Embedded mirror

By combining the structure of hangers, support members, and elastic limiting members, the problems of installation efficiency, aesthetics, and stability of the lens body in the vertical mounting slot are solved, achieving rapid installation and stable fixation, and improving the reliability and appearance continuity of the lens body.

CN120959546AInactive Publication Date: 2025-11-18WENZHOU OUDI MIRROR CO LTD
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Patent Information

Application Number
CN202511169008.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2025-11-18
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing mirror body is difficult to balance installation efficiency, aesthetics and stability in vertical mounting slots. Adhesive connections are prone to aging and delamination, drilling fasteners damage the appearance, and magnetic positioning is unstable.

Method used

It adopts a combination structure of hanging parts, supporting parts and elastic limiting parts. Through the mechanical cooperation between the lower flip plate and the horizontal bearing plate, the mirror body can be quickly installed and stably fixed in the vertical mounting groove. The aesthetics are improved by using a defogging device and a lamp post.

Benefits of technology

It enables quick installation and aesthetically pleasing lens fixation, ensuring stability and visual continuity after installation, avoiding defects such as adhesive aging and exposed fasteners, and improving installation efficiency and reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of decorative glasses, in particular to an embedded mirror which comprises a vertically-arranged mirror frame, a mirror body arranged on the front side of the mirror frame and a hanging assembly used for vertically installing the embedded mirror in a vertically-arranged embedding groove, the hanging assembly comprises a hanging piece, a supporting piece and an elastic limiting piece, the hanging piece comprises a hanging plate, and the hanging plate is arranged on the supporting piece. The hanging end of the hanging plate is turned downwards and extends into the embedding groove to form a lower turning plate; the supporting piece comprises a horizontal bearing plate which overhangs from the back wall to the notch, and a receding hole is formed in the horizontal bearing plate; the free end of the elastic limiting piece extends out of the receding hole to the position above the horizontal bearing plate, a guide inclined face facing the back wall of the embedding groove and a stop edge opposite to the guide inclined face are formed, through the arrangement, the assembly procedure of the mirror body is shortened, the installation efficiency is improved, meanwhile, the front face appearance is kept complete, and the assembly efficiency is improved. And in addition, the use stability after installation is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of decorative mirror, in particular to an embedded mirror. BACKGROUND

[0002] In the field of building and home decoration, in order to obtain the visual effect of integration with the wall surface and facilitate cleaning, the mirror is often installed in the vertical embedded slot which is consistent with the normal line of the wall surface and only opens in the front. The embedded slot is generally surrounded by four walls or three walls of the upper wall and the left and right walls, and opens forward, so that the mirror body can be pushed into the vertical position from the front and form an integrated visual effect with the wall surface. In such a limited installation position, assembly and subsequent maintenance need to be completed from the front. The common method is to use adhesion (such as structural glue, double-sided tape) on the mirror frame or wall, to punch holes on the visible surface for fastening, or to lay magnetic elements between the mirror body and the wall to achieve separate fixing. These methods have exposed several pain points in the above-mentioned limited installation position: first, the adhesion connection is prone to creep, aging or debonding when bearing the weight and thermal-humidity cycle in the vertical direction, and the base surface and the mirror body are easily damaged during disassembly for later maintenance; second, the front surface punching or exposed fasteners will damage the continuity of the front surface appearance, and the installation precision and construction tools are required; third, the magnetic attraction method bears the load mainly in shear in the vertical embedded slot, and the positioning and anti-sliding ability are limited, making it difficult to guarantee the position repeatability and stability after assembly.

[0003] In summary, there is an urgent need for a quick installation scheme suitable for vertical embedded slots, which takes into account installation efficiency, aesthetics and use stability. SUMMARY

[0004] (I) The technical problem to be solved by the present application is that the existing mirror body installation cannot simultaneously consider installation efficiency, aesthetics and use stability under the installation conditions of the vertical embedded slot.

[0005] (II) Technical solution In order to solve the above technical problems, the present application provides an embedded mirror, which comprises a vertically erected mirror frame and a mirror body arranged on the front side of the mirror frame, and further comprises a hanging assembly for installing the embedded mirror in a vertically arranged embedded slot, the hanging assembly comprising: a hanging piece arranged on the back side of the mirror body and fixed to the mirror frame, the hanging piece comprising a hanging plate, the hanging plate being downwardly extended into the embedded slot to form a downward plate; a supporting piece corresponding to the hanging piece and fixedly connected to the back wall of the embedded slot, the supporting piece comprising a horizontal bearing plate which is suspended from the back wall towards the slot opening direction, and the horizontal bearing plate is provided with a clearance hole; The elastic limiting piece is arranged below the horizontal bearing plate, and a free end of the elastic limiting piece extends above the horizontal bearing plate through the accommodation hole to form a guide slope toward the back wall of the embedded groove and a stop edge opposite to the guide slope; When the mirror frame is pushed into the embedded groove, the lower turning plate slides on the horizontal bearing plate and presses the guide slope, so that the elastic limiting piece temporarily avoids the accommodation hole; after the rear edge of the lower turning plate passes the elastic limiting piece, the elastic limiting piece rebounds to make the stop edge clamped and limited with the stop surface of the lower turning plate.

