Baffle mounting tool

CN119426965BActive Publication Date: 2026-09-22WUCHUAN HEAVY ENG
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Patent Information

Application Number
CN202411682835.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2026-09-22
Estimated Expiration
2044-11-22

AI Technical Summary

Technical Problem

但由于折弯板的异形结构,隔板与折弯板之间存在特定角度,这使得在焊接过程中很难对隔板的角度进行准确定位,而一旦隔板的角度出现偏差,则会导致另一部分的折弯面无法正常安装,严重影响立柱的生产质量和生产效率

Benefits of technology

[0037]相比现有技术,本公开至少包括以下有益效果:本公开实施例提供的隔板安装工装包括有承载组件、定位组件和支撑组件,其中,承载组件用于承载定位组件和支撑组件,支撑组件用于放置待组装立柱的部分折弯板,支撑组件通过对该部分折弯板进行限位配合,可使待组装立柱保持长度方向与承载组件的延伸方向保持一致的状态,定位组件上形成多个定位壁,定位壁与支撑组件对应布置,多个定位壁同样沿着承载组件的延伸方向间隔布置,定位壁之间的间隔对应于待安装隔板之间的安装间隔,从而支撑组件实现了对部分折弯板的限位,定位壁实现了对隔板安装位置的定位,二者相互配合,便能够快速确定待安装隔板在部分折弯板上的安装位置和安装角度。

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Abstract

The present disclosure provides a partition plate mounting tool, comprising: a bearing assembly; a positioning assembly arranged on the bearing assembly, the positioning assembly being formed with a plurality of positioning walls arranged at intervals along the extension direction of the bearing assembly, the positioning walls being used to abut the partition plates to be mounted, and the intervals between the positioning walls corresponding to the mounting intervals between the partition plates to be mounted; and a supporting assembly arranged on the bearing assembly, the supporting assembly being arranged corresponding to the positioning walls, the supporting assembly being used to place part of the bent plates of the stand to be assembled, the part of the bent plates being formed with grooves, a plurality of the partition plates to be mounted being used to be mounted at intervals in the grooves along the length direction of the stand to be assembled, and the supporting assembly being limitedly matched with the bent plates to make the length direction of the stand to be assembled consistent with the extension direction of the bearing assembly. Based on the foregoing arrangement, the partition plate mounting tool can quickly determine the mounting position of the partition plates to be mounted on the part of the bent plates and the mounting angle of the partition plates to be mounted, which is beneficial to the mounting quality and efficiency of the partition plates to be mounted.
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Description

Technical Field

[0001] This disclosure relates to the field of bridge steel structure manufacturing technology, and in particular to a diaphragm installation tool. Background Technology

[0002] One type of guardrail post features a diamond-shaped irregular structure. This post consists of bent plates and multiple partitions. The bent plates form the perimeter of the post, and the partitions are spaced along the length of the post within the bent plates to enhance structural strength. During assembly, the partitions are typically welded to a portion of the bent plates first, then the remaining bent plates are interlocked with the welded portion, and finally, the entire assembly is welded. However, due to the irregular shape of the bent plates, there is a specific angle between the partitions and the bent plates. This makes it difficult to accurately position the angle of the partitions during welding. If the angle of the partitions deviates, the other portion of the bent surface cannot be properly installed, severely impacting the post's production quality and efficiency. Summary of the Invention

[0003] This disclosure aims to address at least one of the technical problems existing in the prior art or related technologies.

[0004] Therefore, this disclosure provides a partition installation tool.

[0005] In view of this, a partition mounting fixture is proposed according to an embodiment of the present disclosure, comprising:

[0006] Carrier component;

[0007] A positioning component is disposed on the support component. The positioning component has multiple positioning walls arranged at intervals along the extension direction of the support component. The positioning walls are used to abut against the partition to be installed, and the interval between the positioning walls corresponds to the installation interval between the partitions to be installed.

