Concrete transfer device for construction by adopting skip method

By designing a concrete transfer device for skip-concrete construction, using a mixing motor, solenoid valve, and angle adjustment mechanism, efficient mixing and flexible transfer of concrete are achieved. This solves the problems of difficult layout of the device in narrow spaces and low efficiency of manual transportation in existing technologies, thus improving construction efficiency and concrete uniformity.

CN224032195UActive Publication Date: 2026-03-24THE FIRST CONSTR ENG COMPANY LTD OF CHINA CONSTR SECOND ENG BUREAU
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In the skip-concrete method of construction, existing concrete transfer devices are difficult to deploy flexibly in narrow or complex construction sites, and manual transportation is inefficient and labor-intensive, making it difficult to meet the needs of continuous and efficient concrete transfer.

Method used

A concrete transfer device was designed, comprising a mounting frame, a transfer cylinder, a mixing drum, and an angle adjustment mechanism. The concrete is mixed by the mixing blades of the mixing motor, and the flow into the transfer cylinder is controlled by the solenoid valve. The drive motor drives the transfer auger to push the concrete, and the length is adjusted by the telescopic tube. Combined with the angle adjustment mechanism, precise unloading is achieved to meet the needs of different scenarios.

Benefits of technology

It achieves efficient and stable mixing and transportation of concrete, reduces manual labor consumption, improves construction efficiency, ensures the uniformity and flexibility of concrete, and meets the continuous supply requirements of the skip-pour method construction.

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Abstract

The utility model relates to the technical field of concrete transfer, and discloses a concrete transfer device for skip method construction, which comprises a mounting rack and a transfer cylinder, the right end of the interior of the mounting rack is rotatably connected with a support plate, and the left end of the bottom of the support plate is provided with an angle adjusting mechanism; the angle adjusting mechanism is used for adjusting the angle of the supporting plate, the right side of the top of the supporting plate is fixedly connected with a stirring barrel, the left end of the top of the supporting plate is fixedly connected with a stirring motor, and the output end of the stirring motor penetrates through the interior of the stirring barrel and is fixedly connected with stirring blades. According to the utility model, the driving motor drives the transfer auger to push concrete, and the length of the telescopic pipe is adjusted as required to convey the concrete, so that the effects of efficient and stable stirring and accurate concrete transfer are realized, the physical output of a traditional manual back-and-forth conveying mode is avoided, the construction efficiency is improved, and the concrete is continuously and stably supplied for the construction of a skip method.
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Description

TECHNICAL FIELD

[0001] The utility model relates to concrete transfer technical field especially relates to a concrete transfer device for construction of skip method. BACKGROUND

[0002] In large-scale construction engineering, the skip method construction is a commonly used construction method, has unique advantage and application scene, and the skip method construction is divided into several small blocks in the whole concrete pouring area, and the concrete pouring operation is sequentially carried out on each block according to a certain order, and this construction method is mainly used to deal with the temperature stress problem caused by cement hydration heat when large volume concrete is poured, in large volume concrete, a large amount of heat is released during the cement hydration process, which causes the internal temperature of concrete to rise sharply, when the temperature difference between the internal and surface of concrete is too large, cracks will be generated, which affects the durability and safety of the structure.

[0003] Through the skip method construction, the volume of single pouring concrete can be effectively reduced by the division pouring, the cement hydration heat is dissipated in a smaller range, the temperature stress is reduced, thereby the possibility of crack generation is reduced, and the pouring time interval of each block is reasonably arranged, the shrinkage characteristics of concrete are utilized to offset part of the temperature stress to a certain extent, and the quality of the concrete structure is further ensured.

[0004] In the skip method construction, the traditional method relies on manual concrete transportation by trolley, and this method has low efficiency, with the development of the construction industry, in order to improve the construction efficiency, some concrete transfer devices gradually appear, some existing concrete transfer devices avoid completely relying on manual trolley transportation through the conveying belt or pumping mode, and the transfer efficiency is improved to a certain extent, but the conveying length and arrangement of these devices are greatly limited by the space of the construction site, and it is difficult to flexibly arrange in narrow or complex construction sites, frequent maintenance is required, the construction progress is affected, compared with the traditional manual trolley, the trolley has high flexibility, but the transportation capacity is limited each time, and the labor intensity of workers is large, in large-scale skip method construction, it is difficult to meet the continuous and efficient concrete transfer demand, and the construction progress and efficiency are seriously restricted. UTILITY MODEL CONTENTS

[0005] In order to make up for the above shortcomings, the utility model provides a concrete transfer device for skip method construction, which aims at improving the problem that the existing technology relies on manual concrete transportation by trolley, although the trolley has high flexibility, but the transportation capacity is limited each time, and the labor intensity of workers is large, in large-scale skip method construction, it is difficult to meet the continuous and efficient concrete transfer demand.

