Wardrobe folding sliding door unit, integral wardrobe with such unit and manufacturing method
By designing a special storage box and a timed opening device in the wardrobe folding sliding door unit, the problem of scattered placement of activated carbon bags in the overall wardrobe is solved, ensuring its formaldehyde adsorption effect, and reminding users to release formaldehyde in a timely manner.
Patent Information
- Application Number
- CN202310741654.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-21
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2043-06-21
AI Technical Summary
The lack of special storage space in the existing overall wardrobe leads to the need to be placed in a mess, which is easy to be covered by clothes or missed, affecting its formaldehyde adsorption effect.
A wardrobe folding sliding door unit is designed, including sliding door module, storage box and timing opening device. The storage box is installed in the storage tank in the middle of the door panel, and the hollow side is connected to the inside of the cabinet. The regular opening device automatically opens the storage box after a certain number of times, reminding you to remove the activated carbon bag.
The activated carbon bag is stored in a special storage space, and the problems of being covered and missed removal are avoided, the adsorption effect of activated carbon is ensured, and the user is reminded to release formaldehyde in a timely manner through the timed opening device.
Smart Images

Figure CN116838231B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of folding sliding door integrated wardrobes, in particular to a wardrobe folding sliding door unit, an integrated wardrobe with the unit and a manufacturing method thereof. Background Art
[0002] The whole wardrobe is a necessary piece of furniture for people's homes. Its specific structure includes a cabinet body and a cabinet door. There are different designs for the cabinet door. There is a whole wardrobe with folding sliding doors. Its cabinet door consists of one or more sets of door panels that can be folded and rotated. When the wardrobe is opened, a set of folded and rotated door panels is rotated and folded;
[0003] In the manufacturing process of the whole wardrobe, glue is inevitably used, and glue contains a certain amount of formaldehyde. The formaldehyde release cycle in the wardrobe is about 3-15 years. Therefore, in order to ensure health and achieve the effect of deodorization during daily use, people will place activated carbon inside the whole wardrobe. However, the existing whole wardrobe has no storage space for activated carbon, either inside the cabinet or on the cabinet door. Therefore, the activated carbon needs to be placed in the compartment inside the cabinet in a scattered manner, and the scattered placement is prone to the following problems:
[0004] 1. Clothes easily cover the activated carbon bag, which makes it difficult for the activated carbon bag to adsorb smoothly;
[0005] 2. When people take clothes, they are likely to carry the activated carbon bag with them, causing it to fall off;
[0006] 3. After the activated carbon bag reaches the upper limit of formaldehyde adsorption, it needs to be taken out and placed in a high temperature environment of the sun to release formaldehyde. Otherwise, its formaldehyde adsorption effect will decrease and it will not be able to continue to achieve formaldehyde adsorption work. However, people often forget and fail to take out the activated carbon bag in time for exposure and release.
[0007] Therefore, we propose a wardrobe folding sliding door unit, and an overall wardrobe with the unit and a manufacturing method. Summary of the invention
[0008] 1. Technical issues to be resolved
[0009] In view of the deficiencies in the prior art, the present invention provides a wardrobe folding and sliding door unit, and an integral wardrobe with the unit and a manufacturing method, which solves the problem that activated carbon bags in the existing integral wardrobe need to be placed randomly.
[0010] (II) Technical solution
[0011] To achieve the above object, the present invention is realized through the following technical solutions: a wardrobe folding sliding door unit, including a sliding door module, the sliding door module is composed of two symmetrically arranged door panels rotatably connected by hinges, at least one accommodating groove is formed in the middle of the door panel, and the inner wall of the accommodating groove is rotatably installed with a storage box for storing activated carbon packets through a torsion rotation connection structure installed in the accommodating groove. One side of the storage box is provided with a hollow shape, and timing opening devices are installed at positions corresponding to the storage box on the sides of the two door panels close to each other. The timing opening device is composed of a buckle structure arranged on the inner wall of the accommodating groove for limiting the vertical state of the storage box and an unlocking mechanism installed on one side of the buckle structure for driving the buckle structure to unlock when the sliding door module is opened and closed a certain number of times.
