Floor type safe unloading platform for transferring building energy-saving and sound-insulating materials

By designing a floor-type safe unloading platform for the transfer of building energy-saving and sound-insulating materials, and utilizing the coordinated work of mobile motors, lifting mechanisms and rotating motors, the safety hazards and difficult working conditions of the unloading platform are resolved, thus achieving efficient and safe material unloading and transfer.

CN120797995APending Publication Date: 2025-10-17JINAN SIJIAN GRP CO LTD
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Patent Information

Application Number
CN202511207168.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

The existing unloading platform poses safety hazards and is difficult to use when unloading building energy-saving and sound-insulating materials. In particular, the multiple transfer and handling of materials such as rock wool and glass wool increases the number of contacts for construction workers, reducing safety and efficiency.

Method used

A floor-type safe unloading platform for the transfer of building energy-saving and sound-insulating materials has been designed. Through the coordinated action of the mobile motor, lifting mechanism and rotating motor, the unloading and loading operations can be separated, reducing the material transfer steps. The connecting mechanism and unlocking components can realize automatic fixing and lifting, simplifying the operation.

Benefits of technology

It improves the working efficiency and safety of the unloading platform, reduces the number of material transfers, reduces the difficulty of construction, and improves the degree of automation and stability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

A floor type safe discharging platform for transferring building energy-saving sound insulation materials comprises a base, an extending base is fixed to the periphery of the base, baffles are fixed to the left side and the right side of the extending base, a notch is formed in the side, corresponding to the extending base, of the periphery of the base, and a moving motor is fixed to the base. A moving screw extending to the extending base is fixed to the output shaft end of the moving motor, a guide rail is fixed to the extending base, a moving base is slidably connected to the guide rail, the moving base is connected with a building energy-saving sound insulation material box through a connecting mechanism, a transport vehicle is arranged in the notch, and a second inserting rod matched with the connecting mechanism is arranged on the transport vehicle. And a limiting mechanism is arranged between the transport vehicle and the notch. The device solves the technical problems of high working difficulty, low efficiency and the like in the prior art, and has the advantages that the frequency of transferring and carrying the building energy-saving sound insulation material is reduced, so that the working difficulty is reduced, and the working comfort is improved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of building construction, and relates to a discharging platform, in particular to a floor-standing safe discharging platform for transferring building energy-saving sound insulation materials. BACKGROUND

[0002] Building energy-saving sound insulation materials refer to building materials that have both sound insulation and energy-saving effects, can block sound propagation and reduce heat transfer, and can improve the comfort and energy utilization efficiency of buildings. Common ones include rock wool, glass wool, etc. mineral wool, polyurethane foam, melamine foam, etc. foam materials, sound insulation felt, polyethylene closed-cell foam board, etc. In modern building construction, building energy-saving sound insulation materials are often used.

[0003] The discharging platform for building engineering construction is a kind of temporary operation table and operation frame commonly set up on the construction site, which is generally used for material turnover and is divided into mobile discharging platform, floor-standing discharging platform and cantilever discharging platform. In the construction of bungalows or villas, floor-standing discharging platforms are generally used due to the low floor height.

[0004] Since the building energy-saving sound insulation materials such as rock wool and glass wool have very fine and sharp fibers, they can easily penetrate the skin and cause itching, swelling, and even slight pain if rubbed, which can cause the fibers to penetrate deeper into the skin and worsen the discomfort. Therefore, during actual operation, workers use cranes to lift and drop building energy-saving sound insulation materials onto the discharging platform on the high floor. At this time, the discharging platform will carry the building energy-saving sound insulation materials, and the materials will be transported from the outside of the building to the inside of the stairs, so that the materials can be transported to the construction site. The role of the discharging platform is to complete the material receiving work outside the building and the material unloading work inside the building.

[0005] Currently, floor-standing discharging platforms are set up in bungalows or villas to facilitate the transportation of external building energy-saving sound insulation materials to high floors. During the unloading process through the discharging platform, since the floor-standing discharging platform is outside the building and is only supported by steel pipe supports at the bottom, if the discharging platform collapses and high-altitude falling objects occur when workers enter the discharging platform to take the workpieces therein, it will greatly endanger the personal safety of workers.

