Rock-anchored beam concrete pouring rapid warehousing device
By designing a rapid concrete pouring device for rock anchor beams, and utilizing photoelectric signal control and a winch lifting system, the problem of efficient concrete pouring for rock anchor beams was solved, achieving efficient concrete injection and stable operation of the device.
Patent Information
- Application Number
- CN202423153377.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The existing technology for concrete pouring of rock anchor beams has low efficiency, especially in high-altitude pouring chambers where it is difficult to efficiently deliver concrete.
A rapid concrete pouring device for rock anchor beams was designed, comprising a base, support columns, a top plate, a concrete pump, a winch, and a photoelectric signal system. The device controls the start of the concrete pump through photoelectric signals and uses the winch to lift and lower the loading frame to achieve efficient concrete injection and clean the photoelectric signal receiver.
It improves the efficiency of concrete injection in the pouring chamber, prevents dust from affecting photoelectric signal reception, ensures stable operation of the device, and realizes a highly efficient concrete pouring process.
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Figure CN223688921U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to concrete rapid warehousing technical field, especially a kind of rock anchor beam concrete pouring rapid warehousing device. BACKGROUND
[0002] Rock anchor beam, also known as rock wall crane beam, is a structure that uses a certain depth of grouting long anchor rod to anchor the reinforced concrete beam body firmly on the rock, and the load borne by the rock anchor beam is transmitted to the rock mass through the friction between the long anchor rod and the rock wall surface. Concrete pouring into warehouse refers to the construction process of pouring the mixed concrete into the predetermined position (usually a space enclosed by a formwork, called "warehouse").
[0003] Due to the high pouring warehouse height of the rock anchor beam, the efficiency of sending concrete into the pouring warehouse through the existing warehousing system during construction is very low. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of rock anchor beam concrete pouring rapid warehousing device to solve the problems mentioned in the above background technology.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:
[0006] A kind of rock anchor beam concrete pouring rapid warehousing device, including base, the top surface of the base is fixedly connected with support column at four corners, the top surface of four support columns is fixedly connected with top plate, the right side of the top surface of the top plate is fixedly connected with concrete pump, the input end of the concrete pump is fixedly connected with input pipe, one end of the input pipe is fixedly sleeved in the middle of the top of the top plate, the input end of the input pipe is fixedly connected with feed head, the output end of the concrete pump is fixedly connected with output pipe, the bottom surface of the top plate is fixedly connected with winch on left and right sides, two groups of winches are respectively arranged on the left and right sides of input pipe, the middle of the top surface of the base is placed with loading frame, the left and right sides of the surface of the loading frame and located at top are fixedly connected with connecting plate, the top surface of two connecting plates is fixedly connected with lifting ring, the lower end of the cable of two winches is fixedly connected with adjacent lifting ring respectively.
[0007] Further, the left and right sides of the top surface of the base are fixedly connected with guide column, the upper end surface of two guide columns is fixedly connected with the left and right sides of the top surface of the top plate respectively, the left and right sides of the surface of the loading frame and located at middle are fixedly connected with connecting rod, the end away from the loading frame of two connecting rods is fixedly connected with sleeve, two sleeves are movably sleeved on the lower end of the surface of adjacent guide column respectively.
[0008] Further, the right side of the right connecting plate is fixedly connected with an optical signal output end, the left side of the side surface of the right guide column near the upper end is fixedly connected with an optical signal receiving end, and the optical signal output end is matched with the optical signal receiving end.
[0009] Further, the left side of the side surface of the right guide column near the upper end is fixedly connected with a connecting block, the connecting block is arranged on the upper side of the optical signal receiving end, a movable rod is movably sleeved with the left side of the connecting block, the lower end surface of the movable rod is fixedly connected with a stop block, the right side of the stop block is matched with the left side of the optical signal receiving end, the upper end surface of the connecting block is fixedly connected with a fixed block, a spring is sleeved with the upper end of the surface of the movable rod, and the two ends of the spring are fixedly connected with the bottom surface of the fixed block and the top surface of the connecting block.
[0010] Further, the right side of the right connecting plate is fixedly connected with an optical signal output end, the left side of the side surface of the right guide column near the upper end is fixedly connected with an optical signal receiving end, and the optical signal output end is matched with the optical signal receiving end.
