Solidified soil construction grouting control device

By introducing a tapping mechanism and an adjusting mechanism into the grouting control device, the problem of slow flow caused by grout adhesion was solved, enabling rapid grout flow and efficient grouting, preventing sedimentation or solidification, and improving construction efficiency.

CN223593372UActive Publication Date: 2025-11-25JIANGSU XINNENG HAILI OFFSHORE WIND POWER CO LTD +2
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Patent Information

Application Number
CN202423109848.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-25
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing grouting control devices are prone to grouting due to the viscous nature of the grout, which tends to adhere to the inner wall of the feed funnel, resulting in a slowdown in grout flow, a longer grouting operation time, and a reduction in grouting efficiency.

Method used

A grouting control device for solidified soil construction, including a striking mechanism and an adjustment mechanism, was designed. The device uses a motor-driven striking rod to vibrate the feed funnel, and combined with the adjustable discharge port size, it ensures rapid grout flow and adapts to the grouting speed.

Benefits of technology

By using vibration and adjusting the outlet design, the flow rate of the slurry is significantly accelerated, the grouting operation time is shortened, the overall grouting efficiency is improved, and blockages caused by slurry sedimentation or solidification are prevented.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a solidified soil construction grouting control device, which belongs to the technical field of grouting and comprises a bottom plate, the bottom of the bottom plate is connected with a plurality of universal wheels, the top of the bottom plate is connected with a plurality of supporting legs, the tops of the supporting legs are connected with the same first feeding hopper, and a knocking mechanism is arranged on the outer wall of the first feeding hopper. According to the utility model, through the arrangement of the knocking mechanism, when the bump rotates, the moving rod can be driven to move, so that the connecting rod drives the knocking rod to be separated from one side of the connecting block, the spring can be driven to generate elastic force through the fixed ring, and when the bump is separated from the moving rod, the spring drives the fixed ring and the knocking rod to reset through the elastic force; according to the grouting device, the connecting block is knocked by the knocking rod, so that the first feeding hopper can generate vibration, flowing of grout in the first feeding hopper can be accelerated, the grout can be injected into a needed place more quickly, the time of grouting operation is shortened, and the overall efficiency of grouting is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to grouting technical field especially, it relates to a solidified soil construction grouting control device. BACKGROUND

[0002] Solidified soil is a kind of geotechnical material that is stabilized by chemical or physical method, it is usually mixed by soil solidifying agent and cement, lime and other cementing materials and soil, and is used for the reinforcement of pavement base or building foundation.

[0003] When injecting the prepared solidified soil slurry into the ground or foundation needing reinforcement, a grouting control device is needed, and the existing grouting control device is used, since the slurry has certain viscosity, it is easy to adhere to the inner wall of the feed hopper, this adhesion phenomenon will slow down the flow rate of the slurry, thereby prolonging the grouting operation time, and further leading to the decline of overall grouting efficiency. UTILITY MODEL CONTENT

[0004] The utility model aims at: in order to solve prior art, the viscosity of slurry makes it easy to adhere to the inner wall of the feed hopper, thereby slowing down the flow rate of the slurry, prolonging the grouting operation time, and further leading to the decline of overall grouting efficiency, and a solidified soil construction grouting control device is proposed.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A solidified soil construction grouting control device, comprising a bottom plate, the bottom plate is connected with a plurality of universal wheels, the top of the bottom plate is connected with a plurality of supporting legs, and the top of the plurality of supporting legs is connected with a same first feed hopper, and the outer wall of the first feed hopper is provided with a knocking mechanism.

[0007] The knocking mechanism comprises a mounting plate and two sliding sleeves, one side of the mounting plate is connected with one side of the first feed hopper, one side of the sliding sleeve is connected with one side of the first feed hopper, the inner wall of the sliding sleeve is slidably connected with a knocking rod, one end of the knocking rod is attached with a connecting block, one side of the connecting block is connected with one side of the first feed hopper, the other end of the knocking rod is connected with a connecting rod, and one end of the two connecting rods is connected with a same moving rod, the outer wall of the knocking rod is connected with a fixing ring, the knocking rod is provided with a spring, and the two ends of the spring are connected with one side of the fixing ring and one side of the sliding sleeve respectively.

[0008] Further description of the above technical scheme:

[0009] The bottom of the mounting plate is connected with a motor, the output shaft of the motor penetrates through the bottom of the mounting plate and is connected with a second bevel gear, the two sides of the second bevel gear are engaged with first bevel gears, one side of the first bevel gear is connected with a rotating rod, the other end of the rotating rod is connected with a protruding block, the outer wall of the rotating rod is rotatably connected with a fixing sleeve, one side of the fixing sleeve is connected with one side of the first feeding funnel.

