Translation mechanism for vertical gate valve maintenance

CN224725845UActive Publication Date: 2026-09-08GUANGDONG SHENGBOER PHOTOELECTRIC TECH CO LTD +1
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Patent Information

Application Number
CN202521922470.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2026-09-08
Estimated Expiration
2035-09-08

AI Technical Summary

Technical Problem

[0003]本实用新型旨在解决现有立式镀膜线上维护插板阀阀芯时,人工吊装阀芯产生的磕碰损伤及人工定位困难的问题,提供一种用于立式插板阀维护的平移机构,能够大大提高插板阀阀芯的维护效率

Benefits of technology

本申请实施例提供一种用于立式插板阀维护的平移机构,包括设于移动载具上的滑轨,以及通过滑块滑动设于滑轨上的平移工装,平移工装用于承载和固定插板阀阀盖,并可沿滑轨带动插板阀阀盖沿滑轨滑动,本专利利用线性滑轨实现阀体工装的手动平移,实现阀盖的打开与关闭,从而实现整个插板阀阀体安装维护,避免因人工吊装阀芯所产生的磕碰损伤,以及解决行车吊装阀芯人工定位困难的问题,能够大大提高插板阀阀芯的维护效率。

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Abstract

This application provides a translation mechanism for the maintenance of a vertical slide gate valve, including a slide rail mounted on a mobile carrier and a translation fixture mounted on the slide rail via a slider. The translation fixture is used to support and fix the slide gate valve cover, and can drive the slide gate valve cover to slide along the slide rail. This patent utilizes a linear slide rail to realize the manual translation of the valve body fixture, realizing the opening and closing of the valve cover, thereby realizing the installation and maintenance of the entire slide gate valve body, avoiding the bump damage caused by manual hoisting of the valve core, and solving the problem of difficulty in manually positioning the valve core when hoisting it by a crane, which can greatly improve the maintenance efficiency of the slide gate valve core.
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Description

Technical Field

[0001] This application relates to the field of gate valve maintenance devices, and more specifically to a translation mechanism for the maintenance of vertical gate valves. Background Technology

[0002] Currently, when maintaining the valve core of a slide gate valve on a vertical coating line, the common practice is to use a combination of overhead crane hoisting and manual operation. However, this method has significant drawbacks: on the one hand, the valve body is prone to shaking during hoisting, which may cause damage to its delicate sealing surfaces; on the other hand, manual operation makes the installation and positioning of the valve cover extremely difficult. Utility Model Content

[0003] This invention aims to solve the problems of bump damage and difficulty in manual positioning of valve cores during maintenance of slide gate valve cores on existing vertical coating lines. It provides a translation mechanism for maintenance of vertical slide gate valve cores, which can greatly improve the maintenance efficiency of slide gate valve cores.

[0004] To achieve the above objectives, this application provides a translation mechanism for the maintenance of a vertical slide valve, including a slide rail mounted on a mobile carrier and a translation tool mounted on the slide rail via a slider. The translation tool is used to support and fix the slide valve cover and can drive the slide valve cover to slide along the slide rail.

[0005] As described above, a translation mechanism for maintaining a vertical slide valve includes at least two parallel slide rails on the moving carrier. As described above, a translation mechanism for maintaining a vertical slide valve has at least two sliders spaced apart on each slide rail.

[0006] As described above, a translation mechanism for maintaining a vertical slide valve includes a height adjustment structure between the translation tool and the slider for adjusting the height of the translation tool.

[0007] The translation mechanism for maintaining a vertical slide gate valve, as described above, includes a height adjustment structure comprising: An adjusting seat is provided on the slider, and a vertical waist-shaped groove is provided on it; The connecting seat is located on the translation fixture and is situated on one side of the adjusting seat. A connector that passes through a slotted groove and connects to a connecting seat; The adjusting screw is threadedly connected to the connecting seat, and its end rests against the adjusting seat.

[0008] As described above, a translation mechanism for maintaining a vertical slide valve has at least two oblong grooves arranged side by side on the adjusting seat, and each of the at least two oblong grooves is connected to the connecting seat via a connecting piece.

[0009] As described above, a translation mechanism for maintaining a vertical slide gate valve has a positioning structure between the translation tool and the moving carrier for locking the position of the translation tool.

[0010] As described above, a translation mechanism for maintaining a vertical slide gate valve includes a positioning structure comprising a locking hole on a moving carrier, a positioning hole on a translation fixture, and a positioning pin. When the positioning hole on the translation fixture slides to the locking hole on the moving carrier, the positioning pin passes through the locking hole and the positioning hole to restrict the movement of the translation fixture relative to the moving carrier.

[0011] As described above, a translation mechanism for maintaining a vertical slide gate valve has a translation fixture consisting of a square frame made of square steel connected together.

