A prefabricated assembly type steel-concrete component mounting device

By designing a prefabricated steel-concrete composite installation device that includes a hydraulic cylinder and a drive motor, the problem of high installation difficulty in the existing technology is solved, and a fast and stable installation effect is achieved.

CN116692740BActive Publication Date: 2025-11-25海力控股集团有限公司
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Patent Information

Application Number
CN202310747642.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-25
Publication Date
2025-11-25
Estimated Expiration
2043-06-25

AI Technical Summary

Technical Problem

The lack of effective auxiliary adjustment devices during the installation of existing prefabricated steel-concrete components means that the crane needs to be constantly operated in coordination with the construction personnel, which increases the installation difficulty and reduces efficiency.

Method used

An installation device comprising a first mounting bracket, a fixed lug, a first rotating bracket, a support bracket, and a conversion mechanism is adopted. Through the cooperation of a hydraulic cylinder and a drive motor, the angle and position of the support bracket are adjusted, and the support bracket is tightly fitted and clamped to limit the prefabricated assembled steel-concrete components, thereby improving the convenience and stability of installation.

Benefits of technology

It enables rapid adjustment of the installation status of prefabricated steel-concrete components without the need for a crane, improving installation efficiency and stability while reducing operational difficulty.

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Abstract

The present application relates to the technical field of building construction, and more particularly to a prefabricated assembly type steel and concrete component mounting device, which can release the use of a crane, quickly adjust the mounting state of the prefabricated assembly type steel and concrete component, and improve the mounting convenience and efficiency. The prefabricated assembly type steel and concrete component mounting device comprises a first mounting frame, fixing lugs, a first rotating frame and a support frame, etc. Three groups of fixing lugs are arranged on the first mounting frame. The first rotating frame is rotatably arranged on the left part of the first mounting frame. The support frame is slidably arranged on the first rotating frame. The movement state of the first hydraulic cylinder is adjusted, so that the mounting component drives the rotating component to rotate correspondingly, and the support frame moves synchronously, thereby achieving the supporting and assisting effect on the horizontally or vertically mounted prefabricated assembly type steel and concrete component, facilitating the quick adjustment of the construction personnel, and improving the operation convenience and efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of building construction, and in particular to a prefabricated assembly type steel and concrete component mounting device. BACKGROUND

[0002] The prefabricated assembly type steel and concrete component refers to a reinforced concrete component of a certain strength grade and specification that is processed and formed through a mold, machine automation equipment and other production processes in a factory, and is transported to a construction site by professional transportation tools, and is assembled and constructed between components through hoisting and other assembly work.

[0003] When the prefabricated assembly type steel and concrete component is mounted, the prefabricated assembly type steel and concrete component is generally hoisted by a crane, and then the prefabricated assembly type steel and concrete component is driven to a designated mounting position, and then the prefabricated assembly type steel and concrete component is positioned by a construction worker, and after positioning is completed, the prefabricated assembly type steel and concrete component is directly lowered by the crane for mounting. However, when the prefabricated assembly type steel and concrete component is mounted by the construction worker, there is a lack of a device for effectively assisting in adjusting the mounting of the prefabricated assembly type steel and concrete component, and the mounting state of the prefabricated assembly type steel and concrete component needs to be adjusted by the crane in cooperation with the construction worker, which is difficult to operate and can reduce the mounting efficiency of the prefabricated assembly type steel and concrete component.

[0004] Therefore, in view of the above problems, the present application provides a prefabricated assembly type steel and concrete component mounting device that can free the crane from use and quickly adjust the mounting state of the prefabricated assembly type steel and concrete component to improve mounting convenience and mounting efficiency. SUMMARY

[0005] In order to overcome the shortcomings of the prior art that the mounting state of the prefabricated assembly type steel and concrete component needs to be adjusted by the crane in cooperation with the construction worker, which is difficult to operate and can reduce the mounting efficiency of the prefabricated assembly type steel and concrete component, the present application provides a prefabricated assembly type steel and concrete component mounting device that can free the crane from use and quickly adjust the mounting state of the prefabricated assembly type steel and concrete component to improve mounting convenience and mounting efficiency.

