Movable side slope grouting reinforcement machine
By automatically adjusting the position of the drilling and grouting mechanism by lifting and adjusting mechanisms, the problems of angle adjustment and manual operation of traditional grouting reinforcement machines are solved, and automatic slope reinforcement is achieved, which improves the practicality of the equipment and the stability of the slope.
Patent Information
- Application Number
- CN202422544408.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Traditional grouting reinforcement machines are difficult to adjust the grouting angle according to the slope angle, and require manual drilling and pouring, resulting in insufficient practicality of the equipment.
Through the lifting, adjusting, drilling and grouting mechanism of the mobile slope grouting reinforcement machine, the drilling and grouting positions are automatically adjusted according to the slope angle, so as to achieve automatic drilling and pouring.
It improves the practicality of the equipment, realizes an automated slope reinforcement process, reduces manual intervention, and enhances the stability of the slope.
Smart Images

Figure CN223214576U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of grouting reinforcement machines, in particular to a mobile slope grouting reinforcement machine. Background Art
[0002] Slope pouring reinforcement, usually refers to slope grouting reinforcement, which is a commonly used civil engineering technology that aims to improve the stability of slopes and prevent disasters such as landslides and collapses. Grouting reinforcement technology uses hydraulic or pneumatic pressure to inject a solidifying slurry into the cracks or pores of an object to change the physical and mechanical properties of the grouting object to meet the needs of engineering stability. In slope reinforcement, the grouting material will penetrate into the soil, fill the voids in the soil, and form an integrated structure with the soil, thereby increasing the slope's anti-slip ability.
[0003] For example, in a type of prior art represented by the grouting reinforcement machine disclosed in the utility model patent with application number CN202321113776.5, its main structure includes a grouting machine body, a pump head, a torsion spring, a high-pressure rotary head, a high-pressure pipe and a support plate. The function of the grouting reinforcement machine is realized through the cooperation of the grouting machine body, the pump head, the torsion spring, the high-pressure rotary head, the high-pressure pipe and the support plate.
[0004] It is difficult for traditional grouting reinforcement machines to adjust their grouting angles according to the angle of the slope, and traditional slope grouting reinforcement projects require workers to drill holes in the slope before pouring and reinforcing it. Utility Model Content
[0005] In order to solve the above technical problems, the utility model provides a mobile slope grouting reinforcement machine which adjusts the angle and position of the drilling mechanism and the grouting mechanism according to the slope angle by starting the adjustment mechanism, drills holes at the construction position of the slope by starting the drilling mechanism, and after the drilling is completed, pours concrete into the hole by starting the grouting mechanism to grout and reinforce the slope, thereby improving the practicality of the equipment.
[0006] The utility model discloses a mobile slope grouting reinforcement machine, which includes a mobile mechanism; further includes a lifting mechanism, an adjusting mechanism, a drilling mechanism, a feeding mechanism and a grouting mechanism, the lifting mechanism is installed on the mobile mechanism, the adjusting mechanism is installed on the lifting mechanism, the drilling mechanism is installed on the adjusting mechanism, the feeding mechanism is installed on the mobile mechanism, the feeding mechanism is located on the right side of the lifting mechanism, the grouting mechanism is installed on the adjusting mechanism, and the grouting mechanism is located in the front of the drilling mechanism; the equipment is moved to the construction site by the power-assisted mobile mechanism, the drilling mechanism and the grouting mechanism are raised and lowered according to the construction position of the slope by starting the lifting mechanism, the angles and positions of the drilling mechanism and the grouting mechanism are adjusted according to the angle of the slope by starting the adjusting mechanism, the construction position of the slope is drilled by starting the drilling mechanism, after the drilling is completed, mortar is supplied to the grouting mechanism by starting the feeding mechanism, the grouting mechanism is made to reach the drilling site by moving the mobile mechanism, the hole is poured by starting the grouting mechanism, and the slope is grouting reinforced, thereby improving the practicality of the equipment.
