Container type space capsule living device

By introducing a rotatable and adjustable direction adjustment seat and a stable support seat into the containerized space capsule, combined with motor-driven rollers and a support structure, the problem of movement and position adjustment of the containerized space capsule is solved, achieving convenient position adjustment and stable support.

CN223536098UActive Publication Date: 2025-11-11JIANGXI YUANTONG GRID ENG CO LTD
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Patent Information

Application Number
CN202422866291.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-11
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing containerized spacecraft require large mechanical assistance for short-distance movement and repositioning, and cannot be moved or repositioned independently.

Method used

A rotatable and adjustable direction adjustment seat and a stable support seat were designed, and together with components such as large rollers, a movement adjustment motor, and an orientation adjustment motor, the position movement and orientation adjustment of the container-type space capsule can be realized.

Benefits of technology

It enables convenient movement and stable support of the containerized space capsule, improving ease of use and flexibility of position adjustment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223536098U_ABST
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Abstract

The utility model discloses a container type space capsule living device which comprises a container type space capsule body, two bearing seats are fixedly installed at the two ends of the bottom of the container type space capsule body respectively, and direction adjusting seats capable of being rotationally adjusted are installed at the bottoms of the two bearing seats respectively. The bottoms of the two direction adjusting seats are both provided with large rolling wheels used for moving, the directions of the large rolling wheels can be adjusted through the arrangement of the two direction adjusting seats, and the position of the container type space capsule body can be moved through the arrangement of the eight large rolling wheels. Four stable supporting seats capable of being adjusted in a lifting mode are annularly installed on the circumferential faces of the two direction adjusting seats at equal intervals. The container type space capsule living device is provided with the adjustable moving structure, the position of the container type space capsule can be effectively moved and adjusted through the adjustable moving structure, and therefore the use convenience of the container type space capsule is effectively improved.
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Description

Technical Field

[0001] This utility model belongs to the field of space capsule technology, specifically a containerized space capsule living device. Background Technology

[0002] With economic development and improved living standards, more and more people enjoy traveling. Space capsules, a new type of living space, are independent of buildings, portable, and multifunctional, suitable for specific locations. Existing containerized space capsules are designed and installed as a whole, transported entirely as a unit, requiring large machinery for loading and unloading. Once transported to their destination, the unibody space capsule is supported by legs and cannot be moved. When short-distance movement or repositioning is needed, large machinery is still required for lifting and moving the capsule. Therefore, improvements are needed to address these issues. Utility Model Content

[0003] To achieve the above objectives, this utility model provides the following technical solution: a containerized space capsule living device, comprising a containerized space capsule body, with two support seats fixedly installed at both ends of the bottom of the containerized space capsule body, and a rotatable and adjustable direction adjustment seat installed at the bottom of each of the two support seats, and large rollers for movement installed at the bottom of each of the two direction adjustment seats. The arrangement of the two direction adjustment seats allows for directional adjustment of the large rollers, and the arrangement of eight large rollers allows for positional movement of the containerized space capsule body. Furthermore, four height-adjustable stable support seats are installed at equal intervals on the circumference of each of the two direction adjustment seats, and the arrangement of the eight stable support seats effectively supports the containerized space capsule body and maintains its stability during use.

[0004] Preferably, each of the two direction adjustment seats has two pairs of wheel grooves at its bottom, and a transmission groove located at the bottom of the direction adjustment seat is formed between each pair of wheel grooves. A movable adjustment shaft is rotatably installed between the interior of each pair of wheel grooves and the transmission groove. A large roller is fixedly installed on the surface of the movable adjustment shaft located inside the wheel groove. A transmission gear is installed on the surface of the movable adjustment shaft located inside the transmission groove. A movable adjustment motor is installed inside the transmission groove. A rotating gear that meshes with the transmission gear is fixedly installed at the output end of the movable adjustment motor, thereby enabling effective rotation adjustment of the large roller.

