Lifting equipment for mounting ultra-large glass

By designing a super-large glass installation lifting equipment including cranes, box and multi-stage hydraulic rods, the problem of uncertainty in the position of the electric suction cup is solved, and the convenient positioning and efficient installation of the glass plate is achieved.

CN119929642APending Publication Date: 2025-05-06CHINA CONSTR FIFTH ENG DIV CORP LTD
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Patent Information

Application Number
CN202510419729.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

When installing large glass plates, the position and angle of the electric suction cups are uncertain, resulting in manual cumbersome adjustments to align the electric suction cups with the positive center of the glass plate, which is inefficient.

Method used

Design a lifting equipment for ultra-large glass installation, including cranes, box bodies, L-shaped columns, square discs, multi-stage hydraulic rods, push plates, bearing blocks, connecting plates and electric suction cups. By fine-tuning the position of the connecting plate, the entire electric suction cup is aligned with the center of the glass plate, simplifying the positioning operation.

Benefits of technology

It realizes convenient alignment between the electric suction cup and the center of the glass plate, improves installation efficiency, avoids positioning errors, and optimizes the transportation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of glass installation, in particular to an ultra-large glass installation lifting device which comprises an L-shaped column, a square disc, a multi-stage hydraulic rod, a push plate, a first bearing block, a first connecting plate, a second connecting plate, an electric rotating shaft, a first connecting block, an electric suction cup and a plug pin. L-shaped columns are fixedly connected to four right angles of the box body; a plurality of square plates are arranged on the upper side of the box body in a stacked mode, and the square plates are located in a space defined by all the L-shaped columns. A plurality of multi-stage hydraulic rods are fixedly connected to the inner side of the box body; in the hoisting process, only the position of the first connecting plate needs to be manually finely adjusted to move the first connecting plate into the positioning groove of the first bearing block, then the electric suction cup can be aligned with the center position of each glass piece, and compared with the mode that the electric suction cup manually controlled to shake is attached to the center position of the glass piece, the positioning operation is more convenient, and positioning errors can be avoided; and besides the crane, the parts of the device can be used as a goods shelf for storing the glass pieces, so that the transportation process is optimized.
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Description

Technical Field

[0001] The present invention relates to the technical field of glass installation, and more specifically, to a lifting device for installing super-large glass. Background Art

[0002] When installing a large glass plate, first fix the electric suction cup on the hook of the crane, then use the crane to lift the electric suction cup to the top of the glass plate, then use the electric suction cup to fix the glass plate, and then use the crane and the electric suction cup to lift the glass plate for installation. To ensure the stability of the glass plate lifting process and facilitate the positioning operation during installation, the electric suction cup should be sucked tightly to the center of the glass plate. However, when the crane lifts the electric suction cup to the top of the glass plate, since the electric suction cup is only fixed at the end of the crane rope, there is a large uncertainty in its position and angle. At this time, the position of the electric suction cup needs to be manually adjusted to align the electric suction cup with the center of the glass plate before the suction operation is performed. The operation process is cumbersome and inefficient.

[0003] In summary, the present application proposes a lifting device for installing super-large glass to improve the technical problems mentioned above. Summary of the invention

[0004] In order to overcome the shortcomings of the prior art in which the electric suction cup is only fixed to the end of the crane rope, resulting in position and angle uncertainty, as well as cumbersome manual adjustment operations and low efficiency, the present invention provides a lifting device for installing super-large glass. Technical Solution

[0005] A lifting device for installing super-large glass, comprising a crane and a box; the box is arranged on the side of the crane; it also comprises an L-shaped column, a square plate, a multi-stage hydraulic rod, a push plate, a receiving block 1, a connecting plate 1, a connecting plate 2, an electric shaft, a connecting block 1, an electric suction cup and a latch; an L-shaped column is fixedly connected at each of the four right angles of the box; a plurality of square plates are stacked on the upper side of the box, and the square plates are located in the space surrounded by all the L-shaped columns; a plurality of multi-stage hydraulic rods distributed in a rectangular shape are fixedly connected to the inner side of the box; the telescopic ends of all the multi-stage hydraulic rods are fixedly connected to the push plate, and the push plate is fixedly connected to the box The push plate contacts the square plate at the bottom; a receiving block 1 is fixedly connected to both ends of the length direction of the box body; a positioning groove is provided on the receiving block 1; a connecting plate 1 is commonly supported on all the receiving blocks 1, and the end of the connecting plate 1 is located in the positioning groove; a connecting plate 2 is fixedly connected to the connecting plate 1; an electric rotating shaft is installed on the connecting plate 2; a connecting block 1 is fixedly connected to the movable part of the electric rotating shaft, and a round hole is provided at the end of the connecting block 1; a number of electric suction cups are fixedly connected to the connecting plate 1; a number of pins are slidably connected to each receiving block 1, and the pins are pluggable and connected to the connecting plate 1.

