Highly adaptable cradle bracket and method of installing same

By using ball-and-socket and ball-head structure supports and connecting seats, the problems of stable installation of the suspended platform on inclined planes and adjustment of the boom position are solved. This enables stable installation of the suspended platform on inclined planes with different inclination angles and free adjustment of the boom position, thus improving construction efficiency.

CN122236264APending Publication Date: 2026-06-19CHINA HYDROELECTRIC ENGINEERING CONSULTING GROUP CHENGDU RESEARCH HYDROELECTRIC INVESTIGATION DESIGN AND INSTITUTE
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHINA HYDROELECTRIC ENGINEERING CONSULTING GROUP CHENGDU RESEARCH HYDROELECTRIC INVESTIGATION DESIGN AND INSTITUTE
Filing Date
2026-05-12
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

Existing suspended platform supports are difficult to install on inclined planes with different angles, and the boom cannot be adjusted in orientation or cantilever length, resulting in poor adaptability.

Method used

A highly adaptable suspended basket support was designed, which uses a ball-and-socket structure for the support and connecting seat to cooperate. The vertical adjustment of the support is achieved through the inner cavity of the ball-and-socket and the guide groove, and the orientation and cantilever length of the boom are adjusted through a gear and internal gear ring structure.

Benefits of technology

It enables stable installation of the suspended platform support on inclined planes with different inclination angles and free adjustment of the boom position, thereby improving the versatility and construction efficiency of the suspended platform support.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122236264A_ABST
    Figure CN122236264A_ABST
Patent Text Reader

Abstract

This invention discloses a highly adaptable suspended platform support and its installation method, relating to a construction auxiliary device that solves the problems of existing suspended platform supports being unable to be installed on inclined surfaces of different angles and unable to adjust their orientation. The technical solution adopted in this invention is as follows: the highly adaptable suspended platform support includes a boom, a support, and a connecting seat. The boom has a fixed end and a cantilever end, respectively. The boom is fixedly installed on the upper end of the support. The lower end of the support has a ball socket with a first slotted hole. A positioning shaft is provided on the inner wall of the ball socket. The connecting seat is fixedly installed on the inclined surface and has a ball head with a guide groove. Second slotted holes are provided on both sides of the guide groove. The ball head is inserted into the inner cavity of the ball socket, and the positioning shaft is inserted into the guide groove. The first and second slotted holes intersect to form at least a through hole. A locking bolt is provided in the through hole, and the locking bolt fixes the support and the connecting seat together. The highly adaptable suspended platform support can be installed on inclined surfaces of different angles, and the orientation of the suspended platform support can be freely adjusted.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of buildings, and more particularly to a construction auxiliary device, specifically a bracket for installing a suspended platform, and a method for installing the bracket. Background Technology

[0002] Suspended platforms are auxiliary equipment for high-altitude operations in construction projects, used for exterior wall construction, insulation work, and maintenance and cleaning of high-rise and multi-story buildings. The suspended platform support mainly consists of a boom and supporting and fixing columns. The columns are fixed to the building roof and arranged vertically. The boom has two ends: a cantilever end and a fixed end. The cantilever end suspends the suspended platform, while the fixed end is fixedly connected to the building to balance the force on the cantilever end.

[0003] When the rooftop location suitable for erecting support columns is an inclined plane, the supports of the suspended platform scaffolding present challenges in installation and ensuring verticality after installation. When the support columns are installed on an inclined plane and verticality is required, the lower end of the column is typically beveled at the same angle as the slope. Then, an end plate is welded and fixed to the beveled surface at the lower end of the column, and finally, bolts are used to secure the end plate to the slope. While this method provides good stability, the drawback is that the angle of the bevel must match the angle of the installation slope to ensure the verticality of the column's central axis. Welding the end plate to a fixed angled surface does not accommodate installation slopes with varying inclinations. Furthermore, the existing suspended platform scaffolding booms are relatively fixed after installation, preventing adjustments to their orientation or horizontal cantilever length, resulting in poor adaptability. Summary of the Invention

[0004] This invention first provides a highly adaptable suspended platform support, which solves the problems that existing suspended platform supports cannot be installed on inclined surfaces with different inclination angles and cannot be adjusted in orientation.

