Translation deformation door
By driving the deformation of the display components of the sliding door through a mechanical structure, the problem of the lack of variability in the static display of the sliding door and the need for power supply for the electronic display screen is solved. It realizes dynamic information display and high interactivity, is suitable for scenarios without electricity, and has a simple structure and low cost.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHANGHAI SHUANGSIHUI CREATIVE PRODUCTION CO LTD
- Filing Date
- 2026-05-06
- Publication Date
- 2026-06-26
AI Technical Summary
The existing static display method of sliding doors lacks variability, while the electronic display screen method requires additional power supply and display screen, which is complex in structure, costly, and unsuitable for scenarios without electricity.
Design a sliding and deformable door. Through the cooperation of track components, sliding door components and transmission components, a display component is driven by a mechanical structure to deform, realizing the dynamic display of information. The display component displays different information through deformation. The power comes from the action of opening and closing the door, without the need for power supply or other independent drive devices.
It enables dynamic display of text or images, is highly interactive, offers diverse display formats, is suitable for scenarios without electricity, has a simple structure, low cost, is easy to assemble and maintain, and is suitable for large-scale promotion and use.
Smart Images

Figure CN122280433A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sliding door technology, and more specifically, to a sliding deformable door. Background Technology
[0002] Currently, in the field of home decoration sliding doors, text or signs are displayed on the door for both identification and aesthetic purposes. Existing display methods include: 1. Static display methods such as printing, engraving, or pasting (e.g., shop signs, door stickers); 2. Electronic display methods such as LED displays.
[0003] However, the existing display methods have the following technical problems: static display methods lack interactivity and variability, and cannot display according to the opening and closing status of the sliding door; electronic display screen methods require additional power supply and display screen, which are complex in structure, costly, energy-intensive, and unsuitable for scenarios without electricity (such as outdoor doors, emergency exit doors, etc.).
[0004] Therefore, existing sliding doors suffer from problems such as a lack of variability in static display methods, and electronic display screens require additional power supply and display screens, resulting in complex structures, high costs, high energy consumption, and unsuitability for scenarios without electricity. These issues urgently need to be addressed. Summary of the Invention
[0005] This invention provides a sliding and transforming door to at least solve the problems of existing sliding doors, such as the lack of variability in static display methods and the need for additional power supply and display screens for electronic display methods, which are not suitable for scenarios without electricity.
[0006] To address the aforementioned problems, this invention provides a sliding deformable door, comprising: a track assembly, a sliding door assembly, a transmission assembly, and a display assembly; the track assembly is fixedly mounted; the sliding door assembly is movably mounted on the track assembly and engages with the track assembly in a limiting manner, the track assembly constraining the movement of the sliding door assembly; the display assembly is movably mounted on the sliding door assembly and faces outwards from the sliding door assembly; the transmission assembly is mounted on the sliding door assembly and is connected to both the track assembly and the display assembly in a transmission manner; wherein, when the sliding door assembly is pushed to move horizontally along the track assembly, the transmission assembly moves, transmitting power to the display assembly to drive the display assembly to deform, and the display assembly displays different information to the outside of the sliding door assembly through deformation.
[0007] Furthermore, the track assembly includes a translation track and a rack structure. The rack structure is fixedly mounted on the translation track, and the extension direction of the rack structure is parallel to the extension direction of the translation track. The sliding door assembly is movably mounted on the translation track and is limited to the translation track. The transmission assembly meshes with the rack structure. When the sliding door assembly is pushed to move along the translation track, the transmission assembly rotates to drive the display assembly to deform. The display assembly displays different information through deformation to correspond to the open and closed states of the sliding door assembly.
[0008] Furthermore, the transmission assembly includes a mating gear, a transmission worm, and a multi-stage transmission structure; the transmission worm is rotatably mounted on the sliding door assembly and is connected to the multi-stage transmission structure; the mating gear is fixedly mounted on the transmission worm and meshes with the rack structure; the multi-stage transmission structure is connected to the display assembly; wherein, when the sliding door assembly is pushed to move along the sliding track, the mating gear rotates along the rack structure, and the mating gear drives the transmission worm to rotate, so that the multi-stage transmission structure drives the display assembly to move and deform.
[0009] Furthermore, the multi-stage transmission structure includes a first transmission structure and a second transmission structure; the display component includes a first part and a second part; the first part corresponds to and cooperates with the first transmission structure, which is used to drive the first part to move and / or flip; the second part corresponds to and cooperates with the second transmission structure, which is used to drive the second part to move and / or flip; the first part and the second part are respectively used to display a portion of text or letters, and by driving the first transmission structure and the second transmission structure respectively, the relative positions of the first part and the second part are adjusted so that the first part and the second part can be combined to display different information; or, the first part and the second part are respectively used to display a portion of a pattern, and by driving the first transmission structure and the second transmission structure respectively, the relative positions of the first part and the second part are adjusted so that the first part and the second part can be combined to display different patterns.
[0010] Furthermore, the multi-stage transmission structure includes a first transmission structure, a second transmission structure, and a third transmission structure; the display component includes a first part, a second part, a third part, and a fixed part; the first part corresponds to and cooperates with the first transmission structure, which drives the first part to move and flip; the second part corresponds to and cooperates with the second transmission structure, which drives the second part to move; the third part corresponds to and cooperates with the third transmission structure, which drives the third part to move and flip; the fixed part is fixedly mounted on the sliding door component; wherein, the first part, the second part, the third part, and the fixed part are respectively used to display letters, and by driving the first transmission structure, the second transmission structure, and the third transmission structure respectively, the relative positions of the first part, the second part, the third part, and the fixed part are adjusted so that the display component displays different words.
[0011] Furthermore, the first part is shaped like a C, the second part like an L, and the third part like an S; the fixed part is used to display the information of the letter "O" and the letter "E" respectively; in the closed state, the first part is used to display the information of the letter "C", the second part is used to display the information of the letter "L", and the third part is used to display the information of the letter "S", with the information of the letter "S" located between the information of the letter "O" and the information of the letter "E", so that the display component displays the information of the word "CLOSE"; in the open state, the first part and the second part combine to display the information of the letter "P", and the third part displays the information of the letter "N" by rotation, with the information of the letter "P" located between the information of the letter "O" and the information of the letter "E", so that the display component displays the information of the word "OPEN"; wherein, by driving the first transmission structure, the second transmission structure, and the third transmission structure respectively, the relative positions of the first part, the second part, the third part, and the fixed part are adjusted so that the display component displays the words "OPEN" and "CLOSE" respectively.
[0012] Furthermore, the rotation axis of the transmission worm extends vertically; the first transmission structure includes a first worm wheel, a first primary gear, a first secondary gear, a first tertiary gear, and a support arm, all rotatably disposed within the sliding door assembly; the first worm wheel meshes with the transmission worm; the first primary gear is mounted on the first worm wheel to follow its rotation; the rotation axis of the first worm wheel is collinear with the rotation axis of the first primary gear, and the rotation axis of the first worm wheel is perpendicular to the rotation axis of the transmission worm; the first secondary gear meshes with the first primary gear and the first tertiary gear respectively; one end of the support arm meshes with the first tertiary gear, and the other end of the support arm is connected to the first part; the inner wall of the sliding door assembly is fitted with the support arm to limit its movement trajectory; wherein, the transmission worm sequentially drives the first worm wheel, the first primary gear, the first secondary gear, and the first tertiary gear to rotate, and the support arm drives the first part to move and The sliding door assembly is rotated; the rotation axis of the transmission worm extends vertically; the third transmission structure includes a third worm wheel, a third primary gear, a third secondary gear, a third tertiary gear, and a connecting arm, all rotatably mounted within the sliding door assembly; the third worm wheel meshes with the transmission worm; the third primary gear is mounted on the third worm wheel to follow its rotation; the rotation axis of the third worm wheel is collinear with the rotation axis of the third primary gear, and the rotation axis of the third worm wheel is perpendicular to the rotation axis of the transmission worm; the third secondary gear meshes with the third primary gear and the third tertiary gear respectively; one end of the connecting arm meshes with the third tertiary gear, and the other end of the connecting arm connects to the third part; the inner wall of the sliding door assembly is fitted with the connecting arm to limit its movement trajectory; wherein, the transmission worm sequentially drives the third worm wheel, the third primary gear, the third secondary gear, and the third tertiary gear to rotate, and the connecting arm drives the third part to move and rotate.
[0013] Furthermore, the first and second gears and the third gear are gear ring structures; at least two of the first, second, and third transmission structures are spaced apart along the thickness direction of the sliding door assembly; at least two of the first, second, and third parts are spaced apart along the thickness direction of the sliding door assembly.
[0014] Furthermore, the rotation axis of the transmission worm extends vertically; the second transmission structure includes a second worm wheel, a second gear, and a second rack; the second worm wheel and the second gear are rotatably mounted within the sliding door assembly; the second worm wheel meshes with the transmission worm; the second gear is mounted on the second worm wheel to follow its rotation; the rotation axis of the second worm wheel is collinear with the rotation axis of the second gear, and the rotation axis of the second worm wheel is perpendicular to the rotation axis of the transmission worm; the second gear meshes with the second rack; the second part is connected to the end of the second rack away from the second gear; the inner wall of the sliding door assembly is fitted with the second rack to constrain its reciprocating motion trajectory; wherein, the transmission worm sequentially drives the second worm wheel and the second gear to rotate, the second gear drives the second rack to move, and the second rack drives the second part to move.
[0015] Furthermore, a multi-stage transmission structure and a corresponding display component constitute a deformation group, with at least two deformation groups, one of which is a first deformation group. The multi-stage transmission structure of the first deformation group includes a first transmission part, a second transmission part, a third transmission part, a fourth transmission part, a fifth transmission part, and a sixth transmission part. The display component within this deformation group includes a first moving part, a second moving part, a third moving part, a fourth moving part, a fifth moving part, a sixth moving part, a first fixed part, and a second fixed part. The first transmission part corresponds to and cooperates with the first moving part, driving the first moving part to move. The second transmission part corresponds to and cooperates with the second moving part, driving the second moving part to move. The third transmission part corresponds to and cooperates with the third moving part, driving the third moving part to move and rotate. The fourth transmission part corresponds to and cooperates with the fourth moving part, driving the fourth moving part to move and rotate. The first moving part is used to drive the fourth moving part to move; the fifth transmission part cooperates with the fifth moving part and is used to drive the fifth moving part to move and rotate; the sixth transmission part cooperates with the sixth moving part and is used to drive the sixth moving part to move and rotate; the first fixed part and the second fixed part are respectively fixedly installed on the sliding door assembly; wherein, the first moving part, the second moving part, the third moving part, the fourth moving part, the fifth moving part, the sixth moving part, the first fixed part and the second fixed part are respectively used to display a part of the Chinese character. By driving the first transmission part, the second transmission part, the third transmission part, the fourth transmission part, the fifth transmission part and the sixth transmission part respectively, the relative positions of the first moving part, the second moving part, the third moving part, the fourth moving part, the fifth moving part, the sixth moving part, the first fixed part and the second fixed part are adjusted so that the display assembly displays different Chinese characters.