[0006] More preferably, the lifting device for installing super-large glass further comprises a connecting block 2; each receiving block 1 is fixedly connected to a connecting block 2; and a circular hole is formed in the connecting block 2.

[0007] More preferably, the above-mentioned lifting equipment for installing super-large glass also includes a protection component, which includes a sponge disk and a sponge board; a sponge disk is connected to the inner side of each square disk; and a sponge board is fixed to the lower side of each square disk.

[0008] More preferably, the above-mentioned lifting equipment for installing super-large glass also includes a positioning component, which includes a telescopic hydraulic rod, a connecting plate three and a push block; each square plate is provided with a plurality of grooves one; each sponge plate is provided with a plurality of grooves two, which are aligned with the corresponding grooves one; each L-shaped column is fixedly connected with a plurality of telescopic hydraulic rods; a connecting plate three is provided on each of the four sides of the top square plate, and the connecting plate three is fixedly connected with the telescopic end of the corresponding telescopic hydraulic rod; each connecting plate three is fixedly connected with a plurality of push blocks, which are aligned with the corresponding grooves one.

[0009] More preferably, in the above-mentioned lifting device for installing super-large glass, a rubber pad is provided on one side of the push block close to the square plate.

[0010] More preferably, the above-mentioned lifting equipment for installing super-large glass further includes a connecting block three; a plurality of connecting blocks three are fixedly connected to each L-shaped column, and the connecting block three is slidably connected to the corresponding connecting plate three.

[0011] More preferably, the lifting device for installing super-large glass further comprises a receiving block 2; a plurality of receiving blocks 2 are fixedly connected to the side surface of the topmost square plate, and the upper side surface of the receiving block 2 is aligned with the bottom of the corresponding groove 1.

[0012] More preferably, in the above-mentioned lifting equipment for installing super-large glass, the inner side surface of the L-shaped column is set to a smooth surface.

[0013] More preferably, in the above-mentioned lifting device for installing super-large glass, an oblique angle is provided on the receiving block.

[0014] More preferably, in the above-mentioned lifting equipment for installing super-large glass, the sponge plate is detachably connected to the inner side of the square plate.

[0015] Compared with the prior art, the present invention has the following advantages: 1. During the hoisting process, the operator only needs to fine-tune the position of the connecting plate 1 to move the connecting plate 1 into the positioning groove of the receiving block 1, so that the electric suction cup can be aligned with the center position of each glass piece. Compared with manually controlling the shaking electric suction cup to fit the center position of the glass piece, this positioning operation is more convenient and can avoid positioning errors. In addition, the parts other than the crane of this device can also be used as a cargo rack to store glass pieces, optimizing the transportation process; Second, the position of the glass piece can be fine-tuned by pushing the block, avoiding the problem of inaccurate positioning of the glass piece and damage to the sponge plate; 3. The push block used for correcting the position of the glass piece can also be used to protect the glass piece. At the same time, by adding the second receiving block, when the push block locks the glass piece, the rubber pad at its end does not participate in the glass piece buffering operation, so that the sponge plate can fully buffer the glass piece to ensure the protection effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 The structural schematic diagram of the lifting device for installing super-large glass of the present invention is shown; Figure 2 The schematic diagram of the structure of the box body, L-shaped column and square plate of the present invention is shown; Figure 3 The structural schematic diagram of the connecting block 2 of the present invention is shown; Figure 4 A schematic diagram showing the structure of a multi-stage hydraulic rod and a push plate of the present invention is shown; Figure 5 A schematic diagram of the structure of the protection component of the present invention is shown; Figure 6 An exploded view of the protection assembly of the present invention is shown; Figure 7 The structural schematic diagram of the receiving block 2 of the present invention is shown; Figure 8 The schematic diagram of the structure of the connection block three of the present invention is shown.