[0006] According to one embodiment of the present application, the embedded mirror further comprises a defogging device arranged on the back side of the mirror body and located in the mirror frame.

[0007] The device is arranged on the back of the mirror without occupying the front space, can be maintained through the quick release unlocking path of the mirror body, ensures the defogging effect of the mirror surface, and does not damage the appearance continuity.

[0008] According to one embodiment of the present application, the embedded mirror further comprises a decorative plate and a lamp post arranged on the front side of the mirror frame; the decorative plate and the mirror body are arranged side by side in the mirror frame, and the front surface of the decorative plate is flush with the front surface of the mirror body; the lamp post is fixed to the front surface of the decorative plate and extends vertically.

[0009] The arrangement of the decorative plate and the mirror body side by side and the front surface flush makes the overall front form a continuous and flat visual interface; the vertically extending lamp post is arranged in front of the decorative plate, can provide uniform supplementary light facing the user without occupying the visible area of the mirror surface, and forms a vertical light band together with the decorative plate, further strengthens the integrated decoration effect of the embedded mirror in the vertical embedded groove.

[0010] According to one embodiment of the present application, the supporting piece further comprises a jacking block and a driving piece; The horizontal bearing plate is provided with a jacking opening penetrating vertically, the jacking block is guided and constrained by the jacking opening, and moves vertically reciprocatingly relative to the horizontal bearing plate through the driving of the driving piece; The upper surface of the jacking block forms a jacking surface abutting against the lower surface of the lower turning plate, when the jacking block is driven to move upward, the lower turning plate is lifted by the jacking surface, and the mirror frame moves upward relative to the embedded groove in the vertical direction to compensate the assembly gap between the upper edge of the mirror frame and the top surrounding wall of the embedded groove.

[0011] The lifting block and its driving member are arranged in the supporting member, and the lifting opening matched with the lifting block is formed on the horizontal bearing plate, so that the lifting block forms a top support effect with the lower edge of the downward plate under the vertical guidance constraint of the opening; when the mirror body is completed, the lifting block is driven to move upward in the vertical direction, and the downward plate is lifted together with the mirror frame as a whole by the top support surface, so that the mounting gap between the upper edge of the mirror frame and the upper surrounding wall of the embedded groove is compensated, so that the transition of the mirror body and the upper edge of the embedded groove is more compact and regular without increasing any exposed member and without interrupting the existing hanging relationship, and the front view is continuous; at the same time, the lifting compensation is carried out on the basis of vertical guidance, which can form controllable absorption for groove depth error, wall surface flatness deviation and mirror frame manufacturing and installation tolerance, reduce manual leveling and repeated positioning, ensure that the upper edge line is consistent when installing in rows and reduce the risk of light transmission and dust entering at the boundary.

[0012] According to one embodiment of the application, the supporting member further comprises a fixing plate for abutting and fixedly connecting with the back wall of the embedded groove, and the horizontal bearing plate is fixedly connected to the fixing plate; The driving member comprises a push rod arranged in the vertical direction and a support plate threadedly matched with the push rod, and the support plate is fixedly connected to the fixing plate and located at a predetermined position below the horizontal bearing plate; The push rod passes through the threaded hole of the support plate and is lifted in the vertical direction when rotating relative to the support plate, and the upper end is abutted or rotationally connected with the lower part of the lifting block to support and push the lifting block, and the lower end of the push rod extends to the bottom of the mirror frame.

[0013] The embedded groove bottom is not provided with a surrounding edge; the lower end of the push rod extends to the inside bottom of the mirror frame and is provided with an operation part, and the bottom of the mirror frame is provided with a closable operation opening corresponding to the operation part.

[0014] To adapt to the vertical embedded environment with only front opening, the holder is formed with a bearing and transmission reference composed of a fixed plate, a horizontal bearing plate and a support plate on the back wall side of the embedded slot: the horizontal bearing plate is fixedly connected to the fixed plate to bear the hanging load, and the support plate is fixed to the fixed plate and serves as a threaded seat, the push rod passes through the threaded hole of the support plate and is constrained to vertically lift when rotating relative to the support plate, and the upper end of the push rod is abutted (or rotationally connected) with the lifting block through the lifting opening to directly act the adjustment amount to the bearing interface of the lower turning plate. Since the embedded slot is not provided with a surrounding edge at the bottom, the push rod can extend to the inside bottom of the frame and form an operation part, and the operation part is located in the closable operation opening at the bottom of the frame; accordingly, after the installation is completed, a small rotation can be input from the hidden position at the bottom to realize linear and repeatable compensation of the upper edge gap, without touching the visible surface or disassembling the mirror body, and the appearance is continuous after the operation opening is closed. At the same time, the adjustment reaction force is transmitted in a closed loop through the push rod, the support plate, the fixed plate and the back wall, so that additional load is not applied to the left and right surrounding edges, and the posture is stable during adjustment; the support plate is fixed and the push rod only moves vertically, so that the stroke is one-to-one corresponding to the pitch, and the alignment and later position calibration are facilitated when the columns are installed.

