An integrated structure of a mirror cabinet
By introducing a drying chamber and a temperature control chamber into the mirror cabinet, the thermal energy of the beauty refrigerator is used to dry towels, and the item pickup is optimized through linkage doors and transmission components, the problem of the inability to dry the mirror cabinet towels and cosmetics cannot be stored at low temperatures is solved, and the practicality and convenience of the mirror cabinet are improved.
Patent Information
- Application Number
- CN202310493597.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-28
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2043-04-28
AI Technical Summary
The existing mirror cabinet has a simple structure, a towel cannot be dried, and it does not have the function of storing cosmetics at low temperatures, which reduces the practicality of the mirror cabinet.
An integrated structure of mirror cabinet is designed, including a drying chamber, a temperature control chamber and a paper extraction chamber. The heat energy generated by the beauty refrigerator is used to dry towels through the heat dissipation channel and the drying fan. The automatic opening of the refrigerator door is combined with the linkage door and the linkage component, providing a low-temperature storage function, and optimizing the convenience of use through the transmission assembly and support rod structure.
It realizes the rapid drying of towels and the low-temperature storage of cosmetics, improves the practicality of the mirror cabinet, and simplifies the process of picking up items through linkage design, enhancing the convenience of use.
Smart Images

Figure CN116509228B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of mirror cabinets, and in particular to an integrated structure of a mirror cabinet. Background Art
[0002] A mirror cabinet is a furniture product that combines a mirror and a cabinet. In most mirror cabinets, the mirror is installed on the cabinet door. When the cabinet door is closed, the mirror cabinet can be used as a mirror. When the cabinet door is opened, items can be stored and retrieved inside the mirror cabinet.
[0003] However, the existing mirror cabinet structures and functions are too simple. After use, towels can only be air-dried naturally and do not have a drying effect. In addition, the existing mirror cabinets do not have the function of low-temperature preservation and cannot store cosmetics and skin care products at low temperatures, reducing the practicality of the mirror cabinet. Summary of the Invention
[0004] In order to endow the mirror cabinet with the functions of low-temperature preservation and drying, this application provides an integrated structure of a mirror cabinet.
[0005] The integrated structure of a mirror cabinet provided by this application adopts the following technical solutions:
[0006] An integrated structure of a mirror cabinet includes a cabinet body. The cabinet body is provided with a drying chamber, a temperature control chamber, and a tissue chamber. The cabinet body is rotatably connected with a drying door for opening or closing the drying chamber and a linkage door for opening or closing the temperature control chamber and the tissue chamber. A mirror surface is fixed on the side of the drying door and the linkage door facing away from the cabinet body. A plurality of brush grooves are formed on the side of the linkage door away from the mirror surface. A beauty refrigerator is installed in the temperature control chamber. A linkage component is connected between the refrigerator door of the beauty refrigerator and the drying door. During the process of opening the linkage door, the linkage component pulls the refrigerator door open. A heat dissipation channel is connected between the drying chamber and the temperature control chamber. One end of the heat dissipation channel is close to the heat generation area of the beauty refrigerator, and the other end of the heat dissipation channel is provided with a drying fan. The drying fan is used to blow the hot air generated by the beauty refrigerator into the drying chamber.
[0007] By adopting the above technical solutions, the drying box is used to place towels. By utilizing the heat energy generated by the beauty refrigerator and the promotion of the drying fan, the heat source can be utilized in the drying chamber. On the one hand, the drying effect can be improved, and on the other hand, the temperature in the temperature control chamber can be prevented from being too high to achieve a heat dissipation effect. The drying door is used to open or close the drying chamber, thereby separating the inside of the drying chamber from the outside. The temperature control chamber is used to place the beauty refrigerator, and the tissue chamber can place tissues or makeup remover papers. The brush grooves can place makeup tools such as eyebrow pencils and eyebrow brushes. During the process of opening the linkage door, the refrigerator door can also be opened through the linkage component, and the items in the beauty refrigerator can be taken without opening the linkage door and the refrigerator door separately.
[0008] Optionally, the linkage assembly includes a slider, a linkage elastic member, and a linkage rope. A chute is formed in the refrigerator door. The slider is slidably disposed in the chute. The linkage elastic member is located in the track and has one end fixedly connected to the slider and the other end fixedly connected to the side wall of the chute. One end of the linkage rope is fixedly connected to the slider, and the other end is fixedly connected to the linkage door.
[0009] By adopting the above technical solution, the chute can prevent the slider from detaching from the refrigerator door, and the linkage rope can enable the linkage door and the slider to be linked. When the linkage door is opened, the linkage rope can pull the slider to make the slider slide in the chute. During the sliding process, it mainly provides a delay time for the opening of the refrigerator door. When only the makeup brush inside the linkage door is needed, the linkage door can be slightly opened to take it out. At this time, the slider moves in the chute and the refrigerator door will not be opened. When the refrigerator door needs to be opened, the linkage door is opened at a larger angle. The linkage rope will pull the slider to make the slider abut against one end of the chute. At this time, the slider will not slide. The pull rope continues to pull the slider to make the slider drive the refrigerator door to open, so as to realize that only by opening the linkage door, the opening of the refrigerator door can be controlled by the size of the opening angle. When the refrigerator door needs to be closed, the linkage door is closed, and the linkage door can push the refrigerator door to close the linkage door and the refrigerator door together. The linkage elastic member can reset the slider to make the slider that originally abutted against one end of the chute return to its original position.