[0017] The markings of the components in the accompanying drawings are as follows: 1-crane, 2-box, 3-L-shaped column, 4-square plate, 5-multi-stage hydraulic rod, 6-push plate, 7-support block one, 8-connecting plate one, 9-connecting plate two, 10-electric shaft, 11-connecting block one, 12-electric suction cup, 13-latch, 14-glass part, 201-connecting block two, 202-sponge plate, 203-sponge plate, 204-telescopic hydraulic rod, 205-connecting plate three, 206-push block, 207-connecting block three, 208-supporting block two, 91-groove one, 92-groove two. DETAILED DESCRIPTION

[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. Example

[0019] A lifting device for installing super large glass, such as Figure 1-Figure 5 As shown, it includes a crane 1 and a box body 2; a box body 2 is arranged on the side of the crane 1, and the box body 2 is set to be made of alloy; it also includes an L-shaped column 3, a square plate 4, a multi-stage hydraulic rod 5, a push plate 6, a receiving block 7, a connecting plate 8, a connecting plate 9, an electric shaft 10, a connecting block 11, an electric suction cup 12 and a latch 13; an L-shaped column 3 is welded at four right angles of the box body 2; four square plates 4 are stacked on the upper side of the box body 2, and the square plates 4 are located between all the L-shaped columns 3; four multi-stage hydraulic rods 5 distributed in a rectangular shape are bolted to the inside of the box body 2; the telescopic ends of all the multi-stage hydraulic rods 5 are commonly fixed with a push plate 6, the push plate 6 is in contact with the box body 2, and the push plate 6 is in contact with the square plate 4 at the bottom; the length of the box body 2 is square A receiving block 7 is welded at both ends; a positioning groove is provided on the receiving block 7; a connecting plate 8 is supported on all the receiving blocks 7, and the end of the connecting plate 8 is located in the positioning groove, and the connecting plate 8 is positioned by the positioning groove on the receiving block 7; a connecting plate 29 is fixedly connected to the connecting plate 8; an electric shaft 10 is installed on the connecting plate 29; a connecting block 11 is fixedly connected to the movable part of the electric shaft 10, and a round hole is provided at the end of the connecting block 11; a number of electric suction cups 12 are bolted to the connecting plate 8; two latches 13 are slidably connected to each receiving block 7, and the latches 13 are pluggable and connected to the connecting plate 8, and the connecting plate 8 is fixed to the receiving block 7 by the latches 13.

[0020] It also includes a second connecting block 201; each receiving block 7 is welded with a second connecting block 201; and a round hole is opened on the second connecting block 201.

[0021] It also includes a protection component, which includes a sponge plate 202 and a sponge board 203; a sponge plate 202 is connected to the inner side of each square plate 4; a sponge board 203 is fixed to the lower side of each square plate 4, and the sponge plate 202 and the sponge board 203 are used to protect the glass member 14.

[0022] During loading, the box 2 and the parts thereon are placed on the ground, the latch 13 is pulled out to release the fixation of the connecting plate 8, and then the sling of the crane 1 is fixed to the round hole of the connecting block 11, and then the electric shaft 10 drives the connecting block 11 to rotate, so that the connecting block 11 stands vertically, and then the connecting block 11 and the parts thereon are driven upward by the crane 1 to move away from the top of the square plate 4, and then the three upper square plates 4 are manually taken out, and the square plate 4 drives the sponge plate 202 and the sponge board 203 to move, so that the corresponding sponge plates 202 and sponge boards 203 are taken out, and then the glass piece 14 is placed on the sponge plate 202 of the lowest square plate 4 through the external conveying mechanism, and then another square plate 4 is manually placed into the inner side of the four L-shaped columns 3, and it is received on the upper side of the lowest square plate 4, and then through The external conveying mechanism places another glass piece 14 in the second square plate 4 from bottom to top, and receives it in the corresponding sponge plate 202, and repeats the above steps to complete the loading of four glass pieces 14. Then, the crane 1 drives the connecting block 11 and the parts thereon to move, so that the connecting plate 8 is re-placed in the positioning groove of the receiving block 7, and then the pin 13 is inserted back into its original position to fix the connecting plate 8. Then, the electric shaft 10 drives the connecting block 11 to rotate, so that the connecting block 11 is flipped to a horizontal state, and then the lifting device of the crane 1 is manually removed from the connecting block 11, and the lifting device of the crane 1 is fixed to the round hole of the connecting block 201, and then the connecting block 201 and the parts thereon are lifted to the transport vehicle by the crane 1, and then the lifting device of the crane 1 is removed from the connecting block 201 to complete the loading operation.

