Quick lifting device for autoclaved aerated concrete blocks

By designing new cage plates and fast lifting mechanisms, the problems of insufficient structural stability and loss of characteristics in the transportation of traditional autoclaved aerated concrete blocks are solved, and efficient and stable rapid lifting and multi-scene adaptation are achieved.

CN119976591AActive Publication Date: 2025-05-13XIANGYANG HUABI NEW BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202510417845.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-05-13
Estimated Expiration
2045-04-03

AI Technical Summary

Technical Problem

Traditional autoclaved aerated concrete blocks are difficult to carry out rapid lifting due to insufficient structural stability during transportation, and some characteristics are lost due to water infiltration during sea transportation, resulting in loss.

Method used

A quick lifting device for autoclaved aerated concrete blocks including a new cage plate and a new fast lifting mechanism was designed. The new cage plate has hollow hanging holes and side reinforcement plate mechanisms. The new fast lifting mechanism adopts hollow bracket plates, flexible suction cup nozzles and hydraulic retraction mechanisms to achieve stable lifting through mechanical structures.

Benefits of technology

This device improves the transportation stability and waterproofing effect of autoclaved aerated concrete blocks, reduces losses during transportation, and realizes the adaptability of rapid lifting and multiple lifting scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an autoclaved aerated concrete block rapid lifting device which comprises a novel lifting cage plate and a novel rapid lifting mechanism, a plurality of hollow hanging holes are formed in the novel lifting cage plate, a first rubber pad is fixedly mounted at the top of the novel lifting cage plate, and a first steel belt limiting frame is fixedly mounted at the bottom of the novel lifting cage plate; through the arranged jacking and hoisting mechanism, when the jacking and hoisting mechanism drives the connecting rod to move upwards, loosening attachment of the lifting hook to the n-shaped hook is changed into gradual tensioning, so that stable equal-force hanging is conducted on the multiple pieces of connecting angle steel, the acting force is in place along with continuous stretching of a hydraulic telescopic column, a jacking limiting plate and a limiting sliding frame, and the stable acting effect is achieved; the whole body is a pure mechanical mechanism, the service life is long, the operation is simple, self-locking can be realized by putting down, hanging and lifting, unlocking can be realized by putting down during lifting, the unlocking process is reduced, the stability is improved, meanwhile, rapid lifting can be realized, and the use effect is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of port container lifting and hoisting equipment, in particular to a rapid lifting device for autoclaved aerated concrete blocks. Background Art

[0002] Autoclaved aerated concrete blocks are a kind of lightweight porous building materials made of siliceous and calcareous materials through autoclaving and curing. They have the characteristics of heat preservation, sound insulation and environmental protection. They are widely used in non-load-bearing structures of buildings. During transportation, attention should be paid to moisture-proof, stacking stability and container adaptation. Port container cranes are the core equipment of port logistics. They are mainly divided into shore container cranes (quay cranes) and yard container cranes (yard cranes). They are used for container loading and unloading operations between ships and docks, yards and transport vehicles. Its characteristics include: wide lifting weight range, wide operating range (covering the entire ship's cabin and multiple rows of container areas in the yard), high degree of automation (equipped with remote control, AGV collaboration and other intelligent systems), and electric drive to reduce energy consumption and pollution. Modern models also have fast response (such as double 40-foot spreaders), high-precision positioning (±5mm) and real-time data monitoring functions, which significantly improve port throughput efficiency and safety.

[0003] Autoclaved aerated concrete blocks are widely used in various constructions as a lightweight and high-strength building material. During the export transportation, autoclaved aerated concrete blocks need to be shipped overseas by sea. Traditional autoclaved aerated concrete blocks are stacked on traditional pallets during transportation, but due to insufficient structural stability, they are difficult to lift quickly and are difficult to reinforce when packing. In addition, autoclaved aerated concrete blocks will lose some of their properties due to water infiltration during sea transportation, resulting in losses. Traditional hoisting cages cannot be improved according to the different stacking requirements of autoclaved aerated concrete blocks, resulting in certain inconveniences. Based on this, a rapid lifting device for autoclaved aerated concrete blocks is proposed. Summary of the invention

[0004] The object of the present invention is to provide a rapid lifting device for autoclaved aerated concrete blocks to solve the problems raised in the above-mentioned background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a rapid lifting device for autoclaved aerated concrete blocks, comprising a new type of lifting cage plate and a new type of rapid lifting mechanism, the new type of lifting cage plate is provided with a plurality of hollow hanging holes inside, a rubber pad is fixedly installed on the top of the new type of lifting cage plate, a steel belt limiting frame is fixedly installed on the bottom of the new type of lifting cage plate, a plurality of side reinforcement plate mechanisms are movably installed on the outer side of the new type of lifting cage plate, a top fixing plate is movably installed on the opposite side of the top of the side reinforcement plate mechanism, a steel belt limiting frame is fixedly installed on the top of the top fixing plate, a rubber pad is fixedly installed on the bottom of the top fixing plate, a plurality of limiting plug plates are fixedly installed on the top of the top fixing plate, and a tray mechanism is fixedly installed on the bottom of the new type of lifting cage plate by bolts.

