A footing support structure
By designing base components, support components, and angle adjustment components, and combining rolling parts and ball bearing structures, the problem of the single function of the foot support structure in dynamic usage scenarios is solved, realizing flexible movement and stable support of the equipment, and improving the working efficiency and flexibility of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI JIABANG MACHINERY CO LTD
- Filing Date
- 2025-06-13
- Publication Date
- 2026-07-24
AI Technical Summary
Existing foot support structures have limited functionality, mainly used for static support, and cannot meet the integration needs of equipment in dynamic usage scenarios. This results in the need for additional transfer devices when the equipment is moved or its position adjusted, reducing work efficiency and flexibility.
A structure including a base assembly, a support assembly, an angle adjustment assembly, and a top plate assembly is designed. Through the cooperation of rolling parts, convex threads, threaded sleeves, and balls, the flexible movement and angle adjustment of the equipment are realized, enhancing the applicability of the support structure.
It enables flexible movement and stable support of equipment, improves the practicality and applicability of the foot support structure in dynamic usage scenarios, and meets the needs of rapid adjustment of equipment in different positions.
Smart Images

Figure CN224551130U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of foundation technology, specifically relating to a foundation support structure. Background Technology
[0002] Anchor supports are fundamental components used to fix and support equipment, building structures, or structural members. They are typically installed at the bottom of equipment or in the foundation of structures, serving to stabilize, dampen vibrations, level, and distribute loads. They are widely used in industrial equipment, building structures, bridges, and machinery, and are crucial components ensuring the stable operation of equipment or structures.
[0003] For example, a ground anchor support structure, disclosed in CN212026971U, provides a ground anchor support structure including a pad with a groove; a panel with a connecting groove at its bottom; and a connecting bolt, which is an integral piece including a connecting platform and a bolt vertically disposed on the connecting platform. The connecting platform is fitted into the groove with a clearance, and the top of the bolt is threaded into the connecting groove. This ground anchor support structure is stable and reliable, and the adjustment process is convenient and quick. The clearance fit of the connecting platform into the groove allows the connecting bolt to rotate, enabling rapid adjustment of the panel's height from the ground, ensuring the panel is on the same horizontal plane.
[0004] However, existing anchor support structures are functionally limited in their design, primarily serving to provide static support for equipment or devices, ensuring stability when the equipment is in a fixed position. In real-world applications, however, many devices need to be moved or repositioned to adapt to different production needs or spatial layouts. For such movable equipment, users often have to equip it with specialized transfer devices to achieve the relocation, leading to a functional limitation of the anchor support structure. This fails to meet the integrated needs of dynamic usage scenarios, thus reducing work efficiency and equipment flexibility to some extent. Utility Model Content
[0005] The purpose of this invention is to provide a foundation support structure that addresses the limitations of existing foundation support structures, which are primarily designed to provide static support for equipment or devices, ensuring stability when the equipment is in a fixed position. However, in practical applications, many devices need to be moved or repositioned to adapt to different production needs or spatial layouts. For such movable equipment, users often have to equip it with a dedicated transfer device to achieve the relocation operation. This results in a limited functionality of the foundation support structure, failing to meet the integrated needs of dynamic usage scenarios, and thus reducing work efficiency and the flexibility of equipment use to some extent.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a foundation support structure, comprising,
[0007] The base assembly includes a support base disposed on the bottom side, an anti-slip pad connected to the bottom of the support base for anti-slip purposes, an adjustment part connected to the surface of the support base, and a rolling part installed on the bottom side of the adjustment part;
[0008] The support assembly includes a bearing fitted onto the top of the support base, a threaded tube extending through the bearing, a knob connected to the surface of the threaded tube, and a screw inserted into the top of the threaded tube.
