Anti-swing type door moving device capable of being installed in embedded mode

Through the anti-swing type embedded-mountable door moving device, the problem of the flip-up door support structure affecting the beauty and reducing space is solved, and the stable support and convenient access of the cabinet door are achieved.

CN120367482APending Publication Date: 2025-07-25GUANGDONG TUTTI HARDWARE CO LTD
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Patent Information

Application Number
CN202510721792.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2024-11-18
Filing Date
2025-05-30
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

The support structure of the existing flip door forms a protrusion on the inner side wall of the cabinet, affecting the beauty and reducing the storage space. The swing arm is unstable, resulting in inconvenient access to items.

Method used

The anti-swing type embedded-mountable door moving device is adopted, including the installation box, the anti-swing link, the elastic module and the stability link. The installation box is embedded in the cabinet body, the anti-swing link is hinged with the inner wall of the installation box, and the anti-swing slide of the elastic module is nested with the notch of the anti-swing link, so as to achieve stable support and swing stability of the cabinet door.

Benefits of technology

Avoid protruding on the inner side wall of the cabinet, increase the storage space, improve the stability of the cabinet door opening, reduce shaking, and facilitate the storage and access of items.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an anti-swing type door moving device capable of being installed in an embedded mode. The anti-swing type door moving device comprises an installation box used for being installed in a cabinet body in an embedded mode. The quick mounting seat is used for being mounted on a cabinet door; a swing arm of the anti-swing connecting rod is hinged to the inner wall of the mounting box, and a telescopic arm of the anti-swing connecting rod is hinged to the quick mounting seat; an anti-swing sliding block is arranged at the elastic end of the elastic module, the anti-swing sliding block is provided with an anti-swing arc rail, a notch is formed in a swing arm of the anti-swing connecting rod, and the notch and the anti-swing arc rail are arranged in a nested mode. The cabinet has the effects of improving the opening and closing stability of the cabinet door, reducing the installation occupied space and increasing the capacity in the cabinet.
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Description

Technical Field

[0001] The present application relates to the technical field of furniture accessories, and in particular to an anti-sway type embedded door moving device. Background Art

[0002] In the development process of the furniture industry, people pay more and more attention to the functionality and space utilization efficiency of furniture. With the continuous changes in living space and people's diverse usage needs, how to achieve efficient use of furniture in a limited space has become an important research direction. As a special form of cabinet door, the flip door came into being. It can effectively save the installation space of furniture, especially suitable for some special application scenarios. It has been widely used in the design of cabinets and other furniture, which greatly meets the user's needs for furniture space utilization and operational convenience, and promotes the furniture industry to develop in a more humane and efficient direction.

[0003] In order to enable the upward-flip door to open smoothly and remain in an open state, existing upward-flip door furniture is usually also provided with a supporting structure, in which the main part of the supporting structure is fixedly arranged on the inner wall of the cabinet body, and the supporting part of the supporting structure is hingedly arranged on the inner wall of the cabinet door, thereby providing support for the cabinet door when it is flipped upward, so as to keep the cabinet door in an open state when it is flipped upward to a predetermined angle, so as to prevent the cabinet door from returning to a closed state due to its own gravity.

[0004] However, after the main part of the existing supporting structure is fixedly arranged on the inner wall of the cabinet, the main part of the supporting structure will form a protruding structure on the inner wall of the cabinet, which not only affects the appearance, but also causes the storage space of the cabinet to be reduced, resulting in inconvenience in storing and retrieving items; in addition, the swing arm part of the existing supporting structure adopts a swinging method, which is prone to shaking during the swinging process, and needs to be coordinated with the hinge structure to stabilize the door body. The setting and installation of the hinge structure will also cause the storage space of the cabinet to be reduced, resulting in inconvenience in storing and retrieving items; therefore, further improvements can be made. Summary of the invention

[0005] In order to solve the above problems, the present application provides an anti-swing type embedded door moving device.

[0006] The present application provides an anti-sway type embedded door moving device, which adopts the following technical solution: An anti-sway type embedded door moving device comprises an installation box, wherein the installation box is used for embedded installation in a cabinet; Quick-release seat, which is used to be installed on the cabinet door; An anti-sway link, a swing arm of the anti-sway link is hinged to the inner wall of the installation box, and a telescopic arm of the anti-sway link is hinged to the quick-install seat; Elastic module, an anti-sway slider is provided at the elastic end of the elastic module. The anti-sway slider has an anti-sway arc track, and a notch is provided on the swing arm of the anti-sway connecting rod. The notch is nested with the anti-sway arc track.