[0010] Optionally, the tissue paper chamber is located below the temperature control chamber. A tissue paper baffle is rotatably connected to the upper wall at the opening of the tissue paper chamber. When the tissue paper baffle closes the tissue paper chamber, a viewing area is formed at the lower part of the tissue paper baffle. A lock catch is fixed on the tissue paper baffle, and the lock catch is used to be engaged with the upper wall of the tissue paper chamber. The tissue paper baffle and the upper wall of the tissue paper chamber are connected by a tissue paper elastic member. There is an abutting portion at the upper wall of the tissue paper chamber opening. The tissue paper elastic member has a tendency to force the tissue paper baffle to rotate towards the abutting portion. An arc-shaped push block is fixedly connected to the linkage door. When the linkage door rotates, one end of the arc-shaped push block enters the tissue paper chamber to push the tissue paper baffle to rotate, forcing the lock catch to disengage from the upper wall of the tissue paper chamber.
[0011] By adopting the above technical solution, items such as paper towels are placed in the paper towel cavity. The paper towel baffle is used to block the paper towel cavity. The paper towel baffle only blocks the upper half of the paper towel. The viewing area formed at the lower part of the paper towel baffle can facilitate the user to view the remaining amount of the paper towel when opening the linkage door without rotating the paper towel baffle. When a new paper towel needs to be placed, the linkage door rotates at a larger angle, allowing one end of the arc-shaped push block to enter the paper towel cavity. The arc-shaped push block pushes the paper towel baffle, causing the lock to disengage from the upper wall of the paper towel cavity. The paper towel baffle will flip towards the abutting part under the action of the paper towel elastic member, and finally the paper towel baffle abuts against the abutting part. The paper towel cavity is in an open state, and a new paper towel can be placed into the paper towel cavity. Since the refrigerator door has been opened under the action of the linkage rope when the paper towel baffle abuts against the abutting part, if the user wants to take the items deeper inside the beauty refrigerator, the user can first take out the items on the outside of the beauty refrigerator and place them on the paper towel baffle. After taking out the required items, the items placed on the paper towel baffle can be put back into the beauty refrigerator again. The paper towel elastic member can prevent the paper towel baffle from tilting excessively when items are placed on it, preventing the items placed on the paper towel baffle from slipping, so that the user can conveniently and quickly take the items deeper inside the beauty refrigerator.
[0012] Optionally, a limiting sleeve is slidably arranged in each brush slot. The limiting sleeve has a pushing part, and the pushing part is used to push the paper towel baffle to rotate towards the paper towel cavity. A limiting seat is slidably arranged at the bottom of each brush slot, and a transmission component is arranged between the limiting seat and the limiting sleeve.
[0013] By adopting the above technical solution, one end of the brush can pass through the limiting sleeve and abut against the limiting seat, thereby preventing the brush from detaching from the brush slot. When it is necessary to close the paper towel baffle that abuts against the abutting part to the outlet of the paper towel cavity, just close the linkage door. The pushing part on the limiting sleeve will push the paper towel baffle, forcing the paper towel baffle to rotate. As the linkage door closes, the paper towel baffle will be closed into the paper towel cavity. The pushing part can guide the paper towel baffle, preventing the problem that the linkage door cannot be closed due to the opening of the paper towel baffle.
[0014] Optionally, the transmission component includes a transmission plate and a transmission rod. A transmission slot is also opened on the side wall of the brush slot. The transmission rod is fixedly connected to the side wall of the transmission slot. The transmission plate is sleeved on the transmission rod and is connected to the transmission rod through a torsion spring. One end of the transmission plate abuts against the limiting sleeve, and the other end of the transmission plate abuts against the limiting seat. The abutting part pushes the limiting sleeve to move towards the transmission slot direction. The transmission plate pushes the limiting seat, so that one end of the limiting seat pushes the paper towel baffle, causing the lock on the paper towel baffle to be stuck into the upper wall of the paper towel cavity.
[0015] By adopting the above technical solution, the transmission rod is used to limit the transmission plate, so that the transmission plate can only rotate but not move, and the transmission groove is used to accommodate the transmission plate and the transmission rod, so that the transmission plate will not interfere with the brush placed on the brush groove when it rotates; the torsion spring between the transmission plate and the transmission rod can force the transmission plate to rotate, so that the transmission plate pushes the limiting sleeve, so that when the limiting sleeve is in the initial state, the pushing part will be exposed in the brush groove, and the elasticity of the torsion spring is greater than that of the paper towel elastic part. On the one hand, the pushing part can push the paper towel baffle to rotate, and on the other hand, when the linkage door is opened, the pushing part will extend from the brush groove under the action of the transmission plate. At this time, the brush groove The brush inside will also be tilted, which is convenient for users to select and take; when the linkage door is closed, the pushing part will first push the paper towel baffle to rotate, and when the pushing part contacts the abutting part, the contact part will push the pushing part back, so that the limiting sleeve will move toward the transmission groove. On the one hand, when the pushing part retracts into the brush groove, the brush will change from a tilted state to a vertical state, thereby being retracted into the brush groove; on the other hand, the limiting sleeve will push the transmission plate to rotate, so that one end of the transmission plate pushes the limiting seat, so that one end of the limiting seat comes out of the brush groove, and the limiting seat pushes the paper towel baffle to continue to rotate, and finally the lock of the paper towel baffle is stuck in the upper wall of the paper drawing cavity, so that the paper drawing cavity changes from an open state to a closed state.
[0016] Optionally, a drying rod is provided in the drying chamber, a driving assembly for rotating the drying rod is provided at the bottom of the drying rod, the drying rod has a bending section, the bending section is bent away from the drying fan, and a support rod is provided on the top of the drying rod.