[0006] Through retrieval, a special floor type unloading platform for factory building is disclosed in Chinese patent document [application number 2025100808878; publication number CN119507691B]. The unloading platform comprises a cylinder base, a conveying mechanism is arranged outside the cylinder base, the conveying mechanism comprises a rotating disc, the rotating disc is rotationally connected to the inner wall of the cylinder base, two symmetrical turnover boxes are fixed below the rotating disc, and an outer base is fixed to the outer surface of the cylinder base. The floor type unloading platform can separate the work area where workers pick up materials and the area where building materials are loaded, and they do not affect each other, so that the loading operation and the picking operation can be carried out at the same time. Through this rotation mode, multiple unloading operations can be continuously carried out, thereby improving the unloading efficiency of the device. Meanwhile, workers can pick up building materials inside the floor, thereby improving the safety of workers when picking up and unloading, and reducing safety hazards.

[0007] Although the unloading platform disclosed in the patent can make the loading operation and the picking operation carried out at the same time, and continuously carry out multiple unloading operations through this rotation mode, thereby improving the unloading efficiency of the device, workers still need to pick up building energy-saving and sound-insulating materials on the unloading platform and transport the building energy-saving and sound-insulating materials to the designated position. The building energy-saving and sound-insulating materials need to be transferred and carried multiple times, which increases the contact frequency between the construction personnel and the building energy-saving and sound-insulating materials (especially rock wool and glass wool), to some extent, increases the difficulty of work, and reduces the safety of the construction personnel. SUMMARY

[0008] The purpose of the present application is to solve the above-mentioned problems existing in the prior art, and to provide a floor type safe unloading platform for transferring building energy-saving and sound-insulating materials. The technical problem to be solved by the present application is how to reduce the number of times of transferring and carrying building energy-saving and sound-insulating materials, thereby reducing the difficulty of work and improving the safety of work.

[0009] The purpose of the present application can be achieved by the following technical scheme: A floor type safe unloading platform for transferring building energy-saving and sound-insulating materials, comprising a base, an extension seat is fixed to the outer periphery of the base, a baffle is fixed to the left and right sides of the extension seat, a notch is formed in the side of the base corresponding to the extension seat, a moving motor is fixed to the base, a moving screw extending to the extension seat is fixed to the output shaft end of the moving motor, a guide rail is fixed to the extension seat, a moving seat is slidably connected to the guide rail, a building energy-saving and sound-insulating material box is connected to the moving seat through a connecting mechanism, a transport vehicle is arranged in the notch, a second insertion rod cooperating with the connecting mechanism is arranged on the transport vehicle, a limiting mechanism is arranged between the transport vehicle and the notch, a vertical column is fixed to the upper side of the base, a rotating motor is fixed to the upper end of the vertical column, a cross beam is fixed to the output shaft end of the rotating motor, and a lifting mechanism is fixed to the lower side of both ends of the cross beam.

[0010] The working principle of the present application is that: in use, the base is fixed on the indoor floor, the extension seat extends out of the room, the building energy-saving sound insulation material box is provided with two or more, one of the building energy-saving sound insulation material boxes is connected to the moving seat through the connecting mechanism, and is initially located at the upper side of the outer end of the extension seat; after the external equipment places the building energy-saving sound insulation material on the building energy-saving sound insulation material box, the building energy-saving sound insulation material box is moved to the lower side of the lifting mechanism by the moving motor, and then the building energy-saving sound insulation material box filled with building energy-saving sound insulation material is lifted by the lifting mechanism, while the empty building energy-saving sound insulation material box placed on the transport vehicle is lifted by the other lifting mechanism; the beam is rotated by the rotating motor to exchange the positions of the two building energy-saving sound insulation material boxes, so that the unloading and loading operations are carried out separately, the continuity of the work is ensured, the work efficiency is improved, the building energy-saving sound insulation material can be transported to the designated position by the transport vehicle and then unloaded, the steps of transferring the building energy-saving sound insulation material are reduced, the difficulty of the work is reduced, and the practicability is high.

