Novel technological partition plate for steel track beam assembling and welding and using method of novel technological partition plate

Through the adjustment screw and nut combination of upper and lower components of the process partition with a double-layer structure, the problem of traditional single-layer partitions being unable to assemble curved track beams is solved, efficient and accurate track beam assembly and partition reuse are achieved, and the manufacturing efficiency and quality of the suspended maglev monorail system is improved.

CN120362809APending Publication Date: 2025-07-25CHINA RAILWAY BAOJI BRIDGE GROUP CO LTD
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Patent Information

Application Number
CN202510759655.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

Traditional single-layer process partitions cannot achieve curved track beam assembly and cannot be reused, resulting in low assembly efficiency of track beams and restricting the large-scale application of suspended maglev monorail systems.

Method used

The upper and lower connections of the process partition upper and lower components are used to form a double-layer structure. By adjusting the combination of screws and nuts, precise positioning and position adjustment of the upper cover plate, web, middle cover plate and lower cover plate are achieved, adapting to the assembly of track beams of different curve radii.

Benefits of technology

High-precision positioning and assembly of double-cavity curved steel rail beams is realized, construction efficiency and reuse rate of process partitions are improved, welding process is simplified, and rail beam manufacturing efficiency and accuracy are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a novel process partition plate for installing and welding a steel track beam and a using method of the novel process partition plate. The novel steel track beam comprises an upper cover plate, a web, a middle cover plate and a lower cover plate. The process partition plate is composed of a process partition plate upper assembly and a process partition plate lower assembly, the process partition plate is divided into a double-layer structure comprising an upper part and a lower part by the process partition plate upper assembly and the process partition plate lower assembly, and the process partition plate upper assembly and the process partition plate lower assembly are connected into a whole in an up-down adjustable mode. The process partition is used for adjusting the positions of the upper cover plate, the web, the middle cover plate and the lower cover plate. According to the method, any curve track beam assembly is achieved, the process partition plates can be repeatedly used, and the track beam assembly efficiency is effectively improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of rail transit, and particularly relates to a process partition plate for the assembly welding of a new type of steel track beam and a using method thereof. Background Art

[0002] The permanent magnet suspended monorail system is a medium and low-capacity rail transit system based on rare earth permanent magnet suspension technology. Through the non-contact magnetic suspension force generated by the vehicle-mounted permanent magnet and the magnetic rail at the bottom of the track beam, the train is suspended and operated. This system has the characteristics of strong climbing ability (maximum gradient ≥ 10%), small turning radius (minimum R50m), and high environmental adaptability. It adopts a running design with rail clamping, integrates electromagnetic braking and induction plate traction technologies, and can adapt to complex terrain conditions. This system adopts a modular track beam structure, is equipped with a single-rotation point replacement beam type turnout, realizes the flexible line change function, is suitable for scenarios such as urban transportation and tourist attractions, and has the advantages of environmental protection, low noise, and intelligence.

[0003] The track beam structure in this system adopts a box-shaped steel structure with an opening at the lower part, generally composed of a lower cover plate, a web, an upper cover plate, a middle cover plate, and support ribs, forming a multi-cavity composite load-bearing system. The bottom surface of the lower cover plate is provided with a magnetic rail mounting seat interface, the inner sides of the two webs are the working surfaces of the guide wheels / stabilizing wheels, the middle part is provided with an aluminum induction plate installation area, and the middle part of the upper cover plate integrates a braking steel plate.

[0004] However, the track beam structure is complex, with a double-cavity structure and multiple functional areas. The traditional single-layer process partition plate has the following technical defects: it cannot realize the assembly of curved track beams, the traditional single-layer process partition plate cannot be reused, and the assembly efficiency of the track beam is low, which restricts the large-scale application of the suspended maglev monorail system. In view of this, the following improved technical solutions are proposed. Summary of the Invention

[0005] The technical problem solved by the invention: Provide a process partition plate for the assembly welding of a new type of steel track beam and a using method thereof. By adopting the upper and lower connectable and adjustable process partition plate upper component and process partition plate lower component, the technical problem that the traditional single-layer process partition plate cannot realize the assembly of curved track beams is solved.

