T-beam hydraulic mold moving walking device
By designing a hydraulic formwork moving device for T-beams, which employs a hydraulic motor drive and a support structure with multiple walking mechanisms, the problem of existing devices being unable to meet the conveying requirements of large and heavy T-beams has been solved, achieving stable and efficient conveying results.
Patent Information
- Application Number
- CN202520251396.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2026-03-17
- Estimated Expiration
- 2035-02-18
AI Technical Summary
The existing walking mechanism cannot meet the needs of using large and heavy T-beams.
A T-beam hydraulic formwork moving and walking device was designed, including a bottom formwork assembly, a supporting main beam assembly, an active walking mechanism, a first driven wheel walking mechanism, and a second driven wheel walking mechanism. It is driven by a hydraulic motor. The supporting main beam assembly adopts a three-section structure, and multiple walking mechanisms are distributed at the bottom of the supporting main beam assembly to provide stable support and auxiliary transportation.
It enables stable conveying of large and heavy T-beams, improves the smoothness and efficiency of conveying, and meets the usage requirements.
Smart Images

Figure CN223998669U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of construction equipment technology, specifically to a T-beam hydraulic formwork moving device. Background Technology
[0002] With the development of bridge technology, the application of precast beams is becoming increasingly widespread. Currently, the most common precast beam is the T-beam, which is an important component of bridges and has a wide range of applications. In existing technology, T-beams are obtained by pouring and filling concrete in the construction area. After construction is completed, they are transported to a specific storage area by a traveling device. Due to the large volume and heavy weight of T-beams, the existing traveling devices cannot meet the usage requirements.
[0003] Therefore, improvements to the existing walking device are needed. Utility Model Content
[0004] In view of this, this application provides a hydraulic formwork moving device for T-beams to solve the technical problem that existing moving devices cannot meet the usage requirements due to the large volume and heavy weight of T-beams.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A T-beam hydraulic formwork moving device includes:
[0007] Bottom mold assembly;
[0008] A supporting main beam assembly connected to the lower end of the bottom formwork assembly;
[0009] Several active walking mechanisms are relatively arranged at the bottom of the supporting main beam assembly;
[0010] A plurality of first driven wheel traveling mechanisms are respectively arranged at the bottom of the supporting main beam assembly;
[0011] A plurality of second driven wheel traveling mechanisms, a plurality of active traveling mechanisms, a plurality of first driven wheel traveling mechanisms, and a plurality of second driven wheel traveling mechanisms are arranged at intervals at the bottom of the supporting main beam assembly.
[0012] Furthermore, the supporting main beam assembly includes a pair of main beams one and a pair of main beams two, with the second main beam connected between the pair of main beams one. The active walking mechanism and the first driven wheel walking mechanism are both located at the lower end of the main beam one, and the second driven wheel walking mechanism is located at the lower ends of the main beam one and the main beam two.
[0013] Furthermore, lifting lugs are provided on both the front and rear sides of the main beam.
[0014] Furthermore, the bottom formwork assembly includes a supporting bottom formwork and a pedestal panel, wherein the supporting bottom formwork is connected to the pair of main beams one and two, and the pedestal panel is connected to the supporting bottom formwork.
[0015] Furthermore, both the first main beam and the second main beam have several base plates at their bottoms. The active walking mechanism and the first driven wheel walking mechanism are both connected to the corresponding base plates on the first main beam, and the second driven wheel walking mechanism is connected to the corresponding base plates on the first and second main beams.
[0016] Furthermore, the active walking mechanism includes:
[0017] The first traveling frame is fixedly installed with the corresponding base plate;
[0018] Active traveling wheels mounted on the first traveling frame;
[0019] A walking drive component connected to the active walking wheel drive.
[0020] Furthermore, the first driven wheel traveling mechanism includes:
[0021] The second traveling frame is connected to the corresponding base plate of the main beam by a fixed seat, and the second traveling frame is provided with a pair of clamping plates.
[0022] A pair of driven wheels are provided on the second traveling frame, each separated by an axle, and the locking plate is used to limit the driven wheels.
[0023] Furthermore, the two opposing walking frames are connected by a main shaft.
[0024] Furthermore, the second driven wheel traveling mechanism includes:
[0025] A traveling frame three is connected to the corresponding platform base plate on the main beam one / the main beam two, and a clamping plate is provided on the traveling frame three;
[0026] The clamping plate is used to restrict the driven wheel 2, which is mounted on the walking frame 3 via an axle.
[0027] As can be seen from the above technical solution, the advantages of this utility model are:
[0028] 1. In this application, a supporting main beam assembly is provided at the bottom of the bottom formwork assembly. The supporting main beam assembly adopts a three-section structure, which allows the whole assembly to be freely spliced to meet different usage requirements.
