Fixing assembly
By using a mechanically interlocking structure for fixing components, the problems of inability to adjust and damage to the appearance of frame components after installation are solved, achieving non-destructive adjustment and efficient installation, and improving the quality of decoration.
Patent Information
- Application Number
- CN202511330130.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2025-11-18
AI Technical Summary
The existing frame components cannot be adjusted in position after installation and will damage the appearance of the components. Traditional fixing methods affect environmental protection, adjustability and aesthetics.
A fixing component is provided, which achieves non-destructive adjustment between frame components and wall openings through a mechanical interlocking structure of connecting clips and fixing clips. The mechanical snap-fit of the locking structure and positioning part ensures the verticality and aesthetics of the installation.
It enables non-destructive position adjustment of frame components, improves installation efficiency and decorative quality, avoids material waste and appearance damage, and enhances construction efficiency and aesthetics.
Smart Images

Figure CN120968385A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of interior decoration technology, and more specifically to a fixing component. Background Technology
[0002] In the field of interior decoration, with the improvement of people's living standards and the rapid development of the interior decoration industry, interior doors, windows, and their matching decorative moldings have become an indispensable part of interior decoration. Currently, most door and window frames and other frame components commonly used in the market are made of wood or composite materials. When installing them into building wall openings, the current mainstream construction methods have many inherent defects. Traditional processes generally use chemical adhesives such as foaming agents and structural adhesives for filling and bonding, and then use a pneumatic nail gun to drive the frame components through from the front, finally fixing them to the base structure of the door or window opening. This fixing method firstly leads to poor environmental protection; the adhesive releases volatile organic compounds during use and curing, affecting indoor air quality and the health of construction workers. Secondly, its adjustability is extremely poor. Once the adhesive begins to cure, the position of the frame components is basically locked. If verticality, horizontality, or misalignment is found during installation or subsequent inspection, adjustment becomes extremely difficult, often requiring destructive demolition and reconstruction. This not only wastes materials but also seriously reduces construction efficiency. Furthermore, using pneumatic nail guns to fix the frame components from the front will inevitably damage the appearance integrity of the frame components, leaving obvious nail holes on the visible surface. These nail holes need to be repaired and covered manually afterward, making it difficult to achieve a perfect decorative effect and affecting the product's aesthetics and high-end texture.
[0003] To address the core issue of "non-adjustability" mentioned above, some solutions have emerged in existing technologies that attempt to improve the situation. For example, some technical solutions attempt to use purely mechanical connectors, which involve setting elongated holes in the wall or frame and using screws for fastening, in order to achieve positional adjustment within a certain range. However, these solutions are often structurally complex, involve cumbersome adjustment steps, and usually still require drilling holes in the visible parts of the frame components to adjust the installation position, thus failing to completely solve the problem of "non-destructive installation."
[0004] It should be noted that the above description of the technical background is only for the purpose of providing a clear and complete explanation of the technical solutions of the present invention and facilitating understanding by those skilled in the art. It should not be assumed that the above technical solutions are known to those skilled in the art simply because they have been described in the background section of this invention. Summary of the Invention
[0005] In view of the above problems, this disclosure provides a fixing component that solves the problem that existing traditional frame components cannot be adjusted in position after installation and will damage the appearance surface of the components.
[0006] This disclosure provides a fixing component connected between a frame member and a wall opening. The fixing component includes: a connecting clip connected to the wall opening, the connecting clip having a plurality of positioning portions arranged along a first direction extending along the base surface of the wall opening; and a fixing clip connected to an adjacent side of the frame member adjacent to the wall opening, the fixing clip including a locking cavity extending along a second direction and a locking structure having a swing tendency toward the adjacent side, the second direction extending along the surface of the adjacent side. The connecting clip can be inserted into the locking cavity along the second direction, and the locking structure can selectively engage with at least one of the plurality of positioning portions to fix the relative position of the connecting clip and the fixing clip.
[0007] In some exemplary embodiments, the locking structure is formed on the inner wall of the locking cavity away from the adjacent side, and the locking structure protrudes from the inner wall of the locking cavity toward the adjacent side.
[0008] In some exemplary embodiments, the locking structure includes a plurality of locking members that can selectively engage with any of the positioning portions.