[0016] Further, the first moving part is arranged in the shape of a horizontal stroke of Chinese characters; the first fixed part is arranged in the shape of a horizontal stroke of Chinese characters, and the second fixed part is arranged in the shape of a vertical stroke of Chinese characters; the second moving part is arranged in the shape of a left-falling stroke of Chinese characters; the third moving part is arranged in the shape of a horizontal stroke of Chinese characters; the fourth moving part is arranged in the shape of a horizontal stroke of Chinese characters; the fifth moving part is arranged in the shape of a vertical stroke of Chinese characters; the sixth moving part is arranged in the shape of a horizontal stroke of Chinese characters; in the open door state, the first moving part and the first fixed part are combined to display the first stroke of the Chinese character "百", the second moving part displays the second stroke of the Chinese character "百", the fifth moving part displays the third stroke of the Chinese character "百", the third moving part and the second fixed part are combined to display the fourth stroke of the Chinese character "百", the fourth moving part displays the fifth stroke of the Chinese character "百", and the sixth moving part displays the sixth stroke of the Chinese character "百", so that the display component displays the information of the Chinese character "百"; in the closed door state, the third moving part and the sixth moving part are combined to display the first stroke of the Chinese character "好", the fifth moving part displays the second stroke of the Chinese character "好", the first moving part displays the third stroke of the Chinese character "好", the second moving part and the first fixed part are combined to display the fourth stroke of the Chinese character "好", the second fixed part displays the fifth stroke of the Chinese character "好", and the fourth moving part displays the sixth stroke of the Chinese character "好", so that the display component displays the information of the Chinese character "好"; or, in the closed door state, the first moving part and the first fixed part are combined to display the first stroke of the Chinese character "百", the second moving part displays the second stroke of the Chinese character "百", the fifth moving part displays the third stroke of the Chinese character "百", the third moving part and the second fixed part are combined to display the fourth stroke of the Chinese character "百", the fourth moving part displays the fifth stroke of the Chinese character "百", and the sixth moving part displays the sixth stroke of the Chinese character "百", so that the display component displays the information of the Chinese character "百"; in the open door state, the third moving part and the sixth moving part are combined to display the first stroke of the Chinese character "好", the fifth moving part displays the second stroke of the Chinese character "好", the first moving part displays the third stroke of the Chinese character "好", the second moving part and the first fixed part are combined to display the fourth stroke of the Chinese character "好", the second fixed part displays the fifth stroke of the Chinese character "好", and the fourth moving part displays the sixth stroke of the Chinese character "好", so that the display component displays the information of the Chinese character "好"; wherein, by driving the first moving part, the second moving part, the third moving part, the fourth moving part, the fifth moving part, and the sixth moving part respectively, the display component displays the Chinese characters "百" and "好" in different states respectively.
[0017] Further, a deformation group is the second deformation group; the multi-stage transmission structure of the second deformation group includes a seventh transmission part, an eighth transmission part, a ninth transmission part, a tenth transmission part, an eleventh transmission part, a twelfth transmission part, and a thirteenth transmission part; the display components within this deformation group include a seventh moving part, an eighth moving part, a ninth moving part, a tenth moving part, an eleventh moving part, a twelfth moving part, a thirteenth moving part, a third fixing part, and a fourth fixing part; the seventh transmission part is correspondingly matched with the seventh moving part, and the seventh transmission part is used to drive the seventh moving part to move and rotate; the eighth transmission part is correspondingly matched with the eighth moving part, and the eighth transmission part is used to drive the eighth moving part to move; the ninth transmission part is correspondingly matched with the ninth moving part, and the ninth transmission part is used to drive the ninth moving part to move and rotate; the tenth transmission part is correspondingly matched with the tenth moving part, and the tenth transmission part is used to drive the tenth moving part to move; the eleventh transmission part is correspondingly matched with the eleventh moving part, and the eleventh transmission part is used to drive the eleventh moving part to move and rotate; the twelfth transmission part is correspondingly matched with the twelfth moving part, and the twelfth transmission part is used to drive the twelfth moving part to rotate; the thirteenth transmission part is correspondingly matched with the thirteenth moving part, and the thirteenth transmission part is used to drive the thirteenth moving part to rotate and move; the third fixing part and the fourth fixing part are respectively fixedly arranged on the sliding door assembly; the third fixing part is arranged in the shape of the first stroke of the Chinese character '年' (year), and the seventh moving part is arranged in the shape of the second stroke of the Chinese character '年'; the fourth fixing part is arranged in the shape of the third stroke of the Chinese character '年'; the eighth moving part is arranged in the shape of the fourth stroke of the Chinese character '年'; the ninth moving part, the tenth moving part, and the eleventh moving part are respectively arranged in the shape of the fifth stroke of the Chinese character '年'; the twelfth moving part and the thirteenth moving part are respectively arranged in the shape of the sixth stroke of the Chinese character '年'; in the open door state, the third fixing part displays the first stroke of the Chinese character '年', the seventh moving part displays the second stroke of the Chinese character '年', the fourth fixing part displays the third stroke of the Chinese character '年', the eighth moving part displays the fourth stroke of the Chinese character '年', the ninth moving part, the tenth moving part, and the eleventh moving part jointly display the fifth stroke of the Chinese character '年', and the twelfth moving part and the thirteenth moving part jointly display the sixth stroke of the Chinese character '年', so that the display components display the information of the Chinese character '年'; in the closed door state, the third fixing part displays the first stroke of the Chinese character '合' (closed), the seventh moving part displays the second stroke of the Chinese character '合', the fourth fixing part displays the third stroke of the Chinese character '合', the eighth moving part and the ninth moving part jointly display the fourth stroke of the Chinese character '合', the twelfth moving part, the thirteenth moving part, and the eleventh moving part jointly display the fifth stroke of the Chinese character '合', and the tenth moving part displays the sixth stroke of the Chinese character '合', so that the display components display the information of the Chinese character '合'.Alternatively, in the closed door state, the third fixed part displays the first stroke of the Chinese character "年", the seventh moving part displays the second stroke of the Chinese character "年", the fourth fixed part displays the third stroke of the Chinese character "年", the eighth moving part displays the fourth stroke of the Chinese character "年", the ninth, tenth, and eleventh moving parts together display the fifth stroke of the Chinese character "年", and the twelfth and thirteenth moving parts together display the sixth stroke of the Chinese character "年", so that the display component displays the information of the Chinese character "年"; in the open door state, the third fixed part displays the first stroke of the Chinese character "合", the seventh moving part displays the second stroke of the Chinese character "合", the fourth fixed part displays the third stroke of the Chinese character "合", the eighth and ninth moving parts together display the fourth stroke of the Chinese character "合", the twelfth, thirteenth, and eleventh moving parts together display the fifth stroke of the Chinese character "合", and the tenth moving part displays the sixth stroke of the Chinese character "合", so that the display component displays the information of the Chinese character "合"; wherein, by respectively driving the seventh transmission part, the eighth transmission part, the ninth transmission part, the tenth transmission part, the eleventh transmission part, the twelfth transmission part, and the thirteenth transmission part, the display component displays the Chinese characters "年" and "合" in different states respectively.;
[0018] Furthermore, the first deformation group and the second deformation group are arranged at intervals in the horizontal or vertical direction; in the open door state, the first deformation group displays the Chinese character "百", and the second deformation group displays the Chinese character "年", so that the first deformation group and the second deformation group cooperate to display the word "百年"; in the closed door state, the first deformation group displays the Chinese character "好", and the second deformation group displays the Chinese character "合", so that the first deformation group and the second deformation group cooperate to display the word "好合"; or, in the closed door state, the first deformation group displays the Chinese character "百", and the second deformation group displays the Chinese character "年", so that the first deformation group and the second deformation group cooperate to display the word "百年"; in the open door state, the first deformation group displays the Chinese character "好", and the second deformation group displays the Chinese character "合", so that the first deformation group and the second deformation group cooperate to display the word "好合".
[0019] Furthermore, the sliding door assembly includes a door main body and a transparent panel; the door main body is movably arranged on the track assembly and is in limit cooperation with the track assembly; the door main body has an installation cavity inside, and at least a part of the transmission component and the display component are arranged in the installation cavity; the transparent panel is detachably arranged on the door main body, and the transparent panel is used to block at least a part of the installation cavity; the display component located in the installation cavity displays different information to the outside of the sliding door assembly through the transparent panel; taking one track assembly, the sliding door assembly located on the track assembly, the transmission component located on the sliding door assembly, and the display component located on the sliding door assembly as a cooperation group; there are two cooperation groups, and the two track assemblies in the two cooperation groups are integrally arranged or separately arranged at intervals; the sliding door assemblies of the two cooperation groups can move towards each other or away from each other to form a double door.
[0020] Applying the technical solution of this invention, this invention provides a sliding deformable door, comprising: a track assembly, a sliding door assembly, a transmission assembly, and a display assembly; the track assembly is fixedly installed; the sliding door assembly is movably installed on the track assembly and is limited in cooperation with the track assembly, the track assembly constraining the movement of the sliding door assembly; the display assembly is movably installed on the sliding door assembly and faces outwards from the sliding door assembly; the transmission assembly is installed on the sliding door assembly and is connected to the track assembly and the display assembly respectively; wherein, when the sliding door assembly is pushed to move horizontally along the track assembly, the transmission assembly moves, and the transmission assembly transmits power to the display assembly to drive the display assembly to deform, and the display assembly displays different information to the outside of the sliding door assembly through deformation.
[0021] This invention, through the coordinated operation of a track assembly, a sliding door assembly, a transmission assembly, and a display assembly, achieves mechanically driven deformation of the display assembly. This allows the deformation power of the display assembly to originate from the opening and closing of the door, eliminating the need for a power supply or other independent driving devices, thus adapting to power-free usage scenarios. By enabling the display assembly to display different information to the outside of the sliding door assembly through deformation, the invention allows for corresponding displays based on the different states of the sliding door assembly, facilitating user viewing. Furthermore, this invention can achieve dynamic text display with diverse and aesthetically pleasing formats, and can dynamically switch between door opening and closing states, such as corresponding different text for different door opening / closing states, resulting in high interactivity. In practical applications… It has been found that this invention, through a special structural design, achieves precise linkage between "door movement and font switching," and can be adapted to existing doors of different sizes and materials. The invention has a simple and low-cost structure, is easy to assemble and maintain, requires no independent drive device, can be modified from existing sliding doors, and allows for significant customization options to meet specific customer needs. This invention solves the problems of existing sliding door technologies, such as the lack of variability in static display methods, the need for additional power supply and display screens in electronic display methods, complex structures, high costs, high energy consumption, and unsuitability for scenarios without electricity. Therefore, it is suitable for large-scale promotion and has high practical value and broad applicability. Attached Figure Description
[0022] The accompanying drawings, which form part of this application, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an undue limitation of the invention. In the drawings:
[0023] Figure 1 This diagram shows a partial structural schematic of the sliding and deformable door provided by an embodiment of the present invention in the open state;
[0024] Figure 2This diagram shows a partial structural schematic of the sliding and deformable door provided by an embodiment of the present invention in the closed state;
[0025] Figure 3 It shows Figure 1 Enlarged schematic diagram of some of the structures in the diagram;
[0026] Figure 4 It shows Figure 2 Enlarged schematic diagram of some of the structures in the diagram;
[0027] Figure 5 This invention provides a schematic diagram of the first and second deformation groups of a sliding deformable door in the closed state, according to another embodiment of the invention.
