Grouting device and grouting method for highway bridge construction

By designing a grouting device with a blocking and retracting mechanism, the problems of blocking and entanglement of the grouting device when inserted into the foundation are solved, and smooth and stable grouting is achieved.

CN119102223BActive Publication Date: 2025-09-19CHINA MCC 2 GRP CO LTD
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Patent Information

Application Number
CN202411493711.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-19
Estimated Expiration
2044-10-24

AI Technical Summary

Technical Problem

The existing grouting device for highway bridge construction is prone to have its grout outlet blocked by debris or soil when the hollow rod is inserted into the foundation, and the grouting hose is prone to entanglement and accumulation, affecting the normal progress of the grouting work.

Method used

A grouting device is designed, which includes a sealing mechanism and a retracting mechanism. The sealing mechanism prevents debris from blocking the grouting port by rotating to seal or give way. The retracting mechanism automatically retracts and extends the grouting hose during the lifting and lowering process of the grouting tube to ensure smooth grouting.

Benefits of technology

It effectively avoids debris from clogging the grouting port and prevents the grouting hose from being entangled, ensuring the normal progress of grouting work and the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a grouting device and a grouting method for highway bridge construction. The grouting device includes: a supporting base plate; a grouting barrel is vertically positioned on the supporting base plate, and a plurality of grouting ports are provided through the side wall of the grouting barrel; one end of the grouting hose is connected to the top of the grouting barrel and is in communication with the grouting barrel; a sealing mechanism is sleeved on the outer periphery of the grouting barrel in a manner that can rotate relative to the grouting barrel. The present invention extends the grouting barrel into the foundation through the vertical position adjustment, and grouting is performed through the grouting ports; the sealing mechanism is rotated to the blocking position to block each row of grouting ports, so as to prevent some debris or soil from clogging the grouting ports during the insertion of the grouting barrel into the foundation. After the grouting barrel moves downward into position, the sealing mechanism can also be rotated to the grouting position, so that each row of grouting ports is exposed, so that the slurry in the grouting barrel can flow out from the grouting ports and be injected into the foundation, thereby achieving grouting.
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Description

Technical Field

[0001] The present invention relates to the technical field of highway bridge construction, and in particular to a grouting device and a grouting method for highway bridge construction. Background Art

[0002] During the construction of highway bridges, it is necessary to build a foundation of appropriate size first. However, cracks or pores are very likely to appear inside the rock foundation. If these cracks or pores are not filled in time, the quality of the constructed highway will be affected, which will be extremely detrimental to the safety of vehicles passing through here in the future. Therefore, a grouting device for highway bridge construction is needed to inject certain solidifying slurry into the cracks and hollows detected by the staff, use a hollow rod to insert into the foundation and extend to the inside of the cracks or hollow parts, and then inject certain solidifying slurry into the cracks or hollows of the rock foundation through the inside of the hollow rod to fill them.

[0003] At present, when the existing grouting device for highway bridge construction inserts the hollow rod into the foundation, some debris or soil is easy to block the slurry outlet on the side wall of the hollow rod, affecting the normal progress of the grouting work. In addition, when the hollow rod is raised and lowered, the grouting hose for conveying slurry on the existing highway bridge construction grouting device is easy to accumulate and entangle on the top of the hollow rod, which not only affects the service life of the grouting hose, but also affects the normal progress of the grouting work. Summary of the Invention

[0004] In view of this, the present invention proposes a grouting device and a grouting method for highway bridge construction, aiming to solve the problem that during the insertion of the existing hollow rod into the foundation, some debris or soil easily blocks the grouting outlet on the side wall of the hollow rod, affecting the grouting work.

[0005] On the one hand, the present invention provides a grouting device for highway bridge construction, which includes: a supporting base plate, the supporting base plate having a walking state and a fixed supporting state; a grouting barrel, the grouting barrel is vertically inserted into the supporting base plate in a position-adjustable manner, and a plurality of grouting ports are formed through the side wall of the grouting barrel; a grouting hose, one end of which is connected to the top of the grouting barrel and communicates with the grouting barrel, and the other end is used to connect to a slurry storage device to inject slurry into the grouting barrel; a blocking mechanism, which is sleeved on the outer circumference of the grouting barrel in a rotatable manner relative to the grouting barrel, is used to rotate to a blocking position to block the grouting port, and can move downward with the grouting barrel until it extends into the foundation, the blocking mechanism rotates to the grouting position to make way for the grouting port, thereby allowing the slurry in the grouting barrel to flow out from the grouting port for grouting; and a retractable mechanism connected to the grouting hose for retracting and extending the grouting hose.

[0006] Furthermore, in the above-mentioned grouting device for highway bridge construction, the blocking mechanism includes: a ring sleeve; a plurality of arc-shaped baffles, each of which is arranged on one side of the ring sleeve along the axial direction of the ring sleeve, and a plurality of the arc-shaped baffles are arranged at intervals along the circumference of the ring sleeve, and one end of each arc-shaped baffle is connected to the ring sleeve, and is used to rotate to the grouting port to block the grouting port, or rotate to the solid part of the grouting barrel on one side of the grouting port to make way for the grouting port to open; an L-shaped drive rod, one end of which is connected to the ring sleeve, and the other end is used to connect to the blocking drive mechanism.

