Push-pull structure with self-adaptive adjusting foot margin

By installing an adaptive pad assembly on the foot of the push-pull structure, the expansion and contraction length and contact angle of the foot are automatically adjusted according to the leveling of the ground, the problem of unstable foot support in the prior art is solved, and more stable partition body fixation and longer service life are achieved.

CN222835159UActive Publication Date: 2025-05-06CHINA ARCHITECTURE DESIGN & RES GRP CO LTD
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Patent Information

Application Number
CN202421795164.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-05-06
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The foot of the existing push-pull structure cannot be adaptively adjusted according to the leveling of the contact ground, resulting in unstable support, easy to sway and shake, and shortened service life, posing a safety hazard.

Method used

A push and pull structure with adaptive adjustment of the foot is designed. The foot is equipped with adaptive pad assembly, including pads, connecting clubs, guide sleeves and elastic parts. The expansion and contraction length and contact angle are automatically adjusted according to the leveling of the ground to ensure that the foot is in full contact with the ground.

Benefits of technology

By adaptively adjusting the foot, the support stability of the foot to the partition body is improved, swaying and shaking are avoided, the service life of the push-pull structure is extended, and safety is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a push-pull structure with a self-adaptive adjusting foot margin, belongs to the technical field of buildings, and solves the problem that the foot margin in the existing push-pull structure cannot be self-adaptively adjusted according to the flatness condition of the contacted ground. The self-adaptive cushion block comprises a foot margin, a self-adaptive cushion block assembly is installed on the foot margin, the self-adaptive cushion block assembly comprises a cushion block, a connecting ball rod, a guide sleeve and an elastic piece, and the cushion block is connected with the connecting ball rod and can rotate relative to the connecting ball rod; the connecting ball rod is arranged on the guide sleeve in a sleeving mode and can move along the axis of the guide sleeve. The guide sleeve is used for limiting the connecting ball rod to only move along the axis direction of the guide sleeve; one end of the elastic piece is connected with the connecting ball rod, and the other end is connected with the guide sleeve and used for applying elastic thrust to the connecting ball rod all the time. According to the utility model, the self-adaptive cushion block assembly is arranged to ensure that the foot margin can be in complete contact with the ground, so that the supporting stability of the foot margin to the partition body is improved, and the installed and fixed partition body is prevented from swinging.
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Description

Technical Field

[0001] The utility model relates to the technical field of construction, in particular to a push-pull structure with self-adaptive adjustable feet. Background Art

[0002] Many cities in my country with hot summers and cold winters have distinct four seasons and large differences in seasonal climate conditions. Buildings often cannot always maintain a comfortable indoor environment throughout the year. Especially in large existing buildings, due to their large depth and high space, there are phenomena such as hot summers and cold winters. With the change of seasons, the existing technology generally installs a sliding structure, that is, a partition wall to divide and close the original indoor space in the building, which plays a role in adjusting the indoor wind speed, wind direction, and temperature, thereby improving the physical comfort of indoor personnel.

[0003] Existing partition walls usually have feet on the partition body, and the partition body is lifted up by adjusting the feet, and the partition body is pressed tightly against the ceiling or roof to fix the partition body; because the existing feet cannot be adaptively adjusted according to the flatness of the ground they contact, when the ground is uneven, it cannot be guaranteed that the feet can fully contact the ground, resulting in unstable support of the partition body by the feet, making the partition body easy to swing after installation and fixation, and there is a defect of unstable fixation, which will shorten the service life of the sliding structure and also pose a safety hazard. Utility Model Content

[0004] In view of the above analysis, the utility model aims to provide a push-pull structure with self-adaptive adjustable feet, so as to solve the problem that the feet of the existing push-pull structure cannot be self-adaptively adjusted according to the flatness of the ground they contact.