[0006] The technical solution adopted by the invention: A process partition plate for the assembly welding of a new type of steel track beam, the new type of steel track beam includes an upper cover plate, a web, a middle cover plate, and a lower cover plate; the process partition plate is composed of a process partition plate upper component and a process partition plate lower component, and the process partition plate upper component and the process partition plate lower component divide the process partition plate into an upper and a lower two-layer structure, and the process partition plate upper component and the process partition plate lower component are connected up and down adjustably and integrally; the process partition plate is used to adjust the positions of the upper cover plate, the web, the middle cover plate, and the lower cover plate.

[0007] In the above technical solution, further: The upper component of the process partition board has an upper steel partition board arranged vertically. A vertically upward special-shaped nut I is fixedly installed on the horizontal part at the top of the upper steel partition board, and a horizontally arranged special-shaped nut I is fixedly installed on the vertical part on the side of the upper steel partition board. The special-shaped nut I and the special-shaped nut I on the side are respectively adapted to install an adjusting washer I, an adjusting screw I, and a hexagonal nut I. By adjusting the thickness of the adjusting washer I and the extending length of the adjusting screw I, the positions of the upper cover plate and the web are adjusted, and the hexagonal nut I is used to lock the position of the adjusting screw I.

[0008] In the above technical solution, further: A vertically downward special-shaped nut is fixedly installed on the horizontal part at the bottom of the upper steel partition board. The special-shaped nut is adapted to install an adjusting washer II and a connecting bolt, and the connecting bolt is used for detachably connecting the lower component of the process partition board.

[0009] In the above technical solution, further: The lower component of the process partition board has a lower steel partition board arranged vertically. A vertically upward connecting nut is fixedly installed inside the horizontal part at the top of the lower steel partition board. The connecting nut is used for concentrically adapting and connecting the connecting bolt of the upper component of the process partition board. The connecting bolt is used for connecting the upper component and the lower component of the process partition board and adjusting the distance between the upper component and the lower component of the process partition board.

[0010] In the above technical solution, further: A vertically upward special-shaped nut II is fixedly installed on the outer side of the horizontal part at the top of the lower steel partition board, and a horizontally arranged special-shaped nut II is fixedly installed on the vertical part on the side of the lower steel partition board. The special-shaped nut II and the special-shaped nut II on the side are respectively adapted to install an adjusting washer II, an adjusting screw II, and a hexagonal nut II. By adjusting the thickness of the adjusting washer II and the extending length of the adjusting screw II, the positions of the middle cover plate and the web and the distance between the middle cover plate and the lower cover plate are adjusted, and the hexagonal nut II is used to lock the position of the adjusting screw II.

[0011] The present invention also claims to protect a method for using a process partition board for welding a new type of steel track beam. The process partition board for welding a new type of steel track beam is the process partition board described in any one of the above. The method for using includes the following steps:

[0012] S1. By adjusting the adjusting screw II on the horizontal part at the top of the lower steel partition board of the lower component of the process partition board, the distance between the lower cover plate and the middle cover plate is adjusted steplessly; by adjusting the adjusting screw II on the vertical part on the side of the lower steel partition board of the lower component of the process partition board, the width of the web is adjusted steplessly.

[0013] S2. After the adjustment is in place, lock the position through the hexagonal nut II to ensure the dimensional stability.

[0014] S3. Precise positioning of the upper cover plate is achieved by adjusting the adjusting screw Ⅰ at the top horizontal part of the upper steel partition of the upper component of the process partition board; the web width is restricted by adjusting the adjusting screw Ⅰ at the vertical part on the side of the upper steel partition of the upper component of the process partition board.

[0015] S4. After the connecting bolt passes through the adjusting washer Ⅱ, the connecting bolt first penetrates through the lower special-shaped nut of the upper component of the process partition board and then the connecting nut of the lower component of the process partition board. The distance between the upper component and the lower component of the process partition board is finely adjusted by rotating the connecting bolt to meet the assembly requirements of track beams with different curve radii.

[0016] S5. After the upper cover plate, the web, the middle cover plate, and the lower cover plate are adjusted in place, their positions are locked by the hexagon nut Ⅱ to complete the assembly.

