Mounting mechanism of integrated air conditioner and integrated air conditioner device

By designing an installation mechanism that adapts to clamping and supporting components for window frames of different thicknesses, the problems of cumbersome and unstable installation of integrated air conditioners have been solved, achieving rapid and stable installation and improving convenience and stability.

CN115854425BActive Publication Date: 2026-03-24GD MIDEA AIR CONDITIONING EQUIP CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-23
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing integrated air conditioners are cumbersome to install and unstable, making it difficult to adapt to window frames of different thicknesses, resulting in insufficient portability and stability.

Method used

An installation mechanism including a support component and a clamping component is designed. The clamping component adapts to window frames of different thicknesses through multiple clamping positions. The clamping component clamps the opposite sides of the window frame to achieve quick installation and stability. The clamping component includes multiple clamping positions and fasteners to adjust the clamping gap, thereby improving the adaptability and stability of the installation mechanism.

Benefits of technology

It enables rapid and secure installation of integrated air conditioners, adapts to window frames of varying thicknesses, improves the convenience and stability of the installation mechanism, and enhances versatility and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a mounting mechanism of an integrated air conditioner and an integrated air conditioner device, the integrated air conditioner is installed on a windowsill, the windowsill is provided with a window frame, and the mounting mechanism comprises a supporting assembly, the integrated air conditioner is placed on the supporting assembly; and a clamping assembly is arranged on the supporting assembly and clamps opposite sides of the window frame to be positioned and installed on the window frame, and the clamping assembly is provided with a plurality of clamping positions to adapt to window frames with different thicknesses. The supporting assembly is stably arranged on the window frame through the clamping assembly, the mounting mechanism is quickly installed, the supporting assembly cannot shake through the clamping assembly clamping opposite sides of the window frame, the stability of the mounting mechanism is improved, the clamping assembly clamps opposite sides of window frames with different thicknesses through the plurality of clamping positions, the adaptability of the mounting mechanism is improved, and the universality of the mounting mechanism is improved.
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Description

Technical Field

[0001] This invention relates to the field of electrical installation technology, and in particular to an installation mechanism and an integrated air conditioner device. Background Technology

[0002] Nowadays, people are no longer confined to one location for their residences, and more and more people move frequently due to job changes. With the development of the rental market, tenants are placing higher demands on the temperature comfort of their rooms. Due to changes in living environments, the portability of home appliances is also becoming a requirement. Currently, air conditioners, as products requiring installation, present challenges in disassembly and assembly. Many renters' homes do not have split-type air conditioners, or some homes are unsuitable for installing existing split-type wall-mounted units. In these situations, users need to purchase cooling products that do not require outdoor unit installation and are highly portable. Integrated air conditioners exist on the market, but they suffer from cumbersome installation and instability. Summary of the Invention

[0003] This invention aims to at least solve one of the technical problems existing in the prior art. To this end, this invention proposes an integrated air conditioner installation mechanism that improves installation convenience and stability, while also enhancing the adaptability of the installation mechanism.

[0004] The present invention also proposes an integrated air conditioner device that applies the above-mentioned installation mechanism, which improves the ease of installation and stability, and at the same time improves the adaptability of the installation mechanism.

[0005] According to an embodiment of the present invention, an installation mechanism for an integrated air conditioner is provided, wherein the integrated air conditioner is installed on a windowsill, the windowsill having a window frame, and the installation mechanism includes: a support assembly on which the integrated air conditioner is placed; and a clamping assembly on which the clamping assembly is disposed, the clamping assembly clamping opposite sides of the window frame for positioning and installation on the window frame, the clamping assembly having multiple clamping positions to adapt to window frames of different thicknesses.

[0006] According to an embodiment of the present invention, the installation mechanism of the integrated air conditioner securely mounts the support component to the window frame by setting a clamping component, thereby achieving rapid installation of the installation mechanism; furthermore, the present invention improves the stability of the installation mechanism by setting the clamping component to clamp the opposite sides of the window frame, preventing the support component from shaking; the present invention also improves the adaptability and versatility of the installation mechanism by setting multiple clamping positions to clamp the clamping component to the opposite sides of window frames of different thicknesses.

[0007] In some embodiments, the clamping assembly includes: a first stop portion disposed on the support assembly; a first mounting portion disposed on the support assembly and stationary relative to the first stop portion, the first mounting portion having a plurality of mounting positions; and a first movable member detachably engaging with any of the mounting positions to adjust the clamping gap between the first movable member and the first stop portion, the clamping gap defining the clamping position.

[0008] Specifically, the first mounting part is provided with a plurality of first fastening holes, and the first movable part is provided with a second fastening hole; the clamping assembly further includes a fastener, which cooperates with any one of the first fastening holes and the second fastening hole to adjust the positioning position of the first movable part.

[0009] More specifically, a plurality of first fastening holes are spaced apart on the first mounting portion, and the spacing between the center of the plurality of first fastening holes and the stop surface of the first stop portion changes sequentially.

[0010] In other embodiments, the clamping assembly includes: a second stop portion disposed on the support assembly; and a second clamping portion including a plurality of clamping surfaces, wherein the gaps between the plurality of clamping surfaces and the second stop portion are different to define a plurality of clamping positions.

[0011] Specifically, at least one of the clamping surfaces is formed as an inclined surface extending in a direction away from the second stop portion.

[0012] Optionally, the second clamping part is an elastic element.

[0013] In some embodiments, the clamping assembly includes: a third stop portion disposed on the support assembly; a second mounting portion disposed on the support assembly and stationary relative to the third stop portion; a second movable member movably disposed on the second mounting portion; and a driving member having a plurality of locking positions, the driving member being rotatably disposed on the second mounting portion to allow the plurality of locking positions to switch contact with the second movable member, thereby changing the distance between the second movable member and the third stop portion to define the plurality of clamping positions.

[0014] Specifically, the second movable member includes a base portion and an adjusting member detachably disposed on the base portion, the adjusting member abutting against the window frame.

[0015] Optionally, the locking position is formed as a plane.

[0016] In some embodiments, the support assembly includes: a telescopic assembly, the telescopic assembly including a stationary member and a telescopic member, the telescopic member and the stationary member being telescopically coupled, the window frame being connected to opposite sides of the telescopic assembly, and the integrated air conditioner being mounted on the stationary member; the clamping assembly being connected to the telescopic member.

[0017] According to an embodiment of the present invention, an integrated air conditioner device includes: an integrated air conditioner; and a mounting mechanism, wherein the mounting mechanism is the aforementioned mounting mechanism, and the integrated air conditioner is placed on the support assembly.

[0018] According to the embodiments of the present invention, the integrated air conditioner device and the installation mechanism of the integrated air conditioner according to the embodiments of the present invention, by setting a clamping component to firmly fix the support component on the window frame, realize the rapid installation of the installation mechanism; and the present invention improves the stability of the installation mechanism by setting the clamping component to clamp the opposite sides of the window frame, so that the support component cannot shake; the present invention also improves the adaptability and versatility of the installation mechanism by setting multiple clamping positions to clamp the clamping component to the opposite sides of window frames of different thicknesses.

[0019] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0020] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0021] Figure 1 This is a schematic diagram of the integrated air conditioner device in an embodiment of the present invention;

[0022] Figure 2 This is a schematic diagram showing the cooperation of the first stop part, the first mounting part, the first movable part, and the fastener in an embodiment of the present invention;

[0023] Figure 3 This is a schematic diagram showing the cooperation between the second stop portion and the second clamping portion in an embodiment of the present invention;

[0024] Figure 4 This is a schematic diagram of the structure of the second stop portion and the second clamping portion in an embodiment of the present invention;

[0025] Figure 5 This is a schematic diagram showing the cooperation of the third stop part, the second mounting part, the second movable part, and the driving part in an embodiment of the present invention;

[0026] Figure 6 This is a schematic diagram showing the positions of the first locking position and the second locking position in an embodiment of the present invention;

[0027] Figure 7 This is a schematic diagram showing the positions of the first locking position, the second locking position, and the third locking position in another embodiment of the present invention;

[0028] Figure 8 This is a schematic diagram illustrating the cooperation between the integrated air conditioner and the installation structure in an embodiment of the present invention. Figure 1 ;

[0029] Figure 9 This is a schematic diagram illustrating the cooperation between the integrated air conditioner and the installation structure in an embodiment of the present invention. Figure 2 ;

[0030] Figure 10 for Figure 8 Enlarged view of a section at point I;

[0031] Figure 11 for Figure 8 Enlarged view of section II in the middle;

[0032] Figure 12 for Figure 8 Enlarged view of a section in area III;

[0033] Figure 13 This is a schematic diagram illustrating the interaction between the contact portion and the moving rail in an embodiment of the present invention;

[0034] Figure 14 for Figure 8 Enlarged view of a section at point IV in the middle;

[0035] Figure 15 for Figure 9 Enlarged view of a section at point V;

[0036] Figure 16 This is a bottom view of the integrated air conditioner in an embodiment of the present invention;

[0037] Figure 17 This is a schematic diagram illustrating the cooperation between the moving track and the blocking curtain in an embodiment of the present invention;

[0038] Figure 18 for Figure 9 Enlarged view of section VI in the middle.