[0005] The purpose of this utility model is mainly achieved through the following technical solutions:

[0006] A push-pull structure with self-adaptive adjustable feet, comprising a partition body and feet, wherein the feet are used to fix the partition body;

[0007] An adaptive pad assembly is provided on the foot, and the adaptive pad assembly is used to automatically adjust the telescopic length and the contact angle with the ground according to the flatness of the ground in contact;

[0008] The adaptive pad block assembly includes a pad block, a connecting ball rod, a guide sleeve and an elastic member, wherein the pad block is connected to the connecting ball rod and can rotate relative to the connecting ball rod; the connecting ball rod sleeve is arranged on the guide sleeve and can move along the axis of the guide sleeve; the guide sleeve is fixedly connected to the first support plate and / or the second support plate, and is used to limit the connecting ball rod to move only along the axis direction of the guide sleeve; one end of the elastic member is connected to the connecting ball rod, and the other end is connected to the guide sleeve, and the elastic member is used to always apply an elastic thrust to the connecting ball rod. Under the action of the elastic thrust of the elastic member, to ensure that when the first support plate and the second support plate are in contact with the ground, the pad block can automatically adjust the telescopic length according to the flatness of the bottom surface, and at the same time automatically adjust the angle of the pad block, so that the pad block always remains in full contact with the ground.

[0009] Furthermore, a ball socket is provided on the cushion block; the connecting ball rod includes a ball head, the ball head is inserted into the ball socket, and the ball head cooperates with the ball socket to form a ball joint structure.

[0010] Furthermore, a plurality of the footings are provided.

[0011] Furthermore, the foot comprises a first foot, a second foot, a third foot and a fourth foot; the first foot and the second foot are symmetrically arranged, and the first foot and the second foot are extended along the width direction of the partition body; the third foot and the fourth foot are symmetrically arranged, and the third foot and the fourth foot are extended along the thickness direction of the partition body.

[0012] Furthermore, the line between the third foot and the fourth foot is perpendicular to the line between the first foot and the second foot, and the line between the third foot and the fourth foot passes through the midpoint of the line between the first foot and the second foot.

[0013] Furthermore, the first anchor and the second anchor have the same structure, and the third anchor and the fourth anchor have the same structure; the first anchor includes a first support plate, and the third anchor includes a second support plate, and both the first support plate and the second support plate are provided with a pad mounting groove, and the pad mounting groove is used to install an adaptive pad assembly.

[0014] Furthermore, the first foot also includes a first drive sleeve and a first connecting shaft, one end of the first connecting shaft is inserted into the first drive sleeve, and the other end is fixedly connected to the first support plate; the first connecting shaft can move along the axis of the first drive sleeve.

[0015] Furthermore, the third foot also includes a second drive sleeve and a second connecting shaft, one end of the second connecting shaft is inserted into the second drive sleeve, and the other end is rotatably connected to the second support plate; the second connecting shaft can move along the axis of the second drive sleeve, and the second support plate can be screwed out or screwed into the lower end surface of the partition body.

[0016] Further, the first driving sleeve includes a first rotating sleeve and a first fixed sleeve, the first fixed sleeve is fixedly connected to the partition body, and the first rotating sleeve is inserted into the first fixed sleeve and is rotatably connected to the first fixed sleeve.

[0017] Furthermore, the second driving sleeve includes a second rotating sleeve and a second fixed sleeve, the second fixed sleeve is fixedly connected to the partition body, and the second rotating sleeve is inserted into the second fixed sleeve and is rotatably connected to the second fixed sleeve.

[0018] The technical solution of the utility model can achieve at least one of the following effects:

[0019] (1) The utility model provides a push-pull structure with an adaptively adjustable foot, including a foot, on which an adaptive pad assembly is installed, and the adaptive pad assembly is used to automatically adjust the telescopic length and the contact angle with the ground according to the flatness of the ground in contact;

