Multi-angle adjustable steel adapter member

CN224755212UActive Publication Date: 2026-09-15THE CONSTR DECORATION OF CHINA CONSTR NO 7 ENG BUREAU +1
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Patent Information

Application Number
CN202521857953.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2026-09-15
Estimated Expiration
2035-08-29

AI Technical Summary

Technical Problem

[0002]现代幕墙的构造复杂、外观新颖、形状多变;幕墙在安装的过程中,需要根据幕墙的构造对安装幕墙的安装框架进行调节,来应对幕墙的安装工作

Benefits of technology

本实用新型在升降杆的下部设置有第一锁止组件以及在调节杆的侧部开设有锁止孔,第一锁止组件与锁止孔能够快速脱离,调节杆能够在升降杆的内部滑动,从而能够对升降杆顶部的安装组件进行高度调节;在转动座和转动套的连接处设置有第二锁止组件,升降杆底端的按压件下移并对第二锁止组件组件按压后,通过调节杆和升降杆的配合,能够快速的带动转动盘在安装盘的顶部进行旋转,从而能够对升降杆顶部的安装组件进行旋转调节,替换传统螺栓固定的方式,操作方便,省时省力,给工作人员提供便利。

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Abstract

The utility model relates to the technical field of curtain wall installation, and disclose a multi -angle adjustable steel adapter component, including installation disc and the rotating disc that is located installation disc top, the axle of installation disc top is fixed with the rotating seat, the axle of rotating disc top is fixed with the rotating sleeve that rotates and installs on rotating seat, the top of rotating sleeve is fixed with the adjusting lever, the inside slide of adjusting lever is installed with the lifting rod, and the top of lifting rod passes through adjusting lever and is provided with installation component, and installation component is used for supporting beam fixed, the lower part of lifting rod is installed with first locking assembly, and the side portion of lifting rod is equipped with the locking hole that is adapted with first locking assembly, the utility model discloses the lower part of lifting rod is provided with first locking assembly and is equipped with locking hole in the side portion of adjusting lever, first locking assembly and locking hole can quickly separate, and adjusting lever can slide in the inside of lifting rod, thereby can carry out height adjustment to the installation component of lifting rod top.
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Description

Technical Field

[0001] This utility model relates to the field of curtain wall installation technology, specifically to a multi-angle adjustable steel transition component. Background Technology

[0002] Modern curtain walls are complex in structure, novel in appearance, and varied in shape. During the installation process, the installation frame of the curtain wall needs to be adjusted according to the structure of the curtain wall to cope with the installation work.

[0003] During the installation of a curtain wall, a supporting structure is usually required based on the curtain wall's construction. During the construction of the supporting structure, a multi-angle adjustment device is needed to adjust the supporting beams of the supporting structure and then fix them in place. However, the current multi-angle adjustment device requires fixing bolts after each adjustment of the steel structure. This requires workers to repeatedly loosen and tighten the fixing bolts, resulting in a heavy workload and increased labor burden for the workers.

[0004] Therefore, we proposed a multi-angle adjustable steel transition component to solve the problem of high workload. Utility Model Content

[0005] The purpose of this utility model is to solve all the above-mentioned technical problems.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: a multi-angle adjustable steel adapter component, including a mounting plate and a rotating plate located above the mounting plate. A rotating seat is fixed at the axis of the mounting plate, and a rotating sleeve rotatably mounted on the rotating seat is fixed at the axis of the rotating plate. An adjusting rod is fixed at the top of the rotating sleeve, and a lifting rod is slidably installed inside the adjusting rod. An installation component is provided through the top of the lifting rod, which is used to fix the support beam. A first locking component is installed at the lower part of the lifting rod, and a locking hole adapted to the first locking component is opened on the side of the lifting rod. When the first locking component is disengaged from the locking hole, the lifting rod can be adjusted up and down inside the adjusting rod. A second locking component is provided at the connection between the rotating seat and the rotating sleeve. A pressing component is provided at the bottom end of the lifting rod. When the pressing component at the bottom end of the lifting rod moves downward and presses against the second locking component, the lifting rod drives the rotating plate to rotate on the mounting plate through the adjusting rod and adjust the angle.

[0007] Furthermore: the mounting assembly includes a fixed mounting plate vertically fixed to the top of the lifting rod, and a movable adjusting plate movably mounted on the side of the lifting rod located below the fixed mounting plate, with a gap between the fixed mounting plate and the movable adjusting plate for mounting support beams.

[0008] Furthermore: the movable adjustment plate has at least two mounting holes on its side; the lifting rod has an elongated hole that matches the mounting holes, and the elongated hole has a fixing bolt that is threadedly connected to the mounting hole.