[0005] The technical solution adopted in this invention is as follows: a highly adaptable suspended platform support, comprising a boom, a support, and a connecting seat. The boom has a fixed end and a cantilever end, respectively, with lifting lugs at the cantilever end. The boom is fixedly mounted on the upper end of the support between its two ends. The lower end of the support has a ball socket connected to the connecting seat. The ball socket has a spherical cavity shaped like a cap, with the height of the cap not exceeding its radius. The bottom surface of the cap is horizontal, and the ball socket has a first strip-shaped hole closed at both ends. The connecting seat includes a connecting plate placed on and fixedly connected to an inclined plane, and a ball head located in the middle of the connecting plate and connected to the ball socket. The ball head and the connecting plate are integral. The ball head is spherical in shape and its shape matches the shape of the inner cavity of the ball socket. The ball head is inserted into the inner cavity of the ball socket. The height of the ball head corresponding to the spherical cap is greater than the height of the spherical socket corresponding to the spherical cap. A guide groove is provided on the outer wall of the ball head along the great circle direction. The guide groove passes through the highest point of the ball head. A positioning shaft adapted to the guide groove is provided at the highest point of the inner wall of the spherical socket. The positioning shaft is located in the guide groove and can slide along the guide groove. At least one second strip hole is provided on each side of the ball head. The projection of the second strip hole on the horizontal plane is a curve or a broken line. The extension direction of the guide groove and the projection of each second strip hole on the horizontal plane is the same. The width of the first strip hole is the same as the width of the second strip hole. The first strip hole and the second strip hole intersect and form at least two through holes at the intersection. A locking bolt is provided in the through hole. The locking bolt fixes the support and the connecting seat.

[0006] In order to adjust the horizontal cantilever length of the boom, an internal gear ring is fixed between the two ends of the boom, and a gear adapted to the internal gear ring is provided on the upper part of the support. The gear meshes with the internal gear ring, and the rotation axis of the gear is perpendicular to the vertical plane of the boom. The gear and the internal gear ring are fixedly connected by connecting bolts.

[0007] To further optimize the stress on the boom, the boom is designed to be a downward-convex bow shape, with pull ropes connecting the two ends of the boom.

[0008] To simplify the connection between the support and the connecting seat, the following is further provided: the first strip hole is a single hole, and the first strip hole is set along the direction of the great circle of the spherical cavity corresponding to the spherical notch. The projection of the first strip hole on the horizontal plane and the projection of the boom on the horizontal plane are on the same straight line.

[0009] To facilitate the installation of the locking bolt, the second strip hole is a through hole. To facilitate the arrangement of the second strip hole, there are two second strip holes. The projections of the two second strip holes on the horizontal plane are in the shape of "()", or the projections of the two second strip holes on the horizontal plane are both sawtooth-shaped. The axis of symmetry of the projections of the two second strip holes on the horizontal plane is the projection of the guide groove on the horizontal plane.

[0010] To facilitate the processing of the connecting seat, the connecting seat is further made as follows: the connecting seat is a steel plate stamping part, the connecting plate and the ball head are an integral structure, the connecting plate is provided with connecting holes at intervals along the circumference, the guide groove is a stamping groove, and the second strip hole is a stamping hole.

[0011] To further enhance the strength of the connector, a supporting rib is provided on the inner side of the ball head.

[0012] The present invention also provides a method for installing a highly adaptable suspended platform bracket, wherein any of the above-mentioned highly adaptable suspended platform brackets is installed on an inclined plane, comprising the following steps: S1. Place the connecting plate of the connecting seat on the inclined plane, adjust the orientation of the guide groove so that the extension direction of the projection of the guide groove on the horizontal plane is consistent with the inclination of the inclined plane, and then fix the connecting plate to the inclined plane.

[0013] To further improve the stability of the connector, the inclined surface is made of steel, the connecting plate is fixed to the inclined surface with bolts, and a pad is provided between the connecting plate and the inclined surface.

[0014] S2. Install the support onto the connecting seat. First, place the ball socket of the support onto the ball head and insert the positioning shaft into the guide groove. Then, adjust the position of the support along the guide groove so that the positioning shaft is at the highest point of the ball head. Next, rotate the support to the desired position. Finally, install the locking bolt in the through hole formed by the intersection of the first and second strip holes. The locking bolt will fix the support and the connecting seat together.

[0015] S3. Fix the boom to the support and secure the fixed end of the boom by pulling it down with a fixing rope.

