Integrated object storage cabinet with large-area complete mirror surface
By employing a large, complete mirror design and a parallelogram-structured hinged drawer box in the storage mirror cabinet, the problems of mirror fragmentation and space occupation are solved, achieving a combination of mirror integrity and convenient storage, thus enhancing the visual experience and ease of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- DONGGUAN LAIMSEN TECH BUILDING MATERIAL CO LTD
- Filing Date
- 2025-11-28
- Publication Date
- 2026-04-14
AI Technical Summary
Existing mirror cabinet designs often feature separate mirrors that disrupt visual continuity when the cabinet is flipped open. Other designs integrate the mirror with the cabinet door, resulting in a broken mirror surface when the door is opened. This negatively impacts the visual experience and usability, and the cabinet door also occupies horizontal space, limiting usability.
Featuring a large, seamless mirror design, the drawer box is hinged via a parallelogram structure. Combined with locking components, tension springs, limit holes, guide bevels, and counterweight sliders, the mirror and storage functions are integrated. The drawer box can automatically retract, ensuring the integrity of the mirror and convenient storage.
It achieves the integrity of a large, complete mirror surface, enhancing the visual effect, and improves the convenience of storage operations and the user experience of the mirror cabinet through the automatic storage function of the drawer box.
Smart Images

Figure CN121845358A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of furniture technology, and in particular to an integrated storage mirror cabinet with a large, complete mirror surface. Background Technology
[0002] Most existing mirrored storage cabinets adopt a split mirror design or a structure where the mirror and cabinet door open as one piece: the former lacks visual unity because the mirror is divided into multiple pieces; the latter will cause the mirror to be broken as the cabinet door rotates when the user opens the cabinet door to take out or put in items, which will disrupt the overall continuity and seriously affect the visual experience and the continuity of use.
[0003] In addition, traditional mirrored storage cabinets mostly rely on hinges to open and close, which requires horizontal space in front of the cabinet when opened. In small spaces such as bathrooms and shower rooms, this can easily interfere with the space of the sink and the user, limiting the flexibility of use. Summary of the Invention
[0004] The purpose of this invention is to overcome the above-mentioned shortcomings and provide an integrated storage mirror cabinet with a large area of complete mirror surface.
[0005] To achieve the above objectives, the specific solution of the present invention is as follows:
[0006] An integrated storage mirror cabinet with a large, complete mirror surface includes a cabinet body; the front of the cabinet body has a mirror surface; the cabinet body has at least one drawer cavity with an open bottom.
[0007] Each drawer cavity is provided with two guide plates and two guide frames located between the guide plates; each guide frame is slidably provided with a first slider; each first slider is connected to a counterweight slider through a traction component; a locking component for unlockably locking the first slider is provided between the guide plate and the corresponding first slider; the guide frame is provided with at least one limiting hole extending in the vertical direction and at least one guide ramp provided at the opening position of the limiting hole.
[0008] Each drawer cavity is equipped with at least one drawer box; each drawer box is hinged by a parallelogram structure, and each drawer box is connected to the corresponding parallelogram structure by a tension spring; each parallelogram structure is provided with an elliptical or elongated guide boss; wherein, the two sides of the uppermost drawer box are hinged to the corresponding first slider, the guide boss of the uppermost parallelogram structure is located inside the hinge point between it and the first slider, the remaining drawer boxes are sequentially hinged to the adjacent drawer boxes above them in the vertical direction, and the guide bosses of the remaining parallelogram structures are located outside the hinge point between them and the adjacent drawer boxes above them.
[0009] Furthermore, the locking assembly of the present invention includes a locking rod movably disposed between the guide plate and the guide frame, a guide groove disposed on the side of the guide plate facing the guide frame, and a locking pin elastically slidably disposed on the first slider.
[0010] The locking rod has a horizontally extending extension arm corresponding to each drawer box; the top of the end of the extension arm has an inclined surface; the length of each extension arm gradually decreases from bottom to top; the bottom of the locking rod extends into a push rod arm; the end of the push rod arm extends horizontally out of the main body of the mirror cabinet; the latch is movably embedded in the guide groove.
[0011] Furthermore, a return spring is connected between the locking rod and the main body of the mirror cabinet.