[0023] After being transported to the installation site, the circular hole of the connecting block 201 is connected and fixed to the crane 1 lifting device, and the connecting block 201 and the parts thereon are lifted to the ground by the crane 1, and then the latch 13 is manually pulled out of the connecting plate 1 8, so that the latch 13 stops fixing the connecting plate 1 8, and then the lifting device of the crane 1 is removed from the connecting block 201, and then the lifting device of the crane 1 is fixed to the circular hole of the connecting block 11, and the multi-stage hydraulic rod 5 drives the push plate 6 to move upward, so that the push plate 6 pushes all the square plates 4 to move upward, and the square plates 4 drive the glass pieces 14 to move upward, so that the glass pieces 14 are in close contact with the lower side of the electric suction cup 12, and then the electric suction cup 12 is pressed by negative pressure. The glass piece 14 is sucked tightly, and then the electric shaft 10 drives the connecting block 11 to rotate, so that the connecting block 11 stands vertically, and then the crane 1 drives the connecting block 11 and the parts thereon to move upward, so that the electric suction cup 12 drives the glass piece 14 to move upward. When the glass piece 14 moves to the mid-air away from the square plate 4, the electric shaft 10 controls the connecting plate 18 to move to a vertical state, and the connecting plate 18 drives the electric suction cup 12 and the glass piece 14 to move, so that the glass piece 14 moves to a vertical standing posture, and then the crane 1 controls the glass piece 14 to move to the installation position, and the glass piece 14 is installed manually. During the installation process, The square plate 4, sponge plate 202 and sponge board 203 at the top are taken out by assistants, so that the second glass piece 14 is exposed. After the glass piece 14 is manually installed on the building, the electric suction cup 12 stops sucking the glass piece 14, and then the crane 1 drives the connecting block 11 and the parts thereon to move to just above the second glass piece 14, and the connecting plate 8 is controlled to move back to a horizontal state by the electric shaft 10, and then the crane 1 drives the connecting block 11 and the parts thereon to move downward, so that the connecting plate 8 moves downward, and at this time, the position of the connecting plate 8 is finely adjusted manually, so that the connecting plate 8 is re-stuck in the positioning groove of the receiving block 7. , so that the connecting plate 18 is aligned with the middle part of the upper side of the second glass piece 14, so that the whole formed by all the electric suction cups 12 is aligned with the middle part of the upper side of the glass piece 14, and the positioning operation is completed. Compared with the manually controlled shaking electric suction cup 12 fitting the center position of the glass piece 14, this positioning operation is more convenient, and then all the square plates 4 are pushed upward by the multi-stage hydraulic rod 5, and the square plates 4 drive the second glass piece 14 to move upward, so that the second glass piece 14 contacts the electric suction cup 12, and then all the electric suction cups 12 simultaneously suck the middle part of the upper side of the second glass piece 14, repeat the above operation, and install the second glass piece 14.

[0024] When the glass pieces 14 are transported from the factory to the construction site, the glass pieces 14 are manually placed on the square plate 4, and the square plate 4, the sponge plate 202 and the sponge board 203 cooperate to separate and cover the upper and lower adjacent glass pieces 14. When the latch 13 fixes the connecting plate 8 and the parts thereon to the receiving block 7, the electric suction cup 12 can limit the uppermost glass piece 14, so that all the square plates 4 and the glass pieces 14 are locked in the frame composed of the box body 2 and the L-shaped column 3, so that each glass piece 14 is The box body 2 and the parts thereon are fixed, and then placed on a transport vehicle. After being transported to the construction site, the lifting device of the crane 1 is manually fixed on the connecting block 201, and the connecting block 201 and the parts thereon are lifted to the ground by the crane 1. In this process, only one lifting is required to unload all the glass pieces 14 on the transport vehicle, thereby optimizing the unloading process and improving the turnover efficiency of the transport vehicle, which is beneficial to improving efficiency. That is, the parts other than the crane 1 of the device can also be used as a cargo rack to store glass pieces 14, thereby optimizing the transportation process.