[0017] By adopting the above technical solution, the drying rod can support the support rod, and the towel can be hung on the support rod. The bent section is bent away from the drying fan, so that a larger area can be formed between the drying fan and the drying rod. The towel hung on the support rod can be dried over a larger area before the hot air is blocked by the drying rod. The driving component can make the drying rod rotate. After the drying door is opened, the user can conveniently hang the towel on the support rod.
[0018] Optionally, the support rod is rotatably connected to the drying rod, the upper part of the drying rod has an inclined portion and a horizontal portion, and a counterweight is provided at one end of the support rod facing the inclined portion; the counterweight forces the support rod to abut against the inclined portion; the support rod is provided with an unfolding component for spreading the towel.
[0019] By adopting the above technical solution, the inclined part can limit the excessive rotation of the support rod. When the towel is not hung on the support rod, the counterweight block will tilt the support rod under its own weight, so that one end of the support rod is lower, and the user can hang the towel on the support rod from the lower end. The support rod will rotate under the gravity of the towel, so that the support rod abuts against the horizontal part. At this time, the support rod is no longer tilted, and the towel can be placed on it without sliding off the support rod. When the support rod abuts against the horizontal part, the unfolding component can slightly unfold the towel, which can improve the drying effect.
[0020] Optionally, the unfolding assembly includes an unfolding plate rotatably arranged on the support rod, a pushing block is fixedly arranged at the bottom of the support rod, a support groove is opened in the horizontal part, a support block is slidably arranged in the support groove, and the pushing block is used to push the support block, so that the support block pushes the unfolding plate to unfold.
[0021] By adopting the above technical solution, the expansion groove is used to accommodate the expansion block. When the towel is hung on the support rod, the gravity of the towel will press the support rod, allowing the pushing block at the bottom of the support rod to enter the expansion groove and then push the expansion block. The expansion block comes out of the expansion groove under the push of the pushing block and pushes the expansion plate to rotate. After the expansion plate rotates and expands, the distance between the two sides of the towel can be increased, allowing the drying fan to blow hot air between the two sides of the towel.
[0022] Optionally, the cabinet is provided with a driving groove, and the driving assembly includes a rotating rack rotatably connected to the drying door, a movable rack located in the driving groove, and a gear respectively meshing with the movable rack and the rotating rack, the rotating rack is connected to the drying door via a rotating elastic member, the rotating elastic member has a tendency to force the rotating rack to rotate in the direction of the gear, the movable rack is fixedly connected to the side wall of the driving groove with a movable elastic member, and the movable rack is fixedly provided with a convex portion to prevent the movable rack from being separated from the driving groove; the lower part of the gear is rotatably connected with an anti-separation block, and the anti-separation block is movably arranged in the driving groove.
[0023] By adopting the above technical solution, the driving groove is used to accommodate the transmission rack, the moving rack and the gear. The rotating rack is rotatably connected to the drying door. The rotating elastic member can enable the drying door to always keep meshing with the gear when the drying door is opened and the rotating rack is pulled. When the drying door starts to open, the rotating rack comes out of the driving groove under the pull of the drying door, and the moving elastic member will push the moving rack, so that the moving rack also comes out of the driving groove. Since the rotating rack and the moving rack mesh with the gear, when both the moving rack and the rotating rack move out of the driving groove, the gear will also move in a translational manner towards the opening direction of the driving groove, so that the drying rod and the support rod come out of the drying cavity. At this time, the gear does not rotate. Since the space of the drying cavity is small, the purpose is to prevent the drying rod and the support rod from rotating and hitting the side wall of the drying cavity. After the gear drives the drying rod and the support rod out of the drying cavity, the convex part of the moving rack will abut against the side wall of the driving groove, preventing the moving rack from moving further. At this time, since the drying door continues to flip and pull the rotating rack to move, the gear will rotate under the meshing of the rotating rack, so that the gear can rotate and move at the same time. Since the support rod and the drying rod come out of the drying cavity, the rotation of the gear driving the support rod and the drying rod to rotate will not cause interference between the rotated support rod and the side wall of the drying cavity. After the support rod comes out of the drying cavity, the towel on the support rod will be closer to the user, which is convenient for the user to take. At the same time, since the support rod rotates, the counterweight block of the support rod is facing the user at this time. After the user takes the towel, the support rod will tilt downward towards the user, and the user can easily hang the towel on the support rod after using the towel. After the towel is used up, the drying door is closed, and the gear enters the driving groove under the action of the moving rack and the rotating rack, so that the support rod and the drying rod enter the drying cavity. The rotation of the support rod can facilitate the storage of the towel on the support rod in the drying cavity with a smaller space. The anti-disengagement block can ensure that the gear can continue to move and rotate after coming out of the driving groove, and at the same time can ensure the reset of the gear when the drying door is closed.
[0024] Optionally, a storage groove is further provided in the drying cavity. A storage door is provided at the outlet of the storage groove. The storage door is connected to the outlet of the storage groove through a torsion spring. An unlocking groove is communicated between the storage groove and the driving groove. An unlocking block is slidably connected in the unlocking groove. An unlocking elastic member is connected between the unlocking block and the side wall of the unlocking groove. The unlocking elastic member is used to push the unlocking block to be clamped on the storage door. A rotating block is rotatably connected to the side wall of the storage groove. The rotating block is connected to the unlocking block through a pull rope. A driving block is fixedly provided on the anti-disengagement block. The driving block is used to push the rotating block to rotate, forcing the unlocking block to disengage from the storage door. The upper part of the gear is detachably connected to the drying rod.
