A climbing frame with sliding adjustment capable of adapting to variable curved surfaces

By sliding the position of the inner plate in the expansion groove of the outer plate of the climbing frame and changing the distance between the fixed body and the lifting body, the difficulties encountered by the climbing frame attachment and climbing in the multi-surface building during bridge construction are solved, and the stability and flexible climb of the attachment equipment are achieved.

CN115182273BActive Publication Date: 2025-05-16POLY CHANGDA ENGINEERING CO LTD +1
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Patent Information

Application Number
CN202210962302.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-11
Publication Date
2025-05-16
Estimated Expiration
2042-08-11

AI Technical Summary

Technical Problem

In bridge construction, since the surface of the variable-section curved cable tower of the bridge is not straight, the distance between the climbing frame and the cable tower wall changes, and the concave and convexity on the cable tower surface affects the adhesion and climbing of the climbing frame, which is difficult to effectively solve the problem in the existing technology.

Method used

A climbing frame that can adapt to variable curved surfaces is designed. By sliding the position of the inner plate in the telescopic groove of the outer plate, the distance between the fixed body and the lifting body is changed, ensuring that the lifting body is away from the projection of the variable curved building, thereby facilitating the climbing movement of the attachment equipment along the building surface.

Benefits of technology

This technology effectively solves the problem of adhesion and climbing of climbing frames on the surface of variable curved buildings, ensures the stability and flexibility of the attachment equipment, and avoids the shaking of the attachment equipment caused by accidental sliding of the inner plate.

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Abstract

The present invention relates to the technical field of bridge construction, and more specifically, to a climbing frame that can be adjusted by sliding to adapt to variable curved surfaces. It includes an attachment device, which includes a fixed body and a lifting body. The fixed body and the lifting body are connected by a telescopic body. The telescopic body includes an inner plate and an outer plate. The inner plate is provided with a slide plate, and the outer plate is provided with a telescopic groove. The outer plate is symmetrically provided with a locking structure, and the outer plate is provided with a limiting body. The lifting body includes a support and a bracket, and the support is fixedly connected to the outer plate. The present invention adjusts the position of the inner plate by sliding in the telescopic groove of the outer plate, so that the distance between the fixed body and the lifting body changes, so that the lifting body can be away from the protruding part of the building surface with variable curved surfaces, thereby facilitating the climbing movement of the attachment device along the building surface.
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Description

Technical Field

[0001] The invention relates to the technical field of bridge construction, in particular to a climbing frame capable of sliding and adjusting to adapt to variable curved surfaces. Background Art

[0002] Climbing frame is a new type of scaffolding system, which is mainly used in high-rise shear wall buildings. It can climb up or down along the building. Its advantage is that it eliminates the repeated disassembly and assembly process of the scaffolding and is not limited by the height of the building. It is flexible and convenient to use, greatly saving manpower and materials, and is safer than traditional scaffolding.

[0003] The climbing frame climbs up and down along the guide rail fixed on the surface of the building. However, during bridge construction, the distance between the climbing frame and the tower wall will change because the surface of the variable-section curved tower of the bridge is not a flat surface. In addition, the unevenness of the tower surface will affect the adhesion of the climbing frame and even hinder the climbing of the climbing frame. Therefore, a climbing frame with sliding adjustment that can adapt to variable curved surfaces is proposed. Summary of the invention

[0004] The object of the present invention is to provide a climbing frame with sliding adjustment that can adapt to variable curved surfaces, so as to solve the problems raised in the above-mentioned background technology.

[0005] To achieve the above-mentioned purpose, the present invention aims to provide a climbing frame that can be adapted to a variety of curved surfaces by sliding adjustment, including an attachment device, the attachment device including a fixed body and a lifting body arranged on one side of the fixed body, the fixed body and the lifting body being connected by a telescopic body, the telescopic body including an inner plate and an outer plate, the inner plate being fixedly connected to the surface of the fixed body by bolts at one end away from the outer plate, the outer plate being connected to the surface of the lifting body at one end away from the inner plate, slide plates being provided on the left and right surfaces of the inner plate, a telescopic groove being provided on the outer plate close to one end of the inner plate, the slide plates being slidably connected to the telescopic groove, locking structures being symmetrically provided at the upper and lower ends of the outer plate, the locking structures being in contact with the surface of the inner plate, the locking structures being used to fix the inner plate, a limiting body being provided on one side of the outer surface of the outer plate, the limiting body being connected to the inner plate by a pull rope, the lifting body including a support and a bracket slidably connected to the support, and the support being fixedly connected to the outer plate on a side surface away from the bracket.

