An easy-to-install and remove air conditioner radiator bracket
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-22
- Publication Date
- 2026-08-11
AI Technical Summary
[0002]空调散热器是空调系统中不可或缺的一部分,它负责将空调机组产生的热量有效地散发出去,确保空调系统的正常运行,为了确保空调散热器的散热效果,空调散热器通常通过支架安装至室外,现有技术中:授权公布号CN 213453967 U的专利公开了涉及一种便于维修养护的空调安装支架,包括两个安装架,两个安装架的前侧设有支撑结构,支撑结构包括支撑板,支撑板的后侧壁焊接有移动板,支撑板的底部设有调节组件,调节组件包括丝杆,丝杆的外壁上螺纹连接有丝杆筒,丝杆筒的顶壁焊接有连接块,支撑板的底壁靠近前侧处安装有固定板,丝杆的一端穿过固定板且安装有摇把手,移动板的前侧壁安装有丝杆座,丝杆的另一端转动连接在丝杆座内,支撑板的内部靠近中间位置处开设有连接孔,该便于维修养护的空调安装支架,便于对安装在安装板上的空调外机进行移动调节,方便空调外机维修养护工作的进行,该装置对空调散热器进行安装固定时,通过安装板上开设的多个安装孔,用螺栓与安装孔固定从而将空调散热器固定至安装板上,然而为了确保装置对空调散热器的固定牢固度,通常需要采用四组以上的螺栓进行固定作业,多组螺栓需要依次进行安装作业,导致空调散热器的拆卸及安装较为耗时,为此,我们提出一种便于装拆的空调散热器支架
[0013]与现有技术相比,本实用新型的有益效果是:本便于装拆的空调散热器支架,具有以下好处:
Smart Images

Figure CN224623152U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of air conditioner radiator brackets, specifically an air conditioner radiator bracket that is easy to install and remove. Background Technology
[0002] Air conditioning radiators are an indispensable part of air conditioning systems. They are responsible for effectively dissipating the heat generated by the air conditioning unit, ensuring the normal operation of the air conditioning system. To ensure the heat dissipation effect of the air conditioning radiator, it is usually installed outdoors using a bracket. In the prior art, patent publication number CN 213453967 U discloses an air conditioning mounting bracket that facilitates maintenance and repair. It includes two mounting brackets, with a support structure on the front side of each bracket. The support structure includes a support plate, a movable plate welded to the rear side wall of the support plate, and an adjustment assembly at the bottom of the support plate. The adjustment assembly includes a lead screw, with a lead screw cylinder threaded onto its outer wall. A connecting block is welded to the top wall of the lead screw cylinder. A fixed plate is installed on the bottom wall of the support plate near the front side. One end of the lead screw passes through the fixed plate and is fitted with a crank handle. A lead screw seat is installed on the front side wall of the movable plate, and the other end of the lead screw is rotatably connected to the lead screw seat. A connecting hole is provided inside the support plate near the center. This air conditioner mounting bracket, which facilitates maintenance and repair, allows for easy movement and adjustment of the outdoor unit mounted on the mounting plate, thus simplifying maintenance and repair work. When installing and fixing the air conditioner radiator, multiple mounting holes are provided on the mounting plate, and bolts are used to secure the radiator to the mounting plate. However, to ensure a secure fixation, four or more sets of bolts are typically required, and these multiple sets need to be installed sequentially, making the disassembly and installation of the air conditioner radiator time-consuming. Therefore, we propose an air conditioner radiator bracket that is easy to install and remove. Utility Model Content
[0003] The technical problem this invention aims to solve is to overcome existing defects and provide an air conditioner radiator bracket that is easy to install and disassemble. This device, through a transmission element, can achieve four-point snap-fit fixing of the air conditioner radiator in just one step. The air conditioner radiator can also be disassembled in the later stages using this method. Compared with the air conditioner radiator installation and disassembly using multiple sets of bolts, this method optimizes and improves the efficiency of installation and disassembly. At the same time, during the initial installation of the air conditioner radiator, the transmission element ensures that the four-point snap-fit of the air conditioner radiator is located below the air conditioner radiator, which facilitates the vertical alignment of the mounting slots at the bottom of the air conditioner radiator with the four-point snap-fit of the device. This effectively solves the problems in the background art.