[0012] As described above, a translation mechanism for maintaining a vertical slide gate valve has a mounting base on its top and / or side for supporting and fixing the slide gate valve cover. Compared with the prior art, the beneficial effects of this application are as follows: This application provides a translation mechanism for the maintenance of a vertical slide gate valve, including a slide rail mounted on a mobile carrier and a translation fixture mounted on the slide rail via a slider. The translation fixture is used to support and fix the slide gate valve cover, and can drive the slide gate valve cover to slide along the slide rail. This patent utilizes a linear slide rail to realize the manual translation of the valve body fixture, realizing the opening and closing of the valve cover, thereby realizing the installation and maintenance of the entire slide gate valve body, avoiding the bump damage caused by manual hoisting of the valve core, and solving the problem of difficulty in manually positioning the valve core when hoisting it by a crane, which can greatly improve the maintenance efficiency of the slide gate valve core. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0014] Figure 1 This is a schematic diagram of the maintenance device in the embodiments of this application; Figure 2 This is an exploded view of the maintenance device in an embodiment of this application; Figure 3 This is a top view of the translation mechanism in the embodiments of this application; Figure 4 This is a top view of the guide mechanism in the embodiments of this application; Figure 5 This is a top view of the mobile vehicle in the embodiments of this application; In the diagram: 1. Mobile carrier, 11. Guide section, 12. Fixture, 13. Universal caster; 2. Translation mechanism, 21. Slide rail, 22. Slider, 23. Translation fixture, 24. Height adjustment structure, 241. Adjustment seat, 242. Waist-shaped groove, 243. Connecting seat, 244. Connecting component, 245. Adjusting screw, 25. Positioning structure, 251. Locking hole, 252. Positioning hole, 253. Positioning pin, 26. Fixture; 3. Guide mechanism, 30. Guide wheel assembly, 31. Fixture frame, 32. Guide wheel frame, 320. Guide wheel groove, 33. Guide wheel component, 34. Guide channel, 35. Adjustment structure, 36. Connecting screw, 361. Pressing screw, 362. Detailed Implementation This application provides a maintenance device for a vertical slide gate valve, which includes at least a moving carrier 1, a guiding mechanism 3, and a translation mechanism 2. The guiding mechanism 3 is located on one side of the slide gate valve and is used to guide the moving carrier 1 to move to a predetermined position close to the slide gate valve. The translation mechanism 2 is movably located on the moving carrier 1 and is used to support and fix the slide gate valve cover, and can drive the slide gate valve cover to open or close.

[0015] One embodiment of this application provides a maintenance device for a vertical slide gate valve, comprising a mobile carrier, a guiding mechanism, and a translation mechanism. The mobile carrier can move within the equipment site, and the guiding mechanism guides the mobile carrier to a predetermined position close to the slide gate valve. The translation mechanism on the mobile carrier carries and fixes the slide gate valve cover, and the translation mechanism drives the slide gate valve cover to translate, thereby opening or closing the slide gate valve cover. This application can avoid the bump damage caused by manual lifting of the valve core and solve the problem of difficulty in manually positioning the valve core when using a crane, thus greatly improving the maintenance efficiency of the slide gate valve core.

[0016] Specifically, this application provides a translation mechanism for the maintenance of a vertical slide gate valve. The translation mechanism 2 includes a slide rail 21 mounted on a mobile carrier 1, and a translation fixture 23 slidably mounted on the slide rail 21 via a slider 22. The translation fixture 23 is used to support and fix the slide gate valve cover, and can drive the slide gate valve cover to slide along the slide rail 21. This vertical slide gate valve maintenance mechanism utilizes the large-scale movement of the mobile carrier within the equipment site and uses a linear slide rail to achieve manual translation of the valve body fixture, thereby opening and closing the valve cover. This enables the installation and maintenance of the entire slide gate valve body, avoiding damage caused by manual lifting of the valve core, and solving the problem of difficulty in manually positioning the valve core during crane lifting. This significantly improves the maintenance efficiency of the slide gate valve core.

[0017] Furthermore, the mobile carrier 1 is provided with at least two parallel slide rails 21; each slide rail 21 is provided with at least two sliders 22 spaced apart. This design can improve movement stability, increase positioning accuracy, and facilitate operation.

