Mounting bracket and air conditioner
Patent Information
- Application Number
- CN202522261105.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2025-06-27
- Filing Date
- 2025-10-24
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-24
AI Technical Summary
这种形式虽然稳固,但是会破坏墙体,而且往往必须要请专业的安装工,对于部分国家往往不允许破坏墙面,当地人工费用很高,而且预约时间很长,导致空调器的安装十分不便
[0035]本实用新型的技术方案通过设置安装结构,安装结构包括连接支架和锁紧支架,连接支架连接于凸沿的上侧,锁紧支架安装于连接支架,锁紧支架位于凸沿的底侧,且能够与锁紧位卡接,以将安装结构安装于凸沿,该锁紧位一般不是通过破坏凸沿表面设置的,其往往是凸沿本身的固有结构,如一些导水筋位或导水槽位,或者一些加工槽位或者筋位,因此此种安装结构并不会破坏凸沿等结构,也即本方案中通过无需破坏凸沿、外墙或者窗户的结构,即可完成连接支架的安装,且在实际安装时,只要分别将安装结构安装于凸沿、进而将空调室外机安装在安装结构上即可,安装方便,无需专业的安装人员安装,能够实现用户自行安装。
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Figure CN224801828U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioner technology, and in particular to a mounting bracket and an air conditioner. Background Technology
[0002] Air conditioner outdoor units need to be installed in the outdoor space of a building using mounting brackets. Currently, to fix the brackets in place, holes are typically drilled in the wall, expansion bolts are driven in, and the brackets are then secured. While this method is stable, it damages the wall structure and often requires a professional installer. In some countries, damaging walls is not permitted, local labor costs are high, and appointment times are long, making air conditioner installation very inconvenient. Utility Model Content
[0003] The main purpose of this utility model is to provide a mounting bracket and an air conditioner, which facilitates the installation of the outdoor unit of the air conditioner without damaging the wall.
[0004] To achieve the above objectives, the mounting bracket proposed in this utility model includes: The mounting structure includes a connecting bracket and a locking bracket. The connecting bracket is connected to the upper side of the protruding edge, and the locking bracket is mounted on the connecting bracket. The locking bracket is located on the bottom side of the protruding edge and can be locked with the locking position.
[0005] In one embodiment, the mounting structure further includes an auxiliary locking structure, which is disposed in the mounting structure and enables the locking bracket to lock the locking position.
[0006] In one embodiment, the mounting structure further includes a sliding bracket, which is slidably mounted on the connecting bracket in a vertical direction, and the locking bracket is disposed on the sliding bracket; the auxiliary locking structure includes a linkage locking frame, which can be linked with the sliding bracket to lock the locking position.
[0007] In one embodiment, the mounting structure further includes a first adjusting member rotatably mounted on the sliding bracket, the lower side of the linkage locking frame being movably connected to the sliding bracket, and the first adjusting member passing through the upper side of the linkage locking frame; The first adjusting member rotates, causing the linkage locking bracket to deflect about its central axis, thereby causing the sliding bracket to move upward so that the locking bracket locks the locking position.
[0008] In one embodiment, the connecting bracket is provided with a limiting part protruding toward the sliding bracket, the limiting part is provided with a first guide groove extending in the vertical direction, the sliding bracket further includes a first sliding member, the first sliding member is installed on the sliding bracket and slidably inserted into the first guide groove, and the middle part of the linkage locking frame is rotatably installed on the first sliding member.
[0009] In one embodiment, the lower end of the linkage locking frame is provided with a locking groove, a locking member passes through the locking groove and is connected to the sliding bracket, and the locking groove extends upward at an angle. The middle part of the linkage locking frame deflects around the first sliding member as an axis. The groove wall of the locking groove pushes the locking member to move obliquely upward, thereby driving the sliding bracket to move upward. It can also make the locking member press against the side of the limiting part away from the connecting bracket, thereby restricting the downward movement of the sliding bracket.
[0010] In one embodiment, the limiting portion has a guide slope on the side opposite to the connecting bracket, the guide slope allowing the locking member to abut against and restricting the downward sliding of the locking member; and / or, The sliding bracket is provided with an inclined hole for the locking member to pass through, and the distance from the inclined hole to the limiting part is set to decrease in the upward direction.
[0011] In one embodiment, the locking bracket is slidably mounted on the sliding bracket and is slidable along the protruding direction of the flange. The first adjusting member passes through the linkage locking bracket and the sliding bracket in sequence and is threadedly connected to the locking bracket. Before the first adjusting member drives the linkage locking bracket to deflect about its central axis, the first adjusting member rotates, causing the locking bracket to slide along the protruding direction of the convex edge, so that the locking bracket is engaged in the locking position.
[0012] In one embodiment, the mounting structure further includes a second sliding member disposed on the locking bracket. The sliding bracket is provided with a second guide groove extending along the protruding direction of the convex edge. The second sliding member is slidably inserted into the second guide groove to drive the locking bracket to move along the protruding direction of the convex edge.
[0013] In one embodiment, the connecting bracket includes a connecting portion and an overlapping portion arranged at an angle. The connecting portion extends downward, and the overlapping portion overlaps the upper side of the protruding edge. The sliding bracket is slidably mounted on the connecting portion in a vertical direction, and the sliding bracket and the overlapping portion can jointly clamp the protruding edge; and / or, An elastic element is also provided between the sliding bracket and the connecting bracket, which gives the sliding bracket an upward tendency to move.
[0014] In one embodiment, one end of the connecting accessory is connected to the locking bracket, and the other end is connected to the upper side of the connecting bracket, and the connecting accessory enables the connecting bracket and the locking bracket to be clamped together on the upper and lower sides of the protrusion.
[0015] In one embodiment, the connecting accessory is configured as a fourth fastener, one end of which is rotatably connected to the locking bracket, and the other end is threadedly connected to the upper side of the connecting bracket.
[0016] In one embodiment, the connecting bracket includes a downwardly extending connecting portion, and the locking bracket includes a locking body and an abutting edge that bends toward the connecting portion from the locking body. The locking body can be locked with the locking position, and the abutting edge abuts against the connecting portion.
[0017] In one embodiment, the connecting bracket includes a connecting body and an adjusting structure rotatably connected to the upper side of the connecting body. The connecting body presses the adjusting structure against the upper side of the protruding edge, and one end of the connecting accessory is connected to the locking bracket, and the other end is connected to the adjusting structure, so that the adjusting structure and the locking bracket together clamp the protruding edge.
[0018] In one embodiment, the adjustment structure includes an adjustment body and a limiting stop edge disposed at an angle to the adjustment body. The adjustment body abuts against the upper side of the protruding edge, and the limiting stop edge abuts against the outer side of the protruding edge.
[0019] In one embodiment, the adjusting body includes a first adjusting plate and a second adjusting plate. The first adjusting plate is rotatably connected to the upper side of the connecting body, and the second adjusting plate is assembled on the side of the first adjusting plate facing the convex edge. A portion of the second adjusting plate is bent downward to form the limiting stop.
[0020] In one embodiment, the connecting body is provided with a first rotating part, and a portion of the adjusting structure is raised upward to form a second rotating part, with a rotating shaft rotatably passing through the first rotating part and the second rotating part.
[0021] In one embodiment, the locking bracket is slidably mounted on the connecting bracket in the vertical direction. The auxiliary locking structure includes a one-way lock located below the locking bracket and a push rod slidably passing through the one-way lock. The push rod can push the locking bracket to move upward to lock with the protrusion, and the one-way lock can lock the push rod.
[0022] In one embodiment, the auxiliary locking structure further includes an unlocking member, which is movably inserted through the push rod and located on the side of the one-way lock opposite to the locking bracket. The unlocking member can release the one-way lock from locking.
[0023] In one embodiment, the push rod includes a first segment, a second segment, and a third segment that are bent and connected in sequence. The first segment and the third segment extend in the same direction and are used to push the locking bracket to lock with the house. The first segment and the third segment are both fitted with the one-way lock. The unlocking component includes a main unlocking part and a lifting handle. The main unlocking part is movably inserted through and slidably inserted through the first segment and the third segment. The lifting handle is bent and connected to the side of the main unlocking part away from the connecting bracket.
[0024] In one embodiment, a locking bracket is provided on one side with a bent edge, and the upper end of the push rod is connected to the bent edge; The push rod slides upward to drive the locking bracket to move upward.
[0025] In one embodiment, the mounting structure further includes an adjusting locking member and an anti-detachment handle disposed at one end of the adjusting locking member. The adjusting locking member passes through the connecting bracket and is connected to the locking bracket. One end of the anti-detachment handle is rotatably connected to the end of the locking member away from the locking bracket. The anti-detachment handle swings, causing the adjusting locking member to deflect about the end connected to the anti-detachment handle as an axis, thereby adjusting the angle between the locking bracket and the locking position, so that the locking bracket locks the locking position.
[0026] In one embodiment, the connecting bracket includes a downwardly extending connecting portion, the connecting portion having a second guide groove extending in a vertical direction, the adjusting locking member slidingly passing through the second guide groove and connected to the locking bracket; The anti-detachment handle swings, causing the adjusting locking member to deflect about the end connected to the anti-detachment handle as an axis, thereby pressing the connecting part.
[0027] In one embodiment, the locking bracket has a first hook on the side facing the protruding edge; The locking position is configured as a water guide groove located at the bottom of the protruding edge, and the first hook engages with the water guide groove; or, the locking position is configured as a second hook located at the bottom of the protruding edge, and the first hook engages with the second hook; and / or The mounting bracket has at least two perforated holes, with a dividing rib between the two holes. One end of the safety rope is connected to the dividing rib, and the other end can be connected to the inner side of the wall or the indoor unit of an air conditioner; and / or, The lower side of the connecting bracket is provided with a second adjusting member, which is threadedly connected to the connecting bracket and the end of the second adjusting member abuts against the exterior wall of the building; the second adjusting member can be rotated to adjust the angle between the connecting bracket and the exterior wall.
[0028] In one embodiment, the mounting bracket further includes a bracket body for mounting the outdoor unit of the air conditioner, and the bracket body is mounted on the connecting bracket to mount the outdoor unit of the air conditioner outside the building.
[0029] In one embodiment, the main body of the bracket includes a first support frame and a second support frame. The first support frame is detachably installed on the connecting bracket and extends downward. The second support frame includes a fixing part and a supporting part arranged at an angle. The fixing part is connected to the first support frame and extends downward. The supporting part is disposed between the fixing part and the exterior wall of the building. The outdoor unit of the air conditioner is installed at least on the side of the fixing part away from the exterior wall to press the supporting part against the exterior wall. The main body of the bracket also includes an adapter frame, which is fixed to the outdoor unit of the air conditioner and is used to install the outdoor unit of the air conditioner onto the fixing part.
