Fabricated arched aqueduct supporting frame

Through modular design and installation mechanism, the prefabricated arched aqueduct support frame can be quickly disassembled and replaced, solving the problem of high maintenance cost of existing miniaturized aqueducts and improving the convenience of individual maintenance.

CN223853289UActive Publication Date: 2026-01-30SINOHYDRO FOUND ENG
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Patent Information

Application Number
CN202520179646.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-05
Publication Date
2026-01-30
Estimated Expiration
2035-02-05

AI Technical Summary

Technical Problem

The maintenance and replacement costs of existing miniaturized aqueducts are high, and the cast-in-place structure makes overall replacement difficult and individual maintenance inconvenient.

Method used

The prefabricated arched aqueduct support frame is adopted. Through modular trough design and installation mechanism, the trough can be quickly disassembled and replaced. The trough can be detachably connected by snap-fit ​​components and foot pedal components.

Benefits of technology

It reduces the cost of tank repair and replacement, simplifies the maintenance process, and improves the convenience of individual maintenance.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223853289U_ABST
    Figure CN223853289U_ABST
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Abstract

The utility model provides an assembly type arch aqueduct supporting frame which comprises an arch rib, buttresses are installed at the bottom of the arch rib, a plurality of framed bent columns are arranged at the top of the arch rib, the tops of the framed bent columns are connected with an aqueduct body through an installation mechanism, and the installation mechanism comprises a connecting base and a slope installation column. A limiting groove is formed in the side edge of the inclined surface mounting column, the connecting seat is mounted at the top of the framed bent column, a mounting seat is mounted at the top of the connecting seat, a clamping assembly matched with the limiting groove is arranged in the mounting seat, and a pedal assembly matched with the clamping assembly is arranged on the outer surface of the mounting seat. Compared with the prior art, the aqueduct has the advantages that the aqueduct structure is formed by splicing the plurality of aqueduct bodies in a modularized mode, so that when a certain section of aqueduct body of the aqueduct is damaged, the aqueduct body at the damaged position can be replaced, and the maintenance cost of the aqueduct body is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to an assembly type arched aqueduct support frame and belongs to the field of aqueduct equipment. BACKGROUND

[0002] An aqueduct, also known as a water crossing bridge, is connected to a channel at both ends and is an overhead water tank for conveying water across rivers, channels, valleys, depressions and roads. It is commonly used for irrigation and water delivery and also for flood and sand discharge. Large aqueducts can also be used for navigation.

[0003] When farmers irrigate farmland, they need to use small aqueducts for water diversion and delivery. However, small aqueducts for agricultural use cannot be fully maintained by individuals, so when a section of the aqueduct is damaged, it needs to be repaired and replaced. However, the existing aqueducts are mostly cast-in-place structures, so they need to be replaced as a whole during maintenance. The cost of dismantling and replacing the aqueduct is high, which is not conducive to individual use. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of the prior art, the utility model aims to provide an assembly type arched aqueduct support frame.

[0005] To achieve the above-mentioned purpose, the utility model is implemented by the following technical scheme:

[0006] An assembly type arched aqueduct support frame comprises an arch rib, a pier is installed at the bottom of the arch rib, a plurality of bent columns are arranged at the top of the arch rib, the top of the bent column is connected to a tank body through a mounting mechanism, the mounting mechanism comprises a connecting seat and an inclined mounting column, a limiting groove is formed in the side of the inclined mounting column, the connecting seat is installed at the top of the bent column, an installation seat is installed at the top of the connecting seat, a clamping assembly is arranged in the installation seat and matched with the limiting groove, a foot pedal assembly is arranged on the outer surface of the installation seat and matched with the clamping assembly.

[0007] Further, the clamping assembly comprises an installation groove formed in the top of the installation seat, the installation groove is matched with the inclined mounting column, a moving groove is formed in the inner wall of each side of the installation groove, the end of the moving groove penetrates to the outer surface of the installation seat, an inclined clamping seat is horizontally and slidably connected in the installation groove, an inclined plate is fixed to the end of the inclined clamping seat, and the inclined end of the inclined plate penetrates to the outer side of the installation seat.

[0008] Further, the clamping assembly further comprises a vertical slot formed on the outside of the mounting seat, a sliding block is slidably connected in the vertical slot, a damping spring connected with the bottom of the sliding block is arranged on the inner bottom of the vertical slot, the end of the sliding block penetrates to the outside of the vertical slot and is connected and fixed with the inclined surface protection seat, and the inclined surface end of the inclined surface plate is extruded with the inclined surface end of the inclined surface protection seat.