[0007] Furthermore, in the above-mentioned grouting device for highway bridge construction, the retractable mechanism includes: a retractable box; a counterweight block, which is arranged in the retractable box, and the counterweight block can perform reciprocating linear motion in the vertical direction in the retractable box; wherein the other end of the grouting hose sequentially passes through the retractable box and extends to the inside, bypasses from the bottom of the counterweight block, and passes through the retractable box and extends to the outside to connect to the slurry storage equipment outside the retractable box; a rope, one end of which is passed through the retractable box and extends to the inside of the retractable box and is connected to the counterweight block, and the other end is placed outside the retractable box and connected to the grouting barrel. When the grouting barrel descends, the counterweight block is pulled upward. When the grouting barrel rises, the counterweight block moves downward under the action of its own gravity and presses the grouting hose, so that the grouting hose is retracted into the retractable box and the grouting hose is in a straight state.

[0008] Furthermore, in the above-mentioned grouting device for highway bridge construction, two guide wheels are provided above the supporting base plate, and the height of the two guide wheels is higher than the height of the grouting barrel located at the highest position; the rope and the grouting hose respectively pass through the two guide wheels and are respectively connected to the two guide wheels in a rolling manner.

[0009] Furthermore, in the above-mentioned grouting device for highway bridge construction, a drill bit is provided under the grouting barrel, a drill drive mechanism is embedded and fixedly connected to the bottom surface of the grouting barrel, an output end of the drill drive mechanism is connected to the drill bit, and the supporting base plate is located below the drill bit and has a barrel opening extending therethrough.

[0010] Furthermore, in the above-mentioned grouting device for highway bridge construction, the blocking mechanism is connected to a blocking drive mechanism for driving the blocking mechanism to rotate so as to switch between the blocking position and the grouting position; the grouting barrel is connected to a lifting drive mechanism for driving the grouting barrel to move up and down in the vertical direction.

[0011] Furthermore, in the above-mentioned grouting device for highway bridge construction, the lifting drive mechanism includes: a U-shaped support plate; a driving screw, which is arranged on the U-shaped support plate along the groove depth direction of the U-shaped support plate, and the driving screw can rotate relative to the U-shaped support plate, and the driving screw is connected to a lifting drive motor for driving the driving screw to rotate; a lifting block, threadedly connected to the driving screw, for converting the rotation of the driving screw into reciprocating linear motion of the lifting block, so as to drive the grouting barrel to lift and lower in the vertical direction.

[0012] Furthermore, in the above-mentioned grouting device for highway bridge construction, an anti-slip pad is provided at the bottom of the support base plate; a movable portion that can be raised and lowered in the vertical direction is also provided on the support base plate. In the fixed support state, the movable portion rises to a suspended state, and the anti-slip pad contacts the support surface to provide fixed support; in the walking state, the movable portion descends to contact the support surface and lifts the support base plate, so that the anti-slip pad is suspended in the air, thereby providing mobile support through the movable portion and driving the support base plate to move.

[0013] Furthermore, in the above-mentioned grouting device for highway bridge construction, the movable part includes: a U-shaped connecting plate, which is arranged on the supporting base plate, and the supporting base plate is provided with a clearance opening directly below the U-shaped connecting plate; a mounting plate, which is arranged below the U-shaped connecting plate, and a telescopic connecting member is further provided between the mounting plate and the U-shaped connecting plate, for controlling the lifting and lowering movement of the mounting plate by telescoping; a moving wheel, which is arranged at the bottom of the mounting plate, and under the action of the telescopic connecting member, performs lifting and lowering movement with the mounting plate to realize switching between the walking state and the fixed support state.

[0014] On the other hand, the present invention proposes a grouting method for highway bridge construction, which adopts the above-mentioned grouting device for highway bridge construction, and the grouting method includes the following steps: switching the supporting base plate to a walking state, pushing the grouting device to move, and aligning the grouting barrel with the position to be grouting; switching the supporting base plate to a fixed supporting state; controlling the sealing mechanism to rotate to a blocking position to block the grouting port, and controlling the grouting barrel to descend and extend into the foundation until the grouting barrel reaches the height position to be grouting; controlling the sealing mechanism to rotate to the grouting position to expose multiple grouting ports; controlling the grouting barrel and grouting hose to grout into the grouting barrel, and the injected slurry is injected into the grouting position in the foundation through multiple grouting ports; after grouting is completed, controlling the grouting barrel to rise above the supporting base plate.

[0015] The grouting device and grouting method for highway bridge construction provided by the present invention can extend the grouting tube into the foundation by adjusting the vertical position of the grouting tube to carry out grouting through the grouting opening; when the grouting tube is extended downward into the foundation, the blocking mechanism is rotated to the blocking position to block the grouting openings in each row, so as to avoid that some debris or soil is blocked in the process of the grouting tube being inserted into the foundation, thereby solving the problem that some debris or soil is easily blocked in the grouting opening on the side wall of the hollow rod during the insertion of the existing hollow rod into the foundation, affecting the grouting work; after the grouting tube moves downward into place, the blocking mechanism can also be rotated to the grouting position, so that the grouting openings in each row are exposed, so that the slurry in the grouting tube can flow out from the grouting opening and be injected into the foundation, thereby realizing grouting work; when the grouting tube is lowered, the grouting hose is released by the retracting and releasing mechanism, so that the grouting hose can be lowered with the grouting tube, and when the grouting tube is raised, the retracting and releasing mechanism can realize the retraction of the grouting hose, so as to avoid that the grouting hose is entangled and accumulated on the top surface of the grouting tube, affecting the normal progress of the grouting work. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference symbols are used throughout the drawings to represent the same components. In the drawings:

[0017] Figure 1 A schematic structural diagram of a grouting device for highway bridge construction provided by an embodiment of the present invention;

[0018] Figure 2 A schematic structural diagram of the installation of guide wheels for a grouting device for highway bridge construction provided by an embodiment of the present invention;

[0019] Figure 3 A front cross-sectional view of a grouting device for highway bridge construction provided by an embodiment of the present invention;

[0020] Figure 4 A schematic diagram of the structure of the rope connection in the grouting device for highway bridge construction provided by an embodiment of the present invention;

[0021] Figure 5 A schematic diagram of the structure of the cylinder connection in the grouting device for highway bridge construction provided by an embodiment of the present invention;

[0022] Figure 6 for Figure 3 A partial enlarged view of point A in the middle;

[0023] Figure 7 for Figure 3 A partial enlarged view of point B;

[0024] Figure 8A flowchart of a grouting method for highway bridge construction provided in an embodiment of the present invention. DETAILED DESCRIPTION

[0025] The exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that, unless there is a conflict, the embodiments of the present disclosure and the features described in the embodiments can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0026] See also Figures 1 to 7 , which is a schematic diagram of the structure of a grouting device for highway bridge construction provided by an embodiment of the present invention. As shown in the figure, the grouting device includes: a supporting base plate 1, a grouting cylinder 2, a grouting hose 3, a blocking mechanism 4, a retracting mechanism 5, a lifting drive mechanism 6, and a blocking drive mechanism 7.

[0027] The grouting cylinder 2 is vertically arranged on the support base plate 1 in a position-adjustable manner, and a plurality of grouting ports 21 are formed on the side wall of the grouting cylinder 2. Specifically, the grouting cylinder 2 is vertically arranged above the support base plate 1, and the grouting cylinder 2 is axially arranged (such as Figure 1 The grouting tube 2 can be a cylindrical hollow rod, and support plates can be provided at both ends. In addition, a plurality of grouting ports 21 are provided through the side wall of the grouting tube 2. In this embodiment, a plurality of rows of grouting ports 21 are provided on the side wall of the grouting tube 2 along its circumference, and each row of grouting ports 21 is multiple and arranged on the same vertical line. In this embodiment, the grouting tube 2 is connected to a lifting drive mechanism 6 for driving the grouting tube 2 to perform lifting movement in the vertical direction. In this embodiment, the support base plate 1 has a walking state and a fixed support state. In the walking state, the support base plate 1 moves to perform grouting at different positions. In the fixed support state, the support base plate 1 is fixedly supported to perform grouting stably.

[0028] One end of the grouting hose 3 is connected to the top of the grouting barrel 2 and communicates with the grouting barrel 2, and the other end is used to connect to a slurry storage device (not shown in the figure) to inject slurry into the grouting barrel 2. Specifically, the grouting hose 3 is arranged above the grouting barrel 2. In order to realize grouting in the grouting barrel 2, preferably, the grouting hose 3 is connected to a grouting pump 31. The grouting pump 31 can be installed on one end of the top surface of the grouting barrel 2. The output end of the grouting pump 31 is communicated with the inside of the grouting barrel 2, the input end of the grouting pump 31 is communicated with one end of the grouting hose 3, and the other end of the grouting hose 3 is communicated with the slurry storage device, so that the slurry in the slurry storage device is pumped from the grouting hose 3 into the grouting barrel 2 through the grouting pump 31. Among them, the grouting hose 3 can be a metal hose structure.

[0029] The sealing mechanism 4 is sleeved on the outer periphery of the grouting barrel 2 in a manner that it can rotate relative to the grouting barrel 2, and is used to rotate to the blocking position to block the grouting port 21, and can move downward with the grouting barrel 2 until it extends into the foundation. The blocking mechanism 4 rotates to the grouting position to make way for the grouting port 21, thereby allowing the slurry in the grouting barrel 2 to flow out from the grouting port 21 for grouting. Specifically, the blocking mechanism 4 is slidably sleeved on the outer periphery of the grouting tube 2 in a manner that can rotate relative to the grouting tube 2, and can be rotated to a blocking position, that is, the blocking mechanism 4 is rotated to a position that is compatible with each row of grouting ports 21, and blocks each row of grouting ports 21 to prevent some debris or soil from clogging the grouting ports 21 during the insertion of the grouting tube 2 into the foundation. It can also be rotated to a grouting position so that each row of grouting ports 21 is exposed, so that the slurry of the grouting tube 2 can flow out from the grouting ports 21 and be injected into the foundation to achieve grouting. In this embodiment, the blocking mechanism 4 is connected to a blocking drive mechanism 7 for driving the blocking mechanism 4 to rotate so as to switch between the blocking position and the grouting position. Among them, the fixed housing of the blocking drive mechanism 7 can be fixedly mounted on the top support plate of the grouting tube 2, and in particular can be mounted at the middle position of the top surface of the grouting tube 2.

[0030] The retractable mechanism 5 is connected to the grouting hose 3 and is used to retract the grouting hose 3. Specifically, the retractable mechanism 5 can be set on one side of the grouting tube 2 (such as Figure 1 As shown on the right side), the grouting hose 3 can be retracted and released, that is, when the grouting cylinder 2 descends, the retracting mechanism 5 can release the grouting hose 3, so that the grouting hose 3 can descend with the grouting cylinder 2; and when the grouting cylinder 2 rises, the retracting mechanism 5 can retract the grouting hose 3 to avoid the grouting hose 3 from being entangled and accumulated on the top surface of the grouting cylinder 2 and affecting the normal progress of the grouting work.