[0039] Figure label:

[0040] 1. Installation mechanism for integrated air conditioners;

[0041] 4. Clamping assembly; 5. First stop part; 6. First mounting part; 61. First fastening hole; 7. First movable part; 8. Fastener; 410. Second stop part; 411. Second clamping part; 412. Clamping surface; 41. Second movable part; 45. Base part; 46. Adjusting part; 42. Second mounting part; 49. Upper frame part; 44. Third stop part; 491. First notch; 43. Drive part; 47. First cam part; 471. First locking position; 472. Second locking position; 473. Third locking position; 48. Handle part;

[0042] 9. Support components;

[0043] 95. Telescopic assembly; 51. Fixed rail; 52. Moving rail; 53. First mating hole; 54. Installation space; 511. Shock absorber; 521. Sliding groove;

[0044] 96. Fastening assembly; 961. Support part; 62. Bottom fastening part; 63. Clamping assembly; 64. Second fixing plate; 65. Fourth stop part; 68. Rotating part; 69. Bottom frame part; 691. Second notch;

[0045] 97. Positioning component; 71. Fixing part; 72. Contact part; 73. Clamping block; 74. Second cam part;

[0046] 98. Locking mechanism; 81. Horizontal moving part; 82. Hook part; 85. Fixing part; 86. Spring; 811. Limiting part; 812. Handle part; 852. Screw hole; 853. Third mating hole;

[0047] 91. Handle fittings; 92. Barrier curtains;

[0048] 2. Window frame; 3. Integrated air conditioner; 31. Hook hole; 311. Groove; 312. Fourth mating hole; 313. Mounting groove; 10. Integrated air conditioner equipment. Detailed Implementation

[0049] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0050] The installation mechanism 1 of the integrated air conditioner according to an embodiment of the present invention is described below with reference to the accompanying drawings.

[0051] like Figure 1 , Figure 2 As shown, according to an embodiment of the present invention, an installation mechanism 1 for an integrated air conditioner includes a support component 9 and a clamping component 4.

[0052] The integrated air conditioner 3 is placed on the support component 9. The support component 9 supports the integrated air conditioner 3 and makes it stable on the window frame 2, which facilitates the placement of the integrated air conditioner 3.

[0053] The clamping component 4 is mounted on the support component 9. The clamping component 4 clamps the opposite sides of the window frame 2 for positioning on the window frame 2. The clamping component 4 has multiple clamping positions to accommodate window frames 2 of different thicknesses. It should be noted that the clamping component 4 clamping the opposite sides of the window frame 2 can be a single clamping component 4 clamped on the same location on both sides of the window frame 2. For example, the clamping component 4 can be clamped on the upper front and rear sides of the window frame 2 to secure the support component 9 relative to the upper window frame 2. Alternatively, multiple clamping components 4 can be clamped on different parts of the window frame 2. For example, there can be two clamping components 4: one clamping component 4 clamps on the upper front and rear sides of the window frame 2 to secure the support component 9 relative to the upper window frame 2, and the other clamping component 4 clamps on the lower front and rear sides of the window frame 2 to secure the support component 9 relative to the lower window frame 2. The two clamping components 4 work together to secure the support component 9 to the window frame 2, improving stability.

[0054] It is understandable that there are many different sizes of window frames 2 in the existing technology, and the thickness of each type of window frame 2 is different. If a separate installation mechanism 1 is set for each thickness of window frame 2, it will inevitably cause a lot of waste and make it inconvenient for users to choose. The present invention sets the clamping component 4 to have multiple clamping positions so that one installation mechanism 1 can adapt to window frames 2 of various thicknesses, thereby improving the versatility of the installation mechanism 1, reducing waste, and improving user experience.

[0055] According to an embodiment of the present invention, the installation mechanism 1 of the integrated air conditioner securely mounts the support component 9 onto the window frame 2 by setting the clamping component 4, thereby achieving rapid installation of the installation mechanism 1; and the present invention improves the stability of the installation mechanism 1 by setting the clamping component 4 to clamp the opposite sides of the window frame 2, preventing the support component 9 from shaking; the present invention also improves the adaptability and versatility of the installation mechanism 1 by setting multiple clamping positions to clamp the clamping component 4 onto the opposite sides of the window frame 2 of different thicknesses.

[0056] like Figure 2 As shown, in some embodiments, the clamping assembly 4 includes: a first stop portion 5, a first mounting portion 6, and a first movable member 7.

[0057] The first stop portion 5 is provided on the support assembly 9. The first mounting portion 6 is provided on the support assembly 9 and is stationary relative to the first stop portion 5. The first mounting portion 6 is provided with multiple mounting positions. The first movable member 7 is disassembled and engaged with any of the mounting positions to adjust the clamping gap between the first movable member 7 and the first stop portion 5. The clamping gap defines the clamping position. The first movable part 7 can cooperate with the mounting position, and it can also be disengaged from the mounting position. The invention improves the versatility of the mounting mechanism 1 by allowing the first movable part 7 to be disassembled and cooperated with the mounting position, which facilitates the operation of disassembling the mounting mechanism 1 from one window frame 2 and installing it on another window frame 2, thus improving the user experience. The first stop part 5 abuts against one side wall of the window frame 2, and the first movable part 7 abuts against the opposite side wall of the window frame 2. The clamping gap between the first movable part 7 and the first stop part 5 is adjusted according to the thickness of the window frame 2 to make the friction between the first stop part 5, the first movable part 7 and the window frame 2 sufficiently large. The invention forms different clamping gaps by allowing the first movable part 7 to cooperate with different mounting positions. Different clamping gaps define different clamping positions, allowing the clamping assembly 4 to adapt to window frames 2 of different thicknesses.

[0058] like Figure 2 As shown, specifically, the first mounting part 6 is provided with a plurality of first fastening holes 61, and the first movable member 7 is provided with a second fastening hole (not shown). The clamping assembly 4 also includes a fastener 8, which cooperates with any one of the first fastening holes 61 and the second fastening hole to adjust the positioning position of the first movable member 7. By adjusting the positioning position of the first movable member 7, the clamping gap between the first movable member 7 and the first stop part 5 is adjusted, thereby achieving the adaptation of the clamping assembly 4 to window frames 2 of different thicknesses. By setting the fastener 8 to cooperate with the first fastening holes 61 and the second fastening hole to fasten the second movable member 41 to the first mounting part 6, the present invention ensures the stability of the clamping gap between the first movable member 7 and the first stop part 5, thereby improving the stability of the clamping assembly 4 clamping on the window frame 2.

[0059] like Figure 2As shown, more specifically, a plurality of first fastening holes 61 are spaced apart on the first mounting portion 6. The spacing between the center of the plurality of first fastening holes 61 and the stop surface of the first stop portion 5 changes sequentially. By setting the sequential change of the spacing between the center of the plurality of first fastening holes 61 and the stop surface of the first stop portion 5, the clamping gap can be adjusted, improving the user experience. In order to adapt to the thickness of the window frame 2, the first movable member 7 can be selected to fit in one mounting position. At this time, the fastener 8 fits in with a first fastening hole 61. However, there may still be a gap between the first movable member 7 and the window frame 2. The first movable member and the fastener 8 can be aligned with the adjacent fastening holes to reduce the gap between the first movable member 7 and the window frame 2 until the clamping assembly 4 is firmly clamped on the window frame 2. The present invention sets the spacing between the center of the plurality of first fastening holes 61 and the stop portion of the first stop portion 5 to change sequentially. The user can adjust the first movable member 7 sequentially, improving the user experience.

[0060] like Figure 2 As shown, in some embodiments, the first movable member 7 is a slider, and the first mounting part 6 is provided with a slide rail. The slider can slide in the slide rail. The cooperation between the slider and the slide rail facilitates the sliding of the slider and improves the smoothness of the installation process of the mounting mechanism 1. For example, the slide rail extends in the left and right direction, and the slider can slide left and right along the slide rail. A plurality of first fastening holes 61 are spaced apart on the first mounting part 6. The slider slides along the slide rail so that the second fastening hole corresponds to one of the plurality of first fastening holes 61. Because the distance between the center of the plurality of first fastening holes 61 and the stop surface of the first stop part 5 changes sequentially, the clamping gap between the slider and the first stop part 5 changes sequentially during the process of the second fastening hole corresponding to the first fastening hole 61.

[0061] Optionally, fastener 8 is a pin.

[0062] In other embodiments, the first mounting portion 6 is provided with a third fastening hole (not shown), and the first movable member 7 is provided with a second fastening hole. The clamping assembly 4 also includes a fastener 8, which cooperates with the third and second fastening holes to adjust the positioning position of the first movable member 7.