[0004] To achieve the above objectives, this utility model provides the following technical solution: an air conditioner radiator bracket that is easy to install and disassemble, including a mounting base one, wherein there are two mounting bases one, and each mounting base one is provided with a mounting base two in the middle, and also includes a disassembly and assembly mechanism;
[0005] The disassembly and assembly mechanism includes a fixed base, a first synchronous base, a second synchronous base, a limiting component, and an adjusting component. The fixed base is positioned between two second synchronous bases. The first synchronous base and the second synchronous base are respectively installed on the lower side of the fixed base. The first synchronous base is located above the second synchronous base. A limiting component is provided between the first synchronous base and the second synchronous base. An adjusting component is provided between the fixed base, the first synchronous base, and the second synchronous base. This device can achieve the four-point snap-fit fixing operation of the air conditioner radiator in just one step through the transmission element. The air conditioner radiator can also be disassembled in this way later. Compared with the disassembly and assembly of the air conditioner radiator achieved by multiple sets of bolts, the disassembly and assembly efficiency has been optimized and improved. At the same time, when the air conditioner radiator is initially installed, the device uses the transmission element to make the four-point snap-fit of the air conditioner radiator located below the air conditioner radiator, which facilitates the vertical alignment of the mounting slots at the bottom of the air conditioner radiator with the four-point snap-fit of the device.
[0006] Furthermore, a support seat is provided between the first mounting seat and the longitudinally adjacent second mounting seat, which improves the overall structural strength of the air conditioner radiator bracket that is easy to install and disassemble.
[0007] Furthermore, the disassembly and assembly mechanism also includes guide rods, which are symmetrically arranged laterally on the lower side of the fixed base. The lower ends of the fixed bases pass through the circular holes opened on the first and second synchronous seats, so as to prevent horizontal rotation and deviation of the vertical movement of the first and second synchronous seats in the air conditioner radiator bracket, which is easy to assemble and disassemble.
[0008] Furthermore, the limiting component includes a conical seat, a guide groove, a slide seat, and a limiting seat. The conical seats are symmetrically arranged longitudinally at the left and right ends of the upper side of the second synchronous seat. Slide seats are slidably connected in the guide grooves on both sides of the conical seats. A limiting seat is provided on the upper side of each slide seat. A longitudinally symmetrical clearance groove is provided on the upper side of the second mounting seat. The limiting seats are installed in conjunction with the vertically adjacent clearance grooves. Through the squeezing and sliding between the guide groove and the slide seat, the two adjacent limiting seats are moved away from each other.
[0009] Furthermore, the limiting component also includes rectangular grooves and translation guide rods. The rectangular grooves are symmetrically opened at the left and right ends of the upper side of the synchronization seat. Each slide is provided with a translation guide rod on the side away from the lateral center of the adjacent conical seat. The translation guide rods are in sliding contact with the rectangular grooves opened in the adjacent synchronization seat. The slides are all located in the adjacent rectangular grooves, so that when the slides in the air conditioner radiator bracket that is easy to install and remove are squeezed and slid by the guide groove, the slides are moved and guided to the end away from the lateral center of the adjacent conical seat by the sliding of the translation guide rods and the rectangular grooves.
[0010] Furthermore, the adjustment assembly includes a threaded cylinder, a stud, a rotating shaft, and a knob. The threaded cylinder is located on the lower side of the fixed base. The stud is rotatably connected to the inside of the synchronization seat through a bearing. The upper end of the stud is threadedly connected to the threaded cylinder. The lower end of the stud is provided with a rotating shaft. The lower end of the rotating shaft passes through a circular hole in the synchronization seat and is provided with a knob. The synchronization seat and the synchronization seat 1 and their linkage components in the easily detachable air conditioner radiator bracket are simultaneously adjusted vertically.
[0011] Furthermore, the adjustment assembly also includes a threaded cylinder II, a stud II, and a knob II. The threaded cylinder II is located inside the synchronization seat I. The stud II is rotatably connected inside the synchronization seat II via a bearing II. The upper end of the stud II is threadedly connected to the threaded cylinder II. The lower end of the stud II is provided with a knob II for vertically adjusting the synchronization seat II inside the easily detachable air conditioner radiator bracket.