[0006] As a further improvement of the technical solution, the fixed body includes a support plate fixedly connected to the inner plate, side plates are symmetrically provided on the left and right sides of the support plate, end plates are symmetrically provided on the upper and lower ends of the support plate, and the end plates and the side plates are both provided with embedded piles.

[0007] As a further improvement of the technical solution, a branch opening is opened in the middle of the support plate and runs through the left and right sides thereof, the two side plates are connected by a circular shaft, the side plates are rotatably connected to the branch opening, ports are symmetrically opened at the upper and lower ends of the support plate, the ports are rotatably connected to the end plates, an end groove running through the front and rear surfaces is opened at one end of the end plate away from the support plate, an inner ring is rotatably connected in the end groove, and the embedded pile passes through the inner ring.

[0008] As a further improvement of the present technical solution, an inner groove is formed at one end of the outer plate away from the inner plate, and the locking structure includes a pressure head located in the inner groove, one end of the pressure head passes through the support, and oblique grooves are symmetrically formed at the upper and lower ends of the pressure head close to the inner plate, and locking plates are provided at the upper and lower ends of the outer plate, the locking plates are slidably connected to the inner surface of the outer plate, and a connecting shaft is provided on the lock plate close to the pressure head, and the connecting shaft is slidably connected to the oblique groove, and locking teeth are correspondingly provided on the upper and lower surfaces of the inner plate, and the locking teeth are snap-fitted with the locking plate.

[0009] As a further improvement of the technical solution, the surface of one end of the pressure head away from the inner plate is a smooth arc surface, and a reset spring is provided at the other end of the pressure head. The pressure head is connected to the inner surface of the inner groove through the set reset spring.

[0010] As a further improvement of the present technical solution, the limiting body includes an outer sleeve located on the outer surface of the outer plate, a reel is provided in the middle of the outer sleeve, a reel is coaxially connected to the upper and lower ends of the reel, the reel is located in the outer sleeve, a volute spring is provided on the surface of the reel, the reel is connected to the inner surface of the outer sleeve through the arranged volute spring, and the reel is connected to the pull rope.

[0011] As a further improvement of the present technical solution, the attachment device also includes a correcting body, which includes a sleeve plate sleeved on the surface of the outer plate, a positioning plate rotatably connected to the surface of the sleeve plate, and an insertion rod is symmetrically provided at one end of the positioning plate away from the sleeve plate, and a socket is correspondingly provided on the surface of one end of the adjacent positioning plate close to the insertion rod, and the insertion rod is plugged into and matched with the socket.

[0012] As a further improvement of the technical solution, a plate groove is opened in the middle of the positioning plate, a rotating plate is rotatably connected in the plate groove, a clamping groove is provided at one end of the rotating plate, and clamping plates are correspondingly provided on the upper and lower surfaces of the support, and the clamping groove is clamped in cooperation with the clamping plate.

[0013] As a further improvement of the technical solution, a side groove is provided on one side surface of the support, a servo motor is provided in the side groove, the servo motor is connected to a gear, and the servo motor meshes with the surface of the support through the provided gear.

[0014] As a further improvement of the technical solution, bottom grooves are provided at both ends of the bottom of the bracket, and auxiliary plates are rotatably connected in the bottom grooves, and the auxiliary plates are plates with curved surfaces.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. The sliding adjustment can adapt to the climbing frame with variable curved surfaces. By sliding the position of the inner plate in the telescopic groove of the outer plate, the distance between the fixed body and the lifting body is changed, so that the lifting body can be away from the protruding part of the building surface with variable curved surfaces, thereby facilitating the climbing and movement of the attached equipment along the building surface.

[0017] 2. The sliding adjustment can adapt to climbing frames with variable curves. By rotating the connection, the side panels can be rotated in the support openings to change the angles of the side panels to keep them parallel to the wall. By rotating the end panels at the upper and lower ends of the support panels and rotating the inner ring in the end grooves, the inner ring is parallel to the connection between the inner ring and the outer surface of the cable tower, making it easier to attach to the outer surface of a building with a variable curve.