[0030] In one embodiment, the fixing part is provided with a mounting groove on the side facing the adapter, and the bottom wall of the mounting groove is provided with an elastic buffer. The adapter is slidably mounted on the mounting groove and abuts against the end of the elastic buffer away from the bottom wall of the mounting groove.
[0031] In one embodiment, the elastic buffer is configured as a buffer spring; and / or, The mounting slide also includes a stop plate, which includes a fixed section and a stop section arranged at an angle. The fixed section is connected between the bottom wall of the mounting slide and the elastic buffer member, and the stop section is located at the opening of the mounting slide to prevent the elastic buffer member from coming out of the mounting slide.
[0032] In one embodiment, the upper side of the connecting bracket is provided with a mounting hole, and the upper end of the bracket body is provided with a mounting hook, the mounting hook being hooked onto the mounting hole; and / or, The upper end of the bracket body is provided with an anti-detachment plate extending towards the connecting bracket, and the first fastener connects the anti-detachment plate and the connecting bracket.
[0033] This utility model also proposes an air conditioner, including an outdoor unit and a mounting bracket as described above, wherein the mounting bracket is used to install the outdoor unit outside the house.
[0034] In one embodiment, the air conditioner further includes an indoor unit; The indoor unit of the air conditioner is connected to the outdoor unit of the air conditioner via a refrigerant pipe, which is pre-filled with refrigerant; and / or, the bottom of the indoor unit of the air conditioner is equipped with casters.
[0035] The technical solution of this utility model involves setting up an installation structure, which includes a connecting bracket and a locking bracket. The connecting bracket is connected to the upper side of the protruding edge, and the locking bracket is installed on the connecting bracket. The locking bracket is located on the bottom side of the protruding edge and can be engaged with the locking position to install the installation structure on the protruding edge. The locking position is generally not set by damaging the surface of the protruding edge, but is often an inherent structure of the protruding edge itself, such as some water guide ribs or water guide grooves, or some processing grooves or ribs. Therefore, this installation structure will not damage the protruding edge or other structures. That is, in this solution, the installation of the connecting bracket can be completed without damaging the structure of the protruding edge, the exterior wall, or the window. In actual installation, it is only necessary to install the installation structure on the protruding edge and then install the outdoor unit of the air conditioner on the installation structure. The installation is convenient and does not require professional installers, allowing users to install it themselves. Attached Figure Description
[0036] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0037] Figure 1 A schematic diagram of the installation structure of the outdoor unit of an air conditioner in one embodiment of the present utility model; Figure 2 for Figure 1 A magnified view of a section at point A in the middle; Figure 3 for Figure 1 A schematic diagram of the installation structure at one angle; Figure 4 for Figure 1 Another angle of the installation structure diagram; Figure 5 for Figure 1 A schematic diagram of the installation structure in the middle; Figure 6 for Figure 1 A schematic diagram of the installation structure of the connecting bracket, sliding bracket, and elastic element; Figure 7 for Figure 1 A schematic diagram of the installation structure of the connecting bracket and the sliding bracket; Figure 8 for Figure 1A schematic diagram of the angled installation structure of the sliding bracket and the locking bracket; Figure 9 for Figure 1 A schematic diagram of the installation structure of the sliding bracket and locking bracket from another angle; Figure 10 for Figure 1 Schematic diagram of the cooperation structure between the central locking frame and the limiting part; Figure 11 for Figure 1 Enlarged view of a portion of the main structure of the central support frame; Figure 12 for Figure 1 A schematic diagram of the structure in which the mounting bracket is installed on the flange; Figure 13 for Figure 12 A magnified view of a section at point B in the middle; Figure 14 for Figure 12 A magnified view of a section at point C; Figure 15 for Figure 14 Exploded view of the intermediate elastic buffer and stop plate; Figure 16 A schematic diagram of the installation structure of an air conditioner provided in another embodiment of the present utility model; Figure 17 A schematic diagram of an angled mounting structure of the mounting bracket in another embodiment of the air conditioner provided by this utility model; Figure 18 for Figure 17 A magnified view of a section at point D; Figure 19 for Figure 17 A schematic diagram of the mounting bracket at one angle; Figure 20 for Figure 19 A magnified view of a section at point E in the middle; Figure 21 for Figure 17 A schematic diagram of the assembly structure of the central locking bracket, auxiliary locking structure, and adjustment structure at one angle; Figure 22 for Figure 17 Another angle of the assembly structure of the central locking bracket, auxiliary locking structure and adjustment structure; Figure 23 A schematic diagram of the installation structure of the outdoor unit of the air conditioner in another embodiment of the air conditioner provided by this utility model; Figure 24 for Figure 23 A magnified view of a section at point F in the middle; Figure 25 for Figure 23 A schematic diagram of the structure of the mounting bracket at one angle; Figure 26 for Figure 23 Another structural diagram of the mounting bracket; Figure 27 for Figure 23 A magnified view of a section at point G in the middle; Figure 28 for Figure 23 Another angled structural diagram of the mounting bracket; Figure 29 for Figure 23 A schematic diagram of the installation structure at one angle; Figure 30 for Figure 23 Another angle schematic diagram of the installation structure; Figure 31 for Figure 23 Schematic diagram of the assembly structure of the central locking bracket and auxiliary locking structure; Figure 32 for Figure 23 A schematic diagram of the internal structure of the unidirectional lock in the open state; Figure 33 for Figure 23 A schematic diagram of the internal structure of the unidirectional lock in the locked state.
[0038] Explanation of icon numbers: 1. Mounting bracket; 101. Hole; 102. Dividing rib; 103. Safety rope; 11. Bracket body; 111. Mounting hook; 112. Anti-detachment plate; 113. First fastener; 114. Third adjusting component; 115. First support frame; 116. Second support frame; 1161. Fixing part; 1162. Supporting part; 1163. Mounting slide; 1164. Elastic buffer; 1165. Stop plate; 1166. Fixing section; 1167. Stop section; 12. Installation structure; 13. Connecting bracket; 131. Overlapping part; 132. Connecting part; 1321. Second guide groove; 133. First guide groove; 134. Limiting part; 1341. Guide slope; 135. Second adjusting component; 136. Mounting hole; 137. Buffer pad; 138. Connecting body; 1381. First rotating part; 1382. Rotating shaft; 139. Adjusting structure; 1391. Adjusting body; 1392. Limiting stop; 1393. First adjusting plate; 1394. Second adjusting plate; 1395. Locking protrusion; 1396. Second rotating part; 14. Locking bracket; 141. First adjusting component; 1411. Stop component; 142. Second sliding component; 143. First hook; 144. Locking body; 145. Abutting edge; 146. Bending edge; 15. Sliding bracket; 151. First sliding member; 152. Inclined hole; 153. Second guide groove; 154. Elastic member; 16. Auxiliary locking structure; 161. Linked locking frame; 162. Locking groove; 163. Locking member; 164. One-way lock; 1641. Locking cavity; 1642. Elastic member; 1643. Locking ball; 1644. Unlocking part; 165. Push rod; 1651. First section; 1652. Second section; 1653. Third section; 166. Unlocking member; 1661. Main unlocking part; 1662. Lifting handle; 17. Connecting accessory; 171. Fourth fastener; 18. Adjustable locking member; 181. Anti-slip handle; 2. Window; 21. Eaves; 22. Locking position; 221. Drain channel; 222. Second hook; 3. Air conditioner outdoor unit; 4. Exterior wall.
[0039] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0040] 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 scope of protection of the present utility model.
[0041] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0042] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0043] This utility model proposes a mounting bracket 1 for installing an outdoor air conditioner unit 3 outside a building. A protruding edge 21 is provided on the outer side of the building. This protruding edge 21 is generally located on the exterior wall 4, and can be a window sill at the bottom of a window 2, an eave, or a decorative protruding edge. A locking position 22 is provided on the bottom side of the protruding edge 21. This mounting bracket 1 can be manually installed by the user on the protruding edge 21 without requiring a professional installer and without damaging the wall.
[0044] The air conditioner also includes an indoor unit, and a flexible connection assembly connects the indoor unit and the outdoor unit 3. This air conditioner can be a split-type air conditioner that is easy for users to install themselves. It uses refrigerant pipes to connect the indoor heat exchanger of the indoor unit and the outdoor heat exchanger of the outdoor unit 3, and refrigerant is injected into the refrigerant circuit before the equipment leaves the factory. Thus, when users install the equipment themselves, they only need to fix the indoor unit and the outdoor unit 3 separately, without needing to install refrigerant pipes or add refrigerant, thereby reducing installation difficulty and enabling individual installation. However, this design is not limited to this. In other embodiments, the air conditioner of this invention can also be a common split-type air conditioner or an integrated air conditioner, such as a window air conditioner integrated unit, in which case the outdoor unit 3 refers to the part of the window air conditioner that extends to the outside.
[0045] Furthermore, this type of split-type air conditioner, which is convenient for individual users to install, allows the compressor to be placed inside the indoor unit, thereby reducing the weight of the outdoor unit 3 and facilitating its installation on the mounting bracket 1. Correspondingly, in order to reduce the noise generated by the compressor, a noise reduction structure needs to be installed on the compressor.
[0046] Please see Figures 1 to 16 In one embodiment of this utility model, the mounting bracket 1 includes: The mounting structure 12 includes a connecting bracket 13 and a locking bracket 14. The connecting bracket 13 is connected to the upper side of the protrusion 21, and the locking bracket 14 is mounted on the connecting bracket 13. The locking bracket 14 is located on the bottom side of the protrusion 21 and can be locked with the locking position 22.
[0047] Specifically, the mounting bracket 1 in this solution is suitable for houses with a raised edge 21. The mounting structure 12 can be installed on the raised edge 21, and at least partially located on the outside of the house. The outdoor air conditioner unit 3 can be directly installed on the mounting structure 12, or it can be installed on the mounting structure 12 through other brackets, thus installing the outdoor air conditioner unit 3 outside the house. The connecting bracket 13 is connected to the upper side of the raised edge 21, and the locking bracket 14 is installed on the connecting bracket 13. The bottom of the raised edge 21 usually has a locking position 22, and the locking bracket 14 can be locked with the locking position 22, thereby fixing the mounting structure 12 to the upper and lower sides of the raised edge 21 respectively, thus ensuring the installation stability of the mounting structure 12 and reducing the possibility of the mounting structure 12 accidentally detaching or moving outward under the gravity of the outdoor air conditioner unit 3. Moreover, this solution can complete the installation of the mounting structure 12 without damaging the structure of the raised edge 21, the exterior wall, or the window 2. Furthermore, the installation of the mounting structure 12 is convenient and does not require professional installers, allowing users to install it themselves.
