A shotcrete test form stripping apparatus
By introducing vibration and flipping mechanisms into the shotcrete test mold dismantling equipment, combined with temperature control, the problems of difficult demolding and cracking were solved, achieving convenient demolding and uniform molding.
Patent Information
- Application Number
- CN202311434897.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-01
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2043-11-01
AI Technical Summary
Existing shotcrete mold removal equipment is labor-intensive during the demolding process, which can easily lead to concrete cracks. Furthermore, uneven vibration or temperature differences during the pouring process can cause shrinkage changes that can trigger cracks.
By employing a vibration mechanism, a turning mechanism, and a control mechanism, the concrete is homogenized through vibration, temperature differences are controlled, and convenient demolding and molding are achieved.
It reduces the labor intensity of demolding, prevents concrete cracking, promotes uniform molding and demolding, and improves demolding efficiency.
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Figure CN117226954B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of concrete, in particular to a kind of shotcrete test mould dismounting tool equipment. BACKGROUND
[0002] Concrete refers to the engineering composite material that is bonded together by cementitious material. The commonly used term concrete refers to cement concrete, which is made of cement as cementitious material, sand and stone as aggregate, water, and is widely used in civil engineering.
[0003] The current shotcrete test mould dismounting tool equipment is cumbersome and labor-intensive to disassemble after the concrete is formed in the mold. If the mold is forcibly disassembled, cracks may occur in the concrete. When pouring concrete, uneven vibration of the concrete or large temperature difference between the concrete and the external temperature can cause changes in the shrinkage of the concrete, resulting in cracks between the concrete. SUMMARY
[0004] To solve the above technical problems, the present application provides a kind of shotcrete test mould dismounting tool equipment, specifically comprising:
[0005] The bottom plate is fixedly connected with a first fixed box and a vertical plate at the top, a slide is formed in the interior of the vertical plate, and a control mechanism is slidably connected in the interior of the slide;
[0006] The vibration mechanism is used to vibrate the concrete, and comprises a second fixed box, a clamping seat is fixedly connected to the top of the second fixed box, a first spring is fixedly connected to the interior of the clamping seat, a top plate is fixedly connected to the top of the first spring, a surrounding plate is fixedly connected to the top of the top plate, and the second fixed box is fixedly connected to the interior of the first fixed box;
[0007] The overturning mechanism is used to control the position of the concrete, and comprises a motor box, a rotating shaft is fixedly connected to the interior of the motor box, a first connecting rod is fixedly connected to the exterior of the rotating shaft, a test film is fixedly connected to the exterior of the first connecting rod, a circular hole is formed in the interior of the test film, and the motor box is fixedly connected to the exterior of the control mechanism.
[0008] Preferably, the vertical plate and the slide are each provided with two, the surrounding plate is provided with four, a sliding groove is formed in the interior of the first fixed box, a sliding plate is slidably connected in the interior of the sliding groove, and a moving assembly is fixedly connected to the exterior of the sliding plate.
[0009] Preferably, the moving assembly comprises a fourth electric push rod, the top of the fourth electric push rod is fixedly connected with an adapter elbow, the top of the adapter elbow is fixedly connected with an adapter plate, the adapter plate is provided with four, the top of the adapter plate is fixedly connected with a clamping sleeve for clamping a clamping column, the outside of the adapter plate is fixedly connected with a clamping square plate, and the fourth electric push rod is fixedly connected outside the sliding plate.
[0010] Preferably, the outside of the adapter plate is fixedly connected with a fixed plate, the outside of the fixed plate is fixedly connected with a first electric push rod, the outside of the first electric push rod is fixedly connected with a first suction disc, and the first electric push rod and the first suction disc are both provided with a plurality of first suction discs for sucking and fixing concrete on both sides to protect the concrete during transportation.
[0011] Preferably, the control mechanism comprises a second spring, the top of the second spring is fixedly connected with a lifting plate, the top of the lifting plate is fixedly connected with a magnetic sheet, the lifting plate is slidingly connected inside the slide, the second spring is fixedly connected inside the slide, and the lifting plate is fixedly connected with the motor box.
