A hanging plate for cooling wall installation
Patent Information
- Application Number
- CN202522261027.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-27
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-10-27
AI Technical Summary
[0005]本实用新型提供一种冷却壁安装用吊盘,解决了现有吊盘平台扩展灵活性较差,无法做到调节即定位的问题
本实用新型提供一种冷却壁安装用吊盘,吊盘在使用过程中,为了提高吊盘的使用便捷,通过装置两端设置的自适应支撑组件,可根据加工位置进行组件的滑动扩展,让平台能根据冷却壁安装位置灵活调整覆盖范围,工作人员无需在狭窄固定区域内频繁移动,减少肢体伸展幅度与高空移位风险,此外,当自适应支撑组件进行滑动扩展时,通过底部设置的弹性定位组件与动态稳固组件的配合使用,可自动随着自适应支撑组件的滑动进行及时夹持定位,避免因高炉内气流扰动或轻微震动导致平台偏移,并达到滑动即定位的使用效果。
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Figure CN224662407U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of processing hanging plate equipment, and in particular to a hanging plate for installing cooling walls. Background Technology
[0002] In blast furnace construction and overhaul projects, cooling walls, as the core heat dissipation components of the blast furnace body, need to be installed in a ring along the inner wall of the blast furnace. The installation process must be completed inside the hollow furnace shell, which typically has an inner diameter of 6-12 meters. The installation height extends from the ground to tens of meters, making it a typical high-altitude confined space operation.
[0003] Most existing hanging platforms are integral circular platforms with a fixed diameter, or the diameter can be adjusted by manually removing bolts and adjusting the length of the support beam. After the support components of the hanging platform are adjusted, the positioning can be achieved by manually tightening the fastening bolts. The positioning process is completely separated from the sliding process of the support components.
[0004] Therefore, it is necessary to provide a mounting plate for cooling walls to solve the above-mentioned technical problems. Summary of the Invention
[0005] This utility model provides a mounting plate for cooling walls, which solves the problem that existing mounting plate platforms have poor expansion flexibility and cannot be adjusted or positioned.
[0006] To solve the above-mentioned technical problems, the present invention provides a cooling wall mounting plate comprising: a support assembly, wherein lifting assemblies are symmetrically installed on the inner walls at both ends of the support assembly, the lifting assemblies being used for lifting the support assembly; adaptive support assemblies are slidably connected to the inner walls at both ends of the support assembly, the adaptive support assemblies being used for sliding extension of the support assembly; elastic positioning assemblies are installed at the bottom of both ends of the adaptive support assembly; and dynamic stabilizing assemblies are symmetrically installed on the inner walls at both ends of the support assembly. The elastic positioning assemblies, in conjunction with the dynamic stabilizing assemblies, can be used for structural positioning of the adaptive support assembly.
[0007] Preferably, the support assembly includes a base plate, with fixed handrails installed on the inner walls at both ends of the base plate, and groove structures formed on the inner walls at both ends of the base plate, the groove structures being used to adapt to the structural sliding of the support assembly.
[0008] Preferably, the lifting assembly includes a fixed structure and a lifting ring. The fixed structure is symmetrically installed on the inner walls at both ends of the support assembly. The fixed structure is used for structural support of the lifting ring, and the lifting ring is installed on the top inner wall of the fixed structure.
[0009] Preferably, the adaptive support component includes a limiting guide rail, a support structure that slides on the inner wall of the limiting guide rail, the support structure being used to support the sliding expansion of the component, limiting rods being installed at both ends of the support structure, and a movable structure being installed at the top of the support structure, the movable structure being used for convenient sliding of the support structure.
[0010] Preferably, the elastic positioning component includes a limiting frame, the inner wall of which is slidably provided with a positioning structure, the positioning structure being used for adaptive structural positioning of the support component, a damping telescopic member being installed on the top of the positioning structure, an elastic support member being sleeved on the inner wall of the damping telescopic member, the elastic support member being used for elastic support of the positioning structure, and a limiting ring structure being fixed at the bottom of the positioning structure.