[0048] Optionally, the connecting bracket 13 includes an overlapping portion 131 and a connecting portion 132 arranged at an angle. The connecting portion 132 extends downward, and the overlapping portion 131 is approximately parallel to the upper side of the protruding edge 21, thus overlapping the upper side of the protruding edge 21. The weight of the outdoor air conditioner unit 3 and the mounting bracket 1 is used to press the upper side of the protruding edge 21, without damaging the protruding edge 21. The locking bracket 14 is installed on the connecting portion 132 and locked with the locking position 22 on the bottom side of the protruding edge 21 to further connect with the protruding edge 21. On the other hand, the presence of the locking bracket 14 can also reduce the possibility of displacement of the overlapping portion 131 relative to the protruding edge 21. The locking bracket 14 can be directly slidably installed on the connecting portion 132 in the vertical direction, or it can be slidably installed on the connecting portion 132 via the sliding bracket 15.
[0049] When the raised edge 21 is a window sill, this mounting structure 12, because it is installed on the window sill, allows the window 2 to be opened regardless of the window type. Especially for outward-opening windows 2, this mounting structure 12 can avoid the opening or closing path of the window 2, thus allowing the window 2 to open and close normally, thereby reducing the impact of the installation of the air conditioner outdoor unit 3 on the normal use of the window 2. In addition, the mounting bracket 1 generally extends downward, thereby reducing the installation height of the air conditioner outdoor unit 3, so that the installation height of the air conditioner outdoor unit 3 is often lower than the height of the window. Preferably, the top of the air conditioner outdoor unit 3 is lower than the bottom of the window, so that the window 2 can be fully opened outward, thereby further reducing the impact of the installation of the air conditioner outdoor unit 3 on the window 2 and ensuring the ventilation and light transmission effect of the window 2.
[0050] Furthermore, the window sill sizes and types that are matched with different models of windows 2 are often different, and the size and type of the outer ridge of different house types may also be different. Therefore, in order to adapt to ridges 21 of different sizes, the locking bracket 14 can move up and down on the connecting bracket 13 to adapt to ridges 21 of different thicknesses.
[0051] It should be noted that the locking position 22 is generally not formed by damaging the surface of the protruding edge 21. It is often an inherent structure of the protruding edge 21 itself, such as some water-guiding ribs or water-guiding grooves 221, or some machined grooves or ribs. Therefore, this type of installation structure 12 will not damage the structure of the protruding edge 21. In other embodiments, if the upper surface of the protruding edge 21 has some decorative ribs or water-guiding ribs, some locking hooks can also be provided on the upper side of the connecting bracket 13. These locking hooks can hook onto the water-guiding ribs or decorative ribs, thereby further reducing the possibility of the installation structure 12 coming off.
[0052] In one embodiment, reference is made to Figure 4 The locking bracket 14 is provided with a first hook 143 facing the protruding edge 21; the locking position 22 is configured as a water guide groove 221 at the bottom of the protruding edge 21, and the first hook 143 is engaged with the water guide groove 221. At this time, the protruding edge 21 is usually made of stone, and the water guide groove 221 at its bottom is usually a machined groove. The locking hook is inserted into the water guide groove 221, thereby engaging with the water guide groove 221, thereby preventing the mounting structure 12 from moving outward and ensuring that the mounting structure 12 stably clamps the protruding edge 21.
[0053] In another embodiment, reference is made to Figure 16The locking bracket 14 is provided with a first hook 143 facing the protruding edge 21; the locking position 22 is configured as a second hook 222 located at the bottom of the protruding edge 21, and the first hook 143 engages with the second hook 222. At this time, the protruding edge 21 is usually made of aluminum alloy, and the aluminum alloy is folded at the lower edge of the protruding edge to form a hook structure. The first hook 143 engages with this hook structure to achieve the engagement of the locking bracket 14 and the locking position 22, thereby preventing the mounting structure 12 from moving outward and ensuring the stable clamping of the mounting structure 12 on the protruding edge 21.
[0054] In other embodiments, the locking bracket 14 is provided with a first hook 143 facing the protrusion 21; the locking position 22 is configured as a protrusion rib at the bottom of the protrusion 21, and the first hook 143 is engaged with the inner side of the protrusion rib.
[0055] In an embodiment of this utility model, the mounting structure 12 further includes an auxiliary locking structure 16. The auxiliary locking structure 16 is disposed on the mounting structure 12 and enables the locking bracket 14 to lock the locking position 22. Because the locking bracket 14 can slide up and down relative to the connecting part 132, and the locking bracket 14 needs to be locked with the locking position 22, the locking bracket 14 may accidentally loosen during actual use. Therefore, the auxiliary locking structure 16 is required to further lock the locking bracket 14 to the locking position 22, thereby reducing the possibility of the locking bracket 14 accidentally loosening.
[0056] The auxiliary locking structure 16 can apply an upward pushing force or an upward pulling force to the locking bracket 14, thereby ensuring that the locking bracket 14 is always locked in the locking position 22 in the vertical direction. For example, the auxiliary locking structure 16 includes a one-way lock and a push rod that slides through the one-way lock. The push rod pushes the locking bracket 14 upward. The one-way lock is located on the connecting bracket 13 and can lock the push rod downward. That is, the push rod can apply an upward pushing force to the locking bracket 14, further locking the locking bracket 14 to the protrusion 21, and causing the mounting structure 12 to form a certain clamping effect on the protrusion 21. To reduce the accidental downward movement of the push rod, a one-way lock is provided. The push rod passes through the one-way lock, and when the push rod moves upward, the one-way lock is in the open state and does not restrict the sliding of the push rod; when the push rod moves downward, the one-way lock will automatically lock (in the locked state), thereby preventing the push rod from moving downward and ensuring that the locking bracket 14 locks the locking flange 21.
[0057] The auxiliary locking structure 16 can also lock the locking bracket 14 to the locking position 22 by restricting the downward movement of the locking bracket 14. For example, the auxiliary locking structure 16 includes a stop piece 1165, which is connected to the locking bracket 14 and engages with the connecting part 132, thereby preventing the locking bracket 14 from moving downward. In this case, the user needs to manually lock the locking bracket 14 to the locking position 22 and then engage the stop piece 1165 with the connecting part 132 to ensure that the locking bracket 14 is always locked to the locking position 22.
[0058] Please see Figures 1 to 16 In an embodiment of this utility model, the mounting structure 12 further includes a sliding bracket 15, which is slidably mounted on the connecting bracket 13 in the up-down direction, and a locking bracket 14 is disposed on the sliding bracket 15; the auxiliary locking structure 16 includes a linkage locking frame 161, which can be linked with the sliding bracket 15 so that the locking bracket 14 locks the locking position 22.
[0059] Specifically, the locking bracket 14 is mounted on the connecting part 132 via the sliding bracket 15, thereby facilitating the installation of the locking bracket 14. The linkage locking bracket 161 can move relative to the sliding bracket 15 and the connecting part 132. The movement of the linkage locking bracket 161 can drive the movement of the sliding bracket 15, thereby making the two move together so that the sliding bracket 15 and the overlapping part 131 can jointly clamp the protrusion 21, thereby locking the locking bracket 14 to the locking position 22 in the vertical direction.
[0060] Furthermore, refer to Figure 4 and Figure 10 The mounting structure 12 further includes a first adjusting member 141 rotatably mounted on the sliding bracket 15, the lower side of the linkage locking frame 161 is movably connected to the sliding bracket 15, and the first adjusting member 141 passes through the upper side of the linkage locking frame 161. The first adjusting member 141 rotates, causing the linkage locking bracket 161 to deflect about its middle part as an axis, thereby causing the sliding bracket 15 to move upward, so that the locking bracket 14 locks the locking position 22.
[0061] Specifically, the lower side of the linkage locking bracket 161 is movably connected to the sliding bracket 15, the first adjusting member 141 is rotatably inserted through the upper side of the linkage locking bracket 161, and the middle part of the linkage locking bracket 161 can deflect relative to the sliding bracket 15 and the connecting bracket 13, and the linkage locking bracket 161 can slide relative to the connecting bracket 13 together with the sliding bracket 15. When the locking bracket 14 is engaged in the locking position 22, rotating the first adjusting member 141 causes the first adjusting member 141 to move axially, thereby pushing the upper side of the linkage locking bracket 161 to move away from the locking bracket 14. This causes the linkage locking bracket 161 to deflect about its middle axis, so that the lower side of the linkage locking member 163 drives the sliding bracket 15 to move upward. This locks the locking bracket 14 in the locking position, and the sliding bracket 15, together with the overlapping part 131, clamps the protrusion 21, thereby ensuring the clamping force of the mounting structure 12 and reducing the possibility of the mounting structure 12 accidentally disengaging from the protrusion 21.
[0062] The "middle" of the linkage locking bracket 161 does not refer to the exact center of the linkage locking bracket 161, but rather to the position between the linkage locking bracket 161 and the mounting position of the sliding bracket 15, and between the linkage locking bracket 161 and the mounting position of the first adjusting member 141. It may be the exact center of the linkage locking bracket 161, or it may be offset upwards or downwards relative to the exact center of the linkage locking bracket 161. The sliding bracket 15 moves upwards, meaning its overall movement trend is upwards, but its sliding path may not be completely vertically upwards; it may also be obliquely upwards.
[0063] To facilitate the rotational mounting of the middle part of the linkage locking bracket 161 between the sliding bracket 15 and the connecting part 132, in one embodiment, please refer to... Figures 5 to 7 , Figure 10 The connecting bracket 13 is provided with a limiting part 134 protruding toward the sliding bracket 15. The limiting part 134 is provided with a first guide groove 133 extending in the vertical direction. The sliding bracket 15 also includes a first sliding member 151. The first sliding member 151 is installed on the sliding bracket 15 and slidably inserted into the first guide groove 133. The middle part of the linkage locking bracket 161 is rotatably installed on the first sliding member 151.
[0064] Specifically, the first sliding member 151 is fixed to the sliding bracket 15, and the first guide groove 133 extends vertically. The first sliding member 151 is slidably inserted into the first guide groove 133 to drive the sliding bracket 15 to slide vertically relative to the mounting portion 132, thereby slidably mounting the sliding bracket 15 onto the mounting portion 132. The linkage locking bracket 161 is rotatably mounted on the first sliding member 151, thereby facilitating the rotation of the middle part of the linkage locking bracket 161 between the sliding bracket 15 and the connecting portion 132. The limiting portion 134 is typically a flange formed by partial stamping of the connecting portion 132, which facilitates the processing of the limiting portion 134 and ensures the stable installation of the sliding bracket 15.
[0065] To ensure installation stability, two limiting parts 134 are spaced apart, and two corresponding first guide grooves 133 are also spaced apart. The sliding bracket 15 is slidably installed between the two first guide grooves 133. Therefore, the first sliding member 151 can be configured as a sliding pin, with through holes opened on both sides of the sliding bracket 15. The sliding pin passes through the two through holes and the two first guide grooves 133, thus ensuring the stable installation of the sliding bracket 15 and the connecting part 132, and facilitating the installation of the sliding bracket 15 and the connecting part 132. In other embodiments, the first sliding member 151 can also be integrally formed on the sliding bracket 15. Furthermore, to reduce the deflection of the sliding bracket 15 relative to the connecting part 132, multiple first sliding members 151 can be provided, and the multiple first sliding members 151 are arranged spaced apart in the vertical direction, and all multiple first sliding members 151 are slidably installed in the first guide grooves 133, thereby further improving the movement stability of the sliding bracket 15.