[0006] In order to achieve the above object, the utility model discloses the following technical scheme: a concrete transfer device for jump warehouse method construction, including mounting bracket and transfer cylinder, the inside right -hand member of mounting bracket is hinged with support plate, the bottom left -hand member of support plate is provided with angle adjusting mechanism, angle adjusting mechanism is used for adjusting the angle of support plate, the top right side fixedly connected of support plate has a stirring drum, the top left -hand member fixedly connected of support plate has a stirring motor, the output of stirring motor penetrates the inside of stirring drum and is fixedly connected with the stirring vane of the bottom right -hand member of stirring drum, the communication of connecting pipe, the bottom end of connecting pipe is communicated in the top left -hand member of transfer cylinder, the middle part fixedly connected of connecting pipe has solenoid valve, the bottom right -hand member fixedly connected of mounting bracket has drive motor, the output of drive motor penetrates the inside of transfer cylinder and is fixedly connected with the transfer auger of the right -hand member of transfer cylinder, the communication of telescopic pipe.

[0007] As a further description of the above technical solution:

[0008] The angle adjusting mechanism includes a mounting plate, two hydraulic rods are fixedly connected to the top of the mounting plate, both of the hydraulic rods are designed with an inclination angle, the output ends of the hydraulic rods are rotatably connected with door-shaped frames, both of the door-shaped frames are fixedly connected to the bottom left end of the support plate, a plurality of force branch legs are equidistantly fixedly connected to the bottom of the mounting plate, and rubber pads are fixedly connected to the bottom ends of the force branch legs.

[0009] As a further description of the above technical solution:

[0010] The top left side of the stirring drum is communicated with a filling groove, and the top rear side of the filling groove is rotatably connected with a cover plate.

[0011] As a further description of the above technical solution:

[0012] The left side of the filling groove is communicated with a water injection pipe, and the left end of the water injection pipe is communicated with a water injection flange.

[0013] As a further description of the above technical solution:

[0014] The top left end of the mounting bracket is fixedly connected with a control console, and the control console is electrically connected with the stirring motor, the solenoid valve, the drive motor and the hydraulic rods.

[0015] As a further description of the above technical solution:

[0016] Anti-skid pads are fixedly connected to the four corners of the bottom of the mounting bracket, and the shapes of the anti-skid pads are designed with a taper.

[0017] As a further description of the above technical solution:

[0018] The bottom end of the right side of two hydraulic rods is fixedly connected with a triangular inclined support, and the bottom end of two triangular inclined supports is fixedly connected with the top right side of the mounting plate.

[0019] As a further description of the above technical solutions:

[0020] The outer bottom end of the transfer cylinder is fixedly connected with a support block, and the outer shape of the support block is designed in a triangular shape.

[0021] The utility model has the advantages of the following:

[0022] 1. In the utility model, the stirring blade is driven by the stirring motor to stir the concrete, the electromagnetic valve controls the inflow of the concrete into the transfer cylinder, the driving motor drives the transfer auger to push the concrete when the concrete needs to be transferred, and the telescopic pipe adjusts the length for conveying the concrete, so that the efficient and stable stirring and the precise transfer of the concrete are realized, the concrete can be uniformly mixed, the physical consumption of the traditional manual back-and-forth conveying mode can be avoided, the construction efficiency is improved, the concrete can be continuously and stably supplied for the skip method construction.

[0023] 2. In the utility model, the mounting plate, the force branch leg and the rubber pad are used for stable support, the hydraulic rod is telescopic according to the actual demand, the door-shaped frame is driven to move, and then the inclination angle of the support plate is changed, so that the effect of precisely regulating and controlling the discharging angle of the stirring barrel is realized, the support plate angle can be flexibly adjusted according to the discharging position and speed requirement, the concrete discharging is smoother, the operability of the stirring barrel discharging is greatly improved, and the discharging requirements of different scenes in the skip method construction are met. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 A perspective view of a concrete transfer device for skip method construction is provided for the utility model;

[0025] Figure 2 A front view of a concrete transfer device for skip method construction is provided for the utility model;

[0026] Figure 3 A sectional view of a stirring barrel in a concrete transfer device for skip method construction is provided for the utility model;

[0027] Figure 4 A sectional view of a transfer cylinder in a concrete transfer device for skip method construction is provided for the utility model;

[0028] Figure 5 A structure schematic view of an angle adjusting mechanism in a concrete transfer device for skip method construction is provided for the utility model.