[0028] Figure 6 A schematic diagram of the first and second deformation groups of a sliding deformable door in the open state, provided by another embodiment of the present invention, is shown.
[0029] The above figures include the following reference numerals:
[0030] 10. Track assembly; 11. Translation track; 12. Rack and pinion structure;
[0031] 20. Sliding door assembly; 21. Door body;
[0032] 30. Transmission assembly; 31. Matching gear; 32. Transmission worm; 33. Multi-stage transmission structure; 34. First transmission structure; 341. First worm wheel; 342. First stage gear; 343. First and second stage gears; 344. First and third stage gears; 345. Support arm; 35. Second transmission structure; 351. Second gear; 352. Second rack; 36. Third transmission structure; 361. Third worm wheel; 362. Third stage gear; 363. Third and second stage gear; 364. Third and third stage gears; 365. Connecting arm;
[0033] 40. Display component; 41. First part; 42. Second part; 43. Third part; 44. Fixing part; 45. First moving part; 46. Second moving part; 47. Third moving part; 48. Fourth moving part; 49. Fifth moving part; 410. Sixth moving part; 411. First fixing part; 412. Second fixing part; 413. Seventh moving part; 414. Eighth moving part; 415. Ninth moving part; 416. Tenth moving part; 417. Eleventh moving part; 418. Twelfth moving part; 419. Thirteenth moving part; 420. Third fixing part; 421. Fourth fixing part. Detailed Implementation
[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit the present invention or its application or use. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] like Figures 1 to 6 As shown, an embodiment of the present invention provides a sliding deformable door, including: a track assembly 10, a sliding door assembly 20, a transmission assembly 30, and a display assembly 40; the track assembly 10 is fixedly disposed; the sliding door assembly 20 is movably disposed on the track assembly 10 and is limited in cooperation with the track assembly 10, the track assembly 10 constraining the movement of the sliding door assembly 20; the display assembly 40 is movably disposed on the sliding door assembly 20 and faces the outside of the sliding door assembly 20; the transmission assembly 30 is disposed on the sliding door assembly 20 and is connected to the track assembly 10 and the display assembly 40 respectively; wherein, when the sliding door assembly 20 is pushed to move horizontally along the track assembly 10, the transmission assembly 30 moves and transmits power to the display assembly 40 to drive the display assembly 40 to deform, and the display assembly 40 displays different information to the outside of the sliding door assembly 20 through deformation.
[0036] This invention, through the coordinated operation of the track assembly 10, sliding door assembly 20, transmission assembly 30, and display assembly 40, achieves mechanical structure-driven deformation of the display assembly 40. This allows the deformation power of the display assembly 40 to originate from the opening and closing of the door, eliminating the need for a power supply or other independent driving devices, thus adapting to power-free usage scenarios. By enabling the display assembly 40 to display different information to the outside of the sliding door assembly 20 through deformation, the invention allows for corresponding displays based on the different states of the sliding door assembly 20, facilitating user viewing. Furthermore, this invention enables dynamic text display with diverse and aesthetically pleasing formats, and allows for associative dynamic switching between door opening and closing states, such as different text corresponding to different door opening and closing states, enhancing interactivity. The invention boasts high practical value and wide applicability. In practical applications, it has been found that through a unique structural design, the invention achieves precise linkage between door movement and font switching, adapting to existing doors of different sizes and materials. The invention is simple in structure and low in cost, facilitating assembly and subsequent maintenance. It requires no independent drive unit, can be adapted from existing sliding doors, and offers significant flexibility for personalized design, allowing for customization based on customer needs. This invention addresses the limitations of existing sliding door technologies, such as the lack of variability in static display methods, the need for additional power supply and display screens in electronic display methods, complex structures, high costs, high energy consumption, and unsuitability for scenarios without electricity. Therefore, it is suitable for large-scale promotion and application.
[0037] like Figure 1 and Figure 2 As shown, the track assembly 10 includes a translation track 11 and a rack structure 12. The rack structure 12 is fixedly mounted on the translation track 11, and the extension direction of the rack structure 12 is parallel to the extension direction of the translation track 11. The sliding door assembly 20 is movably mounted on the translation track 11 and is limitedly engaged with the translation track 11. The transmission assembly 30 meshes with the rack structure 12. When the sliding door assembly 20 is pushed to move along the translation track 11, the transmission assembly 30 rotates to drive the display assembly 40 to deform. The display assembly 40 displays different information through deformation, corresponding to the open and closed states of the sliding door assembly 20, respectively.
[0038] By extending the rack structure 12 and the sliding track 11 in the same direction and fixing them together, the sliding door assembly 20 synchronously drives the mating gear 31 in the transmission assembly 30 to roll and mesh along the rack structure 12 during the sliding process, directly converting the linear displacement of the door body into rotational motion. This structure ensures that the two states of opening and closing correspond one-to-one with the deformation action of the display assembly 40. For example, "OPEN" is displayed when the door is fully open, and "CLOSE" is displayed when it is fully closed, with accurate response and no delay. The integrated design of the rack and track simplifies the assembly process, reduces the number of connecting parts, and reduces the risk of loosening due to vibration or long-term use. At the same time, this pure transmission method does not require electricity, making it suitable for outdoor scenarios without electricity, and has the advantages of energy saving, simple maintenance, and high reliability.
[0039] like Figure 1 and Figure 2 As shown, the transmission assembly 30 includes a mating gear 31, a transmission worm 32, and a multi-stage transmission structure 33. The transmission worm 32 is rotatably mounted on the sliding door assembly 20 and is connected to the multi-stage transmission structure 33. The mating gear 31 is fixedly mounted on the transmission worm 32 and meshes with the rack structure 12. The multi-stage transmission structure 33 is connected to the display assembly 40. When the sliding door assembly 20 is pushed to move along the sliding track 11, the mating gear 31 rotates along the rack structure 12, which drives the transmission worm 32 to rotate, so that the multi-stage transmission structure 33 drives the display assembly 40 to move and deform.
[0040] By engaging the gear 31 with the rack structure 12, the linear motion of the sliding door assembly 20 is converted into rotational torque. This torque is transmitted via a 90° turn through a coaxially fixed transmission worm gear 32. Utilizing the inherent self-locking and deceleration / torque-increasing characteristics of the worm gear drive, the impact of the door movement is effectively buffered, preventing the display assembly 40 from vibrating or overshooting due to inertia, ensuring smooth and stable deformation. The transmission worm gear 32 synchronously drives the multi-stage transmission structure 33, enabling multiple display units to deform collaboratively, laying the structural foundation for subsequent complex graphic combinations such as letters and Chinese characters. This structure requires no external power supply, relying on the kinetic energy of the door body for drive, reducing system complexity and failure rate. Furthermore, the compact layout of the worm gear drive can be integrated into the internal space of the sliding door assembly 20, maintaining a clean and aesthetically pleasing appearance. The multi-stage transmission structure 33 can adapt to different deformation requirements, such as flipping, translation, or combined movements, improving the flexibility of information expression.
[0041] like Figure 1 and Figure 2As shown, the multi-stage transmission structure 33 includes a first transmission structure 34 and a second transmission structure 35; the display component 40 includes a first part 41 and a second part 42; the first part 41 is correspondingly engaged with the first transmission structure 34, which is used to drive the first part 41 to move and / or flip; the second part 42 is correspondingly engaged with the second transmission structure 35, which is used to drive the second part 42 to move and / or flip; the first part 41 and the second part 42 are respectively used to display a portion of text or letters, and by driving the first transmission structure 34 and the second transmission structure 35 respectively, the relative positions of the first part 41 and the second part 42 are adjusted so that the first part 41 and the second part 42 can be combined to display different information; or, the first part 41 and the second part 42 are respectively used to display a portion of a pattern, and by driving the first transmission structure 34 and the second transmission structure 35 respectively, the relative positions of the first part 41 and the second part 42 are adjusted so that the first part 41 and the second part 42 can be combined to display different patterns.
[0042] By dividing the multi-stage transmission structure 33 into independent first transmission structure 34 and second transmission structure 35, and driving the first part 41 and the second part 42 of the display component 40 respectively, the technical effect of multi-unit coordinated motion under a single power source is achieved, expanding the flexibility of information expression. This invention controls the movement, flipping, or combined motion of the first part 41 and the second part 42 through the first transmission structure 34 and the second transmission structure 35 respectively, allowing them to form different spatial combinations along a preset trajectory during the door's translation process: for example, the first part 41 is a "C"-shaped component, and the second part 42 is an "L"-shaped component. In the open state, they are positioned at the "C" and "L" positions respectively, forming "CLOSE" with the fixed part 44; when the door is closed, they are relatively displaced and flipped, combining into a "P" shape to form the word "OPEN". This structure requires no electronic program control, relying on the gear ratio and limiting mechanism of the first transmission structure 34 and the second transmission structure 35 to stably reproduce the specified characters or patterns with each door opening and closing action. Meanwhile, the structure supports patterned displays. For example, the first part 41 and the second part 42 can be designed as geometric modules and combined to form a "flower", "arrow", or brand logo, achieving artistic expression. Furthermore, the first transmission structure 34 and the second transmission structure 35 are arranged independently along the thickness direction of the door body, without interfering with each other, resulting in a compact structure that is easy to maintain.
[0043] like Figure 1 and Figure 2As shown, the multi-stage transmission structure 33 includes a first transmission structure 34, a second transmission structure 35, and a third transmission structure 36; the display component 40 includes a first part 41, a second part 42, a third part 43, and a fixed part 44; the first part 41 is correspondingly engaged with the first transmission structure 34, which drives the first part 41 to move and flip; the second part 42 is correspondingly engaged with the second transmission structure 35, which drives the second part 42 to move; the third part 43 is correspondingly engaged with the third transmission structure 36, which drives the third part 43 to move and flip; the fixed part 44 is fixedly mounted on the sliding door component 20; wherein, the first part 41, the second part 42, the third part 43, and the fixed part 44 are respectively used to display letters, and by driving the first transmission structure 34, the second transmission structure 35, and the third transmission structure 36 respectively, the relative positions of the first part 41, the second part 42, the third part 43, and the fixed part 44 are adjusted so that the display component 40 displays different words.
[0044] By introducing a third transmission structure 36 and cooperating with the first transmission structure 34 and the second transmission structure 35, the display component 40 can achieve complex word combinations. Furthermore, through the spatial combination of the first part 41, the second part 42, the third part 43, and the fixed part 44, it enables the switching of multi-letter words such as "OPEN" and "CLOSE," enhancing the richness and semantic integrity of information expression. The fixed part 44 serves as a reference character, such as "O" and "E," embedded in the door structure. The three movable parts change shape during the door opening and closing process through different motion methods, such as flipping, translation, or combined actions. Positioning is achieved through the unified drive of the transmission worm gear 32 and the preset transmission ratios of the first transmission structure 34, the second transmission structure 35, and the third transmission structure 36. The transmission structures are arranged in layers along the thickness of the door, effectively avoiding motion interference and resulting in a compact and reliable structure. Simultaneously, since all motion changes are driven by the translational movement of the door, no power support is required, making it highly adaptable and suitable for high-end customized doors, cultural display doors, and smart community entrances in power-free environments.