[0009] Furthermore: the outer surface of the rotating seat is fixed with an annular protrusion; the inner sidewall of the rotating sleeve is provided with an annular groove, and the annular protrusion is rotatably installed inside the annular groove.

[0010] Furthermore: the first locking assembly includes a groove formed at the bottom end of the lifting rod and a locking member slidably installed in the groove. A first elastic support element is fixed between the locking member and the inner end wall of the groove. Limiting blocks are fixed on both sides of the sliding part. A sliding groove is formed along the depth direction on the inner side wall of the groove, and the limiting blocks are slidably installed inside the sliding groove.

[0011] Furthermore: the locking member includes a sliding part, and the side of the sliding part is integrally formed with a plurality of locking parts, with a certain gap between adjacent locking parts.

[0012] Furthermore: the locking hole is divided into an adjustment area, and several locking areas are equidistantly arranged on one side of the adjustment area, with a certain gap between adjacent locking areas.

[0013] Furthermore: the second locking assembly includes a locking disc that is slidably mounted at the center of the rotating seat, and a second elastic support element is installed between the inner top wall of the locking disc and the rotating seat; a locking groove that cooperates with the locking disc is opened at the axis of the rotating sleeve, and when the locking disc extends into the interior of the locking groove, the mounting disc and the rotating disc lock each other.

[0014] Furthermore: the locking disc has a plurality of insert parts integrally formed on its circumferential surface along the circumferential direction, with a certain gap between adjacent insert parts; the locking groove has a plurality of insert grooves that are adapted to the insert parts and are equidistantly opened on its circumferential surface along the circumferential direction.

[0015] Furthermore, the bottom of the mounting plate is symmetrically fixed with fasteners about the axis, and a gap for installing the steel structure is provided between the two fasteners.

[0016] The beneficial effects of this utility model are: This invention features a first locking component at the lower part of the lifting rod and a locking hole on the side of the adjusting rod. The first locking component can quickly disengage from the locking hole, allowing the adjusting rod to slide inside the lifting rod, thus enabling height adjustment of the mounting component at the top of the lifting rod. A second locking component is located at the connection between the rotating seat and the rotating sleeve. After the pressing part at the bottom of the lifting rod moves down and presses against the second locking component, the adjusting rod and the lifting rod work together to quickly rotate the rotating disc on top of the mounting disc, thereby allowing rotational adjustment of the mounting component at the top of the lifting rod. This replaces the traditional bolt fixing method, making operation convenient, time-saving, and labor-saving, providing convenience for workers. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural schematic diagram of the present invention; Figure 2 This is a three-dimensional structural diagram of the mounting plate and rotating plate in this utility model; Figure 3 This is an exploded structural diagram of the mounting plate and rotating plate in this utility model; Figure 4 This is a three-dimensional structural diagram of the mounting plate in this utility model (viewed from bottom to top). Figure 5 This is a cross-sectional structural diagram of the rotating seat in this utility model; Figure 6 This is a cross-sectional structural diagram of the rotating disk in this utility model; Figure 7 This is a three-dimensional structural diagram of the adjusting rod in this utility model; Figure 8 This is a three-dimensional structural diagram of the lifting rod in this utility model; Figure 9 This is an exploded structural diagram of the first locking component in this utility model.

[0018] The names corresponding to each mark in the diagram: 1. Mounting plate; 2. Rotating plate; 3. Rotating seat; 301. Annular protrusion; 4. Rotating sleeve; 401. Annular groove; 5. Adjusting rod; 6. Lifting rod; 601. Elongated hole; 602. Fixing bolt; 7. Mounting assembly; 701. Fixed mounting plate; 702. Movable adjusting plate; 8. First locking assembly; 801. Groove; 802. Locking element; 8021. Sliding part; 8022. Locking part; 803. First elastic support element; 804. Limiting block; 805. Sliding groove; 9. Locking hole; 901. Adjustment area; 902. Locking area; 1001. Locking plate; 1002. Second elastic support element; 1003. Locking groove; 1004. Insertion part; 1005. Insertion groove. Detailed Implementation

[0019] 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. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model are within the protection scope of the present utility model.

[0020] A multi-angle adjustable steel adapter includes a mounting plate 1. The bottom of the mounting plate 1 is symmetrically fixed with fixing members 11 about an axis, and a certain gap is provided between the two fixing members 11. Through the setting of the two fixing members 11, a steel structure (not shown in the figure) can be installed in the gap between the two fixing members 11. Then, bolts are used to thread the fixing members 11 onto the steel structure, thereby fixing the mounting plate 1 and preventing it from loosening during use.