[0005] Preferably, the middle part of the bottom of the bearing seat and the middle part of the top of the direction adjustment seat are connected by a rotating shaft. A support ring A is fixedly installed at the bottom of the bearing seat, and a support ring B is fixedly installed at the top of the direction adjustment seat. Ball bearings A that contact the top of the direction adjustment seat are installed at equal intervals in a ring at the bottom of the support ring A, and ball bearings B that contact the bottom of the bearing seat are installed at equal intervals in a ring at the top of the support ring B. A bevel gear ring is fixedly installed at the bottom of the bearing seat, and an orientation adjustment motor is installed at the top of the direction adjustment seat. A bevel gear that matches and meshes with the bevel gear ring is fixedly installed at the output end of the orientation adjustment motor, thereby enabling the orientation adjustment seat to be rotated for orientation adjustment.

[0006] Preferably, four fixing blocks are fixedly installed at equal intervals on the circumferential surface of both direction adjustment seats. A bearing is fixedly installed on the top of each fixing block. An internally threaded tube is fixedly installed on the inner ring of the bearing. An adjusting gear is fixedly installed on the top of each internally threaded tube. A through hole is opened in the middle of each fixing block. A support threaded column that passes through the through hole is connected to the internal thread of the internally threaded tube. A stable support seat is fixedly installed at the bottom of the support threaded column. A vertical groove is opened on the surface of the support threaded column. A limit block is fixedly installed inside the through hole. The limit block is located inside the vertical groove.

[0007] Preferably, each of the two directional adjustment seats has a movable ring installed on its top. An external gear ring is fixedly installed on the outer arc surface of the movable ring and meshes with the adjustment gear. Each of the two directional adjustment seats has a telescopic cylinder rotatably installed on its top at equal intervals. The telescopic ends of the telescopic cylinders are rotatably connected to the inner arc surface of the movable ring, thereby effectively stabilizing the support seat for adjustment and providing stable support.

[0008] Compared with the prior art, the beneficial effects of this utility model are as follows: By providing a bearing seat, a direction adjustment seat, a large roller, a stable support seat, a wheel groove, a transmission groove, a movable adjustment shaft, a transmission gear, a movable adjustment motor, a rotating gear, a rotating shaft, a support ring A, a support ring B, a bevel gear ring, an orientation adjustment motor, a bevel gear, a fixing block, a bearing, an internal threaded pipe, an adjustment gear, a through hole, a support threaded column, a vertical groove, a limit block, a movable ring, an external gear ring, and a telescopic cylinder, this containerized space capsule living device has an adjustable movable structure. This adjustable movable structure can effectively move and adjust the position of the containerized space capsule, thereby effectively improving the convenience of using the containerized space capsule. At the same time, the adjustable movable structure is simple in design, convenient and easy to use, and stable and reliable in adjustment. Its performance can meet the actual installation and use requirements of the space capsule. Attached Figure Description

[0009] The accompanying drawings are provided to further understand the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation thereof.

[0010] In the attached diagram:

[0011] Figure 1 This is a schematic diagram of the container-type space capsule living device of this utility model;

[0012] Figure 2 This utility model Figure 1 A partial structural diagram;

[0013] Figure 3 This utility model Figure 2 A partial structural diagram;

[0014] Figure 4 This utility model Figure 2 A partial sectional view of the structure;

[0015] Figure 5 This utility model Figure 3 A partial sectional view of the structure;

[0016] In the diagram: 1. Container-type space capsule body; 2. Support seat; 3. Direction adjustment seat; 4. Large roller; 5. Stable support seat; 6. Wheel groove; 7. Transmission groove; 8. Moving adjustment shaft; 9. Transmission gear; 10. Moving adjustment motor; 11. Rotating gear; 12. Rotating shaft; 13. Support ring A; 14. Support ring B; 15. Bevel gear ring; 16. Orientation adjustment motor; 17. Bevel gear; 18. Fixing block; 19. Bearing; 20. Internal threaded pipe; 21. Adjusting gear; 22. Through hole; 23. Support threaded column; 24. Vertical groove; 25. Limiting block; 26. Movable ring; 27. External gear ring; 28. Telescopic cylinder. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0018] Depend on Figures 1 to 5The present invention includes a container-type space capsule body 1. Two support seats 2 are fixedly installed at both ends of the bottom of the container-type space capsule body 1. Rotatable and adjustable direction adjustment seats 3 are installed at the bottom of the two support seats 2. Large rollers 4 for movement are installed at the bottom of the two direction adjustment seats 3. The two direction adjustment seats 3 can adjust the direction of the large rollers 4. The eight large rollers 4 can move the container-type space capsule body 1. Four adjustable and height-adjustable stable support seats 5 are installed at equal intervals on the circumference of the two direction adjustment seats 3. The eight stable support seats 5 can effectively support the container-type space capsule body 1 and maintain its stability during use.