[0029] LEGEND:

[0030] 1, mounting frame; 2, angle adjusting mechanism; 201, mounting plate; 202, hydraulic rod; 203, door-shaped frame; 204, component force supporting leg; 205, rubber pad; 3, support plate; 4, stirring barrel; 5, stirring motor; 6, stirring blade; 7, transfer cylinder; 8, connecting pipe; 9, electromagnetic valve; 10, driving motor; 11, transfer auger; 12, telescopic pipe; 13, filler groove; 14, cover plate; 15, water injection pipe; 16, water injection flange; 17, control console; 18, non-slip pad; 19, triangular diagonal strut; 20, supporting block. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0032] Referring to Figures 1-4 An embodiment provided by the present application: a concrete transfer device for jump warehouse construction, comprising a mounting frame 1 and a transfer cylinder 7, a support plate 3 is rotatably connected to the right end of the inside of the mounting frame 1, an angle adjusting mechanism 2 is arranged at the left end of the bottom of the support plate 3, the angle adjusting mechanism 2 is used for adjusting the angle of the support plate 3, a stirring barrel 4 is fixedly connected to the right side of the top of the support plate 3, a stirring motor 5 is fixedly connected to the left end of the top of the support plate 3, the output end of the stirring motor 5 penetrates the inside of the stirring barrel 4 and is fixedly connected with a stirring blade 6, a connecting pipe 8 is communicated with the right end of the bottom of the stirring barrel 4, the bottom end of the connecting pipe 8 is communicated with the left side of the top of the transfer cylinder 7, an electromagnetic valve 9 is fixedly connected to the middle of the connecting pipe 8, a driving motor 10 is fixedly connected to the right side of the bottom of the mounting frame 1, the output end of the driving motor 10 penetrates the inside of the transfer cylinder 7 and is fixedly connected with a transfer auger 11, and a telescopic pipe 12 is communicated with the right end of the transfer cylinder 7.

[0033] Specifically, the angle adjusting mechanism 2 is located at the bottom left end of the support plate 3 and connected with the mounting frame 1. By operating the angle adjusting mechanism 2, the included angle between the support plate 3 and the mounting frame 1 can be changed, and then the inclination angle of the support plate 3 is adjusted, so that the stirring barrel 4 is in a suitable inclined state to meet the needs of concrete mixing and unloading in different construction scenes. After the angle adjustment is completed, the concrete raw materials to be stirred are put into the stirring barrel 4, and the stirring barrel 4 is fixed at the top right side of the support plate 3. At this time, the stirring motor 5 is started, which is fixed at the top left end of the support plate 3. The output end of the stirring motor 5 penetrates the stirring barrel 4 and is fixedly connected with the stirring blade 6. When the stirring motor 5 operates, it can drive the stirring blade 6 to rotate in the stirring barrel 4, so that the concrete raw materials in the barrel are fully stirred to ensure that the concrete is uniformly mixed. When the concrete mixing is completed and needs to be transported, the electromagnetic valve 9 in the middle of the connecting pipe 8 is opened. One end of the connecting pipe 8 is communicated with the bottom right end of the stirring barrel 4, and the other end is communicated with the top left side of the transfer cylinder 7. After the electromagnetic valve 9 is opened, the well-stirred concrete flows from the stirring barrel 4 into the transfer cylinder 7 under the action of its own gravity through the connecting pipe 8. After the concrete flows into the transfer cylinder 7, the drive motor 10 at the bottom right side of the mounting frame 1 is started. The output end of the drive motor 10 penetrates the inside of the transfer cylinder 7 and is fixedly connected with the transfer auger 11. When the drive motor 10 works, it drives the transfer auger 11 to rotate in the transfer cylinder 7. The rotation of the transfer auger 11 pushes the concrete from the left side to the right side of the transfer cylinder 7, realizing the horizontal movement of the concrete in the transfer cylinder 7. Finally, the concrete is transported to the designated construction position through the extension pipe 12 communicated with the right end of the transfer cylinder 7. The extension pipe 12 can be adjusted in length according to the actual construction distance to ensure that the concrete can be accurately delivered to each bin in the skip method construction, so that the whole equipment can efficiently and stably complete the mixing and transportation of concrete, continuously meet the use of concrete in the skip method construction, and avoid the problem of back and forth transportation consuming manual labor.