[0045] like Figure 1 and Figure 2As shown, the first part 41 is shaped like a C, the second part 42 is shaped like an L, and the third part 43 is shaped like an S; the fixed part 44 is used to display the information of the letter "O" and the information of the letter "E" respectively; in the closed state, the first part 41 is used to display the information of the letter "C", the second part 42 is used to display the information of the letter "L", and the third part 43 is used to display the information of the letter "S". The information of the letter "S" is located between the information of the letter "O" and the information of the letter "E", so that the display component 40 displays the information of the word "CLOSE"; in the open state, the first part 41... The first part 41 and the second part 42 are combined to display the information of the letter "P". The third part 43 displays the information of the letter "N" by rotating. The information of the letter "P" is located between the information of the letter "O" and the information of the letter "E", so that the display component 40 displays the information of the word "OPEN". The relative positions of the first part 41, the second part 42, the third part 43 and the fixed part 44 are adjusted by driving the first transmission structure 34, the second transmission structure 35 and the third transmission structure 36 respectively, so that the display component 40 displays the words "OPEN" and "CLOSE" respectively.
[0046] By designing the first part 41, the second part 42, and the third part 43 as geometric components resembling the shapes of "C," "L," and "S," respectively, and combining them with the preset "O" and "E" characters in the fixed part 44, the system achieves the following: when the door is open, the first part 41, the second part 42, and the third part 43 are positioned as independent "C," "L," and "S" characters, respectively, which, together with the fixed characters "O" and "E," form the complete word "CLOSE." When the door is open, the first part 41 and the second part 42, through relative displacement and angle coordination, form the shape of a "P," while the third part 43, through a flipping motion, changes from an "S" shape to an "N," thus transforming into the word "OPEN." This switching process is driven by the translation of the door, relying on the preset motion trajectory and transmission ratio of the first part 41, the second part 42, and the third part 43 to achieve shape reproduction. No manual intervention or electronic control is required, ensuring reliable response and synchronized action.
[0047] like Figure 3 and Figure 4As shown, the rotation axis of the transmission worm 32 extends vertically; the first transmission structure 34 includes a first worm wheel 341, a first stage gear 342, a first stage gear 343, a first stage gear 344, and a support arm 345, all rotatably disposed within the sliding door assembly 20; the first worm wheel 341 meshes with the transmission worm 32; the first stage gear 342 is disposed on the first worm wheel 341 to follow the rotation of the first worm wheel 341; the rotation axis of the first worm wheel 341 is collinear with the rotation axis of the first stage gear 342, and the rotation axis of the first worm wheel 341 is parallel to the transmission worm. The rotation axis of 32 is perpendicular; the first and second stage gears 343 mesh with the first stage gear 342 and the first tertiary stage gear 344 respectively; one end of the support arm 345 meshes with the first tertiary stage gear 344, and the other end of the support arm 345 is connected to the first part 41; the inner wall of the sliding door assembly 20 is in a limiting fit with the support arm 345 to constrain the movement trajectory of the support arm 345; wherein, the transmission worm 32 sequentially drives the first worm wheel 341, the first stage gear 342, the first stage gear 343, and the first tertiary stage gear 344 to rotate, and the support arm 345 drives the first part 41 to move and flip. The rotation axis of the transmission worm 32 extends vertically; the third transmission structure 36 includes a third worm gear 361, a third primary gear 362, a third secondary gear 363, a third tertiary gear 364, and a connecting arm 365, all rotatably disposed within the sliding door assembly 20; the third worm gear 361 meshes with the transmission worm 32; the third primary gear 362 is disposed on the third worm gear 361 to follow the rotation of the third worm gear 361; the rotation axis of the third worm gear 361 is collinear with the rotation axis of the third primary gear 362, and the rotation axis of the third worm gear 361 is parallel to the rotation axis of the transmission worm 362. The rotation axis of 2 is perpendicular; the third and second stage gears 363 mesh with the third stage gears 362 and 364 respectively; one end of the connecting arm 365 meshes with the third stage gear 364, and the other end of the connecting arm 365 is connected to the third part 43; the inner wall of the sliding door assembly 20 is limited to the connecting arm 365 to constrain the movement trajectory of the connecting arm 365; wherein, the transmission worm 32 drives the third worm wheel 361, the third stage gear 362, the third stage gear 363, and the third stage gear 364 to rotate in sequence, and the connecting arm 365 drives the third part 43 to move and flip.
[0048] By employing a vertically axially arranged transmission worm 32 as the power center, the first transmission structure 34 and the third transmission structure 36 are synchronously driven, achieving independent and synchronous flipping and displacement control of the first part 41 and the third part 43 in the thickness direction of the door body. Both the first transmission structure 34 and the third transmission structure 36 adopt a five-stage transmission structure of "worm gear, first-stage gear, second-stage gear, third-stage gear, and fixed component". The first worm gear 341 and the third worm gear 361 are both meshed with the transmission worm 32 to ensure synchronous power input. Subsequently, each stage of gears transmits and converts power in sequence. The motion is ultimately transformed into a composite motion with trajectory constraints through the support arm 345 and the connecting arm 365, which in turn drives the "C"-shaped component to deform into part of the "P"-shaped component and the "S"-shaped component to flip into "N". This allows the complete English words "CLOSE" and "OPEN" to be transformed into their shapes even without electricity. This structure optimizes space utilization, avoids the structural length and interference risks caused by lateral transmission, and ensures stable trajectory of moving parts with no sway through the inner wall limiting structure, resulting in precise response and long service life.
[0049] like Figure 3 and Figure 4 As shown, the first secondary gear 343 and the third secondary gear 363 are gear ring structures; at least two of the first transmission structure 34, the second transmission structure 35 and the third transmission structure 36 are spaced apart along the thickness direction of the sliding door assembly 20; at least two of the first part 41, the second part 42 and the third part 43 are spaced apart along the thickness direction of the sliding door assembly 20.
[0050] By designing the first and second stage gears 343 and the third and second stage gears 363 as gear ring structures, the spatial layout and structural compactness of the transmission system are optimized. The gear ring structure replaces the traditional disc gear with its annular meshing surface, reducing radial space occupation and enabling the multi-stage transmission chain to achieve stable transmission with high reduction ratios and low interference within a limited door thickness, providing crucial structural support for complex deformation mechanisms. Simultaneously, by arranging at least two of the first transmission structure 34, the second transmission structure 35, and the third transmission structure 36 in a staggered manner along the thickness direction of the sliding door assembly 20, spatial conflicts between transmission components within the door body are avoided, improving assembly feasibility and operational reliability. Correspondingly, the first part 41, the second part 42, and the third part 43 are also arranged in layers along the thickness direction, creating a staggered three-dimensional visual effect on the front of the door for each display unit. This not only avoids motion interference but also enhances the layering and recognizability of text or patterns. This layout scheme combines practicality and aesthetic value, and is suitable for sliding door structures that require a smooth door appearance, efficient internal space utilization, and strong information display capabilities.
[0051] It should be noted that the first and second gears 343 and the third and second gears 363 are gear ring structures to reduce the space occupied by the first and second gears 343 and the third and second gears 363; at least two of the first transmission structure 34, the second transmission structure 35 and the third transmission structure 36 are spaced apart along the thickness direction of the sliding door assembly 20 to avoid motion interference; at least two of the first part 41, the second part 42 and the third part 43 are spaced apart along the thickness direction of the sliding door assembly 20 to avoid motion interference.
[0052] like Figure 3 and Figure 4 As shown, the rotation axis of the transmission worm 32 extends vertically; the second transmission structure 35 includes a second worm wheel, a second gear 351, and a second rack 352; the second worm wheel and the second gear 351 are rotatably disposed within the sliding door assembly 20; the second worm wheel meshes with the transmission worm 32; the second gear 351 is disposed on the second worm wheel to follow its rotation; the rotation axis of the second worm wheel is collinear with the rotation axis of the second gear 351, and the rotation axis of the second worm wheel is perpendicular to the rotation axis of the transmission worm 32; the second gear 351 meshes with the second rack 352; the second part 42 is connected to the end of the second rack 352 away from the second gear 351; the inner wall of the sliding door assembly 20 is in a limiting fit with the second rack 352 to constrain the reciprocating motion trajectory of the second rack 352; wherein, the transmission worm 32 sequentially drives the second worm wheel and the second gear 351 to rotate, the second gear 351 drives the second rack 352 to move, and the second rack 352 drives the second part 42 to move.
[0053] By designing a "worm gear, gear, and rack" linkage mechanism for the second transmission structure 35, the reciprocating motion control of the second part 42 in the display component 40 is achieved. This structure utilizes the vertical axis rotation of the transmission worm 32, which, after being reduced in speed and torque by the second worm gear, drives the coaxial second gear 351 to rotate. Furthermore, through meshing with the second rack 352, the rotational motion is converted into linear translation, allowing the second part 42, like an "L"-shaped character block, to slide along a preset trajectory, completing the shape change from "L" to "P" vertical strokes. This structure features high transmission precision; the second rack 352 engages with the inner wall of the door to ensure a smooth movement path without swaying or jitter; it also boasts good self-locking properties, with the worm gear transmission possessing a reverse self-locking characteristic, eliminating the need for an additional braking device for the second part 42; and it exhibits strong spatial adaptability, with the second rack 352 arranged along the thickness of the door body, not occupying the front space of the door body, and forming a coordinated layout with the flipping mechanisms of the first part 41 and the third part 43, avoiding structural conflicts.
[0054] like Figure 1 , Figure 5 and Figure 6As shown, a multi-stage transmission structure 33 and a corresponding display component 40 form a deformation group, and there are at least two deformation groups, with one of the deformation groups being the first deformation group; the multi-stage transmission structure 33 of the first deformation group includes a first transmission part, a second transmission part, a third transmission part, a fourth transmission part, a fifth transmission part, and a sixth transmission part; the display component 40 within this deformation group includes a first moving part 45, a second moving part 46, a third moving part 47, a fourth moving part 48, a fifth moving part 49, a sixth moving part 410, a first fixing part 411, and a second fixing part 412; the first transmission part is correspondingly matched with the first moving part 45, and the first transmission part is used to drive the first moving part 45 to move; the second transmission part is correspondingly matched with the second moving part 46, and the second transmission part is used to drive the second moving part 46 to move; the third transmission part is correspondingly matched with the third moving part 47, and the third transmission part is used to drive the third moving part 47 to move and rotate; the fourth transmission part is correspondingly matched with the fourth moving part 48, and the fourth transmission part is used to drive the fourth moving part 48 to move; the fifth transmission part is correspondingly matched with the fifth moving part 49, and the fifth transmission part is used to drive the fifth moving part 49 to move and rotate; the sixth transmission part is correspondingly matched with the sixth moving part 410, and the sixth transmission part is used to drive the sixth moving part 410 to move and rotate; the first fixing part 411 and the second fixing part 412 are respectively fixedly arranged on the sliding door assembly 20; wherein, the first moving part 45, the second moving part 46, the third moving part 47, the fourth moving part 48, the fifth moving part 49, the sixth moving part 410, the first fixing part 411, and the second fixing part 412 are respectively used to display a part of a Chinese character. By respectively driving the first transmission part, the second transmission part, the third transmission part, the fourth transmission part, the fifth transmission part, and the sixth transmission part, the relative positions of the first moving part 45, the second moving part 46, the third moving part 47, the fourth moving part 48, the fifth moving part 49, the sixth moving part 410, the first fixing part 411, and the second fixing part 412 are adjusted so that the display component 40 displays different Chinese characters.