[0025] In summary: during the lifting process, the person only needs to fine-tune the position of the connecting plate 8 to move the connecting plate 8 into the positioning groove of the receiving block 7, so that the electric suction cup 12 can be aligned with the center position of each glass piece 14 as a whole. Compared with the manually controlled shaking of the electric suction cup 12 to fit the center position of the glass piece 14, this positioning method is easy to operate and has accurate positioning. In addition, the parts other than the crane 1 of the device can also be used as a cargo rack to store glass pieces 14, thereby optimizing the transportation process. Example

[0026] On the basis of Example 1, Figure 5-Figure 8 As shown, it also includes a positioning component, which includes a telescopic hydraulic rod 204, a connecting plate three 205 and a push block 206; each square plate 4 is provided with a plurality of grooves 91; each sponge plate 202 is provided with a plurality of grooves 92, and the grooves 92 are aligned with the corresponding grooves 91; each L-shaped column 3 is bolted with a plurality of telescopic hydraulic rods 204; a connecting plate three 205 is provided on each of the four sides of the top square plate 4, and the connecting plate three 205 is fixedly connected to the telescopic end of the corresponding telescopic hydraulic rod 204, and the connecting plate three 205 is set to an alloy material; each connecting plate three 205 is welded with a plurality of push blocks 206, and the push blocks 206 are aligned with the corresponding grooves 91, and the glass member 14 is pushed to move by the push blocks 206.

[0027] A rubber pad is provided on one side of the push block 206 close to the square plate 4. When the push block 206 pushes the glass piece 14 to move, the rubber pad on the push block 206 contacts the glass piece 14 to prevent the glass piece 14 from being crushed.

[0028] When transporting the glass piece 14, the inertial force generated by the acceleration and deceleration of the vehicle during transportation will cause the glass piece 14 to deviate and squeeze the vertical edge of the sponge plate 202, causing the glass piece 14 to no longer be located at the center position of the square plate 4, thereby causing a certain deviation between the center position of the electric suction cup 12 and the glass piece 14 after the connecting plate 8 is inserted into the positioning groove of the receiving block 7, causing interference with the positioning operation. Because the height of the vertical edge of the sponge plate 202 exceeds the thickness of the glass piece 14, and its outer side is in contact with the hard square plate 4, after the glass piece 14 squeezes the lower side of the vertical edge of the sponge plate 202, the thickness of the lower side of the vertical edge of the sponge plate 202 is reduced, while the upper side of the vertical edge of the sponge plate 202 is not squeezed and its thickness does not change, thereby causing the edge of the glass piece 14 to sink into the lower side of the vertical edge of the sponge plate 202, that is, the upper side of the vertical edge of the sponge plate 202 will exceed the upper edge of the glass piece 14. If the glass piece 14 is directly lifted upward, the edge of the glass piece 14 will act as a shear on the upper side of the vertical edge of the sponge plate 202 Shear force increases the risk of damage to the sponge plate 202, resulting in a decrease in its service life. Therefore, after the connecting plate 1 8 is inserted into the positioning groove of the receiving block 1 7, all the square plates 4 are pushed upward by the multi-stage hydraulic rod 5 and the push plate 6, so that the groove 1 91 on the top square plate 4 is aligned with the push block 206. Then, the telescopic hydraulic rod 204 drives the connecting plate 3 205 to move, and the connecting plate 3 205 drives the push block 206 to move, so that the push block 206 moves to the inner side of the groove 1 91 and the groove 2 92 and contacts the side of the glass piece 14. Then, the push block 206 pushes the glass piece 14 to move and pushes the glass piece 14 to the center of the square plate 4. At this time, the glass piece 14 no longer squeezes the sponge plate 202, and the vertical side of the sponge plate 202 no longer exceeds the upper edge of the glass piece 14. Then, the electric suction cup 12 sucks the glass piece 14 tightly and drives it to move upward, which not only ensures the positioning accuracy, but also prevents the sponge plate 202 from being damaged and extends its service life.