[0007] By adopting the above technical solution, the installation box is embedded in the cabinet body, avoiding the formation of a convex structure on the inner side wall of the cabinet body, which not only ensures the beauty of the cabinet body but also does not reduce the accommodation space of the cabinet body, facilitating the access of items; the swing arm of the anti-sway connecting rod is hinged to the inner wall of the installation box, and the telescopic arm is hinged to the quick-installation seat, realizing the connection and movement of the cabinet door and the cabinet body; the anti-sway slider at the elastic end of the elastic module has an anti-sway arc track, and the notch on the swing arm of the anti-sway connecting rod is nested with the anti-sway arc track. During the swinging process of the anti-sway connecting rod, the elastic module makes the anti-sway slider always press against the notch, improving the stability of the swinging of the anti-sway connecting rod.

[0008] Optionally, wear-resistant anti-sway parts are provided on both sides of the swing arm of the anti-sway connecting rod, and the wear-resistant anti-sway parts are used to abut against the inner wall of the installation box.

[0009] By adopting the above technical solution, the swing arm of the anti-sway connecting rod is hinged to the inner wall of the installation box, and the telescopic arm is hinged to the quick-installation seat. The anti-sway slider at the elastic end of the elastic module has an anti-sway arc track, and the notch on the swing arm of the anti-sway connecting rod is nested with the anti-sway arc track, enabling the anti-sway slider to press against the notch and improving the stability of the swinging of the anti-sway connecting rod; on this basis, the wear-resistant anti-sway parts provided on both sides of the swing arm of the anti-sway connecting rod abut against the inner wall of the installation box, which can further enhance the stability during the swinging of the anti-sway connecting rod and reduce the wear between the swing arm of the anti-sway connecting rod and the inner wall of the installation box.

[0010] Optionally, a stabilizing connecting rod is further included. A stabilizing seat is provided in the installation box. The swing arm of the stabilizing connecting rod is hinged to the stabilizing seat, and the telescopic arm of the stabilizing connecting rod is hinged to the quick-installation seat.

[0011] By adopting the above technical solution, the swing arm of the anti-sway connecting rod is hinged to the inner wall of the installation box, and the telescopic arm is hinged to the quick-installation seat. The nesting of the notch on the swing arm of the anti-sway connecting rod with the anti-sway arc track of the anti-sway slider can improve the swinging stability. Coupled with the fact that the swing arm of the stabilizing connecting rod is hinged to the stabilizing seat in the installation box and the telescopic arm is hinged to the quick-installation seat, it can further enhance the stability of the door moving device during the opening and closing of the cabinet door.

[0012] Optionally, a nesting part is provided on the side of the stabilizing seat, the nesting part is adapted to the swing arm of the stabilizing connecting rod, and the swing arm of the stabilizing connecting rod is slidably connected to the nesting part.

[0013] By adopting the above technical solution, the quick-installation base is installed on the cabinet door. The swing arm of the anti-swing connecting rod is hinged to the inner wall of the installation box, and the telescopic arm is hinged to the quick-installation base. The anti-swing arc track of the anti-swing slider at the elastic end of the elastic module is nested with the notch of the swing arm of the anti-swing connecting rod, which can improve the swing stability of the anti-swing connecting rod. On this basis, the nested part on the side of the stable base is adapted to the swing arm of the stable connecting rod and is slidably connected to it, which can further improve the movement stability of the stable connecting rod, and then enhance the stability of the entire door moving device.

[0014] Optionally, the elastic module includes a spring group, a fixed seat, a guiding insertion plate and an elastic force adjusting component. The fixed seat is installed in the installation box, the guiding insertion plate is inserted into the installation box and is fixedly connected to the fixed seat. The guiding insertion plate has a plurality of guiding columns. The anti-swing slider has a plurality of extension columns. The plurality of extension columns are aligned with the plurality of guiding columns, and the moving direction of the anti-swing slider is the same as the length direction of the extension columns. The spring group is sleeved between the guiding columns and the extension columns.