[0006] The novel rapid lifting mechanism comprises a hollow support plate, a limited position frame groove is provided at the bottom of the hollow support plate, a plurality of support tubes are connected to the bottom of the hollow support plate, a flexible suction cup mouth is fixedly installed at the bottom of the support tube, a plurality of magnetic inner pillars are fixedly installed inside the hollow support plate, four groups of hydraulic retraction mechanisms are movably installed on the outside of the novel rapid lifting mechanism, a stabilizing mechanism is connected to the top of the stabilizing mechanism, and a top lifting mechanism is fixedly installed on the top of the stabilizing mechanism.

[0007] Preferably, the side reinforcement plate mechanism includes a connecting angle steel, the outer side of the connecting angle steel is provided with a plurality of steel belt limiting grooves, a connecting piece is fixedly installed on the inner side of the bottom end of the connecting angle steel, the end of the connecting piece away from the connecting angle steel is hinged with a hinge seat 1, the hinge seat 1 is fixedly installed on the bottom of the new cage plate, a plurality of "J"-shaped hooks are fixedly installed on the outer side of the connecting angle steel, the steel belt limiting grooves and the "J"-shaped hooks are linearly staggered and evenly distributed on the outer side of the connecting angle steel, a rubber corner pad is fixedly installed on the inner side of the connecting angle steel, a limit pin is movably inserted at the top of the connecting angle steel, and the limit pin is movably inserted through the interior of the limit plug plate.

[0008] Preferably, the number of the limiting plug plates corresponds to the number of the connecting angle steels, and the number specifications of the connecting angle steels are divided into four, six and eight.

[0009] Preferably, the pallet mechanism comprises a plurality of pallet support plates, a plurality of pallet plates are fixedly installed on the top of the pallet support plates, a plurality of groups of limit support blocks are fixedly installed on the top of the pallet plates, a limit support is fixedly installed on the top of the pallet plates, the specifications and dimensions of the limit support blocks and the limit support are matched with the specifications and dimensions of the steel belt limit frame 1, a plurality of wedge block grooves are opened on the bottom of the pallet support plates, a plurality of reinforcing bolts are movably inserted inside the pallet plates, the reinforcing bolts movably pass through the limit supports and are threadedly connected to the inside of the hollow hanging holes, and the specifications and dimensions of the steel belt limit frame 1 are matched with the specifications and dimensions of the steel belt limit frame 2.

[0010] Preferably, the inner pillars of the magnet are evenly distributed in a circular linear manner inside the hollow support plate, the specifications and dimensions of the limit frame groove are compatible with the specifications and dimensions of the rubber pad 1, the support tube and the flexible suction cup mouth are evenly distributed in a rectangular linear manner at the bottom of the hollow support plate, and four hinged seats 2 are fixed to the outside of the hollow support plate.

[0011] Preferably, the stabilizing mechanism comprises a plurality of limit springs, a gas spring telescopic rod and a telescopic outer cylinder, the top of the limit spring is fixedly mounted with a support plate, the bottom of the telescopic outer cylinder is connected to the top of a hollow support plate, a sealing piston 2 is movably sleeved inside the telescopic outer cylinder, a movable inner column is fixedly mounted on the top of the sealing piston 2, the top of the movable inner column is fixedly mounted on the bottom of the support plate, and the movable inner column is movably sleeved inside the telescopic outer cylinder.

[0012] Preferably, the bottom of the limit spring is fixedly mounted on the top of the hollow support plate, the top end of the gas spring telescopic rod is hingedly mounted on the top of the support plate, the bottom of the gas spring telescopic rod is hingedly mounted on the top of the hollow support plate, the position of the limit spring corresponds to the position of the gas spring telescopic rod, and the limit spring and the gas spring telescopic rod are evenly distributed in a circle on opposite sides of the support plate and the hollow support plate.

[0013] Preferably, the top hanging mechanism includes a bottom limit frame, the bottom limit frame is fixedly installed on the top of the support plate, the top of the bottom limit frame is fixedly installed with a top limit plate, the inner side of the top limit plate is movably sleeved with a limit sliding column, the bottom of the limit sliding column is fixedly installed with a limit sliding frame, the outer side of the limit sliding frame and the inner side of the bottom limit frame are movably staggered and sleeved, the top of the limit sliding column is fixedly installed with a top ring plate, the top of the top ring plate is fixedly installed with a plurality of plug-in plate frames, and the top of the top ring plate is fixedly installed with a lifting ring.