[0031] The specific implementation method is as follows: by setting a sealing mechanism 4, it is convenient to seal the grouting port 21 set on the grouting tube 2 before grouting, so as to prevent debris or soil from blocking the grouting port 21 and affecting the normal progress of the grouting work; by setting a retracting mechanism 5, it is convenient to automatically retract and extend the grouting hose 3 during the lifting and lowering process of the grouting tube 2, so as to prevent it from accumulating and entangled on the top surface of the grouting tube 2, which may easily affect the normal progress of the grouting work.

[0032] In this embodiment, a drill bit 8 is provided below the grouting cylinder 2, a drill drive mechanism 9 is embedded and fixedly connected to the bottom surface of the grouting cylinder 2, the output end of the drill drive mechanism 9 is connected to the drill bit 8, and the support base plate 1 is located below the drill bit 8 and has a through-tube opening 11. Specifically, the drill bit 8 is provided below the grouting cylinder 2, the drill drive mechanism 9 is embedded and fixedly connected to the bottom surface of the grouting cylinder 2, the output end of the drill drive mechanism 9 is fixedly connected to the top of the drill bit 8, and the surface of the support base plate 1 is located below the drill bit 8 and has a through-tube opening 11, which facilitates the smooth entry of the grouting cylinder 2 into the area to be grouted through the drill bit 8.

[0033] Continue to see Figure 1 、 Figure 3 , an anti-slip pad 13 is provided at the bottom of the supporting base plate 1; the supporting base plate 1 is also provided with a movable portion 12 that can be raised and lowered in the vertical direction. In the fixed support state, the movable portion 12 rises to a suspended state, and the anti-slip pad 13 contacts the supporting surface to provide fixed support; in the walking state, the movable portion 12 descends to contact the supporting surface and lifts the supporting base plate 1, so that the anti-slip pad 13 is suspended in the air, so as to provide mobile support through the movable portion 12 and drive the supporting base plate 1 to move.

[0034] Specifically, the support base plate 1 plays a supporting role. The anti-skid pad 13 is arranged at the bottom of the support base plate 1 (relative to the Figure 1 The anti-skid pad 13 can be two strip-shaped structures, which can support both ends of the base plate 1 (such as Figure 1 The support base 1 is provided with clearance openings 14 at positions corresponding to the movable portion 12. These openings 14 extend through the support base 1, allowing the movable portion 12 to move up and down at these openings, rising and being accommodated there, where it is supported by the anti-slip pads 13. There are also two movable portions 12, positioned between the two anti-slip pads 13, ensuring both stable support and stable movement of the support base 1.

[0035] In this embodiment, a moving part status sensor, a pad status sensor, and a controller may also be provided on the supporting base plate 1; wherein the moving part status sensor is used to detect whether the moving part is in a suspended state, and may send a moving part status signal of the moving part 12 to the controller. Specifically, the moving part status sensor may be a pressure sensor, which may be provided on the moving part 12, and is used to detect the pressure exerted on the moving part 12, so as to detect whether the moving part 12 is in a suspended state. For example, when the pressure exerted on the moving part 12 is zero, the moving part 12 is in a suspended state; otherwise, the moving part 12 is not in a suspended state, and may send a moving part status signal of the moving part 12 to the controller. Of course, the moving part status sensor may also be other sensors to detect whether the moving part 12 is in a suspended state.

[0036] The pad state sensor is used to detect whether the anti-slip pad 13 is in a suspended state and send a leg state signal of the anti-slip pad 13 to the controller. Specifically, the pad state sensor can determine the state of the support base 1 by detecting whether the anti-slip pad 13 is in a suspended state and combining it with the moving part state signal of the moving part 12. That is, when the anti-slip pad 13 is in a suspended state and the moving part 12 is not in a suspended state, the support base 1 is in a walking state and can be driven by the moving part 12 to move the entire sorting device; when the anti-slip pad 13 is not in a suspended state and the moving part 12 is in a suspended state, the support base 1 is in a fixed support state.

[0037] The controller is connected to the moving part status sensor and the pad status sensor respectively, and is used to receive the moving part status signal emitted by the moving part status sensor and the leg status signal emitted by the pad status sensor, and control the rotation and extension of the anti-slip pad 13 according to the moving part status signal and the leg status signal to realize the switching of the state of the support base plate 1, that is, when it is necessary to move to the working position, the anti-slip pad 13 is retracted and rotated to the folded position, so that the moving part 12 contacts the support surface; when it is necessary to display, the anti-slip pad 13 is rotated to a vertical position and extended to contact the support surface, and the support base plate 1 is gradually lifted to make the moving part 12 suspended in the air, and after being fixed and supported by the anti-slip pad 13, grouting is carried out.

[0038] Continue to see Figure 1 、 Figure 3 and Figure 5The moving part 12 may include: a U-shaped connecting plate 121, a mounting plate 122, a telescopic connecting member 123 and a moving wheel 124; wherein the U-shaped connecting plate 121 is arranged on the supporting base plate 1, and the supporting base plate 1 is provided with a clearance opening 14 directly below the U-shaped connecting plate 121; the mounting plate 122 is arranged below the U-shaped connecting plate 121, and a telescopic connecting member 123 is further provided between the mounting plate 122 and the U-shaped connecting plate 121, for controlling the lifting and lowering movement of the mounting plate 122 by extension and retraction; the moving wheel 124 is arranged at the bottom of the mounting plate 122, and under the action of the telescopic connecting member 123, it moves up and down with the mounting plate 122 to realize switching between the walking state and the fixed support state.