[0020] The adaptive pad block assembly comprises a pad block, a connecting ball rod, a guide sleeve and an elastic member, the pad block is connected to the connecting ball rod and can rotate relative to the connecting ball rod; the connecting ball rod sleeve is arranged on the guide sleeve and can move along the axis of the guide sleeve; the guide sleeve is used to limit the connecting ball rod to move only along the axis direction of the guide sleeve; one end of the elastic member is connected to the connecting ball rod, and the other end is connected to the guide sleeve, which is used to always apply an elastic thrust to the connecting ball rod. Under the elastic thrust of the elastic member, when the first support plate and the second support plate are in contact with the ground, the pad block can automatically adjust the telescopic length according to the flatness of the bottom surface when the first support plate and the second support plate are in contact with the ground, and at the same time automatically adjust the angle of the pad block, so that the pad block always keeps in full contact with the ground; the utility model arranges an adaptive pad block assembly to ensure that the ground foot can be in full contact with the ground, thereby improving the stability of the ground foot's support of the partition body and avoiding the partition body from swaying after installation and fixation.

[0021] (2) The anchors described in the utility model include a first anchor, a second anchor, a third anchor and a fourth anchor. The first anchor and the second anchor are longitudinally symmetrically arranged, and the first anchor and the second anchor are used to provide longitudinal support and longitudinal tightening force for the partition body; the third anchor and the fourth anchor are transversely symmetrically arranged, and the third anchor and the fourth anchor are used to provide transverse support and transverse tightening force for the partition body. The first anchor and the second anchor are used to longitudinally support and longitudinally tighten the partition body, and the third anchor and the fourth anchor are used to transversely support and transversely tighten the partition body, thereby providing longitudinal support and longitudinal tightening force and transverse support and transverse tightening force for the partition body, so that the partition body can be subjected to tightening force in both longitudinal and transverse directions, so that the partition body is subjected to uniform force, which can prevent the partition body from swaying and shaking, and improve the stability and safety of the fixed push-pull structure.

[0022] (3) In the utility model, the second support plate is a fan-shaped structure, and the second support plate is rotatably connected to the second connecting shaft. Rotating the second support plate can cause it to be rotated out or rotated into the lower end surface of the partition body. When the second support plate is rotated out of the lower end surface of the partition body, the lateral support area of ​​the third foot can be increased, thereby further improving the stability of the lateral support of the partition body by the third foot; when the second support plate is rotated into the lower end surface of the partition body, the space occupied by the third foot can be reduced.

[0023] In the present invention, the above-mentioned technical solutions can also be combined with each other to achieve more preferred combination solutions. Other features and advantages of the present invention will be described in the subsequent description, and some advantages can become obvious from the description, or can be understood by implementing the present invention. The purpose and other advantages of the present invention can be achieved and obtained through the contents specifically pointed out in the description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The accompanying drawings are only used for the purpose of illustrating specific embodiments and are not to be considered as limiting the present invention. In the entire drawings, the same reference symbols represent the same components.

[0025] Figure 1 This is a schematic diagram of the push-pull structure in the embodiment of the utility model;

[0026] Figure 2 A cross-sectional view of the first foot in an embodiment of the utility model;

[0027] Figure 3 It is a cross-sectional view of the third foot in the embodiment of the utility model;

[0028] Figure 4 This is a schematic diagram of the structure of the first support plate in an embodiment of the utility model;

[0029] Figure 5This is a schematic diagram of the structure of the second support plate in the embodiment of the utility model;

[0030] Figure 6 A cross-sectional view of an adaptive pad assembly in an embodiment of the utility model;

[0031] Figure 7 A cross-sectional view of the first support plate or the second support plate in an embodiment of the utility model;

[0032] Figure 8 It is a cross-sectional view of a connection club in an embodiment of the utility model.

[0033] Reference numerals:

[0034] 1. Partition body;

[0035] 2. Ground footing;

[0036] 21. first driving sleeve; 211. first rotating sleeve; 2111. first driving cavity; 212. first fixed sleeve;

[0037] 22. First connecting shaft; 221. First limiting sliding groove;

[0038] 23. A first support plate;

[0039] 24, second driving sleeve; 241, second rotating sleeve; 2411, second driving cavity; 242, second fixed sleeve;

[0040] 25. second connecting shaft; 251. second limiting slide groove;

[0041] 26. A second supporting plate;

[0042] 3. Pad installation slot;

[0043] 4. Adaptive pad assembly;

[0044] 41. Pad; 411. Ball socket;

[0045] 42, connecting club; 421, ball head; 422, guide column cavity;

[0046] 43. Guide sleeve;

[0047] 44. Elastic parts. DETAILED DESCRIPTION

[0048] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings, wherein the accompanying drawings constitute a part of the present invention and are used together with the embodiments of the present invention to illustrate the principles of the present invention, but are not used to limit the scope of the present invention.