[0007] Preferably, the moving mechanism includes a base, multiple rollers, multiple connecting parts and a handle, the top ends of the multiple rollers are respectively installed at the bottom end of the base, the front ends of the multiple connecting parts are respectively installed at the rear end of the base, and the bottom end of the handle is installed at the rear end of the top end of the base; the base supports the multiple rollers, is connected to the multiple bases through multiple connecting parts, and the base is moved by a power-assisting tool and the base is moved by the staff's power-assisting handle, thereby improving the practicality of the equipment.
[0008] Preferably, the lifting mechanism includes multiple first mounting plates, screws, multiple sliding rods, multiple sliders, multiple connecting rods and a first motor, the two ends of the screws are respectively rotatably mounted on the side surfaces of the first mounting plates, the two ends of the multiple sliding rods are respectively mounted on the side ends of the multiple first mounting plates, the multiple sliders are respectively mounted on the screws and the multiple sliding rods, the multiple connecting rods are respectively mounted on the outer rings of the multiple sliders, the first motor is mounted on the top end of the upper first mounting plate, and the output end of the first motor is connected to the top end of the screw; the multiple first mounting plates respectively support the screws and the multiple sliding rods, and the screws are rotated by starting the first motor, and the multiple sliders are moved up and down by the rotation of the screws, and the multiple connecting rods respectively guide the multiple sliders to improve the practicality of the equipment.
[0009] Preferably, the adjustment mechanism includes a second mounting plate, a multi-stage electric cylinder, a plurality of guide rods, a third mounting plate, a plurality of bearings, a rotating shaft and a plurality of second motors, the right end of the multi-stage electric cylinder is mounted on the left end of the second mounting plate, the right parts of the plurality of guide rods are respectively slidably mounted on the second mounting plate, the left ends of the multi-stage electric cylinder and the plurality of guide rods are respectively mounted on the right end of the third mounting plate, the outer rings of the plurality of bearings are respectively mounted on the left end of the third mounting plate, the rotating shaft is mounted on the inner rings of the plurality of bearings, and the output end of the second motor is connected to the front end of the rotating shaft; the second mounting plate and the third mounting plate respectively support the multi-stage electric cylinder and the plurality of guide rods, and the position of the drilling mechanism and the grouting mechanism is moved by extending and contracting the multi-stage electric cylinder, the plurality of guide rods guide the multi-stage electric cylinder, and the plurality of bearings respectively support the rotating shaft, and the rotating shaft is rotated by starting the second motor to adjust the angles of the drilling mechanism and the grouting mechanism, thereby improving the practicality of the equipment.
[0010] Preferably, the drilling mechanism includes a first cylinder, a third motor and a drill bit, the third motor is installed at the left end of the first cylinder, and the right end of the drill bit is installed on the output end of the third motor; the position of the drill bit is adjusted by extending and contracting the first cylinder, and the drill bit drills the slope when the third motor is started, thereby improving the practicality of the equipment.
[0011] Preferably, the feeding mechanism includes a feed hopper, a feed barrel, a fourth motor, a stirring shaft and multiple stirring blades. The output end of the feed hopper is connected to the top of the feed barrel, the fourth motor is installed at the top of the feed barrel, the input end of the stirring shaft is connected to the output end of the fourth motor, the stirring shaft is located inside the feed barrel, and multiple stirring blades are provided on the stirring shaft; the mortar raw materials are discharged into the feed barrel through the feed hopper, and the stirring shaft is rotated by starting the fourth motor, and the mortar raw materials are stirred by the multiple stirring blades respectively to mix them to form mortar, thereby improving the practicality of the equipment.