[0015] By adopting the above technical solution, the plurality of guiding columns of the guiding insertion plate are aligned with the plurality of extension columns of the anti-swing slider, and the spring group is sleeved between the two. This setting can make the movement of the anti-swing slider more stable, and with the help of the elastic force provided by the spring group, it is ensured that the anti-swing slider always presses against the notch of the anti-swing connecting rod, improving the swing stability of the anti-swing connecting rod. At the same time, the structure in which the fixed seat is installed in the installation box, the guiding insertion plate is inserted into the installation box and is fixedly connected to the fixed seat ensures the stable installation of the elastic module in the installation box.

[0016] Optionally, a sliding seat is fixedly arranged in the installation box. Limiting sliding grooves are opened on both inner sides of the sliding seat. The anti-swing slider is slidably arranged in the sliding seat, and both sides of the anti-swing slider are slidably matched with the limiting sliding grooves. Guide parts are arranged on both sides of the anti-swing slider, and a guide groove is opened on the inner side of the sliding seat along the sliding direction of the anti-swing slider. The guide parts are slidably matched with the guide groove.

[0017] By adopting the above technical solution, the swing arm of the anti-swing connecting rod is hinged to the inner wall of the installation box, the telescopic arm is hinged to the quick-installation base, and the anti-swing slider at the elastic end of the elastic module has an anti-swing arc track. The notch of the swing arm of the anti-swing connecting rod is nested with the anti-swing arc track, which can improve the swing stability of the anti-swing connecting rod. On this basis, limiting sliding grooves are opened on both inner sides of the fixed sliding seat in the installation box. The anti-swing slider slides in the sliding seat and both sides are slidably matched with the limiting sliding grooves. At the same time, the guide parts on both sides of the anti-swing slider are slidably matched with the guide groove opened on the inner side of the sliding seat along the sliding direction, which can play a role in limiting and guiding the sliding of the anti-swing slider, further ensuring the sliding stability of the anti-swing slider, and thus improving the working stability of the entire door moving device.

[0018] Optionally, the elastic force adjusting assembly includes an adjusting base, an adjusting bolt, and an adjusting block. The adjusting block is sleeved on the guiding column, and the moving direction of the adjusting block is the same as the length direction of the guiding column. The adjusting base is fixed in the installation box. One end of the adjusting bolt is rotatably installed in the adjusting base, and the other end of the adjusting bolt is threadedly connected to the adjusting block.

[0019] By adopting the above technical solutions, with the installation box being embedded in the cabinet body, the quick-installation seat being installed on the cabinet door, the anti-sway connecting rod swing arm being hinged to the inner wall of the installation box, the telescopic arm being hinged to the quick-installation seat, the anti-sway arc track of the anti-sway slider at the elastic force end of the elastic force module being nested with the notch of the anti-sway connecting rod swing arm, and the adjusting block in the elastic force adjusting assembly being sleeved on the guiding column, the adjusting base being fixed in the installation box, one end of the adjusting bolt being rotatably installed in the adjusting base and the other end being threadedly connected to the adjusting block, the swinging stability of the anti-sway connecting rod can be improved. At the same time, by rotating the adjusting bolt, the adjusting block can move along the length direction of the guiding column, thereby adjusting the elastic force of the elastic force module.

[0020] Optionally, stable grooves are provided on both inner sides of the fixed seat, and both sides of the adjusting block are slidably matched with the stable grooves.

[0021] By adopting the above technical solutions, the swing arm of the anti-sway connecting rod is hinged to the inner wall of the installation box, the telescopic arm is hinged to the quick-installation seat, and the anti-sway arc track of the anti-sway slider at the elastic force end of the elastic force module is nested with the notch of the anti-sway connecting rod swing arm, which can improve the swinging stability of the anti-sway connecting rod; stable grooves are provided on both inner sides of the fixed seat, and both sides of the adjusting block are slidably matched with the stable grooves, which can make the movement of the adjusting block more stable, thereby improving the stability of the elastic force adjustment of the elastic force module on the elastic force module.

[0022] Optionally, it further includes a buffer damping module, which is used to buffer the swing arm of the anti-sway connecting rod.