[0055] By setting the first to sixth transmission parts to work in coordination with the first to sixth moving parts and the two groups of fixing parts, a complete Chinese character stroke combination structure is formed. Each moving part corresponds to a stroke in a Chinese character such as "horizontal stroke", "left-falling stroke", "vertical stroke", and is driven by an independent transmission structure to move, flip, or perform a composite movement, while the first fixing part 411 and the second fixing part 412 serve as stable benchmarks in the Chinese character structure such as the lower horizontal stroke of the character "hundred" and the right vertical stroke of the character "good", ensuring the stability of the overall character shape framework. In the two states of opening and closing the door, under the unified drive of the multi-stage transmission structure 33, each moving part completes the spatial change of the strokes through the preset transmission ratio and limit trajectory, realizing the seamless switching of different Chinese characters such as "hundred" and "good", and this process achieves the technical effect of the coordinated change of "the door moves and the character changes".
[0056] Such as Figure 1 、 Figure 5 and Figure 6 , the first moving part 45 is set in the shape of the horizontal stroke of Chinese characters; the first fixing part 411 is set in the shape of the horizontal stroke of Chinese characters, and the second fixing part 412 is set in the shape of the vertical stroke of Chinese characters; the second moving part 46 is set in the shape of the left-falling stroke of Chinese characters; the third moving part 47 is set in the shape of the horizontal stroke of Chinese characters; the fourth moving part 48 is set in the shape of the horizontal stroke of Chinese characters; the fifth moving part 49 is set in the shape of the vertical stroke of Chinese characters; the sixth moving part 410 is set in the shape of the horizontal stroke of Chinese characters; in the open door state, the first moving part 45 and the first fixing part 411 are combined to display the first stroke of the Chinese character "百", the second moving part 46 displays the second stroke of the Chinese character "百", the fifth moving part 49 displays the third stroke of the Chinese character "百", the third moving part 47 and the second fixing part 412 are combined to display the fourth stroke of the Chinese character "百", the fourth moving part 48 displays the fifth stroke of the Chinese character "百", and the sixth moving part 410 displays the sixth stroke of the Chinese character "百", so that the display component 40 displays the information of the Chinese character "百"; in the closed door state, the third moving part 47 and the sixth moving part 410 are combined to display the first stroke of the Chinese character "好", the fifth moving part 49 displays the second stroke of the Chinese character "好", the first moving part 45 displays the third stroke of the Chinese character "好", the second moving part 46 and the first fixing part 411 are combined to display the fourth stroke of the Chinese character "好", the second fixing part 412 displays the fifth stroke of the Chinese character "好", and the fourth moving part 48 displays the sixth stroke of the Chinese character "好", so that the display component 40 displays the information of the Chinese character "好"; or, in the closed door state, the first moving part 45 and the first fixing part 411 are combined to display the first stroke of the Chinese character "百", the second moving part 46 displays the second stroke of the Chinese character "百", the fifth moving part 49 displays the third stroke of the Chinese character "百", the third moving part 47 and the second fixing part 412 are combined to display the fourth stroke of the Chinese character "百", the fourth moving part 48 displays the fifth stroke of the Chinese character "百", and the sixth moving part 410 displays the sixth stroke of the Chinese character "百", so that the display component 40 displays the information of the Chinese character "百"; in the open door state, the third moving part 47 and the sixth moving part 410 are combined to display the first stroke of the Chinese character "好", the fifth moving part 49 displays the second stroke of the Chinese character "好", the first moving part 45 displays the third stroke of the Chinese character "好", the second moving part 46 and the first fixing part 411 are combined to display the fourth stroke of the Chinese character "好", the second fixing part 412 displays the fifth stroke of the Chinese character "好", and the fourth moving part 48 displays the sixth stroke of the Chinese character "好", so that the display component 40 displays the information of the Chinese character "好"; wherein, by driving the first moving part 45, the second moving part 46, the third moving part 47, the fourth moving part 48, the fifth moving part 49, and the sixth moving part 410 respectively, the display component 40 displays the Chinese characters "百" and "好" in different states respectively.
[0057] By designing the display component 40 of the first deformation group as a multi-unit stroke combination structure composed of the first moving part 45, the second moving part 46, the third moving part 47, the fourth moving part 48, the fifth moving part 49, the sixth moving part 410, the first fixed part 411 and the second fixed part 412, the morphological transformation of the Chinese characters "hundred" and "good" in the door opening and closing states is achieved. Each moving part is constructed in the shape of a Chinese character stroke. For example, the first moving part 45, the third moving part 47, the fourth moving part 48, and the sixth moving part 410 are in the shape of a "horizontal" structure, the second moving part 46 is in the shape of a "left-falling stroke", the fifth moving part 49 is in the shape of a "vertical stroke", and the first fixed part 411 and the second fixed part 412 are respectively embedded in the door body structure as the reference "horizontal" and "vertical" to form stable support points. During the movement of the sliding door component 20 along the track component 10, the transmission component 30 drives each moving part to displace or flip along a preset trajectory through the corresponding first to sixth transmission parts, so that the six strokes of the character "hundred" are jointly assembled by the moving parts and the fixed parts in the closed state, while the six strokes of the character "good" are re-combined by the moving parts in the open state - for example, the first stroke "horizontal" of the character "good" is jointly composed of the third moving part 47 and the sixth moving part 410, the fourth stroke "left-falling stroke" is presented by the combination of the second moving part 46 and the first fixed part 411, and the fifth stroke "vertical stroke" is composed of the second fixed part 412. This design realizes the dynamic change of the Chinese character structure through the linkage of the transmission structure and the movement structure, making the variable Chinese character form that conforms to the Chinese writing logic and visual habits appear on the door surface, enhancing the cultural identity and interactive interest of information transmission. Each moving part is arranged in layers along the thickness direction of the door body to avoid movement interference.
[0058] Such as Figure 1 , Figure 5 and Figure 6, a deformation group is the second deformation group; the multi-stage transmission structure 33 of the second deformation group includes a seventh transmission part, an eighth transmission part, a ninth transmission part, a tenth transmission part, an eleventh transmission part, a twelfth transmission part and a thirteenth transmission part; the display component 40 within this deformation group includes a seventh moving part 413, an eighth moving part 414, a ninth moving part 415, a tenth moving part 416, an eleventh moving part 417, a twelfth moving part 418, a thirteenth moving part 419, a third fixing part 420 and a fourth fixing part 421; the seventh transmission part corresponds to and cooperates with the seventh moving part 413, and the seventh transmission part is used to drive the seventh moving part 413 to move and rotate; the eighth transmission part corresponds to and cooperates with the eighth moving part 414, and the eighth transmission part is used to drive the eighth moving part 414 to move; the ninth transmission part corresponds to and cooperates with the ninth moving part 415, and the ninth transmission part is used to drive the ninth moving part 415 to move and rotate; the tenth transmission part corresponds to and cooperates with the tenth moving part 416, and the tenth transmission part is used to drive the tenth moving part 416 to move; the eleventh transmission part corresponds to and cooperates with the eleventh moving part 417, and the eleventh transmission part is used to drive the eleventh moving part 417 to move and rotate; the twelfth transmission part corresponds to and cooperates with the twelfth moving part 418, and the twelfth transmission part is used to drive the twelfth moving part 418 to rotate; the thirteenth transmission part corresponds to and cooperates with the thirteenth moving part 419, and the thirteenth transmission part is used to drive the thirteenth moving part 419 to rotate and move; the third fixing part 420 and the fourth fixing part 421 are respectively fixedly arranged on the translation door assembly 20; the third fixing part 420 is arranged in the shape of a Chinese character stroke 'pie', and the seventh moving part 413 is arranged in the shape of a Chinese character stroke 'horizontal'; the fourth fixing part 421 is arranged in the shape of a Chinese character stroke 'horizontal'; the eighth moving part 414 is arranged in the shape of a Chinese character stroke'vertical'; the ninth moving part 415, the tenth moving part 416 and the eleventh moving part 417 are respectively arranged in the shape of a Chinese character stroke 'horizontal'; the twelfth moving part 418 and the thirteenth moving part 419 are respectively arranged in the shape of a Chinese character stroke'vertical'; in the open door state, the third fixing part 420 displays the first stroke of the Chinese character 'year', the seventh moving part 413 displays the second stroke of the Chinese character 'year', the fourth fixing part 421 displays the third stroke of the Chinese character 'year', the eighth moving part 414 displays the fourth stroke of the Chinese character 'year', the ninth moving part 415, the tenth moving part 416 and the eleventh moving part 417 together display the fifth stroke of the Chinese character 'year', and the twelfth moving part 418 and the thirteenth moving part 419 together display the sixth stroke of the Chinese character 'year', so that the display component 40 displays the information of the Chinese character 'year';In the closed state, the third fixed part 420 displays the first stroke of the Chinese character "合", the seventh moving part 413 displays the second stroke of the Chinese character "合", the fourth fixed part 421 displays the third stroke of the Chinese character "合", the eighth moving part 414 and the ninth moving part 415 jointly display the fourth stroke of the Chinese character "合", the twelfth moving part 418, the thirteenth moving part 419 and the eleventh moving part 417 jointly display the fifth stroke of the Chinese character "合", and the tenth moving part 416 displays the sixth stroke of the Chinese character "合", so that the display component 40 displays the information of the Chinese character "合"; or, in the closed state, the third fixed part 420 displays the first stroke of the Chinese character "年", the seventh moving part 413 displays the second stroke of the Chinese character "年", the fourth fixed part 421 displays the third stroke of the Chinese character "年", the eighth moving part 414 displays the fourth stroke of the Chinese character "年", the ninth moving part 415, the tenth moving part 416 and the eleventh moving part 417 jointly display the fifth stroke of the Chinese character "年", and the twelfth moving part 418 and the thirteenth moving part 419 jointly display the sixth stroke of the Chinese character "年", so that the display component 40 displays the information of the Chinese character "年"; in the open state, the third fixed part 420 displays the first stroke of the Chinese character "合", the seventh moving part 413 displays the second stroke of the Chinese character "合", the fourth fixed part 421 displays the third stroke of the Chinese character "合", the eighth moving part 414 and the ninth moving part 415 jointly display the fourth stroke of the Chinese character "合", the twelfth moving part 418, the thirteenth moving part 419 and the eleventh moving part 417 jointly display the fifth stroke of the Chinese character "合", and the tenth moving part 416 displays the sixth stroke of the Chinese character "合", so that the display component 40 displays the information of the Chinese character "合"; wherein, by respectively driving the seventh transmission part, the eighth transmission part, the ninth transmission part, the tenth transmission part, the eleventh transmission part, the twelfth transmission part and the thirteenth transmission part, the display component 40 displays the Chinese character "年" and the Chinese character "合" in different states respectively.