[0063] Specifically, the third fastening hole is an elongated hole that extends away from the stop surface of the first stop part 5. By setting the first fastening hole 61 to be an elongated hole, the stepless adjustment of the first movable part 7 is realized, further improving the user experience. For example, the window frame 2 is positioned between the first stop portion 5 and the first movable member 7. The first stop portion 5 is located behind the window frame 2, and the first movable member 7 is located in front of the window frame 2. The first movable member 7 can move back and forth to adjust the clamping gap. An elongated hole is provided on the first mounting portion 6, and the elongated hole is inclined relative to the stop surface. The fastener 8 passes through the elongated hole and cooperates with the second fastening hole to fasten the first movable member 7 to the first mounting portion 6, thereby stabilizing the clamping gap and fastening the clamping assembly 4 to the window frame 2. When the first movable member 7 is initially placed, the clamping gap may be too large, causing the clamping assembly 4 to fail to be fastened to the window frame 2. The fastener 8 can be moved to slide on the elongated hole, and the fastener 8 moves the first movable member 7 closer to the first stop portion 5, reducing the clamping gap until the first movable member 7 and the first stop portion 5 abut against the window frame 2. Of course, the elongated hole can also be set perpendicular to the stop surface, which will not be elaborated here.

[0064] like Figure 2 As shown, in some specific embodiments, there are multiple first movable members 7. Setting multiple first movable members 7 improves the stability of the clamping assembly 4 clamping the window frame 2. For example, two first movable members 7 are spaced apart, and the two first movable members 7 abut against different positions on the window frame 2, making the connection between the clamping assembly 4 and the window frame 2 more stable. Of course, two first movable members 7 are just an example; there can be more first movable members 7, which will not be elaborated here.

[0065] like Figure 3 As shown, in other embodiments, the clamping component 4 includes: a second stop portion 410 and a second clamping portion 411.

[0066] The second stop portion 410 is provided on the support component 9. The second clamping portion 411 includes a plurality of clamping surfaces 412, and the gaps between the plurality of clamping surfaces 412 and the second stop portion 410 are different to define a plurality of clamping positions. By setting a plurality of clamping surfaces 412 to define a plurality of clamping positions, window frames 2 of different thicknesses are placed between different gaps, and the user does not need to perform installation operations, thus simplifying the installation process.

[0067] like Figure 4As shown, specifically, at least one clamping surface 412 is formed as an inclined surface extending in a direction away from the second stop portion 410. By setting the inclined surface, it is convenient to adapt the clamping surface 412 to window frames 2 of different thicknesses, increasing the adaptability range of the clamping assembly 4 and improving the versatility of the installation mechanism 1. It can be understood that the inclined surface extends in a direction away from the second stop portion 410, and the distance between each point on the inclined surface and the second stop portion 410 is different. During the process of clamping the window frame 2, the window frame 2 can slide on the inclined surface to find a suitable position for the window frame 2 to fit with the clamping assembly 4.

[0068] like Figure 4 As shown, specifically, at least one clamping surface 412 is formed as a plane parallel to the stop surface of the second stop portion 410. By setting the plane, the contact area between the clamping assembly 4 and the window frame 2 is increased, thereby improving the stability of the connection between the clamping assembly 4 and the window frame 2. For example, in the prior art, the thickness of the plate of the window frame 2 is 1.2 mm. One clamping surface 412 is formed as a plane parallel to the stop surface and 1.2 mm away from the stop surface, which improves the stability of the connection between the clamping assembly 4 and the window frame 2 while ensuring the adaptability of the clamping assembly 4. Alternatively, two clamping surfaces 412 can be formed as planes parallel to the stop surface, for example, one plane is 1 mm away from the stop surface and the other plane is 1.2 mm away from the stop surface, further improving the adaptability of the clamping assembly 4. Of course, there can be more planes parallel to the stop surface among the multiple clamping surfaces 412, which will not be elaborated here.

[0069] Optionally, the second clamping part 411 is an elastic element. By making the second clamping part 411 an elastic element, the connection stability between the clamping assembly 4 and the window frame 2 is further improved. For example, the elastic element is made of rubber. When the clamping assembly 4 clamps the window frame 2, the elastic element deforms, making the area of ​​contact between the elastic element and the window frame 2 larger. At the same time, the rebound force of the elastic element increases the normal pressure of the elastic element on the window frame 2, thereby increasing the friction between the second clamping part 411 and the window frame 2.

[0070] In some embodiments, the clamping assembly 4 further includes an elastic element (not shown). The elastic element connects to the second clamping portion 411, causing the second clamping portion 411 to tend to move towards the second stop portion 410. By providing the elastic element, the second clamping portion 411 abuts against the window frame 2, improving the connection stability between the clamping assembly 4 and the window frame 2. For example, the elastic element is a spring. The spring force acts on the second clamping portion 411, causing the second clamping portion 411 to move towards the second stop portion 410. The second clamping portion 411 abuts against the window frame 2. The spring force gives the second clamping portion 411 a positive pressure on the window frame 2, while simultaneously increasing the positive pressure between the window frame 2 and the second stop portion 410. The friction between the window frame 2 and the second clamping portion 411 and the second stop portion 410 is increased, thereby increasing the connection stability between the clamping assembly 4 and the window frame 2.

[0071] like Figure 5 As shown, in some embodiments, the clamping assembly 4 includes: a third stop portion 44, a second mounting portion 42, a second movable member 41, and a driving member 43.

[0072] The third stop portion 44 is provided on the support assembly 9. The second mounting portion 42 is provided on the support assembly 9 and is stationary relative to the third stop portion 44. The second movable member 41 is movably provided on the second mounting portion 42. The driving member 43 has multiple locking positions and is rotatably provided on the second mounting portion 42 so that the multiple locking positions switch contact with the second movable member 41 to change the distance between the second movable member 41 and the third stop portion 44 to define multiple clamping positions. By setting the driving member 43 to change the distance between the second movable member 41 and the second stop portion 410, the present invention adapts to window frames 2 of different thicknesses, improves the applicability of the mounting mechanism 1, simplifies the installation process, and facilitates user operation.

[0073] For example, such as Figure 6 As shown, the locking positions include a first locking position 471 and a second locking position 472. When the second locking position 472 contacts the second movable member 41, the distance between the second movable member 41 and the third stop portion 44 is smaller than the distance between the second movable member 41 and the third stop portion 44 when the first locking position 471 contacts the second movable member 41. When the second locking position 472 contacts the second movable member 41, the clamping assembly 4 clamps the thinner window frame 2. Rotating the drive member 43 to make the first locking position 471 contact the second movable member 41 can release the window frame 2 from the clamped state, facilitating the user to disassemble and install the mechanism 1. Or, as Figure 7 As shown, the locking position also includes a third locking position 473. When the third locking position 473 contacts the second movable member 41, the distance between the second movable member 41 and the third stop portion 44 is greater than the distance between the second movable member 41 and the third stop portion 44 when the first locking position 471 contacts the second movable member 41. The state in which the third locking position 473 contacts the second movable member 41 can be the initial state of the clamping assembly 4. Rotating the drive member 43 causes the second movable member 41 to contact the first locking position 471 or the second locking position 472, so that the clamping assembly 4 can clamp window frames 2 of two thicknesses. Of course, there can be more locking positions, which will not be described in detail here.

[0074] like Figure 5 As shown, specifically, the drive component 43 includes: a first cam portion 47 and a handle portion 48.

[0075] The first cam portion 47 is eccentrically rotatably mounted on the second mounting portion 42. The first cam portion 47 contacts the second movable member 41 to drive the second movable member 41 to move when rotated. By setting the first cam portion 47 to drive the movement of the second movable member 41, and using a mechanical mechanism to control the movement of the second movable member 41, reliability is improved. The handle portion 48 cooperates with the first cam portion 47 to drive the first cam portion 47 to rotate. For example, the second movable member 41 is located on the rear side of the second mounting portion 42, and the first cam portion 47 is located on the front side of the second mounting portion 42. The first cam portion 47 is eccentrically rotatably mounted on the second mounting portion 42. When the first cam portion 47 rotates, it presses the second movable member 41 to move backward. The rotation of the first cam portion 47 is controlled by the handle portion 48, which facilitates control.

[0076] like Figure 6 , Figure 7 As shown, specifically, the second movable member 41 includes a base portion 45 and an adjusting member 46 detachably provided on the base portion 45. The adjusting member 46 abuts against the window frame 2. By providing the adjusting member 46, the range of window frame 2 thickness that the clamping assembly 4 can clamp is further increased, thereby further improving the adaptability of the mounting mechanism 1. The adjusting member 46 can be detached from the base portion 45. By replacing the adjusting member 46 with one of different sizes, the distance between the second movable member 41 and the third abutment portion 44 can be changed, increasing the number of clamping positions.

[0077] Specifically, the material of the adjusting part 46 can be rubber, and by setting the material of the adjusting part 46 to rubber, damage to the window frame 2 can be avoided.