[0010] As a further description of the above technical solution:

[0011] The top of the bottom plate is connected with a support frame, the top of the support frame is connected with a stirring barrel, the stirring barrel is provided with a stirring module, the top of the stirring barrel is connected with a second feeding funnel, and the one side of the stirring barrel is provided with an adjusting mechanism.

[0012] As a further description of the above technical solution:

[0013] The adjusting mechanism comprises a discharge port, the discharge port is arranged on the inner wall bottom of the stirring barrel, and the discharge port is located at the top of the first feeding funnel, a chute is arranged on one side of the discharge port, and a placing groove is arranged on the other side of the discharge port, a baffle is slidably connected to the inner wall of the chute, and the outer wall of the baffle is attached to the inner wall of the placing groove.

[0014] As a further description of the above technical solution:

[0015] A threaded groove is arranged on one side of the chute, a threaded rod is threadedly connected to the inner wall of the threaded groove, one end of the threaded rod is rotatably connected to one side of the baffle, and the other end of the threaded rod extends out of the threaded groove and is connected with a knob.

[0016] As a further description of the above technical solution:

[0017] The top of the bottom plate is provided with a control module, one side of the control module is provided with a grouting module, the two sides of the control module are respectively connected with the two sides of the support frame, and the top of the bottom plate is connected with a handle.

[0018] As described above, due to the adoption of the above technical solution, the beneficial effects of the present application are:

[0019] 1. The utility model discloses a knock mechanism is set through, and the second bevel gear and two first bevel gears are rotated through motor output shaft rotation, thereby drive rotating rod and lug rotation, make the lug inclined surface side can be through extrusion drive mobile rod removal, and can drive spring through the fixed ring and knock the rod reset when the lug and mobile rod separate, make knock the rod to the connecting block knock, thereby can make the vibration of first feed hopper, and can accelerate the flow of slurry in first feed hopper, make slurry can be injected the place required faster, thereby shorten the time of grouting operation, and then improve the overall efficiency of grouting.

[0020] 2. The utility model discloses an adjusting mechanism is set through, and drive threaded rod rotation through the rotation knob, and threaded rod can move through the rotation in screw groove, and can drive baffle removal, and baffle removal can adjust the size of discharge gate, thereby can adjust the discharge speed of slurry in stirring barrel, make it can adapt to the speed of grouting mould group grouting, thereby make the slurry that falls into first feed hopper can not accumulate for too long and deposit or solidify, and then can prevent the slurry block of deposit or solidification and block up grouting pipe in grouting mould group. DRAWINGS

[0021] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;

[0022] Figure 2 It is the structure schematic diagram of stirring barrel of the utility model;

[0023] Figure 3 It is the structure schematic diagram of knock mechanism of the utility model;

[0024] Figure 4 It is the structure schematic diagram of the utility model Figure 3 in A part amplification structure schematic diagram;

[0025] Figure 5 It is the section structure schematic diagram of stirring barrel of the utility model;

[0026] Figure 6 It is the structure schematic diagram of the utility model Figure 5 in B part amplification structure schematic diagram.

[0027] Legend: 1, bottom plate; 2, support leg; 3, universal wheel; 4, knock mechanism; 401, connecting block; 402, knock rod; 403, fixed ring; 404, spring; 405, sliding sleeve; 406, lug; 407, mobile rod; 408, connecting rod; 409, motor; 410, rotating rod; 411, first bevel gear; 412, mounting plate;

[0028] 413, second bevel gear; 414, fixed sleeve; 5, adjusting mechanism; 501, knob; 502, threaded rod;

[0029] 503, placing groove; 504, discharge port; 505, baffle; 506, chute; 507, threaded groove; 6, support frame; 7, control module; 8, handle; 9, stirring barrel; 10, first feeding hopper; 11, grouting module; 12, stirring module; 13, second feeding hopper. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0031] Please refer to Figures 1-6 The utility model provides a kind of technical solutions: a solidified soil construction grouting control device, including bottom plate 1, the bottom plate 1 bottom is connected with multiple universal wheels 3, the bottom plate 1 top is connected with multiple supporting legs 2, and multiple supporting legs 2 top are connected with same first feeding hopper 10, and first feeding hopper 10 outer wall is provided with knocking mechanism 4;