[0014] Preferably, the hydraulic retraction mechanism comprises four telescopic outer rods, and a plurality of hooks are fixedly installed on opposite sides of the four telescopic outer rods, and the hooks are linearly and evenly distributed on the inner side of the telescopic outer rods, and the specifications and sizes of the hooks are adapted to the specifications and sizes of the "X"-shaped hooks, and the bottoms of the four telescopic outer rods are fixedly installed with bottom limit seats, and the inner sides of the four telescopic outer rods are movably sleeved with sealing pistons 1, and the tops of the sealing pistons 1 are fixedly installed with telescopic inner columns, and the telescopic inner columns are movably sleeved on the inner sides of the telescopic outer rods, and the telescopic inner columns and the sealing pistons 1 are fixedly installed. A connecting oil passage is provided inside the sealing piston 1, the top end of the connecting oil passage is connected to a hydraulic oil pipe, the top end of the hydraulic oil pipe is connected to a hydraulic telescopic column, the fixing portion of the hydraulic telescopic column is fixedly installed on the top of the support plate, the telescopic end of the hydraulic telescopic column is fixedly installed with a connecting ring, a connecting rod is hinged on the opposite side of the connecting ring, the other end of the connecting rod is hinged on the outside of the limit sliding column, the top end of the telescopic inner column is hinged on the inner side of the hinge seat 2, and the connecting rods are evenly distributed on the opposite sides of the connecting ring and the limit sliding column in a circumferential manner.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. When the device is in use, the rainproof cloth is laid on the top of the new type of cage plate, and the autoclaved aerated concrete blocks are stacked on the inner side of the rainproof cloth, and the side reinforcing plate mechanism is closed to limit the autoclaved aerated concrete blocks, and then the autoclaved aerated concrete blocks are wrapped with the rainproof cloth, and then the top fixing plate is installed on the side reinforcing plate mechanism and the top of the stacking pile, and is transversely fixed to the outer side of the side reinforcing plate mechanism by the steel belt, and the vertical steel belt is passed through the steel belt limiting frame 1 and the steel belt limiting frame 2 for fixing. When the packaging is completed, the top lifting mechanism is connected by the lifting equipment, and the stacked side reinforcing plate mechanism and the top fixing plate are lifted to the container operation position by the new type of fast lifting mechanism and the hydraulic retraction mechanism. When loaded into the container, the bottom of the pallet mechanism is fixed by inserting the wedge block into the bottom, and the hollow hanging hole is hung and tightened by the tensioner, so as to fix it, so as to improve the waterproof and fastening effect as a whole, and increase the stability during transportation;

[0016] 2. Through the stabilizing mechanism, when the stabilizing mechanism is pulled up, the movable inner column moves up to drive the sealing piston 2 to move up, and the connecting position of the telescopic outer cylinder and the hollow support plate is sucked to form a negative pressure, thereby causing the hollow support plate and the support cylinder to adsorb the plane of the top fixing plate through the flexible suction cup mouth. The support plate and the movable inner column are kept in relative position by the limit spring and the gas spring telescopic rod. When the lifting operation force is released, the movable inner column and the sealing piston 2 are reset, thereby releasing the suction effect inside the hollow support plate. The overall structure adopts a mechanical structure, does not consume electricity, saves resources, and is convenient for use in a variety of lifting scenarios, with a good overall use effect;

[0017] 3. Through the set top hanging mechanism, when the top hanging mechanism drives the connecting rod to move upward, the telescopic outer rod and the hook are retracted, so that the hook changes the loose fit of the "J"-shaped hook to gradually tightened, so that multiple connecting angles are stably suspended with equal force. As the hydraulic telescopic column, the top limit plate and the limit slide continue to be stretched, the gradually stretched device stabilizing mechanism and the new rapid lifting mechanism realize air pressure adsorption on the top fixing plate, so as to achieve a stable effect. The whole is a pure mechanical mechanism with a long service life and simple operation. It can be self-locked by putting down, hanging up and lifting, and unlocked by lifting and putting down, which reduces the unlocking process, increases stability and realizes rapid lifting, and increases the effect of use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the front three-dimensional appearance structure of the new type of cage plate of the present invention.

[0019] Figure 2 It is a schematic diagram of the three-dimensional appearance structure of the new type of cage plate of the present invention when viewed from the rear and upward.

[0020] Figure 3 It is a schematic diagram of the front three-dimensional appearance structure of the novel rapid lifting mechanism of the present invention.

[0021] Figure 4 It is a schematic diagram of the three-dimensional appearance structure of the novel rapid lifting mechanism of the present invention when viewed from the rear or upward direction.

[0022] Figure 5 It is a front stereoscopic sectional structural schematic diagram of the novel rapid lifting mechanism of the present invention.

[0023] Figure 6 It is a schematic diagram of the front sectional structure of the novel cage plate of the present invention.

[0024] Figure 7 It is a schematic diagram of the cross-sectional structure of the novel cage plate of the present invention when viewed from above.

[0025] Figure 8 For the present invention Figure 1 Enlarged structural diagram at A in the middle.

[0026] Fig. 9 For the present invention Figure 2 Enlarged structural diagram at B in the middle.

[0027] Fig.10 For the present invention Figure 5 Enlarged structural diagram at point C in the middle.

[0028] Fig.11 For the present invention Figure 5 Enlarged structural diagram at D in the middle.

[0029] Fig.12 For the present invention Figure 5Enlarged structural diagram at E in the middle.

[0030] Fig.13 For the present invention Figure 6 Enlarged structural diagram at F in the middle.