[0012] Preferably, on the sides of the tops of the two door panels away from each other and the sides of the bottoms away from each other, connecting rods are rotatably installed through bearings, and the ends of the connecting rods away from the door panels are rotatably connected with rollers through axles.
[0013] Preferably, the top of the storage box is arc-shaped, and the bottom of the storage box is semi-circular.
[0014] Preferably, the top of the accommodating groove is also arc-shaped, and the top of the storage box is rotatably nested in the top of the accommodating groove.
[0015] Preferably, the torsion rotation connection structure includes a rotating shaft, a circular groove and a torsion spring. The inner wall of the accommodating groove is symmetrically and rotatably connected with rotating shafts through bearings. One end of the two rotating shafts located inside the accommodating groove is respectively fixed to the outer walls of both ends of the storage box. Circular grooves are formed in the door panel at positions corresponding to the rotating shafts. One end of the rotating shaft away from the storage box is located inside the circular groove. A torsion spring is sleeved on one end of the rotating shaft located inside the circular groove. One end of the torsion spring is fixed to the outer wall of the rotating shaft, and the other end of the torsion spring is fixed to the inner wall of the circular groove.
[0016] Preferably, the buckle structure includes a lower horizontal sliding groove, an L-shaped moving sleeve, a clamping strip, a clamping groove, a second spring and a third spring. A lower horizontal sliding groove is formed on the side of the inner wall of the accommodating groove close to the other door panel. An L-shaped moving sleeve is slidably connected to the inner wall of the lower horizontal sliding groove. One end of the L-shaped moving sleeve close to the storage box is hollow. A clamping strip is slidably nested in the inner wall of the L-shaped moving sleeve. One side of the clamping strip close to the storage box is inclined. A clamping groove is formed at one end of the storage box close to the clamping strip. The end of the clamping strip is clamped with the clamping groove. A second spring is fixed to the inner wall of the L-shaped moving sleeve, and the end of the second spring is in extrusion contact with the outer wall of the clamping strip. A third spring is fixed to the outer wall of the lower end of the L-shaped moving sleeve, and the end of the third spring away from the L-shaped moving sleeve is fixed to the inner wall of the lower horizontal sliding groove.
[0017] Preferably, the unlocking mechanism includes a stepped groove, a micro-reducer, an upper horizontal sliding groove, a gear, a driving strip, a fourth spring, a rack portion, a driving wheel, an arc-shaped sunk groove and a driving block. One end of the inner wall of the lower horizontal sliding groove away from the storage box is also provided with a stepped groove. A micro-reducer is fixed on the inner wall at the upper end of the stepped groove. An upper horizontal sliding groove is also formed on the inner wall at the upper end of the stepped groove. One end of the upper horizontal sliding groove penetrates through the door panel and extends to the outer wall of the door panel. A gear is installed on the input end of the micro-reducer through a one-way bearing. A driving strip is slidably connected to the inner wall of the upper horizontal sliding groove. One end of the driving strip away from the inner side of the upper horizontal sliding groove is semicircularly arranged. A fourth spring is fixed on one end of the driving strip located inside the upper horizontal sliding groove. The end of the fourth spring away from the driving strip is fixed to the inner wall of the upper horizontal sliding groove. A rack portion is formed on one side of the driving strip close to the gear. The gear is meshed with the rack portion. The output end of the micro-reducer is fixed with a driving wheel. An arc-shaped sunk groove is formed on the outer wall of the driving wheel. A driving block is fixed to one end of the L-shaped moving sleeve close to the arc-shaped sunk groove. One end of the driving block close to the driving wheel is semicircularly arranged. One end of the driving block close to the driving wheel is in pressing contact with the outer wall of the driving wheel.
[0018] Preferably, there are two accommodating grooves arranged vertically on the door panel from top to bottom.