[0032] Knocking mechanism 4 includes mounting plate 412 and two sliding sleeves 405, mounting plate 412 side is connected with first feeding hopper 10 side, sliding sleeve 405 side is connected with first feeding hopper 10 side, and knocking lever 402 is slidably connected on the inner wall of sliding sleeve 405, knocking lever 402 one end is attached with connecting block 401, connecting block 401 side is connected with first feeding hopper 10 side, and the other end of knocking lever 402 is connected with connecting rod 408, and the one end of two connecting rods 408 is connected with same moving rod 407, and the outer wall of knocking lever 402 is connected with fixed ring 403, and spring 404 is provided on the outer sleeve of knocking lever 402, and the two ends of spring 404 are connected with fixed ring 403 side and sliding sleeve 405 side respectively, and the bottom of mounting plate 412 is connected with motor 409, and the output shaft of motor 409 penetrates the bottom of mounting plate 412 and is connected with second bevel gear 413, and the two sides of second bevel gear 413 are engaged with first bevel gear 411, and the side of first bevel gear 411 is connected with rotating rod 410, and the other end of rotating rod 410 is connected with lug 406, and the outer wall of rotating rod 410 is rotatably connected with fixed sleeve 414, and the side of fixed sleeve 414 is connected with first feeding hopper 10 side, and the top of bottom plate 1 is provided with control module 7, and the side of control module 7 is provided with grouting module 11, and the two sides of control module 7 are connected with support frame 6 two sides respectively, and the top of bottom plate 1 is connected with handle 8.

[0033] The embodiment is specific: the motor 409 output shaft rotates to drive the second bevel gear 413 to rotate, the second bevel gear 413 rotates to drive the two first bevel gears 411 to rotate, the first bevel gears 411 rotate to drive the rotating rod 410 to rotate, the rotating rod 410 rotates to drive the protruding block 406 to rotate, when the protruding block 406 rotates, the slanted side of the protruding block 406 can extrude one side of the moving rod 407, so that the moving rod 407 can be moved to the direction of compression of the spring 404, the moving rod 407 moves to drive the connecting rod 408 and the knocking rod 402 to move, so that one end of the knocking rod 402 is separated from one side of the connecting block 401, and the knocking rod 402 can drive the spring 404 to compress through the fixed ring 403, so that the spring 404 generates elastic force, when the protruding block 406 is separated from the moving rod 407, the spring 404 releases the elastic force, so that the knocking rod 402 can be driven to move to the connecting block 401 through the fixed ring 403, so that the knocking rod 402 knocks the connecting block 401, so that the connecting block 401 generates vibration, since the connecting block 401 is connected with the first feeding funnel 10, the vibration generated by the connecting block 401 can be transmitted to the first feeding funnel 10, so that the flow of the slurry in the first feeding funnel 10 can be accelerated, so that the slurry can be injected into the required place faster, thereby shortening the time of the grouting operation, and further improving the overall efficiency of the grouting, the fixed sleeve 414 can support the rotating rod 410, so that the rotating rod 410 can rotate more stably, the control module 7 and the grouting module 11 can control the amount of slurry according to the needs, and the universal wheel 3 is convenient for moving the whole device.

[0034] The bottom plate 1 is connected with a support frame 6, the top of the support frame 6 is connected with a stirring barrel 9, the stirring barrel 9 is provided with a stirring module 12, the top of the stirring barrel 9 is connected with a second feeding funnel 13, one side of the stirring barrel 9 is provided with an adjusting mechanism 5, the adjusting mechanism 5 comprises a discharge port 504, the discharge port 504 is arranged on the inner wall of the stirring barrel 9, and the discharge port 504 is located on the top of the first feeding funnel 10, one side of the discharge port 504 is provided with a chute 506, and the other side of the discharge port 504 is provided with a placing groove 503, the inner wall of the chute 506 is slidably connected with a baffle 505, the outer wall of the baffle 505 is attached to the inner wall of the placing groove 503, a threaded groove 507 is arranged on one side of the chute 506, a threaded rod 502 is threadedly connected with the inner wall of the threaded groove 507, one end of the threaded rod 502 is rotatably connected with one side of the baffle 505, and the other end of the threaded rod 502 extends out of the threaded groove 507 and is connected with a knob 501.

[0035] The embodiment is specific as follows: the rotating knob 501 drives the threaded rod 502 to rotate, the threaded rod 502 is capable of moving along the threaded groove 507 by rotating in the threaded groove 507, the threaded rod 502 drives the baffle 505 to move along the sliding groove 506, the baffle 505 is capable of adjusting the size of the discharge port 504, thereby capable of adjusting the discharging speed of the slurry in the stirring barrel 9, so that the slurry falling into the first feeding hopper 10 can not be accumulated for too long to be precipitated or solidified, thereby capable of preventing the slurry block precipitated or solidified from blocking the grouting pipe in the grouting mold group 11, the stirring mold group 12 is capable of stirring the material for preparing the solidified soil slurry, so that the material can be mixed uniformly, thereby capable of preparing the solidified soil slurry, and the material for preparing the solidified soil slurry can be added into the stirring barrel 9 through the second feeding hopper 13.