[0011] Further, the bottom surface of the two winches near the side of the input pipe is fixedly connected with a camera, and the left side of the left front support column near the bottom is fixedly connected with a display; the display is electrically connected with the camera.
[0012] Further, the right side of the right front support column near the bottom is fixedly connected with a controller, and the controller is electrically connected with the winch.
[0013] The rock anchor beam concrete pouring rapid warehousing device has the advantages that:
[0014] Through the cooperation between the components, the concrete can be poured into the loading frame, the loading frame is lifted, the concrete pump draws the concrete through the feeding head and the input pipe and then discharges the concrete through the output pipe, the concrete is poured into the pouring warehouse of the rock anchor beam, the pouring of the concrete in the pouring warehouse is efficient, and when the loading frame is lowered, the cleaning pad can wipe the dust on the left glass sheet of the optical signal receiving end, then the stop block is lowered to block the left side of the optical signal receiving end, so that the dust is prevented from falling on the left glass sheet of the optical signal receiving end, and the optical signal receiving end is prevented from being blocked by the dust. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is a structural schematic view of the rock anchor beam concrete pouring rapid warehousing device;
[0016] Figure 2 is Figure 1 is a local enlarged view of A in figure 1;
[0017] Figure 3 is Figure 1A local enlarged view of the middle B;
[0018] Figure 4 is Figure 1 A local enlarged view of the middle C;
[0019] Figure 5 is a side view schematic diagram of the rock anchor beam concrete pouring rapid warehousing device.
[0020] In the figure, 1, base; 2, support column; 3, top plate; 4, concrete pump; 5, input pipe; 6, feeding head; 7, output pipe; 8, winch; 9, loading frame; 10, connecting plate; 11, lifting ring; 12, guide column; 13, connecting rod; 14, sleeve; 15, photoelectric signal output end; 16, photoelectric signal receiving end; 17, connecting block; 18, movable rod; 19, stop block; 20, fixed block; 21, spring; 22, fixed plate; 23, push block; 24, cleaning pad; 25, camera; 26, display; 27, controller. DETAILED DESCRIPTION
[0021] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The technical solutions of the present application will be further described below with reference to the drawings of the embodiments of the present application. The present application is not limited to the following specific embodiments.
[0022] It should be understood that the same or similar reference numerals in the drawings of the embodiments correspond to the same or similar components. In the description of the present application, it should be understood that the orientations or positional relationships indicated by the terms "upper", "lower", "front", "back", "left", "right", "top" and "bottom" are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore the terms describing the positional relationships in the drawings cannot be understood as indicating or implying that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, therefore the terms describing the positional relationships in the drawings are only used for exemplary illustration, and cannot be understood as limiting the present patent. For those skilled in the art, the specific meanings of the above terms can be understood according to the specific circumstances.
[0023] In one embodiment, as Figures 1-5The utility model relates to a kind of rock anchor beam concrete pouring rapid warehousing device, including base 1, the four corners of base 1 top surface are all fixedly connected with support column 2, the top surface of four support columns 2 is commonly fixedly connected with top plate 3, the right side of top plate 3 top surface is fixedly connected with concrete pump 4, the input end of concrete pump 4 is fixedly connected with input pipe 5, one end of input pipe 5 is fixedly sleeved in the middle portion of top plate 3 top, the input end of concrete pump 4 is fixedly connected with feed head 6, the output end of concrete pump 4 is fixedly connected with output pipe 7, the left and right sides of top plate 3 bottom surface are all fixedly connected with winch 8, two groups of winch 8 are respectively arranged on the left and right sides of input pipe 5, loading frame 9 is placed in the middle portion of base 1 top surface, the left and right sides of loading frame 9 surface and located at top are all fixedly connected with connecting plate 10, the top surface of two connecting plates 10 is all fixedly connected with lifting ring 11, the lower end of two winch 8 cables is respectively fixedly connected on adjacent lifting ring 11.