[0012] Furthermore, the present invention provides a vertically extending groove for each drawer box, wherein the bottom end of the vertical groove is connected to the bottom end of the adjacent vertical groove through a first inclined groove; the top ends of each vertical groove are connected to each other through a second inclined groove; and each extension arm corresponds to the bottom end of each vertical groove.
[0013] Furthermore, the first slider is provided with a groove; a second slider is slidably disposed within the groove; and the locking pin is elastically floatingly connected to the second slider.
[0014] Furthermore, the parallelogram structure of the present invention includes two connecting rods; wherein, the two ends of the two connecting rods of the uppermost parallelogram structure are respectively hinged to the first slider and the uppermost drawer box, and the guide boss of the uppermost parallelogram structure is provided on the side of the connecting rod facing the first slider; the two ends of the two connecting rods of the remaining parallelogram structures are respectively hinged to two adjacent drawer boxes, and the guide boss of the remaining parallelogram structures is provided on the side of the connecting rod facing away from the drawer box;
[0015] In each parallelogram structure, at least one link has a first connecting pin protruding from the side facing away from the drawer box; each drawer box has a second connecting pin on its side wall; the two ends of the tension spring are respectively connected to the corresponding first connecting pin and second connecting pin.
[0016] Furthermore, each of the drawer boxes has a side wall provided with a clearance groove for avoiding the connecting rod; one end of the connecting rod is movably accommodated in the clearance groove.
[0017] Furthermore, in this invention, two first sliders located in the same drawer cavity are connected to the same counterweight slider via a traction assembly.
[0018] Furthermore, the traction assembly includes a fixed pulley and a traction rope; the fixed pulley is located at the top of the drawer cavity; the traction rope is wound around the fixed pulley; and the two ends of the traction rope are respectively connected to a counterweight slider and a first slider.
[0019] Furthermore, the present invention provides at least two vertical protrusions spaced apart on the side of the guide frame facing away from the guide plate; a limiting hole is formed between two adjacent vertical protrusions; at least one of the two vertical protrusions located on both sides of the limiting hole closest to the front of the mirror cabinet body is provided with the guide slope at its bottom, and the length of the two vertical protrusions located on both sides of the limiting hole closest to the front of the mirror cabinet body increases sequentially from the front to the back of the mirror cabinet body.
[0020] The beneficial effects of this invention are as follows: By hinged to the drawer box within the drawer cavity using a parallelogram structure, the locking components, tension springs, limiting holes, guide bevels, guide bosses, counterweight sliders, and other components work together to directly fix a large, complete mirror surface on the front of the mirror cabinet body. This achieves an effective combination of a large, complete mirror surface and storage function, ensuring the integrity of the mirror surface and enhancing the visual effect. Furthermore, it enables automatic drawer box storage, making storage operations more convenient and improving the user experience of the mirror cabinet.
[0021] In this invention, each drawer box is hinged by a parallelogram structure, so that each drawer box can be arranged vertically and housed in the drawer cavity. When using the drawer boxes, they can be arranged in a stepped manner below the front of the mirror without affecting the use of the mirror, resulting in a better user experience. Attached Figure Description
[0022] Figure 1 This is a schematic diagram illustrating the application of the integrated storage mirror cabinet of the present invention;
[0023] Figure 2 This is a schematic diagram illustrating the application of the integrated storage mirror cabinet of the present invention after the drawer box is pulled out;
[0024] Figure 3 This is a schematic diagram of the integrated storage mirror cabinet of the present invention after the first drawer box is pulled out;
[0025] Figure 4 This is a schematic diagram of the integrated storage mirror cabinet of the present invention after the second drawer box is pulled out;
[0026] Figure 5 This is a cross-sectional schematic diagram of the integrated storage mirror cabinet of the present invention with each drawer box housed in the drawer cavity;
[0027] Figure 6 This is a schematic diagram of the integrated storage mirror cabinet of the present invention after each drawer box is housed in the drawer cavity and the main body of the mirror cabinet is hidden.
[0028] Figure 7 This is a schematic diagram of the structure of the drawer boxes of the present invention when they are hinged by a parallelogram structure and arranged vertically.
[0029] Figure 8This is a schematic diagram of the structure of the drawer boxes of the present invention when they are hinged by a parallelogram structure and arranged in a stepped manner.
