CN211973404U - Steel dam gate side control room structure - Google Patents

Steel dam gate side control room structure Download PDF

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Publication number
CN211973404U
CN211973404U CN202020427783.2U CN202020427783U CN211973404U CN 211973404 U CN211973404 U CN 211973404U CN 202020427783 U CN202020427783 U CN 202020427783U CN 211973404 U CN211973404 U CN 211973404U
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China
Prior art keywords
gate
gate pier
hole
supporting rod
frame
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CN202020427783.2U
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Chinese (zh)
Inventor
燕辉
王予蜀
张轶浩
张颖
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Zhengzhou Water Conservancy Project Supervision Center
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Zhengzhou Water Conservancy Project Supervision Center
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Priority to CN202020427783.2U priority Critical patent/CN211973404U/en
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Abstract

The utility model relates to a steel dam floodgate side control room structure, it includes the floodgate mound, be provided with the stair that accesss to floodgate mound bottom in the floodgate mound, the last top surface of floodgate mound is provided with the top cap, the top cap lid is established on the floodgate mound to the articulated casement that is provided with on the top cap, seted up the business turn over hole on the top cap, business turn over hole site in the top of stair top, the position in business turn over hole is closed to the casement lid, the top cap includes frame and printing opacity glass, and the frame is fixed on the floodgate mound, and printing opacity glass fixes in the. The utility model discloses have the effect that makes things convenient for the staff to enter into and carry out the maintenance in the gate pier.