[0009] In some exemplary embodiments, the positioning part includes a plurality of positioning holes arranged along a third direction, which is perpendicular to the first direction; the plurality of locking members are arranged along a fourth direction parallel to the third direction, so that the plurality of locking members can be engaged one-to-one with the plurality of positioning holes of any of the positioning parts.
[0010] In some exemplary embodiments, the fixing member further includes a traction member, which extends and protrudes from the inner wall of the locking cavity away from the adjacent side along the second direction, and the traction member is adapted to be driven by an external force to cause the locking structure to swing away from the adjacent side.
[0011] In some exemplary embodiments, the connecting clip includes: a positioning structure on which the plurality of positioning portions are formed; and an installation structure extending from one end of the positioning structure in a direction away from the frame member, wherein the connecting clip can be installed in the wall opening via the installation structure.
[0012] In some exemplary embodiments, a guide portion is formed at the end of the positioning structure away from the mounting structure, the guide portion being used to guide the positioning structure to be inserted into the locking cavity along the second direction.
[0013] In some exemplary embodiments, the fixing component further includes: a substrate connector connected to the adjacent side of the frame member, the substrate connector including a substrate and bendable connecting wings extending from opposite sides of the substrate; and a fixing clip connected to the side of the substrate away from the adjacent side.
[0014] In some exemplary embodiments, the fixing clip has locking grooves formed on its opposite two sides; the substrate has a locking portion protruding on the side away from the adjacent side; when the fixing clip is connected to the substrate, the locking portion is locked in the locking groove to restrict the fixing clip from moving along the second direction.
[0015] In some exemplary embodiments, the connecting wing is provided with a plurality of through holes for fasteners to pass through, for securing the substrate connector to the adjacent side of the frame member. Attached Figure Description
[0016] The foregoing contents, as well as other objects, features, and advantages of this disclosure, will become clearer from the following description of embodiments with reference to the accompanying drawings, in which:
[0017] Figure 1 This schematically illustrates a structural diagram of a fixing assembly installed between a frame member and a wall opening according to an embodiment of the present disclosure;
[0018] Figure 2 A schematic front view of a fixing clip of a fixing component according to an embodiment of the present disclosure is shown;
[0019] Figure 3 A side view of a fixing clip of a fixing component according to an embodiment of the present disclosure is shown schematically;
[0020] Figure 4 A schematic front view of the connecting card of the fixing component according to an embodiment of the present disclosure is shown;
[0021] Figure 5 A side view of the connecting clip of the fixing component according to an embodiment of the present disclosure is shown schematically;
[0022] Figure 6 A top view of a connecting clip of a fixing component according to an embodiment of the present disclosure is shown schematically;
[0023] Figure 7 A schematic front view of a substrate connector of a fixing assembly according to an embodiment of the present disclosure is shown;
[0024] Figure 8 A schematic side view of a substrate connector of a fixing assembly according to an embodiment of the present disclosure is shown. Detailed Implementation
[0025] To enable those skilled in the art to better understand the technical solutions in this disclosure, the technical solutions in the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this disclosure, and not all embodiments. Based on the embodiments in this disclosure, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of this disclosure.
[0026] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit this disclosure. The terms “comprising,” “including,” etc., as used herein indicate the presence of the stated features, steps, operations, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, or components.
[0027] All terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art, unless otherwise defined. It should be noted that the terms used herein are to be interpreted in a manner consistent with the context of this specification, and not in an idealized or overly rigid way.
[0028] When using expressions such as "at least one of A, B, and C," the meaning should generally be interpreted according to the understanding of someone skilled in the art. For example, "a system having at least one of A, B, and C" should include, but is not limited to, systems having A alone, having B alone, having C alone, having A and B, having A and C, having B and C, and / or having A, B, and C. Similarly, when using expressions such as "at least one of A, B, or C," the meaning should generally be interpreted according to the understanding of someone skilled in the art. For example, "a system having at least one of A, B, or C" should include, but is not limited to, systems having A alone, having B alone, having C alone, having A and B, having A and C, having B and C, and / or having A, B, and C.
[0029] A wall opening refers to a through-hole created during the construction of a building wall for the purpose of installing doors, windows, pipes, or reserving passageways. Its structure is not simply a hole; it is typically enclosed by a top slab, a bottom slab, and two side walls. These surfaces are collectively referred to as the base surface of the opening. This surface may be the main structure, such as brick masonry, concrete, or aerated concrete blocks, and may also be covered with a leveling layer, insulation layer, or preliminary plaster layer, providing a basic attachment surface for the final decorative installation.