[0011] The connecting mechanism comprises a connecting seat fixed to the lower side of the building energy-saving sound insulation material box, a connecting cavity is formed in the connecting seat, an inclined surface is arranged at the lower end of the connecting cavity, a plurality of connecting rings are arranged in the connecting cavity, a first spring is arranged between the uppermost connecting ring and the connecting cavity, a first insertion rod is fixed to the upper side of the moving seat, the first insertion rod passes through the center holes of the connecting rings in sequence and extends into the connecting cavity, an unlocking opening is formed in the side surface of the connecting cavity, and an unlocking assembly is arranged in the unlocking opening.

[0012] By adopting the above mechanism, in use, the first insertion rod or the second insertion rod is inserted into the connecting cavity, under the action of the first spring and the inclined surface, the connecting ring is inclined, so as to lock the first insertion rod by the connecting ring, and the building energy-saving sound insulation material box is fixed; when lifting is needed, the connecting ring is straightened by the unlocking assembly of the lifting mechanism, so as to release the locking of the first insertion rod or the second insertion rod by the connecting ring, so that the building energy-saving sound insulation material box can be smoothly lifted to the designated position, and then the first insertion rod or the second insertion rod is reinserted into the connecting cavity, and the unlocking assembly is released, so that the whole process is highly automatic, the structure is simple, no additional operation is needed, time and labor are saved, no electrical elements are needed, and the practicability is high.

[0013] The unlocking assembly comprises an unlocking rod, the unlocking rod is slidably connected with the unlocking opening, a pointed part is arranged at one end of the unlocking rod in the unlocking cavity, a sliding cavity is formed in the inclined surface, an avoiding groove matched with the unlocking rod is formed at the upper end of the sliding cavity, a sliding plate is slidably connected in the sliding cavity, the sliding plate is fixedly connected with the unlocking rod, a second spring is fixed between the sliding plate and the sliding cavity, a connecting rod is fixed to the other end of the unlocking rod, and a lifting rod is fixed to the upper end of the connecting rod.

[0014] With the above structure, in operation, the lifting mechanism is in contact with the lifting rod, pressing the lifting rod, thereby driving the unlocking rod to move into the connecting cavity, so that the sharp cone part of the unlocking rod is on the lower side of the connecting ring entering the lowermost position, gradually lifting the connecting ring until the connecting ring is in a horizontal state position, thereby releasing the restriction of the connecting ring on the first or second insertion rod, and the setting of the avoiding slot can make the unlocking rod smoothly inserted into the lower side of the connecting ring without interference. After the lifting mechanism loosens the lifting rod, the unlocking rod will automatically pop out under the action of the second spring, thereby making the connecting ring relock the first or second insertion rod.

[0015] The lifting mechanism comprises an electric telescopic rod fixed on the lower side of the cross beam, a driving seat fixed on the lower end of the electric telescopic rod, a driving motor fixed on the driving seat, a double screw rod fixed on the output shaft end of the driving motor, two moving plates threadedly connected on the double screw rod, and a lifting seat fixed on the lower end of the moving plate. Limiting grooves are formed on the opposite faces of the lifting seat, and the limiting grooves cooperate with the lifting rod.

[0016] With the above mechanism, when the building energy-saving sound insulation material box needs to be lifted, the electric telescopic rod drives the driving seat to descend, so that the limiting grooves of the two lifting seats correspond to the lifting rod. Then the driving motor drives the double screw rod to rotate, the double screw rod drives the two lifting seats to move towards each other through the moving plate, so that the lifting rod enters the limiting groove. Then continue to move and press the lifting rod, thereby driving the unlocking rod to unlock the first or second insertion rod. After unlocking is completed, the electric telescopic rod is retracted, thereby lifting the building energy-saving sound insulation material box through the lifting seat and the lifting rod. The operation is simple and convenient, the device has high synergy, reduces the occurrence of faults, and ensures the stability of the device.

[0017] The outer side of the lifting rod is provided with a lifting groove, and a limiting block is fixed in the limiting groove.

[0018] With the above mechanism, in use, the lifting rod is located in the limiting groove, and the limiting block is located in the lifting groove, which can improve the stability and connection strength of the lifting rod and the lifting seat, reduce the occurrence of faults, and improve the practicality of the device.

[0019] The upper side of the base is fixed with two arc-shaped guide seats symmetrically left and right.