[0049] A specific embodiment of the utility model discloses a push-pull structure with adaptively adjustable feet, such as Figure 1 As shown, it includes a partition body 1 and a foot 2, the foot 2 is installed on the partition body 1, and the partition body 1 can be lifted up by adjusting the foot 2, and the partition body 1 is pressed against the ceiling or roof, so as to fix the partition body 1; the foot 2 includes a first foot, a second foot, a third foot and a fourth foot, the first foot and the second foot are symmetrically arranged, and the first foot and the second foot are extended along the width direction of the partition body 1, that is, the first foot and the second foot are longitudinally symmetrically arranged, and the first foot and the second foot are used to provide longitudinal support and longitudinal tightening force for the partition body 1; the third foot and The fourth anchor is symmetrically arranged, and the third anchor and the fourth anchor are extended along the thickness direction of the partition body 1, that is, the third anchor and the fourth anchor are transversely symmetrically arranged, and the third anchor and the fourth anchor are used to provide transverse support and transverse tightening force for the partition body 1; the first anchor, the second anchor, the third anchor and the fourth anchor are used to provide longitudinal support and longitudinal tightening force and transverse support and transverse tightening force for the partition body 1, so that the partition body 1 can be subjected to tightening force in both longitudinal and transverse directions, so that the partition body 1 is evenly stressed, which can prevent the partition body 1 from swaying and shaking, and improve the stability and safety of the fixed rear push-pull structure.

[0050] Preferably, the first anchor and the second anchor have the same structure, and the third anchor and the fourth anchor have the same structure; the line between the third anchor and the fourth anchor is perpendicular to the line between the first anchor and the second anchor, and the line between the third anchor and the fourth anchor passes through the midpoint of the line between the first anchor and the second anchor, so that the partition body 1 is subjected to more uniform force, which can further prevent the partition body 1 from swaying and shaking, and further improve the stability and safety of the fixed rear push-pull structure.

[0051] Preferably, if Figure 2 As shown, the first foot includes a first driving sleeve 21, a first connecting shaft 22 and a first supporting plate 23, and the first driving sleeve 21 is rotatably mounted on the partition body 1; one end of the first connecting shaft 22 is inserted into the first driving sleeve 21, and the other end is fixedly connected to the first supporting plate 23; the first connecting shaft 22 can move along the axis of the first driving sleeve 21, that is, rotating the first driving sleeve 21 can control the first connecting shaft 22 to extend or retract to the first driving sleeve 21, so as to control the first supporting plate 23 to move toward or away from the ground; when the first connecting shaft 22 is extended, the first supporting plate 23 contacts the ground and presses the partition body 1 against the ceiling or roof, exerting a longitudinal pressing force on the partition body 1 to achieve longitudinal fixation of the partition body 1; when the first connecting shaft 22 is retracted, the first supporting plate 23 is separated from the ground, and the longitudinal fixation of the partition body 1 is released.

[0052] Preferably, the first driving sleeve 21 includes a first rotating sleeve 211 and a first fixed sleeve 212 , the first fixed sleeve 212 is fixedly connected to the partition body 1 , and the first rotating sleeve 211 is inserted into the first fixed sleeve 212 and is rotatably connected to the first fixed sleeve 212 .

[0053] Preferably, the first rotating sleeve 211 has a first driving cavity 2111 , and a thread is provided in the first driving cavity 2111 .