[0009] Further, the inclined surface clamping seat is provided with sliding blocks on both sides of the outer surface, sliding grooves matched with the sliding blocks are formed in the installation slot, and the sliding grooves penetrate into the moving slot.

[0010] Further, the foot pedal assembly comprises a sliding groove formed in the bottom of the inclined surface protection seat, a sliding plate is slidably connected in the sliding groove, a plurality of vertical rods are fixed at equal intervals on the bottom of the sliding plate, buffer springs are arranged on the outer surface of the vertical rods and between the bottom of the sliding plate and the inner bottom of the sliding groove, the bottom end of the vertical rod penetrates to the lower side of the inclined surface protection seat and is connected and fixed with the U-shaped frame, and a pedal is hingedly connected in the U-shaped notch of the U-shaped frame through a spring hinge.

[0011] Further, the outer surface of the inclined surface protection seat is provided with a containing groove matched with the pedal in the middle part, and the sliding groove is further provided with a stroke limiting column matched with the sliding plate.

[0012] Further, the inner wall of the containing groove is provided with a magnetic adsorption block one, and the outer surface of the pedal is provided with a magnetic adsorption block two matched with the magnetic adsorption block one.

[0013] The beneficial effects of the utility model are as follows:

[0014] The utility model discloses a plurality of groove body modular splicing into the trough structure, and when the damage of the groove body in a section of the trough occurs, the damaged groove body can be replaced, thereby reducing the maintenance cost of the groove body.

[0015] The utility model discloses the design of the mounting mechanism, so that the connection of the groove body and the bent frame column can be realized in the assembly type, and the groove body replacement work can be carried out when the groove body is damaged.

[0016] The utility model discloses a design through the joint assembly, when installing the groove, the inclined plane installation column of groove bottom is inserted to the installation groove of installation seat top, and the inclined plane end of inclined plane installation column bottom will extrude the inclined plane end of inclined plane joint seat in the installation groove, and then pushes the inclined plane joint seat and moves and is received to the movable groove, and the inclined plane end of inclined plane joint seat moves will push the inclined plane end of inclined plane board to move to the outside of installation seat, and the inclined plane of the process of moving of inclined plane board will push the vertical drop of inclined plane protection seat through extrusion, and the vertical movement of sliding block in the vertical groove is pushed and extruded damping spring when the limit groove on the inclined plane installation column drops to match with the inclined plane joint seat, under the push of damping spring, the inclined plane protection seat resets and rises and pushes the inclined plane board and the inclined plane joint seat reset and moves through the extrusion of inclined plane, and then pushes the inclined plane joint seat and is connected to the limit groove and is connected fixed with the inclined plane installation column and installation seat.

[0017] The utility model discloses a design through the joint assembly, when installing the groove, the inclined plane installation column of groove bottom is inserted to the installation groove of installation seat top, and the inclined plane end of inclined plane installation column bottom will extrude the inclined plane end of inclined plane joint seat in the installation groove, and then pushes the inclined plane joint seat and moves and is received to the movable groove, and the inclined plane end of inclined plane joint seat moves will push the inclined plane end of inclined plane board to move to the outside of installation seat, and the inclined plane of the process of moving of inclined plane board will push the vertical drop of inclined plane protection seat through extrusion, and the vertical movement of sliding block in the vertical groove is pushed and extruded damping spring when the limit groove on the inclined plane installation column drops to match with the inclined plane joint seat, under the push of damping spring, the inclined plane protection seat resets and rises and pushes the inclined plane board and the inclined plane joint seat reset and moves through the extrusion of inclined plane, and then pushes the inclined plane joint seat and is connected to the limit groove and is connected fixed with the inclined plane installation column and installation seat.

[0018] The utility model discloses a design through the joint assembly, when installing the groove, the inclined plane installation column of groove bottom is inserted to the installation groove of installation seat top, and the inclined plane end of inclined plane installation column bottom will extrude the inclined plane end of inclined plane joint seat in the installation groove, and then pushes the inclined plane joint seat and moves and is received to the movable groove, and the inclined plane end of inclined plane joint seat moves will push the inclined plane end of inclined plane board to move to the outside of installation seat, and the inclined plane of the process of moving of inclined plane board will push the vertical drop of inclined plane protection seat through extrusion, and the vertical movement of sliding block in the vertical groove is pushed and extruded damping spring when the limit groove on the inclined plane installation column drops to match with the inclined plane joint seat, under the push of damping spring, the inclined plane protection seat resets and rises and pushes the inclined plane board and the inclined plane joint seat reset and moves through the extrusion of inclined plane, and then pushes the inclined plane joint seat and is connected to the limit groove and is connected fixed with the inclined plane installation column and installation seat. ACCURACY

[0019] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, below will introduce the drawing needed to be used in the embodiment of the utility model, obviously, the drawing in the following description only is some embodiments of the utility model, for the ordinary skilled person in the art, under the premise of not paying the creative labor, still can obtain other drawings according to these drawings.