[0015] Further, the driving member comprises a limiting structure, and the upward driving stroke of the lifting block by the driving member is limited by the limiting structure, so that at any upward position, the elastic limiting member still keeps clamping with the stop surface of the lower turning plate, and the rear edge of the lower turning plate is located on the limiting side of the stop edge.

[0016] The limiting structure arranged in the driving member gives a geometric boundary to the upward stroke of the lifting block, so that the lifting adjustment is always carried out in the state domain where the clamping has been established: no matter where the adjustment is, the elastic limiting member keeps clamping with the stop surface of the lower turning plate, and the rear edge of the lower turning plate is always located on the limiting side of the stop edge. Therefore, the lifting compensation and the hanging locking are geometrically decoupled, and even if the mechanical stop is continuously twisted during construction or maintenance, the clamping will not be damaged due to excessive lifting; at the same time, the absorption of manufacturing and installation tolerances during the adjustment process is limited in a safe range, so that the misdisengagement and pose drift caused by temperature changes, vibrations or misoperation are avoided, and the appearance gap compensation and hanging reliability are ensured.

[0017] According to one embodiment of the present application, a flexible traction member is connected between the lifting block and the free end of the elastic limiting member; The flexible traction member has a preset slack amount, so that when the lifting block is at a high position and the upper surface thereof is higher than the bearing support surface of the horizontal bearing plate, the flexible traction member is in a slack state and does not apply a pulling force to the elastic limiting member to make it retreat, and the elastic limiting member still keeps clamping with the stop surface of the lower turning plate; When the lifting block continues to move downward from the high position to the unlocking position, the flexible traction member is pulled tight and pulls the free end of the elastic limiting member back to fall, so that it is withdrawn below the load bearing surface through the accommodation hole, thereby releasing the clamping of the downward turning plate.

[0018] When the lifting block is in the high position and its upper surface is higher than the load bearing surface of the horizontal load plate, the traction member is in a relaxed state and does not apply a pulling force to the elastic limiting member, neither changing the established clamping relationship between the downward turning plate and the elastic limiting member nor interfering with the lifting and joint adjustment described above; as the lifting block continues to move downward from the high position and reaches the unlocking position, the flexible traction member is pulled tight, and its pulling force is transmitted to the free end of the elastic limiting member through the flexible connection, driving it to fall back and withdraw below the load bearing surface through the accommodation hole, thereby releasing the clamping. Thus, the stroke of the lifting block is divided into two stages: the "upward / high position-non-interference zone" and the "downward-traction unlocking zone"; the former ensures that the unlocking is never mistaken when compensating for the upper gap, and the latter triggers the unlocking action during the controlled downward movement, and the unlocking path is completely located in the embedded groove and is achieved by bottom operation, which facilitates the removal and maintenance of the mirror body without damaging the front appearance. The use of flexible medium also forms a stroke adaptation to manufacturing and assembly tolerances, avoiding the clamping and local overload caused by poor positioning of rigid transmission.

[0019] According to an embodiment of the present application, the embedded mirror further comprises an elastic leveling member, which comprises four leveling units arranged at the four corners of the inner side of the mirror body; each of the leveling units has an abutting end facing the back wall of the embedded groove, which protrudes outward from the outer circumferential side of the frame in an uncompressed state and elastically abuts against the back wall of the embedded groove after the embedded mirror is assembled, so as to compensate for the flatness of the mirror surface and the embedded groove and limit the forward and backward shaking of the mirror body in the groove.

[0020] After the mirror body is pushed into place from the front, the four abutting ends are controlled to be compressed and output a pre-tightening reaction force to the back wall in a direction consistent with the normal line of the mirror surface; on the one hand, this reaction force cooperates with the bearing and clamping established by the downward turning plate-horizontal load plate on the front side to form a force closed loop of front support-back pre-tightening in the thickness direction of the mirror body, thereby inhibiting the forward and backward swinging and slight pose drift caused by the gap; on the other hand, the four-corner distributed elastic support provides in-plane constraint and anti-torsion support for the plane attitude of the mirror surface, so that the mirror surface forms a stable geometric reference relative to the embedded groove.