[0018] In a preferred embodiment of this application, a height adjustment structure 24 for adjusting the height of the translation tooling 23 is provided between the translation tooling 23 and the slider 22. Specifically, the height adjustment structure 24 includes an adjustment seat 241, a connecting seat 243, a connecting member 244, and an adjustment screw 245; the adjustment seat 241 is disposed on the slider 22 and has a vertical waist-shaped groove 242 thereon; the connecting seat 243 is disposed on the translation tooling 23 and is located on one side of the adjustment seat 241; the connecting member 244 passes through the waist-shaped groove 242 and is connected to the connecting seat 243; the adjustment screw 245 is threadedly connected to the connecting seat 243 and its end abuts against the adjustment seat 241. The connector can be a screw or other fastener, which connects the adjusting seat and the connecting seat, forming a connection between the translation tooling and the slider. Due to the presence of the slot, there is a vertical adjustment margin between the two. By adjusting the adjusting screw, the height difference between the adjusting seat and the connecting seat can be adjusted, thereby adjusting the overall height of the translation tooling. This design allows for fine-tuning, increases the applicability of the product, improves the accuracy of valve cover installation and positioning, and improves the maintenance efficiency of the slide valve core.

[0019] More preferably, the adjusting seat 241 has at least two parallel waist-shaped grooves 242, and each of the at least two waist-shaped grooves 242 is connected to the connecting seat 243 via a connecting member 244. This design improves installation stability. Specifically, this application has a height adjustment structure installed between each slider and translation tooling, which can adjust and correct the overall height and the height in each direction in a timely manner, improving maintenance stability.

[0020] As a further preferred embodiment of this application, a positioning structure 25 for locking the position of the translation tool 23 is provided between the translation tool 23 and the moving carrier 1. Specifically, the positioning structure 25 includes a locking hole 251 on the moving carrier 1, a positioning hole 252 on the translation tool 23, and a positioning pin 253. When the positioning hole 252 on the translation tool 23 slides to the locking hole 251 on the moving carrier 1, the positioning pin 253 passes through the locking hole 251 and the positioning hole 252 to restrict the movement of the translation tool 23 relative to the moving carrier 1. This design allows the translation tool to be fixed in time after the valve cover of the slide gate valve is opened, facilitating maintenance and inspection and avoiding damage caused by manual lifting of the valve core.

[0021] Specifically, this application provides a guiding mechanism for the maintenance of a vertical slide gate valve. The guiding mechanism 3 includes a guide wheel assembly 30 fixedly disposed on one side of the slide gate valve. When the moving carrier 1 moves to contact the guide wheel assembly 30, the guide wheel assembly 30 limits the movement of the moving carrier 1, thereby guiding the moving carrier 1 to a predetermined position close to the slide gate valve. This patent is used for the maintenance of vertical slide gate valves. By utilizing the precise guidance of the guide wheel assembly, the moving carrier is moved to the predetermined maintenance position, facilitating subsequent installation and maintenance of the slide gate valve body. This application can avoid the bump damage caused by manual lifting of the valve core and solve the problem of difficulty in manually positioning the valve core during crane lifting, thus greatly improving the maintenance efficiency of the slide gate valve core.

[0022] Furthermore, there are two sets of guide wheel assemblies 30, which are arranged opposite to each other, forming a guide channel 34 that allows the mobile vehicle 1 to pass through. This design can guide the movement direction of the mobile vehicle, accurately enter the positioning and maintenance area, increase positioning accuracy, and facilitate subsequent maintenance operations of the slide gate valve core.

[0023] More preferably, the mobile carrier 1 is provided with a guide plate 35 for contacting the guide wheel assembly 30. The guide plate 35 cooperates with the guide wheel assembly 30 to limit the movement direction of the mobile carrier 1. Specifically, two guide plates 35 are provided on opposite sides of the mobile carrier 1. When the mobile carrier 1 enters the guide channel 34, the two guide plates 35 can cooperate with the two sets of guide wheel assemblies 30 respectively. This design improves the stability of guidance. By using the precise guidance of the guide wheel assembly and the guide plate, the mobile carrier is pre-positioned and locked onto the base frame of the coating equipment.

[0024] As a further preferred embodiment of this application, the mobile carrier 1 has forward-protruding guide portions 11 on both sides of its front end. The distance between the front ends of the two guide portions 11 is smaller than the distance between their rear ends, which is used to guide the mobile carrier 1 into the guide channel 34. This design facilitates the entry of the mobile carrier into the guide channel and greatly improves the maintenance efficiency of the slide gate valve core.

[0025] Furthermore, the guide wheel assembly 30 includes a fixing frame 31 for fixing, a guide wheel frame 32 disposed on the fixing frame 31, and a plurality of guide wheel members 33 rotatably disposed on the guide wheel frame 32, the guide wheel members 33 being in contact with the moving carrier 1. Specifically, the guide wheel frame 32 is provided with a guide wheel groove 320 extending in a horizontal direction, and a plurality of guide wheel members 33 are rotatably disposed in sequence within the guide wheel groove 320, with the rims of the plurality of guide wheel members 33 positioned outside the guide wheel groove 320 to contact the moving carrier 1. The moving carrier is moved to a predetermined position by the cooperation of the guide wheel members and the guide plate. In use, the guide wheel fixing frame needs to be fixed to the base frame of the coating equipment, and then the guide wheel assembly is installed on the fixing frame.