[0008] A support component is provided on the load-bearing component and is arranged corresponding to the positioning wall. The support component is used to place part of the bent plate of the column to be assembled. Part of the bent plate has a groove. Along the length direction of the column to be assembled, multiple partitions to be installed are used to be installed at intervals in the groove. The support component and the bent plate are matched to limit each other so that the length direction of the column to be assembled is consistent with the extension direction of the load-bearing component.

[0009] In one feasible implementation, the support component includes:

[0010] A support portion is provided on the load-bearing component, and the support portion has a slot for engaging a portion of the bent plate.

[0011] The limiting part is provided on the load-bearing component and is arranged corresponding to the support part. The limiting part is used to abut one end of the bending plate in the length direction of the column to be assembled.

[0012] In one feasible implementation, the support portion includes:

[0013] Multiple support plates are disposed on the load-bearing component, and the multiple support plates are arranged at intervals along the extension direction of the load-bearing component, and slots are formed on the multiple support plates.

[0014] In one feasible implementation, the positioning component includes:

[0015] The positioning section has multiple positioning walls formed therein;

[0016] A pivot section is provided on the bearing assembly and located on one side of the support assembly. The pivot section has a pivot shaft, the axis of which is the same as the extension direction of the bearing assembly. A positioning section is provided on the pivot shaft, which is used to rotate relative to the bearing assembly so that the positioning wall moves closer to or further away from the support assembly.

[0017] A braking unit, located on the rotating shaft, is used to limit the rotation angle of the rotating shaft so that there is a gap between the positioning unit and the support assembly.

[0018] In one feasible implementation, the positioning part includes:

[0019] Multiple positioning plates are provided, and a rotating shaft passes through the multiple positioning plates. The multiple positioning plates are arranged at intervals along the axial direction of the rotating shaft, and a positioning wall is formed on the plate surface of the positioning plate away from the rotating shaft.

[0020] In one feasible implementation, the positioning unit further includes:

[0021] The reinforcing member has multiple positioning plates connected to one side.

[0022] The support column, located on the side of the pivot opposite to the support assembly, is used to place the positioning plate.

[0023] The support column is used to abut against the side of the reinforcing member opposite to the positioning plate.

[0024] In one feasible implementation, multiple positioning plates are welded to the reinforcing member; and / or

[0025] Multiple positioning plates are welded to the rotating shaft.

[0026] In one feasible implementation, the rotating shaft further includes:

[0027] Supports, with at least two supports spaced apart from each other along the extension direction of the load-bearing component;

[0028] Each bracket is provided with a sleeve at the end opposite to the load-bearing component, and the rotating shaft passes through the sleeve.

[0029] The sleeve is positioned at a higher height than the support component.

[0030] In one feasible implementation, the braking unit includes:

[0031] The first braking element is located on the rotating shaft;

[0032] The second braking element is mounted on the bracket;

[0033] The first braking element has a first working state and a second working state. In the first working state, the first braking element abuts against the second braking element, and the second braking element restricts the positioning wall from rotating towards the support assembly. In the second working state, the first braking element and the second braking element are arranged circumferentially along the axis of rotation, and the positioning wall can rotate towards the support assembly.

[0034] In one feasible implementation, the carrier component includes:

[0035] The bearing plate, positioning components, and support components are all located on one side of the bearing plate;

[0036] The jig is detachably mounted on the other side of the support plate.

[0037] Compared with the prior art, this disclosure has at least the following beneficial effects: The partition installation fixture provided in the embodiments of this disclosure includes a bearing component, a positioning component, and a support component. The bearing component is used to support the positioning component and the support component. The support component is used to place a portion of the bent plate of the column to be assembled. By limiting the bending plate, the support component can keep the column to be assembled in a state where its length direction is consistent with the extension direction of the bearing component. Multiple positioning walls are formed on the positioning component. The positioning walls are arranged correspondingly to the support component. The multiple positioning walls are also arranged at intervals along the extension direction of the bearing component. The interval between the positioning walls corresponds to the installation interval between the partitions to be installed. Thus, the support component realizes the limiting of the bending plate, and the positioning walls realize the positioning of the partition installation position. The two cooperate with each other to quickly determine the installation position and installation angle of the partition on the bending plate.