[0021] According to an embodiment of the present application, the downward turning plate is arranged obliquely relative to the load bearing surface of the horizontal load plate; The free end of the elastic limiting member is arranged obliquely upward relative to the load bearing surface, and is provided with a limiting portion to limit the upper limit of the upward folding angle thereof; Thus, during the mirror body is pushed forward, the lower plate slides along the bearing surface, the contact slope formed by the free end of the elastic limiting piece and the lower plate limit surface, the pushing force is decomposed into a downward component force along the through direction of the accommodation hole and a guiding component force along the insertion direction, so that the elastic limiting piece is controlled to avoid through the accommodation hole and returns to the original position after passing through.

[0022] When the hanging part is in the clamping position, the included angle between the lower plate limit surface and the free end of the elastic limiting piece is an acute angle. This geometric relationship guarantees the height of the elastic limiting piece after returning to the original position, so that the free end can reach and remain in effective abutment with the lower plate limit surface. On the other hand, under the action of the reverse external force, the normal force distribution is favorable, so that the contact area tends to be wedged rather than slipping away along the contact surface. In combination with the constraint of the limiting part on the elastic limiting piece, the clamping relationship between the stop surface and the stop edge is further consolidated.

[0023] (Three) The beneficial effects of the present application are as follows: the lower plate of the hanging part and the horizontal bearing plate of the supporting part fixed to the back wall of the embedded slot constitute a forward guiding supporting path, the accommodation hole is arranged on the bearing plate, and the elastic limiting piece with a guiding slope and a stop edge is arranged on the hanging part side. In the single assembly process of pushing the mirror body from the front, the mechanical cooperation of guiding and avoiding, bearing and positioning, and stopping and clamping is sequentially completed, replacing the connection mode relying on adhesion or punching on the front surface: first, the supporting and clamping relationship can be established by pushing to the position, shortening the assembly process and improving the installation efficiency; second, the clamping cooperation occurs at the back side of the mirror body and in the slot, without the need to arrange fasteners on the visible surface, maintaining the integrity of the front appearance and considering the aesthetic appearance; third, the weight of the mirror body is transmitted through the lower plate-horizontal bearing plate, and the reverse external pulling is constrained by the stop cooperation of the stop surface and the stop edge, forming a clear bearing and anti-extraction path, and improving the stability of the installation. BRIEF DESCRIPTION OF DRAWINGS

[0024] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in the specific embodiments or prior art description. Obviously, the drawings described below are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0025] Figure 1 The embedded mirror three-dimensional structure schematic diagram provided for an embodiment of the present application; Figure 2 The embedded mirror back side three-dimensional structure schematic diagram provided for an embodiment of the present application; Figure 3 The hanging assembly three-dimensional structure schematic diagram provided for an embodiment of the present application; Figure 4 The hanging assembly structure schematic view provided by one embodiment of the present application; Figure 5 The embedded mirror back side three-dimensional structure schematic view provided by one embodiment of the present application; Figure 6 The embedded mirror bottom structure schematic view provided by one embodiment of the present application; Figure 7 The partial three-dimensional structure schematic view of the hanging assembly provided by one embodiment of the present application; Figure 8 The three-dimensional structure schematic view of the elastic limiting piece and the horizontal bearing plate assembly relationship provided by one embodiment of the present application; Figure 9 The partial structure schematic view of the hanging assembly after the embedded mirror installation push-in embedded slot provided by one embodiment of the present application; Figure 10 The partial structure schematic view of the hanging assembly when the embedded mirror installation is completed provided by one embodiment of the present application; Figure 11 The partial structure schematic view of the hanging assembly when the embedded mirror needs to be disassembled provided by one embodiment of the present application.

[0026] Icon: 1, mirror frame; 11, closable operation port; 2, mirror body; 3, hanging assembly; 31, hanging piece; 311, downward plate; 32, supporting piece; 321, horizontal bearing plate; 3211, accommodation hole; 3212, jacking opening; 322, jacking block; 3231, pushing rod; 3232, support plate; 3233, operation part; 324, fixed plate; 3241, guide slide rail; 325, flexible traction piece; 33, elastic limiting piece; 4, defogging device; 5, decorative plate; 6, lamp post; 7, elastic leveling piece. DETAILED DESCRIPTION