[0012] Furthermore, the adjustment assembly also includes bellows, which are respectively disposed between threaded cylinder one and synchronous seat one and between threaded cylinder two and synchronous seat two. The outer ends of stud one and stud two are movably sleeved with the adjacent bellows to wrap, seal and lubricate the studs in the air conditioner radiator bracket that is easy to install and remove.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: This easy-to-install and disassemble air conditioner radiator bracket has the following advantages:
[0014] When using the easy-to-install and disassemble air conditioner radiator bracket, the device achieves four-point snap-fit fixing of the air conditioner radiator in just one step through inclined sliding compression and synchronization elements. The air conditioner radiator can also be disassembled in the later stage in the same way. Compared with the air conditioner radiator installation and removal through multiple sets of bolts, the efficiency of installation and removal has been optimized and improved. At the same time, when the air conditioner radiator is initially installed, the device uses the transmission element to make the four-point snap-fit of the air conditioner radiator located at the bottom of the air conditioner radiator, which facilitates the horizontal sliding between the bottom of the air conditioner radiator and the second mounting base. This makes it easier to align the mounting slots on the bottom of the air conditioner radiator with the four-point snap-fit positions of the device for vertical alignment of the mounting slots. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the disassembly and assembly mechanism of this utility model;
[0017] Figure 3 This is a schematic diagram of the conical seat and slide of this utility model;
[0018] Figure 4 This is an enlarged structural diagram of point A in this utility model;
[0019] Figure 5 This is an enlarged structural diagram of section B of the present invention.
[0020] In the diagram: 1 Mounting seat one, 2 Mounting seat two, 3 Support seat, 4 Disassembly and assembly mechanism, 41 Fixed seat, 42 Synchronous seat one, 43 Synchronous seat two, 44 Guide rod, 45 Limiting assembly, 451 Conical seat, 452 Guide slide, 453 Slide, 454 Rectangular groove, 455 Translation guide rod, 456 Limiting seat, 46 Adjusting assembly, 461 Threaded cylinder one, 462 Stud one, 463 Rotating shaft, 464 Knob one, 465 Threaded cylinder two, 466 Stud two, 467 Knob two, 468 Bellows. Detailed Implementation
[0021] 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.
[0022] Please see Figure 1-5 This embodiment provides a technical solution: an air conditioner radiator bracket that is easy to install and disassemble, including a mounting base 1, which has two mounting bases 1, each with a mounting base 2 in the middle, and a support base 3 between the mounting base 1 and the longitudinally adjacent mounting base 2. When using the air conditioner radiator bracket, it is first installed on the wall where the air conditioner radiator needs to be installed and fixed by expansion bolts through the mounting holes on the mounting base 1. The support base 3 provides auxiliary support for the connection between the mounting base 1 and the mounting base 2, thereby improving the overall structural strength of the air conditioner radiator bracket. It also includes a disassembly and assembly mechanism 4.
[0023] The disassembly / assembly mechanism 4 includes a fixed base 41, a first synchronous base 42, a second synchronous base 43, a limiting component 45, and an adjusting component 46. The fixed base 41 is disposed between two second mounting bases 2. The first synchronous base 42 and the second synchronous base 43 are respectively installed on the lower side of the fixed base 41. The first synchronous base 42 is located above the second synchronous base 43. The limiting component 45 is provided between the first synchronous base 42 and the second synchronous base 43. The adjusting component 46 is provided between the fixed base 41, the first synchronous base 42, and the second synchronous base 43. The disassembly / assembly mechanism 4 also includes guide rods 44, which are symmetrically arranged laterally on the lower side of the fixed base 41. The lower end of the fixed base 41 passes through the circular holes opened on the first synchronous base 42 and the second synchronous base 43. The limiting component 45 includes a conical base 451 and a guide rod 46. The slide groove 452, slide seat 453, and limiting seat 456, and the conical seat 451 are longitudinally symmetrically arranged at the left and right ends of the upper side of the second synchronous seat 43. Slide seats 453 are slidably connected within the guide slide grooves 452 on both sides of the conical seat 451. Limiting seats 456 are provided on the upper side of each slide seat 453. Longitudinally symmetrical clearance grooves are provided on the upper side of the second mounting seat 2. The limiting seats 456 are all installed in conjunction with the vertically adjacent clearance grooves. The limiting assembly 45 also includes a rectangular groove 454 and a translation guide rod 455. The rectangular grooves 454 are longitudinally symmetrically arranged at the left and right ends of the upper side of the first synchronous seat 42. Translation guide rods 455 are provided on the side of each slide seat 453 away from the lateral center of the adjacent conical seat 451. The translation guide rods 455 are all connected to the adjacent synchronous seats. The rectangular