Novel water conservancy retaining wall structure
By setting up multiple groups of rectangular pressure plates, horizontal connecting plates, vertical support plates and inclined support plates on the hydraulic retaining wall, a stable support system is formed, which solves the structural stability problem of the hydraulic retaining wall when it is impacted by water flow and the foundation sinks, and realizes the impact resistance and damage prevention effect of the retaining wall.
Patent Information
- Application Number
- CN202422742785.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-11
AI Technical Summary
The existing hydraulic retaining wall structure lacks auxiliary support and reinforcement structures, and is prone to fracture and damage when impacted by water flow and foundation sinking.
Multiple sets of rectangular pressure plates, horizontal connecting plates, vertical support plates, inclined support plates and sliding limit plates are used, which are connected by positioning blocks, rotating shafts and pins to form a stable support system to prevent the vertical support plates from tipping over and tilting, thereby enhancing the stability and impact resistance of the retaining wall.
It effectively prevents the hydraulic retaining wall from breaking and being damaged by water impact and foundation sinking, ensures the vertical state and supporting strength of the retaining wall, and improves its service life.
Smart Images

Figure CN223343224U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of water conservancy, in particular to a novel water conservancy retaining wall structure. Background Art
[0002] An existing patent (publication number: CN220725175U) proposes a water conservancy retaining wall structure, which belongs to the field of water conservancy engineering technology. It includes a base, to which a left wall, a middle wall, and a right wall are connected. Mounting holes are opened in the left wall, the middle wall, and the right wall. A rotating connection device is provided in the mounting hole. The rotating connection device is connected to the base. However, this device does not have a structure for auxiliary support and reinforcement of its retaining wall, which can easily cause overall damage or subsidence of the retaining wall. Summary of the Invention
[0003] In response to the above-mentioned deficiencies in the prior art, the utility model provides a new hydraulic retaining wall structure in which multiple groups of devices are distributed at certain distances at various locations on the hydraulic retaining wall to reinforce the hydraulic retaining wall, thereby preventing the hydraulic retaining wall from breaking and being damaged when it is in use due to the impact of water flow and foundation sinking.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A new type of water conservancy retaining wall structure, including a rectangular pressure plate, a horizontal connecting plate, a positioning plug, a vertical support plate, a side connecting ear, a rotating shaft, an inclined support plate, a trapezoidal slide, a strip block, and a sliding limit plate. The right side of the water conservancy retaining wall is in contact with the rectangular pressure plate, and the left side of the rectangular pressure plate is connected to the horizontal connecting plate. A group of horizontal connecting plates are distributed on the left side of the rectangular pressure plate. The horizontal connecting plate passes through the water conservancy retaining wall. Multiple rectangular pressure plates are evenly distributed on the right side of the water conservancy retaining wall. The right side of the vertical support plate is in contact with the water conservancy retaining wall. The vertical support plate has multiple connecting plate sockets. The horizontal connecting plate is adapted to the connecting plate sockets. The horizontal connecting plate passes through the connecting plate sockets. The lower part of the vertical support plate has a support plate side plate. The support plate side plate is in contact with the ground. Multiple vertical support plates are evenly distributed on the left side of the water conservancy retaining wall.
[0006] The horizontal connecting plate has a positioning plug hole, the positioning plug is adapted to the positioning plug hole, the positioning plug passes through the positioning plug hole, the positioning plug fits with the vertical support plate, the positioning plug is connected to the vertical support plate by bolts, the lower part of the inclined support plate has an inclined support plate side sleeve, the lower part of the side connecting ear is connected to the support plate side plate, the side surface of the inclined support plate side sleeve fits with the side connecting ear, the side connecting ears are symmetrically arranged on both sides of the inclined support plate side sleeve, and the inclined support plate side sleeve is connected to the symmetrical side connecting ears through a rotating shaft.
[0007] The upper part of the inclined support plate has an inclined support plate upper plate, the side of the inclined support plate upper plate is in contact with the vertical support plate, the trapezoidal slide is connected to the vertical support plate, a group of trapezoidal slides are distributed on the side of the vertical support plate, the upper part of the trapezoidal slide is connected to the strip block, and the strip block is symmetrically arranged at the upper and lower ends of the trapezoidal slide.