[0012] Preferably, the grouting mechanism includes a grouting pump, a hose, a grouting pipe and a second cylinder, the input end of the grouting pump is connected to the outer wall of the feed barrel, the input end of the hose is connected to the output end of the grouting pump, the output end of the hose is connected to the input end of the grouting pipe, the right end of the grouting pipe is connected to the left end of the second cylinder, and the right end of the second cylinder is installed on the adjustment mechanism; the grouting pipe is allowed to enter the hole by extending the second cylinder, and the grouting pump is started to discharge the mortar in the feed barrel through the hose into the grouting pipe, and the mortar discharged through the grouting pipe is used to grout the slope for grouting reinforcement, thereby improving the practicality of the equipment.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: the equipment is moved to the construction site by the power-assisted mobile mechanism, the drilling mechanism and the grouting mechanism are raised and lowered according to the construction position of the slope by starting the lifting mechanism, the angle and position of the drilling mechanism and the grouting mechanism are adjusted according to the slope angle by starting the adjustment mechanism, the construction position of the slope is drilled by starting the drilling mechanism, and after the drilling is completed, mortar is supplied to the grouting mechanism by starting the feeding mechanism, the grouting mechanism is made to reach the drilling site by moving the mobile mechanism, and the hole is poured by starting the grouting mechanism to reinforce the slope by grouting, thereby improving the practicality of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is an axonometric schematic diagram of the present utility model;
[0015] Figure 2 This is an axonometric diagram of the mobile mechanism of the utility model;
[0016] Figure 3 This is an axonometric diagram of the lifting mechanism of the utility model;
[0017] Figure 4 This is an axonometric diagram of the adjustment mechanism of the utility model;
[0018] Figure 5 This is an axonometric diagram of the drilling mechanism of the present utility model;
[0019] Figure 6 This is a front cross-sectional view of the feeding mechanism of the present utility model;
[0020] Figure 7 It is an axonometric schematic diagram of the grouting mechanism of the present utility model.
[0021] Reference numerals in the accompanying drawings: 01, moving mechanism; 11, base; 12, roller; 13, connecting piece; 14, handle;
[0022] 02. Lifting mechanism; 21. First mounting plate; 22. Screw; 23. Slide rod; 24. Slider; 25. Connecting rod; 26. First motor; 03. Adjusting mechanism; 31. Second mounting plate; 32. Multi-stage electric cylinder; 33. Guide rod; 34. Third mounting plate; 35. Bearing; 36. Rotating shaft; 37. Second motor; 04. Drilling mechanism; 41. First cylinder; 42. Third motor; 43. Drill bit; 05. Feeding mechanism; 51. Feed hopper; 52. Feeding barrel; 53. Fourth motor; 54. Agitating shaft; 55. Agitating blade; 06. Grouting mechanism; 61. Grouting pump; 62. Hose; 63. Grouting pipe; 64. Second cylinder. DETAILED DESCRIPTION
[0023] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.
[0024] Example 1
[0025] like Figure 1 As shown, a mobile slope grouting reinforcement machine includes a mobile mechanism 01; further includes a lifting mechanism 02, an adjustment mechanism 03, a drilling mechanism 04, a feeding mechanism 05 and a grouting mechanism 06, wherein the lifting mechanism 02 is mounted on the mobile mechanism 01, the adjustment mechanism 03 is mounted on the lifting mechanism 02, the drilling mechanism 04 is mounted on the adjustment mechanism 03, the feeding mechanism 05 is mounted on the mobile mechanism 01, the feeding mechanism 05 is located on the right side of the lifting mechanism 02, the grouting mechanism 06 is mounted on the adjustment mechanism 03, and the grouting mechanism 06 is located in front of the drilling mechanism 04;
[0026] The equipment is moved to the construction site by the assisting moving mechanism 01, and the drilling mechanism 04 and the grouting mechanism 06 are raised and lowered according to the construction position of the slope by starting the lifting mechanism 02. The angles and positions of the drilling mechanism 04 and the grouting mechanism 06 are adjusted according to the angle of the slope by starting the adjusting mechanism 03. The construction position of the slope is drilled by starting the drilling mechanism 04. After the drilling is completed, the mortar is supplied to the grouting mechanism 06 by starting the feeding mechanism 05. The grouting mechanism 06 is moved to the drilling site by moving the moving mechanism 01, and the grouting mechanism 06 is started to pour mortar into the hole to reinforce the slope by grouting, thereby improving the practicality of the equipment.