sliding grooves opened in the first synchronous seat 42 make sliding contact. The slide seats 453 are all located in adjacent rectangular grooves 454. The adjustment component 46 includes a threaded cylinder 461, a stud 462, a rotating shaft 463, and a knob 464. The threaded cylinder 461 is located on the lower side of the fixed seat 41. The stud 462 is rotatably connected to the inside of the first synchronous seat 42 through a bearing. The upper end of the stud 462 is threadedly connected to the threaded cylinder 461. The lower end of the stud 462 is provided with a rotating shaft 463. The lower end of the rotating shaft 463 passes through a circular hole 2 opened in the second synchronous seat 43 and is provided with a knob 464. The adjustment component 46 also includes a threaded cylinder 465, a stud 466, and a knob 467. The threaded cylinder 465 is located inside the first synchronous seat 42. Inside component 3, a second stud 466 is rotatably connected via a bearing. The upper end of the second stud 466 is threadedly connected to a threaded cylinder 465, and the lower end of the second stud 466 is equipped with a knob 467. The adjusting assembly 46 also includes a bellows 468, which are respectively positioned between the first threaded cylinder 461 and the first synchronous seat 42, and between the second threaded cylinder 465 and the second synchronous seat 43. The outer ends of the first stud 462 and the second stud 466 are movably sleeved with the adjacent bellows 468. The operator places the air conditioner radiator on the mounting base 2 and moves it horizontally so that the four mounting holes at the bottom of the air conditioner radiator are vertically aligned with the corresponding clearance grooves on the mounting base 2 (in the initial state of the air conditioner radiator bracket, the limit seats 456 are all located below the clearance grooves).This avoids the limiting seat 456 interfering with the horizontal movement of the air conditioner radiator bottom along the upper side of mounting base 2. Then, the operator rotates knob 464 to rotate stud 462. During the rotation of stud 462, through its threaded connection with threaded cylinder 461, it drives synchronizer 42 to move vertically upwards. Synchronizer 42, through threaded cylinder 465 and stud 466, drives synchronizer 43 to move upwards synchronously. During this process, the limiting component 45 moves upwards synchronously while the relative positions of its internal components remain unchanged. The limiting seat 456, by moving upwards, allows its upper end to pass through the corresponding clearance groove and the mounting hole at the bottom of the air conditioner radiator, thus limiting the horizontal installation of the air conditioner radiator. When the limiting seat 456... When the lower side of the outer protrusion is horizontally aligned with the upper edge of the mounting hole at the bottom of the air conditioner radiator, the operator rotates knob 467 to rotate stud 466. During the rotation of stud 466, it drives synchronous seat 43 to move vertically upward relative to synchronous seat 42 through threaded connection with threaded cylinder 465 (during this process, the rotating shaft 463 and the circular hole 2 on synchronous seat 43 make adaptive sliding contact). Synchronous seat 43 drives the corresponding conical seat 451 to move vertically upward synchronously. During the vertical movement of conical seat 451, it is guided by the compression sliding between its own guide groove 452 and the slide seat 453, so that the slide seat 453 moves away from the adjacent conical seat along the corresponding rectangular groove through the corresponding translation guide rod 455. One end of the lateral center of the shaped seat 451 moves, causing the two adjacent limiting seats 456 to move away from each other. In this way, the limiting seat 456 engages with the upper edge of the corresponding mounting hole on the bottom of the air conditioner radiator through its upper outer protrusion, thus performing a four-point locking and limiting installation of the air conditioner radiator for vertical movement. When the air conditioner radiator is disassembled as a whole, the same steps are performed in reverse. During the vertical movement of the synchronous seat 2 43 and synchronous seat 1 42, the circular holes they have are in adaptive sliding contact with the corresponding guide rods 44. The sliding guide between the two prevents the synchronous seat 2 43 and synchronous seat 1 42 from rotating horizontally during vertical movement. The exposed stud 1 462 or stud 2 466 is covered by the bellows 468. The end is wrapped, lubricated, and sealed. The 468 corrugated pipe is a corrugated structure made of multiple layers of stacked metal sheets. Its working principle is to achieve self-adaptive sealing through elastic deformation to maintain good sealing performance. This device, through a transmission element, can achieve four-point snap-fit fixing of the air conditioner radiator in a single step. The air conditioner radiator can also be disassembled in this way later. Compared to the disassembly and assembly of air conditioner radiators using multiple sets of bolts, this method significantly improves disassembly and assembly efficiency. Simultaneously, during the initial installation of the air conditioner radiator, the transmission element positions the four-point snap-fit of the air conditioner radiator below, facilitating vertical alignment of the mounting slots on the bottom of the air conditioner radiator with the four-point snap-fit of the device.