[0066] To further improve the locking effect of the linkage locking bracket 161, in the embodiments of this utility model, see [reference needed]. Figure 5 , Figure 6 and Figure 10 The lower end of the linkage locking frame 161 is provided with a locking groove 162, a locking member 163 passes through the locking groove 162 and is connected to the sliding bracket 15, and the locking groove 162 extends upward at an angle. The middle part of the linkage locking frame 161 deflects about the first sliding member 151 as an axis. The groove wall of the locking groove 162 pushes the locking member 163 to move obliquely upward, thereby driving the sliding bracket 15 to move upward. It can also make the locking member 163 press against the side of the limiting part 134 away from the connecting bracket 13, thereby restricting the downward movement of the locking frame.
[0067] Please see Figure 10The locking member 163 is sequentially inserted into the sliding bracket 15 and the locking groove 162, so as to drive the sliding bracket 15 to slide up and down relative to the connecting part 132. As a result, when the linkage locking bracket 161 deflects in the direction B with the first sliding member 151 as the axis, the groove wall of the locking groove 162 pushes the locking member 163 to move towards C, so as to press the limiting part 134 on the side away from the connecting part 132. At the same time, the locking member 163 moves upward along the extension direction of the locking groove 162 to clamp the protruding edge 21, thereby ensuring the locking member 163 is locked.
[0068] To ensure installation stability, multiple locking grooves 162 can be provided. A locking element 163 is slidably installed between two locking grooves 162. Therefore, the locking element 163 can also be configured as a sliding pin, with through holes opened on both sides of the sliding bracket 15. The sliding pin passes through the two through holes and the two locking grooves 162, thus ensuring both stable installation of the sliding bracket 15 and the connecting part 132 and facilitating their installation. Furthermore, to ensure that the locking element 163 can lock the side of the limiting part 134 away from the connecting part 132, multiple sequentially arranged snap-fit notches can be provided on the side of the limiting part 134 away from the connecting part 132. When the locking element 163 drives the sliding bracket 15 to move upwards to its designated position, the locking element 163 engages with one of these snap-fit notches, thereby ensuring the clamping force of the installation structure 12. However, this type of snap-fit notch may cause the movement of the locking member 163 to be less smooth. Therefore, the depth of the snap-fit notch should not be too large, and its depth should not exceed one-third of the diameter of the locking member 163.
[0069] To further improve the smoothness of its movement, in one embodiment, please refer to... Figure 5 and Figure 10 The limiting part 134 has a guide slope 1341 on the side opposite to the connecting bracket 13. The guide slope 1341 allows the locking member 163 to abut against it and restricts the locking member 163 from sliding downward. Specifically, the distance from the guide slope 1341 to the connecting part 132 decreases in the upward direction (see...). Figure 10 Let the angle between the guide ramp 1341 and the vertical direction be α, meaning the limiting part 134 has a "smaller at the top and larger at the bottom" structure. Therefore, after locking, the locking member 163 is not easy to slide downwards, thus preventing the sliding bracket 15 from sliding downwards and ensuring the locking effect. Furthermore, since the guide ramp 1341 is continuous, the locking bracket can be locked at any desired position, easily adapting to different thicknesses of the protruding edge 21.
[0070] In one embodiment, the sliding bracket 15 is provided with an inclined hole 152 for the locking member 163 to pass through, and the distance from the inclined hole 152 to the limiting part 134 decreases in the upward direction. Specifically, the presence of the inclined hole 152 can further assist the movement of the locking member 163, thereby facilitating the cooperation between the inclined hole 152 and the locking groove 162 to drive the movement of the locking member 163.
[0071] Please see Figure 4 , Figure 5 and Figure 8 In an embodiment of this utility model, the locking bracket 14 is slidably mounted on the sliding bracket 15 and can slide along the protruding direction of the protruding edge 21. The first adjusting member 141 passes through the linkage locking bracket 161 and the sliding bracket 15 in sequence and is threadedly connected to the locking bracket 14. Before the first adjusting member 141 drives the linkage locking bracket 161 to deflect about its middle part as an axis, the first adjusting member 141 rotates, causing the locking bracket 14 to slide along the protruding direction of the convex edge 21, so that the locking bracket 14 is engaged in the locking position 22.
[0072] Specifically, the first adjusting member 141 is sequentially inserted through the linkage locking bracket 161 and the sliding bracket 15, and can rotate relative to the sliding bracket 15. The first adjusting member 141 is threadedly connected to the locking bracket 14, thereby causing the first adjusting member 141 to rotate, which in turn drives the locking bracket 14 to slide along the protruding direction of the protruding edge 21, thereby adjusting the position of the locking bracket 14 relative to the locking position 22.
[0073] In actual operation, initially, the first adjusting member 141 is in its loosest position, that is, the locking bracket 14 is located closest to the innermost side. At this time, the locking bracket 14 is located at the end of the first adjusting member 141. In order to prevent the locking bracket 14 from disengaging from the first adjusting member 141, a stop member 1411 is provided at the end of the first adjusting member 141 (see...). Figure 8 By rotating the first adjusting member 141, the locking bracket 14 moves outward continuously until it engages with the locking position 22. (If the locking position 22 is configured as a water guide groove 221, the user will hear a "click" sound when rotating the first adjusting member 141 to a certain angle. This indicates that the first hook 143 has been inserted into the water guide groove 221. Continue rotating the first adjusting member 141 until there is no "click" sound, which indicates that it is locked.)
[0074] Furthermore, after the locking bracket 14 and the locking position 22 are locked along the protruding direction of the convex edge 21, when the first adjusting member 141 is rotated further, the locking bracket 14 will no longer move axially. At this time, the first adjusting member 141 drives the linkage locking frame 161 to move in the direction of A, thereby causing the middle part of the linkage locking frame 161 to deflect about the first sliding member 151 as an axis. The groove wall of the locking groove 162 pushes the locking member 163 to move obliquely upward, thereby driving the sliding bracket 15 to move upward, and enabling the locking member 163 to press against the guide slope 1341 of the limiting part 134, thereby restricting the downward movement of the locking frame. To facilitate rotation of the first adjusting member 141, a rotating handle is provided at the end of the first adjusting member 141, making it convenient for the user to apply force. It can be understood that the protruding direction of the convex edge 21 is perpendicular to the outer wall 4, which is the inward and outward direction marked in the figure.
[0075] To ensure the stable movement of the locking bracket 14, in one embodiment, please refer to... Figures 8 to 9 The mounting structure 12 also includes a second sliding member 142 disposed on the locking bracket 14. The sliding bracket 15 is provided with a second guide groove 153 extending along the protruding direction of the convex edge 21. The second sliding member 142 is slidably inserted into the second guide groove 153 to drive the locking bracket 14 to move along the protruding direction of the convex edge 21. Specifically, the second sliding member 142 is fixed to the locking bracket 14, the second guide groove 153 extends along the protruding direction of the convex edge 21, and the second sliding member 142 is slidably inserted into the second guide groove 153 to drive the locking bracket 14 to slide relative to the sliding bracket 15 along the protruding direction of the convex edge 21, thereby engaging the locking bracket 14 with the locking position 22.
[0076] To ensure installation stability, two second guide grooves 153 are spaced apart. The locking bracket 14 is slidably installed between the two second guide grooves 153. Therefore, the second sliding member 142 can be configured as a sliding pin, with through holes opened on both sides of the locking bracket 14. The sliding pin passes through the two through holes and the two second guide grooves 153, thus ensuring both the stability of the installation of the sliding bracket 15 and the locking bracket 14 and facilitating their installation. In other embodiments, the second sliding member 142 can also be integrally formed into the locking bracket 14.
[0077] To achieve pre-fixation of the mounting structure 12 with the flange 21, in one embodiment, refer to... Figure 5 and Figure 6An elastic element 154 is also provided between the sliding bracket 15 and the connecting bracket 13. The elastic element 154 gives the sliding bracket 15 an upward tendency. Specifically, the elastic element 154 gives the sliding bracket 15 an upward tendency, so when installing the installation structure 12, the sliding bracket 15 is first pulled down to place it in the installation position, and then released. Under the action of the elastic element 154, the sliding bracket 15 and the overlapping part 131 are automatically clamped on the upper and lower sides of the protruding edge 21, thereby achieving the pre-fixation of the connecting bracket 13. Then, it is convenient to adjust the positional relationship between the locking bracket 14 and the locking position 22 so that it is engaged with the locking position 22, thereby facilitating the installation of the installation structure 12.
[0078] In this design, the elastic element 154 is typically configured as a compression spring. One end of the elastic element 154 is connected to the connecting bracket 13, and the other end can be connected to the end of the first sliding element 151. This allows the elastic element 154 to easily pull the sliding bracket 15 while preventing the first sliding element 151 from dislodging from the first guide groove 133. To ensure smooth movement, two elastic elements 154 are provided, located at opposite ends of the first sliding element 151. For easy installation, a mounting hook is provided on the upper side of the connecting portion 132 or the lower surface of the overlapping portion 131. The end of the first sliding element 151 has a mounting hole 136. One end of the elastic element 154 is hooked onto the mounting hook, and the other end passes through the mounting hole 136. In other embodiments, the elastic element 154 can also be configured as an elastic band, etc.
[0079] Compared to the locking bracket 14 described above, which is locked by the auxiliary locking structure 16, in another embodiment of this utility model, please refer to... Figures 17 to 22 The mounting structure 12 also includes a connecting accessory 17. One end of the connecting accessory 17 is connected to the locking bracket 14, and the other end is connected to the upper side of the connecting bracket 13. The connecting accessory 17 allows the connecting bracket 13 and the locking bracket 14 to be clamped together on the upper and lower sides of the protruding edge 21. That is, the locking bracket 14 is mounted on the connecting bracket 13 through the connecting accessory 17 and can slide up and down relative to the connecting bracket 13 to adapt to protruding edges 21 of different thicknesses. Therefore, the connecting accessory 17 is movably mounted on at least one of the locking bracket 14 and the connecting bracket 13. Furthermore, the connecting accessory 17 can pull the locking bracket 14 upward, so that the connecting bracket 13 and the locking bracket 14 are clamped together on the upper and lower sides of the protruding edge 21, so that the locking bracket 14 can lock in the locking position 22.