[0038] The partition mounting fixture described in this disclosure, other advantages, objectives and features of this disclosure will be apparent in part from the following description, and in part will be understood by those skilled in the art through study and practice of this disclosure. Attached Figure Description

[0039] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of exemplary embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this disclosure. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:

[0040] Figure 1 This is a schematic structural diagram of a partition mounting fixture according to an embodiment of the present disclosure;

[0041] Figure 2 This is a schematic application scenario diagram of a partition mounting fixture according to an embodiment of the present disclosure;

[0042] Figure 3 This is a schematic structural diagram showing another working state of the partition mounting fixture according to one embodiment of the present disclosure;

[0043] Figure 4 for Figure 3 A schematic cross-sectional view of area A in the partition installation fixture shown;

[0044] Figure 5 A schematic structural diagram of a support plate according to an embodiment of this disclosure;

[0045] Figure 6 A schematic structural diagram of a support plate according to another embodiment of this disclosure.

[0046] in, Figures 1 to 6 The correspondence between the reference numerals and component names in the attached drawings is as follows:

[0047] 800 Partition to be installed; 900 Partially bent plate;

[0048] 100 load-bearing components, 200 positioning components, 300 support components;

[0049] 310 Support section, 320 Limiting section;

[0050] 311 Support plate, 312 Connecting plate;

[0051] 210 Positioning part, 220 Rotating shaft part, 230 Braking part;

[0052] 211 Positioning plate, 212 Reinforcing component, 213 Support column;

[0053] 221 Shaft, 222 Bracket, 223 Sleeve;

[0054] 231 First braking component, 232 Second braking component;

[0055] 110 bearing plate, 120 jig. Detailed Implementation

[0056] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.

[0057] like Figures 1 to 6 As shown, according to an embodiment of this disclosure, a partition installation fixture is proposed, comprising: a bearing component 100; a positioning component 200 disposed on the bearing component 100, the positioning component 200 having a plurality of positioning walls arranged at intervals along the extension direction of the bearing component 100, the positioning walls being used to abut against the partitions 800 to be installed, and the interval between the positioning walls corresponding to the installation interval between the partitions 800 to be installed; and a support component 300 disposed on the bearing component 100, the support component 300 being arranged corresponding to the positioning walls, the support component 300 being used to place a portion of the bent plate 900 of the column to be assembled, the portion of the bent plate 900 having a groove, and the plurality of partitions 800 to be installed being spaced out and installed in the groove along the length direction of the column to be assembled, the support component 300 being in a limiting fit with the bent plate so that the length direction of the column to be assembled is consistent with the extension direction of the bearing component 100.

[0058] According to the embodiments of this disclosure, the partition installation fixture includes a bearing component 100, a positioning component 200, and a support component 300. The bearing component 100 supports the positioning component 200 and the support component 300. The support component 300 places a portion of the bent plate 900 of the column to be assembled. By limiting the bending plate 900, the support component 300 ensures that the column to be assembled maintains a state where its length direction is consistent with the extension direction of the bearing component 100. Multiple positioning walls are formed on the positioning component 200, and the positioning walls are arranged correspondingly to the support component 300. The multiple positioning walls are also spaced along the extension direction of the bearing component 100, and the interval between the positioning walls corresponds to the installation interval between the partitions 800 to be installed. Thus, the support component 300 achieves the limitation of the bending plate 900, and the positioning walls achieve the positioning of the partition installation position. The two cooperate with each other to quickly determine the installation position and installation angle of the partition 800 on the bending plate 900.

[0059] In practical applications, a portion of the bent plate 900 is first placed on the support assembly 300. The portion of the bent plate 900 forms a groove for installing the partition. The positioning wall positions the partition 800 to be installed in the groove. The partition 800 is then installed by abutting against the positioning wall, thus determining the installation position of the partition 800. By keeping the partition 800 in contact with the positioning wall, the installation angle between the partition 800 and the portion of the bent plate 900 can be determined. This allows for the rapid determination of the installation position and angle of the partition 800 on the portion of the bent plate 900, which is beneficial for both high-quality installation of the partition 800 and improving installation efficiency.