[0024] The working principle of the easily assembled and disassembled air conditioner radiator bracket provided by this utility model is as follows: When using the air conditioner radiator bracket, firstly, install it onto the wall where the air conditioner radiator needs to be fixed by using expansion bolts through the mounting holes on mounting base 1. Then, the operator places the air conditioner radiator on mounting base 2 and moves it horizontally so that the four mounting holes at the bottom of the air conditioner radiator are vertically aligned with the corresponding clearance grooves on mounting base 2 (in the initial state of the air conditioner radiator bracket, the limiting seats 456 are all located below the clearance grooves, thereby avoiding interference from the limiting seats 456 on the horizontal movement of the bottom of the air conditioner radiator along the upper side of mounting base 2). Then, the operator rotates knob 464 to drive stud 462 to rotate. During the process, through the threaded connection with the threaded cylinder 461, the synchronizing seat 42 is moved vertically upward. The synchronizing seat 42, through the threaded cylinder 465 and the stud 466, drives the synchronizing seat 43 to move upward synchronously. During this process, the limiting component 45 moves upward synchronously while the relative positions of its internal components remain unchanged. The limiting seat 456 moves upward so that its upper end passes through the corresponding clearance groove and the mounting hole at the bottom of the air conditioner radiator in sequence, thereby limiting the horizontal installation of the air conditioner radiator. When the lower side of the outer protrusion at the upper end of the limiting seat 456 is horizontally aligned with the upper edge of the mounting hole at the bottom of the air conditioner radiator, the operator rotates the knob 467 to drive the stud 466 to rotate. During the rotation of the stud 466, through the threaded connection with the threaded cylinder 465, it drives the synchronizing seat 43 to move upward. The second synchronous seat 43 moves vertically upward relative to the first synchronous seat 42 (during this process, the rotating shaft 463 and the circular hole 2 on the second synchronous seat 43 make adaptive sliding contact). The second synchronous seat 43 drives the corresponding conical seat 451 to move vertically upward synchronously. During the vertical upward movement of the conical seat 451, the sliding guide between its own guide groove 452 and the slide seat 453 is squeezed and guided, so that the slide seat 453 moves along the corresponding rectangular groove along the corresponding translation guide rod 455 to the end away from the horizontal center of the adjacent conical seat 451, so that the two adjacent limiting seats 456 move away from each other. In this way, the limiting seat 456 engages with the upper edge of the corresponding mounting hole at the bottom of the air conditioner radiator through the outer protrusion at its upper end, thereby vertically positioning the air conditioner radiator. The four-point locking mechanism is installed with limit switches. During the subsequent disassembly of the entire air conditioner radiator, the same steps are performed in reverse. During the vertical movement of synchronous seats 43 and 42, the self-exposed circular holes engage with the corresponding guide rods 44 in adaptive sliding contact. This sliding guidance prevents horizontal rotation during the vertical movement of synchronous seats 43 and 42. The exposed ends of studs 462 or 466 are wrapped, lubricated, and sealed by bellows 468. Bellows 468 is a corrugated structure made of multiple layers of stacked metal sheets. Its working principle is to achieve adaptive sealing through elastic deformation to maintain good sealing performance. Support seat 3 provides auxiliary support at the connection between mounting seat 1 and mounting seat 2.Improve the overall structural strength of the air conditioner radiator bracket.