[0080] In one embodiment, the connecting accessory 17 is configured as a fourth fastener 171, which is rotatably connected to the locking bracket 14 and threadedly connected to the upper side of the connecting bracket 13. Specifically, one end of the fourth fastener 171 is connected to the locking bracket 14 and can rotate relative to the locking bracket 14, and is also threadedly connected to the upper side of the connecting bracket 13. Therefore, rotating the fourth fastener 171 allows it to slide axially (vertically) relative to the connecting bracket 13, thereby adjusting the distance between the upper sides of the locking bracket 14 and the connecting bracket 13. Furthermore, the threaded connection between the fourth fastener 171 and the upper side of the connecting bracket 13 means that the adjusting end of the connecting accessory 17 is located on the upper side of the mounting bracket 1, facilitating user operation. Of course, in other embodiments, the fourth fastener 171 can also be rotatably connected to the upper side of the connecting bracket 13 and threadedly connected to the locking bracket 14. In order to reduce the possibility of the fourth fastener 171 disengaging from the locking bracket 14, a blocking member is provided on the upper side of the locking bracket 14 away from the connecting bracket 13. The blocking member can be configured as a retaining ring, a blocking nut, or a stop pin.
[0081] Furthermore, the connecting bracket 13 includes a connecting body 138 and an adjusting structure 139 rotatably connected to the upper side of the connecting body 138. The connecting body 138 presses the adjusting structure 139 against the upper side of the protruding edge 21. One end of the connecting accessory 17 is connected to the locking bracket 14, and the other end is connected to the adjusting structure 139, so that the adjusting structure 139 and the locking bracket 14 together clamp the protruding edge 21. Specifically, the connecting body 138 is mainly used for mounting the bracket body 11. Thus, during actual assembly, the user can first install the mounting structure 12 onto the protruding edge 21, install the outdoor air conditioner unit 3 onto the bracket body 11, and then assemble the bracket body 11 with the connecting body 138, thereby facilitating the installation of the outdoor air conditioner unit 3.
[0082] Furthermore, to facilitate water drainage, the upper side of the protruding edge 21 in some users' homes may be designed as an inclined slope, and the height of the protruding edge 21 gradually decreases along the direction away from the exterior wall 4, and its inclination angle may also vary. If the upper side of the connecting body 138 is directly clamped to the protruding edge 21 in the vertical direction together with the locking bracket 14, the upper side of the connecting body 138 will be fixed, which will cause the connecting body 138 to be unable to adapt to the protruding edge 21 with different inclinations. The contact area between the mounting structure 12 and the upper side of the protruding edge 21 will be too small, resulting in poor installation stability of the mounting structure 12. To improve the adaptability of the connecting bracket 13, an adjustment structure 139 is provided between the connecting body 138 and the upper side of the protruding edge 21. The adjustment structure 139 is rotatably connected to the upper side of the connecting body 138, so that under the gravity of the outdoor unit 3, the upper side of the connecting body 138 can press the adjustment structure 139 against the upper side of the protruding edge 21. At this time, the adjustment structure 139 can be adjusted according to the inclination of the upper surface of the protruding edge 21, so that it is approximately parallel to the upper surface of the protruding edge 21, so that the adjustment structure 139 abuts against the upper side of the protruding edge 21, thereby increasing the contact area between the connecting bracket 13 and the upper side of the protruding edge 21, and improving the installation stability of the mounting structure 12. At this time, the connecting accessory 17 is connected between the adjustment structure 139 and the locking bracket 14, thereby ensuring that the connecting accessory 17 makes the adjustment structure 139 and the locking bracket 14 jointly clamp the protruding edge 21. At this time, the upper side of the bracket body 11 may interfere with the connecting accessory 17. Therefore, the upper side of the connecting accessory 17 is provided with a through hole, and the connecting accessory 17 passes through the through hole.
[0083] Furthermore, the adjustment structure 139 includes an adjustment body 1391 and a limiting stop 1392 set at an angle to the adjustment body 1391. The adjustment body 1391 abuts against the upper side of the protruding edge 21, and the limiting stop 1392 abuts against the outer side of the protruding edge 21. The adjustment body 1391 is generally horizontally positioned to abut against the upper side of the protruding edge 21, and the limiting stop 1392 is generally parallel to the vertical direction and abuts against the outer side of the protruding edge 21, that is, the side of the protruding edge 21 away from the window 2. This limits the protruding edge 21 in both the horizontal and vertical directions, thereby effectively reducing the possibility of accidental rotation of the adjustment structure 139 relative to the protruding edge 21 during use, which could affect the stability of their cooperation.
[0084] Specifically, the adjusting body 1391 includes a first adjusting plate 1393 and a second adjusting plate 1394. The first adjusting plate 1393 is rotatably connected to the upper side of the connecting body 138. The second adjusting plate 1394 is assembled on the side of the first adjusting plate 1393 facing the protruding edge 21, and a portion of the second adjusting plate 1394 is bent downward to form a limiting stop 1392. That is, the limiting stop is formed by partial stamping of the second adjusting plate 1394, thereby ensuring the stable connection between the adjusting body 1391 and the limiting stop 1392. Since the adjusting body 1391 needs to be connected to the connecting body 138 and the limiting stop 1392 respectively, multiple stamping processes are required. Therefore, in order to balance its overall structural strength and facilitate the processing of the adjusting body 1391, the adjusting body 1391 consists of a first adjusting plate 1393 and a second adjusting plate 1394 stacked on top of each other. On the other hand, this also increases the overall thickness of the adjusting body 1391, thereby further improving its structural strength. One of the second adjusting plates 1394 is provided with a locking protrusion 1395, and the first adjusting plate 1393 is provided with a locking hole. The locking protrusion 1395 passes through the locking hole, thereby ensuring the stable assembly of the first adjusting plate 1393 and the second adjusting plate 1394 and facilitating their installation.
[0085] Optionally, the first adjusting plate 1393 is rotatably mounted on the upper side of the connecting body 138 via a rotating shaft, and the first adjusting plate 1393 can swing about the rotating shaft, so that the upper side of the connecting body 138 can press the first adjusting plate 1393 against the upper side of the protruding edge 21. For ease of installation, optionally, a partial bend in the lower surface of the upper side of the connecting body 138 forms a first rotating part, and a partial upward bulge in the first adjusting plate 1393 forms a second rotating part. The rotating shaft rotates through the first and second rotating parts, so that the first adjusting plate 1393 is rotatably mounted on the upper side of the connecting body 138 and can rotate about the rotating shaft. The first and second rotating parts are staggered, facilitating the rotation of the rotating shaft through them. In this design, two first rotating parts are spaced apart on the lower surface of the upper side of the connecting body 138, and a second rotating part is provided on the upper side of the first adjusting plate 1393, with the second rotating part inserted between the two first rotating parts.
[0086] To improve the locking effect of the locking bracket 14, in one embodiment, see [reference needed]. Figure 20The connecting body 138 includes a downwardly extending connecting portion 132, and the locking bracket 14 includes a locking body 144 and an abutting edge 145 bent on the side of the locking body 144 toward the connecting portion 132. The abutting edge 145 abuts against the connecting portion 132. Specifically, the locking body 144 is used to clamp together with the adjusting structure 139 on the upper and lower sides of the protruding edge 21, and the abutting edge 145 abuts against the connecting portion 132, which helps to lock the locking bracket 14 to the locking position 22 in the horizontal direction, thereby further improving the locking effect of the locking bracket 14.
[0087] Compared to the auxiliary locking structure 16 which uses a linkage locking bracket 161, refer to Figures 23 to 31 In an embodiment of this utility model, the locking bracket 14 is slidably mounted on the connecting bracket 13 in the vertical direction. The auxiliary locking structure 16 includes a one-way lock 164 disposed below the locking bracket 14 and a push rod 165 slidably passing through the one-way lock 164. The push rod 165 can push the locking bracket 14 upward to lock it with the protrusion 21, and the one-way lock 164 can lock the push rod 165. Specifically, the push rod 165 can apply an upward pushing force to the locking bracket 14, further causing the locking bracket 14 to clamp the protrusion 21. Furthermore, to reduce the accidental downward movement of the push rod 165, a one-way lock 164 is provided. The push rod 165 passes through the one-way lock 164. When the push rod 165 moves upward, the one-way lock 164 is in the open state and does not restrict the sliding of the push rod 165. When the push rod 165 moves downward, the one-way lock 164 will automatically lock (be in the locked state), thereby preventing the push rod 165 from moving downward, thus ensuring that the locking bracket 14 always locks the locking position 22.
[0088] Furthermore, refer to Figure 32 and Figure 33 The one-way lock 164 has a locking cavity 1641 inside. The push rod 165 slides through the locking cavity 1641. The locking cavity 1641 has an elastic element 1642 and a plurality of locking balls 1643 inside. One end of the elastic element 1642 is connected to the locking cavity 1641, and the other end is connected to the plurality of locking balls 1643. The plurality of locking balls 1643 surround the outer periphery of the push rod 165, and the inner diameter of the locking cavity 1641 is at least partially reduced in the direction away from the locking bracket 14. The push rod 165 slides in the direction away from the locking bracket 14, causing the locking balls 1643 to move, thereby reducing the distance between the plurality of locking balls 1643 to lock the push rod 165.
[0089] Specifically, one end of the elastic element 1642 near the locking bracket 14 is connected to the top of the locking cavity 1641, and the other end is connected to a plurality of locking balls 1643. The elastic element 1642 can be a tension spring. The push rod 165 passes through the locking cavity 1641, and the plurality of locking balls 1643 are arranged circumferentially along the push rod 165. The inner diameter of the locking cavity 1641 decreases at least in the section away from the locking bracket 14, that is, the locking cavity 1641 is tapered at least in the section away from the locking bracket 14. See [link / reference]. Figure 33 When the push rod 165 slides away from the locking bracket 14, it causes the locking balls 1643 to move in the same direction. These locking balls 1643, pushed inward by the cavity wall of the locking cavity 1641, move inward, thereby reducing the distance between them. This causes the locking balls 1643 to collectively press against the push rod 165, thus locking the push rod 165. (See...) Figure 32 When the push rod 165 slides towards the locking bracket 14, the locking balls 1643, driven by the push rod 165 and pulled by the elastic element 1642, move upward to the larger part of the inner diameter of the locking cavity 1641. This increases the distance between the multiple locking balls 1643, reducing the pressure of the locking balls 1643 on the push rod 165, and even creating a gap between them, allowing the one-way lock 164 to open and the push rod 165 to slide smoothly towards the locking bracket 14. To ensure the locking effect, there are at least two locking balls 1643, preferably more than two, such as three or four.
[0090] Furthermore, the locking cavity 1641 is also provided with an unlocking part 1644 on the side near the locking ball 1643. A portion of the unlocking part 1644 slides into the locking cavity 1641. The unlocking part 1644 can push the locking ball 1643 to move, thereby increasing the distance between the multiple locking balls 1643 and releasing the one-way lock 164. Specifically, when the connecting bracket 13 needs to be removed, the one-way lock 164 needs to be released; therefore, the unlocking part 1644 is provided, with one end of the unlocking part 1644 sliding into the locking cavity 1641. (See reference...) Figure 32 When it is necessary to unlock, the unlocking part 1644 slides inward toward the inside of the locking cavity 1641, thereby causing the unlocking part 1644 to push multiple locking balls 1643 to a larger part of the inner diameter of the locking cavity 1641. This increases the distance between the multiple locking balls 1643, reducing the pressure of the locking balls 1643 on the push rod 165, or even creating a gap between them and the push rod 165, allowing the one-way lock 164 to open and the push rod 165 to slide freely. Therefore, preferably, the unlocking part 1644 is configured as a cylindrical structure and is sleeved on the push rod 165.