[0030] Figure 9 This is an exploded view of the guide plate, guide frame, locking rod, traction assembly, and locking assembly of the present invention;
[0031] Figure 10 yes Figure 9 A magnified view of a section at point A in the middle;
[0032] Figure 11 This is a schematic diagram of the guide frame of the present invention;
[0033] Figure 12 This is a schematic diagram of the structure of the present invention when the locking pin abuts against the first extension arm;
[0034] Explanation of reference numerals in the attached drawings: 1. Mirror cabinet body; 11. Mirror surface; 12. Drawer cavity; 13. Guide plate; 14. Guide frame; 141. Vertical protrusion; 142. Limiting hole; 143. Guide slope; 15. First slider; 151. Second slider; 21. Fixed pulley; 22. Traction rope; 3. Counterweight slider; 41. Locking rod; 411. Extension arm; 412. Push rod arm; 421. Vertical groove; 422. First inclined groove; 423. Second inclined groove; 43. Locking pin; 44. Return spring; 5. Drawer box; 51. Clearance groove; 52. Second connecting pin; 61. Connecting rod; 611. Guide boss; 612. First connecting pin; 7. Tension spring; 10. Washbasin. Detailed Implementation
[0035] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments, but this is not to limit the scope of the invention to this.
[0036] like Figures 1 to 12 As shown in the figure, the integrated storage mirror cabinet with a large-area complete mirror surface 11 described in this embodiment is installed above the washbasin 10 and includes a mirror cabinet body 1; a large-area and complete mirror surface 11 is directly fixedly installed on the front of the mirror cabinet body 1, and the mirror cabinet body 1 is provided with at least one drawer cavity 12 with an open bottom structure; that is, a complete mirror surface 11 covering the entire drawer cavity 12 is fixed on the front of the mirror cabinet body 1, thereby having a large-area complete mirror surface 11; the number of drawer cavities 12 is set according to actual design needs, such as one, two or more.
[0037] Each drawer cavity 12 is provided with two guide plates 13 and two guide frames 14 located between the guide plates 13; each guide frame 14 is slidably provided with a first slider 15; each first slider 15 is connected to a counterweight slider 3 through a traction assembly; a locking assembly for unlockably locking the first slider 15 is provided between the guide plate 13 and the corresponding first slider 15; the guide frame 14 is provided with at least one limiting hole 142 extending in the vertical direction and at least one guide slope 143 provided at the opening position of the limiting hole 142;
[0038] Each drawer cavity 12 is movably equipped with at least one drawer box 5, the number of drawer boxes 5 being automatically set according to actual design needs; each drawer box 5 is hinged by a parallelogram structure, and each drawer box 5 is connected to the corresponding parallelogram structure by a tension spring 7; each parallelogram structure is provided with an elliptical or elongated guide protrusion 611; wherein, the two sides of the uppermost drawer box 5 are hinged to the corresponding first slider 15, and the guide protrusion 611 of the uppermost parallelogram structure is located inside the hinge point between it and the first slider 15; the remaining drawer boxes 5 are sequentially hinged vertically to the adjacent drawer box 5 above them, and the guide protrusions 611 of the remaining parallelogram structures are located outside the hinge point between them and the adjacent drawer box 5 above them. Preferably, the stiffness of each tension spring 7 increases progressively from bottom to top, so that each drawer box 5 can reliably remain in the extended state after being pulled out of the drawer cavity 12.
[0039] Specifically, in this embodiment, the integrated storage mirror cabinet with a large-area complete mirror surface 11 initially has each drawer box 5 stored in the drawer cavity 12. Each drawer box 5 is arranged sequentially in the same vertical direction along the height direction of the drawer cavity 12. The tension spring 7 is in a stretched state, the counterweight slider 3 is located at the bottom, and each parallelogram structure guide boss 611 is located in the corresponding limiting hole 142.