[0017] S6. After the assembly is completed, both the adjusting screw Ⅰ and the adjusting screw Ⅱ are in the locked state, and the process partition board for the welding of the new steel track beam group forms a high-rigidity support structure.

[0018] S7. During disassembly, only need to loosen each hexagon nut Ⅰ, hexagon nut Ⅱ, lower special-shaped nut, and connecting nut, then the lower component and the upper component of the adjusting process partition board can be quickly separated to realize the reuse of the process partition board.

[0019] Advantages of the present invention compared with the prior art:

[0020] 1. The present invention can achieve high-precision positioning and assembly of the middle cover plate of the double-chamber curve steel track beam, and can infinitely adjust the height position between the middle cover plate and the upper and lower cover plates as well as the distance between the left and right webs, realizing the step-by-step assembly of various types of curve steel track beams.

[0021] 2. The present invention has a simple structure, is easy to use, has high construction efficiency, is accurate and reliable, and can be extended and applied to the manufacture of various complex steel track beams.

[0022] 3. Through modular design and infinitely adjustable function, the present invention significantly simplifies the welding and assembly process of the double-chamber track beam, solves the problem that the single-layer process partition board cannot adapt to the assembly of the curve beam, has a high reuse rate of the process partition board, improves the manufacturing efficiency and precision of the steel track beam, and is suitable for popularization. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a three-dimensional view of the usage state of the process partition board for the welding of the new steel track beam of the present invention;

[0024] Figure 2 is Figure 1 the front view;

[0025] Figure 3 is a three-dimensional view of the process partition board of the present invention;

[0026] Figure 4 For the present invention Figure 3 Stereogram of the upper component of the process partition in the present invention;

[0027] Figure 5 For the present invention Figure 3 Stereogram of the lower component of the process partition in the present invention;

[0028] In the figure: 1. Lower component of the process partition, 2. Upper component of the process partition, 3. New type steel track beam, 3-1. Middle cover plate, 3-2. Lower cover plate, 3-3. Upper cover plate, 3-4. Web; 2-1. Upper layer steel partition plate, 2-2. Lower layer steel partition plate; 201. Upper special-shaped nut I, 202. Side special-shaped nut I, 203. Lower special-shaped nut, 204. Adjusting washer I, 205. Adjusting screw I, 206. Hexagonal nut I, 207. Adjusting washer II, 208. Connecting bolt; 101. Connecting nut, 102. Upper special-shaped nut II, 103. Side special-shaped nut II, 104. Adjusting washer II, 105. Adjusting screw II, 106. Hexagonal nut II. Detailed implementation manners

[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying Figures 1-5 drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0030] (As shown in Figure 1 , Figure 2 ) A process partition for the welding of a new type steel track beam group. The new type steel track beam 3 includes an upper cover plate 3-3, a web 3-4, a middle cover plate 3-1, and a lower cover plate 3-2.

[0031] Among them, left and right webs 3-4 are provided on the left and right sides at the bottom end of the upper cover plate 3-3. The lower cover plate 3-2 is provided at the bottom end of the web 3-1. A middle cover plate 3-1 is provided between the upper cover plate 3-3 and the lower cover plate 3-2.

[0032] The process partition is composed of an upper component 2 of the process partition and a lower component 1 of the process partition. The upper component 2 of the process partition and the lower component 1 of the process partition divide the process partition into an upper and a lower two-layer structure, and the upper component 2 of the process partition and the lower component 1 of the process partition are adjustably connected into one body up and down. The process partition is used to adjust the positions of the upper cover plate 3-3, the web 3-4, the middle cover plate 3-1, and the lower cover plate 3-2.