[0091] In other embodiments, the locking ball 1643 can also be configured as a magnetic ball. When it is necessary to release the one-way lock 164, the user can place a magnet at the end of the one-way lock 164 away from the locking ball 1643, thereby generating an upward attraction force on the magnetic ball to release the lock.
[0092] To facilitate the user in releasing the one-way lock 164, in one embodiment, please refer to... Figures 23 to 33 The auxiliary locking structure 16 also includes an unlocking member 166, which is movably inserted through the push rod 165 and located on the side of the one-way lock 164 opposite to the locking bracket 14. The unlocking member 166 can release the one-way lock 164 from locking. Specifically, because the unlocking part 1644 is configured as a cylindrical structure and is small in size, it is often inconvenient in actual operation. Therefore, the unlocking member 166 is provided. The unlocking member 166 is a plate-shaped structure and is slidably sleeved on the push rod 165. The user can directly move the unlocking member 166 to press the unlocking part 1644 to move and release the lock.
[0093] Furthermore, the push rod 165 includes a first segment 1651, a second segment 1652, and a third segment 1653 connected in sequence by bending. The first segment 1651 and the third segment 1653 extend in the same direction and are used to push the locking bracket 14 to lock with the house. The unlocking element 166 slides through the first segment 1651 and the third segment 1653. Both the first segment 1651 and the third segment 1653 are fitted with one-way locks 164. Specifically, the first segment 1651 and the third segment 1653 are approximately parallel and can jointly push the locking bracket 14 to move, thereby improving the stability of the movement of the locking bracket 14. Therefore, both the first segment 1651 and the third segment 1653 are equipped with one-way locks 164 to lock the first segment 1651 and the third segment 1653. Thus, the unlocking member 166 simultaneously slides through the first segment 1651 and the third segment 1653, allowing it to unlock both one-way locks 164 at the same time, further facilitating the release of the one-way locks 164. Furthermore, the two ends of the second segment 1652 are connected to the first segment 1651 and the third segment 1653 respectively, so the push rod 165 is roughly U-shaped, which not only facilitates the processing of the push rod 165 but also reduces the possibility of the unlocking member 166 accidentally falling off.
[0094] Furthermore, the unlocking component 166 includes a main unlocking part 1661 and a lifting handle 1662. The lifting handle 1662 is bent and connected to the side of the main unlocking part 1661 away from the connecting bracket 13. Thus, when it is necessary to move the unlocking component 166 upward, it can be achieved by pulling the lifting handle 1662 upward, thereby facilitating the unlocking of the unlocking component 166. When unlocking is required, it is not necessary to insert a finger between the second segment 1652 and the main unlocking part 1661, thereby reducing the possibility of the user's finger being pinched.
[0095] Furthermore, because the locking bracket 14 in this solution is pushed upward by the push rod 165, the contact area between the push rod 165 and the locking bracket 14 is small. This not only results in low pushing stability of the auxiliary locking structure 16 and the locking bracket 14, but also makes the contact point between the locking bracket 14 and the push rod 165 prone to local deformation. In one embodiment, referring to... Figures 27 to 31 The locking bracket 14 has a bent edge 146 on one side, and the upper end of the push rod 165 is connected to the bent edge 146. The push rod 165 slides upward to drive the locking bracket 14 to move upward, thereby connecting the push rod 165 and the locking bracket 14, so as to facilitate the push rod 165 to push the locking bracket 14 to move upward.
[0096] Reference Figures 23 to 31 In one embodiment of this utility model, the locking bracket 14 can be directly installed on the connecting part 132. Exemplarily, the mounting structure 12 further includes an adjusting locking member 18 and an anti-detachment handle 181 disposed at one end of the adjusting locking member 18. The adjusting locking member 18 passes through the connecting bracket 13 and is connected to the locking bracket 14. One end of the anti-detachment handle 181 is rotatably connected to the end of the adjusting locking member 18 away from the locking bracket 14. The anti-detachment handle 181 swings, causing the adjusting locking member 18 to deflect about the end connected to the anti-detachment handle 181 as an axis, thereby adjusting the angle between the locking bracket 14 and the locking position 22, so that the locking bracket 14 locks the locking position 22. Specifically, the adjusting locking member 18 passes through the connecting bracket 13 and is connected to the locking bracket 14, and one end of the anti-detachment handle 181 is connected to the end of the adjusting locking member 18 away from the locking bracket 14, thereby installing the locking bracket 14 on the connecting part 132. Furthermore, the anti-detachment handle 181 can swing relative to the locking member 163. When the first hook 143 is engaged in the water guide groove 221 or the second hook 222, pressing the anti-detachment handle 181 causes the end of the anti-detachment handle 181 connected to the adjusting locking member 18 to move away from the connecting part 132, thereby pulling the locking bracket 14 to deflect towards the side of the locking position 22, thereby adjusting the angle between the locking bracket 14 and the locking position 22, so that the angle between the first hook 143 and the groove wall of the water guide groove 221 or the second hook 222 is less than or equal to 90°, so that the first hook 143 further locks the water guide groove 221 or the second hook 222.
[0097] However, at this time, the locking bracket 14 can only undergo small displacement relative to the connecting bracket 13 along the protruding direction of the protruding edge 21. The positions of the water guide groove 221 or the second hook 222 may vary significantly for different protruding edges 21. In this case, the user can move the entire mounting structure 12 along the protruding direction of the protruding edge 21 to facilitate engaging the first hook 143 into the water guide groove 221 or the second hook 222. To facilitate the vertical sliding of the locking bracket 14 on the connecting bracket 13, the connecting bracket 13 is provided with a second guide groove 1321 extending in the vertical direction. The locking member 163 passes through the second guide groove 1321 and connects to the locking bracket 14.
[0098] Furthermore, to facilitate the sliding of the locking bracket 14 up and down on the connecting bracket 13, in one embodiment, the connecting bracket 13 includes a downwardly extending connecting portion 132. The connecting portion 132 is provided with a second guide groove 1321 extending in the vertical direction. The adjusting locking member 18 slides through the second guide groove 1321 and is connected to the locking bracket 14. The anti-detachment handle 181 swings, causing the adjusting locking member 18 to deflect about the end connected to the anti-detachment handle 181 as an axis, so as to press the connecting portion 132, which can also reduce the possibility of the locking bracket 14 accidentally moving downward.
[0099] To improve the locking effect of the locking bracket 14, in one embodiment, see [reference needed]. Figure 31 The connecting body 138 includes a downwardly extending connecting portion 132, and the locking bracket 14 includes a locking body 144 and an abutting edge 145 bent on the side of the locking body 144 toward the connecting portion 132. The abutting edge 145 abuts against the connecting portion 132. Specifically, the locking body 144 is used to clamp together with the adjusting structure 139 on the upper and lower sides of the protruding edge 21, and the abutting edge 145 abuts against the connecting portion 132, which helps to lock the locking bracket 14 to the locking position 22 in the horizontal direction, thereby further improving the locking effect of the locking bracket 14.
[0100] In summary, when the locking bracket 14 is directly installed on the connecting bracket 13, the installation steps of the mounting structure 12 are as follows: First, the locking bracket 14 is pushed upward by the push rod 165, causing the first hook 143 to contact the lower side of the protruding edge 21. Then, the position of the mounting structure 12 is adjusted along the protruding direction of the protruding edge 21, so that the first hook 143 engages with the water guide groove 221 or the second hook 222. Then, the locking bracket 14 is further pushed by the push rod 165, so that the first hook 143 and the water guide groove 221 are locked vertically. Then, the anti-detachment handle 181 is pressed, so that the angle between the first hook 143 and the groove wall of the water guide groove 221 or the second hook 222 is less than or equal to 90°, so that the first hook 143 engages with the water guide groove 221 or the second hook 222 along the protruding direction of the protruding edge 21, thereby completing the installation of the mounting structure 12. It is understood that the installation steps of the mounting structure 12 are not limited to this. As long as the mounting structure 12 can be installed on the protruding edge 21, it is within the protection scope of this solution.
[0101] To further ensure the connection stability of the connecting bracket 13, in one embodiment, please refer to... Figure 12 and Figure 13 The mounting bracket 1 has at least two perforated holes 101, with a dividing rib 102 between the two perforated holes 101. One end of the safety rope 103 is connected to the dividing rib 102, and the other end can be connected to the inner side of the wall or the indoor unit of the air conditioner. Specifically, the perforated holes 101 can be set on the connecting bracket 13. One end of the safety rope 103 is connected to the dividing rib 102, and the other end is connected to a relatively fixed position such as the inner side of the wall or the indoor unit of the air conditioner, thereby applying a traction force to the mounting bracket 1. When the mounting structure 12 is accidentally loosened, it can hold the mounting bracket 1, thereby reducing the possibility of the outdoor unit of the air conditioner 3 falling accidentally. Furthermore, by setting two perforated holes 101 at intervals on the mounting bracket 1, a dividing rib 102 is formed between the two perforated holes 101, which facilitates the connection of the safety rope 103. In addition, the dividing rib 102 can be partially raised upwards, which further facilitates the connection of the safety rope 103.
[0102] Please see Figure 3 , Figure 4 , Figure 12 and Figure 16In this embodiment of the present invention, a second adjusting member 135 is provided on the lower side of the connecting bracket 13. The second adjusting member 135 is threadedly connected to the connecting bracket 13, and its end abuts against the outer wall 4. The second adjusting member 135 rotates to adjust the angle between the connecting bracket 13 and the outer wall 4. Specifically, the second adjusting member 135 is threadedly connected to the connecting bracket 13, and its end abuts against the outer wall 4, thereby supporting the connecting bracket 13 between the connecting bracket 13 and the outer wall 4 and ensuring the stability of the connecting bracket 13. Furthermore, the rotation of the second adjusting member 135 allows the lower side of the connecting bracket 13 to move axially along the second adjusting member 135, thereby adjusting the distance between the connecting part 132 and the outer wall 4, and the deflection angle of the connecting part 132 relative to the outer wall 4. This allows for the adjustment of the position of the connecting part 132 when the wall surface is uneven, thereby ensuring the stable installation of the connecting bracket 13. In order to reduce the possibility of damage to the outer wall 4 when the second adjusting member 135 comes into contact with the outer wall 4, a buffer pad 137 is provided at the end of the second adjusting member 135 facing the outer wall 4.