[0011] Preferably, the dynamic stabilizing component includes a fixed plate, an mounting plate is installed on the inner wall of the fixed plate, a guide rod slides on the inner wall of the mounting plate, guide structures are installed on the inner walls of both ends of the fixed plate, a clamping structure slides on the inner wall of the guide structure, the clamping structure is used for structural positioning of the elastic positioning component, a reset block is installed on the side end of the guide rod, and a rotating structure is rotatably connected to the inner wall of the reset block and the clamping structure.
[0012] Compared with related technologies, the cooling wall mounting plate provided by this utility model has the following advantages: This utility model provides a hanging platform for installing a cooling wall. To improve the ease of use of the hanging platform, adaptive support components are provided at both ends of the device. These components can slide and expand according to the processing position, allowing the platform to flexibly adjust its coverage area according to the installation position of the cooling wall. This eliminates the need for workers to move frequently in narrow, fixed areas, reducing the range of limb extension and the risk of displacement at height. Furthermore, when the adaptive support components slide and expand, the elastic positioning component and the dynamic stabilizing component at the bottom work together to automatically clamp and position the platform as it slides, preventing platform displacement caused by airflow disturbances or slight vibrations within the blast furnace, and achieving the effect of sliding and positioning simultaneously. Attached Figure Description
[0013] Figure 1 A schematic diagram of a preferred embodiment of a cooling wall mounting plate provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the lifting assembly. Figure 3 for Figure 1 The diagram shows the structure of the groove. Figure 4 for Figure 1 The diagram shows the structural schematic of the supporting structure. Figure 5for Figure 1 The diagram shows the structure of the clamping structure.
[0014] The diagram is labeled as follows: 1. Support component, 11. Base plate of the hanging platform, 12. Fixed handrail, 13. Groove structure, 2. Lifting component, 21. Fixed structure, 22. Lifting ring, 3. Adaptive support component, 31. Limiting guide rail, 32. Supporting structure, 33. Limiting rod, 34. Moving structure, 4. Elastic positioning component, 41. Limiting frame, 42. Positioning structure, 43. Elastic support component, 44. Damping telescopic component, 45. Limiting ring structure, 5. Dynamic stabilizing component, 51. Fixed plate, 52. Mounting plate, 53. Guide rod, 54. Guide structure, 55. Clamping structure, 56. Reset block, 57. Rotating structure. Detailed Implementation
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0016] Please refer to the following: Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 ,in, Figure 1 A schematic diagram of a preferred embodiment of a cooling wall mounting plate provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the lifting assembly. Figure 3 for Figure 1 The diagram shows the structure of the groove. Figure 4 for Figure 1 The diagram shows the structural schematic of the supporting structure. Figure 5 for Figure 1 The diagram shows a schematic of the clamping structure. A mounting plate for a cooling wall includes: a support assembly 1, lifting assemblies 2 symmetrically mounted on the inner walls at both ends of the support assembly 1, the lifting assemblies 2 being used for lifting the support assembly 1; adaptive support assemblies 3 slidably connected to the inner walls at both ends of the support assembly 1, the adaptive support assemblies 3 being used for supporting the sliding extension of the support assembly 1; elastic positioning assemblies 4 mounted on the bottom of both ends of the adaptive support assemblies 3; and dynamic stabilizing assemblies 5 symmetrically mounted on the inner walls at both ends of the support assembly 1. The elastic positioning assemblies 4, in conjunction with the dynamic stabilizing assemblies 5, can be used for the structural positioning of the adaptive support assemblies 3.
[0017] The support assembly 1 includes a hanging plate base plate 11, and fixed handrails 12 are installed on the inner walls at both ends of the hanging plate base plate 11. The inner walls at both ends of the hanging plate base plate 11 are provided with groove structures 13, which are used to adapt to the structural sliding of the support assembly 3.