[0008] The side of the sliding limit plate is fitted with the vertical support plate, the sliding limit plate has a trapezoidal slide groove, the trapezoidal slide bar is adapted to the trapezoidal slide groove, the trapezoidal slide bar is inserted into the trapezoidal slide groove, the trapezoidal slide bar slides in the trapezoidal slide groove, the upper portion of the inclined support plate is inserted into the sliding limit plate, the sliding limit plate slides on the outside of the upper portion of the inclined support plate, and the sliding limit plate is symmetrically arranged at both ends of the upper portion of the inclined support plate. Beneficial effects
[0009] 1. The utility model has multiple rectangular pressure plates on the right side of the water conservancy retaining wall facing the right side of the water conservancy retaining wall for limiting protection. The horizontal connecting plate is connected to the rectangular pressure plate, and the horizontal connecting plate passes through the water conservancy retaining wall. The horizontal connecting plate is pre-buried in the water conservancy retaining wall. The side plates of the support plate are connected to the ground through multiple pins, so that the vertical support plate is fixed on the left side of the water conservancy retaining wall. The vertical support plate supports and straightens the left side of the water conservancy retaining wall. The horizontal connecting plate is inserted into the connecting plate socket to position the horizontal connecting plate, thereby fixing the position of the rectangular pressure plate on the right side of the water conservancy retaining wall. The positioning plug is inserted into the positioning plug socket, and the positioning plug is installed and fixed on the vertical support plate. The positioning block positions the horizontal connecting plate, and then positions the rectangular pressure plate, so that the rectangular pressure plate fits tightly with the water conservancy retaining wall. At the same time, the rectangular pressure plate prevents the water conservancy retaining wall from tilting to the right during use, ensuring the vertical use state of the water conservancy retaining wall. The support plate side plate widens the left side of the vertical support plate to prevent the vertical support plate from overturning during use of the water conservancy retaining wall, ensuring the stability of the vertical support plate. The inclined support plate side sleeve is connected to the side connecting ear through the rotating shaft, so that the lower part of the inclined support plate is connected to the support plate side plate shaft, and the inclined support plate is rotatable. When in use, the inclined support plate is rotated to make the upper plate of the inclined support plate fit with the vertical support plate.
[0010] The cam is fixed on the vertical support plate, and the cam is inserted into the cam groove, so that the sliding limit plate can move up and down along the trapezoidal slide, while ensuring the position of the sliding limit plate. The upper surface of the inclined support plate is inserted into the sliding limit plate, and the upper surface of the inclined support plate is positioned symmetrically with the sliding limit plate, so that the upper surface of the inclined support plate and the vertical support plate are tightly attached to the vertical support plate when the water conservancy retaining wall is used. The inclined support plate prevents the vertical support plate from bending at the corners of the vertical support plate and the side plates of the support plate when the water conservancy retaining wall is used. Ensure that the two are vertical, thereby ensuring the supporting strength of the vertical support plate to the water conservancy retaining wall. Multiple groups of devices are distributed at a certain distance at various places on the water conservancy retaining wall to reinforce the water conservancy retaining wall, so that the water conservancy retaining wall can be prevented from being broken and damaged by the impact of water flow and the sinking of the foundation when the water conservancy retaining wall is in use. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 This is a left axonometric drawing of the new hydraulic retaining wall structure described in the present utility model.
[0012] Figure 2 This is a right axonometric drawing of the new hydraulic retaining wall structure described in the present utility model.
[0013] Figure 3 This is the main view of the new hydraulic retaining wall structure described in this utility model.
[0014] Figure 4 This is a side view of the new hydraulic retaining wall structure described in the utility model.
[0015] Figure 5 This is a top view of the new hydraulic retaining wall structure described in the utility model. DETAILED DESCRIPTION
[0016] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments:
[0017] Example 1:
[0018] A novel water conservancy retaining wall structure, including a rectangular pressure plate 01, a horizontal connecting plate 02, a positioning plug 05, a vertical support plate 06, a side connecting ear 09, a rotating shaft 10, an inclined support plate 11, a trapezoidal slide 13, a strip block 14, and a sliding limit plate 15. The right side of the water conservancy retaining wall 17 is in contact with the rectangular pressure plate 01, and the left side of the rectangular pressure plate 01 is connected to the horizontal connecting plate 02. A group of horizontal connecting plates 02 are distributed on the left side of the rectangular pressure plate 01, and the horizontal connecting plate 02 passes through the water conservancy retaining wall 17. The horizontal connecting plate 02 is pre-buried in the water conservancy retaining wall 17. Multiple rectangular pressure plates 01 are evenly distributed on the right side of the water conservancy retaining wall 17. Multiple rectangular pressure plates 01 are facing the right side of the water conservancy retaining wall 17 for limiting protection. The right side of the vertical support plate 06 is in contact with the water conservancy retaining wall 17. The straight support plate 06 has multiple connecting plate sockets 03, and the horizontal connecting plate 02 is adapted to the connecting plate sockets 03. The horizontal connecting plate 02 passes through the connecting plate sockets 03 to position the horizontal connecting plate 02, thereby fixing the rectangular pressure plate 01 at the right side of the water conservancy retaining wall 17. The lower part of the vertical support plate 06 has a support plate side plate 07, and the support plate side plate 07 is in contact with the ground. Multiple vertical support plates 06 are evenly distributed on the left side of the water conservancy retaining wall 17. The support plate side plate 07 is connected to the ground through multiple pins, so that the vertical support plate 06 is fixed on the left side of the water conservancy retaining wall 17. The vertical support plate 06 supports and straightens the left side of the water conservancy retaining wall 17. The support plate side plate 07 widens the left side of the vertical support plate 06 to prevent the vertical support plate 06 from tipping over during use of the water conservancy retaining wall, thereby ensuring the stability of the vertical support plate 06.