[0030] The conventional installation relationship between frame components (such as door frames, window frames, and decorative corner protectors) and wall openings is a decorative finishing relationship of covering and enveloping. Specifically, the frame components, through the specific cross-sectional shape of their profiles, cover the inner edge (i.e., the base surface) of the wall opening. Their function is to conceal the installation gap between the base surface of the opening and the door / window fixtures, protect the edges from damage, and enhance the overall aesthetics. In traditional installations, this relationship is fixed by filling and bonding with materials such as expanding foam and cement mortar, or by using fasteners (such as nails and screws) driven into the base surface of the wall through the front of the component. The core is to directly fix the component to the base surface inside the opening.
[0031] As one aspect of the embodiments of this disclosure, such as Figure 1 and Figure 2As shown, a fixing assembly is provided, connecting a frame member 100 and a wall opening 200. The fixing assembly includes: a connecting clip 300 connected to the wall opening 200, the connecting clip 300 having a plurality of positioning portions 310 arranged along a first direction extending along the base surface of the wall opening 200; and a fixing clip 400 connected to the frame member 100 adjacent to the wall opening 200, the fixing clip 400 including a locking cavity 410 extending along a second direction, and a locking structure 420 having a swinging tendency toward the adjacent side, the second direction extending along the surface of the adjacent side. The connecting clip 300 can be inserted into the locking cavity 410 along the second direction, and the locking structure 420 can selectively engage with at least one of the plurality of positioning portions 310 to fix the relative position of the connecting clip 300 and the fixing clip 400. Specifically, in this embodiment, the fixing components constitute a mechanical adjustment system connecting the frame member 100 and the wall opening 200. The connecting clip 300 serves as a fixing reference and is pre-installed in the wall opening 200; the fixing clip 400, as a movable part, is installed on the frame member 100. The locking cavity 410 inside the fixing clip 400 is designed to accommodate and guide the slide rail of the connecting clip 300. The relative position between the fixing clip 400 and the connecting clip 300 is fixed through mechanical interlocking: when the positioning structure 320 of the connecting clip 300 is inserted into the locking cavity 410 of the fixing clip 400, the locking structure 420 inside the fixing clip 400, due to its inherent swinging tendency towards the connecting clip 300, will swing and engage with a certain positioning part 310 on the connecting clip 300, thereby achieving locking. That is, a purely mechanical, reversible, and graded adjustment method replaces the traditional irreversible fixing that relies on foaming agents and nails. Without damaging any visible surfaces of the frame component 100, the distance between the frame component 100 and the wall opening 200 can be finely adjusted via a push-pull operation, ensuring the verticality, horizontality, and aesthetics of the installation. This non-destructive adjustment feature improves installation efficiency and the final decorative quality.
[0032] In some specific embodiments, the first direction is the axis along the length of the connecting clip 300, and multiple positioning parts 310 are linearly arranged along this direction. The first direction is parallel to the base surface of the wall opening 200 in the installed state. The second direction is the direction in which the connecting clip 300 is inserted into the locking cavity 410. The second direction extends along the surface of the adjacent side of the frame member 100.
[0033] like Figure 1 and Figure 2 , Figure 4As shown, in some exemplary embodiments, the locking structure 420 is formed on the inner wall of the locking cavity 410 away from the adjacent side, and the locking structure 420 protrudes from the inner wall of the locking cavity 410 toward the adjacent side. In some embodiments, the locking cavity 410 is a channel space with a specific cross-sectional profile formed inside the fixing member 400, the size of which is adapted to the insertion portion on the connecting member 300. The locking structure 420, as part of the inner wall of the locking cavity 410, is formed on the inner wall of the side away from the adjacent side of the frame member 100. Since the locking structure 420 protrudes from this inner wall toward the interior of the locking cavity 410, i.e., the locking structure 420 protrudes toward the adjacent side, this structural layout makes the locking structure 420 naturally possess prestress or elastic potential energy toward the connecting member 300. The protruding locking structure 420 can be pushed open and undergo elastic deformation, continuously applying a pressure toward the adjacent side. Once the positioning portion 310 (typically a recess or through hole) on the connecting clip 300 moves below the locking structure 420, the releasing locking structure 420 deforms, springs back towards the adjacent side, and engages with the positioning portion 310. By utilizing the elasticity of the material itself to achieve a reliable automatic locking function, the overall structure of the fixing clip 400 is simplified, and the durability and reliability of the component are improved.