[0060] In some examples, such as Figures 1 to 6 As shown, the support assembly 300 includes: a support portion 310 disposed on the bearing assembly 100, the support portion 310 having a slot for engaging a portion of the bent plate 900; and a limiting portion 320 disposed on the bearing assembly 100, corresponding to the support portion 310, the limiting portion 320 abutting against one end of the portion of the bent plate 900 in the length direction of the column to be assembled.

[0061] In the above technical solution, the support part 310 is engaged with the partial bending plate 900 through the slot, which can both support the partial bending plate 900 and limit its movement to prevent it from sliding, thus facilitating the installation of the subsequent partition 800. When the partial bending plate 900 is arranged in the slot, the limiting part 320 abuts against one end of the partial bending plate 900 in the length direction, which can prevent the partial bending plate 900 from moving along the length direction and also facilitate the quick positioning of the partial bending plate 900 in the slot.

[0062] It is understandable that the groove of part of the bent plate 900 is in the same direction as the slot of the support part 310.

[0063] Understandably, along the extension direction of the slot, both ends of part of the bent plate 900 protrude from the slot, and the fiber cloth is placed at one end. This arrangement facilitates the installation or removal of part of the bent plate 900 on the slot.

[0064] For example, the limiting part 320 may be a baffle.

[0065] In some examples, such as Figures 1 to 3 , Figure 5 and Figure 6 As shown, the support portion 310 includes: a plurality of support plates 311 disposed on the bearing assembly 100, the plurality of support plates 311 being arranged at intervals along the extension direction of the bearing assembly 100, and slots being formed on the plurality of support plates 311.

[0066] In the above technical solution, the support part 310 includes a plurality of support plates 311 disposed on the bearing component 100. Along the extension direction of the bearing component 100, the plurality of support plates 311 are arranged at intervals. Each support plate 311 forms a small slot, and the plurality of small slots form the aforementioned slot. Each small slot is used to engage a portion of the bent plate 900, thereby supporting the portion of the bent plate 900 from multiple points along the length direction of the column. This ensures that sufficient support force is provided for the portion of the bent plate 900, and also facilitates the installation or removal of the portion of the bent plate 900 through the gap between adjacent support plates 311. At the same time, the use of a split plate structure makes it easier to process the small slots, and it is also convenient to replace the support plates 311 according to usage requirements during subsequent use.

[0067] It is understandable that the shape of the small slot on the support plate 311 is adapted to the shape of some of the bending plates 900, and the shape of the small slot can be different for support plates 311 at different positions.

[0068] It is understood that the support part 310 may also include a connecting plate 312, and the multiple support parts 310 are connected to one side of the connecting plate 312. The other side of the connecting plate 312 is connected to the bearing component 100, which helps to improve the strength between the support plates 311 and also helps to ensure the relative position between the support plates 311.

[0069] In some examples, such as Figures 1 to 3 As shown, the positioning assembly 200 includes: a positioning part 210, on which a plurality of positioning walls are formed; a rotating shaft 221 part 220, disposed on the bearing assembly 100 and located on one side of the support assembly 300, the rotating shaft 221 part 220 having a rotating shaft 221, the axial direction of the rotating shaft 221 being the same as the extending direction of the bearing assembly 100, the positioning part 210 being disposed on the rotating shaft 221, the rotating shaft 221 being used to rotate relative to the bearing assembly 100 so that the positioning walls are close to or away from the support assembly 300; and a braking part 230, disposed on the rotating shaft 221 part 220, for limiting the rotation angle of the rotating shaft 221 so that there is a gap between the positioning part 210 and the support assembly 300.