[0016] To further reduce the stress on the fixing rope, the fixing rope is arranged vertically.

[0017] The beneficial effects of this invention are as follows: A ball socket is provided at the lower end of the support, and a ball head is provided on the connecting seat. The ball socket of the support is placed on the ball head, and after inserting the positioning shaft into the guide groove, the position of the support is adjusted along the guide groove so that the positioning shaft is located at the highest point of the ball head, at which point the support is vertical. The support can slide along the guide groove, so regardless of the inclination angle of the inclined surface on which the connecting seat is installed, the support can be adjusted to be vertical during installation, ensuring that the suspended platform bracket can be installed on inclined surfaces with different inclination angles. After adjusting the support to be vertical, the orientation of the support can be freely adjusted 360°. The support remains vertical during orientation adjustment, allowing the orientation of the suspended platform bracket's boom to be freely adjusted. After adjusting the orientation of the support, a locking bolt is installed in the through hole formed by the intersection of the first and second strip holes. The ball head and ball socket are fixed using the locking bolt, achieving a fixed connection between the support and the connecting seat. The projection of the second strip hole on the horizontal plane is a curve or a broken line. The ball socket and the ball head are connected by at least two locking bolts. In addition, the guide groove and the positioning shaft limit the connection, thus achieving a stable connection between the support and the connecting seat.

[0018] This invention enables the installation of suspended platform supports on inclined surfaces with varying angles, and the orientation of the supports can be freely adjusted, enhancing their versatility and allowing for quick installation. The highly adaptable suspended platform support features a simple overall structure, strong versatility, and stable load-bearing capacity. It can improve the efficiency of high-altitude operations in scenarios where there is insufficient flat ground, and thus has significant potential for widespread adoption. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of an embodiment of the present invention.

[0020] Figure 2 yes Figure 1 Side view of the support in the illustrated embodiment.

[0021] Figure 3 yes Figure 1 A schematic diagram showing the connection relationship between the connecting seat and the ball socket in this invention.

[0022] Reference numerals in the attached drawings: boom 1, lifting lug 1-1, internal gear ring 1-2, pull rope 1-3, fixing rope 1-4, support 2, ball socket 2-1, first strip hole 2-1-1, positioning shaft 2-1-2, gear 2-2, connecting seat 3, connecting plate 3-1, ball head 3-2, guide groove 3-2-1, second strip hole 3-2-2, inclined surface 4, locking bolt 5, connecting bolt 6, pad 7. Detailed Implementation

[0023] The invention will now be further described with reference to the accompanying drawings.

[0024] The first subject of this invention is a highly adaptable suspended basket support. For example... Figure 1 As shown, the highly adaptable suspended platform support includes a boom 1, a support 2, and a connecting seat 3. The boom 1 has a fixed end and a cantilever end, respectively. The cantilever end of the boom 1 is equipped with a lug 1-1 for suspending the suspended platform. The fixed end of the boom 1 is used to assist in fixing the boom 1; for example, a fixing rope 1-4 is connected to the fixed end, which pulls down to balance the downward force on the cantilever end. The lower end of the fixing rope 1-4 is connected to other fixed objects below the boom 1, such as the steel structure below the boom 1. The fixing rope 1-4 provides a balanced downward force for the boom 1, achieving a counterweight-free design. The position between the two ends of the boom 1 is fixedly installed on the upper end of the support 2, which supports and fixes the boom 1. The boom 1 is a straight or curved rod. To optimize the stress on the boom 1 and improve its bending stiffness, for example... Figure 1 As shown, the boom 1 is in the shape of a downward convex bow, and the two ends of the boom 1 are connected by pull ropes 1-3.

[0025] The lower end of support 2 is connected to connecting seat 3, which is used to fix and support support 2 on inclined surface 4. Inclined surface 4 is the mounting surface of the suspended platform bracket, such as a steel structure. After connecting seat 3 is installed on inclined surface 4, it remains fixed. When support 2 is installed on connecting seat 3, the connection position between support 2 and connecting seat 3 can be adjusted to ensure that support 2 remains vertical, and the orientation of support 2 can be adjusted, that is, the orientation of boom 1 can be adjusted. The lower end of support 2 is provided with a ball socket 2-1, which is directly connected to connecting seat 3. Ball socket 2-1 has an inner cavity in the shape of a spherical cap, and the height of the spherical cap is not greater than the radius of the spherical cap. The bottom surface of the spherical cap is horizontal, that is, when support 2 is vertical, the inner cavity of ball socket 2-1 corresponds to the bottom surface of the spherical cap being horizontal.