[0054] Preferably, the first connecting shaft 22 is provided with a thread; the first connecting shaft 22 is inserted into the first driving cavity 2111 and is threadedly connected to the first driving cavity 2111; the first connecting shaft 22 is also provided with a first limiting slide groove 221, and the first limiting slide groove 221 is extended along the axial direction of the first connecting shaft 22, and the first limiting slide groove 221 cooperates with the limiting protrusion arranged on the partition body 1 to limit the circumferential rotation of the first connecting shaft 22, thereby realizing the rotation of the first rotating sleeve 211 to drive the first connecting shaft 22 to extend out or retract the first driving cavity 2111; when in use, the first rotating sleeve 211 is driven to rotate, thereby driving the first connecting shaft 22 to extend or retract into the first driving cavity 2111, that is, controlling the first support plate 23 to move in the direction close to or away from the ground. When the first support plate 23 contacts the ground, the supporting force will be reacted on the partition body 1, so that the partition body 1 is pressed tightly against the ceiling or roof, thereby realizing the longitudinal fixation of the partition body 1.

[0055] Preferably, if Figure 3 As shown, the third foot includes a second drive sleeve 24, a second connecting shaft 25 and a second support plate 26, and the second drive sleeve 24 is rotatably mounted on the partition body 1; one end of the second connecting shaft 25 is inserted into the second drive sleeve 24, and the other end is connected to the second support plate 26; the second connecting shaft 25 can move along the axis of the second drive sleeve 24, that is, rotating the second drive sleeve 24 can control the second connecting shaft 25 to extend or retract to the second drive sleeve 24, so as to control the second support plate 26 to move closer to or away from the ground; when the second connecting shaft 25 is extended, the second support plate 26 contacts the ground and presses the partition body 1 against the ceiling or roof, exerting a lateral pressing force on the partition body 1 to achieve lateral fixation of the partition body 1; when the second connecting shaft 25 is retracted, the second support plate 26 is separated from the ground, and the lateral fixation of the partition body 1 is released.

[0056] Preferably, the second driving sleeve 24 includes a second rotating sleeve 241 and a second fixed sleeve 242 , the second fixed sleeve 242 is fixedly connected to the partition body 1 , and the second rotating sleeve 241 is inserted into the second fixed sleeve 242 and is rotatably connected to the second fixed sleeve 242 .

[0057] Preferably, the second rotating sleeve 241 has a second driving cavity 2411 , and a thread is provided in the second driving cavity 2411 .

[0058] Preferably, the second connecting shaft 25 is provided with a thread; the second connecting shaft 25 is inserted into the second driving cavity 2411 and is threadedly connected to the second driving cavity 2411; the second connecting shaft 25 is also provided with a second limiting slide groove 251, and the second limiting slide groove 251 is extended along the axial direction of the second connecting shaft 25, and the second limiting slide groove 251 cooperates with the limiting protrusion provided on the partition body 1 to limit the circumferential rotation of the second connecting shaft 25, thereby realizing the rotation of the second rotating sleeve 241 to drive the second connecting shaft 25 to extend out or retract the second driving cavity 2411; when in use, the second rotating sleeve 241 is driven to rotate, thereby driving the second connecting shaft 25 to extend or retract into the second driving cavity 2411, that is, controlling the second support plate 26 to move in the direction close to or away from the ground. When the second support plate 26 contacts the ground, it will react the supporting force on the partition body 1, so that the partition body 1 is pressed tightly against the ceiling or roof, thereby realizing the lateral fixation of the partition body 1.

[0059] Preferably, the second support plate 26 is a fan-shaped structure, and the second support plate 26 is rotatably connected to the second connecting shaft 25. Rotating the second support plate 26 can cause it to be rotated out or inwardly rotated into the lower end surface of the partition body 1. When the second support plate 26 is rotated outwardly from the lower end surface of the partition body 1, the lateral support area of ​​the third foot can be increased, thereby further improving the stability of the lateral support of the partition body 1 by the third foot; when the second support plate 26 is rotated into the lower end surface of the partition body 1, the space occupied by the third foot can be reduced.