[0018] When the suspended platform is being used for lifting and lowering, the fixed handrails 12 on the inner walls at both ends can improve the ease of use of the suspended platform and reduce the risk of falling.
[0019] Among them, the support component 1 includes, but is not limited to, a foldable support structure and a telescopic support structure; in this embodiment, the support component 1 is preferably a telescopic support structure.
[0020] The lifting assembly 2 includes a fixed structure 21 and a lifting ring 22. The fixed structure 21 is symmetrically installed on the inner walls of both ends of the support assembly 1. The fixed structure 21 is used for structural support of the lifting ring 22. The lifting ring 22 is installed on the top inner wall of the fixed structure 21.
[0021] During use, the external drive components can be installed and fixed on the lifting rings 22 to ensure the height adjustment of the lifting platform. The symmetrically arranged lifting rings 22 can improve the stability of the structure.
[0022] The lifting assembly 2 includes, but is not limited to, four-point hoisting with steel wire rope and hydraulic cylinder lifting; in this embodiment, the lifting assembly 2 is preferably four-point hoisting with steel wire rope.
[0023] The adaptive support component 3 includes a limiting guide rail 31, and a support structure 32 is slidably mounted on the inner wall of the limiting guide rail 31. The support structure 32 is used to support the sliding expansion of the support component 1. Limiting rods 33 are installed at both ends of the support structure 32, and a movable structure 34 is installed on the top of the support structure 32. The movable structure 34 is used for the convenient sliding of the support structure 32.
[0024] To improve ease of use of the device, the support structures 32 at both ends can slide along the inner wall of the limiting guide rail 31, and the movable structure 34 on the inner wall can facilitate the staff to quickly slide to the designated structural position.
[0025] The adaptive support component 3 includes, but is not limited to, an adaptive slider guide structure and a pressure-sensing adaptive structure; in this embodiment, the adaptive support component 3 preferably has an adaptive slider guide structure.
[0026] The elastic positioning component 4 includes a limiting frame 41, and a positioning structure 42 is slidably mounted on the inner wall of the limiting frame 41. The positioning structure 42 is used for the adaptive structural positioning of the support component 3. A damping telescopic member 44 is installed on the top of the positioning structure 42, and an elastic support member 43 is sleeved on the inner wall of the damping telescopic member 44. The elastic support member 43 is used for the elastic support of the positioning structure 42, and a limiting ring structure 45 is fixed at the bottom of the positioning structure 42.
[0027] When the adaptive support component 3 slides in position, the positioning structure 42 at both ends of the bottom will be subjected to the elastic deformation of the elastic support component 43 and the damping telescopic component 44 to position the bottom positioning structure 42 onto the inner wall of the dynamic stabilizing component 5, thereby ensuring the positioning stability of the adaptive support component 3.
[0028] Among them, the elastic positioning component 4 includes, but is not limited to, a torsion spring positioning component and a rubber elastic pin positioning component; in this embodiment, the elastic positioning component 4 is preferably a torsion spring positioning component.
[0029] The dynamic stabilizing component 5 includes a fixed plate 51, an mounting plate 52 installed on the inner wall of the fixed plate 51, a guide rod 53 sliding on the inner wall of the mounting plate 52, guide structures 54 installed on the inner walls at both ends of the fixed plate 51, a clamping structure 55 sliding on the inner wall of the guide structure 54, the clamping structure 55 being used for structural positioning of the elastic positioning component 4, a reset block 56 installed on the side end of the guide rod 53, and a rotating structure 57 rotatably connected to the inner walls of the reset block 56 and the clamping structure 55.
[0030] When the elastic positioning components 4 at both ends of the top are slidably positioned, the guide rod 53 will elastically contract inward when it is contacted by the components. Subsequently, under the rotational connection of the rotating structures 57 at both ends, the clamping structures 55 at both ends can be stably clamped onto the inner walls of the elastic positioning components 4, thereby improving the structural stability of the adaptive support component 3.