Description

Steel dam gate side control room structure
Technical Field
The utility model belongs to the technical field of a steel dam floodgate's technique and specifically relates to a steel dam floodgate side control room structure is related to.
Background
The steel dam gate is a low-water head hydraulic structure built on the river channel and canal and using gate to control flow and regulate water level. The closing of the gate can block flood, damp or raise the upstream water level so as to meet the requirements of irrigation, power generation, shipping, aquatic products, environmental protection, industrial and domestic water and the like; the gate is opened, flood, waterlogging, water or waste water can be released, and water can be supplied to downstream river channels or channels. In water conservancy projects, the sluice is widely applied as a building for retaining water, draining water or taking water.
Application publication No. is CN102995611A discloses a hydraulic control upset steel dam gate in its both sides are provided with the mound, and the inside of mound is provided with hydraulic hoist, installs the connecting rod on the hydraulic hoist, and the connecting rod is connected with the pivot, and the pivot is fixed on the gate, through hydraulic hoist push connecting rod, the connecting rod drives the pivot and rotates to make the gate do fan-shaped motion, in order to reach the purpose of control water level.
However, in the structure, if equipment in the gate pier is damaged, workers cannot enter the gate pier to maintain the gate pier.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a steel dam floodgate side control room structure, it has the effect that makes things convenient for the staff to enter into and carry out the maintenance in the floodgate mound.
The above object of the present invention is achieved by the following technical solutions:
the utility model provides a steel dam floodgate side control room structure, includes the floodgate mound, be provided with the stair that accesss to floodgate mound bottom in the floodgate mound, the last top surface of floodgate mound is provided with the top cap, the top cap lid is established on the floodgate mound to the articulated casement that is provided with on the top cap, has seted up the business turn over hole on the top cap, and the business turn over hole is located the top at stair top, and the casement lid closes the position in business turn over hole, the top cap includes frame and printing opacity glass, and the frame is fixed on the floodgate mound, and printing.
Through adopting above-mentioned technical scheme, during the use, when the staff need enter into the inside of gate pier, open the casement from the top cap from the upper portion of top cap to the top of stair can be entered into from the position in business turn over hole to the work, and enter into the bottom of gate pier along stair, and because the top cap includes printing opacity glass, printing opacity glass makes the inside that the staff can observe the gate pier more clearly, thereby makes things convenient for the staff to enter into and maintains in the gate pier.
The utility model discloses further set up to: the window sash is provided with a supporting device, the supporting device comprises an upper supporting rod and a lower supporting rod, one end of the upper supporting rod is hinged to the inner side surface of the window sash, the other end of the upper supporting rod is hinged to one end of the lower supporting rod, one end, far away from the upper supporting rod, of the lower supporting rod is hinged to the frame, and a positioning assembly is arranged between the upper supporting rod and the lower supporting rod.
By adopting the technical scheme, the upper support rod is hinged with the lower support rod, the upper support rod and the lower support rod rotate relatively in the process of opening the window sash, and when the upper support rod and the lower support rod rotate relatively to the position which is positioned on the same straight line, the position of the upper support rod and the position of the lower support rod are locked by the positioning assembly arranged between the upper support rod and the lower support rod, so that the window sash is in an opening state.
The utility model discloses further set up to: the positioning assembly comprises a bolt, a guide hole is formed in the lower supporting rod along the length direction of the lower supporting rod, the bolt is in sliding fit with the guide hole, a positioning hole is formed in the upper supporting rod along the length direction of the upper supporting rod, when the lower supporting rod and the upper supporting rod are located on the same straight line, the positioning hole coincides with the central line of the guide hole, and the bolt can be inserted into the positioning hole.
By adopting the technical scheme, when the upper supporting rod and the lower supporting rod are positioned on the same straight line, the bolt is inserted into the positioning hole from the guide hole, so that the upper supporting rod and the lower supporting rod are locked by the bolt, and the bolt is positioned in the positioning hole and the guide hole and is firmer in positioning the upper supporting rod and the lower supporting rod.
The utility model discloses further set up to: the positioning assembly further comprises a spring and a disc arranged on the upper supporting rod, the center line of the disc coincides with the hinge axis of the upper supporting rod and the hinge axis of the lower supporting rod, the spring is located in the guide hole, one end of the spring is abutted to one end, far away from the upper supporting rod, of the bolt, and the other end of the spring is abutted to the bottom of the guide hole.
Through adopting above-mentioned technical scheme, install the disc on last branch to the disc central line coincides with the articulated axis of last branch and lower branch, when rotating last branch, but the bolt butt on the lateral wall of disc makes things convenient for the bolt to enter into the locating hole under the effort of spring.
The utility model discloses further set up to: the lower supporting rod is provided with a gear, the side wall of the bolt is provided with a plurality of teeth, the teeth are evenly distributed along the length direction of the bolt and meshed with the gear, and the gear is provided with a rotating handle.
Through adopting above-mentioned technical scheme, the staff drives gear revolve through rotating the twist grip, and the gear makes the bolt slide along the guiding hole to make the bolt deviate from in the locating hole, and then make upper strut and lower strut rotate relatively.
The utility model discloses further set up to: the frame is provided with an air vent, the air vent is located below the light-transmitting glass, the air vent is horizontally arranged on the side of the frame, one end of the air vent is communicated with the inside of the gate pier, and the other end of the air vent is communicated with the outside of the gate pier.
Through adopting above-mentioned technical scheme, set up the air vent on the frame, when having moisture in the gate pier, flow out the outside of gate pier through the air vent.