[0070] In the above technical solution, the positioning component 200 includes a positioning part 210, a rotating shaft 221 part 220, and a braking part 230. The rotating shaft 221 part 220 is disposed on the bearing component 100 and located on one side of the support component 300. The positioning part 210 is disposed on the rotating shaft 221 of the rotating shaft 221 part 220. The extending direction of the rotating shaft 221 is the same as the extending direction of the bearing component 100. Multiple positioning walls are formed on the positioning cloth, so that the positioning part 210 can rotate with the rotating shaft 221, so that the positioning wall moves closer to or away from the support component 300. The braking part 230 is disposed on the rotating shaft 221 part 220 and can limit the rotation angle of the rotating shaft 221, thereby ensuring that the positioning part 210 can maintain a distance from the support component 300 during rotation, thereby preventing the positioning part 210 from hitting the bending plate 900.

[0071] Understandably, under the constraint of the braking unit 230, when the positioning wall rotates toward the support assembly 300, there is a braking position. In the braking position, the positioning wall can no longer continue to rotate toward the support assembly 300. At this time, the positioning wall is in a position that facilitates the installation of the partition 800 to be installed.

[0072] In some examples, such as Figures 1 to 3 The positioning part 210 shown includes: a plurality of positioning plates 211, a rotating shaft 221 passing through the plurality of positioning plates 211, the plurality of positioning plates 211 being arranged at intervals along the axial direction of the rotating shaft 221, and a positioning wall being formed on the plate surface of the positioning plate 211 away from the rotating shaft 221.

[0073] In the above technical solution, the positioning part 210 includes multiple positioning plates 211, all of which are sleeved on the rotating shaft 221. The positioning wall is located on the side of the positioning plate 211 away from the rotating shaft 221, so that there is a certain rotation radius between the positioning wall and the rotating shaft 221, so that when the positioning wall is away from the partition 800 to be installed, space can be left for the installation or disassembly of part of the bent plate 900.

[0074] In some examples, such as Figures 1 to 3 The positioning part 210 shown also includes: a reinforcing member 212, with multiple positioning plates 211 connected to one side of the reinforcing member 212; a support column 213 located on the side of the rotating shaft 221 part 220 away from the support assembly 300, the support column 213 being used to place the positioning plates 211; wherein, the support column 213 is used to abut against the side of the reinforcing member 212 away from the positioning plates 211.

[0075] In the above technical solution, the positioning part 210 also includes a reinforcing member 212 and a column. The reinforcing member 212 can connect multiple positioning plates 211 together, so that multiple positioning plates 211, reinforcing member 212 and rotating shaft 221 can form a frame structure, which is beneficial to improve the structural strength of the positioning plates 211, reduce the probability of deformation of the positioning plates 211, and further ensure that the spacing between the positioning walls meets the installation requirements of the partition. When positioning walls are not required for positioning, the positioning walls can be rotated away from the support assembly 300 until the reinforcing member 212 abuts against the column 213. The column 213 can provide support for the positioning plates 211, so that the positioning plates 211 can be stably placed on the column 213, thereby leaving operating space for the support assembly 300, which is beneficial for the staff to operate the support assembly 300.

[0076] Understandably, by having the reinforcing member 212 abut against the support column 213, the positioning plate 211 can be protected, reducing the risk of deformation of the positioning plate 211 due to impact from the support column 213.

[0077] For example, the reinforcing member 212 may be made of angle steel, and the support column 213 may be made of channel steel.

[0078] In some examples, multiple positioning plates 211 are welded to the reinforcement 212; and / or multiple positioning plates 211 are welded to the rotating shaft 221.

[0079] In the above technical solution, the multiple positioning plates 211 and the reinforcing members 212 are connected by welding, which helps to improve the structural strength between the positioning plates 211 and the reinforcing members 212.

[0080] In the above technical solution, the multiple positioning plates 211 and the rotating shaft 221 are connected by welding, which is beneficial to improving the structural strength between the positioning plates 211 and the rotating shaft 221.

[0081] In the above technical solution, multiple positioning plates 211 can be welded to the reinforcing member 212, and multiple positioning plates 211 can be welded to the rotating shaft 221. The positioning plates 211, rotating shaft 221 and reinforcing member 212 can be welded into a continuous integral structure, which makes the stiffness distribution of the structure more uniform, which is conducive to improving the stability and reliability of the structure, and further ensures the relative position between the positioning walls and the correspondence between the positioning walls and the support component 300.