[0020] With the above structure, when the lifting mechanism lifts and then rotates the building energy-saving sound insulation material box, the lower side of the base can be in contact with the lower side of the arc-shaped guide seat, thereby achieving the supporting operation of the building energy-saving sound insulation material box, preventing the cross beam from deforming due to the excessive weight of the building energy-saving sound insulation material, and also protecting the lifting mechanism from the pressure borne by the lifting mechanism, prolonging the service life of the device and improving the safety of use.

[0021] The transport vehicle comprises a seat and a push frame, the lower side of the seat is fixed with a plurality of moving wheels, the upper side of the seat is fixed with a plurality of second insertion rods corresponding to the connecting seat, the limiting mechanism comprises a trapezoidal block, the inside of the seat is provided with a driving cavity, the trapezoidal block extends into the driving cavity and is fixed with a limiting plate, the third spring is fixed between the limiting plate and the driving cavity, the transmission mechanism is arranged between the limiting plate and the push frame, and the arc-shaped guide seat is provided with a positioning groove corresponding to the trapezoidal block.

[0022] With the above structure, when the transport vehicle is pushed into the gap, the trapezoidal block enters the positioning groove to position the transport vehicle, so that the second insertion rod is aligned with the connecting seat, and the stability of work is ensured; when the transport vehicle needs to be pulled away, the push frame drives the transmission mechanism to move, so that the transmission mechanism drives the trapezoidal block to disengage from the positioning groove, thereby realizing the locking of the transport vehicle, and the positioning and disengagement of the transport vehicle can be realized by simply pushing and pulling the transport vehicle, which is simple and convenient to operate without additional operation.

[0023] The transmission mechanism comprises a transmission rod, the transmission rod is fixedly connected with the push frame, the transmission rod is provided with an expansion slot, the fourth spring is fixed in the expansion slot, the fourth spring is provided with a height abutting block, and the abutting block abuts against the limiting plate.

[0024] With the above structure, when the transport vehicle enters the gap, the trapezoidal block is in contact with the arc-shaped guide seat, and under the action of the inclined surface of the trapezoidal block, the fourth spring is extruded, so that the trapezoidal block can smoothly enter the arc-shaped guide seat; when the transport vehicle needs to be pushed away, the push frame is pulled, so that the transmission rod moves outward, thereby making the abutting block disengage from the limiting plate, and under the action of the third spring, the trapezoidal block disengages from the positioning groove, which is simple and convenient to operate.

[0025] The inside of the base is provided with a water cavity, the inside of the water cavity is fixed with an air suction seat and an air outlet seat at the upper end, the upper side of the air suction seat is fixed with a plurality of air suction heads, the upper side of the air outlet seat is fixed with a plurality of air outlet heads, the air suction seat is fixed with a fan, the inside of the water cavity is fixed with a drying box, the drying box is communicated with the air outlet seat, the drying box is connected with a first air inlet pipe, the air outlet seat is connected with a second air inlet pipe, the first air inlet pipe is fixed with a first electromagnetic valve, the second air inlet pipe is fixed with a second electromagnetic valve, and the first air inlet pipe and the second air inlet pipe are jointly connected with a third air inlet pipe.

[0026] With the above mechanism, during operation, two-thirds of water can be loaded in the base, then the fan is started, the air can be drawn by the air suction head, then purified by water, and then discharged through the air outlet head to realize air purification, and the first electromagnetic valve or the second electromagnetic valve can be selected according to different conditions, when the first electromagnetic valve is opened, dry air can be discharged, when the second electromagnetic valve is opened, humid air can be discharged, different use requirements can be met, water can be added in the base to ensure the stability of the base, and when transportation is needed, the water can be emptied to reduce the weight of the device, both convenient transportation and stability can be realized, and the practicability is high.