[0026] The connecting seat 3 includes a connecting plate 3-1 placed on and fixedly connected to the inclined plane 4, and a ball head 3-2 located in the middle of the connecting plate 3-1 and connected to the ball socket 2-1. The ball head 3-2 and the connecting plate 3-1 are integral. The connecting plate 3-1 is preferably annular, with connecting holes spaced along its circumference to facilitate direct fixing of the connecting plate 3-1 to the inclined plane 4 using bolts. A pad 7 can also be added between the connecting plate 3-1 and the inclined plane 4. The pad 7 serves to prevent slippage and adjust height; for example, the pad 7 is a rubber pad. The ball head 3-2 is located in the middle of the connecting plate 3-1 and protrudes upward from the corresponding plane of the connecting plate 3-1. To facilitate the manufacturing of the connecting seat 3, the connecting seat 3 is a stamped steel plate part; that is, the ball head 3-2 is formed by stamping the steel plate, and the connecting plate 3-1 and the ball head 3-2 are an integral structure. The connecting seat 3 is placed on the inclined plane 4, and the ball head 3-2 is located in the middle of the connecting plate 3-1 and protrudes vertically upward relative to the plane corresponding to the connecting plate 3-1. To improve the strength of the connecting seat 3, a supporting rib is provided on the inner side of the ball head 3-2. For example, a supporting rib is welded to the inner side of the ball head 3-2.

[0027] The ball head 3-2 is shaped like a spherical cap and its shape matches the inner cavity of the ball socket 2-1. The height of the spherical cap corresponding to the outer shape of the ball head 3-2 is greater than the height of the spherical cap corresponding to the inner cavity of the ball socket 2-1. A guide groove 3-2-1 is provided on the outer wall of the ball head 3-2 along the great circle direction. The projection of the guide groove 3-2-1 onto the corresponding plane of the connecting plate 3-1 is a line segment, such as... Figure 3As shown. The guide groove 3-2-1 passes through the highest point of the ball head 3-2. That is, after the connecting seat 3 is installed on the inclined plane 4, the extension direction of the projection of the guide groove 3-2-1 on the horizontal plane is consistent with the inclination of the inclined plane 4. The highest point of the inner wall of the ball socket 2-1 is provided with a positioning shaft 2-1-2 that matches the guide groove. That is, when the bottom surface of the ball socket corresponding to the inner cavity of the ball socket 2-1 is horizontal, the positioning shaft 2-1-2 is located at the highest point of the inner wall of the ball socket 2-1. The ball head 3-2 is inserted into the inner cavity of the ball socket 2-1, and the positioning shaft 2-1-2 is located in the guide groove 3-2-1 and can slide along the guide groove 3-2-1. The sliding fit between the positioning shaft 2-1-2 and the guide groove 3-2-1 restricts the ball socket 2-1 to slide back and forth only along the direction of the guide groove 3-2-1, the purpose of which is to adjust the support 2 to a vertical state. The guide groove 3-2-1 can be a through hole, that is, the guide groove 3-2-1 passes through the ball head 3-2. To prevent the guide groove 3-2-1 from reducing the strength of the ball head 3-2, the guide groove 3-2-1 is a groove that does not penetrate the ball head 3-2; that is, the groove wall and bottom of the guide groove 3-2-1 are integral with the ball head. For example, the guide groove 3-2-1 is a stamped groove, meaning that the guide groove 3-2-1 is formed by stamping.