[0031] In the figure: 1. New cage plate; 101. Hollow hanging hole; 102. Steel belt limit frame 1; 103. Rubber pad 1; 2. Side reinforcement plate mechanism; 201. Connecting angle steel; 202. Steel belt limit groove; 203. Cross-shaped hook; 204. Rubber corner pad; 205. Connector; 206. Articulated seat 1; 207. Limit pin; 3. Top fixing plate; 301. Steel belt limit frame 2; 302. Rubber pad 2; 303. Limit plug plate; 4. Pallet mechanism; 401. Pallet support plate; 402. Reinforcement bolt; 403. Wedge groove; 404. Pallet plate; 405. Limit support block; 406. Limit support; 5. New fast lifting mechanism; 501. Hollow support plate; 502. Articulated seat 2; 503. Limit frame groove; 504. Support tube; 505, flexible suction cup nozzle; 506, magnet inner pillar; 6, hydraulic retraction mechanism; 601, telescopic outer rod; 602, hook; 603, bottom limit seat; 604, telescopic inner column; 605, hydraulic oil pipe; 606, hydraulic telescopic column; 607, connecting ring; 608, connecting rod; 609, connecting oil channel; 610, sealing piston one; 7, top hanging mechanism; 701, top ring plate; 702, plug-in plate frame; 703, lifting ring; 704, limit sliding column; 705, top limit plate; 706, bottom limit frame; 707, limit sliding frame; 8, stabilizing mechanism; 801, support plate; 802, limit spring; 803, gas spring telescopic rod; 804, telescopic outer tube; 805, movable inner column; 806, sealing piston two. DETAILED DESCRIPTION

[0032] 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.

[0033] See also Figure 1-Figure 13The present invention provides a technical solution: a rapid lifting device for autoclaved aerated concrete blocks, comprising a novel hanging cage plate 1 and a novel rapid lifting mechanism 5, a plurality of hollow hanging holes 101 are opened inside the novel hanging cage plate 1, a rubber pad 103 is fixedly installed on the top of the novel hanging cage plate 1, a steel belt limiting frame 102 is fixedly installed on the bottom of the novel hanging cage plate 1, a plurality of side reinforcement plate mechanisms 2 are movably installed on the outer side of the novel hanging cage plate 1, a top fixing plate 3 is movably installed on the opposite side of the top of the side reinforcement plate mechanism 2, a steel belt limiting frame 301 is fixedly installed on the top of the top fixing plate 3, a rubber pad 302 is fixedly installed on the bottom of the top fixing plate 3, a plurality of limiting plug plates 303 are fixedly installed on the top of the top fixing plate 3, and a tray mechanism 4 is fixedly installed on the bottom of the novel hanging cage plate 1 by bolts.

[0034] The novel rapid lifting mechanism 5 comprises a hollow support plate 501, a limited position frame groove 503 is provided at the bottom of the hollow support plate 501, a plurality of support tubes 504 are connected to the bottom of the hollow support plate 501, a flexible suction cup mouth 505 is fixedly installed at the bottom of the support tube 504, a plurality of magnetic inner pillars 506 are fixedly installed inside the hollow support plate 501, four sets of hydraulic retraction mechanisms 6 are movably installed on the outer side of the novel rapid lifting mechanism 5, a stabilizing mechanism 8 is connected to the top of the stabilizing mechanism 8, and a top lifting mechanism 7 is fixedly installed on the top.

[0035] The working principle of the above technical solution: when in use, there are two operating methods, one is to lay the rainproof cloth on the top of the new cage plate 1, and stack the autoclaved aerated concrete blocks on the inner side of the rainproof cloth, and close the side reinforcement plate mechanism 2 to limit the autoclaved aerated concrete blocks, and then wrap the autoclaved aerated concrete blocks with the rainproof cloth, and then install the top fixing plate 3 on the side reinforcement plate mechanism 2 and the top of the stacking pile, and fix it horizontally on the outside of the side reinforcement plate mechanism 2 through the steel belt, and pass the vertical steel belt through the steel belt limit frame 102 and the steel belt The limit frame 2 301 is fixed. When packaging is completed, the top lifting mechanism 7 is connected through the lifting equipment, and the stacked side reinforcement plate mechanism 2 and the top fixing plate 3 are lifted to the container operation position through the new type of fast lifting mechanism 5 and the hydraulic retraction mechanism 6. When loaded into the container, the bottom of the pallet mechanism 4 is fixed by inserting a wedge block, and the hollow hanging hole 101 is hung and tightened by the tensioner to fix it, so as to ensure subsequent stability, improve the overall waterproof and fastening effect, and increase the stability during transportation.

[0036] In another embodiment, Figure 1 and Figure 2 and Figure 6-Figure 9As shown, the side reinforcement plate mechanism 2 includes a connecting angle steel 201, a plurality of steel belt limiting grooves 202 are opened on the outer side of the connecting angle steel 201, a connecting piece 205 is fixedly installed on the inner side of the bottom end of the connecting angle steel 201, and a hinge seat 206 is hinged at one end of the connecting piece 205 away from the connecting angle steel 201, and the hinge seat 206 is fixedly installed on the bottom of the new cage plate 1, and a plurality of "J"-shaped hooks 203 are fixedly installed on the outer side of the connecting angle steel 201, and the steel belt limiting grooves 202 and the "J"-shaped hooks 203 are linearly staggered and evenly distributed on the outer side of the connecting angle steel 201, and a rubber angle pad 204 is fixedly installed on the inner side of the connecting angle steel 201, and a limiting pin 207 is movably inserted at the top of the connecting angle steel 201, and the limiting pin 207 is movably inserted through the inside of the limiting plug plate 303.