[0078] like Figure 6 , Figure 7 As shown, optionally, the locking position is formed as a plane. By setting the locking position as a plane, the contact surface between the plane and the window frame 2 is more stable, improving the stability of the connection between the driving member 43 and the second movable member 41. Of course, the locking position can also have other features, such as being formed as a groove. Setting the locking position as a groove further makes the connection between the driving member 43 and the second movable member 41 more stable. The locking position can also have more locking features, which will not be elaborated here.

[0079] like Figure 10As shown, in some specific embodiments, the clamping assembly 4 further includes an upper frame member 49, which is connected to the support assembly 9. A third stop portion 44 is provided on the upper frame member 49, and the length of the third stop portion 44 is less than the length of the upper frame member 49. First notches 491 are formed on both sides of the third stop portion 44. By setting the length of the third stop portion 44 to be less than the length of the upper frame member 49, the third stop portion 44 plays a positioning role, making it convenient for the user to install the installation mechanism 1. For example, the window frame 2 generally has an upper frame, a lower frame, a left frame, and a right frame. When the user installs the installation mechanism 1 onto the window frame 2, the installation mechanism 1 can be placed against the right frame, and the right frame is placed against the right side of the third stop portion 44, making it convenient for the user to use the handle member 91 to move the moving rail 52, thus facilitating the installation of the installation mechanism 1. At the same time, the front side of the window frame 2 is placed against the rear side of the installation mechanism 1 to prevent the installation mechanism 1 from tipping over and improve safety.

[0080] like Figure 8 As shown, in some embodiments, the support component 9 includes a telescopic component 95, which includes a stationary component and a telescopic component. The telescopic component and the stationary component are telescopically coupled. The opposite sides of the telescopic component 95 are connected to the window frame 2, and the integrated air conditioner 3 is mounted on the stationary component. This invention adjusts the size of the mounting mechanism 1 by setting the telescopic component and the stationary component to telescopically engage, allowing the mounting mechanism 1 to adapt to window frames 2 of different sizes, thus improving the user experience. For example, the telescopic component extends relative to the stationary component, increasing the height of the mounting mechanism 1, and the upper and lower sides of the telescopic component 95 are connected to the window frame 2 to secure the mounting mechanism 1 to the window frame 2; or, the telescopic component extends relative to the stationary component, increasing the length of the mounting mechanism 1, and the left and right sides of the telescopic component 95 are connected to the window frame 2 to secure the mounting mechanism 1 to the window frame 2.

[0081] The clamping component 4 is connected to the telescopic component. By connecting the clamping component 4 to the telescopic component, the telescopic component extends and retracts, causing the clamping component 4 to move, which facilitates the clamping component 4 to clamp the window frame 2 and improves the user experience.

[0082] like Figure 8 As shown, specifically, the stationary component is the fixed rail 51, and the telescopic component is the movable rail 52. For example, when the fixed rail 51 is stationary, the movable rail 52 moves upward relative to the fixed rail 51, and the clamping assembly 4 on the movable rail 52 moves upward together. The upward movement of the movable rail 52 relative to the fixed rail 51 increases the total length of the movable rail 52 and the fixed rail 51. In other words, the clamping assembly 4 can be adjusted according to different sizes of window frames 2 to adapt to the requirements of the window frame 2, thus improving the versatility and adaptability of the installation mechanism 1. For ease of description, the fixed rail 51 and the movable rail 52 will be used as examples thereafter.

[0083] like Figure 9 As shown, in some embodiments, the support component 9 further includes: a fastening component 96 and a handle component 91.

[0084] The fastening assembly 96 is used to support the integrated air conditioner 3 and is suitable for engaging with the bottom of the window frame 2 for positioning and installation on the window frame 2. By setting the fastening assembly 96, the mounting mechanism 1 is fixed to the bottom of the window frame 2, and the mounting mechanism 1 is fixed on the window frame 2. Based on the fixing of the mounting mechanism 1 to the window frame 2 by the clamping assembly 4, the stability of the mounting mechanism 1 is further improved.

[0085] The handle 91 engages with the moving rail 52 to drive the moving rail 52 to slide up and down relative to the fixed rail 51.

[0086] For example, the clamping component 4 is located at the upper end of the moving rail 52 and engages with the upper part of the window frame 2. The handle 91 is located below the clamping component 4. It is understood that when the installation mechanism 1 is installed on the window frame 2, the clamping component 4 will be at a relatively high height. When installing the installation mechanism 1, the user inevitably needs to rise to a higher height, which may pose a danger. Furthermore, the installation process is quite cumbersome. This invention addresses this by setting the handle 91 to drive the moving rail 52 to slide up and down. With the handle 91 located below the clamping component 4, the user can control the moving rail 52 to slide up and down without rising to a higher height, improving the ease of installation and disassembly of the installation mechanism 1. Simultaneously, user safety is ensured, meeting the user's needs for self-installation and relocation.

[0087] like Figure 9 , Figure 12 As shown, in some embodiments, the support component 9 further includes a positioning component 97. The positioning component 97 cooperates with the fixed rail 51 and the moving rail 52 respectively to position the moving rail 52 at a set position. By setting the positioning component 97 to position the moving rail 52 at a set position, the moving rail 52 can be fixed at the set position according to the user's needs, which facilitates the user's installation of the installation mechanism 1 and reduces the difficulty of installing the installation mechanism 1. The positioning component 97 cooperates with the fixed rail 51 and the moving rail 52 to position the moving rail 52 at a set position. The position of the moving rail 52 relative to the fixed rail 51 is fixed, thereby fixing the total length of the moving rail 52 and the fixed rail 51 to a fixed size, which facilitates the installation of the installation mechanism 1 onto the window frame 2.

[0088] like Figure 9 , Figure 12 As shown, specifically, the positioning component 97 includes: a fixing part 71 and a contact part 72.

[0089] The fixing part 71 is fixed to the fixed rail 51. The contact part 72 is movably provided on the fixing part 71. The contact part 72 contacts the moving rail 52 to position the moving rail 52 using friction. By providing the contact part 72 to position the moving rail 52, the control capability of the mounting mechanism 1 is improved. The moving rail 52 and the fixed rail 51 are movably engaged, and the moving rail 52 and the fixed rail 51 can move relative to each other. The fixing part 71 is provided on the fixed rail 51, and the contact part 72 is provided on the fixing part 71. When it is necessary for the moving rail 52 to be fixed relative to the fixed rail 51, the movable contact part 72 contacts the moving rail 52. Under the action of the friction force of the contact part 72 on the moving rail 52, the moving rail 52 cannot move freely relative to the fixed rail 51, and the moving rail 52 is fixed on the fixed rail 51.

[0090] like Figure 12 , Figure 13 As shown, more specifically, the contact portion 72 includes: a clamping block 73 and a second cam portion 74.

[0091] The clamping block 73 contacts the moving rail 52. The second cam portion 74 is eccentrically rotatably mounted on the fixed portion 71. The second cam portion 74 contacts the clamping block 73, and rotates to adjust the gap between the clamping block 73 and the moving rail 52. By controlling the gap between the clamping block 73 and the moving rail 52, the clamping block 73 presses against the moving rail 52, fixing it in place, further improving the controllability of the moving rail 52. The second cam portion 74 is eccentrically rotatably mounted on the fixed portion 71. The eccentric rotation of the second cam portion 74 drives the clamping block 73 to move, changing the gap between the clamping block 73 and the moving rail 52. By setting the clamping block 73 to generate friction on the moving rail 52, the relative fixation of the moving rail 52 and the fixed rail 51 is ensured. When the gap between the clamping block 73 and the moving rail 52 is zero, the clamping block 73 is completely attached to the moving rail 52. However, the second cam part 74 can make the clamping block 73 and the moving rail 52 fit more tightly, increase the friction between the clamping block 73 and the moving rail 52, and further ensure the relative fixation of the moving rail 52 and the fixed rail 51.

[0092] like Figure 8As shown, optionally, the fixed rail 51 is provided with a first mating hole 53, and the moving rail 52 is provided with a second mating hole. The mounting mechanism 1 also includes a fixed connector (not shown in the figure). The fixed connector passes through the first mating hole 53 and mates with the second mating hole. The fixed connector abuts against the fixed rail 51. By setting the fixed connector to pass through the first mating hole 53 and mate with the second mating hole, the fixed connector is on the moving track of the moving rail 52. The obstructed moving rail 52 cannot move and is fixed on the fixed rail 51. The total length of the moving rail 52 and the fixed rail 51 is fixed. On the basis of the clamping block 73 clamping the moving rail 52, the stability of the fixed connection between the moving rail 52 and the fixed rail 51 is further improved. For example, when the moving rail 52 moves upward relative to the fixed rail 51 to a specific position, the fixed connector passes through the first mating hole 53 and engages with the second mating hole. At this time, the fixed connector is on the moving track of the moving rail 52, and the moving rail 52 is blocked by the fixed connection. The moving rail 52 cannot move upward or downward, and the moving rail 52 is thus fixedly connected to the fixed rail 51. When the installation mechanism 1 is installed on the window frame 2, the moving rail 52 is double-fixed by the clamping block 73 and the fixed connector, which improves the stability of the installation mechanism 1.