[0028] After the ball head 3-2 is inserted into the inner cavity of the ball socket 2-1, in order to achieve relative fixation between the ball head 3-2 and the ball socket 2-1, the ball socket 2-1 is provided with a first strip-shaped hole 2-1-1 closed at both ends. There may be one or more first strip-shaped holes 2-1-1. The ball head 3-2 is provided with at least one second strip-shaped hole 3-2-2 on each side of the guide groove 3-2-1. The first strip-shaped hole 2-1-1 and the second strip-shaped hole 3-2-2 intersect and form at least two through holes at the intersection. A locking bolt 5 is provided in the through hole, and the locking bolt 5 directly fixes the ball head 3-2 and the ball socket 2-1, realizing the fixed connection between the support 2 and the connecting seat 3. In order to ensure the stability of the ball head 3-2 and the ball socket 2-1 after being connected by the locking bolt 5 and to avoid loosening, the width of the first strip-shaped hole 2-1-1 is the same as the width of the second strip-shaped hole 3-2-2, and the projection of the second strip-shaped hole 3-2-2 on the horizontal plane is a curve or a broken line. To ensure that the first strip hole 2-1-1 and the second strip hole 3-2-2 intersect, the guide groove 3-2-1 extends in the same direction as the projection of each second strip hole 3-2-2 onto the horizontal plane. Specifically, the extension direction of the projection of the second strip hole 3-2-2 onto the horizontal plane is the direction corresponding to the line connecting the two ends of the projection of the second strip hole 3-2-2 onto the horizontal plane.

[0029] The first strip hole 2-1-1 and the second strip hole 3-2-2 form at least two through holes. After the locking bolts 5 are installed in the two through holes, the support 2 and the connecting seat 3 are stably connected under the fixing action of the locking bolts 5 and the limiting action of the guide groove 3-2-1 and the positioning shaft 2-1-2.

[0030] To simplify the connection between support 2 and connecting seat 3, as shown in Figure 3, the first strip hole 2-1-1 and the second strip hole 3-2-2 form two through holes. Specifically, the first strip hole 2-1-1 is a single hole, positioned along the great circle direction of the spherical recess 2-1. The projection of the first strip hole 2-1-1 onto the horizontal plane is aligned with the projection of the boom 1 onto the horizontal plane. The first strip hole 2-1-1 can be continuous, but to avoid it affecting the arrangement of the positioning shaft 2-1-2, it is broken into two segments at the location of the positioning shaft 2-1-2. There are two second strip-shaped holes 3-2-2. The projections of the two second strip-shaped holes 3-2-2 on the horizontal plane are in the shape of "()", as shown in Figure 3. In addition, the projections of the two second strip-shaped holes 3-2-2 on the horizontal plane can also be sawtooth-shaped. The axis of symmetry of the projections of the two second strip-shaped holes 3-2-2 on the horizontal plane is the projection of the guide groove 3-2-1 on the horizontal plane. The second strip-shaped hole 3-2-2 is a through hole, and both ends of the second strip-shaped hole 3-2-2 are closed to ensure the integrity of the connecting seat 3. In order to facilitate the manufacturing of the second strip-shaped hole 3-2-2, the connecting seat 3 is a stamped steel plate part. The connecting plate 3-1 and the ball head 3-2 are an integral structure. The second strip-shaped hole 3-2-2 is a stamped hole, that is, the second strip-shaped hole 3-2-2 is formed by stamping.

[0031] The boom 1 is generally arranged horizontally. However, to adjust the horizontal cantilever length of boom 1 and improve its adaptability, the boom can also be arranged at an angle, thus adjusting the horizontal cantilever length of boom 1 without changing its overall length. For example... Figure 1 As shown, an internal gear ring 1-2 is fixed between the two ends of the boom 1. A gear 2-2, adapted to the internal gear ring 1-2, is located on the upper part of the support 2. The gear 2-2 meshes with the internal gear ring 1-2, and the rotation axis of the gear 2-2 is perpendicular to the corresponding vertical plane of the boom 1. The gear 2-2 and the internal gear ring 1-2 are fixedly connected by connecting bolts 6. Adjust the tilt of the boom 1, then mesh the gear 2-2 with the internal gear ring 1-2, and fix the connection using the connecting bolts 6.

[0032] The second subject of this invention is a method for installing a highly adaptable suspended platform bracket, which involves installing the aforementioned highly adaptable suspended platform bracket on an inclined plane 4, comprising the following steps.

[0033] S1. Place the connecting plate 3-1 of the connecting seat 3 on the inclined plane 4, and adjust the orientation of the guide groove 3-2-1 so that the extension direction of the projection of the guide groove 3-2-1 on the horizontal plane is consistent with the inclination of the inclined plane 4. At this time, the guide groove 3-2-1 passes through the highest point of the ball head 3-2, and then fix the connecting plate 3-1 to the inclined plane 4. For example, the inclined plane 4 is a steel structure, and the connecting plate 3-1 has connecting holes along the circumference. The connecting plate 3-1 is fixedly connected to the inclined plane 4 by bolts. In order to improve the stability of the connecting seat 3 after installation on the inclined plane 4, a pad 7 is also provided between the connecting plate 3-1 and the inclined plane 4. For example, the pad 7 is a rubber pad.