[0033] It should be noted that the two-layer process partition can be adjusted up and down and integrated into one body, enabling the process partition to flexibly adjust its height and position according to actual needs. During the assembly welding process of the steel track beam group, the position accuracy requirements for each component (upper cover plate 3-3, web 3-4, middle cover plate 3-1, lower cover plate 3-2) vary for steel track beams of different specifications and sizes. By adjusting the relative positions of the upper component 2 and the lower component 1 of the process partition, each component can be accurately positioned to ensure that the welded steel track beam meets the design requirements, improving the dimensional accuracy and quality stability of the product. The double-layer structure has better structural stability compared to the single-layer structure. During the assembly welding process, the process partition with a double-layer structure can disperse the welding stress and reduce the risk of deformation and damage caused by stress concentration. The double-layer process partition can quickly and accurately adjust the positions of the upper cover plate 3-3, web 3-4, middle cover plate 3-1, and lower cover plate 3-2, reducing the time for manual adjustment and positioning. Workers only need to perform simple adjustment operations to complete the positioning of each component, greatly shortening the preparation time before assembly welding and improving the overall assembly welding efficiency. Precise component positioning helps to ensure the welding quality. Due to the adjustability of the process partition, it can adapt to the assembly welding requirements of steel track beams of different specifications and sizes.

[0034] (such as Figure 3 , Figure 4 shown) In the above embodiment, further: the upper component 2 of the process partition has an upper steel partition 2-1 arranged vertically. At the horizontal part at the top of the upper steel partition 2-1, a vertically upwardly arranged upper special-shaped nut I 201 is fixedly installed. At the vertical part on the side of the upper steel partition 2-1, a horizontally arranged side special-shaped nut I 202 is fixedly installed. The upper special-shaped nut I 201 and the side special-shaped nut I 202 are respectively fitted and installed with an adjusting washer I 204, an adjusting screw I 205, and a hexagon nut I 206. By changing the thickness of the adjusting washer I 204 and the extending length of the adjusting screw I 205, the positions of the upper cover plate 3-3 and the web 3-4 can be adjusted. The hexagon nut I 206 is used to lock the position of the adjusting screw I 205.

[0035] In the above embodiment, further: at the horizontal part at the bottom of the upper steel partition 2-1, a vertically downwardly arranged lower special-shaped nut 203 is fixedly installed. The lower special-shaped nut 203 is fitted and installed with an adjusting washer II 207 and a connecting bolt 208. The connecting bolt 208 is used for detachably connecting the lower component 1 of the process partition.

[0036] In the above embodiment, further: (such as Figure 5As shown in the figure, the lower component 1 of the process partition board has a vertically arranged lower steel partition board 2-2. Inside the horizontal part at the top of the lower steel partition board 2-2, a vertically upward connecting nut 101 is fixedly installed. The connecting nut 101 is used to concentrically fit and connect the connecting bolt 208 of the upper component 2 of the process partition board. The connecting bolt 208 is used to connect the upper component 2 and the lower component 1 of the process partition board and adjust the distance between the upper component 2 and the lower component 1 of the process partition board.

[0037] It should be noted that: the lower component 1 and the upper component 2 of the process partition board each have an independent adjustment structure, and are detachably connected through the connecting bolt 208 and the connecting nut 101, which not only ensures the adjustability of the relative positions between the lower component 1 and the upper component 2 of the process partition board, but also maintains the stability of the overall structure. Due to the upper and lower adjustability of the process partition board, it can meet the welding requirements of steel track beams of different specifications and sizes. Whether it is a steel track beam with different lengths, widths or heights, the precise positioning of each component can be achieved by adjusting the relative positions of the lower component 1 and the upper component 2 of the process partition board and the parameters of each adjustment component, improving the versatility and production flexibility of the process partition board.

[0038] In the above embodiment, further: on the outer side of the horizontal part at the top of the lower steel partition board 2-2, a vertically upward special-shaped nut II 102 is fixedly installed, and on the vertical part on the side of the lower steel partition board 2-2, a horizontally arranged special-shaped nut II 103 is fixedly installed. The special-shaped nut II 102 and the special-shaped nut II 103 are respectively fitted with an adjusting washer II 104, an adjusting screw II 105 and a hexagon nut II 106. By adjusting the thickness of the adjusting washer II 104 and the extending length of the adjusting screw II 105, the positions of the middle cover plate 3-1 and the web 3-4 and the distance between the middle cover plate 3-1 and the lower cover plate 3-2 are adjusted. The hexagon nut II 106 is used to lock the position of the adjusting screw II 105.