[0018] 3. The sliding adjustment can adapt to the climbing frame with variable curved surfaces. When the bracket is located in the support, the pressure head is squeezed and moved into the inner groove. When the pressure head moves, it drives the connecting shaft to move along the inclined groove toward the inner plate, thereby driving the locking plate and the locking teeth on the surface of the inner plate to engage with each other, thereby achieving the fixation of the inner plate and the outer plate, and avoiding the shaking of the attached equipment caused by the accidental sliding of the inner plate in the outer plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is the overall structure diagram of the present invention;

[0020] Figure 2 It is a structural diagram of a fixed body of the present invention;

[0021] Figure 3 It is a structural diagram of the support plate of the present invention;

[0022] Figure 4 This is a structural diagram of the end plate of the present invention;

[0023] Figure 5 It is a structural diagram of the telescopic body of the present invention;

[0024] Figure 6 This is a structural diagram of the inner plate of the present invention;

[0025] Figure 7 is a cross-sectional view of an outer plate of the present invention;

[0026] Figure 8 It is a cross-sectional structural diagram of a limiting body of the present invention;

[0027] Fig. 9 It is a structural diagram of the correction body of the present invention;

[0028] Fig.10 It is a structural diagram of the lifting body of the present invention.

[0029] The meaning of each number in the figure is:

[0030] 1. Attachment equipment; 11. Fixed body; 111. Support plate; 112. End plate; 113. Embedded pile; 114. Branch port; 115. Side plate; 116. Port; 117. End groove; 118. Inner ring; 12. Telescopic body; 121. Inner plate; 122. Outer plate; 123. Slide plate; 124. Locking teeth; 125. Inner groove; 126. Pressure head; 127. Inclined groove; 128. Locking plate; 129. Coupling; 13. Lifting body; 131. Support; 132. Bracket; 133. Side groove; 134. Servo motor; 135. Bottom groove; 136. Auxiliary plate; 14. Correction body; 141. Sleeve plate; 142. Positioning plate; 143. Plate groove; 144. Turn plate; 15. Limiting body; 151. Outer sleeve; 152. Reel; 153. Reel. DETAILED DESCRIPTION

[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0032] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.

[0033] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, the meaning of "plurality" is two or more, unless otherwise clearly and specifically defined.

[0034] Example 1

[0035] See also Figure 1-Figure 10As shown, the purpose of this embodiment is to provide a climbing frame with sliding adjustment that can adapt to variable curved surfaces, including an attachment device 1, the attachment device 1 includes a fixed body 11 and a lifting body 13 arranged on one side of the fixed body 11, the fixed body 11 and the lifting body 13 are connected by a telescopic body 12, the fixed body 11 is used to maintain a fixed connection with the outer surface of the building, the telescopic body 12 includes an inner plate 121 and an outer plate 122, the inner plate 121 is fixedly connected to the surface of the fixed body 11 at one end away from the outer plate 122 by bolts, the outer plate 122 is connected to the surface of the lifting body 13 at one end away from the inner plate 121, and slide plates 123 are provided on the left and right surfaces of the inner plate 121, the slide plate 123 is a square protrusion, a telescopic groove is opened at one end of the outer plate 122 close to the inner plate 121, and slide grooves with square cross-sections are opened on the two sides of the telescopic groove, the slide plate 123 is located in the slide groove, the square protrusion slide plate 123 slides in the slide groove, and the slide plate 123 The outer panel 122 is slidably connected to the telescopic groove, and locking structures are symmetrically provided at the upper and lower ends thereof, and the locking structures are in contact with the surface of the inner panel 121, and the locking structures are used to fix the inner panel 121 to keep the relative positions of the inner panel 121 and the outer panel 122 unchanged; a limiting body 15 is provided on one side of the outer surface of the outer panel 122, and the limiting body 15 is connected to the inner panel 121 through a pull rope, and the limiting body 15 is used to prevent the inner panel 121 from completely separating from the outer panel 122; the lifting body 13 includes a support 131 and a bracket 132 slidably connected to the support 131, and the support 131 is fixedly connected to the outer panel 122 on a side surface away from the bracket 132, and the position of the inner panel 121 is adjusted by sliding in the telescopic groove of the outer panel 122, so that the distance between the fixed body 11 and the lifting body 13 changes, so that the lifting body 13 can be away from the protrusion of the variable curved building surface, thereby facilitating the climbing movement of the attachment device 1 along the building surface.