[0024] To ensure the stability of loading frame 9 when moving up and down, avoid the shaking of loading frame 9 when moving up and down, the left and right sides of base 1 top surface are all fixedly connected with guide column 12, the upper end surfaces of two guide columns 12 are respectively fixedly connected with the left and right sides of top plate 3 top surface, the left and right sides of loading frame 9 surface and located at middle portion are all fixedly connected with connecting rod 13, the ends away from loading frame 9 of two connecting rods 13 are all fixedly connected with sleeve 14, two sleeves 14 are respectively movably sleeved on the lower ends of the surfaces of adjacent guide columns 12.
[0025] To start concrete pump 4 automatically after loading frame 9 rises to the specified position, the right side of right connecting plate 10 is fixedly connected with photoelectric signal output end 15, the left side close to the upper end of the side surface of right guide column 12 is fixedly connected with photoelectric signal receiving end 16, photoelectric signal output end 15 cooperates with photoelectric signal receiving end 16.
[0026] To block the left side of photoelectric signal receiving end 16, prevent dust in the air from falling on the glass sheet on the left side of photoelectric signal receiving end 16, the left side close to the upper end of the side surface of right guide column 12 is fixedly connected with connecting block 17, connecting block 17 is arranged on the upper side of photoelectric signal receiving end 16, movable rod 18 is movably sleeved on the left side of connecting block 17, the lower end surface of movable rod 18 is fixedly connected with stop block 19, the right side of stop block 19 is in close contact with the left side of photoelectric signal receiving end 16, the upper end surface of connecting block 17 is fixedly connected with fixed block 20, spring 21 is sleeved on the upper end of the surface of movable rod 18, the two ends of spring 21 are respectively fixedly connected with the bottom surface of fixed block 20 and the top surface of connecting block 17.
[0027] In order to be able to push the block 19, the photoelectric signal output end 15 can be emitted by the signal can be received by the photoelectric signal receiving end 16, while the loading frame 9 can be wiped clean when descending the left side of the glass sheet on the photoelectric signal receiving end 16, the top of the connecting plate 10 is fixedly connected with the fixed plate 22 on the right side, the shape of the fixed plate 22 is L-shaped, the right side of the fixed plate 22 is fixedly connected with the push block 23, and the right side of the push block 23 is fixedly connected with the cleaning pad 24.
[0028] In order to facilitate the judgment of the remaining amount of concrete in the loading frame 9, so as to control the loading frame 9 to descend in time, the bottom surface of the two winches 8 and the side close to the input pipe 5 are fixedly connected with the camera 25, the left side of the left front support column 2 and close to the bottom is fixedly connected with the display 26, and the display 26 is electrically connected with the camera 25.
[0029] In order to facilitate the control of the operation of the winch 8, the right side of the right front support column 2 and close to the bottom is fixedly connected with the controller 27, and the controller 27 is electrically connected with the winch 8.
[0030] Working principle: when the utility model is used, the concrete is first poured into the loading frame 9, then the winch 8 is started by the controller 27, the winch 8 winds the steel cable, so that the loading frame 9 is lifted, the loading frame 9 is lifted until the photoelectric signal output end 15 is aligned with the photoelectric signal receiving end 16, the photoelectric signal emitted by the photoelectric signal output end 15 is accepted by the photoelectric signal receiving end 16, and the concrete pump 4 is started after the photoelectric signal receiving end 16 receives the signal, at this time, the feeding head 6 is inserted into the concrete in the loading frame 9, the concrete pump 4 draws the concrete through the feeding head 6 and the input pipe 5, and discharges the concrete through the output pipe 7, pours the concrete into the pouring warehouse of the rock anchor beam, and the pouring concrete efficiency in the pouring warehouse is high, when the concrete in the loading frame 9 is drawn out, the inside of the loading frame 9 is photographed by the camera 25, and the picture is displayed on the display 26, so that the remaining amount of concrete in the loading frame 9 can be conveniently judged, since the construction site is dusty, the photoelectric signal output end 15 can be cleaned manually before the loading frame 9 is lifted to a high place, and the cleaning pad 24 is wetted, when the loading frame 9 is lifted to a high place, the push block 23 pushes the block 19 upward, until the push block 23 is on the upper side of the photoelectric signal receiving end 16, at this time, gradually the dust in the air will adhere to the glass sheet on the left side of the photoelectric signal receiving end 16, when the loading frame 9 is lowered, the push block 23 will drive the cleaning pad 24 to descend, so that the right side of the cleaning pad 24 wipes the left side of the photoelectric signal receiving end 16, and the dust on the glass sheet on the left side of the photoelectric signal receiving end 16 is cleaned, at the same time, the block 19 will descend, until the right side of the block 19 is completely fitted with the left side of the photoelectric signal receiving end 16, so as to prevent the dust from falling on the glass sheet on the left side of the photoelectric signal receiving end 16, thereby avoiding that the dust blocks the photoelectric signal receiving end 16 to accept the photoelectric signal.