[0025] By adopting the above technical solution, the storage tank can store items, and when the storage door is closed, it can prevent the things in the storage tank from coming out of the storage tank. When using the towel, the anti-disengagement block comes out of the drive slot, and at this time, the drive block on the anti-disengagement block will not push the rotating block to rotate. Only when the user needs to take the items in the storage tank, the user can continue to pull the anti-disengagement block to make the drive block on the anti-disengagement block push the rotating block to rotate. The rotation of the rotating block will pull the pull rope to disengage the unlocking block from the storage door, and at this time, the storage door will open under the action of the torsion spring. The drying rod can be detached from the upper part of the gear, which is convenient for the user to take the items in the dust removal tank. The unlocking elastic member has the effect of resetting the unlocking block. Just close the storage door, and the unlocking block can be snapped into the storage door under the action of the unlocking elastic member.
[0026] In summary, the present application includes at least one of the following beneficial technical effects:
[0027] 1. During the process of opening the linkage door, the refrigerator door can also be opened through the linkage component, and the items in the beauty refrigerator can be taken without opening the linkage door and the refrigerator door separately.
[0028] 2. The support rod can rotate relative to the drying rod, and the counterweight will cause the support rod to tilt under its own weight, making one end of the support rod lower. The user can hang the towel on the support rod from the lower end. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is a schematic diagram of the overall structure of the integrated mirror cabinet.
[0030] Figure 2 It is a schematic diagram of the internal structure of the cabinet.
[0031] Figure 3 It is a schematic cross-sectional view of the position of the linkage component in the mirror cabinet.
[0032] Figure 4 It is an enlarged schematic diagram of the linkage component.
[0033] Figure 5 It is a schematic cross-sectional view of the position of the transmission component in the mirror cabinet.
[0034] Figure 6 It is an enlarged schematic diagram of the transmission component.
[0035] Figure 7 It is a schematic top cross-sectional view of the tissue paper chamber.
[0036] Figure 8 It is a schematic cross-sectional view in the axial direction of the drying rod.
[0037] Figure 9 It is a schematic cross-sectional view of the drive component in the drive chamber.
[0038] Figure 10 It is a schematic diagram of the exploded structure of the drive assembly, drying rod and support rod.
[0039] Figure 11 yes Figure 8 Schematic diagram of the enlarged structure at position A in the middle.
[0040] Figure 12 yes Figure 8 Schematic diagram of the enlarged structure at position B in the figure.
[0041] Explanation of the reference numerals: 1. cabinet; 11. linkage door; 110. brush slot; 111. limit sleeve; 112. push part; 113. limit seat; 12. mirror; 2. storage chamber; 21. storage door; 22. partition; 3. drying chamber; 31. drying door; 32. drying rod; 321. bending section; 322. inclined part; 323. horizontal part; 33. support rod; 34. counterweight; 35. storage slot; 351. storage door; 352. unlocking slot; 353. unlocking block; 354. unlocking elastic member; 355. rotating block; 356. pull rope; 357. driving block; 4. temperature control chamber; 41. heat dissipation channel; 42. drying fan; 43. beauty refrigerator; 44. ice Box door; 5, paper extraction chamber; 51, paper towel baffle; 52, viewing area; 53, lock; 54, paper towel elastic member; 55, abutment portion; 56, arc-shaped push block; 57, paper output slot; 6, linkage assembly; 61, slider; 62, linkage elastic member; 63, linkage rope; 64, slide slot; 7, transmission assembly; 71, transmission plate; 72, transmission rod; 73, transmission slot; 8, driving assembly; 81, driving slot; 82, rotating rack; 821, rotating elastic member; 83, moving rack; 831, moving elastic member; 832, convex portion; 84, gear; 85, anti-separation block; 9, unfolding assembly; 91, unfolding plate; 92, push block; 93, support slot; 94, support block. DETAILED DESCRIPTION
[0042] The directional terms such as up, down, left, right, front, back, front, back, top, bottom, etc. mentioned or may be mentioned in this specification are defined relative to the structures shown in the drawings. They are relative concepts and may change accordingly according to their different positions and different usage states. Therefore, these or other directional terms should not be interpreted as restrictive terms. In addition, the terms "first", "second", "third", etc. or similar expressions are only used for description and distinction purposes, and cannot be understood as indicating or implying the relative importance of the corresponding components.
[0043] The following is combined with Figures 1-12 This application is described in further detail.
[0044] The embodiment of the present application discloses an integrated mirror cabinet structure.
[0045] Reference Figure 1 and Figure 2 A mirror cabinet integrated structure includes a cabinet body 1, which is provided with a storage chamber 2, a drying chamber 3 and a temperature control chamber 4 in sequence. The outlet of each chamber is respectively connected with a storage door 21, a drying door 31 and a linkage door 11 for rotation. The cabinet body 1 is also provided with a paper extraction chamber 5, which is located below the temperature control chamber 4. The linkage door 11 is used to open and close the temperature control chamber 4 and the paper extraction chamber 5. The storage door 21, the drying door 31 and the linkage door 11 are provided with a mirror surface 12 on the side away from the cabinet body 1. The mirror surface 12 can be an anti-fog mirror surface containing a heating wire, or a smart magic mirror with a built-in light bulb that can emit light by waving the hand. The specific structures of the anti-fog mirror surface and the smart magic mirror are both existing technologies, so they are not repeated here.
[0046] A plurality of partitions 22 are provided in the storage cavity 2, which divide the storage cavity 2 into a plurality of spaces for placing more cosmetics. The storage door 21 has a storage slot on the side facing away from the mirror surface 12, which can be used to place smaller items, such as lipstick or perfume samples, etc. The storage slot is not shown in the figure.