[0019] Example 2:
[0020] The horizontal connecting plate 02 of the present invention has a positioning plug hole 04, the positioning plug 05 is adapted to the positioning plug hole 04, the positioning plug 05 passes through the positioning plug hole 04, the positioning plug 05 is installed and fixed on the vertical support plate 06, the positioning plug 05 positions the horizontal connecting plate 02, and then positions the rectangular pressing plate 01, so that the rectangular pressing plate 01 is tightly fitted with the water conservancy retaining wall 17. At the same time, the rectangular pressing plate 01 prevents the water conservancy retaining wall 17 from tilting to the right during use of the water conservancy retaining wall, ensuring the vertical use state of the water conservancy retaining wall 17. The positioning plug 05 is adapted to the vertical support plate 06. Fitting, the positioning plug 05 is connected to the vertical support plate 06 by bolts, the lower part of the inclined support plate 11 has an inclined support plate side sleeve 08, the lower part of the side connecting ear 09 is connected to the support plate side plate 07, the side of the inclined support plate side sleeve 08 is fitted with the side connecting ear 09, and the side connecting ear 09 is symmetrically arranged on both sides of the inclined support plate side sleeve 08. The inclined support plate side sleeve 08 is connected to the symmetrical side connecting ears 09 through the rotating shaft 10, so that the lower part of the inclined support plate 11 is axially connected to the support plate side plate 07, and the inclined support plate 11 is rotatable. When in use, rotate the inclined support plate 11 so that the inclined support plate upper plate 12 fits with the vertical support plate 06.
[0021] Example 3:
[0022] The upper part of the inclined support plate 11 of the utility model is provided with an inclined support plate upper plate 12, the side of the inclined support plate upper plate 12 is fitted with the vertical support plate 06, the trapezoidal slide 13 is connected to the vertical support plate 06, a group of trapezoidal slides 13 are distributed on the side of the vertical support plate 06, a group of trapezoidal slides 13 are installed and fixed on the vertical support plate 06, the upper part of the trapezoidal slide 13 is connected to the strip block 14, and the strip block 14 is symmetrically arranged at the upper and lower ends of the trapezoidal slide 13.
[0023] Example 4:
[0024] The side of the sliding limit plate 15 of the present invention is fitted with the vertical support plate 06, and the sliding limit plate 15 has a trapezoidal slide groove 16, and the trapezoidal slide bar 13 is adapted to the trapezoidal slide groove 16. The trapezoidal slide bar 13 is inserted into the trapezoidal slide groove 16, so that the sliding limit plate 15 can move up and down along the trapezoidal slide bar 13 while ensuring the position of the sliding limit plate 15, and the trapezoidal slide bar 13 slides in the trapezoidal slide groove 16, and the inclined support plate upper plate 12 is inserted into the sliding limit plate 15, and the sliding limit plate 15 slides on the outside of the inclined support plate upper plate 12. The sliding limit plates 15 are symmetrically arranged at both ends of the inclined support plate upper plate 12, and the inclined support plate upper plate 12 is positioned by the symmetrical sliding limit plates 15, so that the inclined support plate The upper plate 12 is in close contact with the vertical support plate 06, preventing the upper plate 12 of the inclined support plate from rotating when the hydraulic retaining wall is in use. The vertical support plate 06 is reinforced by the inclined support plate 11. When the hydraulic retaining wall is in use, the vertical support plate 06 is prevented from bending at the corner of the vertical support plate 06 and the support plate side plate 07 when under pressure, ensuring the verticality of the two, thereby ensuring the supporting strength of the vertical support plate 06 to the hydraulic retaining wall 17. Multiple groups of devices are distributed at a certain distance at various locations on the hydraulic retaining wall 17 to reinforce the hydraulic retaining wall 17, preventing the hydraulic retaining wall 17 from breaking and damaging itself when it is impacted by water flow and when the foundation sinks during use.