The utility model discloses further set up to: the inside of gate pier is provided with the air exhauster, and the air outlet of air exhauster is connected with the blast pipe, and the gate pier is worn out and is buckled downwards from glass's top to the one end that the air exhauster was kept away from to the blast pipe.
Through adopting above-mentioned technical scheme, the inside of gate pier sets up the air exhauster, leads to the outside of gate pier through the blast pipe with the air outlet of air exhauster, can carry out quick ventilation in to the gate pier.
The utility model discloses further set up to: the inside of gate pier is provided with the bracing piece, and the one end of bracing piece is fixed on the inner wall of gate pier, and the other end extends and fixes on the frame to the middle part of frame.
Through adopting above-mentioned technical scheme, the inside of gate pier sets up the bracing piece, and the bracing piece supports at the middle part of frame, makes the bearing capacity of frame improve.
To sum up, the utility model discloses a following at least one useful technological effect:
1. when workers need to enter the interior of the gate pier, the window sashes are opened from the top cover from the upper portion of the top cover, so that the workers can enter the top of the stair from the position of the access hole and enter the bottom of the gate pier along the stair, and the top cover comprises the light-transmitting glass, so that the workers can observe the interior of the gate pier more clearly, and the workers can conveniently enter the gate pier for maintenance;
2. when the upper support rod and the lower support rod are positioned on the same straight line, the bolt is inserted into the positioning hole from the guide hole, so that the bolt locks the upper support rod and the lower support rod, and the bolt is positioned in the positioning hole and the guide hole, so that the upper support rod and the lower support rod are positioned more firmly;
3. the disc is arranged on the upper supporting rod, the central line of the disc coincides with the hinge axis of the upper supporting rod and the hinge axis of the lower supporting rod, and when the upper supporting rod is rotated, the bolt can be abutted against the side wall of the disc, so that the bolt can conveniently enter the positioning hole under the acting force of the spring.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the internal structure of the gate pier;
fig. 3 is a schematic structural view of the support device.
In the figure, 1, a gate pier; 2. a top cover; 21. a frame; 22. a light-transmitting glass; 23. an inlet and outlet hole; 24. a vent hole; 3. a staircase; 4. a window sash; 5. a support bar; 6. an exhaust fan; 61. an exhaust pipe; 7. a support device; 71. an upper support rod; 72. a lower support rod; 73. a disc; 74. a positioning assembly; 741. a bolt; 7411. teeth; 742. a spring; 743. a guide hole; 744. positioning holes; 745. a gear; 746. the handle is rotated.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, for the utility model discloses a steel dam floodgate side control room structure, including two floodgate piers 1, the inside of floodgate pier 1 is hollow structure, all is provided with the headstock gear in two floodgate piers 1, is provided with top cap 2 at the top of floodgate pier 1, and top cap 2 lid is established on the last top surface of floodgate pier 1 to seal floodgate pier 1, prevent that the rainwater from falling into in the floodgate pier 1. Still be provided with stair 3 in the inside of gate pier 1, the lower extreme of stair 3 leads to the bottom of gate pier 1, and the upper end position department that is located stair 3 on top cap 2 has seted up business turn over hole 23, is provided with casement 4 in the business turn over hole 23, and casement 4 can be opened, makes the staff can enter into the bottom of gate pier 1 along stair 3, overhauls the headstock gear in the gate pier 1.
Referring to fig. 1 and 2, the top cover 2 includes a frame 21 and a transparent glass 22, the frame 21 forms a multi-well lattice, the transparent glass 22 is installed in the lattice of the frame 21, the frame 21 is fixed on the gate pier 1, a support rod 5 is arranged inside the gate pier 1, one end of the support rod 5 is fixed on the inner wall of the gate pier 1, the other end extends to the middle of the frame 21 and is fixed on the frame 21, and the bearing capacity of the frame 21 can be increased through the support rod 5. The light-transmitting glass 22 can enable external natural light to irradiate the interior of the gate pier 1, reduce the moisture in the interior of the gate pier 1, and enable the opening and closing equipment in the interior of the gate pier 1 to be longer in service life. The frame 21 is provided with a vent hole 24, the vent hole 24 is horizontally arranged on the side part of the frame 21, the vent hole 24 is positioned below the transparent glass 22, one end of the vent hole 24 is communicated with the inside of the gate pier 1, and the other end of the vent hole 24 is communicated with the outside of the gate pier 1, so that after natural light irradiates the inside of the gate pier 1, hot air can flow out of the vent hole 24 to the outside of the gate pier 1. Still be provided with air exhauster 6 in gate pier 1's inside, the air outlet of air exhauster 6 is connected with blast pipe 61, and gate pier 1 is worn out from glass's top to the one end that air exhauster 6 was kept away from to blast pipe 61, and the one end bending type U-shaped structure that air exhauster 6 was kept away from to blast pipe 61 makes the vertical downwards of the one end that air exhauster 6 was kept away from to blast pipe 61, avoids the rainwater to enter into in the blast pipe 61.
Referring to fig. 2 and 3, one side of the window sash 4 is hinged to the frame 21, two supporting devices 7 are arranged on the window sash 4, and the two supporting devices 7 are installed between the inside of the window sash 4 and the frame 21, so that the window sash 4 can be opened by the supporting devices 7, and workers can conveniently enter the gate pier 1. The support means 7 comprises an upper support rod 71 and a lower support rod 72, one end of the upper support rod 71 is provided with a disc 73, one end of the upper support rod 71 provided with the disc 73 is hinged with one end of the lower support rod 72, the hinge axis of the upper support rod 71 and the lower support rod 72 is coincident with the central line of the disc 73, one end of the upper support rod 71 far away from the lower support rod 72 is hinged on the inner side surface of the window sash 4, and one end of the lower support rod 72 far away from the upper support rod 71 is hinged on the frame 21. When the upper support rod 71 and the lower support rod 72 are rotated to be in the same straight line, the window sash 4 is in an open state; when the window sash 4 is in the closed state, the upper support rod 71 and the lower support rod 72 are in the folded state.