[0034] Referring to Figure 1 and Figure 5 , the angle adjusting mechanism 2 comprises a mounting plate 201, the top of the mounting plate 201 is fixedly connected with two hydraulic rods 202, both of which are designed with an inclination angle. The output end of the hydraulic rod 202 is rotatably connected with a door-shaped frame 203. Both of the door-shaped frames 203 are fixedly connected to the bottom left end of the support plate 3 on the front and back sides. A plurality of force branch legs 204 are equidistantly fixedly connected to the bottom of the mounting plate 201. The bottom end of each force branch leg 204 is fixedly connected with a rubber pad 205.

[0035] Specifically, when the angle of the support plate 3 needs to be adjusted, the mounting plate 201 is stably supported on the ground by the multiple force leg 204 fixedly connected at the bottom, the bottom end of each force leg 204 is fixedly connected with a rubber pad 205, the rubber pad 205 can increase the friction between the bearing surface, and ensure that the mounting plate 201 will not displace during work, the top of the mounting plate 201 is fixedly connected with two hydraulic rods 202, the two hydraulic rods 202 are designed to be inclined, so that the hydraulic rod 202 can more effectively exert force on the support plate 3 when stretching or shortening, when the angle of the support plate 3 needs to be adjusted, the output end of the hydraulic rod 202 is elongated or shortened, the output end of the hydraulic rod 202 is rotatably connected with a door-shaped frame 203, the two door-shaped frames 203 are fixedly connected to the bottom left end of the support plate 3, when the output end of the hydraulic rod 202 is elongated, it pushes the door-shaped frame 203 to move upward, since the door-shaped frame 203 is fixedly connected with the support plate 3, and the right end of the support plate 3 is rotatably connected with the mounting frame 1, during the upward movement of the door-shaped frame 203, the support plate 3 rotates counterclockwise around the rotation connection point with the mounting frame 1, thereby increasing the inclination angle of the support plate 3, when the output end of the hydraulic rod 202 is shortened, the door-shaped frame 203 moves downward with the contraction of the hydraulic rod 202, thereby driving the support plate 3 to rotate around the rotation connection point, reducing the inclination angle of the support plate 3, by controlling the extension and retraction amount and speed of the two hydraulic rods 202, the inclination angle of the support plate 3 can be accurately adjusted to meet the needs of concrete mixing and unloading in different construction scenes, during unloading, the angle of the support plate 3 can be adjusted according to the requirements of the unloading position and unloading speed, so that the concrete can flow more smoothly from the mixing drum 4 through the connecting pipe 8 into the transfer cylinder 7, realizing accurate adjustment of the angle of the support plate 3, and greatly improving the operability of the mixing drum 4 during unloading.

[0036] With reference to Figure 1 , Figure 2 and Figure 5 , the top left side of the mixing drum 4 is communicated with a filling groove 13, the top rear side of the filling groove 13 is rotatably connected with a cover plate 14; the left side of the filling groove 13 is communicated with a water injection pipe 15, the left end of the water injection pipe 15 is communicated with a water injection flange 16; the top left end of the mounting frame 1 is fixedly connected with a control console 17, the control console 17 is electrically connected with the stirring motor 5, the electromagnetic valve 9, the driving motor 10 and the hydraulic rod 202 respectively; the bottom four corners of the mounting frame 1 are fixedly connected with anti-skid pads 18, the shapes of the multiple anti-skid pads 18 are designed to be conical; the right bottom end of the two hydraulic rods 202 is fixedly connected with a triangular inclined strut 19, the bottom end of the two triangular inclined struts 19 is fixedly connected to the top right side of the mounting plate 201; the external bottom end of the transfer cylinder 7 is fixedly connected with a support block 20, the shape of the support block 20 is designed to be triangular;