[0059] By constructing a second deformation group, whose multi-stage transmission structure includes a seventh transmission part, an eighth transmission part, a ninth transmission part, a tenth transmission part, an eleventh transmission part, a twelfth transmission part and a thirteenth transmission part, and respectively driving a seventh moving part 413, an eighth moving part 414, a ninth moving part 415, a tenth moving part 416, an eleventh moving part 417, a twelfth moving part 418 and a thirteenth moving part 419, combined with the fixedly arranged third fixing part 420 and fourth fixing part 421, the morphological changes of the Chinese characters '年' (year) and '合' (harmony) in the door opening and closing states are realized. In this design, each moving part and fixing part are geometrically shaped according to the characteristics of Chinese character strokes. For example, the seventh moving part 413 is a 'horizontal' shaped component, the eighth moving part 414 is a'vertical' shaped component, and the twelfth moving part 418 and the thirteenth moving part 419 are'vertical' shaped segmented components. Through the coordinated actions of the transmission mechanism, these components undergo position adjustment or attitude transformation during the displacement of the door body, so as to respectively form two Chinese characters with clear semantics, '年' and '合', in the door opening and closing states. The third fixing part 420 and the fourth fixing part 421 serve as structural benchmarks, reducing the number of moving parts and enhancing the overall stability; while the coordinated combination of the ninth moving part 415, the tenth moving part 416 and the eleventh moving part 417, or the combined linkage of the twelfth moving part 418 and the thirteenth moving part 419, are all realized through components such as gears, connecting rods or racks. Each transmission part is arranged in layers along the thickness direction of the door body, effectively reducing the risk of movement interference while retaining the visual continuity of the display area. This structure realizes the synchronous switching of semantic information during the translation of the door body, enabling the door body not only to serve as a physical partition but also to have the function of dynamic information expression, and is applicable to places such as cultural display spaces, brand experience doors, traditional festival scenes or the entrances and exits of smart communities where there are requirements for atmosphere creation and interactive experience.
[0060] Such as Figure 5 And Figure 6 , the first deformation group and the second deformation group are arranged at intervals in the horizontal or vertical direction; in the door opening state, the first deformation group displays the Chinese character '百' (hundred), and the second deformation group displays the Chinese character '年' (year), so that the first deformation group and the second deformation group cooperate to display the word '百年' (hundred years); in the door closing state, the first deformation group displays the Chinese character '好' (good), and the second deformation group displays the Chinese character '合' (harmony), so that the first deformation group and the second deformation group cooperate to display the word '好合' (good harmony); or, in the door closing state, the first deformation group displays the Chinese character '百' (hundred), and the second deformation group displays the Chinese character '年' (year), so that the first deformation group and the second deformation group cooperate to display the word '百年' (hundred years); in the door opening state, the first deformation group displays the Chinese character '好' (good), and the second deformation group displays the Chinese character '合' (harmony), so that the first deformation group and the second deformation group cooperate to display the word '好合' (good harmony).
[0061] By arranging the first deformation group and the second deformation group at intervals in the horizontal or vertical direction, the information-bearing capacity of the translational deformation door is expanded. The first deformation group is used to present the Chinese characters "hundred" or "good"; the second deformation group is used to present the Chinese characters "year" or "harmonious". When the door body translates along the track assembly 10, the two deformation groups are independently driven by the transmission assembly 30, and their display contents are synchronously switched, so that "hundred" and "year" are juxtaposed horizontally or vertically in the open door state to form the word "hundred years", while "good" and "harmonious" are combined into "good harmony" in the closed door state, and both conform to the common auspicious expressions in the Chinese context. This layout uses the movement state of the door body itself as the power source for information switching without an external control signal. By arranging the first deformation group and the second deformation group at intervals, the overlap interference of the stroke areas is avoided, ensuring that the strokes of each Chinese character are clearly distinguishable; if arranged horizontally, it can adapt to wide door bodies and make the words read in a horizontal order; if arranged vertically, it is more in line with the traditional vertical writing habit, enhancing the immersion in the cultural context.
[0062] As Figure 1 and Figure 2 As shown, the translational door assembly 20 includes a door main body 21 and a transparent panel; the door main body 21 is movably arranged on the track assembly 10 and is in limit cooperation with the track assembly 10; an installation cavity is provided inside the door main body 21, and at least a part of the transmission assembly 30 and the display assembly 40 are arranged in the installation cavity; the transparent panel is detachably arranged on the door main body 21, and the transparent panel is used to block at least a part of the installation cavity; the display assembly 40 located in the installation cavity displays different information to the outside of the translational door assembly 20 through the transparent panel; taking one track assembly 10, the translational door assembly 20 located on the track assembly 10, the transmission assembly 30 located on the translational door assembly 20, and the display assembly 40 located on the translational door assembly 20 as a cooperation group; there are two cooperation groups, and the two track assemblies 10 in the two cooperation groups are integrally arranged or separated and spaced; the translational door assemblies 20 of the two cooperation groups can move towards each other or away from each other to form a double door.
[0063] By constructing the sliding door assembly 20 as a composite structure including the door body 21 and a transparent panel, an embedded and hidden layout of the transmission assembly 30 and the display assembly 40 is achieved. The mounting cavity inside the door body 21 provides a closed space for components such as gears, worm gears, racks, connecting rods, and moving parts, effectively isolating them from the influence of the external environment and improving the stability and durability of long-term operation. The transparent panel, as a removable cover, not only serves as a display window to clearly show the internal deformed characters, but also has protective, dustproof, and aesthetic functions. Its removable feature facilitates maintenance and replacement, adapting to different decorative needs. By combining the track assembly 10, the sliding door assembly 20, the transmission assembly 30, and the display assembly 40 into a mating group, and setting two such mating groups, the present invention can flexibly construct a double-door system: the track assemblies 10 of the two mating groups can adopt an integral molding structure for overall support, or they can be arranged separately to adapt to asymmetrical doorways or irregular spaces; the two sliding door assemblies 20 can slide towards each other to achieve double opening, meeting the spatial requirements of different installation scenarios. The structure is highly modular, and each component can be independently debugged and replaced, which facilitates mass production and on-site assembly.
[0064] The working process and principle of a specific embodiment of the present invention will now be described in detail as follows:
[0065] The working process and principle of the "CLOSE" to "OPEN" transition: During the process of the sliding door moving from the closed state to the open state, the user pushes the sliding door assembly 20 to slide horizontally along the sliding track 11 in the track assembly 10. The door body drives the mating gear 31 fixed to it to roll and mesh along the rack structure 12, thereby driving the transmission worm 32 to rotate around the vertical axis. The rotational power of the transmission worm 32 is synchronously distributed to the first transmission structure 34, the second transmission structure 35, and the third transmission structure 36 through the multi-stage transmission structure 33. The first transmission structure 34 includes a first worm gear 341, a first primary gear 342, a first secondary gear 343, a first tertiary gear 344, and a support arm 345. It drives the first part 41 to rotate and translate around a fixed fulcrum, transforming the original "C"-shaped block into the right semicircle of the "P". The second transmission structure 35 includes a second worm gear, a second gear 351, and a second rack 352. The second gear 351 drives the second rack 352 to move to the right along the inner wall limit trajectory, causing the second part 42, which is "L"-shaped, to move to the right and together with the first part 41, form the letter "P". The third transmission structure 36 includes a third worm gear 361, a third primary gear 362, a third secondary gear 363, a third tertiary gear 364, and a connecting arm 365. It drives the third part 43 to rotate 90°, changing from an "S" shape (approximately S) to an "N" shape (approximately N). At the same time, the fixed part 44, which is located in a fixed position, always displays "O" and "E". When the door is fully opened, the first part 41, the second part 42, the third part 43 and the fixed part 44 are assembled in the order of "OPEN" to complete the letter change from "CLOSE" to "OPEN". Similarly, the working process and principle of "OPEN" to "CLOSE" can be derived.
[0066] The working process and principle of the transformation from "hundred years" to "a perfect match": When the sliding door assembly 20 moves from the closed state to the open state, the first deformation group and the second deformation group respond synchronously. In the first deformation group, the first moving part 45, the second moving part 46, the third moving part 47, the fourth moving part 48, the fifth moving part 49, and the sixth moving part 410 are driven by the first to sixth transmission parts and recombine according to a preset trajectory: The first moving part 45 disengages from the first fixed part 411 and becomes an independent "horizontal" stroke; the third moving part 47 and the sixth moving part 41 move closer to the center to form the "horizontal" stroke at the beginning of the character "好"; the second moving part 46 and the first fixed part 411 combine to form the "left-falling stroke" as the fourth stroke of the character "好"; the second fixed part 412 remains stable as the "vertical stroke" of the fifth stroke of the character "好"; the fifth moving part 49 and the fourth moving part 48 respectively correspond to the second and sixth strokes of the character "好", completing the complete change of the six strokes of the character "好". At the same time, in the second deformation group, the seventh moving part 413, the ninth moving part 415, the eleventh moving part 417, the twelfth moving part 418, and the thirteenth moving part 419 are driven by the seventh to thirteenth transmission parts to transform from the shape of the character "年" to the shape of the character "合": The ninth moving part 415, the tenth moving part 416, and the eleventh moving part 417, which were originally used to form the fifth stroke of the character "年", exchange positions. The tenth moving part 416 moves to the right end to become the "horizontal" stroke of the sixth stroke of the character "合", and the eleventh moving part 417, together with the twelfth moving part 418 and the thirteenth moving part 419, forms the fifth stroke of the character "合"; the eighth moving part 414 and the ninth moving part 415 cooperate to form the "vertical stroke" of the fourth stroke of the character "合"; the third fixed part 420 and the fourth fixed part 421 keep the "left-falling stroke" and "horizontal stroke" of the first and third strokes of the character "合" unchanged. When the door body is fully opened, the first deformation group shows "好" and the second deformation group shows "合", and the two are juxtaposed horizontally to form the two characters "好合"; conversely, when the door body is closed, the two deformation groups return to "百" and "年", combining into "百年".
[0067] In summary, this invention provides a sliding and deformable door. By configuring a track assembly 10, a sliding door assembly 20, a transmission assembly 30, and a display assembly 40 to work together, the invention achieves mechanical structure-driven deformation of the display assembly 40. This allows the deformation power of the display assembly 40 to originate from the opening and closing of the door, eliminating the need for a power supply or other independent driving devices, thus adapting to power-free usage scenarios. Furthermore, by configuring the display assembly 40 to display different information to the outside of the sliding door assembly 20 through deformation, the invention allows for corresponding displays based on the different states of the sliding door assembly 20, facilitating user viewing. This invention also enables dynamic text display with diverse and aesthetically pleasing formats, and allows for associative dynamic switching of door opening and closing states, such as corresponding door opening and closing states. Different texts offer high interactivity. In practical applications, it has been found that this invention, through a special structural design, achieves precise linkage between "door movement and font switching," adaptable to existing doors of different sizes and materials. The invention is simple in structure and low in cost, easy to assemble and maintain, requires no independent drive device, can be modified from existing sliding doors, and offers significant flexibility for personalized design, allowing for customization according to customer needs. This invention solves the problems of existing sliding door technologies, such as the lack of variability in static display methods, and the need for additional power supply and display screens in electronic display methods, which are complex, costly, energy-intensive, and unsuitable for scenarios without electricity. It is suitable for large-scale promotion and has high practical value and wide applicability.