[0036] When this embodiment is used, the side plate 115 is rotated in the support port 114, the end plate 112 is rotated in the ports 116 at the upper and lower ends of the support plate 111, and the inner ring 118 is rotated in the end plate 112, so that the side plate 115, the inner ring 118 and the outer surface connection of the curved surface building are parallel, and the embedded pile 113 is passed through the side plate 115 and the inner ring 118 to achieve a fixed connection between the attachment device 1 and the outer surface of the building, and the inner plate 121 is slid in the telescopic groove in the outer plate 122, so that the inner plate 121 is retracted into or extended out of the outer plate 122. When the inner plate 121 is extended out of the outer plate 122, it is necessary to drive the pull rope and then drive the reel 152 to overcome the elastic force of the spiral spring and rotate in the outer sleeve 151, so as to change the distance between the fixed body 11 and the lifting body 13, so as to ensure that the curved surface building The protrusions on the surface of the cable tower will not affect the climbing movement of the bracket 132. By aligning the insertion rod of the positioning plate 142 with the socket of the adjacent positioning plate 142 and rotating the rotating plate 144, the slot of the rotating plate 144 is engaged with the card plate on the surface of the support 131. After determining the position of the adjacent fixed body 11, the bracket 132 is rotated to enter along the bottom of the support 131 and squeeze the pressure head 126, so that the pressure head 126 overcomes the elastic force of the return spring and moves into the inner groove 125. When the pressure head 126 moves into the inner groove 125, the connecting shaft 129 at one end of the locking plate 128 slides along the inclined groove 127 of the pressure head 126, driving the locking plate 128 to contact the locking teeth 124 on the surface of the inner plate 121, so that the inner plate 121 is stuck and locked, thereby preventing accidental movement of the inner plate 121.

[0037] In this embodiment, in order to facilitate attachment to the outer surface of the building, the fixed body 11 includes a support plate 111 fixedly connected to the inner plate 121, and side plates 115 are symmetrically provided on the left and right sides of the support plate 111. End plates 112 are symmetrically provided at the upper and lower ends of the support plate 111. The end plates 112 and the side plates 115 are both provided with embedded piles 113. The embedded piles 113 are embedded in the outer surface of the building. The embedded piles 113 pass through the end plates 112 and the side plates 115 and maintain a fixed connection, so that the fixed body 11 is fixed to the outer surface of the building, thereby facilitating the attachment device 1 to be attached to the outer surface of the building.

[0038] Considering that the bridge pylon is a variable curved surface building, that is, its surface is not a flat surface, in order to facilitate attachment to the outer surface of the variable curved surface building, a branch opening 114 is opened in the middle of the support plate 111 and runs through the left and right sides thereof, and the two side plates 115 are connected by a circular shaft, and the side plates 115 are rotatably connected to the branch opening 114, and ports 116 are symmetrically opened at the upper and lower ends of the support plate 111, and the ports 116 are circular through-openings, and cylindrical protrusions are correspondingly provided on both sides of the end plate 112 close to one end of the support plate 111, and the cylindrical protrusions are located in the ports 116, and the ports 116 are rotatably connected to the end plate 112, and the end An end groove 117 penetrating the front and rear surfaces is provided at one end of the plate 112 away from the support plate 111, and an inner ring 118 is rotatably connected in the end groove 117. The embedded pile 113 passes through the inner ring 118. By means of a rotatable connection, the side plate 115 can be rotated in the branch opening 114 to change the angle of the side plate 115 to keep it parallel to the wall surface, and by rotating the end plate 112 at the upper and lower ends of the support plate 111 and rotating the inner ring 118 in the end groove 117, the inner ring 118 is parallel to the connection point of the outer surface of the cable tower, so that it is easy to attach to the outer surface of the curved surface building.