[0037] Specifically, before preparing the stirring concrete, materials and water need to be added to the stirring barrel 4. The filling chute 13 connected to the top left side of the stirring barrel 4 is a channel for adding solid materials. The operator can pour cement and gravel raw materials into the stirring barrel 4 through the filling chute 13 by opening the cover plate 14 rotatably connected to the top rear side of the filling chute 13. The water injection pipe 15 is connected to the left side of the filling chute 13, and the water injection flange 16 at the left end of the water injection pipe 15 can be connected to an external water source. After opening the water source, water flows into the filling chute 13 through the water injection pipe 15 and then into the stirring barrel 4. By controlling the water injection time or water flow rate, the amount of water for stirring can be accurately adjusted to ensure the accurate mixing ratio of the concrete. The control console 17 fixedly connected to the top left end of the mounting frame 1 is electrically connected with the stirring motor 5, the electromagnetic valve 9, the drive motor 10 and the hydraulic rod 202. The operator can start or stop the stirring motor 5 on the control console 17 to control the stirring blade 6 to stir the concrete raw materials. The opening and closing of the electromagnetic valve 9 can be accurately controlled to determine when the stirred concrete flows from the stirring barrel 4 into the transfer cylinder 7. The drive motor 10 can also be controlled to adjust the rotation speed of the transfer auger 11 to control the conveying speed of the concrete in the transfer cylinder 7. The extension and retraction of the hydraulic rod 202 can be adjusted on the control console 17 to flexibly adjust the angle of the supporting plate 3. Anti-skid pads 18 are fixedly connected to the four corners of the bottom of the mounting frame 1. The conical design increases the contact area and friction with the ground, effectively preventing the mounting frame 1 from moving during the operation of the device. The triangular bracing 19 fixedly connected to the right bottom end of the two hydraulic rods 202 is fixed to the top right side of the mounting plate 201 at the front and rear ends. The triangular bracing 19 utilizes the stability principle of a triangle to enhance the connection strength between the hydraulic rod 202 and the mounting plate 201. When the hydraulic rod 202 adjusts the angle of the supporting plate 3, it effectively disperses the pressure to prevent the hydraulic rod 202 from shaking or deforming. The triangular support block 20 fixedly connected to the bottom end of the transfer cylinder 7 provides additional support for the transfer cylinder 7. When the drive motor 10 drives the transfer auger 11 to rotate and convey the concrete, the support block 20 can stabilize the transfer cylinder 7 to reduce vibration and ensure the stability of the concrete conveying process.

[0038] Working principle: through the angle adjusting mechanism 2 can make the stirring barrel 4 is in the appropriate state of tilt, to meet the different construction scene concrete mixing and unloading requirements, complete angle adjustment, put the concrete raw materials to be stirred into the stirring barrel 4, the stirring barrel 4 is fixed at the top right side of the support plate 3, at this time start stirring motor 5, stirring motor 5 is fixed at the top left end of support plate 3, its output end penetrates stirring barrel 4 and is fixedly connected with stirring blade 6, stirring motor 5 can drive stirring blade 6 to rotate in stirring barrel 4, the concrete raw materials in the barrel are fully stirred, ensure that the concrete is mixed evenly, when the concrete mixing is completed and needs to be transported, open the electromagnetic valve 9 in the middle of the connecting pipe 8, one end of the connecting pipe 8 is communicated with the bottom right end of the stirring barrel 4, the other end is communicated with the top left side of the transfer cylinder 7, after opening the electromagnetic valve 9, the stirred concrete flows from the stirring barrel 4 into the transfer cylinder 7 under the action of its own gravity, after the concrete flows into the transfer cylinder 7, the drive motor 10 at the bottom right side of the mounting frame 1 is started, the output end of the drive motor 10 penetrates the inside of the transfer cylinder 7 and is fixedly connected with the transfer auger 11, when the drive motor 10 works, it drives the transfer auger 11 to rotate in the transfer cylinder 7, the rotation of the transfer auger 11 pushes the concrete from the left side to the right side of the transfer cylinder 7, realizing the horizontal movement of the concrete in the transfer cylinder 7, finally the concrete is transported to the designated construction position through the flexible pipe 12 communicated with the right end of the transfer cylinder 7, the flexible pipe 12 can be adjusted in length according to the actual construction distance, to ensure that the concrete can be accurately delivered to each bin of the skip method construction;