[0019] The present invention also provides an overall wardrobe with a wardrobe folding sliding door unit, including a cabinet body and a wardrobe folding sliding door unit as described above. The upper and lower ends of one side of the cabinet body close to the opening are both fixed with slide rails, and the rollers are rollingly nested inside the slide rails.
[0020] The present invention also provides a manufacturing method of an overall wardrobe with a wardrobe folding sliding door unit, which is used to manufacture the overall wardrobe with the wardrobe folding sliding door unit as described above. The specific steps are as follows:
[0021] S1. First, assemble the above-mentioned wardrobe folding sliding door unit;
[0022] S2. Manufacture the cabinet body and fix the slide rails at the upper and lower ends of one side of the opening of the cabinet body respectively;
[0023] S3. Nest the rollers on the assembled wardrobe folding sliding door unit in step S1 into the inner sides of the upper and lower slide rails respectively to complete the assembly work of the wardrobe folding sliding door unit and the cabinet body.
[0024] (III) Beneficial effects
[0025] The present invention provides a wardrobe folding sliding door unit, an overall wardrobe with this unit and a manufacturing method. Compared with the prior art, the following beneficial effects are achieved:
[0026] (1) By providing an easy-to-place groove and a storage box on the door panel, the activated carbon packet can be stored inside the storage box during use. The storage box is connected to the inner side of the cabinet through its hollowed side, so that the inner side of the cabinet can be dehumidified and formaldehyde can be adsorbed through the hollow part of the storage box. Since there is a dedicated space for storing the activated carbon packet, the situation where the activated carbon packet is covered by clothes is avoided, ensuring the adsorption effect of the activated carbon and preventing the activated carbon packet from being carried and dropped when taking clothes.
[0027] (2) By providing a torsion rotation connection structure in cooperation with a timing opening device, after a sliding door module is opened and closed a certain number of times, that is, when the activated carbon reaches approximately the adsorption limit, the storage box can be automatically rotated and opened towards the outside of the cabinet, so as to remind people to take out the activated carbon packet for sun exposure and release work, reducing the probability of the situation where the activated carbon packet is not taken out and released for a long time. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 Structural schematic diagram of the present invention;
[0029] Figure 2 Structural schematic diagram of the position of the accommodation groove of the present invention;
[0030] Figure 3 Structural schematic diagram of the torsion rotation connection structure of the present invention;
[0031] Figure 4 Structural schematic diagram of the storage box of the present invention;
[0032] Figure 5 Structural schematic diagram of the position of the card slot of the present invention;
[0033] Figure 6 Structural schematic diagram of the unlocking mechanism of the present invention (one);
[0034] Figure 7 Structural schematic diagram of the unlocking mechanism of the present invention (two);
[0035] Figure 8 Structural schematic diagram of the unlocking mechanism of the present invention (three);
[0036] Figure 9 Structural schematic diagram of the buckle structure of the present invention (one);
[0037] Figure 10 Structural schematic diagram of the buckle structure of the present invention (two);
[0038] Figure 11 Structural schematic diagram of the step groove of the present invention;
[0039] Figure 12 Structural schematic diagram of the second embodiment of the present invention;
[0040] Figure 13 For the present invention Figure 12 magnified view of part A;
[0041] Figure 14 Schematic diagram of the cabinet structure of the present invention;
[0042] Figure 15 Flow chart of the method of the present invention.