[0029] 2. In this application, multiple active walking mechanisms, multiple first driven wheel walking mechanisms, and multiple second driven wheel walking mechanisms are provided at the bottom of the main beam support assembly. The active walking mechanism is driven by a hydraulic motor, which can drive the movement of a heavier T-beam compared to a transmission motor, thus making it more convenient to use. The multiple first driven wheel walking mechanisms and multiple second driven wheel walking mechanisms are distributed at the bottom of the main beam support assembly, which can provide stable and reliable support and auxiliary conveying functions for the main beam support assembly, thereby meeting the usage requirements. Attached Figure Description
[0030] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute an undue limitation of this application.
[0031] Figure 1 This is a schematic diagram of the structure of this application.
[0032] Figure 2 for Figure 1 Side view.
[0033] Figure 3 for Figure 1 A magnified view of part A.
[0034] Figure 4 This is a structural schematic diagram of the main beam of this application.
[0035] Figure 5 This is a structural schematic diagram of the second main beam of this application.
[0036] Figure 6 for Figure 4 View B.
[0037] Figure 7 for Figure 4 The CC view.
[0038] Figure 8 for Figure 4 DD view.
[0039] Figure 9 This is a schematic diagram of the active walking mechanism of this application.
[0040] Figure 10 for Figure 9 Side view.
[0041] Figure 11 This is a schematic diagram of the structure of the first driven wheel traveling mechanism of this application.
[0042] Figure 12 for Figure 11 Side view.
[0043] Figure 13 This is a schematic diagram of the second driven wheel traveling mechanism of this application.
[0044] Figure 14 This is a schematic diagram illustrating the scenario in which this application is used.
[0045] Explanation of reference numerals in the attached drawings: 1-Bottom formwork assembly; 11-Supporting bottom formwork; 12-Platform panel; 121-Lifting hole; 2-Supporting main beam assembly; 21-Main beam one; 211-First end plate; 22-Main beam two; 221-Second end plate; 23-Bolt; 24-Nut; 25-Lifting lug; 3-Platform base plate; 4-Web plate; 5-Active traveling mechanism; 51-First traveling frame; 52-Traveling drive component; 53-Gear reduction gear. Components; 54-Active walking wheel; 6-First driven wheel walking mechanism; 61-Walking frame two; 62-Fixed seat; 63-Main shaft; 64-Driven wheel one; 65-Wheel axle; 66-Clamping plate; 67-Screw; 7-Second driven wheel walking mechanism; 71-Walking frame three; 72-Driven wheel two; 73-Firming plate; 100-Foundation; 200-Railway; 400-Top support; 500-Side formwork assembly; 600-Precast T-beam. Detailed Implementation
[0046] To make the objectives, technical solutions, and advantages of this application clearer, the application will be further described in detail below with reference to the embodiments and accompanying drawings. Here, the illustrative embodiments and their descriptions are used to explain this application, but are not intended to limit it.
[0047] refer to Figures 1 to 14 ,like Figure 1 As shown, this embodiment provides a T-beam hydraulic formwork moving and walking device, including: a bottom formwork assembly 1, a supporting main beam assembly 2, a plurality of active walking mechanisms 5, a plurality of first driven wheel walking mechanisms 6, and a plurality of second driven wheel walking mechanisms 7. The supporting main beam assembly 2 is disposed at the lower end of the bottom formwork assembly 1; the plurality of active walking mechanisms 5 and the plurality of first driven wheel walking mechanisms 6 are respectively disposed on the front and rear sides of the bottom of the supporting main beam assembly 2, and the plurality of active walking mechanisms 5 are located between the plurality of first driven wheel walking mechanisms 6; the plurality of second driven wheel walking mechanisms 7 are respectively disposed on the front and rear sides of the bottom of the supporting main beam assembly 2, and the plurality of second driven wheel walking mechanisms 7 are located between the plurality of active walking mechanisms 5.
[0048] like Figure 2 , Figure 4 and Figure 5As shown, the supporting main beam assembly 2 includes a pair of main beams 1 21 and 22. Main beam 22 is connected between the pair of main beams 1 21. The active walking mechanism 5 and the first driven wheel walking mechanism 6 are both located at the lower end of main beam 1 21, and the second driven wheel walking mechanism 7 is located at the lower end of both main beam 1 21 and main beam 22. Since the active walking mechanism 5 and the first driven wheel walking mechanism 6 are both close to the far end of main beam 1 21 (i.e., the end that is farthest from main beam 22), they can support the far end of main beam 1 21. Therefore, by setting the second driven wheel walking mechanism 7 at the inner end of main beam 1 21 and the bottom of main beam 22, the near end of main beam 1 21 and the bottom of main beam 22 can be supported. This not only ensures the stability of the support between main beam 1 21 and main beam 22 and improves the straightness between them, but also makes the overall movement of the supporting main beam assembly 2 more stable during transportation.