[0036] The working principle is as follows: in use, the motor 409 is started, the output shaft of the motor 409 drives the second bevel gear 413 and the two first bevel gears 411 to rotate, thereby driving the rotating rod 410 and the lug 406 to rotate, so that the lug 406 is capable of extruding one side of the moving rod 407 through the inclined surface, thereby capable of driving the knocking rod 402 to move through the moving rod 407 and the connecting rod 408, so that one end of the knocking rod 402 is separated from one side of the connecting block 401, and the knocking rod 402 is capable of driving the fixed ring 403 and the spring 404 to compress to generate elastic force through the fixed ring 403, when the lug 406 is separated from the moving rod 407, the spring 404 drives the fixed ring 403 and the knocking rod 402 to reset through the release of the elastic force, so that the knocking rod 402 is capable of knocking the connecting block 401, thereby capable of making the first feeding hopper 10 vibrate, thereby capable of accelerating the flow of the slurry in the first feeding hopper 10, the rotating knob 501 drives the threaded rod 502 to rotate, the threaded rod 502 is capable of moving along the threaded groove 507 by rotating in the threaded groove 507, thereby capable of driving the baffle 505 to move, so that the size of the discharge port 504 is capable of being adjusted, thereby capable of controlling the discharging speed of the slurry in the stirring barrel 9, so that the slurry in the first feeding hopper 10 can be prevented from being accumulated.

[0037] The above is only the preferred embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A solidifying soil construction grouting control device comprising a base plate (1), characterized in that: The bottom plate (1) is connected with multiple universal wheels (3), the top of the bottom plate (1) is connected with multiple supporting legs (2), and the top of the multiple supporting legs (2) is connected with a same first feeding hopper (10), and the outer wall of the first feeding hopper (10) is provided with a knocking mechanism (4). The knocking mechanism (4) comprises a mounting plate (412) and two sliding sleeves (405), one side of the mounting plate (412) is connected with one side of the first feeding hopper (10), one side of the sliding sleeve (405) is connected with one side of the first feeding hopper (10), a knocking rod (402) is slidably connected with the inner wall of the sliding sleeve (405), a connecting block (401) is attached to one end of the knocking rod (402), one side of the connecting block (401) is connected with one side of the first feeding hopper (10), a connecting rod (408) is connected with the other end of the knocking rod (402), one end of the two connecting rods (408) is connected with a same moving rod (407), a fixing ring (403) is connected with the outer wall of the knocking rod (402), a spring (404) is arranged on the outer sleeve of the knocking rod (402), and the two ends of the spring (404) are respectively connected with one side of the fixing ring (403) and one side of the sliding sleeve (405).

2. The solidified soil construction grouting control device according to claim 1, characterized by: The bottom of the mounting plate (412) is connected with a motor (409), the output shaft of the motor (409) penetrates through the bottom of the mounting plate (412) and is connected with a second bevel gear (413), the two sides of the second bevel gear (413) are engaged with first bevel gears (411), one side of the first bevel gear (411) is connected with a rotating rod (410), the other end of the rotating rod (410) is connected with a protruding block (406), a fixing sleeve (414) is rotatably connected with the outer wall of the rotating rod (410), and one side of the fixing sleeve (414) is connected with one side of the first feeding hopper (10).

3. The solidified soil construction grouting control device according to claim 1, characterized by: The top of the bottom plate (1) is connected with a supporting frame (6), the top of the supporting frame (6) is connected with a stirring barrel (9), the stirring barrel (9) is provided with a stirring module (12) in the inside, the top of the stirring barrel (9) is connected with a second feeding hopper (13), and one side of the stirring barrel (9) is provided with an adjusting mechanism (5).

4. The solidified soil construction grouting control device according to claim 3, characterized by: The adjusting mechanism (5) comprises a discharge port (504), the discharge port (504) is arranged on the inner wall of the stirring barrel (9) and is located at the top of the first feeding hopper (10), one side of the discharge port (504) is provided with a chute (506), the other side of the discharge port (504) is provided with a placing groove (503), the inner wall of the chute (506) is slidably connected with a baffle (505), and the outer wall of the baffle (505) is attached to the inner wall of the placing groove (503).

5. The solidifying soil construction grouting control device according to claim 4, characterized by: One side of the chute (506) is provided with a threaded groove (507), the inner wall of the threaded groove (507) is threadedly connected with a threaded rod (502), one end of the threaded rod (502) is rotatably connected with one side of the baffle (505), the other end of the threaded rod (502) extends out of the threaded groove (507) and is connected with a knob (501).

6. The soil stabilization construction grouting control device of claim 1, wherein: The bottom plate (1) top is equipped with control module (7), one side of control module (7) is equipped with grouting module (11), both sides of control module (7) are connected with both sides of support frame (6) respectively, the top of bottom plate (1) is connected with handle (8).