[0040] Taking a drawer box 5 installed inside the drawer cavity 12 as an example, when the drawer box 5 needs to be pulled out of the drawer cavity 12, the drawer box 5 is pulled down. Under the action of the traction component, the first slider 15 slides down simultaneously, the guide boss 611 of the parallelogram structure moves down along the limiting hole 142, and the counterweight slider 3 moves up. When the guide boss 611 of the parallelogram structure moves out of the limiting hole 142, the limiting hole 142 releases the restriction on the guide boss 611, and the tension spring 7 gradually returns to its original position. This allows the drawer box 5 to swing relative to the first slider 15 towards the front of the mirror cabinet body 1 under the action of the parallelogram structure and the tension spring 7, to the lower front side of the mirror surface 11. Figure 3As shown, the drawer box 5 is designed for user operation, while the locking assembly limits the first slider 15, thus keeping the drawer box 5 in its current state. When the drawer box 5 needs to be stored back into the drawer cavity 12, the locking assembly releases the lock on the first slider 15. At this time, the counterweight slider 3 moves downward, thereby driving the first slider 15 to move upward. The first slider 15 drives the drawer box 5 to move upward. When the guide protrusion 611 contacts the guide slope 143 at the opening of the limiting hole 142, as the first slider 15 moves upward, with the cooperation of the guide slope 143 and the guide protrusion 611, the drawer box 5 swings back to directly below the first slider 15 until it is stored back into the drawer cavity 12.
[0041] When two or more drawer boxes 5 are installed in the drawer cavity 12, taking three as an example, the drawer boxes 5 are divided into the first drawer box 5, the second drawer box 5, and the third drawer box 5 from bottom to top. When it is necessary to pull the drawer box 5 out of the drawer cavity 12, the first drawer box 5 is pulled down, the first slider 15 slides down, and the guide protrusions 611 of each parallelogram structure move down along the limiting hole 142. When the guide protrusions 611 of the parallelogram structure on the first drawer box 5 move out of the limiting hole 142, the limiting hole 142 releases the restriction on the guide protrusions 611, and the tension spring 7 gradually returns to its original position. Under the action of the parallelogram structure and the tension spring 7, the first drawer box 5 swings relative to the second drawer box 5 above it towards the front of the mirror cabinet body 1 and to the lower front side of the second drawer box 5. At the same time, the locking component limits the first slider 15, thereby pulling out the first drawer box 5.
[0042] If you need to pull out both drawer boxes 5 and drawer cavity 12, such as Figure 4 As shown, continue pulling the second drawer box 5, causing the locking assembly to release the locking of the first slider 15. The first slider 15 continues to move downwards until the guide boss 611 of the parallelogram structure on the second drawer box 5 moves out of the limiting hole 142. Under the action of the corresponding tension spring 7, the second drawer box 5 drives the first drawer box 5 to swing relative to the third drawer box 5 to the front and below the third drawer box 5. At the same time, the locking assembly locks the first slider 15 again. At this time, the three drawer boxes 5 are arranged in a stepped manner, as shown. Figure 2 and Figure 8 As shown; similarly, the principle of pulling out the third drawer box 5 is the same as above, and will not be repeated here; in this way, the three drawer boxes 5 are pulled out in sequence.
[0043] When the three drawer boxes 5 need to be retracted, the locking component releases the lock on the first slider 15. At this time, the counterweight slider 3 moves downward and drives the first slider 15 to slide upward through the traction component. Meanwhile, the parallelogram-shaped guide boss 611 on the third drawer box 5 moves upward and contacts the guide ramp 143 at the opening of the limiting hole 142. With the cooperation of the guide ramp 143 and the guide boss 611, the third drawer box 5 swings under the action of the tension spring 7 to directly below the drawer cavity 12. As the first slider 15 moves upward, the third drawer box 5 is retracted into the drawer cavity 12. Similarly, the second drawer box 5 and the first drawer box 5 are also gradually housed in the drawer cavity 12, thus achieving automatic storage of the three drawer boxes 5. Figure 1 and Figure 5 As shown.
[0044] This embodiment achieves a seamless integration of the large-area complete mirror 11 with the storage function by hinged the drawer box 5 within the drawer cavity 12 via a parallelogram structure. This is achieved through the coordinated operation of the locking assembly, tension spring 7, limiting hole 142, guide slope 143, guide boss 611, counterweight slider 3, and other components. Consequently, a large-area complete mirror 11 can be directly fixed to the front of the mirror cabinet body 1, realizing the integrity of the mirror 11 and enhancing the visual effect. Furthermore, it enables the automatic storage function of the drawer box 5, making storage operations more convenient and improving the user experience of the mirror cabinet.