[0093] Specifically, the fixing connector is a mounting screw. The mounting screw passes through the first mating hole 53 on the fixed rail 51 and mates with the second mating hole on the moving rail 52. The moving rail 52 is restricted by the mounting screw, and the position of the moving rail 52 relative to the fixed rail 51 is fixed, thereby improving the stability of the mounting mechanism 1.

[0094] like Figure 14 As shown, in some embodiments, the fastening assembly 96 includes: a support portion 961 and a bottom fastening portion 62.

[0095] The support part 961 is adapted to cooperate with the integrated air conditioner 3 to support the integrated air conditioner 3. The bottom fastening part 62 is provided on the support part 961, and the bottom fastening part 62 is adapted to cooperate with the bottom of the window frame 2 to be positioned and installed on the window frame 2.

[0096] The bottom fastening part 62 includes a fourth stop part 65 and a clamping assembly 63. The fourth stop part 65 is fixed to the support part 961. The clamping assembly 63 is movable relative to the fourth stop part 65. The clamping assembly 63 and the fourth stop part 65 respectively abut against the opposite sidewalls at the bottom of the window frame 2. By setting the clamping assembly 63 and the fourth stop part 65 to abut against the window frame 2, the mounting mechanism 1 is fixed to the window frame 2, thereby improving the stability of the mounting mechanism 1. The clamping assembly 63 is movable relative to the fourth stop 65. When installing the mounting mechanism 1, the clamping assembly 63 is adjusted away from the fourth stop 65, creating a large gap between them. This facilitates the movement of the clamping assembly 63 and the fourth stop 65 to the opposite sidewalls of the bottom of the window frame 2. After the clamping assembly 63 and the fourth stop 65 have moved to the opposite sidewalls of the bottom of the window frame 2, the clamping assembly 63 is adjusted to be close to the sidewall of the bottom of the window frame 2. The fourth stop 65 and the clamping assembly 63 abut against the opposite sidewall of the bottom of the window frame 2, fixing the mounting mechanism 1 relative to the window frame 2. When disassembling the mounting mechanism 1, the clamping assembly 63 is adjusted away from the fourth stop 65, creating a large gap between them, allowing the mounting mechanism 1 to move relative to the window frame 2.

[0097] For example, the fourth stop 65 and the clamping assembly 63 are arranged one in front of the other, with the clamping assembly 63 located in front of the fourth stop 65. The clamping assembly 63 moves backward toward the fourth stop 65. When the mounting mechanism 1 is installed on the window frame 2, the clamping assembly 63 abuts against the front side wall of the bottom of the window frame 2, and the fourth stop 65 abuts against the rear side wall of the bottom of the window frame 2. The mounting mechanism 1 is then fixed to the window frame 2.

[0098] like Figure 14 , Figure 15 As shown, specifically, the bottom fastening part 62 also includes a bottom frame member 69, which is connected to the fixing rail 51. A fourth stop part 65 is provided on the bottom frame member 69, and the length of the fourth stop part 65 is less than the length of the bottom frame member 69. Second notches 691 are formed on both sides of the fourth stop part 65. By setting the length of the fourth stop part 65 to be less than the length of the bottom frame member 69, the fourth stop part 65 plays a positioning role, making it convenient for the user to install the installation mechanism 1. For example, the window frame 2 generally has a top frame, a bottom frame, a left frame, and a right frame. When the user installs the installation mechanism 1 onto the window frame 2, the installation mechanism 1 can be placed against the left frame, and the window frame 2 can be placed against the left side of the fourth stop part 65, making it convenient for the user to use the handle part 91 to move the moving rail 52, thus facilitating the installation of the installation mechanism 1. At the same time, the front side of the window frame 2 is placed against the rear side of the installation mechanism 1 to prevent the installation mechanism 1 from tipping over and improve safety.

[0099] like Figure 14As shown, in some specific embodiments, the bottom fastening part 62 further includes a second fixing plate 64, which is fixed to the support part 961. The clamping assembly 63 includes a clamping plate (not shown) and a rotating member 68. The rotating member 68 is rotatably mounted on the second fixing plate 64 and is connected to the clamping plate to push the clamping member relative to the second fixing plate 64 during rotation. The clamping plate and the fourth stop part 65 abut against the window frame 2. By setting the rotating member 68 to push the clamping plate, the clamping plate and the fourth stop part 65 abut against the window frame 2, which facilitates user control of the fastening assembly 96 and facilitates the installation of the installation mechanism 1. The second fixing plate 64 is fixed to the support part 961, the fourth stop part 65 is fixed to the support part 961, and the distance between the second fixing plate 64 and the fourth stop part 65 is fixed. The clamping plate is located between the second fixed plate 64 and the fourth stop part 65. The rotating member 68 rotates on the second fixed plate 64 to move itself. The moving rotating member 68 pushes the clamping plate to move relative to the second fixed plate 64.

[0100] like Figure 14 As shown, for example, the second fixed plate 64 is provided in front of the fourth stop portion 65, the rotating member 68 is rotatably provided on the second fixed plate 64, and the clamping plate is provided at the rear end of the rotating member 68. The clamping plate is located between the second fixed plate 64 and the fourth stop portion 65. When the rotating member 68 rotates, it moves forward, and the clamping plate is driven forward by the rotating member 68. When the rotating member 68 rotates, it moves backward, and the clamping plate is pushed backward by the rotating member 68. When the mounting mechanism 1 is installed onto the window frame 2, the rotating member 68 rotates and moves forward, causing the clamping plate to move forward as well. This increases the distance between the clamping plate and the fourth stop 65, making it easier for the bottom of the window frame 2 to enter between them, thus facilitating the installation of the mounting mechanism 1 onto the window frame 2. When the clamping plate and the fourth stop 65 move to the sides of the bottom of the window frame 2, the rotating member 68 rotates and moves backward, pushing the clamping plate backward along with the rotating member 68. This decreases the distance between the clamping plate and the fourth stop 65, and the clamping plate continues to move backward until it abuts against the front side wall of the bottom of the window frame 2. On the surface; when the mounting mechanism 1 is installed on the window frame 2, the clamping plate abuts against the front side wall of the bottom of the window frame 2, and the fourth abutment part 65 abuts against the rear side wall of the bottom of the window frame 2. The clamping plate and the fourth abutment part 65 cooperate to clamp the bottom of the window frame 2. The cooperation between the clamping plate and the fourth abutment part 65 fixes the mounting mechanism 1 on the window frame 2. When the mounting mechanism 1 is removed from the window frame 2, the rotating part 68 rotates and moves itself forward. The clamping plate is driven forward by the rotating part 68 and moves away from the fourth abutment part 65. The gradually increasing space between the clamping plate and the fourth abutment part 65 allows the mounting mechanism 1 to move relative to the window frame 2, thereby facilitating the removal of the mounting mechanism 1 from the window frame 2.

[0101] Specifically, the rotating component 68 is a bolt, which is threaded onto the second fixed plate 64.

[0102] Optionally, the clamping plate is also provided with a flexible component to clamp and protect the window frame 2. For example, the flexible component is made of rubber, utilizing the properties of rubber to protect the window frame 2.

[0103] In some embodiments, the fixed rail 51 and the support part 961 are connected. By setting the fixed rail 51 to the support part 961, the installation mechanism 1 has a stable end. The height of the installation mechanism 1 can be adjusted by simply moving the fixed rail 51 or the moving rail 52, which facilitates the connection between the installation mechanism 1 and the window frame 2 and the integrated air conditioner 3.

[0104] like Figure 1 As shown, in some embodiments, the support component 9 also includes a locking mechanism 98, which is mounted on the fixed rail 51 and located below the clamping component 4. The locking mechanism 98 is adapted to cooperate with the integrated air conditioner 3 to position the integrated air conditioner 3. By setting the locking mechanism 98 to position the integrated air conditioner 3, the connection between the integrated air conditioner 3 and the installation mechanism 1 is facilitated, improving the connection stability between the integrated air conditioner 3 and the installation mechanism 1 and enhancing the user experience. The support part 961 cooperates with the integrated air conditioner 3 to support the integrated air conditioner 3, and the locking mechanism 98, mounted on the fixed rail 51, cooperates with the integrated air conditioner 3 to position the integrated air conditioner 3. By setting the locking mechanism 98 to position the integrated air conditioner 3 based on the support part 961 supporting the integrated air conditioner 3, the integrated air conditioner 3 is firmly fixed on the installation mechanism 1 under the dual positioning of the support part 961 and the locking mechanism 98, improving the connection stability between the installation mechanism 1 and the integrated air conditioner 3.