[0012] Preferably, the top of the lifting plate is fixedly connected with a telescopic column, the top of the telescopic column is fixedly connected with a second electric push rod, and the top of the second electric push rod is fixedly connected with a cover plate.
[0013] Preferably, the inside of the cover plate is provided with a storage groove, the inside of the storage groove is fixedly connected with a third electric push rod, the outside of the third electric push rod is fixedly connected with a temperature control assembly, and the inside of the storage groove is provided with a flow-through channel.
[0014] Preferably, the temperature control assembly comprises a clamping plate, the bottom of the clamping plate is fixedly connected with a magnetic block, the outside of the clamping plate is fixedly connected with a bend pipe and a straight pipe, the bottom of the bend pipe and the straight pipe are both provided with air supply ports for supplying air to the top of the concrete to balance the temperature of the concrete and the outside, and the clamping plate is fixedly connected outside the third electric push rod.
[0015] Preferably, the inside of the motor box is fixedly connected with a motor, the output end of the motor is fixedly connected with a rotating shaft, and the bottom of the test film is fixedly connected with a base for clamping connection in the fence.
[0016] Preferably, the outside of the test film is fixedly connected with a clamping column and a second adapter rod, the outside of the second adapter rod is rotatably connected with a bearing, and the inside of the test film is provided with a flow-through groove for placing a partition plate to prevent the concrete from being thrown out during rotation.
[0017] The present application provides a shotcrete test mold dismounting device. The present application has the following advantages:
[0018] 1. The shotcrete test mold stripping tooling apparatus, by setting the vibration mechanism, control mechanism and turnover mechanism, the concrete is formed in the mold after stripping process is more cumbersome, labor intensity is bigger, if hard stripping, easy to appear concrete crack situation. Therefore, the position of the concrete is adjusted, the concrete is inverted in the vibration mechanism after pouring, and the concrete is uniformly vibrated under the driving of the vibration mechanism, so that the concrete is separated from the test film. And when pouring concrete, due to uneven vibration of concrete or large temperature difference between concrete and external temperature, the shrinkage of concrete changes, and cracks exist between concrete. Therefore, when pouring, the vibration mechanism is used to drive the concrete vibration, so that the concrete vibration is uniform, to solve the above problems. The purpose of facilitating the stripping work of the concrete is achieved.
[0019] 2. The shotcrete test mold stripping tooling apparatus, by setting the vibration mechanism, to drive the concrete vibration. The concrete is formed in the mold after stripping process is more cumbersome, labor intensity is bigger, and if hard stripping, easy to lead to concrete crack. Therefore, the vibration mechanism is set, the concrete inverted in the vibration mechanism is vibrated by the vibration mechanism, and then the concrete is driven to separate from the test film on the top. And when pouring concrete, due to uneven vibration of concrete or large temperature difference between concrete and external temperature, the shrinkage of concrete changes, and cracks exist between concrete. Therefore, the vibration mechanism is set to drive the concrete to vibrate uniformly before and after the concrete is formed, and the control mechanism is used to control the temperature around the concrete, to solve the above problems. The purpose of facilitating the vibration mode to promote the molding and stripping work of the concrete is achieved.
[0020] 3. The shotcrete test mold stripping tooling apparatus, by setting the control mechanism, to control the position of the turnover mechanism. The control mechanism is used to control the height of the turnover mechanism, to provide space for the concrete inverted in the vibration mechanism, and to control the temperature of the air around the concrete after pouring, to prevent the temperature difference between inside and outside from being too large, to cause the shrinkage of concrete to change, and to appear cracks. The purpose of facilitating the control of the position of the turnover mechanism and the control of the temperature on the top of the concrete is achieved.
