CN219175002U - Bridge drip structure - Google Patents

Bridge drip structure Download PDF

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Publication number
CN219175002U
CN219175002U CN202320173692.4U CN202320173692U CN219175002U CN 219175002 U CN219175002 U CN 219175002U CN 202320173692 U CN202320173692 U CN 202320173692U CN 219175002 U CN219175002 U CN 219175002U
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China
Prior art keywords
bridge
fixedly connected
sliding groove
bridge body
guide plate
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CN202320173692.4U
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Chinese (zh)
Inventor
刘萍
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Heze Municipal Engineering Management Office
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Heze Municipal Engineering Management Office
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Abstract

The utility model discloses a bridge drip structure, which comprises a bridge body, wherein a first sliding groove is formed in the bridge body, a guide plate is arranged in front of the bridge body, a fixing plate is arranged in a stabilizing frame, four first fastening bolts are connected with internal threads of a fixing strip, a cushion block is fixedly connected with the top of a vertical plate, a transverse strip is fixedly connected with the top of the surface of the vertical plate, and four second fastening bolts are connected with internal threads of a splicing block. According to the bridge, the first sliding groove, the stable frame, the fixing strips, the vertical plates, the cushion blocks, the expansion bolts and the guide plates are matched for use, so that the guide plates are convenient to install and detach subsequently, meanwhile, flowing rainwater on the bridge body can be guided through the guide plates, unnecessary influence on the bridge pier caused by the flowing rainwater on the bridge body is avoided, the guide plates are fixed in the guide plates through fastening structures, direct contact with the rainwater is avoided, and the guide plates are convenient to take out and replace after being damaged due to external factors.