[0037] When the autoclaved aerated concrete blocks are fixed after stacking, the connecting angle steel 201 is rotated through the connecting piece 205 under the hinge of the hinge seat 206, and the connecting angle steel 201 and the rubber corner pad 204 are prompted to correspond to the four corners of the stacked autoclaved aerated concrete blocks, and placed on the top of the stack through the top fixing plate 3. After the limiting pin 207 is inserted into the limiting plug plate 303 for fixing, the reinforcing steel belt or restraining belt is passed through the steel belt limiting groove 202, and through the steel belt limiting frame 102 and the steel belt limiting frame 2 301 to achieve horizontal and vertical reinforcement, facilitate pre-bundling and packaging, facilitate subsequent lifting, increase structural strength and increase subsequent stability.

[0038] In another embodiment, Figure 1 and Figure 2 and Figure 6-Figure 9 As shown, the number of the limiting plug plates 303 corresponds to the number of the connecting angle steels 201 , and the number specifications of the connecting angle steels 201 are divided into four, six, and eight.

[0039] When the number of connecting angle steels 201 is four, the structure is used to limit the four corners of a small stack. When there are more than one connecting angle steels 201, the shapes of the angle steels at the four corners remain unchanged, and the connecting angle steels 201 at the middle position are changed into flat steel plates, thereby expanding the stack and facilitating the fixation of the auxiliary structure, making it easier to lift medium or large stacking structures. As the number and specifications of the connecting angle steels 201 change, the corresponding specifications and quantities of the new fast lifting mechanism 5 and the hydraulic retraction mechanism 6 will change accordingly. For example, if the new cage plate 1 is elongated into a rectangle as a whole, the new The rapid lifting mechanism 5 is elongated into a slot shape so that the position of the hydraulic retraction mechanism 6 corresponds to the position of the connecting angle steel 201 from the beginning to the end, which is convenient for lifting, and is further divided into small stacking and large stacking, thereby increasing the ability of various lifting. For example, small stacking is loaded by forklift when it is lifted inside the container, while larger stacking is directly loaded on the ship with perfect protection, so that product specifications can be changed according to actual needs to adapt to different lifting needs, so as to increase the ability of rapid lifting, so as to adapt to the operating capabilities of the two types and to adapt to the operating needs of container loading.

[0040] In another embodiment, Figure 1 , Figure 2 , Figure 6-Figure 9 and Fig.13 As shown, the pallet mechanism 4 includes a plurality of pallet support plates 401, a plurality of pallet plates 404 are fixedly installed on the top of the pallet support plates 401, a plurality of groups of limit support blocks 405 are fixedly installed on the top of the pallet plates 404, a limit support seat 406 is fixedly installed on the top of the pallet plates 404, the specifications and dimensions of the limit support blocks 405 and the limit support seat 406 are compatible with the specifications and dimensions of the steel belt limit frame 102, a plurality of wedge block grooves 403 are opened at the bottom of the pallet support plates 401, a plurality of reinforcing bolts 402 are movably inserted inside the pallet plates 404, the reinforcing bolts 402 movably penetrate the limit support seat 406 and are threadedly connected to the inside of the hollow hanging hole 101, and the specifications and dimensions of the steel belt limit frame 102 are compatible with the specifications and dimensions of the steel belt limit frame 2 301.

[0041] When the pallet mechanism 4 supports the stacking of autoclaved aerated concrete blocks, the reinforcing bolts 402 pass through the limit supports 406 and are screwed into the hollow hanging holes 101, thereby connecting and fixing the pallet mechanism 4 and the new cage plate 1 to maintain relative stability. The pallet mechanism 4 limits the new cage plate 1 and the steel belt limit frame 102 through the limit support blocks 405 and the limit supports 406 to keep the operating force limited. The bolt fixation of the reinforcing bolts 402 further increases the stabilizing effect, facilitates rapid lifting, and inserts wedges through the wedge grooves 403 to increase the fixing effect of the bottom.

[0042] In another embodiment, Figure 3-Figure 5 and Figure 10-12As shown, the inner support pillars 506 of the magnet are evenly distributed in a circular linear manner inside the hollow support plate 501, the specifications and dimensions of the limit frame groove 503 are compatible with the specifications and dimensions of the rubber pad 103, the support tube 504 and the flexible suction cup mouth 505 are evenly distributed in a rectangular linear manner at the bottom of the hollow support plate 501, and four hinged seats 502 are fixed to the outer side of the hollow support plate 501.

[0043] When the new type of rapid lifting mechanism 5 is placed on the top of the top fixing plate 3, the limit frame groove 503 is matched with the steel belt limit frame 2 301. At this time, the flexible suction cup nozzle 505 is in contact with the top of the top fixing plate 3. The size of the flexible suction cup nozzle 505 is relatively large, which is used to increase a certain buffering effect and friction area. The new type of rapid lifting mechanism 5 is sucked by the stabilizing mechanism 8 to form a negative pressure inside. The support tube 504 and the flexible suction cup nozzle 505 apply an adsorption force to the top of the top fixing plate 3, and cooperate with the magnetic attraction force of the inner support 506 of the magnet on the top fixing plate 3 to further maintain a stable position, thereby increasing the stability effect during lifting, and facilitating lifting with the hydraulic retraction mechanism 6.