[0039] It should be noted that: different parts of the lower component 1 and the upper component 2 of the process partition board are respectively provided with special-shaped nuts and adjusting components in different directions. This multi-dimensional adjustment ability enables the process partition board to precisely control the positions of each component of the steel track beam, meet different design requirements, and ensure the dimensional accuracy of the welded steel track beam. During the adjustment process, the fine adjustment of the positions of the upper cover plate 3-3, the web 3-4, the middle cover plate 3-1 and the lower cover plate 3-2 is realized by changing the thickness of the adjusting washers I and II and the extending lengths of the adjusting screws I and II. This high-precision adjustment method can meet the production requirements of high-precision steel track beams and improve the product quality.

[0040] During the adjustment process, the positions of various components can be adjusted by simply adjusting the thicknesses of adjusting washers Ⅰ and Ⅱ and rotating adjusting screws Ⅰ and Ⅱ. The operation is simple and convenient. Workers can quickly complete the adjustment work without complex tools and professional skills, improving production efficiency.

[0041] The present invention also claims a method for using a process partition for the assembly welding of a new type of steel track beam. The process partition for the assembly welding of the new type of steel track beam is the process partition described in any one of the foregoing. The method for using includes the following steps:

[0042] S1. By adjusting the adjusting screw Ⅱ105 at the top horizontal part of the lower steel partition 2-2 of the lower component 1 of the process partition, the distance between the lower cover plate 3-2 and the middle cover plate 3-1 is adjusted steplessly; by adjusting the adjusting screw Ⅱ105 at the side vertical part of the lower steel partition 2-2 of the lower component 1 of the process partition, the width of the web 3-4 is adjusted steplessly.

[0043] It should be noted that: the stepless adjustment in step S1 means that continuous and fine position changes of the distance between the lower cover plate 3-2 and the middle cover plate 3-1 and the width of the web 3-4 can be achieved within a certain range, without being restricted by fixed gears. This enables the process partition to precisely meet the steel track beam sizes with different design requirements and adapt to various complex assembly welding requirements.

[0044] S2. After the adjustment is in place, lock the position through the hexagon nut Ⅱ106 to ensure dimensional stability.

[0045] S3. By adjusting the adjusting screw Ⅰ205 at the top horizontal part of the upper steel partition 2-1 of the upper component 2 of the process partition, the position of the upper cover plate 3-2 is accurately positioned; by adjusting the adjusting screw Ⅰ205 at the side vertical part of the upper steel partition 2-1 of the upper component 2 of the process partition, the width of the web 3-4 is restricted.

[0046] It should be noted that: in steps S1 and S3, adjusting screws are respectively set for different components and different directions of the new type of steel track beam. Operators can, according to actual needs, targetedly adjust the positions of specific components of the new type of steel track beam without affecting the positioning states of other components. This multi-component independent adjustment method greatly improves the flexibility and accuracy of the operation. Among them, in step S3, accurately positioning the position of the upper cover plate 3-2 and restricting the width of the web 3-4 can ensure that the components of the steel track beam are in the correct positional relationship during the assembly welding process. Accurate position positioning is one of the key factors to ensure the structural strength and service performance of the steel track beam. Through the method for using the process partition, the positioning error of each component can be controlled within a very small range, thereby improving the overall quality of the steel track beam.

[0047] S4. After the connecting bolt 208 passes through the adjusting washer II 207, the connecting bolt 208 first passes through the lower special-shaped nut 203 of the upper component 2 of the process partition and then the connecting nut 101 of the lower component 1 of the process partition, and the distance between the upper component 2 and the lower component 1 of the process partition is finely adjusted by rotating the connecting bolt 208 to meet the assembly requirements of track beams with different curve radii.

[0048] It should be noted that in step S5, the distance between the upper and lower components of the process partition is finely adjusted by rotating the connecting bolt 208 to meet the assembly requirements of track beams with different curve radii. In actual projects, track beams may have different curve radii according to the requirements of line design, which requires the process partition to be able to flexibly adjust its own structure to adapt to these changes. Through this fine-tuning method, the double-layer process partition can accurately control the positions and distances of various components to ensure the welding quality of the curved track beam.