[0047] Reference Figure 3 and Figure 4 A beauty refrigerator 43 is placed in the temperature control chamber 4. The beauty refrigerator 43 is available on the market and is not described in detail because it is a prior art. A heat dissipation channel 41 is connected between the temperature control chamber 4 and the drying chamber 3. Since the beauty refrigerator 43 needs to dissipate heat during refrigeration, one end of the heat dissipation channel 41 is close to the heating area of the beauty refrigerator 43, and a drying fan 42 is arranged at the other end of the heat dissipation channel 41. The drying fan 42 can blow the hot air generated by the beauty refrigerator 43 into the drying chamber 3. The beauty refrigerator 43 has a refrigerator door 44, and a linkage component 6 is connected between the refrigerator door 44 and the drying door 31.
[0048] Reference Figure 4 The linkage assembly 6 includes a slider 61, a linkage elastic member 62 and a linkage rope 63. The refrigerator door 44 is provided with a slide groove 64 in a transverse direction. The slider 61 moves in the slide groove 64 provided in a transverse direction. One end of the linkage rope 63 is fixedly connected to the slider 61, and the other end is fixedly connected to the linkage door 11. The cross section of the slide groove 64 is in a convex shape, so that when the linkage rope 63 pulls the slider 61, the slider 61 will only move in the slide groove 64 and will not be separated from the slide groove 64. The linkage rope 63 is a rope. In order to improve the tensile strength, the linkage rope 63 can also be replaced by a chain. The linkage elastic member 62 is also located in the slide groove 64, and the two ends of the linkage elastic member 62 are fixedly connected to the slider 61 and one end of the slide groove 64. The linkage elastic member 62 is a tension spring.
[0049] When the linkage door 11 rotates, the linkage rope 63 can pull the slider 61 to move toward the other end of the slide groove 64. When the slider 61 abuts against the other end of the slide groove 64, the linkage door 11 continues to be opened, and the linkage rope 63 continues to pull the slider 61. The slider 61 will open the refrigerator door 44. Under the setting of the slide groove 64, after the linkage door 11 is opened to 45°-90°, it will continue to rotate to open the refrigerator door 44.
[0050] Reference Figure 5 The linkage door 11 is provided with a brush groove 110 on one side away from the mirror surface 12, and the brush groove 110 is used to place a brush. When the refrigerator door 44 is not desired to be opened, the brush in the brush groove 110 can be taken out by slightly opening the linkage door 11.
[0051] The upper wall of the opening of the paper-drawing chamber 5 is rotatably connected to a paper towel baffle 51, and the lower wall of the paper-drawing chamber 5 is provided with a paper outlet slot 57 for the paper towels in the paper-drawing chamber to come out. The paper towel baffle 51 can block the upper half of the opening of the paper-drawing chamber 5, so when the paper towel baffle 51 is closed to the paper-drawing chamber 5, a viewing area 52 is formed at the lower part of the paper towel baffle 51, and the height of the viewing area 52 is less than the height of the paper box, so the paper towel baffle 51 can prevent the paper box from coming out of the paper-drawing chamber 5.
[0052] Reference Figure 6 , the paper towel baffle 51 is rotatably connected to the upper wall of the paper extraction chamber 5 through the paper towel elastic member 54, the upper wall position of the opening of the paper extraction chamber 5 has an abutment portion 55, the paper towel elastic member 54 is a torsion spring, and the torsion spring has a tendency to force the paper towel baffle 51 to rotate in the direction of the abutment portion 55, and the upper part of the paper towel baffle 51 is fixed with a lock buckle 53, and the lock buckle 53 is used to snap into the upper wall of the paper extraction chamber 5. When the lock buckle 53 is snapped into the upper wall of the paper extraction chamber 5, the paper towel elastic member 54 is in a state of storing force. The linkage door 11 is fixedly connected with an arc-shaped push block 56, and when the linkage door 11 is further rotated to 120-160°, the arc-shaped push block 56 will enter the paper extraction chamber 5 to push the paper towel baffle 51 to rotate. When the arc-shaped push block 56 pushes the paper towel baffle 51 to make the lock buckle 53 detach from the upper wall of the paper extraction chamber 5, the paper towel elastic member 54 will release the stored force, so that the paper towel baffle 51 abuts against the abutment portion 55. At this time, the paper towel baffle 51 is turned from vertical to horizontal, and the paper extraction chamber 5 is changed from a closed state to an open state.
[0053] The side wall of the brush groove 110 is provided with a transmission groove 73, and there are multiple brush grooves 110. A limit sleeve 111 is slidably arranged in each brush groove 110. The middle of the limit sleeve 111 is hollow and can allow a brush to pass through. The limit sleeve 111 has a pushing portion 112 at one end facing the abutment portion 55. The end of the limit sleeve 111 away from the pushing portion 112 can slide from the brush groove 110 to the transmission groove 73. When the paper towel baffle 51 is turned horizontally, the pushing portion 112 can push the paper towel baffle 51 to rotate toward the paper extraction cavity 5 during the process of closing the linkage door 11. A limit seat 113 is slidably arranged at the bottom of each brush groove 110. One end of the limit seat 113 can slide into the transmission groove 73, and the other end can be exposed from the brush groove 110 to abut against the rotating paper towel baffle 51. A transmission assembly 7 is arranged between the limit seat 113 and the limit sleeve 111.