[0021] A rotating seat 3 facing upwards is fixed at the axis of the mounting plate 1, and a rotating sleeve 4 facing upwards is also fixed at the axis of the rotating plate 2. The rotating sleeve 4 is rotatably mounted on the rotating seat 3. Through the cooperation of the rotating seat 3 and the rotating sleeve 4, the rotating plate 2 can rotate on the mounting plate 1, which serves to adjust the angle. It should be noted that: an annular protrusion 301 is fixed on the outer surface of the rotating seat 3, and an annular groove 401 is opened on the inner circumferential wall of the rotating sleeve 4. The annular protrusion 301 is rotatably mounted inside the annular groove 401. Through the cooperation of the annular protrusion 301 and the annular groove 401, a limiting function is played to prevent the mounting plate 1 and the rotating plate 2 from separating during use.

[0022] A second locking component is provided at the connection between the rotating base 3 and the rotating sleeve 4. The second locking component is used to fasten the mounting plate 1 and the rotating plate 2, preventing the mounting plate 1 and the rotating plate 2 from rotating during use, thereby improving the stability of the components.

[0023] In detail: The second locking assembly includes a locking disc 1001 that is slidably mounted on the axis of the rotating seat 3. A second elastic support element 1002 is provided between the inner top wall of the locking disc 1001 and the top of the mounting plate 1. It should be noted that the second elastic support element 1002 is a compression spring. The second elastic support element 1002 serves to reset the locking disc 1001, so that the locking disc 1001 can return to its original state after each press. It should also be noted that a locking groove 1003 is provided at the axis of the rotating sleeve 4, and the shape of the locking groove 1003 is the same as the shape of the locking disc 1001 in its top view. If the locking disc 1001 is inserted... When the device reaches the inside of the locking groove 1003, it acts as a lock to prevent the mounting plate 1 and the rotating plate 2 from rotating in opposite directions. More specifically, the locking plate 1001 has several insert parts 1004 integrally formed on its circumferential surface along the circumferential direction, with a certain gap between adjacent insert parts 1004. The inner circumferential wall of the locking groove 1003 has several insertion slots 1005 that are adapted to the insert parts 1004 and are equidistantly opened along the circumferential direction. When the insert part 1004 is inserted into the inside of the insertion slot 1005, the mounting plate 1 and the rotating plate 2 are locked. When the insert part 1004 is removed from the inside of the insertion slot 1005, the mounting plate 1 can rotate on the rotating plate 2.

[0024] The top of the rotating sleeve 4 is fixed with an adjusting rod 5, and a lifting rod 6 is slidably installed inside the adjusting rod 5. It should be noted that the length of the lifting rod 6 is greater than the length of the adjusting rod 5. When the lifting rod 6 drives the pressing member 12 to move downward, the pressing member 12 can press down on the locking plate 1001, so that the locking plate 1001 can be separated from the locking groove 1003. The lower part of the lifting rod 6 is equipped with a first locking component 8, and the side of the lifting rod 6 is provided with a locking hole 9 that is compatible with the first locking component 8. When the first locking component 8 extends into the locking hole 9, the adjusting rod 5 and the lifting rod 6 are locked to prevent the lifting rod 6 from sliding inside the adjusting rod 5. When the first locking component 8 disengages from the locking hole 9, the lifting rod 6 can be adjusted up and down along the vertical direction inside the adjusting rod 5, thereby achieving the function of height adjustment.

[0025] In detail: The first locking assembly 8 includes a groove 801 formed in the lower part of the lifting rod 6, and a locking member 802 is slidably installed inside the groove 801. Several first elastic support elements 803 are fixed between the locking member 802 and the inner end wall of the groove 801. The first elastic support elements 803 are also compression springs. Through the setting of the first elastic support elements 803, the locking member 802 can return to its original state after each press. It should be noted that limit blocks 804 are fixed on both sides of the locking member 802, and a sliding groove 805 is formed along the depth direction on the inner side wall of the groove 801. The limit blocks 804 are slidably installed inside the sliding groove 805. Through the cooperation of the limit blocks 804 and the sliding groove 805, the locking member 802 is limited and prevented from falling out of the groove 801.

[0026] More specifically: The locking component 802 includes a sliding part 8021. When the operator presses the sliding part 8021, the operator's finger pushes the sliding part 8021 inside the locking hole 9. The side of the sliding part 8021 is integrally formed with several locking parts 8022. There is a certain gap between adjacent locking parts 8022. When the locking part 8022 extends to the locking area 902 on the locking hole 9, it plays a locking role and prevents the adjusting rod 5 and the lifting rod 6 from moving in opposite directions.