[0023] By adopting the above technical solutions, the swing arm of the anti-sway connecting rod is hinged to the inner wall of the installation box, the telescopic arm is hinged to the quick-installation seat, and the anti-sway arc track of the anti-sway slider at the elastic force end of the elastic force module is nested with the notch of the anti-sway connecting rod swing arm to improve the swinging stability. On this basis, adding a buffer damping module to buffer the swing arm of the anti-sway connecting rod can avoid large impact forces and noises generated when the swing arm of the anti-sway connecting rod swings, reduce component wear, and extend the service life of the device. At the same time, the buffer damping module can also slow down the intensity of the anti-sway connecting rod during the swinging process and play a stabilizing role on the anti-sway connecting rod.

[0024] Optionally, the buffer damping module includes a quick-release seat, a buffer oil cylinder group, and a buffer block. The buffer oil cylinder group includes a plurality of buffer oil cylinders. The buffer oil cylinders are snap-fitted in the quick-release seat, and the buffer block is installed at the buffer end of the buffer oil cylinder. The buffer block is used to buffer the swing arm of the anti-sway connecting rod.

[0025] By adopting the above technical solution, the anti-sway connecting rod swing arm is hinged to the inner wall of the installation box, the telescopic arm is hinged to the quick-mounting seat, the anti-sway arc track of the anti-sway slider at the elastic end of the elastic module is nested with the notch of the anti-sway connecting rod swing arm. On this basis, multiple buffer cylinders of the buffer cylinder group are snap-fitted and installed in the quick-release seat, and the buffer block is installed at the buffer end of the buffer cylinder and buffers with the anti-sway connecting rod swing arm, which can play a buffering role for the anti-sway connecting rod swing arm during the movement of the door, reducing impact and vibration.

[0026] In summary, the present application includes at least one of the following beneficial technical effects: 1. The installation box is embedded in the cabinet body, avoiding the formation of a convex structure on the inner side wall of the cabinet body, which not only improves the aesthetics but also increases the accommodation space of the cabinet body, facilitating the access of items. 2. The swing arm of the anti-sway connecting rod is hinged to the inner wall of the installation box, the telescopic arm is hinged to the quick-mounting seat, the anti-sway slider at the elastic end of the elastic module has an anti-sway arc track, and the notch of the anti-sway connecting rod swing arm is nested with the anti-sway arc track. During the swinging process of the anti-sway connecting rod, the elastic module makes the anti-sway slider always press against the notch, improving the stability of the swinging of the anti-sway connecting rod. 3. Through the collaborative work of components such as the anti-sway connecting rod and the elastic module, the cabinet door can be better supported, enabling the cabinet door to stably maintain the open state when opened to a predetermined angle. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is the overall structural schematic diagram of an anti-sway type embeddable door moving device in an embodiment.

[0028] Figure 2 is the assembly schematic diagram of the anti-sway connecting rod, the stabilizing connecting rod and the anti-sway slider in an embodiment.

[0029] Figure 3 is the assembly schematic diagram of the elastic module in an embodiment.

[0030] Figure 4 is the structural disassembly and cooperation diagram of the anti-sway connecting rod and the elastic module in an embodiment.

[0031] Figure 5 is the assembly structural schematic diagram of the stabilizing connecting rod in an embodiment.

[0032] Figure 6 is the structural schematic diagram of the buffer damping module in an embodiment.

[0033] Figure 7 is the assembly structural schematic diagram of the quick-mounting seat in an embodiment.

[0034] Description of the reference numerals: 1. Installation box; 2. Quick - mounting base; 21. Base bottom; 22. Quick - mounting part; 3. Anti - swing connecting rod; 31. Swing arm; 32. Telescopic arm; 33. Wear - resistant anti - swing part; 4. Elasticity module; 41. Spring group; 42. Fixed seat; 43. Guide insertion plate; 431. Guide post; 5. Anti - swing slider; 51. Anti - swing arc track; 52. Guide part; 53. Extension column; 6. Sliding seat; 7. Stabilizing connecting rod; 8. Stabilizing base; 81. Nesting part; 9. Elasticity adjustment component; 91. Adjustment seat; 92. Adjustment bolt; 93. Adjustment block; 94. Adjustment gear; 10. Buffer damping module; 101. Quick - release seat; 102. Buffer oil cylinder group; 103. Buffer block; 11. Pulley. Detailed implementation mode

[0035] The following is combined with the attached Figure 1-7 to further elaborate on this application in detail.