[0054] The transmission assembly 7 includes a transmission plate 71 and a transmission rod 72, the transmission rod 72 is fixedly connected to the side wall of the transmission slot 73, the transmission plate 71 is sleeved on the transmission rod 72 and the transmission plate 71 and the transmission rod 72 are connected by a torsion spring, one end of the transmission plate 71 abuts against the limit sleeve 111, and the other end of the transmission plate 71 abuts against the limit seat 113, the torsion spring allows the transmission plate 71 to push the limit sleeve 111, so that the push portion 112 of the limit sleeve 111 is exposed in the brush slot 110, and the limit seat 113 is hidden in the brush slot 110 and one end is located in the transmission slot 73. The elasticity of the torsion spring is greater than that of the paper towel elastic member 54. When the linkage door 11 is closed, the pushing part 112 will first push the paper towel baffle 51 to rotate, and then the pushing part 112 will abut on the abutting part 55. Under the reaction force of the abutting part 55, the pushing part 112 will be pushed to allow one end of the limiting sleeve 111 to enter the transmission groove 73, and the transmission plate 71 will be pushed to rotate. At this time, one end of the transmission plate 71 will push the limiting seat 113. Just when one end of the paper towel baffle 51 is flipped from the upper part of the limiting seat 113 to the lower part of the limiting seat 113, the outer surface of the paper towel baffle 51 will face the limiting seat 113, and the limiting seat 113 will come out of the brush groove 110 to push the outer surface of the rotating paper towel baffle 51, so that the lock buckle 53 of the paper towel baffle 51 is fastened to the upper wall of the paper extraction chamber 5, so that the paper towel baffle 51 is reset from the horizontal state to the vertical state, and the paper towel chamber is closed.
[0055] Reference Figure 8 A driving groove 81 connected to the drying chamber 3 is provided at the lower part of the drying chamber 3, and a driving assembly 8 is arranged in the driving groove 81. The output end of the driving assembly 8 is detachably connected to a drying rod 32, and the drying rod 32 is located in the drying chamber 3. A supporting rod 33 is rotatably arranged on the upper part of the drying rod 32, and a towel can be hung on the supporting rod 33.
[0056] Reference Figure 9 and Figure 10The driving assembly 8 includes a rotating rack 82 rotatably connected to the drying door 31, a moving rack 83 located in the driving slot 81, and a gear 84 respectively meshing with the moving rack 83 and the rotating rack 82. The transmission rack serves as an output end and is connected to the drying rod 32 in a plug-in manner. When the gear 84 rotates or moves, the drying rod 32 connected to the gear 84 and the support rod 33 connected to the drying rod 32 rotate or move synchronously.
[0057] The rotating rack 82 is rotatably connected to the drying door 31 through a rotating elastic member 821. The rotating elastic member 821 is a torsion spring. The torsion spring has a tendency to force the rotating rack 82 to rotate in the direction of the gear 84, so that when the drying door 31 is opened or closed, the rotating rack 82 can always be meshed with the gear 84. One end of the moving rack 83 is fixedly connected to the side wall of the driving groove 81 with a moving elastic member 831. When the drying door 31 is closed, the other end of the moving rack 83 abuts against the drying door 31. The moving rack 83 is fixedly provided with a convex portion 832 to prevent the moving rack 83 from being separated from the driving groove 81. The movable elastic member 831 is a spring. When the drying door 31 is opened, the movable elastic member 831 pushes the movable rack 83, so that the movable rack 83 abutting against the drying door 31 comes out from the opening of the driving groove 81. When the movable rack 83 comes out a certain distance, the convex part 832 abuts against the side wall of the driving groove 81, and the movable rack 83 no longer moves. In the process of opening the drying door 31, as the drying door 31 pulls the rotating rack 82 and the movable elastic member 831 pushes the movable rack 83, the gear 84 first moves toward the driving groove 81. When the convex part 832 of the movable rack 83 abuts against the wall of the driving groove 81, the drying door 31 continues to open, and the rotating rack 82 drives the gear 84 to rotate. Finally, the gear 84 moves first and then rotates while moving. To achieve the support rod 33 and the drying rod 32 rotating after coming out of the drying chamber 3, the rotation angle of the gear 84 in this embodiment is 80°-100°, and one end of the support rod 33 coming out of the driving slot 81 and rotating faces the user.
[0058] The lower part of the gear 84 is rotatably connected with an anti-separation block 85, which is located in the driving groove 81. When the gear 84 comes out of the driving groove 81, one end of the anti-separation block 85 comes out together with the gear 84, and the gear 84 cooperates with the anti-separation block 85 to prevent separation. The anti-separation block 85 has a guiding function, which is used to make the gear 84 have a fixed moving trajectory.
[0059] Reference Figure 8 and 11, a storage tank 35 is also provided in the drying chamber 3. The storage tank 35 is divided into upper, middle and lower layers. The upper and middle layers are drawers, and the upper and middle storage tanks 35 can be opened by pulling. A storage door 351 is provided at the outlet of the lower storage tank 35. The storage door 351 is connected to the outlet of the storage tank 35 of this layer through a torsion spring. A unlocking groove 352 is communicated between the lower storage tank 35 and the driving groove 81. An unlocking block 353 is slidably connected in the unlocking groove 352. The upper end of the unlocking block 353 is used for clamping the storage door 351 to control the opening or closing of the storage door 351. A unlocking elastic member 354 is connected between the lower part of the unlocking block 353 and the side wall of the unlocking groove 352. The unlocking elastic member 354 is used to push the unlocking block 353 to be clamped to the storage door 351. A rotating block 355 is rotatably connected to the side wall of the storage tank 35. The rotating block 355 is L-shaped. One end of the L-shaped rotating block 355 is connected with a pull rope 356, and the other end of the pull rope 356 is fixedly connected to the lower part of the unlocking block 353. A driving block 357 is fixedly arranged on the anti-separation block 85. The other end of the L-shaped rotating block 355 can be pushed by the driving block 357. When the L-shaped rotating block 355 rotates, the pull rope 356 can be pulled to force the unlocking block 353 to be separated from the storage door 351. In this embodiment, the storage 35 is not often used. Generally, opening the drying door 31 is mainly used for placing towels. During the process of taking or placing towels, the storage door 351 will not be opened. When one end of the anti-separation block 85 comes out of the driving groove 81, the user needs to further pull the anti-separation block 85 to move so that the driving block 357 can push the rotating block 355.