[0027] More specifically: The locking hole 9 includes an adjustment area 901. With the setting of the adjustment area 901, after the operator presses the sliding part 8021, the sliding part 8021 can be adjusted within the adjustment area 901. Several locking areas 902 are equidistantly provided on the side of the adjustment area 901. If the locking part 8022 extends into the interior of the locking area 902, it is in a locked state.

[0028] The top of the lifting rod 6 passes through the adjusting rod 5 and is equipped with a mounting component 7. After the support beam a is installed on the upper part of the mounting component 7, the multi-angle adjustable steel transition component can be used to rotate or adjust the height of the support beam a, which has strong flexibility. In detail: The installation component 7 includes a fixed mounting plate 701 that is vertically fixed to the top of the lifting rod 6, and an "L"-shaped movable adjustment plate 702 is provided below the fixed mounting plate 701. The cooperation between the fixed mounting plate 701 and the movable adjustment plate 702 serves to fix the support beam a. More specifically: The movable adjustment plate 702 has at least two mounting holes on its side; the lifting rod 6 has an elongated hole 601 that matches the mounting holes, and the fixing bolt 602 passes through the elongated hole 601 and is threadedly connected to the mounting hole, so that the movable adjustment plate 702 can be adjusted up and down, changing the gap between the fixed mounting plate 701 and the movable adjustment plate 702, which can be used for support beams a of different thicknesses and has strong flexibility.

[0029] When using this multi-angle adjustable steel adapter, first install the multi-angle adjustable steel adapter on the steel structure, then adjust the height or rotation of the multi-angle adjustable steel adapter according to the installation position of the support beam a; then install the support beam a on the multi-angle adjustable steel adapter.

[0030] When installing the multi-angle adjustable steel adapter component: First, place the two fixing parts 11 at the bottom of the mounting plate 1 on both sides of the steel structure. Then, use fixing bolts to thread them through the fixing parts 11 and connect them to the steel structure to fix the mounting plate 1 and complete the installation of the multi-angle adjustable steel adapter component. When adjusting the angle of the multi-angle adjustable steel adapter, press down on the lifting rod 6 (at this time, the first locking component 8 is disengaged from the locking hole 9). The lifting rod 6 can slide inside the adjusting rod 5 and press the locking plate 1001 through the pressing member 12, so that the locking plate 1001 can move into the rotating seat 3 and squeeze the second elastic support element 1002, so that the second elastic support element 1002 changes from the original state to the squeezed state. If the insertion part 1004 on the circumferential surface of the locking plate 1001 is inserted from the insertion slot 1005 When the internal parts are disengaged, the lifting rod 6 can be rotated. The lifting rod 6 can drive the rotating disk 2 to rotate on the top of the mounting disk 1 through the adjusting rod 5. If the lifting rod 6 drives the mounting component 7 to adjust to a suitable angle, the lifting rod 6 can be released. The second elastic support element 1002, which is in a compressed state, can return to its original state and push the locking disk 1001, so that the insertion part 1004 on the circumferential surface of the locking disk 1001 can be inserted into the corresponding insertion slot 1005, thereby locking the rotating disk 2 and completing the angle adjustment work. When adjusting the height of the multi-angle adjustable steel adapter: First, press the sliding part 8021 so that the sliding part 8021 can drive the locking part 8022 to move into the groove 801 and apply pressure to the first elastic support element 803, so that the first elastic support element 803 changes from its original state to a compressed state. If the locking part 8022 on one side of the sliding part 8021 disengages from the inside of the locking area 902, the lifting rod 6 can slide up and down inside the adjusting rod 5 to achieve the height adjustment function. Then, release the sliding part 8021, and the first elastic support element 803 in the compressed state returns to its original state and pushes the locking part 802 to move, so that the locking part 8022 on one side of the locking part 802 engages in the corresponding locking area 902, thereby completing the height adjustment.

[0031] When installing support beam a, first loosen the fixing bolt 602 in the elongated hole 601, and adjust the movable adjusting plate 702 up and down according to the thickness of support beam a, so as to change the gap between the movable adjusting plate 702 and the fixed mounting plate 701, which is suitable for support beams a of different thicknesses; after adjustment, fix the movable adjusting plate 702 again, and use bolts to pass through the fixed mounting plate 701 and support beam a in sequence to connect with the movable adjusting plate 702, thereby completing the installation of support beam a.

