Sliding frame structure of bridge builder

By designing a combination of a detachable C-frame, a horizontal adjusting beam, and a vertical adjusting block on the bridge-building machine, the problem of insufficient structural expandability of the bridge-building machine is solved, enabling adaptive adjustment to different bridge widths and heights and improving the applicability of the bridge-building machine.

CN224531464UActive Publication Date: 2026-07-21CHINA CONSTR THIRD ENG BUREAU GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA CONSTR THIRD ENG BUREAU GRP CO LTD
Filing Date
2025-07-31
Publication Date
2026-07-21

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Abstract

The application discloses a sliding frame structure of a bridge building machine, which comprises a bridge building machine body, two C-shaped frames and a plurality of connecting rods, wherein the two C-shaped frames are fixedly arranged in parallel on the bridge building machine body, and the connecting rods are arranged between the two C-shaped frames; the C-shaped frame comprises a detachable main body frame, a transverse adjusting beam and a vertical adjusting block; the detachable main body frame comprises a vertical frame and a horizontal frame; the transverse adjusting beam is detachably arranged on the horizontal frame; and the vertical adjusting block is detachably arranged on the vertical frame. Through the detachable main body frame, the transverse adjusting beam and the vertical adjusting block, the C-shaped frame which can be adjusted in the transverse direction and the vertical direction is formed, so that the bridge building machine can be expanded to meet the requirements of different bridge widths and beam heights.
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Description

Technical Field

[0001] This application relates to the field of building construction technology, and in particular to a sliding frame structure for a bridge-building machine. Background Technology

[0002] Currently, bridge construction machines are an indispensable piece of equipment in the bridge construction industry. However, existing bridge construction machines are fixed and non-adjustable, and can usually only be used for bridges of specific sizes, or to build bridge construction machines of appropriate sizes according to needs. In other words, the existing bridge construction machines have low expandability and a single and fixed structure, which makes it impossible for them to meet diverse bridge construction needs, especially for bridges with different bridge widths and / or different beam widths. Utility Model Content

[0003] The purpose of this application is to provide a sliding frame structure for a bridge construction machine to solve the technical problem of low structural scalability of bridge construction machines in related technologies.

[0004] This application provides a sliding frame structure for a bridge-building machine, including: a bridge-building machine body, two C-shaped frames, and several connecting rods. The two C-shaped frames are fixedly installed in parallel on the bridge-building machine body, and the connecting rods are installed between the two C-shaped frames. Each C-shaped frame includes a detachable main frame, a horizontal adjusting beam, and a vertical adjusting block. The detachable main frame includes a vertical frame and a horizontal frame. The horizontal adjusting beam is detachably installed on the horizontal frame, and the vertical adjusting block is detachably installed on the vertical frame.

[0005] Optionally, the detachable main frame further includes horizontal and vertical connectors, with the horizontal adjusting beam and the vertical adjusting block respectively connected to its two ends.

[0006] Optionally, the horizontal and vertical connectors are arc-shaped connectors.

[0007] Optionally, one end of the arc-shaped connector is connected to the connecting end flange of the transverse adjusting beam, and the other end of the arc-shaped connector is connected to the connecting end flange of the vertical adjusting block.

[0008] Optionally, the detachable main frame further includes a load-bearing component, one end of which is connected to the vertical adjustment block, and the other end of which is provided with a load-bearing platform.

[0009] Optionally, the load-bearing platform is provided with load-bearing fasteners.

[0010] Optionally, the connecting rod is connected to the C-type frame flange.

[0011] Optionally, the horizontal and vertical connectors include a first horizontal and vertical connector and a second horizontal and vertical connector, and the horizontal adjusting beam is detachably installed between the first horizontal and vertical connector and the second horizontal and vertical connector.

[0012] Optionally, the vertical adjustment block includes a first vertical adjustment block and a second vertical adjustment block, wherein the first vertical adjustment block is detachably installed on the first horizontal-vertical connector at one end away from the horizontal adjustment beam, and the second vertical adjustment block is detachably installed on the second horizontal-vertical connector at one end away from the horizontal adjustment beam.

[0013] Optionally, the connecting rods connecting the horizontal frames of the C-shaped frame are parallel to each other, and the connecting rods connecting the vertical frames of the C-shaped frame intersect each other.