[0049] Specifically, both main beam 1 21 and main beam 2 22 have several base plates 3 at their bottoms. The active walking mechanism 5 and the first driven wheel walking mechanism 6 are connected to the corresponding base plates 3 on main beam 1 21, and the second driven wheel walking mechanism 7 is connected to the corresponding base plates 3 on main beam 1 21 and main beam 2 22.
[0050] like Figure 7 As shown, lifting lugs 25 are provided on both the front and rear sides of the main beam 21 so that the main beam assembly 2 can be lifted as a whole after the main beam 21 and the main beam 22 are spliced together.
[0051] like Figure 8 As shown, web plates 4 are also provided on the front and rear sides of the main beam 21 to improve the connection strength of the main beam 21.
[0052] like Figure 3 As shown, a first end plate 211 is provided at one end of the main beam 21, and a second end plate 221 is provided at both ends of the main beam 22. The second end plates 221 are connected to the corresponding first end plates 211 by bolts 23 and locked in place by nuts 24, so as to splice the two main beams 21 together with one main beam 22. This allows the main beams 21 and 22 to be freely spliced to meet different usage requirements.
[0053] like Figure 6 As shown, the main beam 21 and the main beam 22 are connected by I-beams and connecting plates to form the main beam assembly 2, and the bottom formwork 11 is welded to the top of the I-beams.
[0054] like Figure 1 As shown, the bottom formwork assembly 1 includes a supporting bottom formwork 11 and a pedestal panel 12. The supporting bottom formwork 11 is connected to a pair of main beams 21 and 22, and the pedestal panel 12 is connected to the supporting bottom formwork 11.
[0055] Preferably, the pedestal panel 12 is provided with a plurality of lifting holes 121 so as to allow the bottom formwork assembly 1 to be lifted and installed with the supporting main beam assembly 2.
[0056] like Figure 6 As shown, the supporting bottom mold 11 is made of two channel steel plates. The front and rear sides of the pedestal panel 12 are connected to the two channel steel plates through side plates to obtain the supporting bottom mold 11. In addition, the bottom of each of the two channel steel plates is provided with a base plate to fix it to the corresponding I-beam.
[0057] like Figure 9 and Figure 10 As shown, the active walking mechanism 5 includes: a first walking frame 51, an active walking wheel 54, and a walking drive component 52. The first walking frame 51 is fixedly installed on the corresponding base plate 3; the active walking wheel 54 is installed on the first walking frame 51; the walking drive component 52 is connected to the active walking wheel 54 through a gear reducer 53. The walking drive component 52 is a hydraulic motor, which has the characteristics of sufficient power and large output torque, making it easier to transport heavy T-beams. In addition, for ease of use, the output end of the gear reducer 53 is connected to the active walking wheel 54 through a gear set with a transmission function to achieve the transmission function. That is, the hydraulic motor drives the gear set to rotate through the gear reducer 53, and the gear set drives the active walking wheel 54 to rotate, thereby realizing the movement of the active walking wheel 54.
[0058] like Figure 11 and Figure 12 As shown, the first driven wheel traveling mechanism 6 includes: a second traveling frame 61 and a pair of driven wheels 64. The second traveling frame 61 is connected to the corresponding base plate 3 on the main beam 21 via a fixed seat 62. The pair of driven wheels 64 are spaced apart on the second traveling frame 61 via wheel axles 65. The second traveling frame 61 is provided with two locking plates 66 by screws 67 that can be inserted into the corresponding wheel axles 65, so that when the first driven wheel traveling mechanism 6 moves, the wheel axles 65 do not rotate and only the pair of driven wheels 64 rotate.
[0059] like Figure 12 As shown, the two opposing walking frames 61 are connected by a main shaft 63 so that the two opposing first driven wheel walking mechanisms 6 can walk synchronously.
[0060] like Figure 12 and Figure 13 As shown, the second driven wheel traveling mechanism 7 includes: a traveling frame 3 71 and a driven wheel 2 72. The traveling frame 3 71 is connected to the corresponding base plate 3 on the main beam 1 21 / main beam 2 22. The driven wheel 2 72 is mounted on the traveling frame 3 71 via a wheel axle 65. A locking plate 66 that can be locked into the wheel axle 65 is provided on the traveling frame 3 71 via screws 67, so that the wheel axle 65 does not rotate and only the driven wheel 2 72 rotates when the second driven wheel traveling mechanism 7 moves.