Description

Bridge drip structure
Technical Field
The utility model relates to the technical field of bridges, in particular to a bridge drip structure.
Background
The bridge is generally a structure which is erected on rivers, lakes and seas and can smoothly pass vehicles, pedestrians and the like, is suitable for the traffic industry of modern high-speed development, is also extended to be a building which is erected to span mountain, has poor geology or meets other traffic requirements and is more convenient to pass, the bridge is generally provided with corresponding drip grooves during construction, the effect of guiding rainwater on the bridge is achieved, the rainwater is prevented from flowing to the bridge pier through the bridge in rainy weather, the bridge pier and the bridge are seriously aged after being corroded by the rainwater for a long time, and the attractiveness of the bridge is also influenced, so that the arrangement of the drip grooves of the bridge is necessary.
At present: patent document CN211057587U discloses a bridge drip structure "including the bridge body, bridge body one side is equipped with the drip, the inboard fixed connection bottom plate that is equipped with of drip, the connection bottom plate opposite side is equipped with the protection isolation board, protection isolation board one side is fixed to be equipped with the a connector link, connection bottom plate one side is fixed to be equipped with the B connector link, the a connector link is detachably connected through the buckle with the B connector link, protection isolation board opposite side is fixed to be equipped with T type handle, protection isolation board both ends that keep away from mutually all are fixed on connection bottom plate one side and are equipped with the triangle cushion, triangle cushion one side is all fixed and is equipped with the rubber guide plate, the rubber guide plate opposite side is all fixed and is equipped with the clamp plate. According to the utility model, the protective isolation plate, the connecting bottom plate, the rubber guide plate and the connecting buckle are arranged, so that the installation is convenient, the firmness is high, the guide function is high, and the guide plate is suitable for popularization. "
However, the device can achieve the guiding effect on rainwater on a bridge when in use, but the rubber guide plate is fixed on the triangular cushion block by adopting the fastening bolts, so that the fastening bolts on the surface of the rubber guide plate can be washed by rainwater for a long time when the rubber guide plate guides the rainwater in rainy days, the fastening bolts on the rubber guide plate can generate rust spots after long-time blowing and sunning, if one of the rubber guide plates is damaged due to the influence of external factors, the subsequent staff can not easily unscrew the fastening bolts when replacing the rubber guide plate, the working difficulty is increased, the replacement time of the rubber guide plate is delayed, and the device has certain limitation when in use.
Disclosure of Invention
The present utility model is directed to a bridge drip structure, which solves the above-mentioned problems.
In order to achieve the above purpose, the utility model provides a bridge drip structure, which comprises a bridge body, wherein a first sliding groove is formed in the bridge body, and a guide plate is arranged in front of the bridge body;
the inside sliding connection of first sliding tray has firm frame, the inside of firm frame is provided with the fixed plate, the equal fixedly connected with fixed strip in top and bottom of fixed plate, the inside threaded connection of fixed strip has four first fastening bolts, the fixed surface fixedly connected with riser of fixed plate, the top fixedly connected with cushion of riser, the top fixedly connected with diaphragm on riser surface, the back fixedly connected with concatenation piece of guide plate, the inside threaded connection of concatenation piece has four second fastening bolts, and the surface screw thread of second fastening bolt runs through in the inside of diaphragm.
Preferably, the second sliding groove is formed in the first sliding groove, the top and the bottom of the stabilizing frame are fixedly connected with connecting blocks, and the connecting blocks are slidably connected in the second sliding groove.
Preferably, the internal thread of the stabilizing frame is connected with eight expansion bolts, and the surface threads of the expansion bolts penetrate through the inside of the first sliding groove.
Preferably, the back of guide plate fixedly connected with firm board, the horizontal groove has been seted up to the inside of firm board.
Preferably, the inside of horizontal groove is connected with the turning block through the pivot, the inside threaded connection of turning block has the third fastening bolt.
Preferably, the inner side wall of the rotating block is provided with a sealing gasket, and the surface of the sealing gasket is attached to one side of the bridge body.
Compared with the prior art, the utility model has the following beneficial effects:
1. according to the bridge, the guide plate is convenient to install and detach after being matched with the first sliding groove, the stable frame, the fixing plate, the fixing strips, the vertical plates, the cushion blocks, the expansion bolts and the guide plate, meanwhile, flowing rainwater on the bridge body can be guided by the guide plate, unnecessary influence on the bridge by flowing the rainwater on the bridge pier through the bridge body is avoided, the guide plate fastening structure is fixed inside, direct contact with the rainwater is avoided, and the guide plate is convenient to take out and replace after being damaged due to external factors.
2. According to the utility model, through the collocation of the stabilizing plate, the transverse groove, the rotating block, the sealing gasket and the third fastening bolt, the structure inside the first sliding groove is sealed to a certain extent, the phenomenon that wind blows in rainy weather is avoided, the wind blows into the first sliding groove, and the fastening structure inside the first sliding groove is unnecessarily influenced.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of a baffle structure according to the present utility model;
FIG. 3 is a schematic diagram of a pad structure according to the present utility model;
fig. 4 is a schematic view of the gasket structure of the present utility model.
In the figure: 1. a bridge body; 2. a first sliding groove; 3. a deflector; 4. a second sliding groove; 5. a stabilizing frame; 6. an expansion bolt; 7. a riser; 8. a cushion block; 9. a cross bar; 10. splicing blocks; 11. a fixing plate; 12. a fixing strip; 13. a stabilizing plate; 14. a rotating block; 15. a third fastening bolt; 16. a sealing gasket; 17. and a transverse groove.
Detailed Description
Referring to FIGS. 1-3, a bridge drip configuration;
including bridge body 1, first sliding tray 2 has been seted up to the inside of bridge body 1, the place ahead of bridge body 1 is provided with guide plate 3, the inside sliding connection of first sliding tray 2 has firm frame 5, the inside of firm frame 5 is provided with fixed plate 11, the equal fixedly connected with fixed strip 12 in top and bottom of fixed plate 11, the inside threaded connection of fixed strip 12 has four first fastening bolt, the fixed surface of fixed plate 11 is fixedly connected with riser 7, the top fixedly connected with cushion 8 of riser 7, the top fixedly connected with diaphragm 9 on riser 7 surface, the back fixedly connected with concatenation piece 10 of guide plate 3, the inside threaded connection of concatenation piece 10 has four second fastening bolt, and the surface screw thread of second fastening bolt runs through in the inside of diaphragm 9, the second sliding tray 4 has been seted up to the inside of first sliding tray 2, the equal fixedly connected with connecting block in top and bottom of firm frame 5, and connecting block sliding connection in the inside of second sliding tray 4, the inside threaded connection of firm frame 5 has eight expansion bolts 6, and the surface screw thread of expansion bolts 6 runs through in the inside of first sliding tray 2.
The staff puts the stable frame 5 into the interior of the first sliding groove 2 in advance, meanwhile, the connecting blocks at the top and the bottom of the stable frame 5 slide forward in the interior of the second sliding groove 4, after the stable frame 5 completely enters the interior of the first sliding groove 2, then the staff beats the expansion bolts 6 into the interior of the stable frame 5, so that the expansion bolts 6 beat into the interior of the bridge body 1, then the staff puts the fixing plate 11 into the interior of the stable frame 5, then screws the first fastening bolts into the interior of the fixing strip 12, so that the surface threads of the first fastening bolts penetrate through the interior of the stable frame 5, then the staff inclines the guide plate 3, so that the bottom of the guide plate is attached to the top of the cushion block 8, meanwhile, the splicing block 10 is positioned at the bottom of the transverse strip 9, the staff screws in the second fastening bolt afterwards for horizontal bar 9 is together fixed with concatenation piece 10, thereby make guide plate 3 obtain fixing, during follow-up rainwater weather, the rainwater is through guide plate 3 whereabouts downwards, avoided the rainwater to flow to the pier surface through bridge body 1, through the setting of guide plate 3, make the rainwater that flows on bridge body 1 can be through its water conservancy diversion, avoid flowing to the pier on, through setting up of firm frame 5, first sliding tray 2 and expansion bolts 6, make follow-up fixed plate 11 be convenient for obtain fixedly, through setting up of fixed bar 12, first fastening bolt, fixed plate 11 and riser 7, make cushion 8 be convenient for stably place, play certain supporting role to guide plate 3.
Referring to fig. 1, 2 and 4, a bridge drip configuration;
the back fixedly connected with stabilizing plate 13 of guide plate 3, stabilizing plate 13's inside has been seted up horizontal groove 17, and the inside of horizontal groove 17 is connected with rotor 14 through the pivot, and the inside threaded connection of rotor 14 has third fastening bolt 15, and rotor 14's inside wall is provided with sealed pad 16, and the surface of sealed pad 16 is laminated with one side of bridge body 1.