[0027] In order to more clearly understand the above-mentioned purposes, features and advantages of the present application, the present application will be further described in detail below in combination with the drawings and specific embodiments. In the case of no conflict, the embodiments of the present application and the features in the embodiments can be combined with each other. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0028] Embodiment 1: As Figures 1 to 4As shown, the recessed mirror in this embodiment is rectangular in shape and suitable for vertical recessed installation environments. This recessed area can be a pre-dug groove in the wall with surrounding edges, or a pre-reserved slot inside a decorative cabinet or home furnishing. This embodiment uses a wall-dug groove as an example. The recessed mirror consists of a vertically erected rectangular frame 1 and a mirror body 2 mounted on the front of the frame 1. The frame 1 is preferably made of high-precision extruded aluminum alloy profile, with an anodized or powder-coated surface to ensure its color and gloss match the surrounding wall or cabinet finish. Hidden corner brackets are used for locking at the four corners, improving the overall flexural rigidity after vertical installation. The mirror body 2 is made of low-iron ultra-clear glass, with a conductive transparent film covering the entire back. Related flexible cables are laid along the embedded cable groove on the side wall of the frame 1 and led down to a cavity inside the frame 1. A transformer and energy storage power supply are integrated within the cavity, forming a unified power supply platform for the defogging device 4 and the lamp post 6. The defogging device 4 is a sheet-like electrothermal film, attached to the center area of ​​the back of the mirror body 2. It connects to the power supply of the bottom beam via quick-connect terminals, achieving rapid and uniform defogging of the mirror surface without occupying the visible space on the front. A decorative panel 5 is arranged side-by-side with the mirror body 2 on the front side of the mirror frame 1. The decorative panel 5 can be made of aluminum honeycomb composite board or fiberglass reinforced board with the same finish as the wall. Its rear edge has a dovetail structure that inserts into the guide groove of the mirror frame 1 and is fixed by a magnetic positioning block, ensuring that the front surface of the decorative panel 5 is flush with the front surface of the mirror body 2 after assembly, with no step difference in transition. The lamp post 6 is an integrated linear light source component. The housing is made of light-diffusing PC material and has a back latch, allowing for quick installation along the pre-fabricated vertical slots on the decorative panel 5. Its power supply terminals interlock with the flexible circuit board on the back of the decorative panel 5, forming a soft vertical light strip on the front surface of the decorative panel 5 when lit, without occupying the visible area of ​​the mirror surface, while enhancing the overall decorative level of the wall. After the frame 1 is pushed into the mounting groove with a surrounding edge, it is positioned and fixed with the help of the subsequent hanging component 3. A uniform installation gap is formed between the frame 1 and the surrounding edge. When viewed from the front, only two flush surfaces are presented: the mirror surface and the decorative surface, which are consistent with the color scheme of the wall or cabinet. The overall look is simple and coherent.

[0029] The mounting assembly 3 is used to vertically install the mirror into a vertically arranged mounting slot. The mounting assembly 3 has two sets, arranged horizontally at intervals to improve stability. Each set includes a hanger 31, a support 32, and an elastic limiting member 33. like Figure 3 and Figure 4As shown, the hanging plate of the hanging piece 31 is punched from a whole metal plate and once bent, and the outer edge of the lower turning plate 311 is chamfered to avoid scratching the bearing surface during pushing. The supporting piece 32 is bent from a thick plate into an integrated L-shaped framework, the outer side countersunk hole of the fixed plate 324 is locked with the back wall of the embedded slot through an expansion bolt; the horizontal bearing plate 321 is fully welded with the fixed plate 324 at the bent root, and then is milled as a whole to make the bearing surface and the horizontal edge of the mirror frame 1 keep the same reference. The let-hole 3211 is arranged in the middle of the horizontal bearing plate 321, the hole edge is chamfered to form a transition slope, which is beneficial to the smooth sliding of the elastic limiting piece 33 during the pressing stage. The elastic limiting piece 33 is a thin spring steel spring piece, the root is fixed on the lower surface of the horizontal bearing plate 321 through two countersunk screws, the free end is cut into a guide slope and a stop edge, and the limiting part is formed by folding downward at the end; when the free end of the spring piece is turned up to a preset angle, the limiting part and the rear edge of the let-hole 3211 abut against each other, limiting the spring piece from being further folded, so as to ensure that the height of the free end after rebounding is stable and does not exceed the line. The inclination angle of the lower turning plate 311 is slightly smaller than that of the guide slope of the elastic limiting piece 33, and the two continuously press during the pushing process without jamming; when the rear edge of the lower turning plate 311 crosses the let-hole 3211, the spring piece immediately rebounds and forms an acute angle engagement with the limiting surface of the lower turning plate 311, and when the reverse is pulled outwards, the tangential force is converted into a normal pressing force due to the geometric relationship, further strengthening the self-locking. The constraint of the limiting part on the folding angle makes the spring piece maintain a constant engagement depth under the conditions of temperature and humidity changes and vibration impact, and does not appear to gnaw or decouple after long-term use. The two groups of hanging components 3 are placed left and right, and the distance is arranged according to the width of the mirror frame 1 and the bearing requirement, which can uniformly transmit the weight of the mirror body 2 and the operating load to the back wall, and at the same time, a convenient margin is left for on-site horizontal adjustment, to ensure that the mirror surface and the front surface of the decorative plate 5 keep coplanar consistency after installation is completed.