[0060] Refer to Figure 10 , the upper part of the gear 84 is detachably connected to the drying rod 32 by clamping. The drying rod 32 has a bent section 321, and the bent section 321 bends away from the drying fan 42 (such as Figure 2 ). The end of the bent section 321 is rotatably connected to the position of one-third of the length of the support rod 33. This connection position divides the support rod 33 into a shorter end and a longer end. A counterweight 34 is provided at the shorter end. The counterweight 34 can make the support rod 33 tilt without towels placed. The connection position between the drying rod 32 and the support rod 33 has an inclined part 322 and a horizontal part 323 along the length direction of the support rod 33. When no towel is placed, under the gravity of the counterweight 34, the support rod 33 tilts, and the tilted support rod 33 will abut against the inclined part 322. An unfolding assembly 9 is provided on the horizontal part 323. After placing the towel on the support rod 33, under the gravity of the towel, the support rod 33 will abut against the horizontal part 323, and the support rod 33 will touch the unfolding assembly gradually, making the towel unfold slightly to both sides. As the drying door 31 is opened, the counterweight 34 of the support rod 33 will face the user, so the support rod 33 will tilt towards the user, facilitating the user to place the towel.
[0061] Refer to Figure 10 and Figure 12, the unfolding component 9 includes unfolding plates 91 rotatably arranged on the support rod 33. There are two unfolding plates 91, which are respectively located on both sides of the support rod 33 in the width direction. A pushing block 92 is fixedly arranged at the bottom of the support rod 33. An expanding groove 93 is formed in the horizontal part 323. An expanding block 94 is slidably arranged in the expanding groove 93. There are also two expanding blocks 94. After the support rod 33 abuts against the horizontal part 323, the pushing block 92 will push the two expanding blocks 94 in the expanding groove 93, so that the expanding blocks 94 push the unfolding plates 91 to unfold. After the unfolding plates 91 unfold, they serve as an extension in the width direction of the support rod 33, which can increase the contact surface between the support and the towel, making the space between the two ends of the towel larger when it is naturally hung, providing a space for hot air flow for the drying fan 42 (such as Figure 2 ), improving the drying effect.
[0062] The implementation principle of the embodiment is as follows: When a brush is needed, open the linkage door 11; when a beauty refrigerator 43 is needed, continue to rotate the linkage door 11 to open the refrigerator door 44. When a tissue box needs to be replaced, further rotate the linkage door 11, and the tissue baffle 51 will open; after closing the linkage door 11, both the tissue baffle 51 and the refrigerator door 44 will close; when a towel is needed, open the drying door 31. After the support rod 33 comes out of the drying cavity 3, it rotates so that the end of the support rod 33 with the counterweight 34 faces the user. After taking the towel, the support rod 33 will tilt downward. After using the towel, the towel can be hung on the support rod 33 at the tilted position, and the support rod 33 will no longer tilt under the gravity of the towel. Close the drying door 31, and the support rod 33 rotates and then continues to move into the drying groove.
[0063] The above are all the preferred embodiments of this application, and are not used to limit the protection scope of this application; therefore, according to the technical solution of the present invention, without changing the essential spirit of the present invention, those of ordinary skill in the art can propose various structural forms and implementation methods that can be mutually replaced. Therefore, the above specific implementation manners and drawings are only exemplary descriptions of the technical solution of the present invention, and should not be regarded as all of the present invention or regarded as a limitation or restriction on the technical solution of the present invention. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.
Claims
1. An integrated structure of a mirror cabinet, comprising a cabinet body (1), characterized in that: The cabinet (1) is provided with a drying chamber (3), a temperature control chamber (4) and a paper extraction chamber (5); the cabinet (1) is rotatably connected with a drying door (31) for opening or closing the drying chamber (3) and a linkage door (11) for opening or closing the temperature control chamber (4) and the paper extraction chamber (5); a mirror surface (12) is fixed on the side of the drying door (31) and the linkage door (11) facing away from the cabinet (1); a plurality of brush grooves (110) are provided on the side of the linkage door (11) facing away from the mirror surface (12); a beauty refrigerator (43) is installed in the temperature control chamber (4); the beauty refrigerator (43) A linkage component (6) is connected between the refrigerator door (44) and the drying door (31); during the process of opening the linkage door (11), the linkage component (6) pulls the refrigerator door (44) to open, and a heat dissipation channel (41) is connected between the drying chamber (3) and the temperature control chamber (4); one end of the heat dissipation channel (41) is close to the heating area of the beauty refrigerator (43), and the other end of the heat dissipation channel (41) is provided with a drying fan (42); the drying fan (42) is used to blow hot air generated by the beauty refrigerator (43) into the drying chamber (3); The paper extraction chamber (5) is located below the temperature control chamber (4); the upper wall of the opening of the paper extraction chamber (5) is rotatably connected to a paper towel baffle (51); when the paper towel baffle (51) is closed to the paper extraction chamber (5), a viewing area (52) is formed at the lower part of the paper towel baffle (51); a lock buckle (53) is fixed to the paper towel baffle (51); the lock buckle (53) is used to snap into the upper wall of the paper extraction chamber (5); the paper towel baffle (51) and the upper wall of the paper extraction chamber (5) are connected via a paper towel elastic member (54). The linkage door (11) is connected to the paper extraction cavity (5), wherein the upper wall of the paper extraction cavity (5) has an abutment portion (55), the paper towel elastic member (54) has a tendency to force the paper towel baffle (51) to rotate in the direction of the abutment portion (55), and the linkage door (11) is fixedly connected to an arc-shaped push block (56); when the linkage door (11) rotates, one end of the arc-shaped push block (56) enters the paper extraction cavity (5) to push the paper towel baffle (51) to rotate, thereby forcing the lock buckle (53) to detach from the upper wall of the paper extraction cavity (5); A limiting sleeve (111) is slidably disposed in each brush slot (110), the limiting sleeve (111) having a pushing portion (112), the pushing portion (112) being used to push the paper towel baffle (51) to rotate toward the paper extraction cavity (5); a limiting seat (113) is slidably disposed at the bottom of each brush slot (110), a transmission assembly (7) is disposed between the limiting seat (113) and the limiting sleeve (111); The transmission assembly (7) includes a transmission plate (71) and a transmission rod (72). A transmission groove (73) is further formed in the side wall of the brush groove (110). The transmission rod (72) is fixedly connected to the side wall of the transmission groove (73). The transmission plate (71) is sleeved on the transmission rod (72), and the transmission plate (71) and the transmission rod (72) are connected by a torsion spring. One end of the transmission plate (71) abuts against the limit sleeve (111), and the other end of the transmission plate (71) abuts against the limit seat (113). The abutting portion (55) pushes the limit sleeve (111) to move towards the transmission groove (73). The transmission plate (71) pushes the limit seat (113), so that one end of the limit seat (113) pushes the tissue paper baffle (51), and the lock catch (53) on the tissue paper baffle (51) is snapped into the upper wall of the tissue paper cavity (5).