[0025] Example 5:
[0026] The installation steps of the utility model are as follows: first, connect the horizontal connecting plate 02 to the rectangular pressure plate 01, insert the horizontal connecting plate 02 into the hydraulic retaining wall 17, fit the vertical support plate 06 with the hydraulic retaining wall 17, insert the horizontal connecting plate 02 into the connecting plate socket 03, pass the positioning plug 05 through the positioning plug socket 04, connect the positioning plug 05 to the vertical support plate 06 through bolts, connect the inclined support plate side sleeve 08 to the symmetrical side connecting ear 09 through the rotating shaft 10, insert the trapezoidal slide 13 into the trapezoidal slide 16, connect the trapezoidal slide 13 to the vertical support plate 06, connect the trapezoidal slide 13 to the bar block 14, fit the inclined support plate upper plate 12 with the vertical support plate 06, and insert the inclined support plate upper plate 12 into the sliding limit plate 15.
[0027] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A new type of water conservancy retaining wall structure, characterized by : It includes a rectangular pressing plate (01), a horizontal connecting plate (02), a positioning plug (05), a vertical support plate (06), a side connecting ear (09), a rotating shaft (10), an inclined support plate (11), a trapezoidal slide (13), a strip block (14), and a sliding limit plate (15). The right side of the water conservancy retaining wall (17) is fitted with the rectangular pressing plate (01). The left side of the rectangular pressing plate (01) is connected to the horizontal connecting plate (02). A group of horizontal connecting plates (02) are distributed on the left side of the rectangular pressing plate (01). The horizontal connecting plates (02) pass through the water conservancy retaining wall (17). , multiple rectangular pressure plates (01) are evenly distributed on the right side of the water conservancy retaining wall (17), the right side of the vertical support plate (06) is in contact with the water conservancy retaining wall (17), the vertical support plate (06) has multiple connecting plate sockets (03), the horizontal connecting plate (02) is adapted to the connecting plate sockets (03), the horizontal connecting plate (02) passes through the connecting plate sockets (03), the lower part of the vertical support plate (06) has a supporting plate side plate (07), the supporting plate side plate (07) is in contact with the ground, and multiple vertical support plates (06) are evenly distributed on the left side of the water conservancy retaining wall (17).
2. The novel water conservancy retaining wall structure according to claim 1 is characterized in that : The horizontal connecting plate (02) has a positioning plug hole (04), the positioning plug (05) is adapted to the positioning plug hole (04), the positioning plug (05) passes through the positioning plug hole (04), the positioning plug (05) fits with the vertical support plate (06), the positioning plug (05) is connected to the vertical support plate (06) by bolts, the lower part of the inclined support plate (11) has an inclined support plate side sleeve (08), the lower part of the side connecting ear (09) is connected to the support plate side plate (07), the side of the inclined support plate side sleeve (08) fits with the side connecting ear (09), the side connecting ear (09) is symmetrically arranged on both sides of the inclined support plate side sleeve (08), and the inclined support plate side sleeve (08) is connected to the symmetrical side connecting ear (09) through the rotating shaft (10).
3. The novel water conservancy retaining wall structure according to claim 2 is characterized in that The upper portion of the inclined support plate (11) is provided with an inclined support plate upper plate (12), the side of the inclined support plate upper plate (12) is fitted with the vertical support plate (06), the trapezoidal slide (13) is connected to the vertical support plate (06), a group of trapezoidal slides (13) are distributed on the side of the vertical support plate (06), the upper portion of the trapezoidal slide (13) is connected to a strip block (14), and the strip block (14) is symmetrically arranged at the upper and lower ends of the trapezoidal slide (13).
4. The novel water conservancy retaining wall structure according to claim 3 is characterized in that The side of the sliding limit plate (15) is fitted with the vertical support plate (06), the sliding limit plate (15) has a trapezoidal slide groove (16), the trapezoidal slide bar (13) is adapted to the trapezoidal slide groove (16), the trapezoidal slide bar (13) is inserted into the trapezoidal slide groove (16), and the trapezoidal slide bar (13) slides in the trapezoidal slide groove (16).
5. The novel water conservancy retaining wall structure according to claim 1 is characterized in that : The upper plate (12) of the inclined support plate is inserted into the sliding limit plate (15), the sliding limit plate (15) slides on the outer side of the upper plate (12) of the inclined support plate, and the sliding limit plate (15) is symmetrically arranged at both ends of the upper plate (12) of the inclined support plate.
Citation Information
Patent Citations
Water conservancy retaining wall structure
CN220725175U