[0039] In order to prevent the attachment device 1 from shaking due to the accidental sliding of the inner plate 121 in the outer plate 122 during construction, an inner groove 125 is provided at one end of the outer plate 122 away from the inner plate 121, and the locking structure includes a pressure head 126 located in the inner groove 125, one end of the pressure head 126 passes through the support 131, and the pressure head 126 is close to the inner plate 121. The upper and lower ends of the side symmetrically provided with oblique grooves 127, the oblique groove 127 is an inclined square through-hole, the upper and lower ends of the outer plate 122 are provided with locking plates 128, the two ends of the locking plate 128 are provided with square protrusions, the inner surface of the outer plate 122 is correspondingly provided with a square groove, the locking plate 128 is slidably connected to the inner surface of the outer plate 122, and the locking plate 128 is provided with a connecting shaft 129 on the side of the locking plate 128 close to the pressure head 126, and the connecting shaft 129 is located in the oblique groove 1 27, the connecting shaft 129 is slidably connected with the inclined groove 127, and the surface of the locking plate 128 close to the inner plate 121 is provided with a plurality of protrusions with triangular cross-sections, and the upper and lower surfaces of the inner plate 121 are correspondingly provided with locking teeth 124, and the locking teeth 124 are engaged with the triangular protrusions, and the locking teeth 124 are engaged with the locking plate 128. When the bracket 132 is located in the support 131, the pressing head 126 is squeezed to move into the inner groove 125. When the pressing head 126 moves, it drives the connecting shaft 129 to move along the inclined groove 127 toward the inner plate 121, thereby driving the locking plate 128 to engage with the locking teeth 124 on the surface of the inner plate 121, so as to achieve the fixation of the inner plate 121 and the outer plate 122, and can avoid the shaking of the attachment device 1 caused by the accidental sliding of the inner plate 121 in the outer plate 122.

[0040] In order to facilitate the movement of the pressure head 126 and the movement of the bracket 132 in the support 131, the surface of the pressure head 126 at one end away from the inner plate 121 is a smooth arc surface, and a return spring is provided at the other end of the pressure head 126. The pressure head 126 is connected to the inner surface of the inner groove 125 through the set return spring. By setting one end of the pressure head 126 as a smooth arc surface, when the bracket 132 moves in the support 131, it is easy to slide along the smooth arc surface of the pressure head 126 when passing through the pressure head 126, and push the pressure head 126 to overcome the elastic force of the return spring and move into the inner groove 125, so as to facilitate the reset of the pressure head 126 through the spring connection.

[0041] In order to prevent the inner plate 121 from accidentally detaching from the outer plate 122 when the inner plate 121 is extended and retracted in the outer plate 122 to adjust its position, the limiting body 15 includes a jacket 151 located on the outer surface of the outer plate 122, a reel 152 is provided in the middle of the jacket 151, and a reel 153 is coaxially connected to the upper and lower ends of the reel 152. The reel 153 is located in the jacket 151, and a volute spring is provided on the surface of the reel 153. The reel 153 is connected to the inner surface of the jacket 151 through the provided volute spring, and the reel 152 is connected to the pull rope. By providing the limiting body 15, when the inner plate 121 is extended and retracted in the outer plate 122, the inner plate 121 can be adjusted to a certain position by adjusting the inner plate 121. When the inner plate 121 moves, and moves toward the outside of the outer plate 122, the inner plate 121 drives the pull rope and then drives the reel 152 to rotate, and the reel 153 coaxially connected to the reel 152 drives the spiral spring to rotate in the outer sleeve 151. As the reel 153 rotates, the spiral spring is compressed. Under the action of the spiral spring, it becomes increasingly difficult to rotate the reel 153, that is, as the inner plate 121 moves toward the outside of the outer plate 122, the greater the reverse force applied to the inner plate 121, until the inner plate 121 cannot move, thereby preventing the inner plate 121 from accidentally detaching from the outer plate 122 during extension and retraction.

[0042] In order to facilitate determining the installation position of the adjacent fixed body 11, the attachment device 1 also includes a correction body 14, which includes a sleeve plate 141 sleeved on the surface of the outer plate 122, and a positioning plate 142 is rotatably connected to the surface of the sleeve plate 141. The positioning plate 142 includes a T frame and a circular ring arranged at one end of the T frame, and the circular ring is sleeved on the surface of the sleeve plate 141. The positioning plate 142 is symmetrically provided with a plug rod at one end away from the sleeve plate 141, and a socket is correspondingly provided on the surface of the adjacent positioning plate 142 close to the plug rod. The plug rod is plugged into the socket. When placing the adjacent fixed body 11, the installation position of the adjacent fixed body 11 can be determined by rotating the positioning plate 142 on the surface of the sleeve plate 141 and aligning the plug rod of the positioning plate 142 with the socket of the adjacent positioning plate 142.