[0006] The technical scheme is as follows: a prefabricated assembly type steel and concrete component mounting device, comprising a first mounting frame, a fixed lug, a first rotating frame, a support frame and a conversion mechanism, three groups of fixed lugs are arranged on the first mounting frame, a first rotating frame is rotatably arranged on the left part of the first mounting frame, a support frame is slidably arranged on the first rotating frame, a conversion mechanism is arranged on the first mounting frame, the conversion mechanism comprises a fixing piece, a first hydraulic cylinder, a mounting piece and a rotating piece, the fixing piece is arranged on the left side of the upper part of the first mounting frame, the first hydraulic cylinder is rotatably arranged on the fixing piece, the rotating piece is arranged on the right side of the first rotating frame, the mounting piece is arranged on the extension end of the first hydraulic cylinder, and the rotating piece is rotatably connected with the mounting piece.

[0007] More preferably, the adjusting mechanism comprises a first mounting plate, a second mounting plate, guide rods, a first lead screw, a belt pulley assembly, a first drive motor, a second lead screw and a second drive motor, the second mounting plate is slidably arranged on the top of the first mounting plate, the first mounting plate is provided with the guide rods on the upper and lower portions, the first mounting plate is slidably connected with the guide rods, the first mounting plate is rotatably provided with the first lead screw on the lower portion, the first mounting plate is provided with the first drive motor on the right side of the upper portion, the first drive motor output shaft is also provided with the first lead screw, the upper first lead screw is rotatably connected with the first mounting plate, the first lead screw is threadedly connected with the first mounting plate, and the belt pulley assembly is arranged between the first drive motor output shaft and the lower lead screw.

[0008] More preferably, the adjusting mechanism comprises a first mounting plate, a second mounting plate, guide rods, a first lead screw, a belt pulley assembly, a first drive motor, a second lead screw and a second drive motor, the second mounting plate is slidably arranged on the top of the first mounting plate, the first mounting plate is provided with the guide rods on the upper and lower portions, the first mounting plate is slidably connected with the guide rods, the first mounting plate is rotatably provided with the first lead screw on the lower portion, the first mounting plate is provided with the first drive motor on the right side of the upper portion, the first drive motor output shaft is also provided with the first lead screw, the upper first lead screw is rotatably connected with the first mounting plate, the first lead screw is threadedly connected with the first mounting plate, and the belt pulley assembly is arranged between the first drive motor output shaft and the lower lead screw.

[0009] More preferably, the adjusting mechanism comprises a first mounting plate, a second mounting plate, guide rods, a first lead screw, a belt pulley assembly, a first drive motor, a second lead screw and a second drive motor, the second mounting plate is slidably arranged on the top of the first mounting plate, the first mounting plate is provided with the guide rods on the upper and lower portions, the first mounting plate is slidably connected with the guide rods, the first mounting plate is rotatably provided with the first lead screw on the lower portion, the first mounting plate is provided with the first drive motor on the right side of the upper portion, the first drive motor output shaft is also provided with the first lead screw, the upper first lead screw is rotatably connected with the first mounting plate, the first lead screw is threadedly connected with the first mounting plate, and the belt pulley assembly is arranged between the first drive motor output shaft and the lower lead screw.

[0010] More preferably, the adjusting mechanism comprises a first mounting plate, a second mounting plate, guide rods, a first lead screw, a belt pulley assembly, a first drive motor, a second lead screw and a second drive motor, the second mounting plate is slidably arranged on the top of the first mounting plate, the first mounting plate is provided with the guide rods on the upper and lower portions, the first mounting plate is slidably connected with the guide rods, the first mounting plate is rotatably provided with the first lead screw on the lower portion, the first mounting plate is provided with the first drive motor on the right side of the upper portion, the first drive motor output shaft is also provided with the first lead screw, the upper first lead screw is rotatably connected with the first mounting plate, the first lead screw is threadedly connected with the first mounting plate, and the belt pulley assembly is arranged between the first drive motor output shaft and the lower lead screw.