[0045] In this embodiment, each drawer box 5 is hinged by a parallelogram structure, so that each drawer box 5 can be arranged vertically and housed in the drawer cavity 12. When using the drawer box 5, it can be arranged in a stepped manner below the front side of the mirror 11 without affecting the use of the mirror 11, resulting in a better user experience.
[0046] like Figures 5 to 12As shown, this embodiment features an integrated storage mirror cabinet with a large, complete mirror surface 11. In some embodiments, the locking assembly includes a locking rod 41 movably disposed between the guide plate 13 and the guide frame 14, a guide groove disposed on the side of the guide plate 13 facing the guide frame 14, and a latch 43 elastically slidably disposed on the first slider 15. The locking rod 41 has a horizontally extending extension arm 411 corresponding to each drawer box 5. The top end of the extension arm 411 has an inclined surface. The length of each extension arm 411 gradually decreases from bottom to top. A push rod arm 412 extends from the bottom of the locking rod 41. The end of the push rod arm 412 extends horizontally outside the main body 1 of the mirror cabinet. The latch 43 is movably embedded in the guide groove. In some embodiments, a return spring 44 is connected between the locking rod 41 and the main body 1 of the mirror cabinet. This embodiment features an integrated storage mirror cabinet with a large, complete mirror surface 11. In some implementations, the guide groove is provided with a vertically extending groove 421 corresponding to each drawer box 5. The bottom end of the vertical groove 421 is connected to the bottom end of its adjacent vertical groove 421 through a first inclined groove 422. The top ends of each vertical groove 421 are connected to each other through a second inclined groove 423. Each extension arm 411 corresponds to the bottom end of each vertical groove 421.
[0047] Specifically, for ease of explanation of this embodiment, the vertical groove 421 corresponding to the first drawer box 5 is defined as the first vertical groove 421, the vertical groove 421 corresponding to the second drawer box 5 is defined as the second vertical groove 421, the vertical groove 421 corresponding to the third drawer box 5 is defined as the third vertical groove 421, the extension arm 411 corresponding to the first vertical groove 421 is defined as the first extension arm 411, the extension arm 411 corresponding to the second vertical groove 421 is defined as the second extension arm 411, and the extension arm 411 corresponding to the third vertical groove 421 is defined as the third extension arm 411. When the first drawer box 5 needs to be pulled out of the drawer cavity 12, pull the first drawer box 5 downward. Under the action of the traction component, the first slider 15 slides downward simultaneously. The guide boss 611 of the parallelogram structure moves downward along the limiting hole 142, the counterweight slider 3 moves upward, and the locking pin 43 moves along the first vertical groove 421. When the locking pin 43 moves to the bottom end of the first vertical groove 421, the locking pin 43 of the first slider 15 contacts the inclined surface of the first extension arm 411. The locking pin 43 presses the locking rod 41 through the first extension arm 411, causing the locking rod 41 to lock. The return spring 44 moves backward until the locking pin 43 moves below the first extension arm 411 after passing the first extension arm 411. At this time, the return spring 44 pushes the locking rod 41 to reset, thereby restricting the upward reset movement of the locking pin 43. At this time, the guide boss 611 of the parallelogram structure moves out of the limiting hole 142, and the limiting hole 142 releases the restriction on the guide boss 611. The tension spring 7 gradually resets, causing the first drawer box 5 to swing relative to the first slider 15 towards the front of the mirror cabinet body 1 under the action of the parallelogram structure and the tension spring 7, as shown. Figure 3 As shown, the action of pulling out drawer box 5 is completed; when it is necessary to retract drawer box 5, the locking rod 41 is pressed by the push rod arm 412, causing the locking rod 41 to compress the return spring 44 and move backward, thereby releasing the first extension arm 411 from the restriction of the latch 43. At this time, the counterweight slider 3 drives the first slider 15 to move upward through the traction component, and the latch 43 moves upward along the first vertical groove 421 to reset, until the first drawer box 5 is stored in the drawer cavity 12.
