Slurry extracting device for construction
Through the design of fixed components and lifting mechanism, the problem of inconvenience in operation after cement lifting is solved, and the automatic unloading of cement barrels at high places is realized, which reduces costs, improves operational convenience and fixed strength.
Patent Information
- Application Number
- CN202422685928.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-11-05
AI Technical Summary
The existing cement lifting device is inconvenient to operate when removing cement from a high place, and setting up electric components to push out cement will increase costs, and automatic unloading cannot be achieved through structural improvement.
The fixing components and lifting mechanism are designed, and the ground nails are used to fix them with soil. The auxiliary plates enhance stability, and the automatic unloading of cement barrels is achieved through the lifting mechanism and auxiliary components to avoid the use of electric components.
Automatic unloading of cement barrels at high places is realized, reducing costs, improving operational convenience and fixed strength.
Smart Images

Figure CN223268276U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of extraction devices, in particular to a construction mud extraction device. Background Art
[0002] Cement is needed in the construction of bridges. When people are at a high place, the cement needs to be lifted to a high place and then taken out. At this time, a cement extraction device is needed.
[0003] Although cement can be lifted to a high place by an extraction device at present, it needs to be taken out from the lifting base after the cement is lifted to a high place, which is inconvenient. If an electric component is provided to push out the cement bucket, the cost will increase. However, it is not possible to automatically push out the cement when the cement is lifted to a high place through structural improvements. Utility Model Content
[0004] In view of this, the utility model provides a mud extraction device for construction, which solves the problem that although cement can be lifted to a high place by the extraction device, the cement needs to be taken out from the lifting placement seat after being lifted to a high place, which is not convenient to operate. If an electric component is set to push the cement bucket out, the cost will increase. The problem that the cement cannot be automatically pushed out when the cement is lifted to a high place through structural improvements is solved.
[0005] The purpose and effect of the construction mud extraction device of the utility model are achieved by the following specific technical means:
[0006] The utility model provides a construction mud extraction device, which specifically includes: a main body seat;
[0007] A fixing component is installed on the main body seat.
[0008] Furthermore, the fixing assembly is composed of a fixing seat, a ground nail, an auxiliary plate and a support plate. There are two fixing seats in total, which are respectively welded to the left end face and the right end face of the main seat. Each fixing seat is connected with two ground nails for fixing the fixing seat.
[0009] Furthermore, an auxiliary plate is welded to the bottom end surface of the fixing seat. The auxiliary plate is a T-shaped plate structure and serves as an auxiliary fixing member of the fixing seat.
[0010] Furthermore, a support plate is welded to the top surface of each fixing seat, and both support plates are rectangular structures. The top surfaces of the two support plates are clamped with the steps of the ground nails. At this time, the distance between the top step of the ground nails and the fixing seat is 5 cm. When fixing, the ground nails can be directly passed through the fixing seat and fixed to the soil. After the ground nails and the soil are fixed, the auxiliary plate is plugged into the soil, and double fixation is completed. When the position needs to be transferred, the ground nails need to be removed. When removing the ground nails, since the distance between the top step of the ground nails and the fixing seat is 5 cm, the ground nails can be directly pried up with a pry bar.
[0011] Furthermore, a lifting mechanism is installed on the main seat, and the lifting mechanism consists of a guide rod, a placement seat, a mounting seat, a winding roller and a motor. There are two guide rods, both of which are fixed on the main seat. A placement seat is slidably connected to the two guide rods, and a cement bucket that needs to be lifted is placed on the placement seat.
[0012] Furthermore, a mounting seat is welded to the top surface of the main seat, which is composed of two rectangular plates. A winding roller and a motor for driving the winding roller are installed on the mounting seat. The rope on the winding roller is connected to the placement seat. When lifting is required, the cement bucket is placed on the placement seat, and then the motor is controlled to rotate. When the motor rotates, the rope can be wound, and at this time, the height of the placement seat can be adjusted, and the lifting of the cement bucket is completed.
[0013] Furthermore, an auxiliary component is installed on the placement seat, which consists of a pushing frame, a force block, a spring rod and an extrusion rod. The pushing frame is slidably connected to the placement seat, and the pushing frame is in contact with the cement barrel. A force block is welded on the rear side of the pushing frame, and a spring rod is installed between the force block and the placement seat for resetting the force block backward.
[0014] Furthermore, the top surface of the force-bearing block is an inclined structure, and two extrusion rods are welded on the main seat. Both extrusion rods are L-shaped rod structures, and the lower ends of the two extrusion rods are aligned with the top surface of the force-bearing block. During the lifting process, when the force-bearing block contacts the extrusion rod, the force-bearing block moves forward. At this time, the cement bucket can be pushed out by the pushing frame to realize automatic unloading.