Referring to fig. 3, a positioning assembly 74 is provided at the connection between the upper support rod 71 and the lower support rod 72, and the upper support rod 71 and the lower support rod 72 are locked at the open position of the window sash 4 by the positioning assembly 74, so that the operator can conveniently enter the gate pier 1. The positioning assembly 74 includes a latch 741 and a spring 742, a guide hole 743 is formed in the lower support rod 72 along the length direction of the lower support rod 72, the latch 741 is inserted into the guide hole 743 in a sliding fit manner, the length direction of the latch 741 is parallel to the length direction of the lower support rod 72, and one end of the latch 741 can extend out from one end of the guide hole 743 close to the upper support rod 71; the spring 742 is located in the guide hole 743, and one end of the spring 742 abuts an end of the latch 741 away from the upper rod 71 and the other end abuts a bottom of the guide hole 743. A positioning hole 744 is formed in the upper support rod 71, the length direction of the positioning hole 744 penetrates through the disc 73 along the length direction of the upper support rod 71, when the upper support rod 71 and the lower support rod 72 rotate to the same straight line, the positioning hole 744 and the guide hole 743 are in the same straight line, so that the end of the plug pin 741 can be inserted into the positioning hole 744 under the action of the spring 742, the plug pin 741 is connected between the upper support rod 71 and the lower support rod 72, and the upper support rod 71 and the lower support rod 72 are in the same straight line.
Referring to fig. 3, in order to facilitate the worker to open the plug 741, a plurality of teeth 7411 are formed on a side wall of the plug 741, the teeth 7411 are uniformly distributed along the length direction of the plug 741, a gear 745 is rotatably connected to the lower supporting rod 72, the gear 745 is engaged with the teeth 7411 of the plug 741, and a rotating handle 746 is provided on the gear 745. When the worker needs to take out the plug 741 from the positioning hole 744, the rotating handle 746 is rotated to drive the plug 741 to slide along the length direction of the guide hole 743, so that the plug 741 enters the guide hole 743, and the upper support rod 71 and the lower support rod 72 can rotate relatively.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. The utility model provides a steel dam floodgate side control room structure, includes gate pier (1), its characterized in that: be provided with stair (3) that lead to gate pier (1) bottom in gate pier (1), the last top surface of gate pier (1) is provided with top cap (2), top cap (2) lid is established on gate pier (1) to the articulated casement (4) that is provided with on top cap (2), seted up business turn over hole (23) on top cap (2), business turn over hole (23) are located the top at stair (3) top, and position in business turn over hole (23) is closed in casement (4) lid, top cap (2) include frame (21) and printing opacity glass (22), and frame (21) are fixed on gate pier (1), and printing opacity glass (22) are fixed in the sash of frame (21).
2. The steel dam gate-side control room structure of claim 1, wherein: the window sash (4) is provided with a supporting device (7), the supporting device (7) comprises an upper supporting rod (71) and a lower supporting rod (72), one end of the upper supporting rod (71) is hinged to the inner side surface of the window sash (4), the other end of the upper supporting rod is hinged to one end of the lower supporting rod (72), one end, far away from the upper supporting rod (71), of the lower supporting rod (72) is hinged to the frame (21), and a positioning assembly (74) is arranged between the upper supporting rod (71) and the lower supporting rod (72).
3. The steel dam gate-side control room structure of claim 2, wherein: locating component (74) includes bolt (741), guiding hole (743) has been seted up along the length direction of lower branch (72) in lower branch (72), and bolt (741) sliding fit is in guiding hole (743), locating hole (744) has been seted up along the length direction of last branch (71) in last branch (71), when lower branch (72) and last branch (71) are in same straight line, locating hole (744) and the coincidence of the central line of guiding hole (743), and bolt (741) can insert in locating hole (744).
4. The steel dam gate-side control room structure of claim 3, wherein: the positioning assembly (74) further comprises a spring (742) and a disc (73) mounted on the upper support rod (71), the center line of the disc (73) is coincident with the hinge axis of the upper support rod (71) and the lower support rod (72), the spring (742) is positioned in the guide hole (743), one end of the spring (742) abuts against one end of the bolt (741) far away from the upper support rod (71), and the other end of the spring abuts against the bottom of the guide hole (743).
5. The steel dam gate-side control room structure of claim 4, wherein: the lower supporting rod (72) is provided with a gear (745), the side wall of the inserted pin (741) is provided with a plurality of teeth (7411), the teeth (7411) are uniformly distributed along the length direction of the inserted pin (741), the teeth (7411) are meshed with the gear (745), and the gear (745) is provided with a rotating handle (746).
6. The steel dam gate-side control room structure of claim 1, wherein: the frame (21) is provided with a vent hole (24), the vent hole (24) is located below the transparent glass (22), the vent hole (24) is horizontally arranged on the side of the frame (21), one end of the vent hole (24) is communicated with the inside of the gate pier (1), and the other end of the vent hole is communicated with the outside of the gate pier (1).
7. The steel dam gate-side control room structure of claim 1, wherein: the inside of gate pier (1) is provided with air exhauster (6), and the air outlet of air exhauster (6) is connected with blast pipe (61), and gate pier (1) is worn out and is buckled downwards from the top of glass to the one end that air exhauster (6) were kept away from in blast pipe (61).
8. The steel dam gate-side control room structure of claim 1, wherein: the inside of gate pier (1) is provided with bracing piece (5), and the one end of bracing piece (5) is fixed on the inner wall of gate pier (1), and the other end extends and fixes on frame (21) to the middle part of frame (21).
CN202020427783.2U 2020-03-27 2020-03-27 Steel dam gate side control room structure Active CN211973404U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020427783.2U CN211973404U (en) 2020-03-27 2020-03-27 Steel dam gate side control room structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020427783.2U CN211973404U (en) 2020-03-27 2020-03-27 Steel dam gate side control room structure

Publications (1)

Publication Number Publication Date
CN211973404U true CN211973404U (en) 2020-11-20

Family

ID=73380738

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020427783.2U Active CN211973404U (en) 2020-03-27 2020-03-27 Steel dam gate side control room structure

Country Status (1)

Country Link
CN (1) CN211973404U (en)

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