[0036] In the first aspect, the embodiment of this application discloses an anti - swing type door moving device that can be embedded. Referring to Figure 1 , an anti - swing type door moving device that can be embedded includes an installation box 1, a quick - mounting base 2, an anti - swing connecting rod 3, a stabilizing connecting rod 7, and an elasticity module 4. Among them, the installation box 1 is used for embedded installation in the cabinet body, avoiding forming a convex structure on the inner side wall of the cabinet body, which not only ensures the beauty of the cabinet body but also does not reduce the accommodation space of the cabinet body, facilitating the access of items.

[0037] Referring to Figure 1 and Figure 2 , the swing arm 31 of the anti - swing connecting rod 3 is hinged to the inner wall of the installation box 1, and the telescopic arm 32 is hinged to the quick - mounting base 2, realizing the connection and movement of the cabinet door and the cabinet body; the swing arm 31 of the stabilizing connecting rod 7 is hinged to the stabilizing base 8 in the installation box 1, and the telescopic arm 32 is hinged to the quick - mounting base 2, which can further enhance the stability of the door moving device during the opening and closing process of the cabinet door. In this embodiment, the installation box 1 can be made of metal materials such as stainless steel and aluminum alloy.

[0038] Referring to Figure 2 and Figure 3 , an anti - swing slider 5 is provided at the elastic end of the elasticity module 4. The anti - swing slider 5 has an anti - swing arc track 51. A notch is provided on the swing arm 31 of the anti - swing connecting rod 3. The notch on the swing arm 31 of the anti - swing connecting rod 3 is nested with the anti - swing arc track 51. During the swinging process of the anti - swing connecting rod 3, the elasticity module 4 makes the anti - swing slider 5 always press tightly against the notch, improving the stability of the swinging of the anti - swing connecting rod 3.

[0039] Specifically, wear-resistant anti-sway parts 33 are provided on both sides of the swing arm 31 of the anti-sway connecting rod 3. The wear-resistant anti-sway parts 33 are in contact with the inner wall of the mounting box 1. Thus, during the swinging process of the swing arm 31 of the anti-sway connecting rod 3, the wear-resistant anti-sway parts 33 can not only improve the swinging stability of the anti-sway connecting rod 3, but also reduce the contact area between the swing arm 31 of the anti-sway connecting rod 3 and the side of the mounting box 1, thereby reducing the friction force. In this embodiment, the wear-resistant anti-sway parts 33 can be made of hard plastic material, so as to further improve the wear resistance of the wear-resistant anti-sway parts 33 through the low friction coefficient between the hard plastic material and the metal material.

[0040] The anti-sway connecting rod 3 includes two parts, a swing arm 31 and a telescopic arm 32. The swing arm 31 is hinged to the inner wall of the mounting box 1 through a pin shaft, so that the swing arm 31 can swing around the hinge point. One end of the telescopic arm 32 is movably connected to the other end of the swing arm 31, and the other end of the telescopic arm 32 is hinged to the quick-installation seat 2. The telescopic function of the telescopic arm 32 can adapt to the position change of the cabinet door at different opening and closing angles. In practical applications, the swing arm 31 and the telescopic arm 32 of the anti-sway connecting rod 3 can also adopt an integrally formed structure, which can improve the overall strength and stability of the anti-sway connecting rod 3.

[0041] Refer to Figure 4 , the swing arm 31 of the anti-sway connecting rod 3 is arranged in a combination of two-sided metal sheets sandwiching a hard plastic material, and the middle sheet is integrally provided with the wear-resistant anti-sway part 33, and a clearance for the wear-resistant anti-sway part 33 is provided at the corresponding position of the metal sheet. The swing arm 31 of the anti-sway connecting rod 3 made of a composite material combination can not only reduce the manufacturing cost, but also reduce the manufacturing process requirements, which is beneficial to the rapid production of batch manufacturing. And a pulley 11 is rotatably installed at the concave opening of the swing arm of the anti-sway connecting rod 3. The pulley 11 is used to abut against the anti-sway arc track 51 of the anti-sway slider 5, and the pulley 11 is made of hard plastic material.

[0042] Refer to Figure 4 , a sliding seat 6 is fixedly arranged in the mounting box 1. Limiting chutes are provided on both inner sides of the sliding seat 6. The anti-sway slider 5 is slidably arranged in the sliding seat 6, and both sides of the anti-sway slider 5 are slidably matched with the limiting chutes respectively; guiding parts 52 are provided on both sides of the anti-sway slider 5, and guiding grooves are provided along the sliding direction of the anti-sway slider 5 on the inner side of the sliding seat 6. The guiding parts 52 are slidably matched with the guiding grooves.