[0009] An angle adjustment assembly includes a bracket connected to the top of a screw, a rotating block inserted into the inner wall of the bracket, a rotating shaft connected to the side surface of the rotating block and extending through the side surface of the bracket, and a rotating block mounted between the bracket and the fixed part; and,
[0010] The top plate assembly includes a top plate connected to the top of the rotating block and mounting holes formed on the surface of the top plate;
[0011] As a preferred type of foot support structure according to this utility model, the adjustment part includes a connecting ring connected to the upper surface of the support base, a convex thread connected to the side surface of the support base and the connecting ring, and a threaded sleeve fitted onto the surface of the convex thread.
[0012] As a type of anchor support structure of this utility model, preferably, the threaded sleeve and the convex thread are threadedly connected;
[0013] As a foot support structure of this utility model, preferably, the rolling part includes a ball cylinder that passes through the bottom of the threaded sleeve, a ball groove opened inside the ball cylinder, and balls that are provided inside the ball groove and are adapted in size.
[0014] As a preferred type of foot support structure of this utility model, the fixing part includes an arc-shaped groove formed on the surface of the bracket, a threaded column that penetrates the interior of the arc-shaped groove and is connected to the side surface of the rotating block, a washer fitted on the surface of the threaded column, and a fastening nut fitted on the surface of the threaded column.
[0015] As a type of foot support structure of this utility model, preferably, the center of the arc-shaped groove is located on the center line of the rotation axis;
[0016] As a type of foot support structure of this utility model, preferably, the threaded post is adapted to the size of the arc-shaped groove, and the threaded post and the fastening nut are threadedly connected.
[0017] Compared with the prior art, the beneficial effects of this utility model are:
[0018] By using a convex thread, threaded sleeve, rolling part, ball cylinder and ball, the ball can contact the ground to achieve support. When the equipment is subjected to thrust, the top plate assembly, angle adjustment assembly, support assembly and base assembly can apply thrust to the ball. The ball can roll smoothly in the ball groove under the thrust, thereby driving the rolling part to move. Based on the displacement transmission of the rolling part, and with the cooperation of the adjustment part, the support seat can be moved flexibly. This can facilitate the movement of the equipment and improve the practicality of the foot support structure.
[0019] By using brackets, rotating blocks, rotating shafts, fixing parts, arc grooves, threaded columns, washers, and fastening nuts, the angle between the brackets and rotating blocks can be adjusted according to the angle of the equipment's bottom surface and then fixed, thereby providing stable support and improving the practicality and applicability of the foot support structure. Attached Figure Description
[0020] The accompanying drawings are provided to further illustrate 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, but do not constitute a limitation thereof. In the drawings:
[0021] Figure 1 This is a schematic diagram of the overall structure provided for an embodiment of this application.
[0022] Figure 2 A bottom view of the overall structure provided for an embodiment of this application.
[0023] Figure 3 This is a cross-sectional structural diagram of the angle adjustment component provided in an embodiment of this application.
[0024] Figure 4 This is a schematic cross-sectional view of the base assembly provided in an embodiment of this application.
[0025] Figure 5 This is a schematic diagram of the cross-sectional structure of the rolling part provided in an embodiment of this application.
[0026] Figure 6 An exploded cross-sectional view of the rolling section provided in an embodiment of this application.
[0027] In the diagram: 100, base assembly; 101, support seat; 102, anti-slip pad; 103, adjusting part; 103a, connecting ring; 103b, protruding thread; 103c, threaded sleeve; 104, rolling part; 104a, ball cylinder; 104b, ball groove; 104c, ball; 200, support assembly; 201, bearing; 202, threaded tube; 203, knob; 204, screw; 300, angle adjusting assembly; 301, bracket; 302, rotating block; 303, rotating shaft; 304, fixing part; 304a, arc groove; 304b, threaded column; 304c, gasket; 304d, fastening nut; 400, top plate assembly; 401, top plate; 402, mounting hole. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0029] Please see Figure 1-6 This utility model provides the following technical solution: a foundation support structure, comprising,
[0030] The base assembly 100 includes a support base 101 disposed on the bottom side, an anti-slip pad 102 connected to the bottom of the support base 101 for anti-slip purposes, an adjustment part 103 connected to the surface of the support base 101, and a rolling part 104 installed on the bottom side of the adjustment part 103.