[0049] S5. After the upper cover plate 3-3, web 3-4, middle cover plate 3-1, and lower cover plate 3-2 are adjusted in place, lock the positions with hexagon nuts II 106 to complete the assembly.

[0050] It should be noted that in steps S2 and S6, the positions of the adjusted components are locked with hexagon nuts II 106, ensuring the dimensional stability of the process partition.

[0051] S6. After the assembly is completed, the adjusting screw I 205 and the adjusting screw II 105 are both in the locked state, and the process partition for the group welding of the new steel track beam forms a high-rigidity support structure.

[0052] It should be noted that in step S7, after the assembly is completed, the adjusting screw I 205 and the adjusting screw II 105 are both in the locked state, and the process partition for the group welding of the new steel track beam forms a high-rigidity support structure. The high-rigidity support structure can effectively resist various external forces (such as welding stress, vibration, etc.) generated during the welding process, maintaining the shape and position stability of the process partition and the components of the steel track beam. This helps to reduce welding deformation, improve welding quality, and ensure the structural strength and safety of the steel track beam.

[0053] S7. During disassembly, only loosen the hexagon nuts I 206, hexagon nuts II 106, lower special-shaped nuts 203, and connecting nuts 101, and the lower component 1 and the upper component 2 of the adjustable process partition can be quickly separated to realize the reuse of the process partition.

[0054] It should be noted that: in step S8, when disassembling, only the hexagonal nuts I 206, hexagonal nuts II 106, lower special-shaped nuts 203, and connecting nuts 101 need to be loosened, and the lower component and the upper component of the adjusting process partition can be quickly separated, realizing the reuse of the process partition. This quick-disassembly design enables the process partition to be repeatedly used in different welding projects, reducing production costs. At the same time, it also facilitates the maintenance and upkeep of the process partition, extending its service life.

[0055] It can be found from the above description that: the present invention can achieve the high-precision positioning and assembly of the middle cover plate 3-1 of the double-chamber curved steel track beam, and can steplessly adjust the height position between the middle cover plate 3-1 and the upper and lower cover plates as well as the distance between the left and right webs 3-4, realizing the step-by-step assembly of the double-chamber curved steel track beam.

[0056] The structure of the present invention is simple, easy to use, has high construction efficiency, is accurate and reliable, and can be extended and applied to the manufacture of various complex steel track beams.

[0057] Through modular design and stepless adjustment function, the present invention significantly simplifies the welding process of the double-chamber track beam and solves the problem that the single-layer process partition cannot adapt to the assembly of the curved beam.

[0058] The process partition of the present invention has a high reuse rate, improves the manufacturing efficiency and accuracy of the steel track beam, and is suitable for popularization.

[0059] It should be understood that although this specification is described according to an embodiment, it does not mean that this embodiment only includes an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in this embodiment can also be appropriately arranged and combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A process partition for the assembly welding of a new type of steel track beam. The new type of steel track beam (3) includes an upper cover plate (3-3), a web (3-4), a middle cover plate (3-1), and a lower cover plate (3-2); it is characterized in that: The process partition is composed of an upper component (2) and a lower component (1) of the process partition. The upper component (2) and the lower component (1) of the process partition divide the process partition into an upper and a lower double-layer structure, and the upper component (2) and the lower component (1) of the process partition are integrally connected in an adjustable up-and-down manner. The process partition is used to adjust the positions of the upper cover plate (3-3), the web (3-4), the middle cover plate (3-1), and the lower cover plate (3-2).

2. The process partition according to claim 1, wherein: The upper component (2) of the process partition has an upper steel partition (2-1) arranged vertically. A vertically upward upper special-shaped nut I (201) is fixedly installed at the horizontal part at the top of the upper steel partition (2-1). A horizontally arranged side special-shaped nut I (202) is fixedly installed at the vertical part on the side of the upper steel partition (2-1). The upper special-shaped nut I (201) and the side special-shaped nut I (202) are respectively fitted with an adjusting washer I (204), an adjusting screw I (205), and a hexagonal nut I (206). By adjusting the thickness of the adjusting washer I (204) and the extending length of the adjusting screw I (205), the positions of the upper cover plate (3-3) and the web (3-4) are adjusted. The hexagonal nut I (206) is used to lock the position of the adjusting screw I (205).