[0044] In another embodiment, Figure 3-Figure 5 and Fig.10 As shown, the stabilizing mechanism 8 includes a plurality of limit springs 802, a gas spring telescopic rod 803 and a telescopic outer cylinder 804. The top of the limit spring 802 is fixedly installed with a support plate 801. The bottom of the telescopic outer cylinder 804 is connected to the top of the hollow support plate 501. The inside of the telescopic outer cylinder 804 is movably sleeved with a sealing piston 806. The top of the sealing piston 806 is fixedly installed with a movable inner column 805. The top of the movable inner column 805 is fixedly installed on the bottom of the support plate 801. The movable inner column 805 is movably sleeved inside the telescopic outer cylinder 804.

[0045] When the lifting mechanism 7 is subjected to the upward lifting force, the stabilizing mechanism 8 is pulled up. At this time, the movable inner column 805 moves upward to drive the sealing piston 2 806 to move upward, and prompts the telescopic outer cylinder 804 to suck the connecting position with the hollow support plate 501 to form a negative pressure, thereby prompting the hollow support plate 501 and the support cylinder 504 to adsorb the plane of the top fixing plate 3 through the flexible suction cup nozzle 505. The support plate 801 and the movable inner column 805 maintain relative positions through the limit spring 802 and the gas spring telescopic rod 803. When the lifting force is released, the movable inner column 805 and the sealing piston 2 806 are reset, thereby releasing the suction effect inside the hollow support plate 501. The overall structure adopts a mechanical structure, does not consume electricity, saves resources, and is convenient for use in a variety of lifting scenarios, with a good overall use effect.

[0046] In another embodiment, Figure 2As shown, the bottom of the limit spring 802 is fixedly installed on the top of the hollow support plate 501, the top of the gas spring telescopic rod 803 is hingedly installed on the top of the support plate 801, and the bottom of the gas spring telescopic rod 803 is hingedly installed on the top of the hollow support plate 501. The position of the limit spring 802 corresponds to the position of the gas spring telescopic rod 803, and the limit spring 802 and the gas spring telescopic rod 803 are evenly distributed in a circle on the opposite sides of the support plate 801 and the hollow support plate 501.

[0047] The limit spring 802 and the gas spring telescopic rod 803 facilitate maintaining the stable position of the support plate 801 and the hollow support plate 501, and promote the relative stability of the force structure to avoid dislocation.

[0048] In another embodiment, Figure 3-Figure 5 and Fig.10 As shown, the top hanging mechanism 7 includes a bottom limit frame 706, which is fixedly installed on the top of the support plate 801, and a top limit plate 705 is fixedly installed on the top of the bottom limit frame 706. The inner side of the top limit plate 705 is movably sleeved with a limit slide column 704, and a limit slide 707 is fixedly installed on the bottom of the limit slide column 704. The outer side of the limit slide 707 is movably staggered and sleeved with the inner side of the bottom limit frame 706, and a top ring plate 701 is fixedly installed on the top of the limit slide column 704, and a plurality of plug-in frames 702 are fixedly installed on the top of the top ring plate 701, and a lifting ring 703 is fixedly installed on the top of the top ring plate 701.

[0049] During lifting, the lifting part is connected through the lifting ring 703 and the plug-in plate frame 702. During lifting, the top ring plate 701 is pulled up through the plug-in plate frame 702 and the lifting ring 703, and the top ring plate 701 leads the limit slide 704 to move upward, and is limited by the limit slide 707 upward and the top limit plate 705 and the bottom limit frame 706. When it reaches the maximum position, the support plate 801 is pulled up through the bottom limit frame 706, so as to remove the paint, play a stabilizing role, and delay the lifting effect, so as to reserve space for the hydraulic retraction mechanism 6 to lift the ground, and facilitate the starting structure to remain relatively stable and increase the stability of the structure.

[0050] In another embodiment, Figure 1-Figure 12As shown, the hydraulic retraction mechanism 6 includes four telescopic outer rods 601, and a plurality of hooks 602 are fixedly installed on the opposite sides of the four telescopic outer rods 601. The hooks 602 are linearly and evenly distributed on the inner side of the telescopic outer rods 601, and the specifications and sizes of the hooks 602 are adapted to the specifications and sizes of the "J"-shaped hooks 203. A bottom limit seat 603 is fixedly installed on the bottom of the four telescopic outer rods 601, and a sealing piston 610 is movably sleeved on the inner side of the four telescopic outer rods 601. A telescopic inner column 604 is fixedly installed on the top of the sealing piston 610. The telescopic inner column 604 is movably sleeved on the inner side of the telescopic outer rod 601, and the telescopic inner column 604 and the sealing piston 610 are connected to each other. 10 is provided with a connecting oil passage 609, the top end of the connecting oil passage 609 is connected to a hydraulic oil pipe 605, the top end of the hydraulic oil pipe 605 is connected to a hydraulic telescopic column 606, the fixed portion of the hydraulic telescopic column 606 is fixedly installed on the top of the support plate 801, the telescopic end of the hydraulic telescopic column 606 is fixedly installed with a connecting ring 607, the opposite side of the connecting ring 607 is hinged with a connecting rod 608, the other end of the connecting rod 608 is hingedly installed on the outside of the limit sliding column 704, the top end of the telescopic inner column 604 is hingedly installed on the inner side of the hinge seat 2 502, and the connecting rods 608 are evenly distributed in a circle on the opposite sides of the connecting ring 607 and the limit sliding column 704.