[0043] In the figure, 100, sliding door module; 1, door panel; 2, accommodating groove; 3, storage box; 4, torsion rotation connection structure; 41, rotating shaft; 42, circular groove; 43, torsion spring; 5, timed opening device; 6, buckle structure; 61, lower horizontal sliding groove; 62, L-shaped moving sleeve; 63, clamping strip; 64, clamping groove; 65, second spring; 66, third spring; 7, unlocking mechanism; 71, stepped groove; 72, micro-reducer; 73, upper horizontal sliding groove; 74, gear; 75, driving strip; 76, fourth spring; 77, rack portion; 78, driving wheel; 79, arc-shaped sinking groove; 8, connecting rod; 9, roller; 200, cabinet; 300, slide rail. Detailed implementation manners
[0044] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0045] Embodiment 1
[0046] Please refer to Figure 1-13, an embodiment of the present invention provides a technical solution: a wardrobe folding sliding door unit, including a sliding door module 100. The sliding door module 100 is composed of two symmetrically arranged door panels 1 rotatably connected by hinges. At the mutually distant sides of the tops and bottoms of the two door panels 1, connecting rods 8 are rotatably installed through bearings. One end of the connecting rod 8 away from the door panel 1 is rotatably connected to a roller 9 through a pin. Two accommodating grooves 2 are formed in the middle of the door panel 1. A storage box 3 for storing activated carbon packets is rotatably installed in the accommodating groove 2 through a torsion rotation connection structure 4 installed on the inner wall of the accommodating groove 2. One side of the storage box 3 is provided in a hollow shape. The top of the storage box 3 is provided in an arc shape, and the bottom of the storage box 3 is provided in a semi-circular shape. The top of the accommodating groove 2 is also provided in an arc shape, and the top of the storage box 3 is rotatably nested in the top of the accommodating groove 2. When the storage box 3 rotates, its top can just slide along the inner wall of the top of the accommodating groove 2. Timing opening devices 5 are installed at the positions corresponding to the storage box 3 on the mutually close sides of the two door panels 1. The timing opening device 5 is composed of a buckle structure 6 provided on the inner wall of the accommodating groove 2 for limiting the vertical state of the storage box 3 and an unlocking mechanism 7 installed on one side of the buckle structure 6 for driving the buckle structure 6 to unlock when the sliding door module 100 is opened and closed a certain number of times. When the sliding door module 100 is installed on the wardrobe, it is ensured that the hollow side of the storage box 3 faces the inside of the cabinet body 200. Activated carbon packets are placed inside the storage box 3. Through the hollow gap of the storage box 3, the inside of the storage box 3 is connected to the inner space of the cabinet body 200. The activated carbon packets can adsorb moisture and formaldehyde in the inner space of the cabinet body 200. Since there is a special storage space for the activated carbon packets, the activated carbon packets will not be covered by clothes during the adsorption work, so that the normal adsorption work can be ensured, and they will not be carried out of the wardrobe when taking clothes. And because the timing opening device 5 is provided, when the two door panels 1 are opened and closed a certain number of times, the storage box 3 can be driven to rotate outward and open, so as to achieve the effect of reminding people to take out the activated carbon packets for formaldehyde release work, avoiding forgetting and ensuring the timeliness of the activated carbon packet release. It should be emphasized that the setting of the timing opening device 5 can be calculated according to the number of times most users open and close the sliding door module 100 daily. Generally, people open and close the sliding door module 100 three times a day, and the activated carbon packets are generally replaced and released every 7 to 15 days. Taking 10 days for replacement as an example, the specific structure of the timing opening device 5 is set so that when the two door panels 1 are opened and closed 30 times, the storage box 3 is driven to rotate and open automatically.
[0047] The torsion rotation connection structure 4 includes a rotating shaft 41, a circular groove 42, and a torsion spring 43. The inner wall of the accommodating groove 2 is symmetrically and rotatably connected to the rotating shaft 41 through bearings. One end of each of the two rotating shafts 41 located inside the accommodating groove 2 is fixed to the outer walls of both ends of the storage box 3. Circular grooves 42 are provided at positions on the door panel 1 corresponding to the rotating shafts 41. One end of the rotating shaft 41 away from the storage box 3 is located inside the circular groove 42. A torsion spring 43 is sleeved on one end of the rotating shaft 41 located inside the circular groove 42. One end of the torsion spring 43 is fixed to the outer wall of the rotating shaft 41, and the other end of the torsion spring 43 is fixed to the inner wall of the circular groove 42. The torsion rotation connection structure 4 enables the storage box 3 to always have a tendency to rotate and open outward. That is, when the timing opening device 5 unlocks the storage box 3 a certain number of times, the storage box 3 can automatically flip and open outward under the action of the torsion rotation connection structure 4.