[0031] The support assembly 200 includes a bearing 201 fitted and mounted on the top of the support base 101, a threaded tube 202 that passes through and is connected inside the bearing 201, a knob 203 connected to the surface of the threaded tube 202, and a screw 204 inserted into the top of the threaded tube 202.
[0032] The angle adjustment assembly 300 includes a bracket 301 connected to the top of the screw 204, a rotating block 302 inserted into the inner wall of the bracket 301, a rotating shaft 303 connected to the side surface of the rotating block 302 and passing through the side surface of the bracket 301, and a rotating block 302 installed between the bracket 301 and the fixed part 304; and,
[0033] The top plate assembly 400 includes a top plate 401 connected to the top of the rotating block 302 and mounting holes 402 formed on the surface of the top plate 401.
[0034] Preferably, the adjustment part 103 includes a connecting ring 103a connected to the upper surface of the support base 101, a protruding thread 103b connected to the side surface of the support base 101 and the connecting ring 103a, and a threaded sleeve 103c sleeved on the surface of the protruding thread 103b, wherein the threaded sleeve 103c and the protruding thread 103b are threadedly connected.
[0035] In practical use, when the threaded sleeve 103c rotates on the surface of the convex thread 103b, it can move downward through the threaded connection, thereby driving the rolling part 104 to move downward through the threaded sleeve 103c and the convex thread 103b.
[0036] Preferably, the rolling part 104 includes a ball cylinder 104a that passes through the bottom of the threaded sleeve 103c, a ball groove 104b formed inside the ball cylinder 104a, and a ball 104c that is provided inside the ball groove 104b and is adapted in size.
[0037] In practical use, when the balls 104c of the rolling part 104 are subjected to thrust, the balls 104c can roll smoothly inside the ball groove 104b, thereby driving the rolling part 104 to move. Based on this displacement transmission, and with the cooperation of the adjusting part 103, the support base 101 can be moved flexibly.
[0038] Preferably, the fixing part 304 includes an arc-shaped groove 304a formed on the surface of the bracket 301, a threaded post 304b that penetrates the interior of the arc-shaped groove 304a and is connected to the side surface of the rotating block 302, a washer 304c that is sleeved on the surface of the threaded post 304b, and a fastening nut 304d that is sleeved on the surface of the threaded post 304b.
[0039] Preferably, the center of the arc groove 304a is located on the center line of the rotating shaft 303.
[0040] In practical use, when the rotating block 302 rotates, it can drive the threaded column 304b to rotate inside the arc groove 304a, thereby ensuring the stability of the rotation. At the same time, the fixing part 304 can be used to fix the bracket 301 and the rotating block 302.
[0041] Preferably, the threaded post 304b and the arc groove 304a are matched in size, and the threaded post 304b and the fastening nut 304d are threadedly connected.
[0042] In practical use, when the fastening nut 304d rotates on the surface of the threaded post 304b, it can move laterally through the threaded connection. When the fastening nut 304d moves laterally, it can squeeze the washer 304c to move laterally. When the washer 304c moves laterally to the surface of the bracket 301, it can fix the position of the bracket 301.
[0043] The working principle of this utility model in specific use is as follows: When using this foot support structure, firstly, the top plate 401 is installed on the surface of the equipment to be supported through the mounting hole 402 and the fixing bolt. Then, the bracket 301 can rotate according to the angle of the bottom surface of the equipment. When the bracket 301 rotates, it can drive the arc groove 304a to rotate on the surface of the threaded column 304b. When the bracket 301 rotates and the screw 204 is perpendicular to the ground, the fastening nut 304d is rotated. When the fastening nut 304d rotates on the surface of the threaded column 304b, it can move laterally. When the threaded column 304b moves laterally and squeezes the pad 304c to move to the outer surface of the bracket 301, the position of the bracket 301 can be fixed at this time, thereby realizing the angle adjustment of the support seat 101.
