles (200). The locking mechanisms (300) include a square rod (310) rotatably connected between the left and right ends of the mounting frame (100) and a number of clamping components (320) sleeved on the square rod (310). The upper and lower ends of the front and rear end faces of the mounting frame (100) are rotatably provided with square rods (310). The number of clamping components (320) is equal to the number of baffles (200). The edges of the upper and lower ends of the baffles (200) are inserted into the corresponding clamping components (320). The square rod (310) is fixed with several circular plate-shaped fixed abutments (311) at equal intervals along its axial direction. Several clamping assemblies (320) are respectively arranged between two adjacent fixed abutments (311). The clamping assembly (320) includes a pair of symmetrical rotating seats (321) sleeved on the square rod (310) and a retaining spring (322) sleeved in the outer end of the two rotating seats (321). The rotating seats (321) are sleeved on the outside of the square rod (310) and can slide along the axial direction of the square rod (310). The outer end of the retaining spring (322) abuts against the corresponding fixed abutment (311). A bevel (3212) is opened at the outer edge of the inner end of the rotating seat (321). A lever (312) is fixed at the right end of the square rod (310).
2. The air conditioner baffle fixing bracket according to claim 1, characterized in that: The mounting bracket (100) includes two side plates (110) arranged symmetrically on the left and right, a water receiving tray (120) welded and fixed between the bottom ends of the two side plates (110), and a top cover (130) detachably connected between the top ends of the two side plates (110) by bolts. Several baffles (200) are arranged between the front end and the rear end of the two side plates (110).
3. The air conditioner baffle fixing bracket according to claim 2, characterized in that: Both sides of the bottom of the two side plates (110) are fixed with bottom strips (111) with an L-shaped cross section. The bottom of the baffle plate (200) overlaps the bottom strip (111). Both sides of the top of the two side plates (110) are fixed with top connecting strips (112). The top of the baffle plate (200) overlaps the top connecting strip (112).
4. The air conditioner baffle fixing bracket according to claim 3, characterized in that: The inner sidewalls of the bottom strip (111) and the top connecting strip (112) are each fixed with a number of protruding partitions (113) along their length direction. The front and rear edges of the baffle plate (200) are provided with protruding edges (210), which are inserted into the gaps formed by the corresponding two adjacent partitions (113).
5. The air conditioner baffle fixing bracket according to claim 2, characterized in that: A pair of protruding plates (114) are fixed at the front and rear edges of the top and bottom of the side plate (110). The left and right ends of the square rod (310) are integrally formed with protruding shafts, which pass through the protruding plates (114) and are rotatably connected to the protruding plates (114).
6. The air conditioner baffle fixing bracket according to claim 5, characterized in that: The left rear end of the lever (312) is fixedly connected to the convex shaft located at the right end of the square rod (310). The front end of the lever (312) faces the same direction as the oblique opening (3212). The right front end of the lever (312) is fitted with a shank bolt (313). The side plate (110) and the convex plate (114) corresponding to the right end of the square rod (310) are both provided with threaded holes. By moving the front end of the lever (312) to align the front end of the lever (312) with the corresponding threaded hole, the shank bolt (313) can be tightened to make the threaded rod part of the shank bolt (313) threadedly connected to the threaded hole. When the front end of the lever (312) faces the inside of the mounting bracket (100), the bevel (3212) faces the edge of the baffle (200), and the two bevels (3212) on the two rotating seats (321) form the insertion path of the baffle (200), which facilitates the vertical insertion of the baffle (200) into the mounting bracket (100); when the lever (312) is rotated 180° after the baffle (200) is installed, the lever (312) drives the clamping assembly (320) to rotate through the square rod (310), so that the edge of the baffle (200) is clamped between the two rotating seats (321) under the guidance of the bevel (3212).
7. The air conditioner baffle fixing bracket according to claim 1, characterized in that: The rotating seat (321) has a through hole (3211) at its axis. The hole (3211) is a square hole, and the square rod (310) slides through the hole (3211).
8. The air conditioner baffle fixing bracket according to claim 1, characterized in that: A cavity (3213) is provided on the outer end face of the rotating seat (321). The inner end of the clamping spring (322) abuts against the bottom of the cavity (3213). The clamping spring (322) is in a compressed state between the rotating seat (321) and the fixed abutment plate (311).
Citation Information
Patent Citations
Air conditioner water baffle convenient to disassemble
CN219955624U