[0043] Due to the linear structure of the bracket 132, multiple fixed bodies 11 need to be kept on the same vertical plane to facilitate the climbing and movement of the bracket 132. In order to ensure that the fixed body 11 is in the correct position, a plate groove 143 is opened in the middle of the positioning plate 142, and a rotating plate 144 is rotatably connected in the plate groove 143. A card slot is provided at one end of the rotating plate 144, and the card slot is a "U"-shaped structure. The upper and lower surfaces of the support 131 are correspondingly provided with a card plate, which is a square plate, and the card slot and the card plate are engaged with each other. When the plane where the two fixed bodies 11 are located is perpendicular to the upper and lower surfaces of the support 131, by rotating the rotating plate 144, the card plate is just inserted into the card slot, thereby ensuring that the multiple fixed bodies 11 are in the vertical plane, which is convenient for the bracket 132 to climb and move along the support 131.

[0044] In order to facilitate the climbing and movement of the bracket 132, a side groove 133 is provided on one side surface of the support 131, and a servo motor 134 is provided in the side groove 133. The servo motor 134 is connected to a gear, and a tooth is provided on the surface of the bracket 132 close to the gear. The servo motor 134 engages with the surface of the bracket 132 through the set gear. The servo motor 134 drives the gear and then drives the bracket 132 engaged with the gear to move up and down in the support 131, thereby facilitating the climbing and movement of the bracket 132.

[0045] In order to facilitate the combined installation of the bracket 132 and the support 131, bottom grooves 135 are opened at both ends of the bottom of the bracket 132, and an auxiliary plate 136 is rotatably connected in the bottom groove 135. The auxiliary plate 136 is a plate with a curved surface. When one end of the bracket 132 contacts the auxiliary plate 136 at the bottom of the bracket 132, the bracket 132 slides into the bracket 132 along the curved surface of the auxiliary plate 136, thereby facilitating the combined installation of the bracket 132 and the support 131. In addition, through the rotational connection, when the bracket 132 contacts the auxiliary plate 136, the auxiliary plate 136 has room to move to avoid damage caused by excessive squeezing of the auxiliary plate 136 by the bracket 132.

[0046] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and descriptions are only preferred examples of the present invention and are not intended to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention. The scope of protection of the present invention is defined by the attached claims and their equivalents.

Claims

1. A climbing frame with sliding adjustment that can adapt to variable curved surfaces, characterized by: The invention comprises an attachment device (1), wherein the attachment device (1) comprises a fixed body (11) and a lifting body (13) arranged on one side of the fixed body (11), wherein the fixed body (11) and the lifting body (13) are connected via a telescopic body (12), wherein the telescopic body (12) comprises an inner plate (121) and an outer plate (122), wherein an end of the inner plate (121) away from the outer plate (122) is fixedly connected to the surface of the fixed body (11) via bolts, and an end of the outer plate (122) away from the inner plate (121) is connected to the surface of the lifting body (13), and slide plates (123) are provided on the left and right surfaces of the inner plate (121), and the outer plate (122) is close to the inner plate (121). A telescopic groove is provided at one end of the inner plate (121), and the slide plate (123) is slidably connected to the telescopic groove. Locking structures are symmetrically provided at the upper and lower ends of the outer plate (122), and the locking structures are in contact with the surface of the inner plate (121). The locking structures are used to fix the inner plate (121). A limiting body (15) is provided on one side of the outer surface of the outer plate (122), and the limiting body (15) is connected to the inner plate (121) through a pull rope. The lifting body (13) includes a support (131) and a bracket (132) slidably connected to the support (131), and the surface of the support (131) away from the bracket (132) is fixedly connected to the outer plate (122); The fixed body (11) comprises a support plate (111) fixedly connected to the inner plate (121); side plates (115) are symmetrically arranged on the left and right sides of the support plate (111); end plates (112) are symmetrically arranged on the upper and lower ends of the support plate (111); the end plates (112) and the side plates (115) are both provided with embedded piles (113); a branch opening (114) is opened in the middle of the support plate (111) and runs through the left and right sides thereof; a circular shaft is passed between the two side plates (115); The side plate (115) is rotatably connected to the branch opening (114); ports (116) are symmetrically provided at the upper and lower ends of the support plate (111); the ports (116) are rotatably connected to the end plate (112); an end groove (117) penetrating the front and rear surfaces is provided at one end of the end plate (112) away from the support plate (111); an inner ring (118) is rotatably connected in the end groove (117); and the embedded pile (113) passes through the inner ring (118).