[0043] Furthermore, the anti-sway slider 5 is integrally provided with a combination of an external rigid plastic material covering an internal metal material. The anti-sway arc track 51 is made of metal material and exposed from the rigid plastic material, and is directly in contact with the rigid plastic material on the swing arm 31 of the anti-sway connecting rod 3. This is beneficial to the overall lightweight design of the anti-sway slider 5. At the same time, the contact setting of the rigid plastic material between the metal material of the anti-sway arc track 51 of the anti-sway slider 5 and the anti-sway connecting rod 3 can reduce the friction coefficient between them, improve the smoothness of swinging. Moreover, the setting of the external covering of the anti-sway slider 5 with rigid plastic material can also be in contact with the metal material of the installation box 1, achieving a reduction in the friction coefficient between them.

[0044] Refer to Figure 5 , a stabilizing seat 8 is arranged in the installation box 1. The swing arm of the stabilizing connecting rod 7 is hinged to the stabilizing seat 8, and the telescopic arm of the stabilizing connecting rod 7 is hinged to the quick-mounting seat 2. A nesting part 81 is arranged on the side surface of the stabilizing seat 8. The nesting part 81 is adapted to the swing arm of the stabilizing connecting rod 7, and the swing arm of the stabilizing connecting rod 7 is slidably connected to the nesting part 81. The nesting part 81 on the side surface of the stabilizing seat 8 is adapted to the swing arm of the stabilizing connecting rod 7 and the swing arm of the stabilizing connecting rod 7 is slidably connected thereto, which can further improve the stability of the movement of the stabilizing connecting rod 7, and thus enhance the stability of the entire door moving device.

[0045] Refer to Figure 3 , the elastic force module 4 includes a spring group 41, a fixed seat 42, a guiding plug board 43 and an elastic force adjusting component 9. The fixed seat 42 is installed in the installation box 1. The guiding plug board 43 is inserted into the installation box 1 and is fixedly connected to the fixed seat 42. The guiding plug board 43 has a plurality of guiding columns 431. These guiding columns 431 can adopt a cylindrical or square structure and are used to guide the telescopic direction of the spring group 41. The anti-sway slider 5 has a plurality of extension columns 53. The plurality of extension columns 53 are aligned with the plurality of guiding columns 431, and the moving direction of the anti-sway slider 5 is the same as the length direction of the extension columns 53. The spring group 41 is sleeved between the guiding columns 431 and the extension columns 53. When the anti-sway connecting rod 3 swings, the spring group 41 will expand and contract according to the movement of the anti-sway slider 5, so as to provide corresponding elastic force.

[0046] Refer to Figure 3, the elastic force adjustment component 9 can adjust the elastic force of the spring group 41 to meet different usage requirements. Specifically, the elastic force adjustment component 9 includes an adjustment seat 91, an adjustment bolt 92, and an adjustment block 93. The adjustment block 93 is sleeved on the guide post 431, and the moving direction of the adjustment block 93 is the same as the length direction of the guide post 431. The adjustment seat 91 is fixed in the installation box 1. An adjustment gear 94 is rotatably installed in the adjustment seat 91. The adjustment gear 94 is provided with a first adjustment tooth. One end of the adjustment bolt 92 is rotatably installed in the adjustment seat 91, and the other end of the adjustment bolt 92 is threadedly connected to the adjustment block 93. The end of the adjustment screw is provided with a second adjustment tooth, and the first adjustment tooth and the second adjustment tooth are meshed with each other. The adjustment gear 94 is arranged perpendicular to the adjustment screw. By rotating the adjustment gear 94, the adjustment screw is driven to rotate, so as to realize the position adjustment of the adjustment block 93, and further realize the adjustment setting of the spring elastic force.

[0047] Stable grooves are provided on both inner sides of the fixed seat 42, and both sides of the adjustment block 93 are slidably matched with the stable grooves.