[0060] Preferably, the second connecting shaft 25 is provided with a plurality of elastic protrusions, and the plurality of elastic protrusions are uniformly arranged on the circumferential surface of the second connecting shaft 25; the second support plate 26 is provided with a limiting groove, and the elastic protrusion can be inserted into the limiting groove, so that the second support plate 26 is circumferentially fixed by inserting the elastic protrusion into the limiting groove without applying external force, which can prevent the second support plate 26 from rotating freely relative to the second connecting shaft 25 and avoid unstable support.

[0061] Preferably, if Figure 4 and Figure 5As shown, the first support plate 23 and the second support plate 26 are both provided with a pad installation groove 3, and an adaptive pad assembly 4 is installed in the pad installation groove 3. The adaptive pad assembly 4 can adjust the degree of extending out of the pad installation groove 3 according to the flatness of the contacted ground, and can also adjust the angle according to the flatness of the contacted ground, so that the first support plate 23 and the second support plate 26 always keep in contact with the ground when supporting and fixing the partition body 1, thereby ensuring that the foot 2 can be completely in contact with the ground; compared with the prior art, this embodiment arranges an adaptive pad assembly 4 to ensure that the foot 2 can be completely in contact with the ground, thereby further improving the stability of the support of the partition body 1 by the foot 2, and further avoiding the shaking of the partition body 1 after installation and fixation.

[0062] Preferably, if Figure 6 As shown, the adaptive pad assembly 4 includes a pad 41, a connecting ball rod 42, a guide sleeve 43 and an elastic member 44. The pad 41 is connected to the connecting ball rod 42 and can rotate relative to the connecting ball rod 42, so that the pad 41 can automatically adjust the angle when it contacts the ground, so that the pad 41 ensures that the foot 2 can be completely in contact with the ground; the connecting ball rod 42 is sleeved on the guide sleeve 43 and can move along the axis of the guide sleeve 43; the guide sleeve 43 is fixedly installed in the pad installation groove 3, and is used to limit the connecting ball rod 42 to only Move along the axial direction of the guide sleeve 43; one end of the elastic member 44 is connected to the connecting ball rod 42, and the other end is connected to the guide sleeve 43; the elastic member 44 always applies an elastic thrust to the connecting ball rod 42, and under the elastic thrust of the elastic member 44, it can ensure that when the first support plate 23 and the second support plate 26 are in contact with the ground, the cushion block 41 can automatically adjust the length of the cushion block mounting slot 3 according to the flatness of the bottom surface, and at the same time adjust the angle of the cushion block 41, so that the cushion block 41 can always maintain complete contact with the ground.

[0063] Preferably, the elastic member 44 can be a spring.

[0064] Preferably, if Figure 7 As shown, a ball socket 411 is provided on the cushion block 41 .

[0065] Preferably, if Figure 8 As shown, the connecting ball rod 42 includes a ball head 421, which is inserted into the ball socket 411. The ball head 421 cooperates with the ball socket 411 to form a ball joint structure, so that the ball head can rotate in the ball socket 411, thereby realizing that the cushion block 41 can automatically adjust the angle according to the flatness of the bottom surface.

[0066] Preferably, the connecting ball rod 42 further includes a guide column cavity 422 , and the guide column cavity 422 is used for installing the guide sleeve 43 .

[0067] Preferably, a plurality of the adaptive pad block assemblies 4 are provided, and a plurality of the adaptive pad block assemblies 4 can enable the foot 2 to be used in more complex ground conditions, ensuring that the foot 2 can still maintain contact with the ground in complex ground conditions, thereby providing support and tightening force for the partition body 1.

[0068] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be easily thought of by any technician familiar with the technical field within the technical scope disclosed in the present invention should be included in the protection scope of the present invention.