[0082] In some examples, such as Figures 1 to 3The rotating shaft 221 part 220 shown also includes: a bracket 222, at least two brackets 222 are spaced apart on the bearing component 100 along the extension direction of the bearing component 100; a sleeve 223, each bracket 222 is provided with a sleeve 223 at one end away from the bearing component 100, and the rotating shaft 221 passes through the sleeve 223; wherein, the position height of the sleeve 223 is higher than the position height of the support component 300.

[0083] In the above technical solution, the rotating shaft 221 part 220 includes a bracket 222 and a sleeve 223. The bracket 222 can provide support capacity, and the sleeve 223 can limit the axis of the rotating shaft 221. The conduction direction of the sleeve 223 is the same as the extension direction of the bearing component 100, which is conducive to keeping the axial direction of the rotating shaft 221 consistent with the extension direction of the bearing component 100. The position height of the sleeve 223 is higher than the position height of the support component 300, which allows the positioning wall of the positioning plate 211 to rotate from the upper direction of the support component 300 towards the support component 300 during rotation. That is, the positioning wall can extend into the groove of part of the bent plate 900, so that part of the positioning wall can be located inside the groove, making it easier to position the partition 800 to be installed.

[0084] In some examples, such as Figure 4 As shown, the braking unit 230 includes: a first braking member 231 disposed on the rotating shaft 221; and a second braking member 232 disposed on the bracket 222. The first braking member 231 has a first working state and a second working state. In the first working state, the first braking member 231 abuts against the second braking member 232, and the second braking member 232 restricts the positioning wall from rotating towards the support assembly 300. In the second working state, the first braking member 231 and the second braking member 232 are arranged circumferentially on the rotating shaft 221, and the positioning wall can rotate towards the support assembly 300.

[0085] In the above technical solution, the braking unit 230 includes a first braking element 231 and a second braking element 232. The first braking element 231 is disposed on the rotating shaft 221, and the second braking element 232 is disposed on the bracket 222. During the rotation of the rotating shaft 221, the first braking element 231 has a first working state and a second working state. In the first working state, the positioning wall is located in a position that facilitates the installation of the partition 800 to be installed. At this time, the first braking element 231 abuts against the second braking element 232, so that the positioning wall can no longer move towards the support component 300, thereby ensuring that the positioning plate 211 can stay in this position, while maintaining a distance from the support component 300. After the partition 800 to be installed is installed, the positioning wall can be rotated away from the support component 300. At this time, the first braking element 231 is in the second working state. In the second working state, there is a distance between the first braking element 231 and the second braking element 232, so that the positioning wall can have a range of motion to rotate towards the support component 300.

[0086] In some examples, such as Figures 1 to 3 As shown, the support assembly 100 includes: a support plate 110, a positioning assembly 200 and a support assembly 300, all disposed on one side of the support plate 110; and a jig 120, which is detachably disposed on the other side of the support plate 110.

[0087] In the above technical solution, the supporting component 100 includes a supporting plate 110 and a jig 120. The supporting plate 110 provides placement space for the positioning component 200 and the support component 300 to ensure that the positioning component 200 and the support component 300 can be stably set, which is beneficial to ensuring the relative position of the positioning component 200 and the support component 300. The jig 120 provides supporting force to ensure that the supporting plate 110, the positioning component 200 and the support component 300 can be stably supported. The supporting plate 110 and the jig 120 are detachably connected, which can improve the flexibility between the supporting plate 110 and the jig 120. In this disclosure, the terms "first", "second", and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance; the term "multiple" refers to two or more unless otherwise expressly defined. The terms "installation", "connection", "linking", "fixing", etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this disclosure according to the specific circumstances.