[0061] Preferably, stiffening plates 73 are provided on both the front and rear sides of the walking frame 3 71 to increase the overall connection strength of the walking frame 3 71.
[0062] like Figure 14 As shown, a downwardly recessed travel groove is provided on the foundation 100. Two sets of parallel tracks 200 are provided in the travel groove. The active travel wheel 54, the driven wheel 1 64, and the driven wheel 2 72 all travel on the tracks 200. Two sets of top supports 400 are provided on the foundation 100. Each set of top supports 400 is provided with a side mold assembly 500. This application is placed in the travel groove. A T-shaped space is formed between the top of the bottom mold assembly 1 and the two side mold assemblies 500. The T-beam is poured and filled in this T-shaped space. After the pouring and filling are completed, the travel drive 52 is started, which drives the active travel wheel 54 to rotate. Then the first driven wheel travel mechanism 6 and the second driven wheel travel mechanism 7 move in coordination with the active travel wheel 54, thereby realizing the transportation of the T-beam.
[0063] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to the embodiments of this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A hydraulic walking device for T-beam form moving, characterized in that, Include: The bottom die assembly (1); Supporting main beam assembly (2) connected to the lower end of the bottom die assembly (1); A plurality of active walking mechanisms (5) are arranged opposite to the bottom of the supporting main beam assembly (2); A plurality of first driven wheel walking mechanisms (6) are arranged opposite to the bottom of the supporting main beam assembly (2); A plurality of second driven wheel walking mechanisms (7) are arranged opposite to the bottom of the supporting main beam assembly (2), and a plurality of active walking mechanisms (5), a plurality of first driven wheel walking mechanisms (6) and a plurality of second driven wheel walking mechanisms (7) are arranged at intervals.
2. The T-beam hydraulic shift walking device according to claim 1, wherein, The supporting main beam assembly (2) comprises a pair of main beams (21) and a main beam (22), the main beam (22) is connected between the pair of main beams (21), the active walking mechanism (5) and the first driven wheel walking mechanism (6) are arranged at the lower end of the main beam (21), and the second driven wheel walking mechanism (7) is arranged at the lower end of the main beam (21) and the main beam (22).
3. The T-beam hydraulic shift walking device of claim 2, wherein, The front and back sides of the main beam (21) are provided with lifting lugs (25).
4. The T-beam hydraulic shift walking device of claim 2, wherein, The bottom die assembly (1) comprises a supporting bottom die (11) and a pedestal panel (12), the supporting bottom die (11) is connected to the pair of main beams (21) and the main beam (22), and the pedestal panel (12) is connected to the supporting bottom die (11).
5. The T-beam hydraulic shift walking device of claim 2, wherein, The bottom of the main beam (21) and the main beam (22) is provided with a plurality of pedestal bottom plates (3), the active walking mechanism (5) and the first driven wheel walking mechanism (6) are connected with the corresponding pedestal bottom plate (3) on the main beam (21), and the second driven wheel walking mechanism (7) is connected with the corresponding pedestal bottom plate (3) on the main beam (21) and the main beam (22).
6. The T-beam hydraulic shift walking device of claim 5, wherein, The active walking mechanism (5) comprises: The first walking frame (51) is fixedly installed with the corresponding pedestal bottom plate (3); The active walking wheel (54) is installed on the first walking frame (51); The walking driving part (52) is drivingly connected with the active walking wheel (54).
7. The T-beam hydraulic shift walking device of claim 5, wherein, The first driven wheel walking mechanism (6) comprises: The walking frame two (61) is connected with the corresponding pedestal bottom plate (3) on the main beam (21) through the fixing seat (62), and a pair of clamping plates (66) are arranged on the walking frame two (61); A pair of driven wheels one (64) are arranged at intervals on the walking frame two (61) through the wheel shaft (65), and the clamping plate (66) is used for limiting the driven wheel one (64).
8. The T-beam hydraulic shift walking device of claim 7, wherein, The main shaft (63) is connected between the front and rear opposite two walking frames two (61).
9. The T-beam hydraulic shift walking device, as claimed in claim 5, wherein, The second driven wheel walking mechanism (7) comprises: The walking frame three (71) is connected with the corresponding pedestal bottom plate (3) on the main beam (21) / the main beam (22), and the clamping plate (66) is arranged on the walking frame three (71); The driven wheel two (72) is installed on the walking frame three (71) through the wheel shaft (65), and the clamping plate (66) is used for limiting the driven wheel two (72).