[0021] 4. The shotcrete test mold stripping tooling apparatus, by setting the turnover mechanism, to control the direction of the test film. When the test film opening is upward, the pouring work of the concrete can be completed, and when the test film opening is downward, the concrete can be inverted in the vibration mechanism, and the vibration mechanism is used to separate the concrete from the test film. The purpose of facilitating the control of the direction of the test film and promoting the separation of the concrete and the test film is achieved. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is the overall structure schematic diagram of the present application;
[0023] Figure 2The schematic diagram of the bottom structure of the present application;
[0024] Figure 3 The schematic diagram of the vibrating mechanism structure of the present application;
[0025] Figure 4 The schematic diagram of the moving assembly structure of the present application;
[0026] Figure 5 The schematic diagram of the control mechanism structure of the present application;
[0027] Figure 6 The schematic diagram of the structure at A in the present application Figure 5
[0028] Figure 7 The schematic diagram of the temperature control assembly structure of the present application;
[0029] Figure 8 The schematic diagram of the overturning mechanism structure of the present application.
[0030] In the figure: 1, bottom plate; 2, first fixed box; 3, vibrating mechanism; 301, second fixed box; 302, clamping seat; 303, first spring; 304, top plate; 305, coaming; 306, moving assembly; 3061, fourth electric push rod; 3062, connecting curved rod; 3063, connecting plate; 3064, clamping square plate; 3065, fixed plate; 3066, first electric push rod; 3067, first suction cup; 3068, clamping cylinder; 307, sliding groove; 308, sliding plate; 4, vertical plate; 5, slide; 6, control mechanism; 601, second spring; 602, lifting plate; 603, telescopic column; 604, second electric push rod; 605, cover plate; 606, temperature control assembly; 6061, clamping plate; 6062, magnetic block; 6063, curved pipe; 6064, straight pipe; 607, storage groove; 608, third electric push rod; 609, flow-through channel; 7, overturning mechanism; 701, motor box; 702, rotating shaft; 703, first connecting rod; 704, test film; 705, circular hole; 706, base; 707, second connecting rod; 708, bearing; 709, clamping column; 710, flow-through groove. DETAILED DESCRIPTION
[0031] The present application will be further described below in conjunction with the drawings and specific embodiments. The embodiments of the present application are given for illustration and description only, and are not intended to be exhaustive or to limit the present application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the present application and its practical application, and to enable others skilled in the art to understand the present application for various embodiments with various modifications as are suited to the particular use contemplated.
[0032] AsFigures 1-8 The application provides a technical scheme, and specifically comprises the following.
[0033] The bottom plate 1 is fixedly connected with the first fixed box 2 and the vertical plate 4 at the top, the vertical plate 4 is internally provided with the slide 5, and the slide 5 is internally and slidably connected with the control mechanism 6.
[0034] The vibration mechanism 3 is used for vibrating the concrete, and the vibration mechanism 3 comprises the second fixed box 301, the vibration motor is arranged in the second fixed box 301, the second fixed box 301 is fixedly connected with the clamping seat 302 at the top, the first spring 303 is fixedly connected in the clamping seat 302, the top of the first spring 303 is fixedly connected with the top plate 304, the top of the top plate 304 is fixedly connected with the surrounding plate 305, and the second fixed box 301 is fixedly connected in the first fixed box 2.
[0035] The turnover mechanism 7 is used for controlling the position of the concrete, the turnover mechanism 7 comprises the motor box 701, the motor box 701 is fixedly connected with the rotating shaft 702 at the inside, the rotating shaft 702 is fixedly connected with the first connecting rod 703 at the outside, the first connecting rod 703 is fixedly connected with the test film 704 at the outside, the test film 704 is internally provided with the circular hole 705, and the motor box 701 is fixedly connected at the outside of the control mechanism 6.
[0036] Before the device is used, the vibration mechanism 3, the control mechanism 6 and the turnover mechanism 7 are started, and the concrete is poured. After the pouring is completed, the control mechanism 6 and the turnover mechanism 7 are adjusted, the direction of the concrete is controlled, the concrete is poured upside down in the vibration mechanism 3, the vibration mechanism 3 and the turnover mechanism 7 are started, and the concrete is demolded. After the work is completed, the vibration mechanism 3 is started, and the concrete is transported outward.