[0048] When the first drawer 5 is pulled out and the second drawer 5 needs to be pulled out, the locking pin 43 abuts against the bottom surface of the first extension arm 411. As the second drawer 5 is pulled downwards, the locking pin 43 moves from the first vertical groove 421 into the first inclined groove 422. The locking pin 43 moves along the first inclined groove 422 and then into the second vertical groove 421 until it reaches the bottom of the second vertical groove 421 and contacts the inclined surface of the second extension arm 411. At this point, the locking pin 43 pushes the locking rod 41 backwards through the second extension arm 411 until it passes over the second extension arm 411 and abuts against its bottom surface. Then, the second drawer 5, under the cooperation of the tension spring 7 and the parallelogram structure, swings to the front and below the third drawer 5. Figure 4 As shown; when it is necessary to retract the two drawn drawer boxes 5, press the locking lever 41 so that the second extension arm 411 releases the restriction on the latch 43. Under the action of the counterweight slider 3, the latch 43 moves upward along the second vertical groove 421 and returns to the top of the first vertical groove 421 via the second inclined groove 423.
[0049] Similarly, when the third drawer box 5 is pulled out of the drawer cavity 12, the locking pin 43 enters the third vertical groove 421 from the second vertical groove 421 through the corresponding first inclined groove 422. It contacts the inclined surface of the third extension arm 411 and presses the locking rod 41 backward until the locking pin 43 abuts against the bottom surface of the third extension arm 411. At this time, the third drawer box 5 swings to the front side below the mirror surface 11 under the cooperation of the tension spring 7 and the parallelogram structure. Figure 2 As shown; when the three drawer boxes 5 are pulled out and retracted, press the locking lever 41, so that the third extension arm 411 releases the restriction on the latch 43. Under the action of the counterweight slider 3, the latch 43 moves upward along the third vertical groove 421 and returns to the top of the first vertical groove 421 via the second inclined groove 423.
[0050] like Figure 10 As shown, this embodiment features an integrated storage cabinet with a large, complete mirror surface 11. In some embodiments, the first slider 15 is provided with a groove; a second slider 151 is slidably disposed within the groove; and a locking pin 43 is elastically and floatingly connected to the second slider 151. Through the above-described configuration, when the locking pin 43 moves along the first inclined groove 422 and the second inclined groove 423, the second slider 151 can drive the locking pin 43 to move adaptively, making the pulling out and retracting actions of the drawer box 5 smoother and more stable.
[0051] like Figure 7 and Figure 8As shown, this embodiment features an integrated storage mirror cabinet with a large-area complete mirror surface 11. In some embodiments, the parallelogram structure includes two connecting rods 61; at least one of the two connecting rods 61 is provided with the guide boss 611; the two ends of the two connecting rods 61 of the uppermost parallelogram structure are respectively hinged to the first slider 15 and the uppermost drawer box 5, and the guide boss 611 of the uppermost parallelogram structure is located on the side of the connecting rod 61 facing the first slider 15; the two ends of the two connecting rods 61 of the remaining parallelogram structures are respectively hinged to two adjacent drawer boxes 5, and the guide boss 611 of the remaining parallelogram structures is located on the side of the connecting rod 61 facing away from the drawer box 5; at least one connecting rod 61 in each parallelogram structure has a first connecting pin 612 protruding on the side facing away from the drawer box 5; each drawer box 5 has a second connecting pin 52 on its side wall; the two ends of the tension spring 7 are respectively connected to the corresponding first connecting pin 612 and second connecting pin 52. The number of guide bosses 611 corresponds one-to-one with the number of limiting holes 142.
[0052] Specifically, when the limiting boss is located within the limiting hole 142, the two connecting rods 61 are in a vertical state. If all the limiting bosses of the parallelogram structure are located within the limiting hole 142, since the limiting bosses are elliptical or elongated, they are restricted and cannot rotate, thus keeping the connecting rods 61 in a vertical state. Therefore, each drawer box 5 is vertically arranged within the drawer cavity 12. When the limiting boss moves out along the limiting hole 142 to the opening position of the limiting hole 142, at this time, since the limiting boss is not restricted by the limiting hole 142... Limitation 2: At this time, the tension spring 7 returns to its original position, causing the drawer box 5 to swing around the hinge point. Specifically, the first drawer box 5 swings around the hinge point between the connecting rod 61 and the first slider 15, the second drawer box 5 swings around the hinge point between the connecting rod 61 and the first drawer box 5, and the third drawer box 5 swings around the hinge point between the connecting rod 61 and the second drawer box 5, until the connecting rod 61 is in a horizontal state. In this way, when the three drawer boxes 5 are pulled out, the three drawer boxes 5 can be arranged in a stepped manner so that the user can use the drawer boxes 5.