[0014] This application provides a sliding frame structure for a bridge-building machine. The sliding frame structure includes a bridge-building machine body, two C-shaped frames, and several connecting rods. The two C-shaped frames are fixedly installed in parallel on the bridge-building machine body, and the connecting rods are installed between the two C-shaped frames. Each C-shaped frame includes a detachable main frame, a horizontal adjusting beam, and a vertical adjusting block. The detachable main frame includes a vertical frame and a horizontal frame. The horizontal adjusting beam is detachably installed on the horizontal frame, and the vertical adjusting block is detachably installed on the vertical frame. By constructing a C-shaped frame that can be adjusted both horizontally and vertically based on the detachable main frame, the horizontal adjusting beam, and the vertical adjusting block, the machine can adapt to different bridge widths and beam heights, thus improving its scalability. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of a sliding frame structure of a bridge-building machine provided in an embodiment of this application; Figure 2 This is a cross-sectional schematic diagram of the sliding frame of the bridge construction machine in operation state provided in the embodiments of this application; Figure 3 This is a schematic diagram of a C-shaped frame provided in an embodiment of this application; Figure 4 This is a schematic diagram of a connection method between the horizontal and vertical connectors and the horizontal adjusting beam provided in an embodiment of this application; Figure 5 This is a schematic diagram of a connection method between the horizontal and vertical connectors and the vertical adjustment block provided in an embodiment of this application; The components include: bridge construction machine body 1, C-shaped frame 2, detachable main frame 21, horizontal and vertical connectors 211, first horizontal and vertical connectors 2111, second horizontal and vertical connectors 2112, load-bearing component 212, horizontal adjusting beam 22, vertical adjusting block 23, first vertical adjusting block 231, second vertical adjusting block 232, and connecting rod 3. Detailed Implementation

[0016] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0017] It should be understood that the steps described in the method embodiments of this disclosure may be performed in different orders and / or in parallel. Furthermore, the method embodiments may include additional steps and / or omit the steps shown. The scope of this disclosure is not limited in this respect.

[0018] The term "comprising" and its variations as used herein are open-ended inclusions, meaning "including but not limited to". The term "based on" means "at least partially based on". The term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments". Definitions of other terms will be given in the description below.

[0019] In the bridge construction industry, bridge-building machines are an indispensable piece of equipment. However, existing bridge-building machines are fixed and non-adjustable, and can usually only be used for bridges of specific sizes, or to build bridge-building machines of appropriate sizes according to needs. In other words, the existing bridge-building machines have low expandability and a single and fixed structure, which makes it impossible for them to meet diverse bridge-building needs, especially for bridges with different widths and / or different beam widths.

[0020] To address the technical problems existing in related technologies, this application provides a sliding frame structure for a bridge construction machine. Please refer to [link to relevant documentation]. Figure 1 , Figure 1 This is a schematic diagram of a sliding frame structure of a bridge-building machine provided in this application embodiment. The sliding frame structure of the bridge-building machine is installed on a bridge. Specifically, the sliding frame structure of the bridge-building machine includes: a bridge-building machine body 1, two C-shaped frames 2, and several connecting rods 3. The two C-shaped frames 2 are fixedly installed in parallel on the bridge-building machine body 1, and the connecting rods 3 are installed between the two C-shaped frames 2. The C-shaped frame 2 includes a detachable main frame 21, a horizontal adjusting beam 22, and a vertical adjusting block 23. The detachable main frame 21 includes a vertical frame and a horizontal frame. The horizontal adjusting beam 22 is detachably installed on the horizontal frame, and the vertical adjusting block 23 is detachably installed on the vertical frame.

[0021] In one embodiment, the sliding frame structure of the bridge-building machine consists of a bridge-building machine body 1, two C-shaped frames 2, and several connecting rods 3. The C-shaped frame is an adjustable and expandable structure. Specifically, the C-shaped frame 2 includes a detachable main frame 21, a horizontal adjusting beam 22, and a vertical adjusting block 23. The detachable main frame 21 is a structurally detachable component, meaning it can be disassembled into multiple smaller parts. The detachable main frame 21 as a whole can be divided into vertical and horizontal frames based on its position. The vertical frame 211 is a portion of the detachable main frame 21 in the vertical direction, and the horizontal frame 213 is a portion of the detachable main frame 21 in the horizontal direction. Furthermore, to achieve the adjustable shape of the C-shaped frame 2, the horizontal adjusting beam 22 is detachably mounted on the horizontal frame, and the vertical adjusting block 23 is detachably mounted on the vertical frame. That is, the span in the horizontal direction is increased by the detachable horizontal adjustment beam 22, and the height span in the vertical direction is increased by the detachable vertical adjustment block 23.