[0020] Figure 1 It is the total structure schematic diagram of the utility model a kind of assembled arch aqueduct support frame;

[0021] Figure 2 It is the local structure schematic diagram of the utility model a kind of assembled arch aqueduct support frame;

[0022] Figure 3 It is the installation mechanism structure schematic diagram of the utility model a kind of assembled arch aqueduct support frame;

[0023] Figure 4The utility model relates to an installation seat sectional structure schematic diagram of assembly type arched aqueduct support frame,

[0024] Figure 5 The utility model relates to a slope installation column structure schematic diagram of assembly type arched aqueduct support frame,

[0025] Figure 6 The utility model relates to a block, slope joint seat, slope panel connecting structure schematic diagram of assembly type arched aqueduct support frame,

[0026] Figure 7 The utility model relates to a footboard assembly structure schematic diagram of assembly type arched aqueduct support frame,

[0027] Figure 8 The utility model relates to an installation mechanism partial structure schematic diagram of assembly type arched aqueduct support frame,

[0028] Figure 9 The utility model relates to a footboard assembly partial structure schematic diagram of assembly type arched aqueduct support frame.

[0029] In the drawing, 1, support pier;2, arch rib;3, bent column;4, tank body;5, connecting seat;6, installation seat;7, slope installation column;8, installation groove;9, moving groove;10, sliding groove;11, sliding block;12, slope joint seat;13, slope panel;14, limit groove;15, sliding block;16, vertical groove;17, damping spring;18, slope protection seat;19, sliding groove;20, sliding plate;21, vertical rod;22, buffer spring;23, U type frame;24, pedal. DETAILED DESCRIPTION

[0030] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and apparently, the described embodiments only are a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the range of the utility model protection.

[0031] Please refer to Figures 1-9The utility model provides an assembly type arch aqueduct support frame technical scheme, including arch rib 2, the bottom installation of arch rib 2 has support pier 1, the top of arch rib 2 is equipped with a plurality of bent column 3, the top of bent column 3 is connected with tank body 4 through mounting mechanism, the mounting mechanism includes connecting seat 5 and inclined plane mounting column 7, the side of inclined plane mounting column 7 is equipped with the limit slot 14, connecting seat 5 installs at the top of bent column 3, the top of connecting seat 5 is installed with mounting seat 6, be provided with the clamping assembly that cooperates with limit slot 14 in mounting seat 6, the outer surface of mounting seat 6 is provided with the footboard subassembly that cooperates with clamping assembly, through the design of mounting mechanism, can realize the connection of tank body 4 and bent column 3 with assembly type, and then can carry out tank body 4 replacement work when tank body 4 is damaged.

[0032] Referring to Figures 3-6 and Figure 8The clamping assembly comprises a mounting groove 8 opened at the top of the mounting base 6, the mounting groove 8 is matched with the inclined mounting column 7, the two side inner walls of the mounting groove 8 are both provided with a moving groove 9, the end of the moving groove 9 penetrates to the outer surface of the mounting base 6, a inclined clamping seat 12 is transversely and slidingly connected in the mounting groove 8, the end of the inclined clamping seat 12 is fixedly provided with an inclined plate 13, the inclined end of the inclined plate 13 penetrates to the outer side of the mounting base 6, the clamping assembly further comprises a vertical groove 16 opened at the outer side of the mounting base 6, a sliding block 15 is slidingly connected in the vertical groove 16, a damping spring 17 connected with the bottom of the sliding block 15 is mounted at the inner bottom of the vertical groove 16, the end of the sliding block 15 penetrates to the outer side of the vertical groove 16 and is fixedly connected with an inclined protection seat 18, the inclined end of the inclined plate 13 is extruded with the inclined end of the inclined protection seat 18, the outer surface of the inclined clamping seat 12 is provided with a sliding block 11 on both sides, a sliding groove 10 matched with the sliding block 11 is opened in the mounting groove 8, and the sliding groove 10 penetrates into the moving groove 9; through the design of the clamping assembly, when the mounting groove body 4 is installed, the inclined mounting column 7 at the bottom of the groove body 4 is inserted into the mounting groove 8 at the top of the mounting base 6, the inclined end at the bottom of the inclined mounting column 7 extrudes the inclined end of the inclined clamping seat 12 in the mounting groove 8, thereby pushing the inclined clamping seat 12 to move and be accommodated into the moving groove 9, the inclined clamping seat 12 moves at the same time, the inclined end of the inclined plate 13 is pushed to move to the outer side of the mounting base 6, in the process of moving of the inclined plate 13, the inclined protection seat 18 is pushed to vertically descend through the extrusion of the inclined surface, the inclined protection seat 18 descends at the same time, the sliding block 15 is pushed to vertically move in the vertical groove 16 and extrude the damping spring 17, when the limiting groove 14 on the inclined mounting column 7 descends to match with the inclined clamping seat 12, under the pushing of the damping spring 17, the inclined protection seat 18 is reset and rises, and the inclined plate 13 and the inclined clamping seat 12 are reset and moved through the extrusion of the inclined surface, thereby pushing the inclined clamping seat 12 to be clamped into the limiting groove 14, and the inclined mounting column 7 and the mounting base 6 are clamped and fixed together.