[0037] The motor box 701 is fixedly connected with the motor at the inside, the output end of the motor is fixedly connected with the rotating shaft 702, and the bottom of the test film 704 is fixedly connected with the base 706.
[0038] The control mechanism 6 is adjusted, the base 706 is clamped and connected in the vibration mechanism 3, the concrete is placed in the test film 704, and the concrete is poured.
[0039] The test film 704 is fixedly connected with the clamping post 709 and the second connecting rod 707 at the outside, the second connecting rod 707 is rotatably connected with the bearing 708 at the outside, the test film 704 starts to rotate under the driving of the motor and the rotating shaft 702, further drives the second connecting rod 707 at the outside to rotate in the bearing 708, the bearing 708 is fixedly connected at the outside of the lifting plate 602, the test film 704 is internally provided with the flow-through groove 710, the partition plate is clamped in the flow-through groove 710 before and after the test film 704 is turned over, and the concrete is prevented from being thrown out when the test film 704 is turned over.
[0040] After pouring, manually connect the partition to the inside of the flow channel 710, cover the inside of the test film 704 with concrete. Turn on the motor in the motor box 701, the motor starts to drive the shaft 702 to rotate, and then drives the first connecting rod 703 outside and the test film 704 to rotate, until the opening of the test film 704 is downward. Then manually pull out the partition. Adjust the control mechanism 6, so that the clamping column 709 is connected to the inside of the vibration mechanism 3.
[0041] After starting the vibration mechanism 3, the vibration mechanism 3 starts to drive the clamping column 709 at the top and the test film 704 to vibrate, and then drives the concrete in the test film 704 to vibrate, and then drives the concrete to vibrate and move downward, until the concrete is separated from the test film 704.
[0042] The control mechanism 6 comprises a second spring 601, the top of the second spring 601 is fixedly connected with a lifting plate 602, the top of the lifting plate 602 is fixedly connected with a magnetic sheet, the lifting plate 602 is slidingly connected in the inside of the slide 5, the second spring 601 is fixedly connected in the inside of the slide 5, and the lifting plate 602 is fixedly connected with the motor box 701.
[0043] The top of the lifting plate 602 is fixedly connected with a telescopic column 603, the top of the telescopic column 603 is fixedly connected with a second electric push rod 604, the top of the second electric push rod 604 is fixedly connected with a cover plate 605, and the cover plate 605 is fixedly connected to the top of the vertical plate 4.
[0044] The inside of the cover plate 605 is provided with a storage groove 607, the inside of the storage groove 607 is fixedly connected with a third electric push rod 608, the outside of the third electric push rod 608 is fixedly connected with a temperature control assembly 606, and the inside of the storage groove 607 is provided with a flow channel 609.
[0045] The temperature control assembly 606 comprises a clamping plate 6061, the inside of the clamping plate 6061 is provided with a fan, the bottom of the clamping plate 6061 is fixedly connected with a magnetic block 6062, the outside of the clamping plate 6061 is fixedly connected with a bent pipe 6063 and a straight pipe 6064, the bottom of the bent pipe 6063 and the straight pipe 6064 is provided with an air outlet, the fan in the clamping plate 6061 is turned on, the air in the fan moves downward through the bent pipe 6063 and the air outlet at the bottom of the straight pipe 6064, and the air outlet at the bottom of the straight pipe 6064 is provided with an air outlet.
[0046] In the initial state, the second electric push rod 604 and the third electric push rod 608 are in the closed state, the clamping plate 6061 is connected to the inside of the storage groove 607, and the magnetic sheet at the top of the lifting plate 602 is attracted and fixed with the magnetic block 6062 at the bottom of the clamping plate 6061.
[0047] Before the pouring work is carried out, the third electric push rod 608 is opened, the third electric push rod 608 drives the clamping plate 6061 to move outward, and then drives the magnetic block 6062 at the bottom of the clamping plate 6061 to move outward. At this time, the magnetic sheet at the top of the lifting plate 602 loses the attraction of the magnetic block 6062, and the lifting plate 602 starts to stretch the telescopic column 603 downward, until the clamping column 709 is clamped and connected inside the vibration mechanism 3.