[0011] More preferably, the adjusting mechanism comprises a first mounting plate, a second mounting plate, guide rods, a first lead screw, a belt pulley assembly, a first drive motor, a second lead screw and a second drive motor, the second mounting plate is slidably arranged on the top of the first mounting plate, the first mounting plate is provided with the guide rods on the upper and lower portions, the first mounting plate is slidably connected with the guide rods, the first mounting plate is rotatably provided with the first lead screw on the lower portion, the first mounting plate is provided with the first drive motor on the right side of the upper portion, the first drive motor output shaft is also provided with the first lead screw, the upper first lead screw is rotatably connected with the first mounting plate, the first lead screw is threadedly connected with the first mounting plate, and the belt pulley assembly is arranged between the first drive motor output shaft and the lower lead screw.

[0012] More preferably, the adjusting mechanism comprises a first mounting plate, a second mounting plate, guide rods, a first lead screw, a belt pulley assembly, a first drive motor, a second lead screw and a second drive motor, the second mounting plate is slidably arranged on the top of the first mounting plate, the first mounting plate is provided with the guide rods on the upper and lower portions, the first mounting plate is slidably connected with the guide rods, the first mounting plate is rotatably provided with the first lead screw on the lower portion, the first mounting plate is provided with the first drive motor on the right side of the upper portion, the first drive motor output shaft is also provided with the first lead screw, the upper first lead screw is rotatably connected with the first mounting plate, the first lead screw is threadedly connected with the first mounting plate, and the belt pulley assembly is arranged between the first drive motor output shaft and the lower lead screw.

[0013] More preferably, the belt wheel assembly comprises belt wheels and a transmission belt, the first driving motor output shaft and the right end of the first lead screw on the lower side are both provided with belt wheels, and the transmission belt is wound between the belt wheels.

[0014] More preferably, the clamping members on the right side are all inclined surfaces.

[0015] More preferably, the locking members are all provided with pull rings at the bottom for easy pulling.

[0016] Compared with the prior art, the present application has the following advantages: 1. The present application adjusts the movement state of the first hydraulic cylinder extension end, so that the mounting member drives the rotating member to rotate correspondingly, and then the support frame moves synchronously, realizing the supporting and assisting effect on the prefabricated assembly type steel and concrete member installed horizontally or vertically, facilitating the quick adjustment of the construction personnel and improving the operation convenience and installation efficiency.

[0017] 2. The present application controls the first driving motor and the second driving motor to make the first lead screw and the second lead screw rotate, thereby adjusting the horizontal position of the first mounting frame, realizing the effect of quickly adjusting the position of the first mounting frame, thereby facilitating the quick adjustment of the construction personnel according to the change of the installation position.

[0018] 3. The present application controls the movement of the mounting ring through the extension end of the second hydraulic cylinder, so that the support frame can tightly fit the prefabricated assembly type steel and concrete member, thereby reinforcing the prefabricated assembly type steel and concrete member during installation, preventing the prefabricated assembly type steel and concrete member from shaking during installation and affecting normal installation.

[0019] 4. The present application adjusts the positions of the second rotating frame and the third rotating frame through the rotating slide rod, so that the second rotating frame and the third rotating frame can be symmetrically distributed, and then with the movement of the support frame, the clamping members will be extruded by the slide rod, thereby clamping and limiting the two sides of the prefabricated assembly type steel and concrete member, improving the stability of the prefabricated assembly type steel and concrete member during installation. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application.