[0015] Beneficial effects
[0016] Through the setting of the lifting mechanism and auxiliary components, on the one hand, when lifting is required, the cement bucket is placed on the placement seat, and then the motor is controlled to rotate. When the motor rotates, the rope can be reeled in. At this time, the height of the placement seat can be adjusted, and the lifting of the cement bucket is completed.
[0017] On the other hand, during the lifting process, when the force block contacts the extrusion rod, the force block moves forward. At this time, the cement bucket can be pushed out by the pushing frame to realize automatic unloading. There is no need to set up a separate electric component for unloading, which reduces costs.
[0018] By setting up the fixing assembly, first, the ground nails can be directly passed through the fixing seat and fixed to the soil;
[0019] Second, after the ground nails are fixed to the soil, the auxiliary plate is plugged into the soil, and double fixation is completed. When the position needs to be moved, the ground nails need to be removed.
[0020] Third, when removing the ground nails, since the distance between the top step of the ground nails and the fixing seat is 5cm, the ground nails can be directly pried up with a pry bar, which improves the fixing strength and is more convenient and quick to remove. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings of the embodiments will be briefly introduced below.
[0022] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.
[0023] In the attached figure:
[0024] Figure 1 It is a schematic diagram of the main structure of the utility model construction mud extraction device.
[0025] Figure 2 It is a left-side structural schematic diagram of the utility model construction mud extraction device.
[0026] Figure 3 It is a schematic diagram of the top view of the construction mud extraction device of the utility model.
[0027] Figure 4 The utility model is an axial structural diagram of a construction mud extraction device.
[0028] Figure 5 This utility model Figure 4 Schematic diagram of the axial structure after rotation.
[0029] Figure 6 The utility model is a schematic diagram of the axial structure of a construction mud extraction device after partial sectioning.
[0030] Reference Signs List
[0031] 1. Main body; 2. Fixing assembly; 201. Fixing seat; 202. Ground nail; 203. Auxiliary plate; 204. Support plate; 3. Lifting mechanism; 301. Guide rod; 302. Placement seat; 303. Mounting seat; 304. Winding roller; 305. Motor; 4. Auxiliary assembly; 401. Pushing frame; 402. Force block; 403. Spring rod; 404. Extrusion rod. DETAILED DESCRIPTION
[0032] In order to make the purpose, scheme and advantages of the technical solution of the present invention more clear, the following will be combined with the drawings of specific embodiments of the present invention to clearly and completely describe the technical solution of the present invention. Unless otherwise specified, the terms used herein have the common meanings in the art. The same reference numerals in the drawings represent the same components.
[0033] Example 1:
[0034] Please refer to Figures 1 to 6 :
[0035] The utility model proposes a construction mud extraction device, comprising: a main body seat 1;
[0036] A fixing assembly 2 is installed on the main base 1 .
[0037] Among them, the fixing component 2 is composed of a fixing seat 201, a ground nail 202, an auxiliary plate 203 and a support plate 204. There are two fixing seats 201 in total. The two fixing seats 201 are welded on the left end face and the right end face of the main seat 1 respectively. Each fixing seat 201 is plugged with two ground nails 202 for fixing the fixing seat 201.
[0038] An auxiliary plate 203 is welded to the bottom end surface of the fixing seat 201 . The auxiliary plate 203 is a T-shaped plate structure and serves as an auxiliary fixing member of the fixing seat 201 .
[0039] Among them, each fixing seat 201 is welded with a support plate 204 on the top surface, and the two support plates 204 are both rectangular structures. The top surfaces of the two support plates 204 are clamped with the steps of the ground nail 202. At this time, the distance between the top step of the ground nail 202 and the fixing seat 201 is 5 cm. When fixing, the ground nail 202 is directly passed through the fixing seat 201 and fixed to the soil. After the ground nail 202 is fixed to the soil, the auxiliary plate 203 is plugged into the soil, and double fixation is completed. When the position needs to be moved, the ground nail 202 needs to be removed. When removing the ground nail 202, since the distance between the top step of the ground nail 202 and the fixing seat 201 is 5 cm, the ground nail 202 can be directly pried up with a pry bar.
[0040] Example 2:
[0041] Based on the first embodiment, Figure 6 As shown, it also includes: a lifting mechanism 3, a lifting mechanism 3 is installed on the main body seat 1, and the lifting mechanism 3 is composed of a guide rod 301, a placement seat 302, a mounting seat 303, a winding roller 304 and a motor 305. There are two guide rods 301, and the two guide rods 301 are fixed on the main body seat 1. A placement seat 302 is slidably connected to the two guide rods 301, and a cement bucket that needs to be lifted is placed on the placement seat 302.
[0042] Among them, a mounting seat 303 is welded to the top surface of the main seat 1, and the mounting seat 303 is composed of two rectangular plates. A winding roller 304 and a motor 305 for driving the winding roller 304 are installed on the mounting seat 303. The rope on the winding roller 304 is connected to the placement seat 302. When lifting is required, the cement bucket is placed on the placement seat 302, and then the motor 305 is controlled to rotate. When the motor 305 rotates, the rope can be wound up. At this time, the height of the placement seat 302 can be adjusted, and the lifting of the cement bucket is completed.