[0039] Specifically, the two U-shaped connecting plates 121 of the two movable parts 12 are fixedly connected to the ends of the surface of the support base plate 1. The two mounting plates 122 are respectively located below the two U-shaped connecting plates 121. The top surfaces of the mounting plates 122 are fixedly connected to telescopic connectors 123 at both ends. The top surfaces of the telescopic connectors 123 are fixedly connected to the inner top surfaces of the corresponding U-shaped connecting plates 121. The bottom surfaces of the two mounting plates 122 are rotatably connected to moving wheels 124. Two clearance openings 14 are opened through the surface of the support base plate 1 and are respectively located below the two mounting plates 123. Two anti-slip pads 13 are respectively fixedly connected to the ends of the bottom surface of the support base plate 1. The two anti-slip pads 13 greatly improve the stability of the device. The telescopic connector 123 can be a cylinder.

[0040] The specific implementation method is as follows: by providing the moving part 12, it is convenient to store the moving wheel 124, so that the anti-slip pad 13 can contact the ground, thereby improving the stability of the device during operation.

[0041] Continue to see Figure 1 、 Figure 2 、 Figure 7 The blocking mechanism 4 may include: a ring sleeve 41, a plurality of arc-shaped baffles 42, and an L-shaped driving rod 43; wherein the plurality of arc-shaped baffles 42 are each arranged on one side of the ring sleeve 41 along the axial direction of the ring sleeve 41 (such as Figure 1 The plurality of arc-shaped baffles 42 are arranged at intervals along the circumference of the ring sleeve 41, and one end of each arc-shaped baffle 42 (as shown in FIG. Figure 1 The top end shown in the figure) is connected to the ring sleeve 41 and is used to rotate to the grouting port 21 to block the grouting port 21, or rotate to the solid part of the grouting cylinder 2 on one side of the grouting port 21 to make way for the grouting port 21 to open; one end of the L-shaped driving rod 43 (as shown in the figure) is connected to the ring sleeve 41 and is used to rotate to the grouting port 21 to block the grouting port 21, or rotate to the solid part of the grouting cylinder 2 on the side of the grouting port 21 to make way for the grouting port 21 to open; Figure 7 The left side shown in FIG) is connected to the ring sleeve 41, and the other end (as shown in FIG) is connected to the ring sleeve 41. Figure 7The right side shown) is used to connect the blocking drive mechanism 7.

[0042] Specifically, the annulus 41 is slidably sleeved on the grouting tube 2, and a plurality of arc-shaped baffles 42 are vertically fixedly connected to the bottom surface of the annulus 41 and located at a position relative to the plurality of grouting ports 21. The plurality of arc-shaped baffles 42 are all slidably connected to the outer wall of the grouting tube 2. The plurality of arc-shaped baffles 42 are provided to facilitate blocking the plurality of grouting ports 21 to prevent the grouting ports 21 from being blocked. The L-shaped drive rod 43 is fixedly connected to one end of the top surface of the annulus 41. Among them, the blocking drive mechanism 7 can be a motor, which can be installed at the middle end of the top surface of the grouting tube 2. The output end of the blocking drive mechanism 7 is fixedly connected to one end of the L-shaped drive rod 43, which can drive the L-shaped drive rod 43 to rotate with the output end of the blocking drive mechanism 7, so that the annulus 41 rotates around the outer periphery of the grouting tube 2, thereby driving the plurality of arc-shaped baffles 42 to rotate circumferentially. Among them, the plurality of grouting ports 21 are vertically distributed in an annular shape on the side wall of the grouting tube 2, and the plurality of grouting ports 21 correspond to the plurality of arc-shaped baffles 42 respectively. The blocking drive mechanism 7 may be a motor.

[0043] Continue to see Figures 1 to 3 The retracting mechanism 5 includes a retracting box 51, a counterweight 52 and a rope 53; wherein the counterweight 52 is arranged in the retracting box 51, and the counterweight 52 can be moved in the vertical direction (relative to the vertical direction) in the retracting box 51. Figure 3 The other end of the grouting hose 3 (as shown in FIG. Figure 3 The right end as shown in the figure) passes through the receiving and releasing box 51 to the inside, goes around the bottom of the counterweight block 52, and passes through the receiving and releasing box 51 to the outside to connect to the slurry storage device outside the receiving and releasing box 51; one end of the rope 53 (as ... Figure 2 The right end shown in FIG) is provided in the storage box 51 and extends to the interior of the storage box 51 and is connected to the counterweight 52. The other end (as shown in FIG) is provided in the storage box 51 and extends to the interior of the storage box 51 and is connected to the counterweight 52. Figure 3 The left end as shown in the figure is placed outside the storage box 51 and is connected to the grouting cylinder 2. When the grouting cylinder 2 descends, the counterweight 52 is pulled to move upward. When the grouting cylinder 2 rises, the counterweight 52 moves downward under the action of its own gravity and presses the grouting hose 3, so that the grouting hose 3 is stored in the storage box 51 and the grouting hose 3 is in a straight state.