[0051] When the lifting mechanism 7 drives the connecting rod 608 to move upward, the connecting rod 608 drives the connecting ring 607 to move upward and stretches the hydraulic telescopic column 606. At this time, after the hydraulic telescopic column 606 is stretched, the hydraulic oil flows back to the hydraulic telescopic column 606 under the negative pressure, thereby the hydraulic equivalent effect causes the hydraulic oil pipe 605 and the hydraulic pressure inside the telescopic outer rod 601 to flow out through the connecting oil channel 609 and the hydraulic oil pipe 605, thereby causing the telescopic outer rod 601 to retract outside the telescopic inner column 604, and then when the telescopic outer rod 601 and the hook 602 are rotated and lowered to the corresponding position of the connecting angle steel 201 and the "J"-shaped hook 203, the telescopic outer rod 601 and the hook 602 are realized. 2 retracts, thereby changing the loose fit of the "J"-shaped hook 203 to gradually tightening through the hook 602, so that the multiple connecting angle steels 201 are stably suspended with equal force. As the hydraulic telescopic column 606, the top limit plate 705 and the limit slide 707 continue to be stretched, the gradually stretched device stabilizing mechanism 8 and the new type of fast lifting mechanism 5 realize air pressure adsorption on the top fixing plate 3, thereby achieving a stable effect. The whole is a pure mechanical mechanism with a long service life and simple operation. It can be put down, hung up, and lifted to achieve self-locking, and it can be lifted and put down to achieve unlocking, which reduces the unlocking process, increases stability while achieving fast lifting, and increases the effect of use.

[0052] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A rapid lifting device for autoclaved aerated concrete blocks, comprising a novel lifting cage plate (1) and a novel rapid lifting mechanism (5), characterized in that: The new type of cage plate (1) is provided with a plurality of hollow hanging holes (101) inside, a rubber pad (103) is fixedly installed on the top of the new type of cage plate (1), a steel belt limit frame (102) is fixedly installed on the bottom of the new type of cage plate (1), a plurality of side reinforcement plate mechanisms (2) are movably installed on the outer side of the new type of cage plate (1), a top fixing plate (3) is movably installed on the opposite side of the top of the side reinforcement plate mechanism (2), a steel belt limit frame (301) is fixedly installed on the top of the top fixing plate (3), a rubber pad (302) is fixedly installed on the bottom of the top fixing plate (3), a plurality of limit plugs (303) are fixedly installed on the top of the top fixing plate (3), and a tray mechanism (4) is fixedly installed on the bottom of the new type of cage plate (1) by bolts; The novel rapid lifting mechanism (5) comprises a hollow support plate (501), a limited position frame groove (503) is provided at the bottom of the hollow support plate (501), a plurality of support tubes (504) are connected to the bottom of the hollow support plate (501), a flexible suction cup mouth (505) is fixedly installed at the bottom of the support tube (504), a plurality of magnetic inner pillars (506) are fixedly installed inside the hollow support plate (501), four groups of hydraulic retraction mechanisms (6) are movably installed on the outer side of the novel rapid lifting mechanism (5), a stabilizing mechanism (8) is connected to the top of the stabilizing mechanism (8), and a top lifting mechanism (7) is fixedly installed on the top of the stabilizing mechanism (8).

2. The autoclaved aerated concrete block rapid lifting device according to claim 1, characterized in that: The side reinforcement plate mechanism (2) includes a connecting angle steel (201), a plurality of steel belt limit grooves (202) are provided on the outer side of the connecting angle steel (201), a connecting piece (205) is fixedly installed on the inner side of the bottom end of the connecting angle steel (201), and an end of the connecting piece (205) away from the connecting angle steel (201) is hingedly connected to an articulated seat 1 (206), and the articulated seat 1 (206) is fixedly installed on the bottom of the novel cage plate (1), and the connecting angle steel (20 1) is fixedly installed with a plurality of "X"-shaped hooks (203) on the outside, the steel belt limiting grooves (202) and the "X"-shaped hooks (203) are linearly staggered and evenly distributed on the outside of the connecting angle steel (201), the inner side of the connecting angle steel (201) is fixedly installed with a rubber corner pad (204), the top of the connecting angle steel (201) is movably plugged with a limiting pin (207), and the limiting pin (207) is movably plugged and runs through the inside of the limiting plug plate (303).

3. The autoclaved aerated concrete block rapid lifting device according to claim 2, characterized in that: The number of the limiting plug plates (303) corresponds to the number of the connecting angle steels (201), and the number specifications of the connecting angle steels (201) are four, six, and eight.