[0048] The buckle structure 6 includes a lower horizontal sliding groove 61, an L-shaped moving sleeve 62, a clamping strip 63, a clamping groove 64, a second spring 65, and a third spring 66. A lower horizontal sliding groove 61 is provided on the inner wall of the accommodating groove 2 near the other door panel 1. An L-shaped moving sleeve 62 is slidably connected to the inner wall of the lower horizontal sliding groove 61. One end of the L-shaped moving sleeve 62 close to the storage box 3 is hollow. A clamping strip 63 is slidably nested on the inner wall of the L-shaped moving sleeve 62. One side of the clamping strip 63 close to the storage box 3 is inclined. A clamping groove 64 is provided at one end of the storage box 3 close to the clamping strip 63. The end of the clamping strip 63 is clamped with the clamping groove 64. A second spring 65 is fixed to the inner wall of the L-shaped moving sleeve 62. The end of the second spring 65 is in pressing contact with the outer wall of the clamping strip 63. A third spring 66 is fixed to the outer wall of the lower end of the L-shaped moving sleeve 62. One end of the third spring 66 away from the L-shaped moving sleeve 62 is fixed to the inner wall of the lower horizontal sliding groove 61. The buckle structure 6 is used to limit the vertical position of the storage box 3. After the activated carbon packet is placed in the storage box 3, the storage box 3 is flipped inward to the accommodating groove 2, and finally the storage box 3 rotates to a vertical state, and the storage box 3 is locked by the buckle structure 6.
[0049] The unlocking mechanism 7 includes a stepped groove 71, a micro-reducer 72, an upper horizontal sliding groove 73, a gear 74, a driving strip 75, a fourth spring 76, a rack portion 77, a driving wheel 78, an arc-shaped sunk groove 79 and a driving block. At one end of the inner wall of the lower horizontal sliding groove 61 away from the storage box 3, a stepped groove 71 is further provided. On the inner wall at the upper end of the stepped groove 71, a micro-reducer 72 is fixed. On the inner wall at the upper end of the stepped groove 71, an upper horizontal sliding groove 73 is further provided. One end of the upper horizontal sliding groove 73 penetrates through the door panel 1 and extends to the outer wall of the door panel 1. On the input end of the micro-reducer 72, a gear 74 is installed through a one-way bearing. A driving strip 75 is slidably connected to the inner wall of the upper horizontal sliding groove 73. One end of the driving strip 75 away from the inner side of the upper horizontal sliding groove 73 is semicircularly arranged. On one end of the driving strip 75 located on the inner side of the upper horizontal sliding groove 73, a fourth spring 76 is fixed. The end of the fourth spring 76 away from the driving strip 75 is fixed to the inner wall of the upper horizontal sliding groove 73. A rack portion 77 is formed on the side of the driving strip 75 close to the gear 74. The gear 74 is meshed with the rack portion 77. The output end of the micro-reducer 72 is fixed with a driving wheel 78. An arc-shaped sunk groove 79 is provided on the outer wall of the driving wheel 78. One end of the L-shaped moving sleeve 62 close to the arc-shaped sunk groove 79 is fixed with a driving block. One end of the driving block close to the driving wheel 78 is semicircularly arranged. One end of the driving block close to the driving wheel 78 is in pressing contact with the outer wall of the driving wheel 78. The unlocking mechanism 7 is linked with the opening and closing of the door panel 1, and the power of the opening and closing of the door panel 1 is used to unlock the buckle structure 6;
[0050] During specific use, each time the sliding door module 100 is opened, the two door panels 1 rotate and close towards each other. Due to the loss of the extrusion of one door panel 1 on the corresponding side, under the elastic force of the fourth spring 76, the driving strip 75 is pushed to slide towards the outer side of the door panel 1. It should be emphasized here that the upper and lower positions of the two upper horizontal sliding grooves 73 at the same upper end or the two upper horizontal sliding grooves 73 at the same lower end on the two door panels 1 of each sliding door module 100 will be staggered a little, so as to ensure that when the two door panels 1 are closed, one door panel 1 on one side can squeeze the driving strip 75 on the corresponding side door panel 1 to make it slide and contract towards the inner side of the upper horizontal sliding groove 73, rather than relying on the mutual extrusion and pushing of the driving strips 75 at two relative positions to make each other contract and slide;