[0048] Furthermore, multiple guide posts 431 correspond to and are aligned with multiple extension posts 53 one by one. The end-to-end interval between the guide post 431 and the extension post 53 is 1-2 cm. In this embodiment, it is preferably set to 1 cm. By maintaining the end-to-end interval between the guide post 431 and the extension post 53, the guiding length of the spring group 41 between the guide post 431 and the extension post 53 can be kept unchanged, which can better prevent the spring group 41 from bending deformation during the elastic deformation process, thereby improving the stability of the elastic force output of the product during the working process.

[0049] And in this embodiment, the installer can dynamically adjust the specific number of springs required by the spring group 41 to realize the adjustment of the supporting elastic force of the installation box 1, further improving the flexibility of the elastic force adjustment of the entire product.

[0050] Refer to Figure 6 , an anti-sway type embeddable door moving device further includes a buffer damping module 10, and the buffer damping module 10 is used to buffer the swing arm 31 of the anti-sway link 3. The buffer damping module 10 includes a quick-release seat 101, a buffer oil cylinder group 102, and a buffer block 103. The buffer oil cylinder group 102 includes a plurality of buffer oil cylinders. The buffer oil cylinders are snap-fitted in the quick-release seat 101. The buffer block 103 is installed at the buffer end of the buffer oil cylinder, and the buffer block 103 is used to buffer the swing arm 31 of the anti-sway link 3. In this embodiment, the buffer oil cylinder group 102 includes two buffer oil cylinders, and the installer can flexibly add or subtract the number of buffer oil cylinders according to specific needs, so as to realize the condition setting of the buffer force.

[0051] During the application process, since the spring group 41 needs to adjust the spring force according to different usage requirements, after the spring force changes, the force received by the buffer damping module 10 will also change. At this time, if the buffer force of the buffer damping module 10 does not correspond to the return force of the swing arm 31, the return force may be greater or smaller than the buffer force. If the return force is greater, then the swing arm 31 will be more obvious during the retraction process. If the return force is smaller, then the swing arm 31 will be slower or unable to retract during the retraction process. Therefore, in this embodiment of the buffer damping module 10, the buffer oil cylinder group 102 includes two buffer oil cylinders, and the installer can flexibly increase or decrease the number of buffer oil cylinders according to specific needs, so as to realize the condition setting of the buffer strength and improve the stability of the swing 31 during the retraction process.

[0052] Referring to Figure 7 , the quick installation seat 2 can be fixed on the cabinet door by means of screws or glue, etc. In this embodiment, screws are used for fixation. The quick installation seat 2 includes a seat bottom 21 and a quick installation part 22. The seat bottom 21 is fixedly connected to the cabinet door, and the quick installation part 22 is used for hinged setting with the anti-swing connecting rod 3 and the stabilizing connecting rod 7. During installation, the overall quick snap-in installation can be achieved through the quick snap connection between the block-shaped part and the seat bottom 21, improving the installation efficiency and convenience.

[0053] The implementation principle of a door moving device with anti-swing and embeddable installation in an embodiment of the present application is as follows: The installation box 1 is embedded in the cabinet body, avoiding the formation of a convex structure on the inner side wall of the cabinet body, which not only ensures the beauty of the cabinet body but also does not reduce the accommodation space of the cabinet body, facilitating the storage and retrieval of items; the swing arm 31 of the anti-swing connecting rod 3 is hinged to the inner wall of the installation box 1, and the telescopic arm 32 is hinged to the quick installation seat 2 to realize the connection and movement between the cabinet door and the cabinet body; the coordinated setting of the stabilizing connecting rod 7 can improve the stability of the swing of the anti-swing connecting rod 3. The anti-swing slider 5 at the elastic end of the elastic module 4 has an anti-swing arc track 51, and the notch of the swing arm 31 of the anti-swing connecting rod 3 is nested with the anti-swing arc track 51. During the swinging process of the anti-swing connecting rod 3, the elastic module 4 makes the anti-swing slider 5 always press against the notch, further improving the stability of the swing of the anti-swing connecting rod 3.

[0054] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A door moving device with anti-sway and embeddable installation, characterized in that: It includes an installation box (1), and the installation box (1) is used for embedded installation in the cabinet; A quick-installation seat (2), and the quick-installation seat (2) is used for installation on the cabinet door; An anti-sway connecting rod (3), the swing arm (31) of the anti-sway connecting rod (3) is hinged to the inner wall of the installation box (1), and the telescopic arm (32) of the anti-sway connecting rod (3) is hinged to the quick-installation seat (2); An elastic force module (4), an anti-sway slider (5) is arranged at the elastic force end of the elastic force module (4), the anti-sway slider (5) has an anti-sway arc track (51), and a notch is arranged on the swing arm (31) of the anti-sway connecting rod (3), and the notch is nested with the anti-sway arc track (51).