[0033] Referring to Figures 7-9The foot pedal assembly comprises a sliding groove 19 opened in the bottom of the inclined protective seat 18, a sliding plate 20 is slidably connected in the sliding groove 19, a plurality of vertical rods 21 are fixed at equal intervals on the bottom of the sliding plate 20, a buffer spring 22 is sleeved on the outer surface of the vertical rod 21 between the bottom of the sliding plate 20 and the inner bottom of the sliding groove 19, the bottom end of the vertical rod 21 penetrates to the lower side of the inclined protective seat 18 and is connected and fixed with a U-shaped bracket 23, and a pedal 24 is hingedly connected in the U-shaped notch of the U-shaped bracket 23 through a spring hinge. Through the design of the foot pedal assembly, when the groove body 4 needs to be replaced due to damage, the limiting of the inclined clamping seat 12 to the limiting groove 14 needs to be released, that is, the pedal 24 is pulled out from the inclined protective seat 18 and rotated to a horizontal state, then the pedal 24 is stepped on, the pedal 24 is lowered to drive the sliding plate 20 to be lowered through the vertical rod 21, the sliding plate 20 is lowered to drive the inclined protective seat 18 to be lowered through the extrusion of the stroke limiting column, and the opening of the moving groove 9 is unblocked, then the inclined plate 13 is buckled to drive the inclined clamping seat 12 to be separated from the limiting groove 14, the clamping and limiting of the inclined mounting column 7 are released, and then the new groove body 4 can be replaced.

[0034] Referring to Figure 8 A containing groove matched with the pedal 24 is formed in the middle of the outer surface of the inclined protective seat 18, and a stroke limiting column matched with the sliding plate 20 is further arranged in the sliding groove 19. Through the design of the stroke limiting column, the movement range of the sliding plate 20 can be limited, so that the sliding plate 20 will not excessively compress the buffer spring 22 when vertically descending.

[0035] A magnetic adsorption block one is arranged on the inner wall of the containing groove, and a magnetic adsorption block two matched with the magnetic adsorption block one is arranged on the outer surface of the pedal 24. Through the design of the magnetic adsorption block two and the magnetic adsorption block one, the pedal 25 can be stored on the outer surface of the inclined protective seat 18 when not in use.

[0036] When the groove body 4 is installed, the inclined mounting column 7 at the bottom of the groove body 4 is inserted into the mounting groove 8 at the top of the mounting base 6, the inclined end at the bottom of the inclined mounting column 7 extrudes the inclined end of the inclined clamping seat 12 in the mounting groove 8, thereby pushing the inclined clamping seat 12 to move and be accommodated in the moving groove 9, the inclined clamping seat 12 moves while pushing the inclined end of the inclined plate 13 to move to the outside of the mounting base 6, the inclined plate 13 moves in the process by the inclined extrusion to push the inclined protection seat 18 to vertically descend, the inclined protection seat 18 descends while pushing the sliding block 15 to vertically move in the vertical groove 16 and extrude the damping spring 17, when the limiting groove 14 on the inclined mounting column 7 descends to match the inclined clamping seat 12, under the pushing of the damping spring 17, the inclined protection seat 18 resets and rises and pushes the inclined plate 13 and the inclined clamping seat 12 to reset and move by the inclined extrusion, thereby pushing the inclined clamping seat 12 to clamp into the limiting groove 14 to clamp and fix the inclined mounting column 7 and the mounting base 6 together, at the same time, when the groove body 4 is damaged and needs to be replaced, at this time, the inclined clamping seat 12 needs to be clamped into the limiting groove 14, that is, the pedal 24 is pried out of the inclined protection seat 18 and rotated to a horizontal state, then the pedal 24 is stepped on, the pedal 24 descends to drive the sliding plate 20 to descend through the vertical rod 21, the sliding plate 20 descends to drive the inclined protection seat 18 to descend through the extrusion stroke limiting column and thereby unblock the opening of the moving groove 9, then the inclined plate 13 is buckled to drive the inclined clamping seat 12 to be separated from the limiting groove 14, thereby unblocking the clamping of the inclined mounting column 7, and then the new groove body 4 can be replaced.