[0021] Figure 2 It is a schematic diagram of part of the three-dimensional structure of the present application.

[0022] Figure 3 It is a schematic diagram of the three-dimensional structure of the present application.

[0023] Figure 4 It is a schematic diagram of the three-dimensional structure of the present application.

[0024] Figure 5 It is a schematic diagram of part of the three-dimensional structure of the present application.

[0025] Figure 6 This is a three-dimensional structural diagram of the launching and retracting mechanism of the present invention.

[0026] Figure 7 This is a three-dimensional structural diagram of the clamping mechanism of the present invention.

[0027] Figure 8 This is a schematic diagram of the clamping mechanism of the present invention.

[0028] Figure 9 This is a three-dimensional structural diagram of the locking mechanism of the present invention.

[0029] Figure 10 This is a three-dimensional structural diagram of the positioning mechanism of the present invention.

[0030] The components in the attached diagram are labeled as follows: 1. First mounting bracket, 2. Fixing lug, 3. First rotating bracket, 4. Support bracket, 5. Conversion mechanism, 51. Fixing component, 52. First hydraulic cylinder, 53. Mounting component, 54. Rotating component, 6. Adjustment mechanism, 61. First mounting plate, 62. Second mounting plate, 63. Guide rod, 64. First lead screw, 65. Pulley assembly, 66. First drive motor, 67. Second lead screw, 68. Second drive motor, 7. Retraction mechanism, 71. Second mounting bracket, 72. Second hydraulic cylinder, 73. Mounting ring, 8. Clamping mechanism, 81. Second rotating bracket, 82. Third rotating bracket, 83. Clamping component, 84. First spring, 85. Sliding rod, 86. Fixing ring, 9. Locking mechanism, 91. Locking hole, 92. Locking component, 93. Second spring, 10. Positioning mechanism, 101. Fixing rod, 102. Positioning plate. Detailed Implementation

[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0032] A prefabricated steel-concrete composite installation device, such as Figure 1 and Figure 2 As shown, it includes a first mounting frame 1, a fixing ear 2, a first rotating frame 3, a support frame 4, and a conversion mechanism 5. The first mounting frame 1 is connected to three sets of fixing ears 2 for mounting and fixing. The first rotating frame 3 is rotatably connected to the left side of the first mounting frame 1. The support frame 4 for supporting and stabilizing the steel-concrete component is slidably connected to the first rotating frame 3. The first mounting frame 1 is provided with a conversion mechanism 5 for adjusting the support angle of the first rotating frame 3.

[0033] It should be noted that when installing prefabricated steel-concrete composite components, the components need to be supported and stabilized before installation. First, the first mounting frame 1 is placed on the ground and fixed to the fixing lug 2 with bolts, thus fixing the first mounting frame 1 in place. Then, the first rotating frame 3 is rotated according to the condition of the prefabricated steel-concrete composite components, thereby adjusting the support angle of the support frame 4, which can then assist in the installation of prefabricated steel-concrete composite components on the horizontal or vertical plane.

[0034] like Figure 1 and Figure 3 As shown, the conversion mechanism 5 includes a fixing member 51, a first hydraulic cylinder 52, a mounting member 53, and a rotating member 54. The fixing member 51 is connected to the upper left side of the first mounting frame 1, and the first hydraulic cylinder 52 is rotatably connected to the fixing member 51. The rotating member 54 is connected to the right side of the first rotating frame 3 by bolts. The mounting member 53 for adjusting the rotation angle of the rotating member 54 is connected to the telescopic end of the first hydraulic cylinder 52. The rotating member 54 is rotatably connected to the mounting member 53.