3. The process partition according to claim 2, wherein: A vertically downward lower special-shaped nut (203) is fixedly installed at the horizontal part at the bottom of the upper steel partition (2-1); the lower special-shaped nut (203) is fitted with an adjusting washer II (207) and a connecting bolt (208), and the connecting bolt (208) is used for detachably connecting the lower component (1) of the process partition.

4. The process partition according to claim 3, characterized in that: The lower component (1) of the process partition has a lower steel partition (2-2) arranged vertically. A vertically upward connecting nut (101) is fixedly installed inside the horizontal part at the top of the lower steel partition (2-2). The connecting nut (101) is used for concentrically fitting and connecting the connecting bolt (208) of the upper component (2) of the process partition. The connecting bolt (208) is used for connecting the upper component (2) and the lower component (1) of the process partition and adjusting the distance between the upper component (2) and the lower component (1) of the process partition.

5. The process partition according to claim 4, wherein: An upper special-shaped nut II (102) is fixedly installed outside the horizontal part at the top of the lower steel partition (2-2) vertically upward. A horizontally arranged side special-shaped nut II (103) is fixedly installed at the vertical part on the side of the lower steel partition (2-2). The upper special-shaped nut II (102) and the side special-shaped nut II (103) are respectively fitted with an adjusting washer II (104), an adjusting screw II (105), and a hexagonal nut II (106). By adjusting the thickness of the adjusting washer II (104) and the extending length of the adjusting screw II (105), the positions of the middle cover plate (3-1) and the web (3-4) and the distance between the middle cover plate (3-1) and the lower cover plate (3-2) are adjusted. The hexagonal nut II (106) is used to lock the position of the adjusting screw II (105).

6. A method for using a process partition for the assembly welding of a new type of steel track beam, wherein the process partition for the assembly welding of the new type of steel track beam is the process partition according to any one of claims 1-5, characterized in that, The usage method includes the following steps: S1. By adjusting the adjusting screw II (105) at the top horizontal part of the lower steel partition board (2-2) of the lower component (1) of the process partition board, the distance between the lower cover plate (3-2) and the middle cover plate (3-1) is adjusted steplessly; by adjusting the adjusting screw II (105) at the side vertical part of the lower steel partition board (2-2) of the lower component (1) of the process partition board, the width of the web (3-4) is adjusted steplessly. S2. After the adjustment is in place, lock the position through the hexagon nut II (106) to ensure the dimensional stability. S3. By adjusting the adjusting screw I (205) at the top horizontal part of the upper steel partition board (2-1) of the upper component (2) of the process partition board, accurately position the upper cover plate (3-2); by adjusting the adjusting screw I (205) at the side vertical part of the upper steel partition board (2-1) of the upper component (2) of the process partition board, restrict the width of the web (3-4). S4. After the connecting bolt (208) passes through the adjusting washer II (207), the connecting bolt (208) first passes through the lower special-shaped nut (203) of the upper component (2) of the process partition board and then passes through the connecting nut (101) of the lower component (1) of the process partition board. By rotating the connecting bolt (208), finely adjust the distance between the upper component (2) of the process partition board and the lower component (1) of the process partition board to meet the assembly requirements of track beams with different curve radii. S5. After the upper cover plate (3-3), the web (3-4), the middle cover plate (3-1), and the lower cover plate (3-2) are adjusted in place, lock the position through the hexagon nut II (106) to complete the assembly. S6. After the assembly is completed, the adjusting screw I (205) and the adjusting screw II (105) are both in the locked state, and the process partition board for the new steel track beam group welding forms a high-rigidity support structure. S7. During disassembly, only need to loosen each hexagon nut I (206), hexagon nut II (106), lower special-shaped nut (203), and connecting nut (101), then the lower component (1) of the adjustable process partition board and the upper component (2) of the adjustable process partition board can be quickly separated, realizing the reuse of the process partition board.