[0051] When it slides, the rack portion 77 moves to drive the gear 74 to rotate. At this time, through the action of the one-way bearing, the rotation of the gear 74 can drive the input end of the micro-reducer 72 to rotate, and then the output end of the micro-reducer 72 rotates, driving the drive wheel 78 to rotate. When the sliding door module 100 is closed, the two door panels 1 are in a straight and unfolded state. In this process, the door panel 1 on the corresponding side can finally squeeze the drive bar 75, so that the drive bar 75 overcomes the elastic force of the fourth spring 76 and slides on the inner side of the upper horizontal slide groove 73. In this process, the rack portion 77 drives the gear 74 to rotate, and through the one-way bearing The effect of the micro reducer 72 is not able to rotate the input end, and it should be emphasized that each time the sliding door module 100 is opened and closed, the driving wheel 78 rotates 12 degrees, which corresponds to the entire timing opening device 5 automatically opening the storage box 3 when the two door panels 1 are opened and closed 30 times. When the sliding door module 100 is continuously opened and closed, the driving wheel 78 finally rotates to the arc-shaped groove 79 thereon to correspond to the driving block, and then the L-shaped movable sleeve 62 is pushed to slide to the side close to the driving wheel 78 under the action of the rebound force of the third spring 66, and the end of the driving block is pressed on the arc-shaped groove 79. The card strip 63 is then separated from the card slot 64 by the inner side, and then the rotating shaft 41 is rotated under the action of the rebound force of the torsion spring 43, so that the storage box 3 is flipped open to the side away from the cabinet 200, and then the activated carbon bag inside can be taken out and exposed to the sun to release formaldehyde, and then the activated carbon bag is placed inside the storage box 3. Then, because the arc-shaped sink groove 79 is still aligned with the driving block at this time, the card strip 63 and the card slot 64 are staggered, and even if the storage box 3 is pushed to rotate inwardly of the accommodating groove 2, it cannot be locked. Therefore, it is necessary to open and close the sliding door module 100 again, so that the arc-shaped sink groove 79 and the card slot 64 are aligned. The driving block is offset and pressed against the outer wall of the driving wheel 78 again, and the card strip 63 is reset. Then the storage box 3 can be rotated toward the inner side of the accommodating groove 2 to make the storage box 3 flip over. During the flipping process, the inclined surface of the card strip 63 can be squeezed by the outer wall of the storage box 3, so that the card strip 63 slides toward the inner side of the L-shaped movable sleeve 62 until the storage box 3 is rotated to a vertical state. At this time, the card strip 63 is opposite to the card slot 64, and under the action of the rebound force of the second spring 65, the card strip 63 is pushed to the inner side of the card slot 64 to position the storage box 3, thereby completing the operation of timing to open the storage box 3.
[0052] Embodiment 2
[0053] See also Figure 12 , Figure 13 and Figure 14The present invention also provides an integral wardrobe with a wardrobe folding sliding door unit, which includes a cabinet body 200 and a wardrobe folding sliding door unit of Embodiment 1. At the upper and lower ends of one side of the cabinet body 200 close to the opening, slide rails 300 are fixedly installed. The rollers 9 are nested and rolled inside the slide rails 300. The hollow side of the storage box 3 on the wardrobe folding sliding door unit is aligned with the inside of the cabinet body 200. When pulling the two door panels 1 to close, the rollers 9 roll inside the slide rails 300, and the connecting rod 8 on the door panel 1 also rotates relative to the door panel 1.