[0027] like Figure 2 As shown, the mobile mechanism 01 includes a base 11, a plurality of rollers 12, a plurality of connecting members 13 and a handle 14. The top ends of the plurality of rollers 12 are respectively mounted on the bottom ends of the base 11, the front ends of the plurality of connecting members 13 are respectively mounted on the rear ends of the base 11, and the bottom end of the handle 14 is mounted on the rear end of the top end of the base 11. Figure 3 As shown, the lifting mechanism 02 includes multiple first mounting plates 21, screws 22, multiple sliding rods 23, multiple sliders 24, multiple connecting rods 25 and a first motor 26. The two ends of the screws 22 are respectively rotatably mounted on the side surfaces of the first mounting plates 21, the two ends of the multiple sliding rods 23 are respectively mounted on the side ends of the multiple first mounting plates 21, the multiple sliders 24 are respectively mounted on the screws 22 and the multiple sliding rods 23, the multiple connecting rods 25 are respectively mounted on the outer rings of the multiple sliders 24, the first motor 26 is mounted on the top of the upper first mounting plate 21, and the output end of the first motor 26 is connected to the top of the screw 22;
[0028] like Figure 4As shown, the adjustment mechanism 03 includes a second mounting plate 31, a multi-stage electric cylinder 32, a plurality of guide rods 33, a third mounting plate 34, a plurality of bearings 35, a rotating shaft 36 and a plurality of second motors 37. The right end of the multi-stage electric cylinder 32 is mounted on the left end of the second mounting plate 31, and the right parts of the plurality of guide rods 33 are respectively slidably mounted on the second mounting plate 31. The left ends of the multi-stage electric cylinder 32 and the plurality of guide rods 33 are respectively mounted on the right end of the third mounting plate 34. The outer rings of the plurality of bearings 35 are respectively mounted on the left end of the third mounting plate 34. The rotating shaft 36 is mounted on the inner rings of the plurality of bearings 35. The output end of the second motor 37 is connected to the front end of the rotating shaft 36.
[0029] The base 11 supports multiple rollers 12 and is connected to multiple bases 11 through multiple connecting members 13. The base 11 is moved by a power-assisting tool and is moved by a staff-assisting handle 14. Multiple first mounting plates 21 respectively support the screw 22 and multiple sliding rods 23. The screw 22 is rotated by starting the first motor 26, and the multiple sliders 24 are moved up and down by the rotation of the screw 22. Multiple connecting rods 25 respectively guide the multiple sliders 24. The second mounting plate 31 and the third mounting plate 34 respectively support the multi-stage electric cylinder 32 and multiple guide rods 33. The position of the drilling mechanism 04 and the grouting mechanism 06 is moved by extending and contracting the multi-stage electric cylinder 32. Multiple guide rods 33 guide the multi-stage electric cylinder 32. Multiple bearings 35 respectively support the rotating shaft 36. The rotating shaft 36 is rotated by starting the second motor 37 to adjust the angles of the drilling mechanism 04 and the grouting mechanism 06, thereby improving the practicality of the equipment.
[0030] Example 2
[0031] like Figure 5 As shown, based on Example 1, it also includes a drilling mechanism 04, which includes a first cylinder 41, a third motor 42 and a drill bit 43. The third motor 42 is installed at the left end of the first cylinder 41, and the right end of the drill bit 43 is installed on the output end of the third motor 42;
[0032] The position of the drill bit 43 is adjusted by extending and contracting the first cylinder 41, and the drill bit 43 drills a hole in the slope when the third motor 42 is started, thereby improving the practicability of the equipment.