[0068] The technical features of the embodiments described above can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as the combination of these technical features does not contradict each other, it should be considered to be within the scope of this specification.
[0069] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0070] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of the components and steps set forth in these embodiments do not limit the scope of the invention. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following figures denote similar items; therefore, once an item is defined in one figure, it need not be further discussed in subsequent figures.
[0071] In the description of this invention, it should be understood that the orientation or positional relationship indicated by directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" is generally based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this invention and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this invention; the directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.
[0072] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0073] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore should not be construed as limiting the scope of protection of this invention.
[0074] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A sliding and deformable door, characterized in that, include: The system comprises a track assembly (10), a sliding door assembly (20), a transmission assembly (30), and a display assembly (40); the track assembly (10) is fixedly mounted; the sliding door assembly (20) is movably mounted on the track assembly (10) and engages with the track assembly (10) in a limiting manner, the track assembly (10) constraining the movement of the sliding door assembly (20); the display assembly (40) is movably mounted on the sliding door assembly (20) and faces outwards from the sliding door assembly (20); the transmission assembly (30)... The transmission component (30) is mounted on the sliding door assembly (20) and is connected to the track assembly (10) and the display component (40) respectively. When the sliding door assembly (20) is pushed to move horizontally along the track assembly (10), the transmission component (30) moves and transmits power to the display component (40) to drive the display component (40) to move and deform. The display component (40) displays different information to the outside of the sliding door assembly (20) through deformation.
2. The sliding and deformable door according to claim 1, characterized in that, The track assembly (10) includes a translation track (11) and a rack structure (12). The rack structure (12) is fixedly mounted on the translation track (11), and the extension direction of the rack structure (12) is parallel to the extension direction of the translation track (11). The sliding door assembly (20) is movably mounted on the translation track (11) and is limited to the translation track (11). The transmission assembly (30) meshes with the rack structure (12). When the sliding door assembly (20) is pushed to move along the translation track (11), the transmission assembly (30) rotates to drive the display assembly (40) to deform. The display assembly (40) displays different information through deformation to correspond to the open and closed states of the sliding door assembly (20).
3. The sliding and deformable door according to claim 2, characterized in that, The transmission assembly (30) includes a mating gear (31), a transmission worm (32), and a multi-stage transmission structure (33); the transmission worm (32) is rotatably mounted on the sliding door assembly (20), and the transmission worm (32) is connected to the multi-stage transmission structure (33) in a transmission connection; the mating gear (31) is fixedly mounted on the transmission worm (32), and the mating gear (31) meshes with the rack structure (12); the multi-stage transmission structure (33) is connected to the display assembly (40) in a transmission connection; wherein, when the sliding door assembly (20) is pushed to move along the sliding track (11), the mating gear (31) rotates along the rack structure (12), and the mating gear (31) drives the transmission worm (32) to rotate, so that the multi-stage transmission structure (33) drives the display assembly (40) to move and deform.
4. The sliding and deformable door according to claim 3, characterized in that, The multi-stage transmission structure (33) includes a first transmission structure (34) and a second transmission structure (35); the display component (40) includes a first part (41) and a second part (42); the first part (41) is correspondingly engaged with the first transmission structure (34), and the first transmission structure (34) is used to drive the first part (41) to move and / or flip; the second part (42) is correspondingly engaged with the second transmission structure (35), and the second transmission structure (35) is used to drive the second part (42) to move and / or flip; The first part (41) and the second part (42) are respectively used to display a portion of text or letters. By driving the first transmission structure (34) and the second transmission structure (35) respectively, the relative positions of the first part (41) and the second part (42) are adjusted so that the first part (41) and the second part (42) can display different information in combination. Alternatively, the first part (41) and the second part (42) are used to display a portion of the pattern respectively. By driving the first transmission structure (34) and the second transmission structure (35) respectively, the relative positions of the first part (41) and the second part (42) are adjusted so that the first part (41) and the second part (42) can be combined to display different patterns.
5. The sliding and deformable door according to claim 3, characterized in that, The multi-stage transmission structure (33) includes a first transmission structure (34), a second transmission structure (35), and a third transmission structure (36); the display component (40) includes a first part (41), a second part (42), a third part (43), and a fixed part (44); the first part (41) corresponds to and cooperates with the first transmission structure (34), and the first transmission structure (34) is used to drive the first part (41) to move and flip; the second part (42) corresponds to and cooperates with the second transmission structure (35), and the second transmission structure (35) is used to drive the second part (42) to move; the third part (43) corresponds to and cooperates with the third transmission structure (36). Correspondingly, the third transmission structure (36) is used to drive the third part (43) to move and flip; the fixed part (44) is fixedly mounted on the sliding door assembly (20); wherein, the first part (41), the second part (42), the third part (43) and the fixed part (44) are respectively used to display letters, and by driving the first transmission structure (34), the second transmission structure (35) and the third transmission structure (36) respectively, the relative positions of the first part (41), the second part (42), the third part (43) and the fixed part (44) are adjusted so that the display component (40) displays different words.
6. The sliding and deformable door according to claim 5, characterized in that, The first part (41) is set in a C-shaped form, the second part (42) is set in an L-shaped form, and the third part (43) is set in an S-shaped form; the fixed part (44) is used to display information of the letter "O" and the letter "E" respectively; in the closed state, the first part (41) is used to display information of the letter "C", the second part (42) is used to display information of the letter "L", and the third part (43) is used to display information of the letter "S", with the information of the letter "S" located between the information of the letter "O" and the information of the letter "E", so that the display component (40) displays the information of the word "CLOSE"; in the open state, the first part (41) and the fixed part (44) are respectively used to display information of the letter "C" and the letter "E". The second part (42) is combined to display the information of the letter "P", and the third part (43) displays the information of the letter "N" by rotating. The information of the letter "P" is located between the information of the letter "O" and the information of the letter "E", so that the display component (40) displays the information of the word "OPEN". The relative positions of the first part (41), the second part (42), the third part (43) and the fixed part (44) are adjusted by driving the first transmission structure (34), the second transmission structure (35) and the third transmission structure (36) respectively, so that the display component (40) displays the words "OPEN" and "CLOSE" respectively.
7. The sliding and deformable door according to claim 5 or 6, characterized in that, The rotation axis of the transmission worm (32) extends vertically; the first transmission structure (34) includes a first worm wheel (341), a first primary gear (342), a first secondary gear (343), a first tertiary gear (344), and a support arm (345) rotatably disposed within the sliding door assembly (20); the first worm wheel (341) meshes with the transmission worm (32); the first primary gear (342) is disposed on the first worm wheel (341) to follow the rotation of the first worm wheel (341); the rotation axis of the first worm wheel (341) is collinear with the rotation axis of the first primary gear (342), and the rotation axis of the first worm wheel (341) is parallel to the rotation axis of the transmission worm (32). Vertical; the first secondary gear (343) meshes with the first primary gear (342) and the first tertiary gear (344) respectively; one end of the support arm (345) meshes with the first tertiary gear (344), and the other end of the support arm (345) is connected to the first part (41); the inner wall of the sliding door assembly (20) is limited to the support arm (345) to constrain the movement trajectory of the support arm (345); wherein, the transmission worm (32) sequentially drives the first worm wheel (341), the first primary gear (342), the first secondary gear (343), and the first tertiary gear (344) to rotate, and the support arm (345) drives the first part (41) to move and flip; The rotation axis of the transmission worm (32) extends vertically; the third transmission structure (36) includes a third worm wheel (361), a third primary gear (362), a third secondary gear (363), a third tertiary gear (364), and a connecting arm (365), all rotatably disposed within the sliding door assembly (20); the third worm wheel (361) meshes with the transmission worm (32); the third primary gear (362) is disposed on the third worm wheel (361) to follow the rotation of the third worm wheel (361); the rotation axis of the third worm wheel (361) is collinear with the rotation axis of the third primary gear (362), and the rotation axis of the third worm wheel (361) is parallel to the rotation axis of the transmission worm (32). Vertical; the third secondary gear (363) meshes with the third primary gear (362) and the third tertiary gear (364) respectively; one end of the connecting arm (365) meshes with the third tertiary gear (364), and the other end of the connecting arm (365) is connected to the third part (43); the inner wall of the sliding door assembly (20) is limited to the connecting arm (365) to constrain the movement trajectory of the connecting arm (365); wherein, the transmission worm (32) sequentially drives the third worm wheel (361), the third primary gear (362), the third secondary gear (363), and the third tertiary gear (364) to rotate, and the connecting arm (365) drives the third part (43) to move and flip.
8. The sliding and deformable door according to claim 7, characterized in that, The first secondary gear (343) and the third secondary gear (363) are gear ring structures; At least two of the first transmission structure (34), the second transmission structure (35) and the third transmission structure (36) are spaced apart along the thickness direction of the sliding door assembly (20); At least two of the first part (41), the second part (42) and the third part (43) are spaced apart along the thickness direction of the sliding door assembly (20).
9. The sliding and deformable door according to claim 5 or 6, characterized in that, The rotation axis of the transmission worm (32) extends vertically; the second transmission structure (35) includes a second worm wheel, a second gear (351), and a second rack (352); the second worm wheel and the second gear (351) are rotatably disposed within the sliding door assembly (20); the second worm wheel meshes with the transmission worm (32); the second gear (351) is disposed on the second worm wheel to follow the rotation of the second worm wheel; the rotation axis of the second worm wheel is collinear with the rotation axis of the second gear (351), and the rotation axis of the second worm wheel is parallel to the rotation axis of the transmission worm (32). The line is perpendicular; the second gear (351) meshes with the second rack (352); the second part (42) is connected to the end of the second rack (352) away from the second gear (351); the inner wall of the sliding door assembly (20) is limited to the second rack (352) to constrain the reciprocating motion trajectory of the second rack (352); wherein, the transmission worm (32) sequentially drives the second worm wheel and the second gear (351) to rotate, the second gear (351) drives the second rack (352) to move, and the second rack (352) drives the second part (42) to move.