[0029] In summary, the position of the glass piece 14 is finely adjusted by the push block 206 , thereby avoiding the problems of inaccurate positioning of the glass piece 14 and damage to the sponge plate 202 . Example

[0030] On the basis of Example 2, Figure 7 and Figure 8 As shown, it also includes a connection block three 207; each L-shaped column 3 is bolted with two connection blocks three 207, and the connection block three 207 is slidably connected to the corresponding connection plate three 205.

[0031] A receiving block 208 is also included; a plurality of receiving blocks 208 are welded to the side of the top square plate 4, and the upper side of the receiving block 208 is aligned with the bottom of the corresponding groove 91.

[0032] The inner side surface of the L-shaped column 3 is set to be a smooth surface.

[0033] The receiving block 7 is provided with an oblique angle, so that the end of the connecting plate 8 is more easily inserted into the positioning groove of the receiving block 7.

[0034] The sponge plate 202 is detachably connected to the inner side of the square plate 4 so as to facilitate replacement of a damaged sponge plate 202 .

[0035] When severe vibration occurs during transportation, the vibration of the three glass pieces 14 at the bottom will squeeze the sponge plate 202 and the sponge board 203, and the three glass pieces 14 at the bottom will be protected by the sponge plate 202 and the sponge board 203. The top glass piece 14 will also vibrate and squeeze the sponge plate 202 and the electric suction cup 12 at the top, and the top glass piece 14 will be protected by the sponge plate 202 and the electric suction cup 12. When vibrated, all square plates 4 and glass pieces 14 will tend to move upward, and the impact force generated by the lower square plate 4 will be transmitted between layers to act on the upper square plate 4, so that the three glass pieces 14 at the bottom will not be squeezed by the square plate 4, and the uppermost square plate 4 will exert the squeezing force on the uppermost glass piece 14, that is, during the vibration process, the impact force generated by the vibration will be progressively transmitted between the layers, and the top layer The combined force borne by the glass piece 14 is the largest, resulting in the risk of damage to the top glass piece 14. Therefore, the telescopic hydraulic rod 204 is started, and the telescopic hydraulic rod 204 drives the connecting plate three 205 to slide on the connecting block three 207. The connecting plate three 205 drives the push block 206 to move, so that the end of the push block 206 moves into the groove 1 91, and the lower side of the push block 206 contacts the inner bottom surface of the groove 1 91, so that all the square plates 4 are locked by the cooperation of the push block 206, the box body 2 and the L-shaped column 3. When severe vibration occurs during transportation, the three square plates 4 and the glass piece 14 at the bottom will tend to move upward, and the extrusion force will act on the push block 206, and the top glass piece 14 will no longer be squeezed, which is beneficial to protecting the glass piece 14. That is, the push block 206 used to correct the position of the glass piece 14 can also be used to protect the glass piece 14.

[0036] When the square plate 4 is locked by the push block 206, in order to provide sufficient locking force, the position other than the rubber pad on the push block 206 should be in contact with the square plate 4, which will cause the position of the rubber pad on the push block 206 to move into the groove 292 of the sponge plate 202. When the glass piece 14 deviates due to inertia, it will squeeze the sponge plate 202 and the rubber pad at the end of the push block 206. Since the elasticity of the rubber pad at the end of the push block 206 is much smaller than that of the sponge plate 202, when the glass piece 14 squeezes the rubber pad on the push block 206 to the limit value, the sponge plate 202 is only slightly deformed, and After the glass piece 14 squeezes the rubber pad to the limit, it cannot move further, which causes the buffering protection function of the sponge plate 202 to the glass piece 14 to be greatly reduced. Therefore, a receiving block 208 is set on the top square plate 4. During the locking operation, the position other than the rubber pad on the push block 206 contacts the receiving block 208. Through the cooperation between the push block 206 and the receiving block 208, all the square plates 4 are locked. At this time, the rubber pad at the end of the push block 206 is located in the groove 1 91 and no longer participates in the buffering operation of the glass piece 14, ensuring that the sponge plate 202 can fully exert its buffering effect to ensure the protection effect.