After the guide plate 3 is installed, the rotating block 14 is rotated through the rotating shaft inside the transverse groove 17, until the sealing gasket 16 on the inner side wall of the rotating block 14 is in a vertical state, a worker screws the third fastening bolt 15 into the rotating block 14, meanwhile, the surface threads of the third fastening bolt 15 penetrate through the inner part of the transverse groove 17, the rotating block 14 is fixed, the rotating block 14 and the sealing gasket 16 shield the first sliding groove 2, partial rainwater infiltration is avoided, the transverse groove 17 is convenient to open through the setting of the stabilizing plate 13, the sealing gasket 16 is convenient to attach to one side of the bridge body 1 through the setting of the transverse groove 17, the rotating shaft and the rotating block 14, and the first sliding groove 2 can be sealed to a certain extent through the setting of the sealing gasket 16, so that rainwater infiltration is avoided.
The theory of operation, the staff is put into the inside of first sliding tray 2 with firm frame 5 in advance, simultaneously firm frame 5 top and bottom's connecting block is slided forward in the inside of second sliding tray 4, firm frame 5 gets into the inside of first sliding tray 2 completely afterwards, then the staff is with expansion bolts 6 beat into the inside of firm frame 5, make expansion bolts 6 beat into the inside of bridge body 1, then the staff is put into the inside of firm frame 5 with fixed plate 11, then screw into the inside of fixed strip 12 with first fastening bolt, make the surface screw thread of first fastening bolt run through in the inside of firm frame 5, then the staff is with guide plate 3 slope place, make its bottom laminating with the top of cushion 8, splice 10 is located the bottom of diaphragm 9 simultaneously, then the staff screws into second fastening bolt, make diaphragm 9 and splice 10 fix together, thereby make guide plate 3 obtain fixedly, during follow-up rainwater, the rainwater passes through guide plate 3 whereabouts, the rainwater has avoided flowing to the bridge body 1 pier surface through.
After the guide plate 3 is installed, the rotating block 14 is rotated through the rotating shaft inside the transverse groove 17 until the sealing gasket 16 on the inner side wall of the rotating block 14 is in a vertical state, a worker screws the third fastening bolt 15 into the rotating block 14, and meanwhile, the surface threads of the third fastening bolt 15 penetrate through the transverse groove 17, so that the rotating block 14 is fixed, and the rotating block 14 and the sealing gasket 16 cover the first sliding groove 2, so that part of rainwater is prevented from penetrating.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. Bridge drip structure, comprising a bridge body (1), characterized in that: a first sliding groove (2) is formed in the bridge body (1), and a guide plate (3) is arranged in front of the bridge body (1);
the inside sliding connection of first sliding tray (2) has firm frame (5), the inside of firm frame (5) is provided with fixed plate (11), the equal fixedly connected with dead strip (12) in top and bottom of fixed plate (11), the inside threaded connection of dead strip (12) has four first fastening bolts, the fixed surface of fixed plate (11) is connected with riser (7), the top fixedly connected with cushion (8) of riser (7), the top fixedly connected with diaphragm (9) of riser (7) surface, the back fixedly connected with piece (10) of deflector (3), the inside threaded connection of piece (10) has four second fastening bolts, and the surface screw thread of second fastening bolt runs through in the inside of diaphragm (9).
2. A bridge drip configuration according to claim 1 wherein: the second sliding groove (4) is formed in the first sliding groove (2), connecting blocks are fixedly connected to the top and the bottom of the stabilizing frame (5), and the connecting blocks are slidably connected to the inside of the second sliding groove (4).
3. A bridge drip configuration according to claim 1 wherein: eight expansion bolts (6) are connected with the inner threads of the stable frame (5), and the surface threads of the expansion bolts (6) penetrate through the inner part of the first sliding groove (2).
4. A bridge drip configuration according to claim 1 wherein: the back of guide plate (3) fixedly connected with firm board (13), horizontal groove (17) have been seted up to the inside of firm board (13).
5. A bridge drip configuration according to claim 4 wherein: the inside of horizontal groove (17) is connected with rotating block (14) through the pivot, the inside threaded connection of rotating block (14) has third fastening bolt (15).
6. A bridge drip configuration according to claim 5 wherein: the inner side wall of the rotating block (14) is provided with a sealing gasket (16), and the surface of the sealing gasket (16) is attached to one side of the bridge body (1).
CN202320173692.4U 2023-02-10 2023-02-10 Bridge drip structure Active CN219175002U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320173692.4U CN219175002U (en) 2023-02-10 2023-02-10 Bridge drip structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320173692.4U CN219175002U (en) 2023-02-10 2023-02-10 Bridge drip structure

Publications (1)

Publication Number Publication Date
CN219175002U true CN219175002U (en) 2023-06-13

Family

ID=86660510

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320173692.4U Active CN219175002U (en) 2023-02-10 2023-02-10 Bridge drip structure

Country Status (1)

Country Link
CN (1) CN219175002U (en)

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