[0105] like Figure 9As shown, specifically, the support component 9 also includes a blocking curtain 92. The upper and lower ends of the blocking curtain 92 are connected to the locking mechanism 98 and the clamping component 4, respectively. By setting the blocking curtain 92 to block the flow of indoor and outdoor air and the diffusion of liquid, the temperature regulation effect of the integrated air conditioner 3 is ensured. The upper end of the moving rail 52 is connected to the clamping component 4, and the locking mechanism 98 is set on the fixed rail 51. When the moving rail 52 moves relative to the fixed rail 51, the distance between the clamping component 4 and the locking mechanism 98 changes. The upper and lower ends of the blocking curtain 92 are connected to the locking mechanism 98 and the clamping component 4, respectively. The distance between the upper and lower ends of the blocking curtain 92 can change with the change of the distance between the clamping component 4 and the locking mechanism 98, and the blocking curtain 92 always plays a blocking role. It can be understood that during the operation of the integrated air conditioner 3, the blocking curtain 92 blocks the flow of indoor and outdoor air. Moreover, the blocking curtain 92 can change with the size of the window frame 2, and the blocking curtain 92 can adapt to different sizes of window frames 2, improving the versatility of the installation mechanism 1. The specific structure of the blocking curtain 92 can be referenced from the pleated curtain in the prior art, and will not be described in detail here.

[0106] like Figure 1 , Figure 11 As shown, in some other specific embodiments, the locking mechanism 98 includes: a horizontal moving member 81, a hook portion 82 on the horizontal moving member 81, and a hook hole 31 on the integrated air conditioner 3. The hook portion is adapted to cooperate with the hook hole 31 to position the integrated air conditioner 3. By setting the horizontal moving member 81 to position the integrated air conditioner 3, the user can install and remove the integrated air conditioner 3 as needed, meeting the user's need to move the integrated air conditioner 3 and improving the user experience. The cooperation between the hook portion 82 and the hook hole 31 positions the integrated air conditioner 3 on the mounting mechanism 1. The horizontal moving member 81 can move. The movement of the horizontal moving member 81 causes the hook portion 82 to cooperate with the hook hole 31, thereby installing the integrated air conditioner 3 on the mounting mechanism 1. The movement of the horizontal moving member 81 can disengage the hook portion 82 from the hook hole 31, thereby removing the integrated air conditioner 3 from the mounting mechanism 1.

[0107] For example, the horizontal moving part 81 can move left and right. When the horizontal moving part 81 moves to the right, the hook part 82 extends into the hook hole 31, and the hook part 82 hooks the integrated air conditioner 3. The integrated air conditioner 3 is fixed on the mounting mechanism 1, avoiding the danger of the integrated air conditioner 3 tilting forward and falling off the mounting mechanism 1, thus improving safety. When the horizontal moving part 81 moves to the left, the hook part 82 moves out of the hook hole 31, and the integrated air conditioner 3 is no longer restricted by the hook part 82. The integrated air conditioner 3 can be removed from the mounting mechanism 1. By setting the horizontal moving part 81, the installation of the integrated air conditioner 3 is facilitated and the installation steps are simplified.

[0108] like Figure 11As shown, in some embodiments, the horizontal moving member 81 is provided with a lever 812. The lever 812 is located on one side of the horizontal moving member 81 and extends away from the horizontal moving member 81. The lever 812 facilitates the user's control of the horizontal moving member 81. For example, the lever 812 is located at the upper end of the horizontal moving member 81, which is located at the upper end of the integrated air conditioner 3. The lever 812 extends out of the integrated air conditioner 3, and the user can easily move the lever 812 by turning it. Of course, the lever 812 can also be located at the upper end, left end, or rear end of the horizontal moving member, which will not be elaborated here.

[0109] like Figure 11 , Figure 18 As shown, in some other embodiments, the locking mechanism 98 further includes a fixing member 85, which is disposed on the fixing rail 51. The fixing member 85 has a third mating hole 853, and the integrated air conditioner 3 has a fourth mating hole 312. The locking mechanism 98 also includes a stabilizing member (not shown in the figure), which passes through the third mating hole 853 and engages with the fourth mating hole 312. By setting the stabilizing member to pass through the third mating hole 853 and engage with the fourth mating hole 312, the integrated air conditioner 3 is fixed on the mounting mechanism 1. Based on the positioning of the integrated air conditioner 3 by the hook part 82 engaging with the hook hole 31, the integrated air conditioner 3 is further restricted, thereby improving the connection stability between the integrated air conditioner 3 and the mounting mechanism 1.

[0110] like Figure 11 As shown, specifically, the horizontal moving member 81 is movably mounted on the fixed member 85. The locking mechanism 98 also includes a spring 86, one end of which is connected to the horizontal moving member 81, and the other end of which is mounted on the fixed member 85. The spring 86 has a tendency to lock the horizontal moving member 81. When the horizontal moving member 81 is locked, the hook portion 82 on the horizontal moving member 81 engages with the hook hole 31 to position the integrated air conditioner 3.

[0111] For example, the left end of spring 86 is connected to the horizontal moving member 81, and the right end of spring 86 is connected to the fixed part 71, so that spring 86 pulls the horizontal moving member 81 to move to the right; or, the right end of spring 86 is connected to the horizontal moving member 81, and the left end of spring 86 is connected to the fixed part 71, so that spring 86 pushes the horizontal moving member 81 to move to the right. Of course, spring 86 can also move the horizontal moving member 81 to the left. The situation of the horizontal moving member 81 moving to the left is the same as the situation of moving to the right, and will not be described in detail here.

[0112] like Figure 11As shown, more specifically, the horizontal moving member 81 is provided with a limiting part 811, and the fixing member 85 is provided with a limiting member. The limiting member moves on the limiting part 811. By setting the limiting part 811 and the limiting member, the movement of the horizontal moving member 81 is restricted, which facilitates the control of the horizontal moving member 81. When the limiting member abuts against the limiting part 811, the horizontal moving member 81 is in a locked state.

[0113] Optionally, the limiting member is a limiting screw, the limiting part 811 is a limiting hole, the limiting screw passes through the screw hole 852 and is threaded to the fixing member 85, and the limiting screw is located in the limiting hole.

[0114] like Figure 16 As shown, in some embodiments, the integrated air conditioner 3 is provided with a groove 311. The groove 311 cooperates with the support part 961 to support the integrated air conditioner 3. By providing the groove 311 to cooperate with the support part 961 to support the integrated air conditioner 3, the installation of the integrated air conditioner 3 is facilitated based on the positioning of the integrated air conditioner 3 by the locking mechanism 98. For example, the groove 311 is located at the bottom end of the integrated air conditioner 3, and the hook hole 31 is located at the top end of the integrated air conditioner 3. When installing the integrated air conditioner 3, first, the groove 311 of the integrated air conditioner 3 is cooperated with the support part 961 to support the integrated air conditioner 3. Then, it is only necessary to rotate the integrated air conditioner 3 so that the hook hole 31 of the integrated air conditioner 3 cooperates with the hook part 82 to fix the integrated air conditioner 3 on the installation mechanism 1, simplifying the installation steps and allowing the user to install the integrated air conditioner 3 by themselves.

[0115] like Figure 8 As shown, in some embodiments, a shock absorber 511 is provided on the fixed rail 51. The shock absorber 511 is attached to the integrated air conditioner 3. By setting the shock absorber 511, the impact of the vibration of the integrated air conditioner 3 during operation on the installation mechanism 1 is reduced, and the noise is reduced.

[0116] like Figure 8 As shown, in some specific embodiments, two fixed rails 51 are provided on both sides of the installation mechanism 1, and two movable rails 52 are respectively provided corresponding to the two fixed rails 51. By providing two fixed rails 51 and two movable rails 52 in cooperation, the stability of the installation mechanism 1 is improved.

[0117] like Figure 8 As shown, specifically, two fixed rails 51 are respectively provided at both ends of the fastening component 96 and the locking mechanism 98. The two fixed rails 51, the locking mechanism 98 and the fastening component 96 restrict the installation space 54 to cooperate with the integrated air conditioner 3. By setting two fixed rails 51, the locking mechanism 98 and the fastening component 96 to form a frame structure, the overall stability of the installation structure is improved.

[0118] like Figure 8As shown, more specifically, the integrated air conditioner 3 is provided with a mounting groove 313, which mates with the installation space 54. For example, the size of the mounting groove 313 is smaller than the size of the installation space 54, so that the mounting groove 313 can enter the installation space 54 and the side of the mounting groove 313 fits against the inner side of the installation space 54, making it convenient for the integrated air conditioner 3 to be installed in place.

[0119] like Figure 8 As shown, in some embodiments, the handle 91 is located between two moving rails 52 and within the installation space 54. By positioning the handle 91 within the installation space 54, when the integrated air conditioner 3 is installed within the installation space 54, the handle 91 can position the integrated air conditioner 3, preventing it from tilting to one side and improving safety.

[0120] like Figure 17 As shown, more specifically, the blocking curtain 92 is located between two moving rails 52. The moving rails 52 are provided with sliding grooves 521. Part of the blocking curtain 92 extends into the sliding grooves 521. By setting part of the blocking curtain 92 to extend into the sliding grooves 521, the blocking effect of the blocking curtain 92 is improved, and the blocking curtain 92 is better limited and stored.