[0019] This containerized space capsule living unit features an adjustable movable structure, which effectively moves and adjusts the position of the containerized space capsule, thereby significantly improving its usability. Furthermore, this adjustable movable structure is simple in design, easy to use, and provides stable and reliable adjustment, meeting the actual installation and usage requirements of the space capsule.

[0020] Two pairs of wheel grooves 6 are provided at the bottom of each of the two directional adjustment seats 3. A transmission groove 7 located at the bottom of the directional adjustment seat 3 is provided between each pair of wheel grooves 6. A movable adjustment shaft 8 is rotatably installed between the interior of each pair of wheel grooves 6 and the transmission groove 7. A large roller 4 is fixedly installed on the surface of the movable adjustment shaft 8 located inside the wheel groove 6. A transmission gear 9 is installed on the surface of the movable adjustment shaft 8 located inside the transmission groove 7. A movable adjustment motor 10 is installed inside the transmission groove 7. A rotating gear 11 that meshes with the transmission gear 9 is fixedly installed at the output end of the movable adjustment motor 10, thereby effectively adjusting the rotation of the large roller 4.

[0021] By activating four movable adjustment motors 10, four rotating gears 11 are rotated. The rotation of the four rotating gears 11 drives four transmission gears 9, which in turn drives four movable adjustment shafts 8 to rotate. The rotation of the four movable adjustment shafts 8 causes eight large rollers 4 to roll, thereby moving the container-type space capsule body 1 to a new position.

[0022] The middle part of the bottom of the bearing seat 2 is connected to the middle part of the top of the direction adjustment seat 3 by a rotating shaft 12. A support ring A13 is fixedly installed at the bottom of the bearing seat 2, and a support ring B14 is fixedly installed at the top of the direction adjustment seat 3. The bottom of the support ring A13 is equidistantly equipped with balls A that contact the top of the direction adjustment seat 3, and the top of the support ring B14 is equidistantly equipped with balls B that contact the bottom of the bearing seat 2. A bevel gear ring 15 is fixedly installed at the bottom of the bearing seat 2, and an orientation adjustment motor 16 is installed at the top of the direction adjustment seat 3. A bevel gear 17 that matches and meshes with the bevel gear ring 15 is fixedly installed at the output end of the orientation adjustment motor 16, so that the orientation adjustment seat 3 can be effectively rotated for orientation adjustment.

[0023] By starting the orientation adjustment motor 16, the bevel gear 17 is rotated. The rotation of the bevel gear 17 causes it to roll on the bevel gear ring 15, which in turn drives the orientation adjustment seat 3 to rotate. The rotation of the orientation adjustment seat 3 drives the large roller 4 to adjust the direction of movement.

[0024] Four fixing blocks 18 are fixedly installed circumferentially at equal intervals on the circumferential surface of both directional adjustment seats 3. A bearing 19 is fixedly installed on the top of each fixing block 18. An internally threaded tube 20 is fixedly installed on the inner ring of the bearing 19. An adjusting gear 21 is fixedly installed on the top of each internally threaded tube 20. A through hole 22 is opened in the middle of each fixing block 18. A support threaded column 23 that passes through the through hole 22 is connected to the internal thread of the internally threaded tube 20. A stable support seat 5 is fixedly installed at the bottom of the support threaded column 23. A vertical groove is opened on the surface of the support threaded column 23. A limiting block 25 is fixedly installed inside the groove 24 and the through hole 22. The limiting block 25 is located inside the vertical groove 24. A movable ring 26 is installed on the top of both directional adjustment seats 3. An external gear ring 27 is fixedly installed on the outer arc surface of the movable ring 26. The external gear ring 27 meshes with the adjusting gear 21. A telescopic cylinder 28 is rotatably installed on the top of both directional adjustment seats 3 at equal intervals. The telescopic ends of the telescopic cylinder 28 are rotatably connected to the inner arc surface of the movable ring 26, thereby effectively stabilizing the support seat 5 for adjustment and providing stable support.