[0039] Moreover, the mounting plate 201 is stably supported on the ground through multiple force component legs 204 fixedly connected at the bottom, the bottom end of each force component leg 204 is fixedly connected with a rubber pad 205, the rubber pad 205 can increase the friction between the bearing surface, to ensure that the mounting plate 201 will not displace during work, the top of the mounting plate 201 is fixedly connected with two hydraulic rods 202, the two hydraulic rods 202 are designed with an inclination angle, so that the hydraulic rod 202 can more effectively exert force on the support plate 3 when stretching or shortening, when the angle of the support plate 3 needs to be adjusted, the output end of the hydraulic rod 202 is lengthened or shortened, the output end of the hydraulic rod 202 is rotatably connected with a door-shaped frame 203, the two door-shaped frames 203 are fixedly connected to the bottom left end of the support plate 3 on the front and back sides, when the output end of the hydraulic rod 202 is lengthened, it will push the door-shaped frame 203 to move upward, since the door-shaped frame 203 is fixedly connected with the support plate 3, and the right end of the support plate 3 is rotatably connected with the mounting frame 1, so during the upward movement of the door-shaped frame 203, the support plate 3 will rotate counterclockwise around the rotation connection point with the mounting frame 1, thereby increasing the inclination angle of the support plate 3, when the output end of the hydraulic rod 202 is shortened, the door-shaped frame 203 will move downward along with the contraction of the hydraulic rod 202, thereby driving the support plate 3 to rotate around the rotation connection point, to reduce the inclination angle of the support plate 3.

[0040] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, the made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.

Claims

1. A concrete transfer device for skip construction, comprising a mounting frame (1) and a transfer drum (7), characterized in that: The inner right end of the mounting frame (1) is rotationally connected with a support plate (3), the bottom left end of the support plate (3) is provided with an angle adjusting mechanism (2), the angle adjusting mechanism (2) is used for adjusting the angle of the support plate (3), the top right side of the support plate (3) is fixedly connected with a stirring barrel (4), the top left end of the support plate (3) is fixedly connected with a stirring motor (5), the output end of the stirring motor (5) penetrates the inside of the stirring barrel (4) and is fixedly connected with a stirring blade (6), the bottom right end of the stirring barrel (4) is communicated with a connecting pipe (8), the bottom end of the connecting pipe (8) is communicated on the top left side of a transfer cylinder (7), the middle part of the connecting pipe (8) is fixedly connected with a solenoid valve (9), the bottom right side of the mounting frame (1) is fixedly connected with a driving motor (10), the output end of the driving motor (10) penetrates the inside of the transfer cylinder (7) and is fixedly connected with a transfer auger (11), the right end of the transfer cylinder (7) is communicated with a telescopic pipe (12).

2. The concrete transfer device for skip construction according to claim 1, characterized in that: The angle adjusting mechanism (2) comprises a mounting plate (201), the top of the mounting plate (201) is fixedly connected with two hydraulic rods (202), both of the hydraulic rods (202) adopt an inclination design, the output end of the hydraulic rod (202) is rotationally connected with a door-shaped frame (203), both of the door-shaped frames (203) are fixedly connected on the bottom left end of the support plate (3) front and back sides, the bottom of the mounting plate (201) is equidistantly fixedly connected with a plurality of component force supporting legs (204), the bottom end of the component force supporting leg (204) is fixedly connected with a rubber pad (205).

3. The concrete transfer device for skip deck construction of claim 1, wherein: The top left side of the stirring barrel (4) is communicated with a filler groove (13), the top rear side of the filler groove (13) is rotationally connected with a cover plate (14).

4. The concrete transfer device for skip construction according to claim 3, wherein: The left side of the filler groove (13) is communicated with a water injection pipe (15), the left end of the water injection pipe (15) is communicated with a water injection flange (16).

5. The concrete transfer device for skip deck construction of claim 1, wherein: The top left end of the mounting frame (1) is fixedly connected with a control console (17), the control console (17) is electrically connected with the stirring motor (5), the solenoid valve (9), the driving motor (10) and the hydraulic rod (202) respectively.

6. The concrete transfer device for jump-form construction of claim 1, wherein: The bottom four corners of the mounting frame (1) are fixedly connected with anti-skid pads (18), the shapes of the anti-skid pads (18) all adopt a conical design.

7. The concrete transfer device for skip deck construction of claim 2, wherein: The right bottom end of both of the hydraulic rods (202) is fixedly connected with a triangular inclined strut (19), the bottom end of both of the triangular inclined struts (19) is fixedly connected on the top right side front and back ends of the mounting plate (201).

8. The concrete transfer device for jump-form construction of claim 1, wherein: The outside bottom end of the transfer cylinder (7) is fixedly connected with a support block (20), the shape of the support block (20) adopts a triangular design.