[0048] After the pouring work is completed, the turnover mechanism 7 is opened, the turnover mechanism 7 starts to drive the concrete to rotate, the second electric push rod 604 is opened, the second electric push rod 604 drives the telescopic column 603 and the lifting plate 602 to move downward, and the lifting plate 602 starts to extrude the second spring 601 at the bottom. Under the driving of the vibration mechanism 3, the demolding work is started.
[0049] After the demolding work is completed, the second electric push rod 604 and the third electric push rod 608 in the open state are closed. The second electric push rod 604 drives the telescopic column 603 and the lifting plate 602 to move upward, and the third electric push rod 608 drives the clamping plate 6061 to return to the inside of the storage groove 607. The magnetic block 6062 attracts the magnetic sheet at the top of the lifting plate 602 upward, and then compresses the telescopic column 603. At this time, the vibration mechanism 3 can be opened, and the concrete is transported outward.
[0050] The vertical plate 4 and the slide 5 are both provided with two, the surrounding plate 305 is provided with four, the inside of the first fixed box 2 is provided with a sliding groove 307, the inside of the sliding groove 307 is slidably connected with a sliding plate 308, and the inside of the sliding plate 308 is provided with a power system. The outside of the sliding plate 308 is fixedly connected with a moving assembly 306.
[0051] The moving assembly 306 comprises a fourth electric push rod 3061, the top of the fourth electric push rod 3061 is fixedly connected with a connecting bent rod 3062, the top of the connecting bent rod 3062 is fixedly connected with a connecting plate 3063, the connecting plate 3063 is provided with four, the top of the connecting plate 3063 is fixedly connected with a clamping cylinder 3068, the outside of the connecting plate 3063 is fixedly connected with a clamping square plate 3064, the clamping square plate 3064 is a rubber plate with protrusions, and the fourth electric push rod 3061 is fixedly connected to the outside of the sliding plate 308.
[0052] The vibration motor in the second fixed box 301 is opened, the vibration motor starts to drive the outside of the second fixed box 301 to vibrate, the second fixed box 301 drives the first spring 303 at the top and the top plate 304 to vibrate, and then drives the clamping cylinder 3068 and the clamping cylinder 3068 inside the clamping cylinder 3068 to vibrate. The clamping column 709 drives the top test film 704 and the concrete to vibrate, promotes the separation of the concrete and the test film 704. The concrete gradually separates from the test film 704 and falls above the clamping square plate 3064.
[0053] The external fixing plate 3063 is fixedly connected with a fixing plate 3065, the external fixing plate 3065 is fixedly connected with a first electric push rod 3066, the external fixing plate 3066 is fixedly connected with a first suction disc 3067, and the first electric push rod 3066 and the first suction disc 3067 are both provided with a plurality of.
[0054] The fourth electric push rod 3061 is opened, the fourth electric push rod 3061 drives the connecting bent rod 3062, the connecting plate 3063 and the clamping square plate 3064 to move upwards until the clamping square plate 3064 is separated from the surrounding plate 305 and the top plate 304. The first electric push rod 3066 is gradually opened, the first electric push rod 3066 drives the first suction disc 3067 to move outward, fixes the two sides of the concrete, opens the power system in the sliding plate 308, and makes the sliding plate 308 slide outward in the sliding groove 307, thereby driving the fourth electric push rod 3061, the connecting bent rod 3062, the connecting plate 3063 and the clamping square plate 3064 to move outward, and driving the concrete to move outward. Then the first electric push rod 3066 can be closed, and the concrete can be taken out.