[0030] During assembly, the sealing primer is coated on the surrounding surface of the groove dug in the wall, and the power cable is pre-buried, the fixed plate 324 is locked with the back wall of the embedded slot through the expansion bolt, and the bearing surface of the horizontal bearing plate 321 is parallel to the upper and lower edges of the slot; at the same time, the power supply female plug of the defogging device 4 and the lamp post 6 is led out from below the embedded slot, and the male plug in the bottom beam of the mirror frame 1 is kept in alignment. Subsequently, holding the mirror frame 1 on both sides, the mirror frame 1 is vertically aligned with the mirror body 2, the decorative plate 5 and the lamp post 6 as a whole in the slot, and the two groups of lower turning plates 311 are first contacted with the upper surface of the corresponding horizontal bearing plate 321 and are guided in along it; during the continuous pushing process, the lower turning plate 311 presses the guide slope of the elastic limiting piece 33, and the spring piece is folded downward to avoid the let-hole 3211. When the front surface of the mirror frame 1 is basically flush with the surrounding edge, the rear edge of the lower turning plate 311 crosses the upper edge of the let-hole 3211, the elastic limiting piece 33 instantaneously rebounds and forms a lock with the limiting surface of the lower turning plate 311; at this time, the weight of the mirror body 2 is evenly transmitted to the back wall through the left and right groups of supporting pieces 32, and the installation of the embedded mirror is completed.

[0031] Example 2: As Figures 5 to 11 shown, the embedded mirror in this embodiment is basically the same as the technical solution of the embedded mirror in Embodiment 1, and the core improvement is the optimization of the holding piece 32. This embodiment is applied in the vertical embedded slot reserved in the decorative cabinet, and the difference from Embodiment 1 is that the bottom of the embedded slot is not blocked by a surrounding edge.

[0032] The holding piece 32 of this embodiment also includes a jacking block 322 and a driving piece; As Figures 7 to 11 shown, the holding piece 32 is based on the L-shaped skeleton formed by the integral bending of the fixed plate 324 and the horizontal bearing plate 321, and a guide rail 3241 that slides with the jacking block 322 is additionally added. The guide rail provides front and rear limiting ribs for the jacking block 322, so that the top supporting surface maintains a horizontal posture throughout the stroke and avoids skewing and friction. A vertical through jacking opening 3212 is formed in the center of the horizontal bearing plate 321, and the jacking block 322 is vertically guided through the opening and driven by the driving piece to reciprocate. When the jacking block 322 moves upward, its top supporting surface rigidly abuts against the lower surface of the downward turning plate 311, and the mirror frame 1 together with the mirror body 2 is lifted as a whole, thereby eliminating the installation gap between the upper edge and the top wall of the slot, and obtaining smooth transition without the need for any exposed decorative strips.

[0033] The driving piece adopts a lead screw structure of a support plate 3232 and a push rod 3231. The support plate 3232 is welded to the lower part of the fixed plate 324 and is coplanar with the top L-shaped skeleton, and the push rod 3231 extends downward into the bottom cavity of the mirror frame 1 after passing through the threaded hole of the support plate 3232; As Figure 6 shown, the bottom end is processed to operate the part 3233 and is coaxial with the closable operation port 11 arranged at the corresponding position of the bottom beam of the mirror frame 1. After the cabinet door is opened, the operator can insert a hexagonal wrench or a special rotating handle through the operation port to complete the adjustment. When rotating in the clockwise direction, the push rod 3231 moves upward relative to the support plate 3232 along the thread and pushes the jacking block 322, and when rotating in the reverse direction, it drives the jacking block 322 to move downward.

[0034] A spherical washer is used between the push rod 3231 and the jacking block 322 to automatically compensate for small coaxiality errors during driving and reduce the contact stress at the end.

[0035] The limiting structure is formed by the shoulder at the threaded tail end of the push rod 3231 and the upper surface of the support plate 3232. The effective length of the thread is calculated and matched so that when the jacking block 322 is at the highest position, the rear edge of the downward turning plate 311 is still on the safe side of the stop edge of the elastic limiting piece 33.

[0036] The flexible traction member 325 is preferably a high-modulus aramid fiber braided rope, which is covered with a thin-walled polyurethane sheath to improve wear resistance and flame resistance; one end of the flexible traction member 325 is fixed to the bottom surface of the jacking block 322 through a riveting sleeve, and the other end is fixed to the back surface of the free end of the elastic limiting member 33 in the same way. When the jacking block 322 is located at the high position of the joint patch, the flexible traction member 325 is naturally curved and suspended, and does not exert an axial tension on the elastic limiting member 33, so the elastic limiting member 33 still maintains the clamping cooperation with the limiting surface of the lower turning plate 311. When the driving member is reversely rotated, the jacking block 322 is driven by the push rod 3231 to move downward along the guide rail 3241, the flexible traction member 325 is gradually straightened and enters a stressed state, the tension acts on the free end of the elastic limiting member 33 along the axis of the traction member, so that the free end of the elastic limiting member 33 overcomes the elastic force and falls downward, and is withdrawn below the horizontal bearing plate 321 through the relief hole 3211; at this time, the contact between the lower turning plate 311 and the stop of the elastic limiting member 33 is released, and the mirror frame 1 is immediately provided with the condition of being pulled out forward. The one-way coupling of the flexible traction member 325 makes the lifting of the jacking block 322 and the withdrawal of the elastic limiting member 33 form a reliable sequence: the traction member is relaxed to avoid mislocking in the uplink joint patch stage, and the traction member is tensioned to actively pull back the elastic limiting member 33 in the downlink unlocking stage, so as to realize the controlled conversion of clamping and releasing, and at the same time, the variable length of the flexible traction member 325 itself is used to compensate the assembly tolerance, avoiding the possible jamming and local impact when using a rigid connecting rod.