[0025] By activating the telescopic cylinder 28 to extend, the movable ring 26 and the external gear ring 27 are pushed to rotate. The rotation of the external gear ring 27 will drive the adjustment gear 21 to rotate. The rotation of the adjustment gear 21 will drive the internal threaded tube 20 to rotate. The rotation of the internal threaded tube 20 will cause the support threaded column 23 to move down through the limit block 25 and the vertical groove 24. The downward movement of the support threaded column 23 will drive the stable support seat 5 to move down, thus providing stable support for the container-type space capsule body 1.

Claims

1. A containerized space capsule living facility, comprising a containerized space capsule body (1), characterized in that: Two support seats (2) are fixedly installed at both ends of the bottom of the container-type space capsule body (1). The bottom of each support seat (2) is equipped with a rotatable and adjustable direction adjustment seat (3). The bottom of each direction adjustment seat (3) is equipped with a large roller (4) for movement. The two direction adjustment seats (3) can adjust the direction of the large roller (4). The eight large rollers (4) can move the container-type space capsule body (1) in position. The two direction adjustment seats (3) are equipped with four adjustable and height-adjustable stable support seats (5) at equal intervals on their circumference. The eight stable support seats (5) can effectively support the container-type space capsule body (1) and maintain its stability in use.

2. The containerized space capsule living unit according to claim 1, characterized in that: Two pairs of wheel grooves (6) are provided at the bottom of each of the two direction adjustment seats (3). A transmission groove (7) located at the bottom of the direction adjustment seat (3) is provided between each pair of wheel grooves (6). A movable adjustment shaft (8) is rotatably installed between the interior of each pair of wheel grooves (6) and the transmission groove (7). A large roller (4) is fixedly installed on the surface of the movable adjustment shaft (8) located inside the wheel groove (6). A transmission gear (9) is installed on the surface of the movable adjustment shaft (8) located inside the transmission groove (7). A movable adjustment motor (10) is installed inside the transmission groove (7). A rotating gear (11) that meshes with the transmission gear (9) is fixedly installed at the output end of the movable adjustment motor (10).

3. The containerized space capsule living unit according to claim 1, characterized in that: The middle part of the bottom of the bearing seat (2) and the middle part of the top of the direction adjustment seat (3) are connected by a rotating shaft (12). A support ring A (13) is fixedly installed at the bottom of the bearing seat (2), and a support ring B (14) is fixedly installed at the top of the direction adjustment seat (3). A ball A that contacts the top of the direction adjustment seat (3) is installed at equal intervals in a ring at the bottom of the support ring A (13), and a ball B that contacts the bottom of the bearing seat (2) is installed at equal intervals in a ring at the top of the support ring B (14). A bevel gear ring (15) is fixedly installed at the bottom of the bearing seat (2), and an orientation adjustment motor (16) is installed at the top of the direction adjustment seat (3). A bevel gear (17) that matches and meshes with the bevel gear ring (15) is fixedly installed at the output end of the orientation adjustment motor (16).

4. The containerized space capsule living unit according to claim 1, characterized in that: Four fixing blocks (18) are fixedly installed at equal intervals on the circumferential surfaces of the two direction adjustment seats (3). A bearing (19) is fixedly installed on the top of each fixing block (18). An internal threaded tube (20) is fixedly installed on the inner ring of the bearing (19). An adjusting gear (21) is fixedly installed on the top of each internal threaded tube (20). A through hole (22) is opened in the middle of each fixing block (18). A support threaded column (23) that passes through the through hole (22) is connected to the internal thread of the internal threaded tube (20). A stable support seat (5) is fixedly installed at the bottom of the support threaded column (23). A vertical groove (24) is opened on the surface of the support threaded column (23). A limit block (25) is fixedly installed inside the through hole (22). The limit block (25) is located inside the vertical groove (24).

5. A containerized space capsule living unit according to claim 4, characterized in that: Both of the direction adjustment seats (3) are equipped with a movable ring (26) on their tops. An external gear ring (27) is fixedly installed on the outer arc surface of the movable ring (26). The external gear ring (27) meshes with the adjustment gear (21). Both of the direction adjustment seats (3) are equipped with telescopic cylinders (28) that rotate at equal intervals in a ring on their tops. The telescopic ends of the telescopic cylinders (28) are rotatably connected to the inner arc surface of the movable ring (26).