[0044] Specifically, the storage box 51 can be fixed on the upper side of the support base 1, in particular, fixedly connected to the side wall of the U-shaped support plate 61 of one of the lifting drive mechanisms 6. The grouting pump 31 is installed on the top surface of the grouting cylinder 2, and the output end of the grouting pump 31 is connected to the interior of the grouting cylinder 2, and the input end of the grouting pump 31 is connected to one end of the grouting hose 3 (such as Figure 1The counterweight 52 is disposed within the storage box 51. A rope 53 is fixedly connected to the top surface of the grouting cylinder 2. The end of the rope 53 away from the grouting cylinder 2 passes through the top surface of the storage box 51 and is fixedly connected to the top surface of the counterweight 52. The side wall of the counterweight 52 may be provided with an arcuate guide groove 521. The end of the grouting hose 3 away from the grouting pump 31 passes below the counterweight 52, through the top surface of the storage box 51, and is connected to the slurry storage device. The side wall of the grouting hose 3 is slidably connected to the inner side wall of the arcuate guide groove 521.

[0045] In this embodiment, two guide wheels 54 are provided above the support base plate 1. The height of the two guide wheels 54 is higher than the height of the grouting drum 2 at its highest position. The rope 53 and the grouting hose 3 pass through the two guide wheels 54 and are respectively connected to the two guide wheels 54 in a rolling manner. Specifically, two guide wheels 54 are provided on the top surface of one of the U-shaped support plates 61. The rope 53 and the grouting hose 3 pass through the two guide wheels 54 and are respectively connected to the two guide wheels 54 in a rolling manner. The two guide wheels 54 facilitate the positioning of the rope 53 and the grouting hose 3.

[0046] Continue to see Figures 1 to 3 The lifting drive mechanism 6 includes: a U-shaped support plate 61, a driving screw 62 and a lifting block 63; wherein the driving screw 62 is arranged on the U-shaped support plate 61 along the groove depth direction of the U-shaped support plate 61, and the driving screw 62 can rotate relative to the U-shaped support plate 61, and the driving screw 62 is connected to a lifting drive motor 64 for driving the driving screw 62 to rotate; the lifting block 63 is threadedly connected to the driving screw 62, for converting the rotation of the driving screw 62 into a reciprocating linear motion of the lifting block 63, so as to drive the grouting barrel 2 to perform lifting movement in the vertical direction.

[0047] Specifically, there are two lifting drive mechanisms 6, which are respectively placed on the left and right sides of the grouting cylinder 2, which can improve the stability of the lifting drive of the grouting cylinder 2. Two U-shaped support plates 61 are fixedly connected to the two ends of the surface of the support base plate 1, and two lifting blocks 63 are respectively fixedly connected to the top of the two sides of the grouting cylinder 2. The two lifting blocks 63 are vertically penetrated and threaded with drive screws 62. The bottom ends of the two drive screws 62 are both rotatably connected to the surface of the support base plate 1. Two lifting drive motors 64 are respectively installed on the top surfaces of the two U-shaped support plates 61 at positions opposite to the two drive screws 62. The output ends of the two lifting drive motors 64 are respectively fixedly connected to the top ends of the corresponding drive screws 62.

[0048] Working principle: When working, first move the device to the designated position through the moving wheel 124, and align the barrel opening 11 with the grouting position, then the two telescopic connecting parts 123 respectively drive the corresponding moving wheels 124 to retract until the bottom surface of the anti-slip pad 13 is in contact with the ground, which greatly improves the stability of the device, and then the drill drive mechanism 9 drives the drill bit 8 to rotate, and at the same time, the two lifting drive motors 64 respectively drive the two driving screws 62 to rotate, so that the grouting barrel 2 moves downward and extends into the foundation until the grouting barrel 2 reaches the position to be grouting. During the descent of the grouting barrel 2, multiple arc baffles 42 are used to facilitate the blocking of multiple grouting ports 21 to prevent debris or soil from blocking the grouting ports 21 and affecting the normal progress of grouting. During grouting, first the blocking drive mechanism 7 drives the ring sleeve 41 to enter through the L-shaped drive rod 43. When the grouting tube 2 is lowered, the counterweight 52 is pulled up by the rope 53. At this time, the grouting hose 3 in the storage box 51 will be pulled out along with the grouting tube 2. When the grouting tube 2 rises, the counterweight 52 descends by its own gravity and presses the grouting hose 3, so that the grouting hose 3 is stored in the storage box 51, so that the grouting hose 3 is in a straight state throughout the whole process, avoiding the grouting hose 3 from being entangled and accumulated on the top surface of the grouting tube 2, which may easily affect the normal progress of the grouting work. The two guide wheels 54 are convenient for guiding the grouting hose 3 and the rope 53 respectively to improve their stability.

[0049] In summary, the grouting device for highway bridge construction provided in this embodiment can be extended into the foundation by adjusting the vertical position of the grouting tube 2 to perform grouting through the grouting port 21; in the process of the grouting tube 2 extending downward into the foundation, the blocking mechanism 4 is rotated to the blocking position to block the grouting ports 21 in each row, so as to avoid the grouting ports 21 being blocked by some debris or soil during the process of the grouting tube 2 being inserted into the foundation, thereby solving the problem that some debris or soil is easy to block the grouting port on the side wall of the hollow rod during the process of the existing hollow rod being inserted into the foundation, affecting the grouting work. After the slurry barrel 2 moves downward into position, the sealing mechanism 4 can also be rotated to the grouting position, so that each row of grouting ports 21 is exposed, so that the slurry in the grouting barrel 2 can flow out from the grouting ports 21 and be injected into the foundation to realize grouting work; when the grouting barrel 2 descends, the grouting hose 3 is released by the retracting mechanism 5, so that the grouting hose 3 can descend with the grouting barrel 2, and when the grouting barrel 2 rises, the retracting mechanism 5 can realize the retraction of the grouting hose 3, so as to avoid the grouting hose 3 from being entangled and accumulated on the top surface of the grouting barrel 2 and affecting the normal progress of the grouting work.