[0055] Working principle: before using the device, the vibration mechanism 3, the control mechanism 6 and the turnover mechanism 7 are opened, and the pouring work of the concrete is carried out. In the initial state, the second electric push rod 604 and the third electric push rod 608 are in the closed state, the clamping plate 6061 is clamped and connected in the inside of the storage groove 607, and the magnetic sheet on the top of the lifting plate 602 is attracted and fixed with the magnetic block 6062 on the bottom of the clamping plate 6061. Before the pouring work is carried out, the third electric push rod 608 is opened, the third electric push rod 608 drives the clamping plate 6061 to move outward, thereby driving the magnetic block 6062 on the bottom of the clamping plate 6061 to move outward, at this time the magnetic sheet on the top of the lifting plate 602 loses the attraction of the magnetic block 6062, the lifting plate 602 starts to stretch the telescopic column 603 downward, until the base 706 is clamped and connected in the inside of the surrounding plate 305, and the concrete is placed in the inside of the test film 704, and the pouring work of the concrete is carried out.
[0056] After pouring, adjust the control mechanism 6 and the turnover mechanism 7 to control the direction of the concrete and pour the concrete into the clamping cylinder 3068. Manually connect the partition plate to the inside of the flow channel 710, and cover the concrete inside the test film 704. Turn on the motor in the motor box 701, and the motor starts to drive the rotating shaft 702 to rotate, and then drives the first connecting rod 703 and the test film 704 outside to rotate until the opening of the test film 704 is downward. Then manually pull out the partition plate. Turn on the second electric push rod 604, which drives the telescopic column 603 and the lifting plate 602 to move downward, and the lifting plate 602 starts to press the second spring 601 at the bottom, so that the clamping column 709 is connected to the inside of the clamping cylinder 3068. Turn on the fan in the clamping plate 6061, and the wind in the fan moves downward through the elbow pipe 6063 and the air outlet at the bottom of the straight pipe 6064 to blow air to the space above the concrete and control the temperature outside the concrete.
[0057] Turn on the vibration mechanism 3 and the turnover mechanism 7 to demold the concrete. Turn on the vibration motor in the second fixed box 301, which starts to drive the second fixed box 301 outside to vibrate, and then drives the first spring 303 and the top plate 304 at the top to vibrate, and then drives the clamping cylinder 3068 and the clamping column 709 inside the clamping cylinder 3068 to vibrate, and then drives the test film 704 and the concrete at the top to vibrate, which promotes the separation of the concrete and the test film 704. The concrete gradually separates from the test film 704 and falls above the clamping square plate 3064.
[0058] After the work is finished, turn on the vibration mechanism 3 and the control mechanism 6 to transport the concrete outward. After the demolding work is finished, turn off the second electric push rod 604 and the third electric push rod 608 which are in the on state. The second electric push rod 604 drives the telescopic column 603 and the lifting plate 602 to move upward, and the third electric push rod 608 drives the clamping plate 6061 to return to the inside of the storage groove 607, and the magnetic block 6062 attracts the magnetic sheet at the top of the lifting plate 602 upward, and then compresses the telescopic column 603. At this time, the vibration mechanism 3 can be turned on to transport the concrete outward.
[0059] The fourth electric push rod 3061 is opened, the fourth electric push rod 3061 drives the connecting bent rod 3062, the connecting plate 3063 and the clamping square plate 3064 to move upward until the clamping square plate 3064 is separated from the surrounding plate 305 and the top plate 304. The first electric push rod 3066 is gradually opened, the first electric push rod 3066 drives the first suction cup 3067 to move outward to fix the two sides of the concrete, and the power system in the sliding plate 308 is opened, so that the sliding plate 308 slides outward in the inside of the sliding groove 307, and then drives the fourth electric push rod 3061, the connecting bent rod 3062, the connecting plate 3063 and the clamping square plate 3064 to move outward, and drives the concrete to move outward, and then the first electric push rod 3066 can be closed to take out the concrete.
[0060] Obviously, the embodiments described are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art and related fields without creative labor should belong to the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art without special description and limitation.