[0121] The following is combined Figures 1 to 18 This describes a specific embodiment of the installation mechanism 1 of the integrated air conditioner of the present invention.

[0122] An installation mechanism 1 for an integrated air conditioner includes a support component 9 and a clamping component 4.

[0123] The support assembly 9 includes: telescopic assembly 95, positioning assembly 97, handle 91, fastening assembly 96, locking mechanism 98, and barrier curtain 92.

[0124] The telescopic assembly 95 includes a stationary component and a telescopic component. The stationary component is a fixed rail 51, and the telescopic component is a movable rail 52. The fixed rail 51 and the movable rail 52 are in movable cooperation.

[0125] Two fixed rails 51 are arranged side by side. Each fixed rail 51 has a first mating hole 53 and a shock absorber 511. The shock absorber 511 is made of rubber and is located on the front wall of the fixed rail 51. Two movable rails 52 correspond to the two fixed rails 51. Each movable rail 52 has a second mating hole and a sliding groove 521. The second mating hole corresponds to the first mating hole 53. The fixing connector is a mounting screw, which passes through the first mating hole 53 and mates with the second mating hole, abutting against the fixed rail 51.

[0126] The positioning assembly 97 includes a fixing part 71 and a contact part 72. The fixing part 71 is fixed to the upper end of the fixed rail 51. The contact part 72 includes a clamping block 73 and a second cam part 74. The clamping block 73 contacts the moving rail 52. The second cam part 74 is eccentrically rotatably disposed on the fixing part 71 and contacts the clamping block 73. The second cam part 74 rotates to adjust the gap between the clamping block 73 and the moving rail 52 to position the moving rail 52 in a set position.

[0127] The handle 91 is located between two moving rails 52. Both ends of the handle 91 are connected to the moving rails 52 on both sides respectively. The handle 91 drives the moving rails 52 to slide up and down on the fixed rail 51.

[0128] The fastening assembly 96 includes a bottom fastening part 62 and a support part 961.

[0129] The bottom fastening part 62 includes a bottom frame member 69, a second fixing plate 64, and a clamping assembly 63. The bottom frame member 69 is located at the bottom end of the fixing rail 51. A fourth stop portion 65 is provided on the bottom frame member 69, the length of which is less than the length of the bottom frame member 69. Second notches 691 are formed on both sides of the fourth stop portion 65. The second fixing plate 64 is located on the bottom frame member 69, in front of the fourth stop portion 65. The clamping assembly 63 includes a rotating member 68 and a clamping plate. The rotating member 68 is a bolt and is rotatably mounted on the second fixing plate 64. The clamping plate is located at the rear end of the rotating member 68. The rotation of the rotating member 68 causes the clamping plate to move back and forth. The clamping plate and the fourth stop portion 65 respectively abut against the front and rear side walls of the bottom of the window frame 2. Two support parts 961 are provided on the bottom frame member 69.

[0130] The locking mechanism 98 includes a fixing component 85, a horizontal moving component 81, a spring 86, and a stabilizing component.

[0131] A fixing member 85 is located at the upper end of the fixing rail 51. The fixing member 85 has a third mating hole 853 and a limiting member. The limiting member is a limiting screw, and two limiting screws are threadedly connected to the fixing member 85 through screw holes 852. A horizontal moving member 81 is movably mounted on the fixing member 85. The horizontal moving member 81 has a hook portion 82, a limiting portion 811, and a lever portion 812. Two hook portions 82 are located at the left and right ends of the horizontal moving member 81, extending forward. The limiting portion 811 is a limiting hole, corresponding to two limiting members. When the limiting member abuts against the left end of the limiting portion 811, the horizontal moving member 81 is in a locked state. The lever portion 812 is located at the upper end of the horizontal moving member 81, extending upward. The left end of the spring 86 is connected to the horizontal moving part 81, and the right end of the spring 86 is connected to the fixing part 85. The spring 86 has a tendency to lock the horizontal moving part 81. The fixed rails 51 on both sides, the fixing part 85 at the upper end, and the bottom frame part 69 at the lower end together restrict the installation space 54.

[0132] The blocking curtain 92 is located between two moving rails 52. Part of the blocking curtain 92 extends into the sliding groove 521 on both moving rails 52. The upper end of the blocking curtain 92 is connected to the upper frame member 49, and the lower end of the blocking curtain 92 is connected to the fixing member 85.

[0133] The clamping assembly 4 includes: an upper frame member 49, a second movable member 41, a second mounting part 42, and a driving member 43.

[0134] The upper frame member 49 is located at the upper end of the moving rail 52. The upper frame member 49 is provided with a third stop part 44. The length of the third stop part 44 is less than the length of the upper frame member 49. The third stop part 44 has a first notch 491 formed on both sides.

[0135] The second mounting part 42 is provided on the upper frame member 49, and the second mounting part 42 is located in front of the third stop part 44.

[0136] The second movable part 41 includes a base part 45 and an adjusting part 46. The base part 45 is mounted on the second mounting part 42 and can move back and forth relative to the third stop part 44. The adjusting part 46 is detachably provided at the rear end of the base part 45, and the adjusting part 46 and the third stop part 44 respectively abut against the front and rear side walls of the upper part of the window frame 2.

[0137] The driving component 43 includes a first cam portion 47 and a handle portion 48. The first cam portion 47 is eccentrically rotatably mounted on the second mounting portion 42. The first cam portion 47 contacts the base portion 45 to drive the base portion 45 to move back and forth when rotated. The first cam portion 47 is provided with three locking positions: a first locking position 471, a second locking position 472, and a third locking position 473. When the second locking position 472 contacts the second movable member 41, the distance between the second movable member 41 and the third stop portion 44 is smaller than the distance between the second movable member 41 and the third stop portion 44 when the first locking position 471 contacts the second movable member 41. When the third locking position 473 contacts the second movable member 41, the distance between the second movable member 41 and the third stop portion 44 is greater than the distance between the second movable member 41 and the third stop portion 44 when the first locking position 471 contacts the second movable member 41. The state in which the third locking position 473 contacts the second movable member 41 is the initial state of the clamping assembly 4. The driving member 43 rotates 90 degrees counterclockwise to make the second movable member 41 contact the first locking position 471, and the driving member 43 rotates 90 degrees clockwise to make the second movable member 41 contact the second locking position 472. The handle portion 48 cooperates with the first cam portion 47 to drive the first cam portion 47 to rotate.

[0138] The integrated air conditioner 3 is mounted on the mounting mechanism 1. The integrated air conditioner 3 has hook holes 31, grooves 311, a fourth mating hole 312, and a mounting slot 313. Two hook holes 31 are located at the top of the integrated air conditioner 3, corresponding to two hook portions 82. When the two hook portions 82 mate with the two hook holes 31, the horizontal moving member 81 is locked. Two grooves 311 are located on the bottom surface of the integrated air conditioner 3, corresponding to two support portions 961. The fourth mating hole 312 is located at the top of the integrated air conditioner 3, corresponding to a third mating hole 853. A stabilizing member passes through the third mating hole 853 and mates with the fourth mating hole 312 to position the integrated air conditioner 3. The mounting slot 313 is adapted to the mounting space 54.

[0139] During the installation of the mounting mechanism 1 onto the window frame 2, the user first moves the fourth stop 65 and the clamping plate to the front and rear sides of the window frame 2, and pushes the mounting mechanism 1 to the left or right side frame, so that the first notch 491 and the second notch 691 on the mounting mechanism 1 engage with the window frame 2. Then, by hand-tightening the rotating part 68 of the fastening assembly 96 and simultaneously pulling the handle 91, the moving rail 52 on the mounting mechanism 1 is raised under the guidance of the handle 91 and the left or right side frame, moving the third stop 44 and the adjusting part 46 to the front and rear sides of the window frame 2, and rotating the second cam part 74 to press the clamping block 73 onto the moving rail 52. At this point, the user can release the mounting mechanism 1, and the user can safely and conveniently use the handle part 48 to rotate the first cam part 47 to press the third stop 44 and the adjusting part 46 onto the front and rear sides of the window frame 2. After the mounting mechanism 1 is installed in place, the engagement between the mounting mechanism 1 and the window frame 2 effectively prevents the risk of the mounting mechanism 1 tilting outward.

[0140] Currently, most users adjust room temperature comfortably by installing portable air conditioners or wall-mounted air conditioners. Because portable air conditioners have an integrated indoor and outdoor unit, when turned on, both the cold air from the indoor unit and the hot air from the outdoor unit are released into the room, thus only cooling a localized area and failing to meet the temperature control needs of the entire room. Wall-mounted air conditioners, on the other hand, do not meet users' portability needs, nor do they allow for self-installation or relocation, impacting the user experience. Furthermore, small rooms often lack designated outdoor unit installation locations, making self-installation difficult even for those who wish to install a wall-mounted unit. While window air conditioners exist, they suffer from issues such as unfriendly bracket installation, cumbersome installation, need for outdoor space, and interference with security bars on windows.