10. The sliding and deformable door according to claim 3, characterized in that, Each multi-stage transmission structure (33) and its corresponding display component (40) constitutes a deformation group, and there are at least two deformation groups, one of which is a first deformation group; the multi-stage transmission structure (33) of the first deformation group includes a first transmission part, a second transmission part, a third transmission part, a fourth transmission part, a fifth transmission part, and a sixth transmission part; the display component (40) within the deformation group includes a first moving part (45), a second moving part (46), a third moving part (47), a fourth moving part (48), a fifth moving part (49), a sixth moving part (410), a first fixed part (411), and a second fixed part. Part (412); the first transmission part corresponds to and cooperates with the first motion part (45), and the first transmission part is used to drive the first motion part (45) to move; the second transmission part corresponds to and cooperates with the second motion part (46), and the second transmission part is used to drive the second motion part (46) to move; the third transmission part corresponds to and cooperates with the third motion part (47), and the third transmission part is used to drive the third motion part (47) to move and rotate; the fourth transmission part corresponds to and cooperates with the fourth motion part (48), and the fourth transmission part is used to drive the fourth motion part (48) to move; the fifth transmission part corresponds to and cooperates with the first... The five moving parts (49) are correspondingly matched, and the fifth transmission part is used to drive the fifth moving part (49) to move and rotate; the sixth transmission part is correspondingly matched with the sixth moving part (410), and the sixth transmission part is used to drive the sixth moving part (410) to move and rotate; the first fixing part (411) and the second fixing part (412) are respectively fixedly arranged on the sliding door assembly (20); wherein, the first moving part (45), the second moving part (46), the third moving part (47), the fourth moving part (48), the fifth moving part (49), the sixth moving part (410), and the... The first fixing part (411) and the second fixing part (412) are respectively used to display a portion of a Chinese character. By driving the first transmission part, the second transmission part, the third transmission part, the fourth transmission part, the fifth transmission part and the sixth transmission part respectively, the relative positions of the first moving part (45), the second moving part (46), the third moving part (47), the fourth moving part (48), the fifth moving part (49), the sixth moving part (410), the first fixing part (411) and the second fixing part (412) are adjusted so that the display component (40) displays different Chinese characters.
11. The sliding and deformable door according to claim 10, characterized in that, The first moving part (45) is arranged in the shape of a horizontal stroke of a Chinese character; the first fixed part (411) is arranged in the shape of a horizontal stroke of a Chinese character, and the second fixed part (412) is arranged in the shape of a vertical stroke of a Chinese character; the second moving part (46) is arranged in the shape of a left-falling stroke of a Chinese character; the third moving part (47) is arranged in the shape of a horizontal stroke of a Chinese character; the fourth moving part (48) is arranged in the shape of a horizontal stroke of a Chinese character; the fifth moving part (49) is arranged in the shape of a vertical stroke of a Chinese character; the sixth moving part (410) is arranged in the shape of a horizontal stroke of a Chinese character; In the open door state, the first moving part (45) and the first fixed part (411) are combined to display the first stroke of the Chinese character "hundred", the second moving part (46) displays the second stroke of the Chinese character "hundred", the fifth moving part (49) displays the third stroke of the Chinese character "hundred", the third moving part (47) and the second fixed part (412) are combined to display the fourth stroke of the Chinese character "hundred", the fourth moving part (48) displays the fifth stroke of the Chinese character "hundred", and the sixth moving part (410) displays the sixth stroke of the Chinese character "hundred", so that the display component (40) displays the information of the Chinese character "hundred"; in the closed door state, the third moving part (47) and the sixth moving part (410) are combined to display the first stroke of the Chinese character "good", the fifth moving part (49) displays the second stroke of the Chinese character "good", the first moving part (45) displays the third stroke of the Chinese character "good", the second moving part (46) and the first fixed part (411) are combined to display the fourth stroke of the Chinese character "good", the second fixed part (412) displays the fifth stroke of the Chinese character "good", and the fourth moving part (48) displays the sixth stroke of the Chinese character "good", so that the display component (40) displays the information of the Chinese character "good"; Alternatively, in the closed door state, the first moving part (45) and the first fixed part (411) are combined to display the first stroke of the Chinese character "百", the second moving part (46) displays the second stroke of the Chinese character "百", the fifth moving part (49) displays the third stroke of the Chinese character "百", the third moving part (47) and the second fixed part (412) are combined to display the fourth stroke of the Chinese character "百", the fourth moving part (48) displays the fifth stroke of the Chinese character "百", and the sixth moving part (410) displays the sixth stroke of the Chinese character "百", so that the display component (40) displays the information of the Chinese character "百"; in the open door state, the third moving part (47) and the sixth moving part (410) are combined to display the first stroke of the Chinese character "好", the fifth moving part (49) displays the second stroke of the Chinese character "好", the first moving part (45) displays the third stroke of the Chinese character "好", the second moving part (46) and the first fixed part (411) are combined to display the fourth stroke of the Chinese character "好", the second fixed part (412) displays the fifth stroke of the Chinese character "好", and the fourth moving part (48) displays the sixth stroke of the Chinese character "好", so that the display component (40) displays the information of the Chinese character "好". Among them, by driving the first moving part (45), the second moving part (46), the third moving part (47), the fourth moving part (48), the fifth moving part (49), and the sixth moving part (410) respectively, the display component (40) displays the Chinese characters "百" and "好" in different states respectively.
12. The sliding and deformable door according to claim 11, characterized in that, One of the deformation groups is the second deformation group; the multi-stage transmission structure (33) of the second deformation group includes a seventh transmission part, an eighth transmission part, a ninth transmission part, a tenth transmission part, an eleventh transmission part, a twelfth transmission part, and a thirteenth transmission part; the display component (40) within this deformation group includes a seventh moving part (413), an eighth moving part (414), a ninth moving part (415), a tenth moving part (416), an eleventh moving part (417), a twelfth moving part (418), a thirteenth moving part (419), a third fixing part (420), and a fourth fixing part (421); the seventh transmission part is correspondingly matched with the seventh moving part (413), and the seventh transmission part is used to drive the seventh moving part (413) to move and rotate; the eighth transmission part is correspondingly matched with the eighth moving part (414), and the eighth transmission part is used to drive the eighth moving part (414) to move; the ninth transmission part is correspondingly matched with the ninth moving part (415), and the ninth transmission part is used to drive the ninth moving part (415) to move and rotate; the tenth transmission part is correspondingly matched with the tenth moving part (416), and the tenth transmission part is used to drive the tenth moving part (416) to move; the eleventh transmission part is correspondingly matched with the eleventh moving part (417), and the eleventh transmission part is used to drive the eleventh moving part (417) to move and rotate; the twelfth transmission part is correspondingly matched with the twelfth moving part (418), and the twelfth transmission part is used to drive the twelfth moving part (418) to rotate; the thirteenth transmission part is correspondingly matched with the thirteenth moving part (419), and the thirteenth transmission part is used to drive the thirteenth moving part (419) to rotate and move; the third fixing part (420) and the fourth fixing part (421) are respectively fixedly arranged on the sliding door assembly (20); The third fixing part (420) is arranged in the shape of a Chinese character stroke "丿", and the seventh moving part (413) is arranged in the shape of a Chinese character stroke "-"; the fourth fixing part (421) is arranged in the shape of a Chinese character stroke "-"; the eighth moving part (414) is arranged in the shape of a Chinese character stroke "丨"; the ninth moving part (415), the tenth moving part (416), and the eleventh moving part (417) are respectively arranged in the shape of a Chinese character stroke "-"; the twelfth moving part (418) and the thirteenth moving part (419) are respectively arranged in the shape of a Chinese character stroke "丨"; In the open door state, the third fixed part (420) displays the first stroke of the Chinese character "年", the seventh moving part (413) displays the second stroke of the Chinese character "年", the fourth fixed part (421) displays the third stroke of the Chinese character "年", the eighth moving part (414) displays the fourth stroke of the Chinese character "年", the ninth moving part (415), the tenth moving part (416) and the eleventh moving part (417) jointly display the fifth stroke of the Chinese character "年", and the twelfth moving part (418) and the thirteenth moving part (419) jointly display the sixth stroke of the Chinese character "年", so that the display component (40) displays the information of the Chinese character "年"; In the closed door state, the third fixed part (420) displays the first stroke of the Chinese character "合", the seventh moving part (413) displays the second stroke of the Chinese character "合", the fourth fixed part (421) displays the third stroke of the Chinese character "合", the eighth moving part (414) and the ninth moving part (415) jointly display the fourth stroke of the Chinese character "合", the twelfth moving part (418), the thirteenth moving part (419) and the eleventh moving part (417) jointly display the fifth stroke of the Chinese character "合", and the tenth moving part (416) displays the sixth stroke of the Chinese character "合", so that the display component (40) displays the information of the Chinese character "合"; Alternatively, in the closed door state, the third fixed part (420) displays the first stroke of the Chinese character "年", the seventh moving part (413) displays the second stroke of the Chinese character "年", the fourth fixed part (421) displays the third stroke of the Chinese character "年", the eighth moving part (414) displays the fourth stroke of the Chinese character "年", the ninth moving part (415), the tenth moving part (416) and the eleventh moving part (417) jointly display the fifth stroke of the Chinese character "年", the twelfth moving part (418) and the thirteenth moving part (419) jointly display the sixth stroke of the Chinese character "年", so that the display component (40) displays the information of the Chinese character "年"; In the open door state, the third fixed part (420) displays the first stroke of the Chinese character "合", the seventh moving part (413) displays the second stroke of the Chinese character "合", the fourth fixed part (421) displays the third stroke of the Chinese character "合", the eighth moving part (414) and the ninth moving part (415) jointly display the fourth stroke of the Chinese character "合", the twelfth moving part (418), the thirteenth moving part (419) and the eleventh moving part (417) jointly display the fifth stroke of the Chinese character "合", and the tenth moving part (416) displays the sixth stroke of the Chinese character "合", so that the display component (40) displays the information of the Chinese character "合"; Wherein, by separately driving the seventh transmission part, the eighth transmission part, the ninth transmission part, the tenth transmission part, the eleventh transmission part, the twelfth transmission part and the thirteenth transmission part, the display component (40) displays the Chinese character "year" and the Chinese character "he" respectively in different states.
13. The translational deformation door according to claim 12, wherein the first deformation group and the second deformation group are arranged at intervals in the horizontal direction or the vertical direction; in the open door state, the first deformation group displays the Chinese character "hundred", and the second deformation group displays the Chinese character "year", so that the first deformation group and the second deformation group cooperate to display the word "hundred years"; in the closed door state, the first deformation group displays the Chinese character "good", and the second deformation group displays the Chinese character "he", so that the first deformation group and the second deformation group cooperate to display the word "good he"; or, in the closed door state, the first deformation group displays the Chinese character "hundred", and the second deformation group displays the Chinese character "year", so that the first deformation group and the second deformation group cooperate to display the word "hundred years"; in the open door state, the first deformation group displays the Chinese character "good", and the second deformation group displays the Chinese character "he", so that the first deformation group and the second deformation group cooperate to display the word "good he".
14. The translational deformation door according to claim 1, wherein the translational door assembly (20) includes a door main body (21) and a transparent panel; the door main body (21) is movably arranged on the track assembly (10) and is in limit cooperation with the track assembly (10); an installation cavity is provided inside the door main body (21), and at least a part of the transmission assembly (30) and the display component (40) is arranged in the installation cavity; the transparent panel is detachably arranged on the door main body (21), and the transparent panel is used to block at least a part of the installation cavity; the display component (40) located in the installation cavity displays different information to the outside of the translational door assembly (20) through the transparent panel; taking one track assembly (10), the translational door assembly (20) located on the track assembly (10), the transmission assembly (30) located on the translational door assembly (20) and the display component (40) located on the translational door assembly (20) as a cooperation group; there are two cooperation groups, and the two track assemblies (10) in the two cooperation groups are integrally arranged or separately arranged at intervals; the translational door assemblies (20) of the two cooperation groups can move towards or away from each other to form a double door.