[0037] As shown in Figure 5 Further, the elastic leveling member 7 is arranged at the four corners of the inner side of the mirror body 2 to form a four-point elastic support frame facing the back wall of the embedded groove. Each leveling unit adopts a polytetrafluoroethylene sliding block shell containing a spring core, the sliding block body is locked from the back of the mirror body 2 through a countersunk screw, and a certain overhang is left when locked, so that the abutting end naturally protrudes from the outer circumferential side of the mirror frame 1; when the embedded mirror is pushed into the embedded groove and the hanging is completed, the four abutting ends are compressed with the back wall of the embedded groove under control, and the internal spring provides a continuous pre-tightening force along the normal line of the mirror surface. The pre-tightening force cooperates with the support of the lower turning plate 311 and the horizontal bearing plate 321 on the front side of the hanging assembly 3 to form a force closed loop in the thickness direction. The sliding block shell of the elastic leveling member 7 is made of low-friction material, which can absorb groove depth errors during assembly and automatically level, and after assembly is completed, it outputs uniform reaction force to the back wall to compensate for the flatness deviation of the mirror surface and the groove; at the same time, the elastic support distributed at the four corners plays a role in resisting torsion and resisting forward and backward shaking of the mirror body 2, so that the coplanar reference of the mirror surface and the front surface of the decorative plate 5 remains unchanged even under disturbance conditions such as temperature and humidity changes or opening and closing of the switch cabinet door.

[0038] As shown in Figure 9 and Figure 10As shown, when assembling, the fixed plate 324 and the horizontal bearing plate 321 are integrally fastened to the back wall of the decorative cabinet by expansion bolts, so that the horizontal bearing plate 321 is parallel to the vertical side plate of the cabinet body; then the mirror frame 1 is inserted into the slot from bottom to top, so that the lower turning plate 311 is guided and pressed into the horizontal bearing plate 321 by the elastic limiting part 33, and the spring plate is folded downward to avoid the position hole 3211. When the front surface of the mirror frame 1 is basically aligned with the decorative surface of the cabinet, the rear edge of the lower turning plate 311 crosses the position hole 3211, the elastic limiting part 33 is temporarily rebounded and engaged with the limiting surface of the lower turning plate 311, and the mirror body 2 is preliminarily locked. The operator inserts the rotating handle into the closable operation port 11 and rotates the operation part 3233 clockwise, so that the push rod 3231 is screwed upward along the support plate 3232 and pushes the lifting block 322, the lifting block 322 is horizontally supported under the guidance of the guide rail 3241, drives the lower turning plate 311 and the mirror frame 1 to be slightly lifted, and the upper gap is lifted and filled; at this time, the flexible traction part 325 is relaxed, and the elastic limiting part 33 is still in the clamping state. After the gap is filled, the decorative cover of the closable operation port 11 is closed, and the mirror surface, the decorative plate 5 and the cabinet body are continuously transitioned in the same plane.

[0039] As shown in the figure, Figure 11 When disassembling, the closable operation port 11 is opened and the operation part 3233 is counterclockwise rotated, the push rod 3231 is withdrawn to drive the lifting block 322 to move downward along the guide rail, the flexible traction part 325 is straightened and gradually applies force to the free end of the elastic limiting part 33, the elastic limiting part 33 is withdrawn below the horizontal bearing plate 321 by overcoming the rebound force through the position hole 3211, and the clamping relationship is released; the mirror frame 1 is in the unlocked position which can be pulled out forward. At this time, the mirror frame 1 is pulled forward, and since the bottom of the slot has no surrounding edge, it can be lifted outward. During disassembly, the abutting end of the elastic leveling part 7 is in flexible compression with the back wall, which buffers the unloading impact and prevents the mirror body 2 from tilting and losing stability; the push rod 3231, the support plate 3232 and the guide rail 3241 are all located inside the mirror frame 1, so that the cabinet surface does not need to be disassembled to complete the disassembly and subsequent maintenance of the whole mirror.