[0141] This invention utilizes a design where an installation mechanism 1 engages and secures with a window frame 2. The upper part of the installation mechanism 1 has a first cam portion 47 that clamps the front and rear sides of the window frame 2 with a third stop portion 44 and an adjusting member 46. A rubber adjusting member 46 is detachably mounted on the base portion 45, allowing the user to replace it according to the actual window size to accommodate different window installations. Simultaneously, the rubber adjusting member 46 secures the window frame 2, preventing damage from being clamped.

[0142] The upper part of both sides of the mounting mechanism 1 has a first notch 491, and the bottom of both sides of the mounting mechanism 1 has a second notch 691. When installing the mounting mechanism 1, the user can push the mounting mechanism 1 to the left or right until it engages with the notch and the window frame 2. This allows the user to use the window frame 2 as a guide when using the handle 91 to lift the moving rail 52, making installation easier. After the mounting mechanism 1 is installed in place, the window frame 2 engages with the first notch 491 and the second notch 691, which can prevent the outer side of the window frame 2 from tilting.

[0143] The mounting mechanism 1 is equipped with a blocking curtain 92. The two sides of the blocking curtain 92 extend into the sliding grooves 521 on the two side moving rails 52, thereby improving the blocking effect of the blocking curtain 92 and better utilizing the limiting and storage functions of the moving rails 52.

[0144] The mounting mechanism 1 is equipped with a clamping block 73. The second cam part 74 fixes the moving rail 52 by squeezing the clamping block 73, thereby greatly enhancing the stability of the moving rail 52 and improving the overall installation reliability of the mounting frame.

[0145] The moving rail 52 is equipped with a handle 91, which is fixedly connected to the moving rails 52 on both sides. The user can lift the moving rails 52 on both sides, the clamping component 4 and the blocking curtain 92 by pulling the handle 91, so that the user does not need to climb up to lift and fix them.

[0146] The mounting mechanism 1 uses a rotating component 68 to fasten the clamping plate. The rotating component 68 pushes the clamping plate to move and thus stops it on the window frame 2. The clamping plate (which can be fitted with rubber at the front end) provides the stop, rather than screws directly contacting and fastening the window frame 2. This improves the stability between the mounting mechanism 1 and the window frame 2 and prevents the window frame 2 from being damaged by clamping.

[0147] An integrated air conditioner device 10 according to an embodiment of the present invention includes: an integrated air conditioner 3 and an installation mechanism 1.

[0148] The mounting mechanism 1 is the mounting mechanism 1 of the integrated air conditioner mentioned above, and the integrated air conditioner 3 is placed on the support component 9.

[0149] According to an embodiment of the present invention, the integrated air conditioner device 10 secures the support component 9 to the window frame 2 by setting the clamping component 4, thereby achieving rapid installation of the installation mechanism 1; and the present invention improves the stability of the installation mechanism 1 by setting the clamping component 4 to clamp the opposite sides of the window frame 2, preventing the support component 9 from shaking; the present invention also improves the adaptability and versatility of the installation mechanism 1 by setting multiple clamping positions to clamp the clamping component 4 to the opposite sides of the window frame 2 with different thicknesses.

[0150] In some embodiments, the integrated air conditioner 3 cooperates with the support part 961. By setting the support part 961 to support the integrated air conditioner 3, the installation and disassembly of the integrated air conditioner 3 are facilitated, and the convenience is improved.

[0151] In some embodiments, the integrated air conditioner 3 includes: a housing, an indoor heat exchanger component, an air conditioning fan component, an air outlet frame component, an outdoor heat exchanger component, an outdoor fan, and a compressor assembly. The housing includes a front housing, a rear housing, a bottom housing, a top housing, and side housings. A first air outlet is provided on the front housing, and the first air outlet has an air outlet switch door for opening or closing the air outlet. A first air inlet is provided on the front housing and / or the side housing, and the first air inlet has an air conditioning return air grille filter. Uprights are provided on both sides of the rear housing to increase strength and provide a location for installation and fixing.

[0152] Other components and operations of the installation mechanism 1 of the integrated air conditioner according to embodiments of the present invention are known to those skilled in the art and will not be described in detail here.

[0153] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0154] Furthermore, features specified as "first" or "second" may explicitly or implicitly include one or more of the same feature, used to distinguish and describe features, without any order or distinction of importance.

[0155] In the description of this invention, unless otherwise stated, "a plurality of" means two or more.

[0156] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0157] In the description of this specification, references to terms such as "embodiment," "example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0158] Although embodiments of the invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims

1. An installation mechanism for an integrated air conditioner, characterized in that, The integrated air conditioner is installed on a windowsill, the windowsill has a window frame, and the installation mechanism includes: A support assembly on which the integrated air conditioner is placed; A clamping assembly is disposed on the support assembly. The clamping assembly clamps the opposite sides of the window frame for positioning and installation on the window frame. The clamping assembly has multiple clamping positions to adapt to window frames of different thicknesses. The support assembly includes: a telescopic assembly, which includes a stationary component and a telescopic component. The stationary component is a fixed rail, and the telescopic component is a movable rail. The support assembly also includes a positioning assembly, which includes a fixing part and a contact part. The fixing part is fixed to the upper end of the fixed rail, and the contact part is movably disposed on the fixing part. The contact part includes a clamping block and a second cam part. The clamping block contacts the movable rail. The second cam part is eccentrically rotatably disposed on the fixing part and contacts the clamping block. The second cam part rotates to adjust the gap between the clamping block and the movable rail to position the movable rail at a set position. The clamping assembly includes: A first stop portion is provided on the support assembly; A first mounting part is provided on the support assembly and is stationary relative to the first stop part. The first mounting part is provided with multiple mounting positions. The first mounting part is provided with a plurality of first fastening holes, which are spaced apart on the first mounting part, and the distance between the center of the plurality of first fastening holes and the stop surface of the first stop part changes sequentially.

2. The installation mechanism of the integrated air conditioner according to claim 1, characterized in that, The clamping assembly further includes: A first movable member is disassembled and engaged with any of the mounting positions to adjust the clamping gap between the first movable member and the first stop portion, the clamping gap defining the clamping position.

3. The installation mechanism of the integrated air conditioner according to claim 2, characterized in that, The first movable part is provided with a second fastening hole; The clamping assembly further includes a fastener that engages with either the first fastening hole or the second fastening hole to adjust the positioning of the first movable member.

4. The installation mechanism of the integrated air conditioner according to claim 1, characterized in that, The telescopic component and the stationary component are telescopically coupled. The window frame is connected to the opposite sides of the telescopic component. The integrated air conditioner is mounted on the stationary component. The clamping component is connected to the telescopic component. The fixed rail and the moving rail are movably coupled. The fixed rail has a first mating hole, and the moving rail has a second mating hole. The mounting mechanism also includes a fixing connector. The fixing connector passes through the first mating hole and engages with the second mating hole. The fixing connector abuts against the fixed rail.

5. An installation mechanism for an integrated air conditioner, characterized in that, The integrated air conditioner is installed on a windowsill, the windowsill has a window frame, and the installation mechanism includes: A support assembly on which the integrated air conditioner is placed; A clamping assembly is disposed on the support assembly. The clamping assembly clamps the opposite sides of the window frame for positioning and installation on the window frame. The clamping assembly has multiple clamping positions to adapt to window frames of different thicknesses. The support assembly includes: a telescopic assembly, which includes a stationary component and a telescopic component. The stationary component is a fixed rail, and the telescopic component is a movable rail. The support assembly also includes a positioning assembly, which includes a fixing part and a contact part. The fixing part is fixed to the upper end of the fixed rail, and the contact part is movably disposed on the fixing part. The contact part includes a clamping block and a second cam part. The clamping block contacts the movable rail. The second cam part is eccentrically rotatably disposed on the fixing part and contacts the clamping block. The second cam part rotates to adjust the gap between the clamping block and the movable rail to position the movable rail at a set position. The clamping assembly includes: The second stop portion is provided on the support assembly; The second clamping part includes a plurality of clamping surfaces, and the gaps between the plurality of clamping surfaces and the second stop part are different to define a plurality of clamping positions; At least one of the clamping surfaces is formed as an inclined surface extending in a direction away from the second stop portion; The second clamping part is an elastic element.

6. The installation mechanism of the integrated air conditioner according to claim 5, characterized in that, The telescopic component and the stationary component are telescopically coupled. The window frame is connected to the opposite sides of the telescopic component. The integrated air conditioner is mounted on the stationary component. The clamping component is connected to the telescopic component. The fixed rail and the moving rail are movably coupled. The fixed rail has a first mating hole, and the moving rail has a second mating hole. The mounting mechanism also includes a fixing connector. The fixing connector passes through the first mating hole and engages with the second mating hole. The fixing connector abuts against the fixed rail.

7. An integrated air conditioning unit, characterized in that, include: Integrated air conditioner; The installation mechanism is the same as that described in any one of claims 1-4 or 5-6, wherein the integrated air conditioner is placed on the support assembly.

Citation Information

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