[0035] It should be noted that during the installation of prefabricated steel-concrete components, adjustments need to be made according to their installation orientation. If the prefabricated steel-concrete components are installed horizontally, the extension end of the first hydraulic cylinder 52 needs to be controlled to extend downwards, causing the mounting component 53 to push the rotating component 54 to rotate clockwise, thereby causing the first rotating frame 3 to rotate clockwise, and then causing the support frame 4 to rotate synchronously and form a parallel state with the ground. This allows for support and auxiliary installation of the horizontally installed prefabricated steel-concrete components. If the prefabricated steel-concrete components are installed vertically, ... The retracting end of the hydraulic cylinder 52 causes the mounting component 53 to pull the rotating component 54 to rotate counterclockwise, which in turn causes the first rotating frame 3 to rotate counterclockwise, and then the support frame 4 to rotate synchronously and form a perpendicular state with the ground. This allows for the support and auxiliary installation of vertically installed prefabricated steel-concrete components. In summary, by adjusting the movement state of the retracting end of the first hydraulic cylinder 52, the mounting component 53 drives the rotating component 54 to rotate accordingly, which in turn causes the support frame 4 to move synchronously. This achieves the effect of supporting and assisting horizontally or vertically installed prefabricated steel-concrete components, facilitating quick adjustments by construction personnel and improving operational convenience.

[0036] like Figure 1 , Figure 4 and Figure 5As shown, it also includes an adjustment mechanism 6, which includes a first mounting plate 61, a second mounting plate 62, a guide rod 63, a first lead screw 64, a pulley assembly 65, a first drive motor 66, a second lead screw 67, and a second drive motor 68. The top of the second mounting plate 62 is slidably connected to the first mounting plate 61 for supporting the first mounting bracket 1. The right side of the second mounting plate 62 is connected to an auxiliary frame for supporting the first mounting plate 61. Guide rods 63 are connected to both the upper and lower parts of the first mounting plate 61. The first mounting bracket 1 is slidably connected to the guide rods 63 and is guided by the guide rods 63 during sliding. The lower part of the first mounting plate 61 is rotatably connected to the first lead screw 64. The upper right side of the first mounting plate 61 is connected to the first drive motor 66. The output shaft of the first drive motor 66 is oriented to the left. A first lead screw 64 is also connected to the output shaft of the first drive motor 66. The upper lead screw 64 is also rotatably connected to the first mounting plate 61. The first lead screw 64 is threadedly connected to the first mounting bracket 1. A pulley assembly 65 is connected between the output shaft of the first drive motor 66 and the lower lead screw. The pulley assembly 65 includes a pulley and a transmission belt. The right end of the output shaft of the first drive motor 66 and the lower lead screw 64 are both connected to pulleys. A transmission belt is wound between the pulleys. A second drive motor 68 is bolted to the front of the second mounting plate 62. The output shaft of the second drive motor 68 is oriented to the rear. A second lead screw 67 is connected to the output shaft of the second drive motor 68. The second lead screw 67 is threadedly connected to the first mounting plate 61.

[0037] It should be noted that during the installation of prefabricated steel-concrete components, adjustments need to be made in real time according to the installation position to ensure rapid installation. When the installation position of the prefabricated steel-concrete components needs to be adjusted, the output shaft of the first drive motor 66 can be controlled to rotate, causing the pulley assembly 65 to start running. This causes the first lead screw 64 to rotate synchronously. At this time, the first mounting frame 1 will slide to the left under the guidance of the guide rod 63, thereby adjusting the horizontal position of the first mounting frame 1. After the adjustment is completed, the first drive motor 66 is turned off, and the output shaft of the second drive motor 68 is controlled to rotate, causing the second lead screw 67 to rotate. This causes the first mounting plate 61 to adjust its horizontal position forward and backward under the guidance of the second mounting plate 62. After the adjustment is completed, the second drive motor 68 is turned off. In summary, by controlling the first drive motor 66 and the second drive motor 68, the first lead screw 64 and the second lead screw 67 are rotated, thereby adjusting the horizontal position of the first mounting frame 1. This achieves the effect of quickly adjusting the position of the first mounting frame 1, making it convenient for construction personnel to quickly adjust according to changes in the installation position.