[0053] After the three drawer boxes 5 are pulled out of the drawer cavity 12, they can remain in the extended state of the drawer cavity 12 by the restriction of the locking pin 43 by the extension arm 411, so that the first slider 15 can remain in the current state and will not slide upward and reset due to the action of the counterweight slider 3.
[0054] like Figure 7 and Figure 8 As shown, this embodiment features an integrated storage cabinet with a large, complete mirror surface 11. In some embodiments, each drawer box 5 has a side wall with a clearance groove 51 for avoiding the connecting rod 61; one end of the connecting rod 61 is movably accommodated within the clearance groove 51. Through the above-mentioned arrangement, this embodiment has a more compact structure, making it more suitable for usage scenarios with limited installation space.
[0055] like Figure 6 and Figure 9 As shown, this embodiment features an integrated storage mirror cabinet with a large, complete mirror surface 11. In some embodiments, two first sliders 15 located in the same drawer cavity 12 are connected to the same counterweight slider 3 via a traction assembly. This embodiment, through the above-described arrangement, further enhances the linkage between the two first sliders 15, making the storage and extraction of the drawer box 5 smoother and more stable.
[0056] like Figure 6 and Figure 9 As shown, this embodiment features an integrated storage cabinet with a large, complete mirror surface 11. In some implementations, the traction assembly includes a fixed pulley 21 and a traction rope 22. The fixed pulley 21 is located at the top of the drawer cavity 12; the traction rope 22 is wound around the fixed pulley 21; and both ends of the traction rope 22 are connected to the counterweight slider 3 and the first slider 15, respectively. In this embodiment, the cooperation between the fixed pulley 21 and the traction rope 22 makes the linkage between the counterweight slider 3 and the first slider 15 smoother.
[0057] like Figure 11 As shown, this embodiment has an integrated storage mirror cabinet with a large-area complete mirror surface 11. In some embodiments, the guide frame 14 is provided with at least two vertical protrusions 141 spaced apart on the side facing away from the guide plate 13; a limiting hole 142 is formed between two adjacent vertical protrusions 141; at least one of the two vertical protrusions 141 located on both sides of the limiting hole 142 closest to the front of the mirror cabinet body 1 is provided with a guide slope 143 at its bottom, and the length of the two vertical protrusions 141 located on both sides of the limiting hole 142 closest to the front of the mirror cabinet body 1 increases sequentially from the front to the back of the mirror cabinet body 1.
[0058] Specifically, the guide frame 14 has three vertical protrusions 141 spaced apart on the side facing away from the guide plate 13, thus forming two limiting holes 142 between the three vertical protrusions 141. Correspondingly, both connecting rods 61 of the parallelogram structure are provided with guide bosses 611; the bottoms of the two vertical protrusions 141 located on both sides of the limiting holes 142 closest to the front of the mirror cabinet body 1 are provided with guide slopes 143. When the drawer box 5 retracts into the drawer cavity 12, the drawer box 5 and the connecting rod 61 move horizontally upward. After the guide boss 611 of the connecting rod 61 contacts the corresponding guide slope 143, the guide slope 143 drives the connecting rod 61 to swing through the guide boss 611, thereby causing the two connecting rods 61 to drive the corresponding drawer box 5 to swing around the hinge point so that it can be stored in the drawer cavity 12.
[0059] The above description is only a preferred embodiment of the present invention. Therefore, any equivalent changes or modifications made to the structure, features and principles described in the claims of this patent application are included within the protection scope of this patent application.