[0022] For example, the sliding frame structure of the bridge construction machine is a movable and expandable structure to meet the needs of different bridge widths and beam heights. Specifically, this can be achieved by expanding the sliding frame structure of the bridge construction machine laterally and vertically. Therefore, the sliding frame structure of the bridge construction machine includes a bridge construction machine body 1, two C-shaped frames 2 spanning across the bridge construction machine body 1, and several connecting rods 3 for connecting the two C-shaped frames 2. The C-shaped frames 2 can be expanded laterally and vertically as needed.

[0023] like Figure 2 As shown, Figure 2 This is a cross-sectional schematic diagram of the sliding frame of the bridge-building machine in operation, as provided in the embodiments of this application. At this time, the C-shaped frame 2 is already equipped with a transverse adjusting beam 22 and a vertical adjusting block 23. The specific installation positions can be as follows: Figure 2 As shown, the horizontal adjustment beam 22 and the vertical adjustment block 23 are installed on the horizontal frame and the vertical frame, respectively, to realize the horizontal and vertical span adjustment of the sliding frame structure of the bridge building machine, thereby meeting the operational requirements of different bridge widths and different beam heights.

[0024] It should be noted that the horizontal and vertical frames are part of the structure of the detachable main frame 2. The part of the frame structure in the horizontal direction is defined as the horizontal frame, while the part of the frame structure in the vertical direction is defined as the vertical frame.

[0025] Furthermore, the detachable main frame also includes horizontal and vertical connectors, with the horizontal adjustment beam and the vertical adjustment block connected to its two ends respectively.

[0026] For example, based on the above description, the detachable main frame 21 is a structure that can be disassembled, so that the horizontal adjusting beam 22 and the vertical adjusting block 23 can be installed and fixed on the detachable main frame 21 to form a corresponding C-shaped frame, specifically as follows: Figure 2 As shown. In order to fix the C-shaped frame 2, the detachable main frame 21 in the C-shaped frame 2 also includes a horizontal and vertical connector 211 for connecting the horizontal adjusting beam 22 and the vertical adjusting block 23. The horizontal connecting end of the horizontal and vertical connector 211 is connected to the horizontal adjusting beam 22, and the vertical connecting end of the horizontal and vertical connector 211 is connected to the vertical adjusting block 23.

[0027] In fact, such as Figure 2 As shown, for a C-shaped frame 2, at least one horizontal adjusting beam 22 and two vertical adjusting blocks 23 are fixed and installed, and one of the vertical adjusting blocks 23 is installed on the left side of the C-shaped frame 2 (e.g., Figure 2 (As shown on the left), another vertical adjustment block 23 is installed on the right side of the C-shaped frame 2 (as shown on the left). Figure 2 (As shown on the right).

[0028] In addition, the horizontal and vertical connectors 211 can be divided into a horizontal structure, a middle structure and a vertical structure. The horizontal structure is horizontal and is used to connect with the horizontal adjusting beam 22. The vertical structure is vertical and is used to connect with the vertical adjusting block 23. The middle structure is the structure between the horizontal structure and the vertical structure.

[0029] Furthermore, referring to Figure 3 , Figure 3 This is a schematic diagram of a C-shaped frame provided in an embodiment of this application, such as... Figure 3 As shown, in order to improve the working rigidity of the C-shaped frame 2, the horizontal and vertical connecting parts that connect the horizontal adjusting beam 22 and the vertical adjusting block 23 can be constructed into a specific shape or structure. Specifically, the horizontal and vertical connecting parts are arc-shaped connecting parts.

[0030] In addition, one end of the arc-shaped connector is connected to the connecting flange of the horizontal adjusting beam, and the other end of the arc-shaped connector is connected to the connecting flange of the vertical adjusting block.