[0034] like Figures 1 to 4 As shown, in some exemplary embodiments, the locking structure 420 includes a plurality of locking members 421, which can selectively engage with any of the positioning portions 310. Specifically, in some embodiments, the locking structure 420 is designed to include a plurality of discrete locking members 421, which can provide multiple support points when engaged, thereby forming a more stable connection surface. For example, in one specific embodiment, two locking members 421 can be provided, which protrude synchronously from the inner wall of the locking cavity 410 toward the adjacent side. When the two locking members 421 simultaneously swing and engage with the same positioning portion 310, they will form two spaced-apart locking points within the range of the positioning portion 310. Compared to the single-point contact formed by a single locking element 421, this multi-point contact locking method can more effectively resist the torsion or shaking of the connecting clip 300 in the locking cavity 410, significantly enhancing the stability of the entire fixing assembly when resisting lateral forces, and ensuring that the frame component 100 will not shift its position due to minor vibrations or external forces after installation.
[0035] like Figures 1 to 4As shown, in some exemplary embodiments, the positioning part 310 includes a plurality of positioning holes 311 arranged along a third direction C, which is perpendicular to the first direction; the plurality of locking members 421 are arranged along a fourth direction D parallel to the third direction C, so that the plurality of locking members 421 can be engaged one-to-one with the plurality of positioning holes 311 of any of the positioning parts 310. In some embodiments, the positioning holes 311 are through or non-through holes formed on the connecting clip 300, and their shape and size match the head of the locking member 421 to ensure precise embedded engagement. In a specific embodiment, each positioning part 310 also includes two positioning holes 311 corresponding to the two locking members 421 provided on the fixing clip 400. When engaging, the two locking members 421 on the fixing clip 400 are precisely and one-to-one inserted into the two positioning holes 311 in the same positioning part 310. In some specific embodiments, these positioning holes 311 are arranged along a third direction C. For example, these positioning holes 311 are arranged in a vertical direction perpendicular to the insertion direction of the connecting clip 300, while the multiple locking elements 421 are also arranged in a parallel fourth direction D. This array-like corresponding layout not only restricts the movement of the connecting clip 300 in the first and second directions, but also greatly enhances the limiting capability in the third direction C by utilizing the tight fit between the locking elements 421 and the sidewalls of the positioning holes 311. This structure ensures that the connecting clip 300 will not move vertically within the locking cavity 410, thereby achieving high-precision and stable locking in three-dimensional space.
[0036] like Figure 1 and Figure 2As shown, in some exemplary embodiments, the fixed clamping member 400 further includes: a traction member 430, which is formed by protruding and extending along the second direction from the inner wall of the locking cavity 410 away from the adjacent side. The traction member 430 is adapted to be driven by an external force to swing the locking structure 420 away from the adjacent side. Specifically, in some embodiments, the traction member 430 and the locking structure 420 are of an integral structure and are formed together on the inner wall of the locking cavity 410. The extending direction of the traction member 430 is the same as the insertion direction (the second direction) of the connecting clamping member 300, and an operable end is formed. When adjustment or disassembly is required, the traction member 430 can be pushed or pried in the direction away from the adjacent side. The traction member 430 will then drive the entire locking structure 420 to elastically swing away from the adjacent side, causing the locking member 421 on the locking structure 420 to disengage from the positioning portion 310, thereby解除 the locking state. In the state of continuously applying force to the traction member 430, the connecting clamping member 300 can slide freely within the locking cavity 410, achieving the convenience of installation adjustment. In a specific embodiment, the entire fixed clamping member 400 can form a "C" - shaped cross - section, whose internal space constitutes the locking cavity 410, and the traction member 430 and the locking structure 420 can be integrally formed by partially cutting and bending the cross - beam in the middle of the "C" shape.