2. The integrated structure of a mirror cabinet according to claim 1, characterized in that: The linkage assembly (6) includes a slider (61), a linkage elastic member (62) and a linkage rope (63). A chute (64) is formed in the refrigerator door (44). The slider (61) is slidably arranged in the chute (64). The linkage elastic member (62) is located in the chute (64), one end of which is fixedly connected to the slider (61), and the other end is fixedly connected to the side wall of the chute (64). One end of the linkage rope (63) is fixedly connected to the slider (61), and the other end is fixedly connected to the linkage door (11).
3. A mirror cabinet integrated structure according to any one of claims 1-2, characterized in that: A drying rod (32) is arranged in the drying cavity (3). A driving assembly (8) for rotating the drying rod (32) is arranged at the bottom of the drying rod (32). The drying rod (32) has a bent section (321) which bends away from the drying fan (42). A support rod (33) is arranged at the upper part of the drying rod (32).
4. The integrated structure of a mirror cabinet according to claim 3, characterized in that: The support rod (33) is rotatably connected to the drying rod (32). The upper part of the drying rod (32) has an inclined portion (322) and a horizontal portion (323). A counterweight (34) is arranged at one end of the support rod (33) facing the inclined portion (322). The counterweight (34) forces the support rod (33) to abut against the inclined portion (322). An unfolding assembly (9) for unfolding the towel is arranged on the support rod (33).
5. The integrated structure of a mirror cabinet according to claim 4, characterized in that: The unfolding assembly (9) includes an unfolding plate (91) rotatably arranged on the support rod (33). A pushing block (92) is fixedly arranged at the bottom of the support rod (33). A spreading groove (93) is formed in the horizontal portion (323). A spreading block (94) is slidably arranged in the spreading groove (93). The pushing block (92) is used to push the spreading block (94), so that the spreading block (94) pushes the unfolding plate (91) to unfold.
6. The integrated structure of a mirror cabinet according to claim 3, characterized in that: The cabinet body (1) is provided with a driving groove (81). The driving assembly (8) includes a rotating rack (82) rotatably connected to the drying door (31), a moving rack (83) located in the driving groove (81), and a gear (84) meshing with the moving rack (83) and the rotating rack (82) respectively. The rotating rack (82) is connected to the drying door (31) through a rotating elastic member (821). The rotating elastic member (821) has a tendency to force the rotating rack (82) to rotate towards the gear (84). The moving rack (83) and the side wall of the driving groove (81) are fixedly connected with a moving elastic member (831). The moving rack (83) is fixedly provided with a convex portion (832) to prevent the moving rack (83) from disengaging from the driving groove (81). A detachment prevention block (85) is rotatably connected to the lower part of the gear (84), and the detachment prevention block (85) is movably arranged in the driving groove (81).
7. The integrated structure of a mirror cabinet according to claim 6, wherein: A storage groove (35) is further arranged in the drying cavity (3). A storage door (351) is arranged at the outlet of the storage groove (35). The storage door (351) is connected to the outlet of the storage groove (35) through a torsion spring. A unlocking groove (352) is communicated between the storage groove (35) and the driving groove (81). A unlocking block (353) is slidably connected in the unlocking groove (352). A unlocking elastic member (354) is connected between the unlocking block (353) and the side wall of the unlocking groove (352). The unlocking elastic member (354) is used to push the unlocking block (353) to be clamped to the storage door (351). A rotating block (355) is rotatably connected to the side wall of the storage groove (35). The rotating block (355) is connected to the unlocking block (353) through a pulling rope (356). A driving block (357) is fixedly arranged on the detachment prevention block (85). The driving block (357) is used to push the rotating block (355) to rotate, forcing the unlocking block (353) to disengage from the storage door (351). The upper part of the gear (84) is detachably connected to the drying rod (32).
Citation Information
Patent Citations
Household storage and drying integrated intelligent shoe cabinet
CN113080628A
Embedded small sliding door type intelligent cabinet double-layer linkage door
CN115961866A