[0103] Please see Figure 12 and Figure 14 In an embodiment of this utility model, the mounting bracket 1 further includes a bracket body 11, which is used for mounting the outdoor unit 3 of the air conditioner, and the bracket body 11 is mounted on the connecting bracket 13 to mount the outdoor unit 3 of the air conditioner outside the house.
[0104] Optionally, the bracket body 11 includes a first support frame 115 and a second support frame 116. The first support frame 115 is detachably installed on the connecting bracket 13 and extends downward. The second support frame 116 includes a fixing part 1161 and a supporting part 1162 arranged at an angle. The fixing part 1161 is connected to the first support frame 115 and extends downward. The supporting part 1162 is disposed between the fixing part 1161 and the outer wall 4. The outdoor unit 3 of the air conditioner is installed at least on the side of the fixing part 1161 away from the outer wall 4 to press the supporting part 1162 against the outer wall 4. Specifically, the support part 1162 and the fixing part 1161 are arranged at an angle, and one end of the support part 1162 is connected to the fixing part 1161, while the other end abuts against the outer wall 4. The outdoor unit 3 of the air conditioner is installed on the side of the fixing part 1161 away from the outer wall 4, so that the outdoor unit 3 of the air conditioner can press the support part 1162 against the outer wall 4, thereby ensuring the installation stability of the bracket body 11.
[0105] Optionally, the fixing part 1161 and the supporting part 1162 are arranged perpendicularly, so that the bracket body 11, the protruding edge 21, and the wall enclose a stable rectangular structure, which helps to ensure the stable placement of the air conditioner outdoor unit 3. An adjustment position can also be provided between the first support frame 115 and the fixing part 1161, so that the distance between the first support frame 115 and the fixing part 1161 is adjustable, thereby facilitating the adjustment of the installation height of the air conditioner outdoor unit 3. The fixing part 1161 and the supporting part 1162 can be integrally formed or welded together.
[0106] The bracket body 11 can be detachably installed on the mounting structure 12. Therefore, during actual installation, the outdoor unit 3 can be fixed to the bracket body 11 first, and then the bracket body 11 can be installed on the mounting structure 12. This overcomes the inconvenience of installing the outdoor unit 3 in some installation scenarios, such as when the outdoor unit 3 and the bracket body 11 are far from the window, not flush with the window, or the installation method of the outdoor unit 3 and the bracket body 11 is complex and cannot be fixed simply by placement or snap-fit. Alternatively, the bracket body 11 can be installed on the mounting structure 12 first, and then the outdoor unit 3 can be fixed to the bracket body 11, further improving the installation flexibility of the outdoor unit 3 and facilitating its fixation. In other embodiments, the bracket body 11 can also be integrally formed with the mounting structure 12, welded, or connected by screws or bolts.
[0107] When the bracket body 11 and the mounting structure 12 are detachably installed, in order to facilitate the installation of both, please refer to one embodiment. Figure 2 , Figure 3 and Figure 11 The upper side of the connecting bracket 13 is provided with a mounting hole 136, and the upper end of the bracket body 11 is provided with a mounting hook 111, which is hooked onto the mounting hole 136. The upper end of the bracket body 11 is provided with an anti-detachment piece 112 extending towards the connecting bracket 13, and the first fastener 113 connects the anti-detachment piece 112 and the overlapping part 131. Specifically, the mounting hook 111 is first hooked onto the mounting hole 136, thereby achieving pre-fixation between the bracket body 11 and the mounting structure 12. At the same time, the anti-detachment piece 112 is placed above the overlapping part 131, and the first fastener 113 passes through the anti-detachment piece 112 and is fastened to the overlapping part 131, thereby further connecting the bracket body 11 to the overlapping part 131. This facilitates the installation of the bracket body 11 and the mounting structure 12 and ensures the stability of their installation.
[0108] Since the overlapping portion 131 is located on the upper side of the protruding edge 21, the mounting hole 136 is located in the overlapping portion 131, further facilitating the installation of the bracket body 11. The first fastener 113 is generally a fastening screw, which is at least threaded into the overlapping portion 131. Therefore, to ensure the stability of the threaded connection, a nut structure is provided on the lower side of the overlapping portion 131, or the thickness of the overlapping portion 131 is increased, thereby extending the length of the threaded connection and reducing the possibility of stripping.
[0109] Furthermore, the bracket body 11 also includes an adapter bracket, which is fixed to the outdoor unit 3 of the air conditioner and used to install the outdoor unit 3 of the air conditioner onto the fixing part 1161. Specifically, the adapter bracket can be snapped onto the bracket body 11 or fastened to the bracket body 11 by a third fastener. The adapter bracket is used to install the outdoor unit 3 of the air conditioner, thereby facilitating the installation of the outdoor unit 3 of the air conditioner onto the bracket body 11.
[0110] Further optional, refer to Figure 12 A third adjusting member 114 is provided at the end of the support part 1162 away from the fixing part 1161. The third adjusting member 114 is threadedly connected to the support part 1162, and one end of the third adjusting member 114 abuts against the outer wall 4. The third adjusting member 114 rotates to adjust the angle between the fixing part 1161 and the outer wall 4. Specifically, the rotation of the third adjusting member 114 allows the support part 1162 to move axially along the third adjusting member 114, thereby adjusting the distance between the support part 1162 and the outer wall 4. This ensures that even when the wall surface is uneven, the fixing part 1161 can remain perpendicular to the horizontal direction, thus ensuring the stable installation of the outdoor unit 3 of the air conditioner. Furthermore, to reduce the possibility of damage to the outer wall 4 when the third adjusting member 114 abuts against the outer wall 4, a buffer pad 137 is provided at the end of the third adjusting member 114 facing the outer wall 4.
[0111] To facilitate the installation of the adapter frame on the bracket body 11, in one embodiment, refer to Figure 12 , Figure 14 and Figure 15The fixing part 1161 has a mounting groove 1163 on the side facing the bracket body 11, and the bottom wall of the mounting groove 1163 has an elastic buffer 1164. The adapter is slidably mounted on the mounting groove 1163 and abuts against the end of the elastic buffer 1164 away from the bottom wall of the mounting groove 1163. Specifically, there are two mounting grooves 1163, which are respectively located on opposite sides of the bracket body 11. Each mounting groove 1163 has an upward-facing first opening and a second opening facing each other, so that the two sides of the adapter can be inserted into the mounting groove 1163 through the first opening, thereby installing the adapter onto the bracket body 11. The bottom wall of the mounting groove 1163 has an elastic buffer 1164, which provides cushioning for the installation of the adapter.
[0112] The elastic buffer 1164 can be configured as a buffer spring.
[0113] To facilitate fixing the elastic buffer 1164, in one embodiment, refer to Figure 14 and Figure 15 The mounting slide 1163 further includes a stop piece 1165, which includes a fixed section 1166 and a stop section 1167 arranged at an angle. The fixed section 1166 is connected between the bottom wall of the mounting slide 1163 and the elastic buffer member 1164, and the stop section 1167 is located at the opening of the mounting slide 1163 to prevent the elastic buffer member 1164 from coming out of the mounting slide 1163. Specifically, the stop piece 1165 includes a fixed section 1166 and a stop section 1167 arranged at an angle. The fixed section 1166 is connected to an elastic buffer 1164. Fasteners pass through the bottom wall of the mounting groove 1163 and are connected to the fixed section 1166, thereby fixing the elastic buffer 1164 and the stop piece 1165 together to the bottom wall of the mounting groove 1163. The stop section 1167 is located at the opening of the mounting groove 1163, that is, at the second opening. When the user installs... When the outdoor unit of the air conditioner is in use, the adapter bracket is inserted into the mounting groove 1163 and slid down a certain distance. Then the adapter bracket can be released, and the outdoor unit 3 of the air conditioner can slide to the bottom wall of the mounting groove 1163 by gravity. Therefore, the elastic buffer 1164 can provide cushioning for the adapter bracket. However, the elastic buffer 1164 may be pushed out of the mounting groove 1163 by the impact force of the second opening. The stop section 1167 can prevent the elastic buffer 1164 from falling out of the mounting groove 1163.
[0114] In summary, referring to Figure 2 , Figure 10 and Figure 11 The installation steps for mounting bracket 1 are as follows: First, pull down the sliding bracket 15 to place it in the installation position. Then, release it. Under the action of the elastic element 154, the sliding bracket 15 and the overlapping part 131 automatically clamp onto the upper and lower sides of the protruding edge 21, thereby achieving the pre-fixation of the connecting bracket 13. Then, rotate the first adjusting element 141 to drive the locking bracket 14 to slide along the protruding direction of the protruding edge 21 until the first hook 143 of the locking bracket 14 engages with the locking position 22. After engaging, continue to rotate the first adjusting element 141, and the locking bracket 14 remains in place. When stationary, the first adjusting member 141 moves axially, thereby pushing one side of the linkage locking bracket 161 to move away from the locking bracket 14. This causes the linkage locking bracket 161 to deflect in direction B with the first sliding member 151 as the axis. At the same time, the groove wall of the locking groove 162 pushes the locking member 163 to move in direction C, pressing the guide slope 1341 of the limiting part 134. This makes it difficult for the locking member 163 to cause the sliding bracket 15 to slide downward, thereby completing the installation of the mounting structure 12.
[0115] The mounting hook 111 of the bracket body 11 is attached to the mounting hole 136, thereby pre-fixing the bracket body 11 to the mounting structure 12. At the same time, the anti-detachment piece 112 is placed above the overlapping part 131. The first fastener 113 passes through the anti-detachment piece 112 and is fastened to the overlapping part 131, thereby further connecting the bracket body 11 to the overlapping part 131, thus completing the installation of the bracket body 11. The adapter is fixed to the outdoor unit 3 of the air conditioner. The adapter is inserted into the bracket body 11 by the mounting groove 1163, thereby installing the outdoor unit 3 of the air conditioner onto the bracket body 11, thus completing the installation of the outdoor unit 3 of the air conditioner.
[0116] It is understood that the installation steps of the mounting bracket 1 are not limited to this. As long as the outdoor unit 3 of the air conditioner can be installed on the outside of the window through the mounting bracket 1 of this solution, it is within the protection scope of this solution.
[0117] This utility model also proposes an air conditioner, which includes an outdoor unit 3 and a mounting bracket 1. The specific structure of the mounting bracket 1 is as described in the above embodiments. Since this air conditioner adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here. The mounting bracket 1 is used to install the outdoor unit 3 outside the house.
[0118] The above are merely exemplary embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural transformations made based on the technical concept of this utility model and the contents of the specification and drawings of this utility model, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this utility model.
Claims
1. A mounting bracket for installation on a house, wherein a protruding edge is provided on the outer side of the house, and a locking position is provided on the bottom side of the protruding edge, characterized in that, The mounting bracket includes: The mounting structure includes a connecting bracket and a locking bracket. The connecting bracket is connected to the upper side of the protruding edge, and the locking bracket is mounted on the connecting bracket. The locking bracket is located on the bottom side of the protruding edge and can be locked with the locking position.