Claims

1. A multi-angle adjustable steel adapter component, comprising a mounting plate (1) and a rotating plate (2) located above the mounting plate (1), wherein a rotating seat (3) is fixed at the axis of the mounting plate (1), a rotating sleeve (4) mounted on the rotating seat (3) is fixed at the axis of the rotating plate (2), an adjusting rod (5) is fixed at the top of the rotating sleeve (4), a lifting rod (6) is slidably mounted inside the adjusting rod (5), and an installation assembly (7) is provided at the top of the lifting rod (6) passing through the adjusting rod (5), the installation assembly (7) being used to fix a support beam (a); characterized in that: The lower part of the lifting rod (6) is equipped with a first locking component (8), and the side of the lifting rod (6) is provided with a locking hole (9) that is compatible with the first locking component (8). When the first locking component (8) is disengaged from the locking hole (9), the lifting rod (6) can be adjusted up and down inside the adjusting rod (5). The connection between the rotating seat (3) and the rotating sleeve (4) is provided with a second locking component for preventing the rotating sleeve (4) from rotating relative to the rotating seat (3) in a circumferential manner. The bottom end of the lifting rod (6) is provided with a pressing component (12). When the pressing component (12) at the bottom end of the lifting rod (6) moves downward and presses the second locking component, the second locking component unlocks the rotating sleeve (4) from the rotating seat (3). The lifting rod (6) drives the rotating disk (2) to rotate on the mounting disk (1) and adjust the angle through the adjusting rod (5).

2. The multi-angle adjustable steel transition component according to claim 1, characterized in that: The mounting assembly (7) includes a fixed mounting plate (701) that is vertically fixed to the top of the lifting rod (6), and a movable adjusting plate (702) that is movably mounted on the side of the lifting rod (6) is provided below the fixed mounting plate (701), and a gap of mounting support beam (a) is left between the fixed mounting plate (701) and the movable adjusting plate (702).

3. The multi-angle adjustable steel transition component according to claim 2, characterized in that: The movable adjustment plate (702) has at least two mounting holes on its side; the lifting rod (6) has an elongated hole (601) that matches the mounting holes, and the elongated hole (601) is provided with a fixing bolt (602) that is threadedly connected to the mounting hole.

4. The multi-angle adjustable steel transition component according to claim 1, characterized in that: The outer surface of the rotating seat (3) is fixed with an annular protrusion (301); the inner sidewall of the rotating sleeve (4) is provided with an annular groove (401), and the annular protrusion (301) is installed inside the annular groove (401).

5. The multi-angle adjustable steel transition component according to claim 1, characterized in that: The second locking assembly includes a locking disc (1001) that is slidably mounted on the center of the rotating seat (3). A second elastic support element (1002) is installed between the inner top wall of the locking disc (1001) and the rotating seat (3). A locking groove (1003) that works with the locking disc (1001) is provided at the axis of the rotating sleeve (4). When the locking disc (1001) extends into the locking groove (1003), the mounting disc (1) and the rotating disc (2) lock each other.

6. A multi-angle adjustable steel transition component according to claim 5, characterized in that: The locking disc (1001) has a plurality of insert parts (1004) integrally formed on its circumferential surface along the circumferential direction, and a certain gap is left between adjacent insert parts (1004); the locking groove (1003) has a plurality of insert grooves (1005) that are adapted to the insert parts (1004) at equal intervals along the circumferential direction.

7. The multi-angle adjustable steel transition component according to claim 1, characterized in that: The bottom of the mounting plate (1) is symmetrically fixed with fasteners (11) about the axis, and a gap for installing steel structure is provided between the two fasteners (11).

8. The multi-angle adjustable steel transition component according to claim 1, characterized in that: The first locking assembly (8) includes a groove (801) formed at the bottom end of the lifting rod (6) and a locking member (802) slidably installed in the groove (801). A first elastic support element (803) is fixed between the locking member (802) and the inner end wall of the groove (801). Limiting blocks (804) are fixed on both sides of the locking member (802). A sliding groove (805) is formed along the depth direction on the inner side wall of the groove (801), and the limiting block (804) is slidably installed inside the sliding groove (805).

9. A multi-angle adjustable steel transition component according to claim 8, characterized in that: The locking member (802) includes a sliding part (8021), and a plurality of locking parts (8022) are integrally formed on the side of the sliding part (8021), with a certain gap between adjacent locking parts (8022).

10. A multi-angle adjustable steel transition component according to claim 8, characterized in that: The locking hole (9) is divided into an adjustment area (901). Several locking areas (902) are equidistantly arranged on one side of the adjustment area (901), and a certain gap is left between adjacent locking areas (902).