Claims
1. An integrated storage mirror cabinet with a large, complete mirror surface, characterized in that, Includes a mirror cabinet body; the front of the mirror cabinet body has a mirror; the mirror cabinet body has at least one drawer cavity with an open bottom; Each drawer cavity is provided with two guide plates and two guide frames located between the guide plates; each guide frame is slidably provided with a first slider; each first slider is connected to a counterweight slider through a traction component; a locking component for unlockably locking the first slider is provided between the guide plate and the corresponding first slider; the guide frame is provided with at least one limiting hole extending in the vertical direction and at least one guide ramp provided at the opening position of the limiting hole. Each drawer cavity is equipped with at least one drawer box; each drawer box is hinged by a parallelogram structure, and each drawer box is connected to the corresponding parallelogram structure by a tension spring; each parallelogram structure is provided with an elliptical or elongated guide boss; wherein, the two sides of the uppermost drawer box are hinged to the corresponding first slider, the guide boss of the uppermost parallelogram structure is located inside the hinge point between it and the first slider, the remaining drawer boxes are sequentially hinged to the adjacent drawer boxes above them in the vertical direction, and the guide bosses of the remaining parallelogram structures are located outside the hinge point between them and the adjacent drawer boxes above them.
2. The integrated storage mirror cabinet according to claim 1, characterized in that, The locking assembly includes a locking rod movably disposed between the guide plate and the guide frame, a guide groove disposed on the side of the guide plate facing the guide frame, and a locking pin elastically slidably disposed on the first slider. The locking rod has a horizontally extending extension arm corresponding to each drawer box; the top of the end of the extension arm has an inclined surface; the length of each extension arm gradually decreases from bottom to top; the bottom of the locking rod extends into a push rod arm; the end of the push rod arm extends horizontally out of the main body of the mirror cabinet; the latch is movably embedded in the guide groove.
3. The integrated storage mirror cabinet according to claim 2, characterized in that, A return spring is connected between the locking rod and the main body of the mirror cabinet.
4. The integrated storage mirror cabinet according to claim 2, characterized in that, The guide groove is provided with a vertically extending groove for each drawer box; the bottom end of the vertical groove is connected to the bottom end of the adjacent vertical groove through a first inclined groove; the top ends of each vertical groove are connected to each other through a second inclined groove; each extension arm corresponds to the bottom end of each vertical groove.
5. The integrated storage mirror cabinet according to claim 2, characterized in that, The first slider is provided with a groove; a second slider is slidably disposed within the groove; and a locking pin is elastically floatingly connected to the second slider.
6. The integrated storage mirror cabinet according to claim 1, characterized in that, The parallelogram structure includes two connecting rods; wherein, the two connecting rods of the uppermost parallelogram structure are respectively hinged to the first slider and the uppermost drawer box, and the guide boss of the uppermost parallelogram structure is located on the side of the connecting rod facing the first slider; the two connecting rods of the remaining parallelogram structures are respectively hinged to two adjacent drawer boxes, and the guide bosses of the remaining parallelogram structures are located on the side of the connecting rod facing away from the drawer box. In each parallelogram structure, at least one link has a first connecting pin protruding from the side facing away from the drawer box; each drawer box has a second connecting pin on its side wall; the two ends of the tension spring are respectively connected to the corresponding first connecting pin and second connecting pin.
7. The integrated storage mirror cabinet according to claim 6, characterized in that, Each of the drawer boxes has a clearance groove on its side wall for avoiding the connecting rod; one end of the connecting rod is movably accommodated in the clearance groove.
8. The integrated storage mirror cabinet according to claim 1, characterized in that, The two first sliders located in the same drawer cavity are connected to the same counterweight slider by a traction assembly.
9. The integrated storage mirror cabinet according to claim 1 or 8, characterized in that, The traction assembly includes a fixed pulley and a traction rope; the fixed pulley is located at the top of the drawer cavity; the traction rope is wound around the fixed pulley; the two ends of the traction rope are respectively connected to the counterweight slider and the first slider.
10. The integrated storage mirror cabinet according to claim 1, characterized in that, The guide frame has at least two vertical protrusions spaced apart on the side facing away from the guide plate; the limiting hole is formed between two adjacent vertical protrusions; the bottom of at least one of the two vertical protrusions located on both sides of the limiting hole closest to the front of the mirror cabinet body is provided with the guide slope, and the length of the two vertical protrusions located on both sides of the limiting hole closest to the front of the mirror cabinet body increases sequentially from the front to the back of the mirror cabinet body.