[0031] The technical features of the above embodiments can be combined in any manner, and for the sake of brevity, not all possible combinations of the technical features in the above embodiments are described, however, as long as the combinations of the technical features do not contradict each other, they should be considered within the scope of the present disclosure.
[0032] The above embodiments only express several implementation manners of the present application, the description is relatively specific and detailed, but it should not be understood as a limitation on the scope of the present application. It should be pointed out that for ordinary skilled persons in the art, under the premise of not departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.
Claims
1. A rock anchor beam concrete pouring rapid warehousing device, characterized in that, The base top surface is fixedly connected with support columns at four corners, the top surfaces of the four support columns are fixedly connected with a top plate, the top surface of the top plate is fixedly connected with a concrete pump on the right side, the input end of the concrete pump is fixedly connected with an input pipe, one end of the input pipe is fixedly sleeved on the middle of the top plate top, the end of the input pipe away from the concrete pump is fixedly connected with a feeding head, the output end of the concrete pump is fixedly connected with an output pipe, the bottom surface of the top plate is fixedly connected with winches on the left and right sides, two groups of winches are arranged on the left and right sides of the input pipe, the middle of the base top surface is placed with a loading frame, the left and right sides of the loading frame surface and located at the top are fixedly connected with connecting plates, the top surfaces of the two connecting plates are fixedly connected with lifting rings, and the lower ends of the two winch ropes are fixedly connected with adjacent lifting rings.
2. The rock-anchored beam concrete pouring rapid-stocking device according to claim 1, characterized in that: The left and right sides of the base top surface are fixedly connected with guide columns, the upper end surfaces of the two guide columns are fixedly connected with the left and right sides of the top plate top, the left and right sides of the loading frame surface and located at the middle are fixedly connected with connecting rods, the ends of the two connecting rods away from the loading frame are fixedly connected with sleeves, and the two sleeves are movably sleeved on the lower ends of the adjacent guide column surfaces.
3. The rock-anchored beam concrete pouring rapid-stocking device according to claim 2, characterized in that: The right side of the right connecting plate is fixedly connected with an optical signal output end, the left side of the side surface of the right guide column and close to the upper end is fixedly connected with an optical signal receiving end, and the optical signal output end cooperates with the optical signal receiving end.
4. The rock-anchored beam concrete pouring rapid-stocking device according to claim 3, characterized in that: The left side of the side surface of the right guide column and close to the upper end is fixedly connected with a connecting block, the connecting block is arranged on the upper side of the optical signal receiving end, the left side of the connecting block is movably sleeved with an active rod, the lower end surface of the active rod is fixedly connected with a stop block, the right side of the stop block is matched with the left side of the optical signal receiving end, the upper end surface of the connecting block is fixedly connected with a fixed block, the upper end of the surface of the active rod is sleeved with a spring, and the two ends of the spring are fixedly connected with the bottom surface of the fixed block and the top surface of the connecting block.
5. The rock-anchored beam concrete pouring rapid-stocking device according to claim 1, characterized in that: The right side of the top surface of the connecting plate is fixedly connected with a fixed plate, the shape of the fixed plate is L-shaped, the right side of the fixed plate is fixedly connected with a push block, and the right side of the push block is fixedly connected with a cleaning pad.
6. A rock anchor beam concrete pouring rapid stock bin device according to claim 1, characterized in that: The bottom surface of the two winches and close to the side of the input pipe are fixedly connected with cameras, the left side of the left front side support column and close to the bottom is fixedly connected with a display, and the display is electrically connected with the cameras.
7. The rock anchor beam concrete pouring rapid stock bin device according to claim 1, characterized in that: The right side of the right front side support column and close to the bottom is fixedly connected with a controller, and the controller is electrically connected with the winches.