[0050] Method Example:

[0051] See also Figure 8, which is a flowchart of a grouting method for highway bridge construction provided by an embodiment of the present invention. As shown in the figure, the grouting method uses the above-mentioned device and includes the following steps:

[0052] Step S1, switching the supporting base plate to a walking state, pushing the grouting device to move, and aligning the grouting barrel with the position to be grouting.

[0053] Specifically, the supporting base plate 1 is moved to a designated position, and the drill bit 8 is aligned with the position to be grouting.

[0054] Step S2: Switch the supporting base plate to a fixed supporting state.

[0055] Specifically, the support base plate 1 is switched to a fixed support state so that the anti-slip pads 13 contact the ground for fixed support. That is, the telescopic connector 123 drives the corresponding moving wheel 124 to be retracted into the clearance opening 14 so that the bottom surfaces of the two anti-slip pads 13 contact the ground.

[0056] Step S3, controlling the blocking mechanism to rotate to the blocking position to block the grouting port, and controlling the grouting barrel to descend and extend into the foundation until the grouting barrel reaches the height position to be grouting.

[0057] Specifically, the blocking drive mechanism 7 can be controlled in advance so that the blocking drive mechanism 7 drives the ring sleeve 41 to rotate, so that the arc-shaped baffle 42 rotates to the corresponding position of the grouting port 21, thereby blocking the grouting port 21. Then, the drill drive mechanism 9 can be controlled so that the drill drive mechanism 9 drives the drill bit 8 to rotate. At the same time, the two lifting drive motors 64 are controlled to drive the corresponding two driving screws 62 to rotate, so that the grouting barrel 2 is lowered and extended into the foundation until the grouting barrel 2 reaches the grouting position.

[0058] Step S4, controlling the sealing mechanism to rotate the grouting position to expose multiple grouting ports.

[0059] Specifically, the blocking driving mechanism 7 is controlled so that the blocking driving mechanism 7 drives the ring sleeve 41 to rotate, so that the arc-shaped baffle 42 rotates, and the grouting port 21 is exposed.

[0060] Step S5, controlling the grouting tube and the grouting hose to inject grouting into the grouting tube, and injecting the injected slurry into the grouting position in the foundation through multiple grouting ports.

[0061] Specifically, the grouting pump 31 is started, the slurry is introduced into the grouting barrel 2 through the grouting hose 3, and then injected into the grouting position in the foundation through multiple grouting ports 21. After the grouting is completed, the two lifting drive motors 64 rotate in opposite directions to make the grouting barrel 2 rise to the starting position.

[0062] Step S6: After the grouting is completed, the grouting barrel is controlled to rise above the supporting base plate.

[0063] Specifically, the grouting tube 2 will drive the counterweight 52 to move up and down during the lifting process, and the counterweight 52 will drive the grouting hose 3 to move during the lifting process, so that the grouting hose 3 is always in a straight state.

[0064] In summary, the grouting method for highway bridge construction provided by this embodiment can extend the grouting tube 2 into the foundation by adjusting the vertical position of the grouting tube 2 so as to perform grouting through the grouting port 21; in the process of the grouting tube 2 extending downward into the foundation, the blocking mechanism 4 is rotated to the blocking position to block the grouting ports 21 in each row, so as to avoid the grouting ports 21 being blocked by some debris or soil during the process of the grouting tube 2 being inserted into the foundation, thereby solving the problem that some debris or soil is easy to block the grouting port on the side wall of the hollow rod during the process of the existing hollow rod being inserted into the foundation, affecting the grouting work. After the slurry barrel 2 moves downward into position, the sealing mechanism 4 can also be rotated to the grouting position, so that each row of grouting ports 21 is exposed, so that the slurry in the grouting barrel 2 can flow out from the grouting ports 21 and be injected into the foundation to realize grouting work; when the grouting barrel 2 descends, the grouting hose 3 is released by the retracting mechanism 5, so that the grouting hose 3 can descend with the grouting barrel 2, and when the grouting barrel 2 rises, the retracting mechanism 5 can realize the retraction of the grouting hose 3, so as to avoid the grouting hose 3 from being entangled and accumulated on the top surface of the grouting barrel 2 and affecting the normal progress of the grouting work.

[0065] It should be noted that, in the description of the present invention, terms such as "up", "down", "left", "right", "inside", and "outside" indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on the present invention.

[0066] Furthermore, it should be noted that, in the description of the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to direct connections, indirect connections through an intermediary, or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0067] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to include such changes and modifications.