[0054] Embodiment 3
[0055] Please refer to Figure 15 , the present invention also provides a manufacturing method for an integral wardrobe with a wardrobe folding sliding door unit, which is used to manufacture the integral wardrobe with a wardrobe folding sliding door unit of Embodiment 2. The specific steps are as follows:
[0056] S1. First, assemble the above-mentioned wardrobe folding sliding door unit;
[0057] S2. Manufacture the cabinet body 200, and fixedly install the slide rails 300 at the upper and lower ends of one side of the opening of the cabinet body 200 respectively;
[0058] S3. Nest the rollers 9 on the assembled wardrobe folding sliding door unit in Step S1 into the inner sides of the upper and lower slide rails 300 respectively to complete the assembly work of the wardrobe folding sliding door unit and the cabinet body 200.
[0059] Meanwhile, the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0060] It should be noted that, in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or sequence between these entities or operations. Moreover, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0061] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. Wardrobe folding sliding door unit, characterized in that: It includes a sliding door module (100), and the sliding door module (100) is composed of two symmetrically arranged door panels (1) rotatably connected by hinges. At least one accommodating groove (2) is formed in the middle of the door panel (1). A storage box (3) for storing activated carbon packets is rotatably installed on the inner wall of the accommodating groove (2) through a torsion rotating connection structure (4) installed in the accommodating groove (2). One side of the storage box (3) is provided in a hollow shape. Timing opening devices (5) are installed at positions corresponding to the storage box (3) on the sides of the two door panels (1) close to each other. The timing opening device (5) is composed of a buckle structure (6) arranged on the inner wall of the accommodating groove (2) for limiting the vertical state of the storage box (3) and an unlocking mechanism (7) installed on one side of the buckle structure (6) for driving the buckle structure (6) to unlock when the sliding door module (100) is opened and closed a certain number of times; The buckle structure (6) includes a lower horizontal sliding groove (61), an L-shaped moving sleeve (62), a clamping strip (63), a clamping groove (64), a second spring (65) and a third spring (66). A lower horizontal sliding groove (61) is formed on the inner wall of the accommodating groove (2) close to the other door panel (1). An L-shaped moving sleeve (62) is slidably connected to the inner wall of the lower horizontal sliding groove (61). One end of the L-shaped moving sleeve (62) close to the storage box (3) is hollow. A clamping strip (63) is slidably nested on the inner wall of the L-shaped moving sleeve (62). One side of the clamping strip (63) close to the storage box (3) is inclined. A clamping groove (64) is formed at one end of the storage box (3) close to the clamping strip (63). The end of the clamping strip (63) is clamped with the clamping groove (64). A second spring (65) is fixed on the inner wall of the L-shaped moving sleeve (62). The end of the second spring (65) is in pressing contact with the outer wall of the clamping strip (63). A third spring (66) is fixed on the outer wall of the lower end of the L-shaped moving sleeve (62). The end of the third spring (66) away from the L-shaped moving sleeve (62) is fixed to the inner wall of the lower horizontal sliding groove (61); The unlocking mechanism (7) includes a stepped groove (71), a micro-reducer (72), an upper horizontal sliding groove (73), a gear (74), a driving strip (75), a fourth spring (76), a rack portion (77), a driving wheel (78), an arc-shaped sunk groove (79) and a driving block. An inner wall of one end of the lower horizontal sliding groove (61) away from the storage box (3) is further provided with a stepped groove (71). A micro-reducer (72) is fixed on an inner wall of the upper end of the stepped groove (71). An upper horizontal sliding groove (73) is further formed on the inner wall of the upper end of the stepped groove (71). One end of the upper horizontal sliding groove (73) penetrates through the door panel (1) and extends to the outer wall of the door panel (1). A gear (74) is mounted on an input end of the micro-reducer (72) through a one-way bearing. A driving strip (75) is slidably connected to an inner wall of the upper horizontal sliding groove (73). One end of the driving strip (75) away from the inner side of the upper horizontal sliding groove (73) is arranged in a semi-circular shape. A fourth spring (76) is fixed on one end of the driving strip (75) located on the inner side of the upper horizontal sliding groove (73). One end of the fourth spring (76) away from the driving strip (75) is fixed to the inner wall of the upper horizontal sliding groove (73). A rack portion (77) is formed on a side of the driving strip (75) close to the gear (74). The gear (74) is meshed with the rack portion (77). An output end of the micro-reducer (72) is fixed with a driving wheel (78). An arc-shaped sunk groove (79) is formed on an outer wall of the driving wheel (78). A driving block is fixed to one end of the L-shaped moving sleeve (62) close to the arc-shaped sunk groove (79). One end of the driving block close to the driving wheel (78) is arranged in a semi-circular shape. One end of the driving block close to the driving wheel (78) is in pressing contact with the outer wall of the driving wheel (78).