[0038] like Figure 1 and Figure 6As shown, it also includes a retraction mechanism 7, which includes a second mounting frame 71, a second hydraulic cylinder 72, and a mounting ring 73. The first mounting frame 1 is bolted to both the front and rear sides of the left side to the second mounting frame 71. The second mounting frame 71 is connected to the second hydraulic cylinder 72. The extension and retraction ends of the second hydraulic cylinder 72 are connected to the mounting ring 73 for supporting and driving the support frame 4. The mounting ring 73 is fixedly connected to the bottom of the support frame 4.

[0039] It should be noted that when using the support frame 4 to assist in the installation of the prefabricated steel-concrete composite component, the extension and retraction end of the second hydraulic cylinder 72 can be controlled to drive the installation ring 73 to move, thereby causing the support frame 4 to slide outward and fit tightly against the prefabricated steel-concrete composite component. This provides stable support during the installation of the prefabricated steel-concrete composite component and prevents it from shaking. After the prefabricated steel-concrete composite component is installed, the extension and retraction end of the second hydraulic cylinder 72 is controlled to retract and reset, thereby causing the installation ring 73 to drive the support frame 4 to retract and reset. In summary, by controlling the movement of the installation ring 73 through the extension and retraction end of the second hydraulic cylinder 72, the support frame 4 can be tightly fitted against the prefabricated steel-concrete composite component, thereby reinforcing it during the installation process and preventing it from shaking and affecting normal installation.

[0040] like Figure 1 , Figure 7 and Figure 8 As shown, it also includes a clamping mechanism 8, which includes a second rotating frame 81, a third rotating frame 82, a clamping element 83, a first spring 84, a sliding rod 85, and a fixing ring 86. The second rotating frame 81 is rotatably connected to the bottom of the support frame 4, and the third rotating frame 82 is rotatably connected to the second rotating frame 81. The tops of the second rotating frame 81 and the third rotating frame 82 are slidably connected to clamping elements 83 for clamping and limiting the steel-concrete parts. The right side of the clamping elements 83 is a sloping structure. The clamping elements 83 are connected to the adjacent second rotating frame 81 and the third rotating frame 82 by a first spring 84. The tops of the second rotating frame 81 and the third rotating frame 82 are slidably connected to sliding rods 85 that can push the adjacent clamping elements 83. The support frame 4 is connected to a fixing ring 86, and the sliding rods 85 are all slidably connected to the fixing ring 86.

[0041] It should be noted that, in order to improve the stability of the prefabricated steel-concrete components during installation, the sliding rod 85 can be rotated, thereby causing the corresponding second rotating frame 81 and third rotating frame 82 to rotate accordingly. It is important to note that during the rotation of the sliding rod 85, the fixing ring 86 guides the sliding rod 85, ensuring stable movement. Once the sliding rod 85 drives the second rotating frame 81 and third rotating frame 82 to the designated clamping position (i.e., when the second rotating frame 81 and third rotating frame 82 are symmetrical), the second hydraulic cylinder 72 is activated, causing the support frame 4 to slide outwards. This causes the second rotating frame 81 and third rotating frame 82 to move synchronously, resulting in synchronous movement of the clamping components 83. As the clamping components 83 move outwards, the sliding rod 85 will contact the inclined surface on the right side of the clamping component 83. The sliding rod 85 presses and pushes the adjacent clamping parts 83, causing them to slide towards each other and clamping and limiting the prefabricated steel-concrete composite parts. Simultaneously, the first spring 84 is stretched. After installation, as the support frame 4 retracts and resets, the second rotating frame 81 and the third rotating frame 82 move synchronously to reset, relieving the right side of the clamping parts 83 from pressure and pushing. Under the action of the first spring 84, the clamping parts 83 slide and reset. In summary, by rotating the sliding rod 85 to adjust the positions of the second rotating frame 81 and the third rotating frame 82, they are symmetrically distributed. Then, as the support frame 4 moves, the clamping parts 83 are pressed by the sliding rod 85, thus clamping and limiting both sides of the prefabricated steel-concrete composite parts, improving the stability of the prefabricated steel-concrete composite parts during installation.