[0027] Compared with the prior art, the landing type safe unloading platform for the building energy-saving sound insulation material has the following advantages: Advantage 1: In use, the base is fixed on the indoor floor, the extension seat extends out of the room, the building energy-saving sound insulation material box is provided with two or more, one of the building energy-saving sound insulation material boxes is connected to the moving seat through the connecting mechanism and initially located at the upper side of the extension seat, after the external equipment places the building energy-saving sound insulation material on the building energy-saving sound insulation material box, the building energy-saving sound insulation material box is moved to the lower side of the lifting mechanism by the moving motor, then the building energy-saving sound insulation material box filled with building energy-saving sound insulation material is lifted by the lifting mechanism, at the same time, the empty building energy-saving sound insulation material box placed on the transport vehicle is lifted by the other lifting mechanism, then the beam is rotated by the rotating motor to exchange the positions of the two building energy-saving sound insulation material boxes, so that the unloading operation and the loading operation are carried out separately, the continuity of work can be ensured, the efficiency of work is improved, the building energy-saving sound insulation material can be transported to the designated position by the transport vehicle and then unloaded, the steps of building energy-saving sound insulation material transfer are reduced, the difficulty of work is reduced, and the practicability is high.

[0028] Advantage 2: In use, the first insertion rod or the second insertion rod is inserted into the connecting cavity, under the action of the first spring and the inclined surface, the connecting ring is inclined, so as to lock the first insertion rod by the connecting ring, and the building energy-saving sound insulation material box is fixed, when lifting is needed, the connecting ring is straightened by the unlocking assembly of the lifting mechanism, so as to release the locking of the first insertion rod or the second insertion rod by the connecting ring, so that the building energy-saving sound insulation material box can be smoothly lifted and moved to the designated position, after the first insertion rod or the second insertion rod is inserted into the connecting cavity again, the unlocking assembly is released, the whole process is highly automated, the structure is simple, no additional operation is needed, time and labor are saved, no electrical elements are needed, and the practicability is high.

[0029] Advantage 3: When the building energy-saving sound insulation material box needs to be lifted, the electric telescopic rod drives the driving seat to descend, so that the limiting grooves of the two lifting seats correspond to the lifting rod, then the driving motor drives the bidirectional screw rod to rotate, the bidirectional screw rod drives the two lifting seats to move towards each other through the moving plate, so that the lifting rod enters the limiting groove, and then continues to move to press the lifting rod, thereby driving the unlocking rod to unlock the first plug rod or the second plug rod, after unlocking is completed, the electric telescopic rod is retracted, so that the building energy-saving sound insulation material box is lifted through the lifting seat and the lifting rod, simple and convenient operation, high device cooperativity, reduces the generation of faults, and ensures the stability of the device work.

[0030] Advantage 4: When the lifting mechanism lifts and then rotates the building energy-saving sound insulation material box, the lower side of the base can be in contact with the lower side of the arc-shaped guide seat, thereby achieving the supporting operation of the building energy-saving sound insulation material box, preventing the transverse beam from deforming due to the excessive weight of the building energy-saving sound insulation material, and also protecting the lifting mechanism from the pressure, prolonging the service life of the device and improving the safety of use.

[0031] Advantage 5: When working, after the transport vehicle is pushed into the gap, the trapezoidal block enters the positioning groove to position the transport vehicle, thereby facilitating the alignment of the second plug rod and the connecting seat, ensuring the stability of the work, when the transport vehicle needs to be pulled away, the transmission mechanism is driven to move by the push frame, so that the transmission mechanism drives the trapezoidal block to disengage from the positioning groove, thereby realizing the locking of the transport vehicle. Simple push-pull operation can realize positioning and disengagement, simple and convenient operation, without additional operation. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 is a perspective structural schematic diagram of the present application; Figure 2 is a perspective structural schematic diagram of another view of the present application; Figure 3 is a structural schematic diagram of the transport box in the present application; Figure 4 is a structural schematic diagram of the connecting mechanism in the present application; Figure 5 is a structural schematic diagram of the connecting seat in the present application; Figure 6 is a structural schematic diagram of the lifting mechanism in the present application; Figure 7 is a structural schematic diagram of the transport vehicle in the present application; Figure 8 is an internal structural schematic diagram of the vehicle seat in the present application; Figure 9 is an internal structural schematic diagram of the base in the present application.