2. The wardrobe folding sliding door unit according to claim 1, characterized in that: Connecting rods (8) are rotatably mounted on both sides of the tops and bottoms of the two door panels (1) away from each other through bearings. One end of the connecting rod (8) away from the door panel (1) is rotatably connected to a roller (9) through a pin.
3. The wardrobe folding sliding door unit according to claim 2, characterized in that: The top of the storage box (3) is arranged in an arc shape, and the bottom of the storage box (3) is arranged in a semi-circular shape.
4. The wardrobe folding sliding door unit according to claim 3, characterized in that: The top of the accommodation groove (2) is also arranged in an arc shape, and the top of the storage box (3) is rotatably nested on the top of the accommodation groove (2).
5. The wardrobe folding sliding door unit according to claim 4, characterized in that: The torsion rotation connection structure (4) includes a rotating shaft (41), a circular groove (42) and a torsion spring (43). Rotating shafts (41) are symmetrically and rotatably connected to an inner wall of the accommodation groove (2) through bearings. One ends of the two rotating shafts (41) located inside the accommodation groove (2) are respectively fixed to outer walls of both ends of the storage box (3). Circular grooves (42) are formed in the door panel (1) at positions corresponding to the rotating shafts (41). One end of the rotating shaft (41) away from the storage box (3) is located inside the circular groove (42). A torsion spring (43) is sleeved on one end of the rotating shaft (41) located inside the circular groove (42). One end of the torsion spring (43) is fixed to the outer wall of the rotating shaft (41), and the other end of the torsion spring (43) is fixed to the inner wall of the circular groove (42).
6. The wardrobe folding sliding door unit according to claim 1, characterized in that: There are two of the accommodating grooves (2) arranged on the door panel (1) from top to bottom.
7. The integral wardrobe with a folding sliding door unit for a wardrobe, characterized in that: It includes a cabinet body (200) and a wardrobe folding sliding door unit as described in any one of claims 2-6 above. Slide rails (300) are fixed to both the upper end and the lower end of the side of the cabinet body (200) close to the opening, and the rollers (9) are rollingly nested inside the slide rails (300).
8. Method for manufacturing an integral wardrobe with a wardrobe folding sliding door unit, characterized in that; For manufacturing an overall wardrobe with the wardrobe folding sliding door unit as described in claim 7 above, the specific steps are as follows: S1. First, assemble the wardrobe folding sliding door unit as described in any one of claims 1-7 above; S2. Manufacture the cabinet body (200), and fix the slide rails (300) to the upper end and the lower end of one side of the opening of the cabinet body (200) respectively; S3. Nest the rollers (9) on the assembled wardrobe folding sliding door unit in step S1 into the inner sides of the upper and lower slide rails (300) respectively to complete the assembly work of the wardrobe folding sliding door unit and the cabinet body (200).
Citation Information
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