[0026] As a further preferred embodiment of this application, a spacing adjustment structure 36 for adjusting the distance between the fixed frame 31 and the guide wheel frame 32 is provided. Specifically, the spacing adjustment structure 36 includes a connecting screw 361 that passes through the fixed frame 31 and is threadedly connected to the guide wheel frame 32, and a pressing screw 362 that is threadedly connected to the fixed frame 31 and whose end presses against the guide wheel frame 32. This design allows for fine-tuning of the distance to a suitable range, enabling corresponding adjustments to the guide channel width and increasing product applicability.

[0027] Furthermore, the translation fixture 23 is constructed from square steel to form a square frame. The top and / or sides of the translation fixture 23 are provided with mounting seats 26 for supporting and fixing the slide gate valve cover. The translation fixture is mainly made of square tubing welded to steel plates. Two positions on the slide gate valve cover are fixed to the mounting seats with screws, and then the entire translation fixture is fixed to the linear slider with screws via connecting seats.

[0028] Furthermore, the mobile carrier 1 is equipped with a fixing component 12 for securing itself after entering the predetermined position, and is fitted with swivel casters 13 at the bottom. The mobile carrier is constructed entirely of square tubing welded to steel plates, with swivel casters at the bottom for overall movement of the trolley. Guide plates are welded to both sides for pre-positioning during valve cover installation. After the mobile carrier is positioned with screws, the fixing component is fixed to the base frame of the coating equipment to prevent the trolley from shifting during maintenance of the slide gate valve body. A linear guide rail is installed at the top for opening and closing the valve cover, thereby maintaining the slide gate valve core.

[0029] The working principle of this application is as follows: The mechanism uses casters to drive a mobile carrier to flexibly move to the working position in the equipment area. Then, using the precise guidance of the guide wheel assembly and guide plate, the fixing components firmly lock the tool trolley onto the base frame of the coating equipment. Next, the translation fixture is positioned on the slide gate valve cover and secured with screws. Subsequently, the valve body is manually moved back and forth via a linear slide rail, opening and closing the valve cover, thus completing the installation and maintenance of the entire slide gate valve body.

[0030] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A translation mechanism for maintaining a vertical slide gate valve, characterized in that: It includes a slide rail mounted on a mobile carrier, and a translation tool mounted on the slide rail via a slider. The translation tool is used to support and fix the slide valve cover, and can drive the slide valve cover to slide along the slide rail.

2. The translation mechanism for maintenance of a vertical slide gate valve according to claim 1, characterized in that: The mobile vehicle is provided with at least two parallel slide rails; and / or Each slide rail has at least two sliders spaced apart.

3. The translation mechanism for maintenance of a vertical slide gate valve according to claim 1, characterized in that: A height adjustment structure is provided between the translation fixture and the slider to adjust the height of the translation fixture.

4. A translation mechanism for maintaining a vertical slide gate valve according to claim 3, characterized in that: The height adjustment structure includes: An adjusting seat is provided on the slider, and a vertical waist-shaped groove is provided on it; The connecting seat is located on the translation fixture and is situated on one side of the adjusting seat. A connector that passes through a slotted groove and connects to a connecting seat; The adjusting screw is threadedly connected to the connecting seat, and its end rests against the adjusting seat.

5. A translation mechanism for maintaining a vertical slide gate valve according to claim 4, characterized in that: The adjusting seat has at least two waist-shaped grooves arranged side by side, and at least two waist-shaped grooves are connected to the connecting seat by corresponding connectors.

6. A translation mechanism for maintaining a vertical slide gate valve according to claim 1, characterized in that: The translation tool and the moving vehicle have a positioning structure for locking the position of the translation tool.

7. A translation mechanism for maintaining a vertical slide gate valve according to claim 6, characterized in that: The positioning structure includes a locking hole on the moving vehicle, a positioning hole on the translation tool, and a positioning pin. When the positioning hole on the translation tool slides to the locking hole on the moving vehicle, the positioning pin passes through the locking hole and the positioning hole to restrict the movement of the translation tool relative to the moving vehicle.

8. A translation mechanism for maintaining a vertical slide gate valve according to claim 1, characterized in that: The translation fixture is made of square steel connected to form a square frame.

9. A translation mechanism for maintaining a vertical slide gate valve according to claim 1, characterized in that: The top and / or sides of the translation fixture are provided with mounting seats for supporting and fixing the slide gate valve cover.