[0034] S2. Install the support 2 onto the connecting seat 3. First, place the ball socket 2-1 of the support 2 onto the ball head 3-2, and insert the positioning shaft 2-1-2 into the guide groove 3-2-1. At this time, the ball socket 2-1 and the ball head 3-2 are not fixed, and the support 2 can slide along the guide groove 3-2-1 on the surface of the ball head 3-2. Then, adjust the position of the support 2 along the guide groove 3-2-1 so that the positioning shaft 2-1-2 is located at the highest point of the ball head 3-2. Since the positioning shaft 2-1-2 is located at the highest point of the inner wall of the ball socket 2-1 (the inner cavity of the ball socket 2-1 corresponds to the bottom surface of the ball socket being horizontal), the positioning shaft 2-1-2 is located at the highest point of the ball head 3-2, and the support 2 is in a vertical position. Regardless of the inclination angle of the inclined plane 4, the support 2 can slide along the guide groove 3-2-1 to a vertical position on the surface of the ball socket 2-1. Next, rotate the support 2 to the desired position, that is, rotate the support 2 freely within a 360° range to any desired position around the central axis of the positioning shaft 2-1-2 (the central axis of the positioning shaft 2-1-2 is vertical). Finally, install the locking bolt 5 in the through hole formed by the intersection of the first strip hole 2-1-1 and the second strip hole 3-2-2, and the locking bolt 5 fixes the support 2 and the connecting seat 3. To facilitate the installation of the locking bolt 5, both the support 2 and the connecting seat 3 are provided with operating holes and operating space for installing the locking bolt 5.

[0035] S3. Fix the boom 1 to the support 2, and pull the fixed end of the boom 1 down to secure it. The lower end of the fixing rope 1-4 is connected to other fixed objects below the boom 1, such as the steel structure below the boom 1. To reduce the stress on the fixing rope 1-4, the fixing rope 1-4 is arranged vertically.

[0036] An internal gear ring 1-2 is fixed between the two ends of the boom 1. A gear 2-2 that matches the internal gear ring 1-2 is provided on the upper part of the support 2. By adjusting the tilt angle of the boom 1, the gear 2-2 is meshed with the internal gear ring 1-2, and the gear 2-2 is fixed with the internal gear ring 1-2 by using the connecting bolt 6. This allows the tilt angle of the boom 1 to be adjusted, thereby adjusting the cantilever length of the boom 1 in the horizontal direction.

Claims

1. A highly adaptable suspended platform support, comprising a boom (1), a support (2), and a connecting seat (3), wherein the two ends of the boom (1) are a fixed end and a cantilever end, respectively, and the cantilever end is provided with a lifting lug (1-1), characterized in that: The position between the two ends of the boom (1) is fixedly installed on the upper end of the support (2). The lower end of the support (2) is provided with a ball socket (2-1) and connected to the connecting seat (3). The ball socket (2-1) has an inner cavity in the shape of a spherical notch, and the height of the spherical notch is not greater than the radius of the spherical notch. The bottom surface of the spherical notch is horizontal. The ball socket (2-1) is provided with a first strip hole (2-1-1) closed at both ends. The connecting seat (3) includes a connecting plate (3-1) placed on the inclined plane (4) and fixedly connected to the inclined plane (4), and a ball head (3-2) located in the middle of the connecting plate (3-1) and connected to the ball socket (2-1). The ball head (3-2) and the connecting plate (3-1) are an integral unit. The ball head (3-2) is shaped like a spherical cap and is adapted to the shape of the inner cavity of the ball socket (2-1). The ball head (3-2) is inserted into the inner cavity of the ball socket (2-1). The height of the ball head (3-2) corresponding to the spherical cap is greater than the height of the inner cavity of the ball socket (2-1) corresponding to the spherical cap. The outer wall of the ball head (3-2) is provided with a guide groove (3-2-1) along the direction of the great circle. The guide groove (3-2-1) passes through the highest point of the ball head (3-2). The highest point of the inner wall of the ball socket (2-1) is provided with a positioning shaft (2-1-2) that is adapted to the guide groove. The positioning shaft (2-1-2) is located in the guide groove (3-2-1) and can slide along the guide groove (3-2-1). The ball head (3-2) has at least one second strip hole (3-2-2) on each side of the guide groove (3-2-1). The projection of the second strip hole (3-2-2) on the horizontal plane is a curve or a broken line. The extension direction of the guide groove (3-2-1) and the projection of each second strip hole (3-2-2) on the horizontal plane is the same. The width of the first strip hole (2-1-1) is the same as the width of the second strip hole (3-2-2). The first strip hole (2-1-1) and the second strip hole (3-2-2) intersect and form at least two through holes at the intersection. A locking bolt (5) is provided in the through hole. The locking bolt (5) fixes the support (2) and the connecting seat (3).