2. The anti-sway type door moving device that can be embedded and installed according to claim 1, characterized in that: Both sides of the swing arm (31) of the anti-sway connecting rod (3) are provided with wear-resistant anti-sway parts (33), and the wear-resistant anti-sway parts (33) are used for abutting against the inner wall of the installation box (1).

3. The anti-sway type door moving device that can be embedded and installed according to claim 1, wherein: It also includes a stabilizing connecting rod (7), a stabilizing seat (8) is arranged in the installation box (1), the swing arm of the stabilizing connecting rod (7) is hinged to the stabilizing seat (8), and the telescopic arm of the stabilizing connecting rod (7) is hinged to the quick-installation seat (2).

4. The anti-sway type embeddable door moving device according to claim 3, characterized in that: A nesting part (81) is arranged on the side surface of the stabilizing seat (8), the nesting part (81) is adapted to the swing arm (31) of the stabilizing connecting rod (7), and the swing arm (31) of the stabilizing connecting rod (7) is slidably connected with the nesting part (81).

5. The anti-sway type door moving device capable of embedded installation according to claim 1, wherein: The elastic force module (4) includes a spring group (41), a fixed seat (42), a guiding plug board (43) and an elastic force adjusting component (9). The fixed seat (42) is installed in the installation box (1), the guiding plug board (43) is inserted in the installation box (1), and the guiding plug board (43) is fixedly connected with the fixed seat (42). The guiding plug board (43) has a plurality of guiding columns (431); The anti-sway slider (5) has a plurality of extension columns (53), the plurality of extension columns (53) are aligned with the plurality of guiding columns (431), and the moving direction of the anti-sway slider (5) is the same as the length direction of the extension columns (53). The spring group (41) is sleeved between the guiding columns (431) and the extension columns (53).

6. The anti-sway type door moving device capable of being embedded and installed according to claim 5, characterized in that: A sliding seat (6) is fixedly arranged in the installation box (1). Limit sliding grooves are opened on both inner sides of the sliding seat (6). The anti-sway slider (5) is slidably arranged in the sliding seat (6), and both sides of the anti-sway slider (5) are respectively in sliding fit with the limit sliding grooves; both sides of the anti-sway slider (5) are provided with guiding parts (52), and guiding grooves are opened on the inner side of the sliding seat (6) along the sliding direction of the anti-sway slider (5), and the guiding parts (52) are in sliding fit with the guiding grooves.

7. The anti-sway type door moving device capable of being embedded and installed according to claim 5, characterized in that: The elastic force adjusting component (9) includes an adjusting seat (91), an adjusting bolt (92) and an adjusting block (93). The adjusting block (93) is sleeved on the guiding column (431), and the moving direction of the adjusting block (93) is the same as the length direction of the guiding column (431). The adjusting seat (91) is fixed in the installation box (1), one end of the adjusting bolt (92) is rotatably installed in the adjusting seat (91), and the other end of the adjusting bolt (92) is threadedly connected with the adjusting block (93).

8. The anti-sway type door moving device capable of embedded installation according to claim 7, characterized in that: Stable grooves are arranged on both inner sides of the fixed seat (42), and both sides of the adjusting block (93) are respectively in sliding fit with the stable grooves.

9. The anti-sway type door moving device capable of embedded installation according to claim 1, characterized in that: It further includes a buffer damping module (10), and the buffer damping module (10) is used for buffering the swing arm (31) of the anti-sway connecting rod (3).

10. A door moving device with anti-sway and embeddable installation according to claim 9, characterized in that: The buffer damping module (10) includes a quick-release seat (101), a buffer oil cylinder group (102) and a buffer block (103). The buffer oil cylinder group (102) includes a plurality of buffer oil cylinders, the buffer oil cylinders are clamped and installed in the quick-release seat (101), the buffer block (103) is installed at the buffer end of the buffer oil cylinder, and the buffer block (103) is used for buffering with the swing arm (31) of the anti-sway connecting rod (3).