[0031] The dynamic stabilizing component 5 includes, but is not limited to, bidirectional wedge stabilization and linkage elastic gripper stabilization; in this embodiment, the dynamic stabilizing component 5 is preferably linkage elastic gripper stabilization.
[0032] The working principle of the cooling wall mounting plate provided by this utility model is as follows: During use, the height of the support component 1 can be adjusted by the cooperation of the external drive component and the lifting component 2 to process the cooling wall. When a larger working position is required, the adaptive support components 3 at both ends can be slid open to increase the usable space of the device. When the adaptive support components 3 slide and expand, the elastic positioning components 4 at both ends of the bottom will automatically slide and position themselves on the inner wall of the dynamic stabilizing component 5 at the bottom to form a stable support for the structure, ensuring that the adaptive support components 3 will not affect the operator's processing operation due to the shaking of the device.
[0033] Compared with related technologies, the cooling wall mounting plate provided by this utility model has the following advantages: To improve ease of use, the hanging platform features adaptive support components 3 at both ends. These components can slide and expand according to the processing position, allowing the platform to flexibly adjust its coverage area based on the cooling wall installation location. This eliminates the need for frequent movement of workers within narrow, fixed areas, reducing the range of limb extension and the risk of displacement at height. Furthermore, when the adaptive support components 3 slide and expand, the elastic positioning components 4 and dynamic stabilizing components 5 at the bottom work together to automatically clamp and position the platform as it slides. This prevents the platform from shifting due to airflow disturbances or slight vibrations within the blast furnace, achieving a sliding-and-positioning effect.
[0034] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A mounting plate for a cooling wall, characterized in that, It includes: a support component, wherein lifting components are symmetrically installed on the inner walls at both ends of the support component for lifting the support component; an adaptive support component is slidably connected to the inner walls at both ends of the support component for sliding extension of the support component; an elastic positioning component is installed at the bottom of both ends of the adaptive support component; and a dynamic stabilizing component is symmetrically installed on the inner walls at both ends of the support component. The elastic positioning component, in conjunction with the dynamic stabilizing component, can be used for structural positioning of the adaptive support component.
2. The mounting plate for a cooling wall according to claim 1, characterized in that, The support assembly includes a base plate with fixed handrails installed on the inner walls at both ends. The inner walls at both ends of the base plate are provided with groove structures for adaptive sliding of the support assembly.
3. The mounting plate for a cooling wall according to claim 1, characterized in that, The lifting assembly includes a fixed structure and a lifting ring. The fixed structure is symmetrically installed on the inner walls at both ends of the support assembly. The fixed structure is used for structural support of the lifting ring. The lifting ring is installed on the top inner wall of the fixed structure.
4. The mounting plate for a cooling wall according to claim 1, characterized in that, The adaptive support component includes a limiting guide rail, and a support structure slides on the inner wall of the limiting guide rail. The support structure is used to support the sliding expansion of the component. Limiting rods are installed at both ends of the support structure, and a movable structure is installed on the top of the support structure. The movable structure is used for convenient sliding of the support structure.
5. A mounting plate for a cooling wall according to claim 1, characterized in that, The elastic positioning component includes a limiting frame, with a positioning structure sliding on the inner wall of the limiting frame. The positioning structure is used for the structural positioning of the adaptive support component. A damping telescopic component is installed on the top of the positioning structure, and an elastic support component is sleeved on the inner wall of the damping telescopic component. The elastic support component is used for the elastic support of the positioning structure, and a limiting ring structure is fixed at the bottom of the positioning structure.
6. A mounting plate for a cooling wall according to claim 1, characterized in that, The dynamic stabilizing component includes a fixed plate, an mounting plate installed on the inner wall of the fixed plate, a guide rod sliding on the inner wall of the mounting plate, guide structures installed on the inner walls at both ends of the fixed plate, a clamping structure sliding on the inner wall of the guide structure, the clamping structure being used for structural positioning of the elastic positioning component, a reset block installed on the side end of the guide rod, and a rotating structure rotatably connected to the inner wall of the reset block and the clamping structure.