[0043] Example 3:
[0044] Based on the second embodiment, Figure 6 As shown, it also includes: an auxiliary component 4, an auxiliary component 4 is installed on the placement seat 302, the auxiliary component 4 is composed of a pushing frame 401, a force block 402, a spring rod 403 and an extrusion rod 404, the pushing frame 401 is slidably connected to the placement seat 302, the pushing frame 401 is in contact with the cement barrel, a force block 402 is welded to the rear side of the pushing frame 401, and a spring rod 403 for resetting the force block 402 backward is installed between the force block 402 and the placement seat 302.
[0045] Among them, the top surface of the force block 402 is an inclined structure, and two extrusion rods 404 are welded on the main seat 1. The two extrusion rods 404 are both L-shaped rod structures. The lower end of the two extrusion rods 404 is facing the top surface of the force block 402. During the lifting process, when the force block 402 contacts the extrusion rod 404, the force block 402 moves forward. At this time, the cement bucket can be pushed out by the pushing frame 401 to realize automatic unloading.
[0046] The specific usage and function of this embodiment are as follows:
[0047] When lifting is required, the cement bucket is placed on the placement seat 302 and then the motor 305 is controlled to rotate. When the motor 305 rotates, the rope can be reeled in, and the height of the placement seat 302 can be adjusted, completing the lifting of the cement bucket. When fixing, the ground nail 202 is directly passed through the fixing seat 201 and fixed to the soil. After the ground nail 202 is fixed to the soil, the auxiliary plate 203 is plugged into the soil, completing the double fixation. When the position needs to be moved, the ground nail 202 needs to be removed. When removing the ground nail 202, since the distance between the top step of the ground nail 202 and the fixing seat 201 is 5 cm, the ground nail 202 can be directly pried up with a pry bar. During the lifting process, when the load block 402 contacts the extrusion rod 404, the load block 402 moves forward, and the cement bucket can be pushed out by the push frame 401 to achieve automatic unloading.
Claims
1. A construction mud extraction device, characterized in that: include: A main body seat (1); a fixing assembly (2) is installed on the main body seat (1); the fixing assembly (2) is characterized in that the fixing assembly (2) is composed of a fixing seat (201), a ground nail (202), an auxiliary plate (203) and a support plate (204), two fixing seats (201) are provided, the two fixing seats (201) are respectively welded to the left end face and the right end face of the main body seat (1), and each fixing seat (201) is plugged with two ground nails (202) for fixing the fixing seat (201).
2. A construction mud extraction device as claimed in claim 1, characterized in that: An auxiliary plate (203) is welded to the bottom end surface of the fixing seat (201); the auxiliary plate (203) is a T-shaped plate structure and serves as an auxiliary fixing member of the fixing seat (201).
3. A construction mud extraction device as claimed in claim 1, characterized in that: A support plate (204) is welded to the top surface of each fixing seat (201), and both support plates (204) are rectangular structures. The top surfaces of the two support plates (204) are clamped with the steps of the ground nail (202), and the distance between the top step of the ground nail (202) and the fixing seat (201) is 5 cm.
4. A construction mud extraction device as claimed in claim 1, characterized in that: The main body seat (1) is provided with a lifting mechanism (3), the lifting mechanism (3) is composed of a guide rod (301), a placement seat (302), a mounting seat (303), a winding roller (304) and a motor (305), the guide rod (301) is provided with two guide rods (301) both of which are fixed on the main body seat (1), a placement seat (302) is slidably connected to the two guide rods (301), and a cement bucket to be lifted is placed on the placement seat (302).
5. A construction mud extraction device as claimed in claim 1, characterized in that: A mounting seat (303) is welded to the top surface of the main body seat (1), and the mounting seat (303) is composed of two rectangular plates. A winding roller (304) and a motor (305) for driving the winding roller (304) are installed on the mounting seat (303), and a rope on the winding roller (304) is connected to the placement seat (302).
6. A construction mud extraction device as claimed in claim 4, characterized in that: An auxiliary component (4) is installed on the placement seat (302), and the auxiliary component (4) consists of a pushing frame (401), a force block (402), a spring rod (403) and an extrusion rod (404). The pushing frame (401) is slidably connected to the placement seat (302), and the pushing frame (401) contacts the cement bucket. A force block (402) is welded to the rear side of the pushing frame (401), and a spring rod (403) is installed between the force block (402) and the placement seat (302) for resetting the force block (402) backward.
7. A construction mud extraction device as claimed in claim 6, characterized in that: The top surface of the force-bearing block (402) is an inclined structure. Two extrusion rods (404) are welded on the main body seat (1). The two extrusion rods (404) are both L-shaped rod structures. The lower ends of the two extrusion rods (404) are aligned with the top surface of the force-bearing block (402).