Claims

1. A push-pull structure with adaptively adjustable feet, characterized in that: It comprises a partition body (1) and a foot (2), wherein the foot (2) is used to fix the partition body (1); The foot (2) is provided with an adaptive pad block assembly (4), and the adaptive pad block assembly (4) is used to automatically adjust the telescopic length and the contact angle with the ground according to the flatness of the ground in contact; The adaptive pad assembly (4) comprises a pad (41), a connecting ball rod (42), a guide sleeve (43) and an elastic member (44); the pad (41) is connected to the connecting ball rod (42) and can rotate relative to the connecting ball rod (42); the connecting ball rod (42) is sleeved on the guide sleeve (43) and can move along the axis of the guide sleeve (43); the guide sleeve (43) is fixedly connected to the first support plate (23) and / or the second support plate (26) and is used to limit the connecting ball rod (42) to only move along the axis of the guide sleeve (43). one end of the elastic member (44) is connected to the connecting ball rod (42), and the other end is connected to the guide sleeve (43); the elastic member (44) is used to always apply an elastic thrust to the connecting ball rod (42); under the elastic thrust of the elastic member (44), when the first support plate (23) and the second support plate (26) are in contact with the ground, the cushion block (41) can automatically adjust the telescopic length according to the flatness of the bottom surface, and at the same time automatically adjust the angle of the cushion block (41), so that the cushion block (41) always keeps in full contact with the ground.

2. A push-pull structure with adaptively adjustable feet according to claim 1, characterized in that: The cushion block (41) is provided with a ball socket (411); the connecting ball rod (42) comprises a ball head (421), the ball head (421) is inserted into the ball socket (411), and the ball head (421) cooperates with the ball socket (411) to form a ball joint structure.

3. A push-pull structure with adaptively adjustable feet according to claim 2, characterized in that: A plurality of the feet (2) are provided.

4. The push-pull structure with adaptively adjustable feet according to claim 3, characterized in that: The foot (2) comprises a first foot, a second foot, a third foot and a fourth foot; the first foot and the second foot are symmetrically arranged, and the first foot and the second foot are extended along the width direction of the partition body (1); The third foot and the fourth foot are symmetrically arranged, and the third foot and the fourth foot are extended along the thickness direction of the partition body (1).

5. The push-pull structure with adaptively adjustable feet according to claim 4, characterized in that: The line between the third foot and the fourth foot is perpendicular to the line between the first foot and the second foot, and the line between the third foot and the fourth foot passes through the midpoint of the line between the first foot and the second foot.

6. The push-pull structure with adaptively adjustable feet according to claim 5, characterized in that: The first anchor and the second anchor have the same structure, and the third anchor and the fourth anchor have the same structure; the first anchor comprises a first support plate (23), and the third anchor comprises a second support plate (26); both the first support plate (23) and the second support plate (26) are provided with a pad installation groove (3), and the pad installation groove (3) is used to install an adaptive pad assembly (4).

7. The push-pull structure with adaptively adjustable feet according to claim 6, characterized in that: The first foot further comprises a first drive sleeve (21) and a first connecting shaft (22); one end of the first connecting shaft (22) is inserted into the first drive sleeve (21), and the other end is fixedly connected to the first support plate (23); the first connecting shaft (22) is movable along the axis of the first drive sleeve (21).

8. The push-pull structure with adaptively adjustable feet according to claim 7, characterized in that: The third foot further comprises a second drive sleeve (24) and a second connecting shaft (25); one end of the second connecting shaft (25) is inserted into the second drive sleeve (24), and the other end is rotatably connected to the second support plate (26); the second connecting shaft (25) can move along the axis of the second drive sleeve (24), and the second support plate (26) can be screwed out of or into the lower end surface of the partition body (1).

9. The push-pull structure with adaptively adjustable feet according to claim 8, characterized in that: The first driving sleeve (21) comprises a first rotating sleeve (211) and a first fixed sleeve (212); the first fixed sleeve (212) is fixedly connected to the partition body (1); the first rotating sleeve (211) is inserted into the first fixed sleeve (212) and is rotatably connected to the first fixed sleeve (212).

10. The push-pull structure with self-adaptive adjustable feet according to claim 9, characterized in that: The second driving sleeve (24) comprises a second rotating sleeve (241) and a second fixed sleeve (242); the second fixed sleeve (242) is fixedly connected to the partition body (1); the second rotating sleeve (241) is inserted into the second fixed sleeve (242) and is rotationally connected to the second fixed sleeve (242).