[0031] For example, the horizontal and vertical connecting piece 211 is an arc-shaped connecting piece, and its two ends are respectively connected to the connecting end flange of the horizontal adjusting beam and the connecting end flange of the vertical adjusting block. Figure 3 As shown, the horizontal and vertical connecting piece 211 between the horizontal adjusting beam 22 and the vertical adjusting block 23 is an arc-shaped structure, and the two ends of the horizontal and vertical connecting piece 211 are end faces that can be connected to the horizontal adjusting beam 22 and the vertical adjusting block 23 respectively, that is, the connected end faces can fit together.

[0032] Meanwhile, when the horizontal and vertical connecting parts 211 are connected to the horizontal adjusting beam 22 and the vertical adjusting block 23 respectively, they are connected using a flange method. The specific connection state can be as follows: Figure 4 and Figure 5 As shown.

[0033] Furthermore, referring to Figure 1 The sliding frame structure of the bridge-building machine provides suitable conditions for bridge-building operations, such as the requirements of different bridge widths and different beam heights. In order to meet the operational requirements, the sliding frame structure of the bridge-building machine has the beam load-bearing capacity after assembly. Therefore, the detachable main frame also includes load-bearing components. One end of the load-bearing component is connected to the vertical adjustment block, and the other end of the load-bearing component is equipped with a load-bearing platform.

[0034] For example, in the lower structure of the C-shaped frame 2, in order to support the beam, the detachable main frame 21 also includes a load-bearing member 212, one end of which is connected to a vertical adjustment block, and the other end of which is provided with a load-bearing platform to provide a working platform for beam operation.

[0035] Furthermore, load-bearing fasteners are installed on the load-bearing platform.

[0036] When placing corresponding components on the load-bearing platform, to ensure stability, load-bearing fasteners installed on the load-bearing platform can be used to secure the components placed on the two load-bearing platforms of the C-shaped frame, such as... Figure 3 A is shown in the diagram.

[0037] Furthermore, for the sliding frame structure of the entire bridge-building machine, the connecting rods are fixed between the two C-shaped frames to maintain the stability of the C-shaped frames and to provide a better beam pouring platform for bridge-building operations. Therefore, the two ends of the connecting rods are fixed to the two C-shaped frames respectively, and the connecting rods are connected to the flanges of the C-shaped frames.

[0038] Furthermore, the horizontal and vertical connectors include a first horizontal and vertical connector and a second horizontal and vertical connector, and the horizontal adjustment beam is detachably installed between the first horizontal and vertical connector and the second horizontal and vertical connector.

[0039] For example, refer to Figure 3 The two ends of the horizontal adjusting beam 22 are respectively connected to the first horizontal and vertical connecting piece 2111 and the second horizontal and vertical connecting piece 2112 based on flanges.

[0040] Furthermore, on a C-shaped frame, corresponding vertical adjustment blocks can be installed on both the left and right sides. Therefore, the vertical adjustment blocks include a first vertical adjustment block and a second vertical adjustment block. The first vertical adjustment block is detachably installed on the first horizontal-vertical connector at the end away from the horizontal adjustment beam, and the second vertical adjustment block is detachably installed on the second horizontal-vertical connector at the end away from the horizontal adjustment beam.

[0041] For example, refer to Figure 3 The first vertical adjustment block 231 (left side) is installed at one end of the first horizontal and vertical connector 2111, and the other end of the first horizontal and vertical connector 2111 is connected to the horizontal adjustment beam 22. Similarly, the second vertical adjustment block 232 (right side) is installed at one end of the second horizontal and vertical connector 2112, and the other end of the second horizontal and vertical connector 2112 is connected to the horizontal adjustment beam 22.

[0042] Based on the above description and Figure 3 It can be seen that a horizontal adjusting beam and two vertical adjusting blocks are installed on a C-shaped frame. One vertical adjusting block is connected in sequence to the first horizontal-vertical connector, the horizontal adjusting beam, the second horizontal-vertical connector, and the other vertical adjusting block.

[0043] Specifically, based on the clockwise direction, the components are as follows: left-side load-bearing component 212, left-side first vertical adjustment block 231, left-side first horizontal-vertical connector 2111, horizontal adjustment beam 23, right-side second horizontal-vertical connector 2112, right-side second vertical adjustment block 232, and right-side load-bearing component 212.

[0044] Furthermore, for the sliding frame structure of the entire bridge building machine, the two C-shaped frames 2 are arranged parallel to each other, and the connecting rod 3 is installed between the two C-shaped frames 2. The installation method of the connecting rod 3 can be different in different positions. Specifically, the connecting rods connected between the horizontal frames of the C-shaped frame are parallel to each other, and the connecting rods connected between the vertical frames of the C-shaped frame intersect each other.