[0037] Although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined appropriately to form other embodiments that those skilled in the art can understand.

Claims

1. A prefabricated arch-shaped aqueduct support frame, characterized by, The utility model provides an arch rib (2), the bottom of arch rib (2) is equipped with buttress (1), the top of arch rib (2) is equipped with a plurality of bent column (3), the top of bent column (3) is connected with tank (4) through mounting mechanism, the mounting mechanism includes connecting seat (5) and inclined surface mounting column (7), the side of inclined surface mounting column (7) is equipped with limiting slot (14), connecting seat (5) is installed in the top of bent column (3), the top of connecting seat (5) is equipped with mounting seat (6), be provided with the clamping assembly of cooperation with limiting slot (14) in mounting seat (6), the outer surface of mounting seat (6) is provided with the foot pedal assembly of cooperation with clamping assembly.

2. The prefabricated arch-shaped aqueduct support frame according to claim 1, characterized in that, The clamping assembly includes the installation groove (8) being opened in the top of mounting seat (6), the installation groove (8) is matched with the inclined surface mounting column (7), the both sides inner wall of installation groove (8) are all equipped with moving groove (9), the end of moving groove (9) penetrates to the outer surface of mounting seat (6), the installation groove (8) is connected with the inclined surface clamping seat (12) of horizontal sliding, the end of inclined surface clamping seat (12) is fixed with inclined surface board (13), the inclined surface end of inclined surface board (13) penetrates to the outside of mounting seat (6).

3. The prefabricated arch-shaped aqueduct support frame according to claim 2, characterized in that, The clamping assembly further includes the vertical slot (16) being opened in the outside of mounting seat (6), the vertical slot (16) is slidably connected with the sliding block (15), the vertical slot (16) is installed with the damping spring (17) at the bottom in the vertical slot (16) is connected with the bottom of sliding block (15), the end of sliding block (15) penetrates to the outside of vertical slot (16) and is connected with inclined surface protection seat (18), the inclined surface end of inclined surface board (13) is extruded together with the inclined surface end of inclined surface protection seat (18).

4. The prefabricated arch-shaped aqueduct support frame according to claim 3, characterized in that, The outer surface both sides of inclined surface clamping seat (12) are equipped with sliding block (11), the inside of installation groove (8) is equipped with the sliding slot (10) of cooperation with sliding block (11), the sliding slot (10) penetrates to the inside of moving groove (9).

5. The prefabricated arch-shaped aqueduct support frame according to claim 4, characterized in that, The foot pedal assembly includes the sliding slot (19) being opened in the bottom of inclined surface protection seat (18), the sliding slot (19) is slidably connected with the sliding plate (20) in the sliding slot (19), the bottom of sliding plate (20) is fixed with a plurality of vertical rods (21) at equal intervals, the outer surface of vertical rod (21) and between the bottom of sliding plate (20) and the bottom in the sliding slot (19) is provided with buffer spring (22), the bottom of vertical rod (21) penetrates to the below of inclined surface protection seat (18) and is connected with U-shaped frame (23), the U-shaped notch in U-shaped frame (23) is hinged with pedal (24) through spring hinge.

6. The prefabricated arch-shaped aqueduct support frame according to claim 5, characterized in that The middle part of the outer surface of the inclined surface protection seat (18) is provided with a receiving groove matched with the pedal (24), and the sliding slot (19) is further provided with a stroke limiting column matched with the sliding plate (20).

7. The prefabricated arch-shaped aqueduct support frame according to claim 6, characterized in that A magnetic adsorption block one is arranged on the inner wall of the receiving groove, and a magnetic adsorption block two is arranged on the outer surface of the pedal (24). The magnetic adsorption block one is matched with the magnetic adsorption block two.