2. The mounting bracket as described in claim 1, characterized in that, The mounting structure also includes an auxiliary locking structure, which is disposed in the mounting structure and can lock the locking bracket in the locking position.
3. The mounting bracket as described in claim 2, characterized in that, The mounting structure further includes a sliding bracket, which is slidably mounted on the connecting bracket in the vertical direction, and the locking bracket is disposed on the sliding bracket; the auxiliary locking structure includes a linkage locking frame, which can be linked with the sliding bracket to lock the locking position.
4. The mounting bracket as described in claim 3, characterized in that, The mounting structure further includes a first adjusting member rotatably mounted on the sliding bracket, the lower side of the linkage locking frame being movably connected to the sliding bracket, and the first adjusting member passing through the upper side of the linkage locking frame; The first adjusting member rotates, causing the linkage locking bracket to deflect about its central axis, thereby causing the sliding bracket to move upward so that the locking bracket locks the locking position.
5. The mounting bracket as described in claim 4, characterized in that, The connecting bracket is provided with a limiting part protruding toward the sliding bracket. The limiting part is provided with a first guide groove extending in the vertical direction. The sliding bracket also includes a first sliding member. The first sliding member is installed on the sliding bracket and slidably inserted into the first guide groove. The middle part of the linkage locking frame is rotatably installed on the first sliding member.
6. The mounting bracket as described in claim 5, characterized in that, The lower end of the linkage locking frame is provided with a locking groove, a locking member passes through the locking groove and is connected to the sliding bracket, and the locking groove extends upward at an angle. The middle part of the linkage locking frame deflects around the first sliding member as an axis. The groove wall of the locking groove pushes the locking member to move obliquely upward, thereby driving the sliding bracket to move upward. It can also make the locking member press against the side of the limiting part away from the connecting bracket, thereby restricting the downward movement of the sliding bracket.
7. The mounting bracket as described in claim 6, characterized in that, The limiting part has a guide slope on the side opposite to the connecting bracket. The guide slope allows the locking member to abut against it and restricts the downward sliding of the locking member; and / or, The sliding bracket is provided with an inclined hole for the locking member to pass through, and the distance from the inclined hole to the limiting part is set to decrease in the upward direction.
8. The mounting bracket as described in claim 4, characterized in that, The locking bracket is slidably mounted on the sliding bracket and can slide along the protruding direction of the convex edge. The first adjusting member passes through the linkage locking bracket and the sliding bracket in sequence and is threadedly connected to the locking bracket. Before the first adjusting member drives the linkage locking bracket to deflect about its central axis, the first adjusting member rotates, causing the locking bracket to slide along the protruding direction of the convex edge, so that the locking bracket is engaged in the locking position.
9. The mounting bracket as described in claim 8, characterized in that, The mounting structure further includes a second sliding member disposed on the locking bracket. The sliding bracket is provided with a second guide groove extending along the protruding direction of the convex edge. The second sliding member is slidably inserted into the second guide groove to drive the locking bracket to move along the protruding direction of the convex edge.
10. The mounting bracket as described in claim 3, characterized in that, The connecting bracket includes a connecting portion and an overlapping portion arranged at an angle. The connecting portion extends downward, and the overlapping portion overlaps the upper side of the protruding edge. The sliding bracket is slidably mounted on the connecting portion in a vertical direction, and the sliding bracket and the overlapping portion can jointly clamp the protruding edge; and / or, An elastic element is also provided between the sliding bracket and the connecting bracket, which gives the sliding bracket an upward tendency to move.
11. The mounting bracket as described in claim 1, characterized in that, The mounting structure also includes a connecting accessory, one end of which is connected to the locking bracket and the other end is connected to the upper side of the connecting bracket. The connecting accessory enables the connecting bracket and the locking bracket to be clamped together on the upper and lower sides of the protrusion.
12. The mounting bracket as described in claim 11, characterized in that, The connecting accessory is configured as a fourth fastener, one end of which is rotatably connected to the locking bracket, and the other end is threaded to the upper side of the connecting bracket.
13. The mounting bracket as described in claim 11, characterized in that, The connecting bracket includes a downwardly extending connecting portion, and the locking bracket includes a locking body and an abutting edge that bends on the side of the locking body toward the connecting portion. The locking body can be locked with the locking position, and the abutting edge abuts against the connecting portion.
14. The mounting bracket as described in claim 11, characterized in that, The connecting bracket includes a connecting body and an adjusting structure rotatably connected to the upper side of the connecting body. The connecting body presses the adjusting structure against the upper side of the protruding edge, and one end of the connecting accessory is connected to the locking bracket, and the other end is connected to the adjusting structure, so that the adjusting structure and the locking bracket together clamp the protruding edge.
15. The mounting bracket as described in claim 14, characterized in that, The adjustment structure includes an adjustment body and a limiting stop edge set at an angle to the adjustment body. The adjustment body abuts against the upper side of the convex edge, and the limiting stop edge abuts against the outer side of the convex edge.
16. The mounting bracket as described in claim 15, characterized in that, The adjusting body includes a first adjusting plate and a second adjusting plate. The first adjusting plate is rotatably connected to the upper side of the connecting body. The second adjusting plate is assembled on the side of the first adjusting plate facing the convex edge, and a portion of the second adjusting plate is bent downward to form the limiting stop edge.
17. The mounting bracket as described in claim 14, characterized in that, The connecting body is provided with a first rotating part, and the adjustment structure is partially raised to form a second rotating part, with the rotating shaft rotatably passing through the first rotating part and the second rotating part.
18. The mounting bracket as described in claim 2, characterized in that, The locking bracket is slidably mounted on the connecting bracket in the vertical direction. The auxiliary locking structure includes a one-way lock located below the locking bracket and a push rod slidably passing through the one-way lock. The push rod can push the locking bracket to move upward so as to lock with the protrusion. The one-way lock can lock the push rod.
19. The mounting bracket as described in claim 18, characterized in that, The auxiliary locking structure also includes an unlocking component, which is movably inserted through the push rod and located on the side of the one-way lock opposite to the locking bracket. The unlocking component can release the one-way lock from locking.
20. The mounting bracket as described in claim 19, characterized in that, The push rod includes a first section, a second section, and a third section that are bent and connected in sequence. The first section and the third section extend in the same direction and are used to push the locking bracket to lock with the house. The first section and the third section are both fitted with the one-way lock. The unlocking component includes a main unlocking part and a lifting handle. The main unlocking part is movably inserted through the first section and the third section. The lifting handle is bent and connected to the side of the main unlocking part away from the connecting bracket.
21. The mounting bracket as described in claim 18, characterized in that, The locking bracket has a bent edge on one side, and the upper end of the push rod is connected to the bent edge. The push rod slides upward to drive the locking bracket to move upward.
22. The mounting bracket as described in claim 18, characterized in that, The mounting structure further includes an adjusting locking member and an anti-detachment handle located at one end of the adjusting locking member. The adjusting locking member passes through the connecting bracket and is connected to the locking bracket. One end of the anti-detachment handle is rotatably connected to the end of the adjusting locking member away from the locking bracket. The anti-detachment handle swings, causing the adjusting locking member to deflect about the end connected to the anti-detachment handle as an axis, thereby adjusting the angle between the locking bracket and the locking position, so that the locking bracket locks the locking position.
23. The mounting bracket as described in claim 22, characterized in that, The connecting bracket includes a downwardly extending connecting portion, and the connecting portion is provided with a second guide groove extending in the vertical direction. The adjusting locking member slides through the second guide groove and is connected to the locking bracket. The anti-detachment handle swings, causing the adjusting locking member to deflect about the end connected to the anti-detachment handle as an axis, thereby pressing the connecting part.
24. The mounting bracket as described in claim 1, characterized in that, The locking bracket has a first hook on the side facing the protruding edge; the locking position is configured as a water guide groove at the bottom of the protruding edge, and the first hook engages with the water guide groove; or, the locking position is configured as a second hook at the bottom of the protruding edge, and the first hook engages with the second hook; and / or, The mounting bracket has at least two perforated holes, with a dividing rib between the two holes. One end of the safety rope is connected to the dividing rib, and the other end can be connected to the inner side of the wall or the indoor unit of an air conditioner; and / or, The lower side of the connecting bracket is provided with a second adjusting member, which is threadedly connected to the connecting bracket and the end of the second adjusting member abuts against the exterior wall of the building; the second adjusting member can be rotated to adjust the angle between the connecting bracket and the exterior wall.
25. The mounting bracket as described in any one of claims 1 to 24, characterized in that, The mounting bracket also includes a bracket body, which is used for installing the outdoor unit of the air conditioner, and the bracket body is installed on the connecting bracket to install the outdoor unit of the air conditioner outside the house.
26. The mounting bracket as described in claim 25, characterized in that, The main body of the bracket includes a first support frame and a second support frame. The first support frame is detachably installed on the connecting bracket and extends downward. The second support frame includes a fixing part and a supporting part arranged at an angle. The fixing part is connected to the first support frame and extends downward. The supporting part is located between the fixing part and the exterior wall of the building. The outdoor unit of the air conditioner is installed at least on the side of the fixing part away from the exterior wall to press the supporting part against the exterior wall. The main body of the bracket also includes an adapter frame, which is fixed to the outdoor unit of the air conditioner and is used to install the outdoor unit of the air conditioner onto the fixing part.
27. The mounting bracket as described in claim 26, characterized in that, The fixing part is provided with a mounting groove on the side facing the adapter, and the bottom wall of the mounting groove is provided with an elastic buffer. The adapter is slidably mounted on the mounting groove and abuts against the end of the elastic buffer away from the bottom wall of the mounting groove.
28. The mounting bracket as described in claim 27, characterized in that, The elastic buffer is configured as a buffer spring; and / or, The mounting slide also includes a stop plate, which includes a fixed section and a stop section arranged at an angle. The fixed section is connected between the bottom wall of the mounting slide and the elastic buffer member, and the stop section is located at the opening of the mounting slide to prevent the elastic buffer member from coming out of the mounting slide.
29. The mounting bracket as described in claim 25, characterized in that, The upper side of the connecting bracket is provided with a mounting hole, and the upper end of the bracket body is provided with a mounting hook, which is hooked onto the mounting hole; and / or, The upper end of the bracket body is provided with an anti-detachment plate extending towards the connecting bracket, and the first fastener connects the anti-detachment plate and the connecting bracket.
30. An air conditioner, characterized in that, It includes an outdoor air conditioning unit and a mounting bracket as described in any one of claims 1 to 29, the mounting bracket being used to install the outdoor air conditioning unit outside the building.
31. The air conditioner as described in claim 30, characterized in that, The air conditioner also includes an indoor unit; The indoor unit of the air conditioner is connected to the outdoor unit of the air conditioner via a refrigerant pipe, which is pre-filled with refrigerant; and / or, the bottom of the indoor unit of the air conditioner is equipped with casters.