[0088] In the description of this disclosure, it should be understood that the terms "upper," "lower," "left," "right," "front," "rear," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this disclosure and simplifying the description, and do not indicate or imply that the device or unit referred to must have a specific orientation or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this disclosure.

[0089] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this disclosure. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0090] The above are merely preferred embodiments of this disclosure and are not intended to limit this disclosure. Various modifications and variations can be made to this disclosure by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this disclosure should be included within the protection scope of this disclosure.

Claims

1. A partition installation fixture, characterized in that, include: Carrier component; A positioning component is disposed on the bearing component. The positioning component has a plurality of positioning walls arranged at intervals along the extension direction of the bearing component. The positioning walls are used to abut against the partition to be installed, and the interval between the positioning walls corresponds to the installation interval between the partitions to be installed. A support component is disposed on the load-bearing component. The support component is arranged corresponding to the positioning wall. The support component is used to place a portion of the bent plate of the column to be assembled. The portion of the bent plate has a groove. Along the length direction of the column to be assembled, a plurality of partitions to be installed are spaced apart in the groove. The support component and the bent plate are mutually limiting and cooperating so that the length direction of the column to be assembled is consistent with the extension direction of the load-bearing component. The positioning components include: The positioning part has multiple positioning walls formed thereon; A pivot portion is disposed on the bearing component and located on one side of the support component. The pivot portion has a pivot shaft, and the positioning portion is disposed on the pivot shaft. The pivot shaft is used to rotate relative to the bearing component so that the positioning wall moves closer to or further away from the support component. A braking part is provided on the rotating shaft part to limit the rotation angle of the rotating shaft so that there is a gap between the positioning part and the support assembly; The positioning unit includes: Multiple positioning plates, with the rotating shaft passing through the multiple positioning plates; A reinforcing member, wherein the plurality of positioning plates are all connected to one side of the reinforcing member; A support column is located on the side of the pivot portion opposite to the support assembly, and the support column is used to abut against the side of the reinforcing member opposite to the positioning plate; The rotating shaft includes: The brackets, along the extension direction of the load-bearing component, include at least two brackets spaced apart from the load-bearing component; Each of the brackets is provided with a sleeve at the end opposite to the bearing component, and the rotating shaft passes through the sleeve. The braking unit includes: A first braking element is disposed on the rotating shaft; A second braking element is disposed on the bracket; The first braking member has a first working state and a second working state. In the first working state, the first braking member abuts against the second braking member, and the second braking member restricts the positioning wall from rotating towards the support assembly. In the second working state, the first braking member and the second braking member are arranged circumferentially along the axis of rotation, and the positioning wall can rotate towards the support assembly.

2. The partition installation fixture according to claim 1, characterized in that, The support components include: A support portion is disposed on the load-bearing component, and the support portion is formed with a slot for engaging the portion of the bent plate; A limiting part is provided on the bearing component and arranged corresponding to the support part. The limiting part is used to abut against one end of the partial bending plate in the length direction of the column to be assembled.

3. The partition installation fixture according to claim 2, characterized in that, The support portion includes: Multiple support plates are disposed on the bearing assembly, and the multiple support plates are arranged at intervals along the extension direction of the bearing assembly, and the slot is formed on the multiple support plates.

4. The partition installation fixture according to claim 1, characterized in that, The axial direction of the rotating shaft is the same as the extension direction of the bearing component.

5. The partition installation fixture according to claim 4, characterized in that, The plurality of positioning plates are arranged at intervals along the axial direction of the rotating shaft, and the positioning wall is formed on the plate surface of the positioning plate on the side away from the rotating shaft.

6. The partition installation fixture according to claim 1, characterized in that, The plurality of positioning plates are welded to the reinforcing member; and / or The plurality of positioning plates are welded to the rotating shaft.

7. The partition installation fixture according to claim 1, characterized in that, The sleeve is positioned at a higher height than the support assembly.

8. The partition installation fixture according to any one of claims 1 to 7, characterized in that, The carrier component includes: The support plate, the positioning component and the support component are both disposed on one side of the support plate; A tire frame, which is detachably mounted on the other side of the support plate.

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