[0033] Example 3
[0034] like Figure 6 and Figure 7As shown, on the basis of Example 1, it also includes a feeding mechanism 05 and a grouting mechanism 06, the feeding mechanism 05 includes a feeding hopper 51, a feeding barrel 52, a fourth motor 53, a stirring shaft 54 and a plurality of stirring blades 55, the output end of the feeding hopper 51 is connected to the top of the feeding barrel 52, the fourth motor 53 is installed at the top of the feeding barrel 52, the input end of the stirring shaft 54 is connected to the output end of the fourth motor 53, the stirring shaft 54 is located inside the feeding barrel 52, and a plurality of stirring blades 55 are provided on the stirring shaft 54; the grouting mechanism 06 includes a grouting pump 61, a hose 62, a grouting pipe 63 and a second cylinder 64, the input end of the grouting pump 61 is connected to the outer wall of the feeding barrel 52, the input end of the hose 62 is connected to the output end of the grouting pump 61, the output end of the hose 62 is connected to the input end of the grouting pipe 63, the right end of the grouting pipe 63 is connected to the left end of the second cylinder 64, and the right end of the second cylinder 64 is installed on the adjustment mechanism 03;
[0035] The mortar raw materials are discharged into the feeding barrel 52 through the feeding hopper 51, and the stirring shaft 54 is rotated by starting the fourth motor 53. The mortar raw materials are stirred by multiple stirring blades 55 to mix and form mortar. The grouting pipe 63 is allowed to enter the hole by extending the second cylinder 64, and the grouting pump 61 is started to make the mortar in the feeding barrel 52 be discharged into the grouting pipe 63 through the hose 62. The mortar discharged through the grouting pipe 63 is used to grout the slope for reinforcement, thereby improving the practicality of the equipment.
[0036] like Figures 1 to 7As shown, a mobile slope grouting reinforcement machine of the present invention, when working, first the base 11 supports the multiple rollers 12, which are connected to the multiple bases 11 through multiple connecting members 13, the base 11 is moved by the power-assisting tool, and the base 11 is moved by the staff power-assisting handle 14, and then the multiple first mounting plates 21 respectively support the screw 22 and the multiple sliding rods 23, and the screw 22 is rotated by starting the first motor 26, and the multiple sliders 24 are moved up and down by the rotation of the screw 22, and the multiple connecting rods 25 respectively guide the multiple sliders 24, and then the second mounting plate 31 and the third mounting plate 34 respectively support the multi-stage electric cylinder 32 and the multiple guide rods 33, and the position of the drilling mechanism 04 and the grouting mechanism 06 is moved by extending and contracting the multi-stage electric cylinder 32, and the multiple guide rods 33 guide the multi-stage electric cylinder 32 is guided, and multiple bearings 35 respectively support the rotating shaft 36. The rotating shaft 36 is rotated by starting the second motor 37 to adjust the angles of the drilling mechanism 04 and the grouting mechanism 06. The position of the drill bit 43 is adjusted by extending and contracting the first cylinder 41. When the third motor 42 is started, the drill bit 43 drills the slope. Thereafter, the mortar raw materials are discharged into the feeding barrel 52 through the feed hopper 51. The stirring shaft 54 is rotated by starting the fourth motor 53, and the mortar raw materials are stirred by multiple stirring blades 55 to mix and form mortar. Finally, the grouting pipe 63 is allowed to enter the hole by extending the second cylinder 64. The grouting pump 61 is started to discharge the mortar in the feeding barrel 52 into the grouting pipe 63 through the hose 62. The mortar discharged through the grouting pipe 63 is used to grout and reinforce the slope, thereby improving the practicality of the equipment.
[0037] The first motor 26, the second motor 37, the third motor 42, the fourth motor 53 and the grouting pump 61 of the utility model are purchased on the market. Technicians in this industry only need to install and operate them according to the accompanying instruction manuals without the need for creative work by technicians in this field.
[0038] The main functions achieved by the present invention are: by starting the adjustment mechanism 03, the angles and positions of the drilling mechanism 04 and the grouting mechanism 06 are adjusted according to the angle of the slope, by starting the drilling mechanism 04 to drill holes at the construction position of the slope, and after the drilling is completed, by starting the grouting mechanism 06 to pour concrete into the hole, the slope is grouting-reinforced, and the practicality of the equipment is improved.
[0039] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A mobile slope grouting reinforcement machine, comprising a mobile mechanism (01); characterized in that: The invention also includes a lifting mechanism (02), an adjusting mechanism (03), a drilling mechanism (04), a feeding mechanism (05) and a grouting mechanism (06), wherein the lifting mechanism (02) is mounted on the moving mechanism (01), the adjusting mechanism (03) is mounted on the lifting mechanism (02), the drilling mechanism (04) is mounted on the adjusting mechanism (03), the feeding mechanism (05) is mounted on the moving mechanism (01), the feeding mechanism (05) is located on the right side of the lifting mechanism (02), the grouting mechanism (06) is mounted on the adjusting mechanism (03), and the grouting mechanism (06) is located in front of the drilling mechanism (04).