2. The climbing frame with sliding adjustment that can adapt to variable curved surfaces according to claim 1 is characterized by: The port (116) is a circular through hole, and cylindrical protrusions are correspondingly provided on both sides of one end of the end plate (112) close to the support plate (111), and the cylindrical protrusions are located inside the port (116).

3. The climbing frame capable of sliding and adjusting to adapt to various curved surfaces according to claim 1 is characterized in that: An inner groove (125) is provided at one end of the outer plate (122) away from the inner plate (121), and the locking structure includes a pressing head (126) located in the inner groove (125), one end of the pressing head (126) passes through the support (131), and the pressing head (126) is symmetrically provided with oblique grooves (127) at the upper and lower ends of the side close to the inner plate (121), and locking plates (128) are provided at the upper and lower ends of the outer plate (122), and the locking plates (128) are slidably connected to the inner surface of the outer plate (122), and a connecting shaft (129) is provided on the side of the locking plate (128) close to the pressing head (126), and the connecting shaft (129) is slidably connected to the oblique groove (127), and the upper and lower surfaces of the inner plate (121) are correspondingly provided with locking teeth (124), and the locking teeth (124) are snap-fitted with the locking plates (128).

4. The climbing frame capable of sliding and adjusting to adapt to various curved surfaces according to claim 3 is characterized in that: The surface of one end of the pressure head (126) away from the inner plate (121) is a smooth arc surface, and a return spring is provided at the other end of the pressure head (126). The pressure head (126) is connected to the inner surface of the inner groove (125) through the provided return spring.

5. The climbing frame capable of sliding and adjusting to adapt to various curved surfaces according to claim 3 is characterized in that: The inclined groove (127) is an inclined square hole, square protrusions are provided at both ends of the lock plate (128), a corresponding square groove is provided on the inner surface of the outer plate (122), a surface of the lock plate (128) close to the inner plate (121) is provided with a plurality of protrusions with triangular cross-sections, and the lock teeth (124) are engaged with the triangular protrusions.

6. The climbing frame with sliding adjustment that can adapt to variable curved surfaces according to claim 1 is characterized in that: The limiting body (15) includes a jacket (151) located on the outer surface of the outer plate (122), a reel (152) is provided in the middle of the jacket (151), a reel (153) is coaxially connected to the upper and lower ends of the reel (152), the reel (153) is located in the jacket (151), a spiral spring is provided on the surface of the reel (153), the reel (153) is connected to the inner surface of the jacket (151) through the provided spiral spring, and the reel (152) is connected to the pull rope.

7. The climbing frame capable of sliding and adjusting to adapt to various curved surfaces according to claim 1 is characterized in that: The attachment device (1) also includes a correction body (14), the correction body (14) includes a sleeve plate (141) sleeved on the surface of the outer plate (122), the surface of the sleeve plate (141) is rotatably connected to a positioning plate (142), the positioning plate (142) is symmetrically provided with an insertion rod at one end away from the sleeve plate (141), and a corresponding socket is provided on the surface of an end of the adjacent positioning plate (142) close to the insertion rod, and the insertion rod is plugged into and matched with the socket.

8. The climbing frame capable of sliding and adjusting to adapt to various curved surfaces according to claim 7 is characterized in that: A plate groove (143) is provided in the middle of the positioning plate (142), a rotating plate (144) is rotatably connected in the plate groove (143), a clamping groove is provided at one end of the rotating plate (144), and clamping plates are correspondingly provided on the upper and lower surfaces of the support (131), and the clamping groove is clamped and matched with the clamping plate.

9. The climbing frame capable of sliding and adjusting to adapt to various curved surfaces according to claim 1, characterized in that: A side groove (133) is provided on one side surface of the support (131), a servo motor (134) is provided in the side groove (133), the servo motor (134) is connected to a gear, and the servo motor (134) is meshed with the surface of the support (132) through the provided gear.

10. The climbing frame with sliding adjustment that can adapt to variable curved surfaces according to claim 1 is characterized in that: Bottom grooves (135) are provided at both ends of the bottom of the bracket (132), and an auxiliary plate (136) is rotatably connected in the bottom groove (135), and the auxiliary plate (136) is a plate with a curved surface.

Citation Information

Patent Citations

  • Anti-falling climbing frame

    CN216406107U