[0042] like Figure 1 and Figure 9 As shown, it also includes a locking mechanism 9, which includes a locking element 92 and a second spring 93. The support frame 4 has two locking holes 91 in each of the four directions at its bottom. The second rotating frame 81 and the third rotating frame 82 are slidably connected to the locking elements 92 that can engage with the corresponding locking holes 91. The bottom of the locking elements 92 is equipped with a pull ring for easy pulling. The locking elements 92 are connected to the adjacent second rotating frame 81 and third rotating frame 82 by a second spring 93. The second spring 93 is wound around the adjacent locking elements 92.

[0043] It should be noted that before rotating and adjusting the second rotating frame 81 and the third rotating frame 82, the locking parts 92 need to be pulled downwards using the pull rings, so that the second springs 93 are stretched. Then, as the second rotating frame 81 and the third rotating frame 82 rotate into place, the locking parts 92 are released, so that the locking parts 92 slide upwards and reset under the action of the second springs 93, and engage with the corresponding locking holes 91, thereby locking and fixing the second rotating frame 81 and the third rotating frame 82 to prevent accidental shaking of the second rotating frame 81 and the third rotating frame 82 during the installation of the prefabricated assembled steel concrete components.

[0044] like Figure 1 and Figure 10 As shown, it also includes a positioning mechanism 10, which includes a fixing rod 101 and a positioning plate 102. The left and right sides of the left side of the first mounting frame 1 are connected by bolts to symmetrical fixing rods 101. The tops of adjacent fixing rods 101 are connected to positioning plates 102 for positioning the first rotating frame 3.

[0045] It should be noted that when the first rotating frame 3 is rotated and adjusted, the rotation angle of the first rotating frame 3 is positioned and limited by the positioning plate 102 to avoid the first rotating frame 3 rotating too much and affecting the installation of prefabricated steel-concrete components.

[0046] The technical principles of the embodiments of the present invention have been described above with reference to specific examples. These descriptions are merely for explaining the principles of the embodiments of the present invention and should not be construed as limiting the scope of protection of the embodiments of the present invention in any way. Based on the explanation herein, those skilled in the art can conceive of other specific embodiments of the present invention without creative effort, and these embodiments will all fall within the scope of protection of the embodiments of the present invention.

Claims

1. A prefabricated assembled steel-concrete composite installation device, comprising a first mounting frame (1), fixing ears (2), a first rotating frame (3), a support frame (4), and a conversion mechanism (5), wherein the first mounting frame (1) is provided with three sets of fixing ears (2), the first rotating frame (3) is rotatably provided on the left side of the first mounting frame (1), the support frame (4) is slidably provided on the first rotating frame (3), and the conversion mechanism (5) is provided on the first mounting frame (1), characterized in that: The conversion mechanism (5) includes a fixing part (51), a first hydraulic cylinder (52), a mounting part (53) and a rotating part (54). The fixing part (51) is provided on the upper left side of the first mounting frame (1). The first hydraulic cylinder (52) is rotatably provided on the fixing part (51). The rotating part (54) is provided on the right side of the first rotating frame (3). The mounting part (53) is provided on the telescopic end of the first hydraulic cylinder (52). The rotating part (54) is rotatably connected to the mounting part (53). It also includes an adjustment mechanism (6), which includes a first mounting plate (61), a second mounting plate (62), a guide rod (63), a first lead screw (64), a pulley assembly (65), a first drive motor (66), a second lead screw (67), and a second drive motor (68). The first mounting plate (61) is slidably mounted on the top of the second mounting plate (62). Guide rods (63) are provided on both the upper and lower parts of the first mounting plate (61). The first mounting bracket (1) is slidably connected to the guide rods (63). The first lead screw (64) is rotatably mounted on the lower part of the first mounting plate (61). The first mounting plate (61) is mounted on the upper part of the first mounting plate (61). A first drive motor (66) is provided on the right side of the part. A first lead screw (64) is also provided on the output shaft of the first drive motor (66). The upper lead screw (64) is also rotatably connected to the first mounting plate (61). The first lead screw (64) is threadedly connected to the first mounting bracket (1). A pulley assembly (65) is provided between the output shaft of the first drive motor (66) and the lower lead screw (64). A second drive motor (68) is provided on the front side of the second mounting plate (62). A second lead screw (67) is provided on the output shaft of the second drive motor (68). The second lead screw (67) is threadedly connected to the first mounting plate (61).