[0037] As Figure 1 , Figures 4 to 6 As shown, in some exemplary embodiments, the connecting clamping member 300 includes: a positioning structure 320, on which the plurality of positioning portions 310 are formed; a mounting structure 330, which extends from one end of the positioning structure 320 in the direction away from the frame member 100. The connecting clamping member 300 can be installed in the wall opening 200 through the mounting structure 330. In some embodiments, the connecting clamping member 300 is an overall L - shaped plate - like structure. Among them, the short side of the L - shape constitutes the mounting structure 330, which can be flatly fitted to the wall opening 200 during installation and is firmly anchored to the wall by the mounting holes thereon with fasteners. The long side of the L - shape constitutes the positioning structure 320. After the mounting structure 330 is fixed, the positioning structure 320 will vertically protrude from the surface of the wall opening 200, and its orientation is opposite to the adjacent side of the frame member 100. The positioning structure 320 and the mounting structure 330 ensure that the positioning structure 320 as an adjustment guide rail can be accurately and firmly deployed in the installation space, providing a benchmark for the subsequent insertion and adjustment of the fixed clamping member 400.
[0038] As Figure 1 , Figures 4 to 5As shown, in some exemplary embodiments, a guide portion 340 is formed at the end of the positioning structure 320 away from the mounting structure 330. The guide portion 340 is used to guide the positioning structure 320 into the locking cavity 410 along the second direction. In some embodiments, the guide portion 340 is formed by trimming the shape of the free end of the positioning structure 320, which is a plate-like member. For example, the two apex corners of the end of the plate-like member can be cut to form a chamfer or rounded corner with a certain slope, so that the end of the member presents a narrow, "sharp" profile. This "sharp" profile can play an effective guiding role during the insertion of the connecting clip 300 into the locking cavity 410. Even if there is an initial alignment deviation, the guide portion 340 can smoothly slide into the opening of the locking cavity 410 and automatically correct the trajectory of the subsequent entry part, thereby avoiding jamming during installation and improving the assembly efficiency on site.
[0039] like Figure 1 , Figures 7 to 8 As shown, in some exemplary embodiments, the fixing assembly further includes: a substrate 510 connector 500, which is connected to the adjacent side of the frame member 100. The substrate 510 connector 500 includes a substrate 510 and bendable connecting wings 520 extending from opposite sides of the substrate 510; the fixing clip 400 is connected to the side of the substrate 510 away from the adjacent side. Specifically, in some embodiments, the substrate 510 connector 500 is a transition base serving as a junction between the fixing clip 400 and the frame member 100. Its central flat portion constitutes the substrate 510, providing a solid and flat mounting surface for the fixing clip 400. The connecting wings 520, integrally extending from opposite sides of the base plate 510, are designed to have good flexibility, allowing construction workers to easily bend them in the same direction to the required angle on-site, based on the specific thickness of the frame member 100, using simple tools to form a U-shaped or L-shaped clamping structure that can tightly cover the adjacent sides of the frame member 100. This bendable design gives the fixing component excellent on-site adaptability and versatility.
[0040] like Figure 1 , Figure 2 , Figures 7 to 8As shown, in some exemplary embodiments, the fixing clip 400 has locking grooves 440 formed on its opposite sides; the substrate 510 has a locking portion 511 protruding on its side away from the adjacent side; when the fixing clip 400 is connected to the substrate 510, the locking portion 511 is engaged in the locking groove 440 to restrict the fixing clip 400 from moving in the second direction. In some embodiments, the surface of the substrate 510 has two spaced-apart, outwardly protruding locking portions 511. Correspondingly, the two sides of the fixing clip 400 form recesses whose shapes perfectly match the locking portions 511, thereby forming the locking groove 440. When the fixing clip 400 is installed on the substrate 510 connector 500, it is only necessary to align the locking groove 440 of the fixing clip 400 with the locking portion 511 on the substrate 510 and press it down to achieve quick locking and fixing. The tight fit between the locking part 511 and the locking slot 440 can accurately position and fix the locking part 400 and effectively limit its sliding in the second direction, ensuring the stability of the component pre-assembly.