[0037] In summary: the push block 206 used to correct the position of the glass piece 14 can also be used to protect the glass piece 14. At the same time, by adding a second receiving block 208, when the push block 206 locks the glass piece 14, the rubber pad at its end does not participate in the buffering operation of the glass piece 14, ensuring that the sponge plate 202 can fully play a buffering role to ensure the protection effect.

[0038] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A lifting device for installing super-large glass, comprising a crane (1); a box (2) is arranged on the side of the crane (1); wherein: An L-shaped column (3) is fixedly connected to each of the four right angles of the box body (2); a plurality of square plates (4) are stacked on the upper side of the box body (2), and the square plates (4) are located between all the L-shaped columns (3); a plurality of multi-stage hydraulic rods (5) distributed in a rectangular shape are fixedly connected to the inner side of the box body (2); a push plate (6) is fixedly connected to the telescopic ends of all the multi-stage hydraulic rods (5), the push plate (6) is in contact with the box body (2), and the push plate (6) is in contact with the bottom square plate (4); a receiving block (7) is fixedly connected to each of the two ends of the box body (2) in the length direction; a positioning groove is provided on the receiving block (7); All the receiving blocks (7) support a connecting plate (8) together, and the end of the connecting plate (8) is located in the positioning groove; the connecting plate (8) is fixedly connected to the connecting plate (9); the connecting plate (9) is equipped with an electric rotating shaft (10); the movable part of the electric rotating shaft (10) is fixedly connected to the connecting block (11), and a round hole is opened at the end of the connecting block (11); a plurality of electric suction cups (12) are fixedly connected to the connecting plate (8); each receiving block (7) is slidably connected to a plurality of latches (13), and the latches (13) are pluggably connected to the connecting plate (8).

2. The lifting equipment for installing super large glass according to claim 1 is characterized in that: It also includes a second connecting block (201); each receiving block (7) is fixedly connected to a second connecting block (201); and a circular hole is opened on the second connecting block (201).

3. The lifting equipment for installing super large glass according to claim 2 is characterized in that: It also includes a protection component, which includes a sponge disc (202) and a sponge board (203); the inner side of each square disc (4) is connected to a sponge disc (202); and the lower side of each square disc (4) is fixedly connected to a sponge board (203).

4. The lifting equipment for installing super large glass according to claim 3 is characterized in that: The apparatus further comprises a positioning assembly, which comprises a telescopic hydraulic rod (204), a connecting plate three (205) and a push block (206); each square plate (4) is provided with a plurality of grooves one (91); each sponge plate (202) is provided with a plurality of grooves two (92), which correspond to and align with the grooves one (91) one by one; each L-shaped column (3) is fixedly connected with a plurality of telescopic hydraulic rods (204); a connecting plate three (205) is provided on each of the four side surfaces of the uppermost square plate (4), and the connecting plate three (205) is fixedly connected with the telescopic end of the corresponding telescopic hydraulic rod (204); each connecting plate three (205) is fixedly connected with a plurality of push blocks (206), and the push blocks (206) are aligned with the corresponding grooves one (91).

5. The lifting equipment for installing super large glass according to claim 4 is characterized in that: A rubber pad is provided on one side of the push block (206) close to the square plate (4).

6. The lifting equipment for installing super large glass according to claim 5 is characterized in that: It also includes a connection block three (207); a plurality of connection blocks three (207) are fixedly connected to each L-shaped column (3), and the connection block three (207) is slidably connected to the corresponding connection plate three (205).

7. The lifting equipment for installing super large glass according to claim 6 is characterized in that: It also includes receiving blocks 2 (208); a plurality of receiving blocks 2 (208) are fixedly connected to the side of the top square plate (4), and the upper side of the receiving blocks 2 (208) is aligned with the bottom of the corresponding groove 1 (91).

8. The lifting equipment for installing super large glass according to claim 7 is characterized in that: The inner side surface of the L-shaped column (3) is configured as a smooth surface.

9. The lifting equipment for installing super large glass according to claim 7 is characterized in that: The receiving block 1 (7) is provided with an oblique angle.

10. The lifting equipment for installing super large glass according to any one of claims 3 to 9, characterized in that: The sponge plate (202) is detachably connected to the inner side of the square plate (4).