2. A mobile slope grouting reinforcement machine according to claim 1, characterized in that: The mobile mechanism (01) comprises a base (11), a plurality of rollers (12), a plurality of connecting members (13) and a handle (14), wherein the top ends of the plurality of rollers (12) are respectively mounted on the bottom ends of the base (11), the front ends of the plurality of connecting members (13) are respectively mounted on the rear ends of the base (11), and the bottom end of the handle (14) is mounted on the rear end of the top end of the base (11).
3. A mobile slope grouting reinforcement machine according to claim 1, characterized in that: The lifting mechanism (02) comprises a plurality of first mounting plates (21), a screw rod (22), a plurality of slide rods (23), a plurality of sliders (24), a plurality of connecting rods (25) and a first motor (26). The two ends of the screw rod (22) are respectively rotatably mounted on the side of the first mounting plate (21), the two ends of the plurality of slide rods (23) are respectively mounted on the side ends of the plurality of first mounting plates (21), the plurality of sliders (24) are respectively mounted on the screw rods (22) and the plurality of slide rods (23), the plurality of connecting rods (25) are respectively mounted on the outer rings of the plurality of sliders (24), the first motor (26) is mounted on the top end of the upper first mounting plate (21), and the output end of the first motor (26) is connected to the top end of the screw rod (22).
4. The mobile slope grouting reinforcement machine according to claim 1, characterized in that: The adjustment mechanism (03) includes a second mounting plate (31), a multi-stage electric cylinder (32), a plurality of guide rods (33), a third mounting plate (34), a plurality of bearings (35), a rotating shaft (36) and a plurality of second motors (37). The right end of the multi-stage electric cylinder (32) is mounted on the left end of the second mounting plate (31), the right parts of the plurality of guide rods (33) are respectively slidably mounted on the second mounting plate (31), the left ends of the multi-stage electric cylinder (32) and the plurality of guide rods (33) are respectively mounted on the right end of the third mounting plate (34), the outer rings of the plurality of bearings (35) are respectively mounted on the left end of the third mounting plate (34), the rotating shaft (36) is mounted on the inner rings of the plurality of bearings (35), and the output end of the second motor (37) is connected to the front end of the rotating shaft (36).
5. The mobile slope grouting reinforcement machine according to claim 1, characterized in that: The drilling mechanism (04) comprises a first cylinder (41), a third motor (42) and a drill bit (43), wherein the third motor (42) is mounted on the left end of the first cylinder (41), and the right end of the drill bit (43) is mounted on the output end of the third motor (42).
6. The mobile slope grouting reinforcement machine according to claim 1, characterized in that: The feeding mechanism (05) comprises a feeding hopper (51), a feeding barrel (52), a fourth motor (53), a stirring shaft (54) and a plurality of stirring blades (55). The output end of the feeding hopper (51) is connected to the top end of the feeding barrel (52). The fourth motor (53) is installed at the top end of the feeding barrel (52). The input end of the stirring shaft (54) is connected to the output end of the fourth motor (53). The stirring shaft (54) is located inside the feeding barrel (52). The stirring shaft (54) is provided with a plurality of stirring blades (55).
7. The mobile slope grouting reinforcement machine according to claim 1, characterized in that: The grouting mechanism (06) comprises a grouting pump (61), a hose (62), a grouting pipe (63) and a second cylinder (64). The input end of the grouting pump (61) is connected to the outer wall of the feed barrel (52), the input end of the hose (62) is connected to the output end of the grouting pump (61), the output end of the hose (62) is connected to the input end of the grouting pipe (63), the right end of the grouting pipe (63) is connected to the left end of the second cylinder (64), and the right end of the second cylinder (64) is mounted on the adjustment mechanism (03).
Citation Information
Patent Citations
Foundation reinforcement grouting machine
CN220099869U