[0033] In the figure, 1 base; 2 extension seat; 3 guide rail; 4 moving seat; 5 connecting seat; 6 building energy-saving sound insulation material box; 7 moving screw; 8 moving motor; 9 stand; 10 rotary motor; 11 crossbeam; 12 electric telescopic rod; 13 drive seat; 14 drive motor; 15 moving plate; 16 lifting seat; 17 vehicle seat; 18 second insertion rod; 19 baffle; 20 air outlet head; 21 air suction head; 22 notch; 23 positioning groove; 24 unlocking rod; 25 connecting rod; 26 lifting rod; 27 lifting groove; 28 connecting cavity; 29 first insertion rod; 30 connecting ring; 31 first spring; 32 sliding cavity; 33 sliding plate; 34 second spring; 35 avoiding groove; 36 limiting groove; 37 limiting block; 38 bidirectional screw; 39 moving wheel; 40 trapezoidal block; 41 push frame; 42 drive cavity; 43 transmission rod; 44 limiting plate; 45 third spring; 46 abutting block; 47 water cavity; 48 air suction seat; 49 fan; 50 drying box; 51 first air inlet pipe; 52 first electromagnetic valve; 53 second air inlet pipe; 54 second electromagnetic valve; 55 air outlet seat; 56 arc-shaped guide seat; 57 fourth spring. DETAILED DESCRIPTION

[0034] The following are specific embodiments of the present application and further describe the technical solutions of the present application in conjunction with the drawings, but the present application is not limited to these embodiments.

[0035] As Figures 1-9 shown, the building energy-saving sound insulation material transfer landing type safety unloading platform comprises a base 1, an extension seat 2 is fixed to the outer periphery of the base 1, baffles 19 are fixed to the left and right sides of the extension seat 2, a notch 22 is formed in the side of the base 1 corresponding to the extension seat 2, a moving motor 8 is fixed to the base 1, a moving screw 7 extending to the extension seat 2 is fixed to the output shaft end of the moving motor 8, a guide rail 3 is fixed to the extension seat 2, a moving seat 4 is slidably connected to the guide rail 3, a building energy-saving sound insulation material box 6 is connected to the moving seat 4 through a connecting mechanism, a transport vehicle is arranged in the notch 22, a second insertion rod 18 cooperating with the connecting mechanism is arranged on the transport vehicle, a limiting mechanism is arranged between the transport vehicle and the notch 22, a stand 9 is fixed to the upper side of the base 1, a rotary motor 10 is fixed to the upper end of the stand 9, a crossbeam 11 is fixed to the output shaft end of the rotary motor 10, and a lifting mechanism is fixed to the lower side of both ends of the crossbeam 11.

[0036] In use, the base 1 is fixed on the indoor ground, the extension seat 2 extends out of the room, the building energy-saving sound insulation material box 6 is provided with two or more, one of the building energy-saving sound insulation material box 6 is connected to the moving seat 4 through the connecting mechanism, and is initially located at the upper side of the extension seat 2. When the external equipment places the building energy-saving sound insulation material on the building energy-saving sound insulation material box 6, the building energy-saving sound insulation material box 6 is moved to the lower side of the lifting mechanism by the moving motor 8, and then the building energy-saving sound insulation material box 6 filled with building energy-saving sound insulation material is lifted by the lifting mechanism. At the same time, the empty building energy-saving sound insulation material box 6 placed on the transport vehicle is lifted by another lifting mechanism, and the position of the two building energy-saving sound insulation material boxes 6 is exchanged by rotating the beam 11 driven by the rotating motor 10, so that the unloading operation and the loading operation are carried out separately, the continuity of the work can be ensured, the efficiency of the work is improved, the building energy-saving sound insulation material can be transported to the specified position by the transport vehicle, then unloaded, the steps of transferring the building energy-saving sound insulation material are reduced, the difficulty of the work is reduced, and the practicability is high.

[0037] The connecting mechanism comprises a connecting seat 5 fixed on the lower side of the building energy-saving sound insulation material box 6, a connecting cavity 28 is formed in the connecting seat 5, an inclined surface is arranged at the lower end of the connecting cavity 28, a plurality of connecting rings 30 are arranged in the connecting cavity 28, a first spring 31 is fixed between the uppermost connecting ring 30 and the connecting cavity 28, a first insertion rod 29 is fixed on the upper side of the moving seat 4, the first insertion rod 29 passes through the center holes of the connecting rings 30 in sequence and extends into the connecting cavity 28, and an unlocking port is formed in the side surface of the connecting cavity 28 and is provided with an unlocking assembly.