[0025] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. An air conditioner radiator bracket that is easy to install and remove, comprising a mounting base one (1), wherein there are two mounting bases one (1), and each mounting base one (1) is provided with a mounting base two (2) in the middle, characterized in that: It also includes a disassembly and assembly mechanism (4); The disassembly and assembly mechanism (4) includes a fixed seat (41), a first synchronous seat (42), a second synchronous seat (43), a limiting component (45), and an adjustment component (46). The fixed seat (41) is located between two second mounting seats (2). The first synchronous seat (42) and the second synchronous seat (43) are respectively installed on the lower side of the fixed seat (41). The first synchronous seat (42) is located above the second synchronous seat (43). A limiting component (45) is provided between the first synchronous seat (42) and the second synchronous seat (43). An adjustment component (46) is provided between the fixed seat (41), the first synchronous seat (42), and the second synchronous seat (43).
2. The easily detachable air conditioner radiator bracket according to claim 1, characterized in that: A support seat (3) is provided between the first mounting seat (1) and the longitudinally adjacent second mounting seat (2).
3. The easily detachable air conditioner radiator bracket according to claim 1, characterized in that: The disassembly and assembly mechanism (4) also includes guide rods (44), which are symmetrically arranged laterally on the lower side of the fixed seat (41). The lower ends of the fixed seat (41) pass through the circular holes opened on the first synchronous seat (42) and the second synchronous seat (43).
4. The easily detachable air conditioner radiator bracket according to claim 1, characterized in that: The limiting component (45) includes a conical seat (451), a guide groove (452), a slide (453), and a limiting seat (456). The conical seat (451) is symmetrically arranged on the left and right ends of the upper side of the synchronous seat (43). The guide groove (452) on the left and right sides of the conical seat (451) is slidably connected to the slide (453). The upper side of the slide (453) is provided with a limiting seat (456). The upper side of the mounting seat (2) is provided with longitudinally symmetrically distributed clearance grooves. The limiting seat (456) is installed in cooperation with the vertically adjacent clearance groove.
5. The easily detachable air conditioner radiator bracket according to claim 4, characterized in that: The limiting component (45) also includes a rectangular groove (454) and a translation guide rod (455). The rectangular groove (454) is symmetrically opened at the left and right ends of the upper side of the synchronization seat (42). The slide (453) is provided with a translation guide rod (455) on the side away from the lateral center of the adjacent conical seat (451). The translation guide rod (455) slides in contact with the rectangular groove opened in the adjacent synchronization seat (42). The slide (453) is located in the adjacent rectangular groove (454).
6. The easily detachable air conditioner radiator bracket according to claim 1, characterized in that: The adjustment assembly (46) includes a threaded cylinder (461), a stud (462), a rotating shaft (463), and a knob (464). The threaded cylinder (461) is located on the lower side of the fixed seat (41). The stud (462) is rotatably connected to the inside of the synchronization seat (42) through a bearing. The upper end of the stud (462) is threadedly connected to the threaded cylinder (461). The lower end of the stud (462) is provided with a rotating shaft (463). The lower end of the rotating shaft (463) passes through a circular hole (2) on the synchronization seat (43) and is provided with a knob (464).
7. The easily detachable air conditioner radiator bracket according to claim 6, characterized in that: The adjustment assembly (46) further includes a threaded cylinder (465), a stud (466), and a knob (467). The threaded cylinder (465) is located inside the synchronizing seat (42). The stud (466) is rotatably connected to the inside of the synchronizing seat (43) via a bearing. The upper end of the stud (466) is threadedly connected to the threaded cylinder (465), and the lower end of the stud (466) is provided with a knob (467).
8. The easily detachable air conditioner radiator bracket according to claim 7, characterized in that: The adjustment assembly (46) also includes a bellows (468), which is respectively disposed between the first threaded cylinder (461) and the first synchronous seat (42) and between the second threaded cylinder (465) and the second synchronous seat (43). The outer ends of the first stud (462) and the second stud (466) are movably connected to the adjacent bellows (468).
Citation Information
Patent Citations
Air conditioner mounting bracket convenient to repair and maintain
CN213453967U