[0041] like Figure 1 , Figure 7 As shown, in some exemplary embodiments, the connecting wing 520 is provided with a plurality of through holes 521 for fasteners to pass through, for fixing the substrate 510 connector 500 to the adjacent side of the frame member 100. In some embodiments, the through holes 521 on the connecting wing 520 are the execution structure for finally fixing the substrate 510 connector 500 to the frame member 100. The key to its design is to provide sufficient and flexible selection of fixing points. In some specific embodiments, the connecting wing 520 is processed with multiple rows and multiple through holes 521. This array-style opening design aims to provide installers with the greatest freedom of choice in fixing points. When fixing the substrate 510 connector 500 to the frame member 100, installers can flexibly select the most suitable hole positions from the numerous through holes 521 to screw in the fasteners according to the material of the frame member 100, such as avoiding knots or hard points and width, thereby ensuring that each fixing point is evenly stressed and reliably connected, effectively improving the universality of the entire fixing assembly for different types of frame members 100 and the connection strength.
[0042] Those skilled in the art will understand that the features described in the various embodiments of this disclosure can be combined and / or combined in various ways, even if such combinations or combinations are not explicitly described in this disclosure. In particular, the features described in the various embodiments of this disclosure can be combined and / or combined in various ways without departing from the spirit and teachings of this disclosure. All such combinations and / or combinations fall within the scope of this disclosure.
[0043] The embodiments of this disclosure have been described above. However, these embodiments are for illustrative purposes only and are not intended to limit the scope of this disclosure. Although various embodiments have been described above, this does not mean that the measures in the various embodiments cannot be used advantageously in combination. Various substitutions and modifications can be made by those skilled in the art without departing from the scope of this disclosure, and all such substitutions and modifications should fall within the scope of this disclosure.
Claims
1. A fixing component, connected between a frame member and a wall opening, characterized in that, The fixing component includes: A connecting clip is attached to the wall opening. The connecting clip has a plurality of positioning portions arranged along a first direction, which extends along the base surface of the wall opening. A fixing clip is connected to the adjacent side of the frame member adjacent to the wall opening. The fixing clip includes a locking cavity extending through in a second direction and a locking structure having a swing tendency toward the adjacent side. The second direction extends along the surface of the adjacent side. The connecting clip can be inserted into the locking cavity in the second direction, and the locking structure can selectively swing and engage with at least one of the plurality of positioning parts to fix the relative position of the connecting clip and the fixing clip.
2. The fixing component according to claim 1, characterized in that, The locking structure is formed on the inner wall of the locking cavity away from the adjacent side, and the locking structure protrudes from the inner wall of the locking cavity toward the adjacent side.
3. The fixing component according to claim 2, characterized in that, The locking structure includes multiple locking members, which can selectively engage with any of the positioning parts in a swinging motion.
4. The fixing component according to claim 3, characterized in that, The positioning part includes a plurality of positioning holes arranged along a third direction, which is perpendicular to the first direction; the plurality of locking members are arranged along a fourth direction parallel to the third direction, so that the plurality of locking members can be engaged one-to-one with the plurality of positioning holes of any of the positioning parts.
5. The fixing component according to claim 3, characterized in that, The fixing device also includes: A traction member is provided, which extends and protrudes from the inner wall of the locking cavity away from the adjacent side along the second direction. The traction member is adapted to be driven by an external force to cause the locking structure to swing away from the adjacent side.
6. The fixing component according to claim 3, characterized in that, The connecting card includes: A positioning structure, wherein the plurality of positioning parts are formed on the positioning structure; The mounting structure extends from one end of the positioning structure away from the frame member, and the connecting clip can be installed in the wall opening through the mounting structure.
7. The fixing component according to claim 3, characterized in that, The positioning structure has a guide portion at the end away from the mounting structure, and the guide portion is used to guide the positioning structure to be inserted into the locking cavity along the second direction.
8. The fixing component according to claim 3, characterized in that, The fixing component also includes: A substrate connector is connected to the adjacent side of the frame member. The substrate connector includes a substrate and bendable connecting wings extending from opposite sides of the substrate. The fixing clip is connected to the side of the substrate away from the adjacent side.
9. The fixing component according to claim 8, characterized in that, The two opposite sides of the fixing member are respectively formed with locking grooves; The substrate has a protruding locking portion on the side away from the adjacent side; When the fixing member is connected to the substrate, the locking part is locked in the locking groove to restrict the fixing member from moving along the second direction.
10. The fixing component according to claim 8, characterized in that, The connecting wing has multiple through holes for fasteners to pass through, so as to fix the base plate connector to the adjacent side of the frame member.