4. The autoclaved aerated concrete block rapid lifting device according to claim 1, characterized in that: The pallet mechanism (4) comprises a plurality of pallet support plates (401), a plurality of pallet plates (404) being fixedly mounted on the top of the pallet support plates (401), a plurality of groups of limit support blocks (405) being fixedly mounted on the top of the pallet plates (404), a limit support seat (406) being fixedly mounted on the top of the pallet plates (404), the specification and size of the limit support block (405) and the limit support seat (406) being matched with the specification and size of the steel belt limit frame 1 (102), a plurality of wedge block grooves (403) being opened at the bottom of the pallet support plates (401), a plurality of reinforcing bolts (402) being movably inserted inside the pallet plates (404), the reinforcing bolts (402) being movably penetrated through the limit support seat (406) and being threadedly connected to the inside of the hollow hanging hole (101), the specification and size of the steel belt limit frame 1 (102) being matched with the specification and size of the steel belt limit frame 2 (301).

5. The autoclaved aerated concrete block rapid lifting device according to claim 2, characterized in that: The inner magnet pillars (506) are evenly distributed in a circular linear manner inside the hollow support plate (501); the specifications and dimensions of the limit frame groove (503) are compatible with the specifications and dimensions of the rubber pad (103); the support tube (504) and the flexible suction cup mouth (505) are evenly distributed in a rectangular linear manner at the bottom of the hollow support plate (501); and four hinged seats (502) are fixed to the outer side of the hollow support plate (501).

6. The autoclaved aerated concrete block rapid lifting device according to claim 5, characterized in that: The stabilizing mechanism (8) comprises a plurality of limit springs (802), a gas spring telescopic rod (803) and a telescopic outer cylinder (804); the top of the limit spring (802) is fixedly mounted with a support plate (801); the bottom of the telescopic outer cylinder (804) is connected to the top of the hollow support plate (501); a sealing piston 2 (806) is movably sleeved inside the telescopic outer cylinder (804); a movable inner column (805) is fixedly mounted on the top of the sealing piston 2 (806); the top of the movable inner column (805) is fixedly mounted on the bottom of the support plate (801); and the movable inner column (805) is movably sleeved inside the telescopic outer cylinder (804).

7. The autoclaved aerated concrete block rapid lifting device according to claim 6, characterized in that: The bottom of the limit spring (802) is fixedly mounted on the top of the hollow support plate (501), the top of the gas spring telescopic rod (803) is hingedly mounted on the top of the support plate (801), and the bottom of the gas spring telescopic rod (803) is hingedly mounted on the top of the hollow support plate (501). The position of the limit spring (802) corresponds to the position of the gas spring telescopic rod (803), and the limit spring (802) and the gas spring telescopic rod (803) are evenly distributed in a circle on the opposite sides of the support plate (801) and the hollow support plate (501).

8. The autoclaved aerated concrete block rapid lifting device according to claim 6, characterized in that: The top suspension mechanism (7) comprises a bottom limit frame (706), wherein the bottom limit frame (706) is fixedly mounted on the top of the support plate (801), a top limit plate (705) is fixedly mounted on the top of the bottom limit frame (706), a limit slide column (704) is movably sleeved on the inner side of the top limit plate (705), a limit slide frame (707) is fixedly mounted on the bottom of the limit slide column (704), the outer side of the limit slide frame (707) is movably sleeved with the inner side of the bottom limit frame (706), a top ring plate (701) is fixedly mounted on the top of the limit slide column (704), a plurality of plug-in plate frames (702) are fixedly mounted on the top of the top ring plate (701), and a suspension ring (703) is fixedly mounted on the top of the top ring plate (701).

9. The autoclaved aerated concrete block rapid lifting device according to claim 8, characterized in that: The hydraulic retraction mechanism (6) comprises four telescopic outer rods (601), and a plurality of hooks (602) are fixedly installed on opposite sides of the four telescopic outer rods (601). The hooks (602) are linearly and evenly distributed on the inner side of the telescopic outer rods (601), and the specifications and sizes of the hooks (602) are compatible with the specifications and sizes of the "X"-shaped hooks (203). A bottom limit seat (603) is fixedly installed on the bottom of the four telescopic outer rods (601), and a sealing piston (610) is movably sleeved on the inner side of the four telescopic outer rods (601). A telescopic inner column (604) is fixedly installed on the top of the sealing piston (610), and the telescopic inner column (604) is movably sleeved on the inner side of the telescopic outer rod (601). The telescopic inner column (604) and the sealing piston (610) are connected to each other. ) is provided with a connecting oil passage (609) inside, the top end of the connecting oil passage (609) is connected to a hydraulic oil pipe (605), the top end of the hydraulic oil pipe (605) is connected to a hydraulic telescopic column (606), the fixed part of the hydraulic telescopic column (606) is fixedly installed on the top of the support plate (801), the telescopic end of the hydraulic telescopic column (606) is fixedly installed with a connecting ring (607), the opposite side of the connecting ring (607) is hinged with a connecting rod (608), the other end of the connecting rod (608) is hingedly installed on the outside of the limit sliding column (704), the top end of the telescopic inner column (604) is hingedly installed on the inner side of the hinge seat (502), and the connecting rods (608) are evenly distributed on the opposite sides of the connecting ring (607) and the limit sliding column (704) in a circular shape.

Citation Information

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