Claims

1. A grouting device for highway bridge construction, characterized in that: include: A supporting base plate, wherein the supporting base plate has a walking state and a fixed supporting state; A grouting barrel is vertically mounted on the support base plate in an adjustable manner, and a plurality of grouting ports are formed on the sidewall of the grouting barrel; A grouting hose, one end of which is connected to the top of the grouting barrel and communicates with the grouting barrel, and the other end of which is used to connect to a slurry storage device to inject slurry into the grouting barrel; a blocking mechanism, which is sleeved on the outer circumference of the grouting barrel in a manner capable of rotating relative to the grouting barrel, and is used to rotate to a blocking position to block the grouting port, and can move downward with the grouting barrel until it extends into the foundation. The blocking mechanism rotates to the grouting position to make way for the grouting port, thereby allowing the slurry in the grouting barrel to flow out from the grouting port for grouting; A retractable mechanism, connected to the grouting hose, for retracting and extending the grouting hose; The blocking mechanism comprises: Ring; A plurality of arc-shaped baffles, each of which is arranged on one side of the annular sleeve along the axial direction of the annular sleeve, and a plurality of the arc-shaped baffles are arranged at intervals along the circumference of the annular sleeve, one end of each arc-shaped baffle is connected to the annular sleeve, and is used to rotate to the grouting port to block the grouting port, or rotate to the solid part of the grouting barrel on one side of the grouting port to make way for the grouting port; An L-shaped driving rod, one end of which is connected to the ring sleeve and the other end of which is used to connect to the blocking driving mechanism; The retractable mechanism comprises: Collection and placement boxes; A counterweight block is disposed in the storage box and is capable of reciprocating linear motion in the vertical direction within the storage box; wherein the other end of the grouting hose sequentially passes through the storage box, extends to the interior, bypasses the bottom of the counterweight block, and passes through the storage box to the outside to connect to the slurry storage device outside the storage box; One end of the rope is passed through the storage box and extends to the inside of the storage box and is connected to the counterweight block, and the other end is placed outside the storage box and is connected to the grouting barrel. When the grouting barrel descends, the counterweight block is pulled upward. When the grouting barrel rises, the counterweight block moves downward under the action of its own gravity and presses the grouting hose, so that the grouting hose is stored in the storage box and the grouting hose is in a straight state.

2. The grouting device for highway bridge construction according to claim 1, characterized in that: Two guide wheels are provided above the supporting bottom plate, and the heights of the two guide wheels are higher than the height of the grouting drum at the highest position; The rope and the grouting hose pass through the two guide wheels respectively and are respectively connected with the two guide wheels in a rolling manner.

3. The grouting device for highway bridge construction according to claim 1, characterized in that: A drill bit is provided below the grouting barrel, a drill drive mechanism is embedded and fixedly connected to the bottom surface of the grouting barrel, an output end of the drill drive mechanism is connected to the drill bit, and the support base plate is located below the drill bit and penetrates through a barrel opening.

4. The grouting device for highway bridge construction according to claim 1, characterized in that: The blocking mechanism is connected to a blocking drive mechanism for driving the blocking mechanism to rotate so as to switch between the blocking position and the grouting position; The grouting cylinder is connected to a lifting drive mechanism for driving the grouting cylinder to move up and down in a vertical direction.

5. The grouting device for highway bridge construction according to claim 4, characterized in that: The lifting drive mechanism comprises: U-shaped support plate; A driving screw is arranged on the U-shaped support plate along the groove depth direction of the U-shaped support plate, and the driving screw can rotate relative to the U-shaped support plate, and the driving screw is connected to a lifting drive motor for driving the driving screw to rotate; The lifting block is threadedly connected to the driving screw and is used to convert the rotation of the driving screw into the reciprocating linear motion of the lifting block, so as to drive the grouting barrel to move up and down in the vertical direction.

6. The grouting device for highway bridge construction according to claim 1, characterized in that: The bottom of the supporting base plate is provided with an anti-slip pad; The support base plate is further provided with a movable portion capable of being raised and lowered in a vertical direction. In the fixed support state, the movable portion rises to a suspended state, and the anti-slip pad contacts the support surface to provide fixed support. In the walking state, the moving part descends to contact the support surface and lifts the support base, so that the anti-slip pad is suspended in the air, so that the moving part provides movement support and drives the support base to move.

7. The grouting device for highway bridge construction according to claim 6, characterized in that: The moving part includes: A U-shaped connecting plate is provided on the supporting base plate, and the supporting base plate is provided with a clearance opening directly below the U-shaped connecting plate; A mounting plate is provided below the U-shaped connecting plate, and a telescopic connecting member is provided between the mounting plate and the U-shaped connecting plate for controlling the lifting movement of the mounting plate by telescoping; The moving wheel is arranged at the bottom of the mounting plate and, under the action of the telescopic connecting member, moves up and down along with the mounting plate to achieve switching between the walking state and the fixed support state.

8. A grouting method for highway bridge construction, characterized in that: Grouting is performed using the grouting device for highway bridge construction according to any one of claims 1 to 7, and the grouting method comprises the following steps: Switch the supporting base plate to the walking state, push the grouting device to move, and align the grouting barrel with the position to be grouting; Switch the support base plate to the fixed support state; Controlling the blocking mechanism to rotate to the blocking position to block the grouting port, and controlling the grouting barrel to descend and extend into the foundation until the grouting barrel reaches the height position to be grouting; Control the sealing mechanism to rotate the grouting position to expose multiple grouting ports; Controlling the grouting tube and grouting hose to inject grouting into the grouting tube, and injecting the injected slurry into the grouting position in the foundation through multiple grouting ports; After the grouting is completed, the grouting barrel is controlled to rise above the supporting base plate.

Citation Information

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