[0044] Next, the knob 203 can be rotated. When the knob 203 is rotated, it can drive the threaded tube 202 to rotate. When the threaded tube 202 rotates on the surface of the screw 204, it can move downward through the threaded connection. When the threaded tube 202 moves downward, it can drive the support seat 101 to move downward through the bearing 201. When the support seat 101 moves downward, it can drive the anti-slip pad 102 to move downward. When the anti-slip pad 102 moves downward to the ground, it can achieve the supporting function.
[0045] When the threaded sleeve 103c rotates on the surface of the convex thread 103b, it can move downward through the threaded connection. When the threaded sleeve 103c moves downward, it can drive the rolling part 104 to move downward. When the balls 104c of the rolling part 104 move downward to the ground, they can be pushed by the supporting equipment. When the equipment is pushed, the top plate assembly 400, angle adjustment assembly 300, support assembly 200 and base assembly 100 can apply the pushing force to the balls 104c. The balls 104c can roll smoothly inside the ball groove 104b under the pushing force, thereby driving the rolling part 104 to move. Based on the displacement transmission of the rolling part 104, and with the cooperation of the adjustment part 103, the support base 101 can be moved flexibly, thus realizing the movement of the equipment.
[0046] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A foundation support structure, characterized in that: include, The base assembly (100) includes a support base (101) disposed on the bottom side, an anti-slip pad (102) connected to the bottom of the support base (101) for anti-slip, an adjustment part (103) connected to the surface of the support base (101), and a rolling part (104) installed on the bottom side of the adjustment part (103). The support assembly (200) includes a bearing (201) fitted onto the top of the support base (101), a threaded tube (202) penetrating and connected inside the bearing (201), a knob (203) connected to the surface of the threaded tube (202), and a screw (204) inserted into the top of the threaded tube (202). Angle adjustment assembly (300) includes a bracket (301) connected to the top of the screw (204), a rotating block (302) inserted into the inner wall of the bracket (301), a rotating shaft (303) connected to the side surface of the rotating block (302) and penetrating the side surface of the bracket (301), and a rotating block (302) installed between the bracket (301) and the fixing part (304); and, The top plate assembly (400) includes a top plate (401) connected to the top of the rotating block (302) and mounting holes (402) formed on the surface of the top plate (401).
2. The foundation support structure according to claim 1, characterized in that: The adjustment part (103) includes a connecting ring (103a) connected to the upper surface of the support (101), a convex thread (103b) connected to the side surface of the support (101) and the connecting ring (103a), and a threaded sleeve (103c) fitted onto the surface of the convex thread (103b).
3. The foundation support structure according to claim 2, characterized in that: The threaded sleeve (103c) and the convex thread (103b) are threaded together.
4. The foundation support structure according to claim 1, characterized in that: The rolling part (104) includes a ball cylinder (104a) that passes through the bottom of the threaded sleeve (103c), a ball groove (104b) opened inside the ball cylinder (104a), and a ball (104c) that is provided inside the ball groove (104b) and is adapted in size.
5. The foundation support structure according to claim 1, characterized in that: The fixing part (304) includes an arc-shaped groove (304a) formed on the surface of the bracket (301), a threaded post (304b) that penetrates the interior of the arc-shaped groove (304a) and is connected to the side surface of the rotating block (302), a washer (304c) that is sleeved on the surface of the threaded post (304b), and a fastening nut (304d) that is sleeved on the surface of the threaded post (304b).
6. The foundation support structure according to claim 5, characterized in that: The center of the arc groove (304a) is located on the center line of the rotating shaft (303).
7. The foundation support structure according to claim 6, characterized in that: The threaded post (304b) is adapted to the size of the arc groove (304a), and the threaded post (304b) and the fastening nut (304d) are threaded together.
Citation Information
Patent Citations
CN212026971U