[0040] The above is a preferred embodiment of the present application, which does not limit the protection scope of the present application, therefore: any equivalent changes made according to the structure, shape and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A fitted mirror, comprising an upright frame and a mirror body disposed on the front side of the frame, characterized in that, It also includes a mounting assembly for vertically mounting the mirror in a vertically arranged mounting slot, the mounting assembly comprising: A pendant is disposed on the back side of the mirror body and fixed to the mirror frame. The pendant includes a hanging plate, and the hanging end of the hanging plate extends downward into the mounting groove to form a downward-folding plate. A support member, corresponding to the hanging member, is fixedly connected to the back wall of the mounting groove. The support member includes a horizontal bearing plate that extends from the back wall toward the groove opening, and a clearance hole is provided on the horizontal bearing plate. An elastic limiting member is disposed below the horizontal bearing plate. The free end of the elastic limiting member extends through the relief hole to the top of the horizontal bearing plate, forming a guide slope facing the back wall of the mounting groove and a stop edge opposite to the guide slope. When the frame is pushed into the mounting groove, the lower flap slides on the horizontal support plate and presses against the guide slope, so that the elastic limiting member temporarily avoids the clearance hole; when the rear edge of the lower flap passes the elastic limiting member, the elastic limiting member rebounds so that its stop edge is locked and limited with the stop surface of the lower flap.

2. The mounting mirror according to claim 1, characterized in that, It also includes a defogging device, which is disposed on the back side of the lens body and located within the lens frame.

3. The mounting mirror according to claim 1, characterized in that, It also includes a decorative panel and a lamp post disposed on the front side of the mirror frame; the decorative panel and the mirror body are disposed side by side within the mirror frame, and the front surface of the decorative panel is flush with the front surface of the mirror body; the lamp post is fixed to the front surface of the decorative panel and extends vertically.

4. The mounting mirror according to any one of claims 1 to 3, characterized in that, The supporting component also includes a lifting block and a driving component; The horizontal support plate is provided with a vertically penetrating lifting opening. The lifting block is guided and constrained by the lifting opening and moves reciprocally relative to the horizontal support plate in the vertical direction by the drive of the driving component. The upper surface of the lifting block forms a top support surface that abuts against the lower surface of the lower flap. When the lifting block is driven to move upward, it supports the lower flap through the top support surface, causing the mirror frame to move vertically relative to the mounting groove to compensate for the assembly gap between the upper edge of the mirror frame and the top wall of the mounting groove.

5. The mounting mirror according to claim 4, characterized in that, The support also includes a fixing plate for attaching and fixing to the back wall of the mounting groove, and the horizontal bearing plate is fixedly connected to the fixing plate; The driving component includes a vertically arranged push rod and a support plate that is threadedly engaged with the push rod. The support plate is fixedly connected to the fixed plate and located at a preset position below the horizontal bearing plate. The push rod passes through the threaded hole of the support plate and moves vertically up and down when rotating relative to the support plate. Its upper end abuts against or is rotatably connected to the lower part of the lifting block to support and push the lifting block. The lower end of the push rod extends downward to the bottom of the frame.

6. The mounting mirror according to claim 5, characterized in that, The bottom of the mounting groove is not surrounded; the lower end of the push rod extends to the bottom of the inner side of the frame and is provided with an operating part, and the bottom of the frame is provided with a closable operating opening at the position corresponding to the operating part.

7. The mounting mirror according to claim 4, characterized in that, The driving component includes a limiting structure, which limits the upward driving stroke of the driving component on the lifting block, so that at any upward position, the elastic limiting component remains engaged with the stop surface of the lower flap, and the rear edge of the lower flap is located on the limiting side of the stop edge.

8. The mounting mirror according to claim 4, characterized in that, A flexible traction component is connected between the lifting block and the free end of the elastic limiting component; The flexible traction member has a preset slack amount, so that when the lifting block is in a high position and its upper surface is higher than the bearing support surface of the horizontal bearing plate, the flexible traction member is in a slack state and no pulling force is applied to the elastic limiting member to make it retract. The elastic limiting member still maintains a locking and limiting position with the stop surface of the lower flip plate. When the lifting block continues to move downward from the high position to the unlocked position, the flexible traction member is tightened and pulls the free end of the elastic limiting member back down, so that it retracts through the clearance hole to below the bearing support surface, thereby releasing the clamping of the lower flap.

9. The mounting mirror according to any one of claims 5 to 8, characterized in that, It also includes an elastic leveling component, which includes four leveling units disposed at the four corners of the inner periphery of the lens body; each leveling unit has an abutting end facing the back wall of the mounting groove, the abutting end protruding outward from the outer periphery of the lens frame in an unpressurized state, and elastically abutting against the back wall of the mounting groove after the mounting lens is assembled.

10. The mounting mirror according to claim 9, characterized in that, The lower flap is inclined relative to the bearing support surface of the horizontal bearing plate; The free end of the elastic limiting member is inclined upward relative to the bearing support surface, and is provided with a limiting part to limit the upper limit of its upward folding angle; When the pendant is in the holding and positioning state, the angle between the lower flap limiting surface and the free end of the elastic limiting member is an acute angle.