[0045] For example, refer to Figure 1 The connecting rod 3 connected to the horizontal frame of the C-shaped frame can be installed in parallel, while the connecting rod 3 connected to the vertical frame of the C-shaped frame can be set and installed in an intersecting manner, such as the connecting rod 3 installed between the load-bearing components 212.

[0046] In summary, this application discloses a sliding frame structure for a bridge-building machine, comprising: a bridge-building machine body, two C-shaped frames, and several connecting rods. The two C-shaped frames are fixedly installed in parallel on the bridge-building machine body, and the connecting rods are installed between the two C-shaped frames. Each C-shaped frame includes a detachable main frame, a transverse adjusting beam, and a vertical adjusting block. The detachable main frame includes a vertical frame and a horizontal frame. The transverse adjusting beam is detachably installed on the horizontal frame, and the vertical adjusting block is detachably installed on the vertical frame. By constructing a C-shaped frame that can be adjusted both horizontally and vertically based on the detachable main frame, the transverse adjusting beam, and the vertical adjusting block, the machine can adapt to the different widths and beam heights required for bridges, thus improving its scalability.

[0047] The above provides a detailed description of a safety protection system for an unmanned excavator according to embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The descriptions of the embodiments are merely for the purpose of helping to understand the method and core ideas of this application. Furthermore, those skilled in the art will recognize that, based on the ideas of this application, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of this application. Moreover, those skilled in the art can make various improvements and modifications without departing from the principles of this application, and these improvements and modifications are also considered to be within the scope of protection of this application.

Claims

1. A sliding frame structure for a bridge-building machine, characterized in that, include: The bridge-building machine body comprises two C-shaped frames and several connecting rods. The two C-shaped frames are fixedly installed in parallel on the bridge-building machine body, and the connecting rods are installed between the two C-shaped frames. Each C-shaped frame includes a detachable main frame, a horizontal adjusting beam, and a vertical adjusting block. The detachable main frame includes a vertical frame and a horizontal frame. The horizontal adjusting beam is detachably installed on the horizontal frame, and the vertical adjusting block is detachably installed on the vertical frame.

2. The sliding frame structure of the bridge-building machine as described in claim 1, characterized in that, The detachable main frame also includes horizontal and vertical connectors, with the horizontal adjusting beam and the vertical adjusting block connected to its two ends respectively.

3. The sliding frame structure of the bridge-building machine as described in claim 2, characterized in that, The horizontal and vertical connectors are arc-shaped connectors.

4. The sliding frame structure of the bridge-building machine as described in claim 3, characterized in that, One end of the arc-shaped connector is connected to the connecting end flange of the transverse adjusting beam, and the other end of the arc-shaped connector is connected to the connecting end flange of the vertical adjusting block.

5. The sliding frame structure of the bridge-building machine as described in claim 1, characterized in that, The detachable main frame also includes a load-bearing component, one end of which is connected to the vertical adjustment block, and the other end of which is provided with a load-bearing platform.

6. The sliding frame structure of the bridge-building machine as described in claim 5, characterized in that, The load-bearing platform is equipped with load-bearing fasteners.

7. The sliding frame structure of the bridge-building machine as described in claim 1, characterized in that, The connecting rod is connected to the C-shaped frame flange.

8. The sliding frame structure of the bridge-building machine as described in claim 2, characterized in that, The horizontal and vertical connecting parts include a first horizontal and vertical connecting part and a second horizontal and vertical connecting part, and the horizontal adjusting beam is detachably installed between the first horizontal and vertical connecting part and the second horizontal and vertical connecting part.

9. The sliding frame structure of the bridge-building machine as described in claim 8, characterized in that, The vertical adjustment block includes a first vertical adjustment block and a second vertical adjustment block, wherein the first vertical adjustment block is detachably installed on the first horizontal-vertical connector at one end away from the horizontal adjustment beam, and the second vertical adjustment block is detachably installed on the second horizontal-vertical connector at one end away from the horizontal adjustment beam.

10. The sliding frame structure of the bridge-building machine as described in claim 1, characterized in that, The connecting rods between the horizontal frames of the C-shaped frame are parallel to each other, and the connecting rods between the vertical frames of the C-shaped frame intersect each other.