2. The highly adaptable cradle support of claim 1, wherein: An internal gear ring (1-2) is fixed between the two ends of the boom (1). A gear (2-2) that is compatible with the internal gear ring (1-2) is provided on the upper part of the support (2). The gear (2-2) meshes with the internal gear ring (1-2). The rotation axis of the gear (2-2) is perpendicular to the vertical plane corresponding to the boom (1). The gear (2-2) and the internal gear ring (1-2) are fixedly connected by connecting bolts (6).

3. The highly adaptable cradle support of claim 1, wherein: The boom (1) is in the shape of a downward convex bow, and the two ends of the boom (1) are connected by pull ropes (1-3).

4. The highly adaptable suspended platform support as described in claim 1, characterized in that: The first strip hole (2-1-1) is one, and the first strip hole (2-1-1) is set along the direction of the large circle of the spherical cavity (2-1) corresponding to the spherical cavity. The projection of the first strip hole (2-1-1) on the horizontal plane and the projection of the boom (1) on the horizontal plane are on the same straight line.

5. The highly adaptable suspended platform support as described in claim 1, characterized in that: There are two second strip holes (3-2-2). The projection of the two second strip holes (3-2-2) on the horizontal plane is in the shape of "()", or the projection of the two second strip holes (3-2-2) on the horizontal plane is serrated. The axis of symmetry of the projection of the two second strip holes (3-2-2) on the horizontal plane is the projection of the guide groove (3-2-1) on the horizontal plane.

6. The highly adaptable suspended platform support as described in any one of claims 1 to 5, characterized in that: The connecting seat (3) is a steel plate stamping part. The connecting plate (3-1) and the ball head (3-2) are an integral structure. The connecting plate (3-1) is provided with connecting holes at intervals along the circumference. The guide groove (3-2-1) is a stamping groove, and the second strip hole (3-2-2) is a stamping hole.

7. The highly adaptable suspended platform support as described in any one of claims 1 to 5, characterized in that: The inner side of the ball head (3-2) is provided with a supporting rib.

8. A highly adaptable suspended platform support installation method, characterized in that, Installing the highly adaptable suspended basket support according to any one of claims 1 to 7 onto the inclined plane (4) includes the following steps: S1. Place the connecting plate (3-1) of the connecting seat (3) on the inclined plane (4), adjust the orientation of the guide groove (3-2-1) so that the extension direction of the projection of the guide groove (3-2-1) on the horizontal plane is consistent with the inclination of the inclined plane (4), and then fix the connecting plate (3-1) to the inclined plane (4). S2. Install the support (2) on the connecting seat (3). First, place the ball socket (2-1) of the support (2) on the ball head (3-2) and insert the positioning shaft (2-1-2) into the guide groove (3-2-1). Then, adjust the position of the support (2) along the guide groove (3-2-1) so that the positioning shaft (2-1-2) is located at the highest point of the ball head (3-2). Then, rotate the position of the support (2) to the required position. Finally, install the locking bolt (5) in the through hole formed by the intersection of the first strip hole (2-1-1) and the second strip hole (3-2-2). The locking bolt (5) fixes the support (2) and the connecting seat (3) together. S3. Fix the boom (1) to the support (2) and fix the fixed end of the boom (1) by pulling it down with the fixing rope (1-4).

9. The installation method for the highly adaptable suspended platform support as described in claim 7, characterized in that: The inclined plane (4) is a steel structure. The connecting plate (3-1) is fixed to the inclined plane (4) by bolts. A pad (7) is also provided between the connecting plate (3-1) and the inclined plane (4).

10. The installation method for the highly adaptable suspended platform support as described in claim 8 or 9, characterized in that: The fixing ropes (1-4) are arranged vertically.