Claims
1. A shotcrete test mold dismantling device, specifically comprising: The base plate (1) is characterized in that: a first fixed box (2) and a vertical plate (4) are fixedly connected to the top of the base plate (1), and a slide rail (5) is provided inside the vertical plate (4), and a control mechanism (6) is slidably connected inside the slide rail (5); A vibration mechanism (3) is used to drive concrete to vibrate. The vibration mechanism (3) includes a second fixed box (301). A card seat (302) is fixedly connected to the top of the second fixed box (301). A first spring (303) is fixedly connected inside the card seat (302). A top plate (304) is fixedly connected to the top of the first spring (303). A surrounding plate (305) is fixedly connected to the top of the top plate (304). The second fixed box (301) is fixedly connected inside the first fixed box (2). Two vertical plates (4) and two slide rails (5) are provided, and four enclosure plates (305) are provided. A slide groove (307) is provided inside the first fixed box (2). A sliding plate (308) is slidably connected inside the slide groove (307), and a moving component (306) is fixedly connected to the outside of the sliding plate (308). The moving component (306) includes a fourth electric push rod (3061), the top of which is fixedly connected to a connecting bent rod (3062), the top of which is fixedly connected to a connecting plate (3063), four connecting plates (3063) are provided, the top of which is fixedly connected to a positioning cylinder (3068), the outside of which is fixedly connected to a positioning square plate (3064), and the fourth electric push rod (3061) is fixedly connected to the outside of the sliding plate (308). The connecting plate (3063) is externally fixedly connected to a fixing plate (3065), the fixing plate (3065) is externally fixedly connected to a first electric push rod (3066), the first electric push rod (3066) is externally fixedly connected to a first suction cup (3067), and multiple first electric push rods (3066) and first suction cups (3067) are provided. A flipping mechanism (7) is used to control the position of concrete. The flipping mechanism (7) includes a motor box (701). A rotating shaft (702) is fixedly connected inside the motor box (701). A first connecting rod (703) is fixedly connected outside the rotating shaft (702). A test mold (704) is fixedly connected outside the first connecting rod (703). A round hole (705) is opened inside the test mold (704). The motor box (701) is fixedly connected to the outside of the control mechanism (6). The test mold (704) is externally fixedly connected to a locking post (709) and a second connecting rod (707), and the second connecting rod (707) is externally rotatably connected to a bearing (708). The test mold (704) is internally provided with a flow groove (710).
2. The shotcrete test mold dismantling equipment according to claim 1, characterized in that: The control mechanism (6) includes a second spring (601), a lifting plate (602) is fixedly connected to the top of the second spring (601), a magnetic sheet is fixedly connected to the top of the lifting plate (602), the lifting plate (602) is slidably connected inside the slide rail (5), the second spring (601) is fixedly connected inside the slide rail (5), and the lifting plate (602) is fixedly connected to the motor housing (701).
3. The shotcrete test mold dismantling equipment according to claim 2, characterized in that: The top of the lifting plate (602) is fixedly connected to a telescopic column (603), the top of the telescopic column (603) is fixedly connected to a second electric push rod (604), and the top of the second electric push rod (604) is fixedly connected to a cover plate (605).
4. The shotcrete test mold dismantling equipment according to claim 3, characterized in that: The cover plate (605) has a storage slot (607) inside, a third electric push rod (608) is fixedly connected inside the storage slot (607), a temperature control component (606) is fixedly connected outside the third electric push rod (608), and a flow channel (609) is opened inside the storage slot (607).
5. The shotcrete test mold dismantling equipment according to claim 4, characterized in that: The temperature control component (606) includes a positioning plate (6061), a magnetic block (6062) is fixedly connected to the bottom of the positioning plate (6061), and a bent pipe (6063) and a straight pipe (6064) are fixedly connected to the outside of the positioning plate (6061). The bottom of the bent pipe (6063) and the straight pipe (6064) are both provided with air outlets. The positioning plate (6061) is fixedly connected to the outside of the third electric push rod (608).
6. The shotcrete test mold dismantling equipment according to claim 1, characterized in that: A motor is fixedly connected inside the motor housing (701), the output end of the motor is fixedly connected to the rotating shaft (702), and a base (706) is fixedly connected to the bottom of the test mold (704).
Citation Information
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