2. The prefabricated assembled steel-concrete component installation device as described in claim 1, characterized in that: It also includes a retracting mechanism (7), which includes a second mounting frame (71), a second hydraulic cylinder (72) and a mounting ring (73). The first mounting frame (1) has a second mounting frame (71) on both the front and rear sides of the left side. The second mounting frame (71) has a second hydraulic cylinder (72) on each of the second mounting frames (71). The mounting ring (73) is provided between the extension and retraction ends of the second hydraulic cylinder (72). The mounting ring (73) is connected and fixed to the bottom of the support frame (4).

3. The prefabricated assembled steel-concrete component installation device as described in claim 2, characterized in that: It also includes a clamping mechanism (8), which includes a second rotating frame (81), a third rotating frame (82), a clamping element (83), a first spring (84), a sliding rod (85), and a fixing ring (86). The second rotating frame (81) is rotatably mounted at the bottom of the support frame (4), and the third rotating frame (82) is rotatably mounted on the second rotating frame (81). The clamping element (83) is slidably mounted on the top of both the second rotating frame (81) and the third rotating frame (82). The first spring (84) is provided between the clamping element (83) and the adjacent second rotating frame (81) and third rotating frame (82). The sliding rod (85) is slidably mounted on the top of both the second rotating frame (81) and the third rotating frame (82). The fixing ring (86) is provided on the support frame (4), and the sliding rod (85) is slidably connected to the fixing ring (86).

4. The prefabricated assembled steel-concrete component installation device as described in claim 3, characterized in that: It also includes a locking mechanism (9), which includes a locking element (92) and a second spring (93). The support frame (4) has two locking holes (91) in four directions at the bottom. The second rotating frame (81) and the third rotating frame (82) are slidably provided with locking elements (92). The locking element (92) is provided with a second spring (93) between it and the adjacent second rotating frame (81) and third rotating frame (82).

5. The prefabricated assembled steel-concrete component installation device as described in claim 4, characterized in that: It also includes a positioning mechanism (10), which includes a fixing rod (101) and a positioning plate (102). The left and right sides of the left side of the first mounting frame (1) are provided with symmetrical fixing rods (101), and the tops of adjacent fixing rods (101) are provided with positioning plates (102).

6. The prefabricated assembled steel-concrete component installation device as described in claim 5, characterized in that: The right side of the second mounting plate (62) is provided with an auxiliary frame for supporting the first mounting plate (61).

7. The prefabricated assembled steel-concrete component installation device as described in claim 6, characterized in that: The pulley assembly (65) includes a pulley and a drive belt. The output shaft of the first drive motor (66) and the right end of the first lead screw (64) on the lower side are both provided with pulleys, and a drive belt is wound between the pulleys.

8. The prefabricated assembled steel-concrete component installation device as described in claim 7, characterized in that: The right side of the clamping part (83) is a sloping structure.

9. The prefabricated assembled steel-concrete component installation device as described in claim 8, characterized in that: The bottom of the locking element (92) is equipped with a pull ring for easy pulling.

Citation Information

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