[0038] By adopting the above mechanism, in use, the first insertion rod 29 or the second insertion rod 18 is inserted into the connecting cavity 28, under the action of the first spring 31 and the inclined surface, the connecting ring 30 is inclined, so as to lock the first insertion rod 29 by the connecting ring 30, and the building energy-saving sound insulation material box 6 is fixed. When lifting is needed, the connecting ring 30 is straightened by the unlocking assembly of the lifting mechanism, so as to release the locking of the first insertion rod 29 or the second insertion rod 18 by the connecting ring 30, so that the building energy-saving sound insulation material box 6 can be smoothly lifted to the specified position. After the first insertion rod 29 or the second insertion rod 18 is reinserted into the connecting cavity 28, the unlocking assembly is released, the whole process is highly automatic, the structure is simple, no additional operation is needed, time and labor are saved, no electrical elements are needed, the practicability is high.

[0039] The unlocking assembly comprises an unlocking rod 24 in sliding connection with the unlocking port, one end of the unlocking rod 24 being provided with a pointed cone portion in the unlocking cavity, an inclined surface being provided with a sliding cavity 32, the upper end of the sliding cavity 32 being provided with an avoiding groove 35 matched with the unlocking rod 24, a sliding plate 33 being in sliding connection with the sliding cavity 32, the sliding plate 33 being fixedly connected with the unlocking rod 24, a second spring 34 being fixed between the sliding plate 33 and the sliding cavity 32, the other end of the unlocking rod 24 being fixedly connected with a connecting rod 25, and the upper end of the connecting rod 25 being fixedly connected with a lifting rod 26.

[0040] With the above structure, in operation, the lifting mechanism is in contact with the lifting rod 26, the lifting rod 26 is pressed, the unlocking rod 24 is moved into the connecting cavity 28, the pointed cone portion of the unlocking rod 24 is on the lower side of the connecting ring 30 at the lowermost position, the connecting ring 30 is gradually lifted, until the connecting ring 30 is in a horizontal state, the restriction of the connecting ring 30 on the first insertion rod 29 or the second insertion rod 18 is released, the avoiding groove 35 is arranged to enable the unlocking rod 24 to be smoothly inserted into the lower side of the connecting ring 30 without interference, and after the lifting mechanism releases the lifting rod 26, the unlocking rod 24 is automatically ejected under the action of the second spring 34, so that the connecting ring 30 re-locks the first insertion rod 29 or the second insertion rod 18.

[0041] The lifting mechanism comprises an electric telescopic rod 12 fixedly connected to the lower side of the cross beam 11, a driving seat 13 fixedly connected to the lower end of the electric telescopic rod 12, a driving motor 14 fixedly connected to the driving seat 13, a bidirectional screw rod 38 fixedly connected to the output shaft end of the driving motor 14, two moving plates 15 threadedly connected to the bidirectional screw rod 38, a lifting seat 16 fixedly connected to the lower end of the moving plate 15, and a limiting groove 36 formed on the opposite surface of the lifting seat 16 and matched with the lifting rod 26.

[0042] With the above structure, when the building energy-saving sound insulation material box 6 needs to be lifted, the electric telescopic rod 12 drives the driving seat 13 to descend, the limiting grooves 36 of the two lifting seats 16 correspond to the lifting rod 26, then the driving motor 14 drives the bidirectional screw rod 38 to rotate, the bidirectional screw rod 38 drives the two lifting seats 16 to move towards each other through the moving plates 15, the lifting rod 26 enters the limiting grooves 36, then continues to move and press the lifting rod 26, thereby driving the unlocking rod 24 to unlock the first insertion rod 29 or the second insertion rod 18, after unlocking, the electric telescopic rod 12 is retracted, thereby lifting the building energy-saving sound insulation material box 6 through the lifting seat 16 and the lifting rod 26, the operation is simple and convenient, the device has high synergy, reduces the occurrence of faults, and ensures the stability of the device.

[0043] The outer side of the lifting rod 26 is provided with a lifting groove 27, and the inner side of the limiting groove 36 is fixedly connected with a limiting block 37 matched with the lifting groove 27.

[0044] With the above mechanism, in use, the lifting rod 26 is located in the limiting groove 36, and the limiting block 37 is located in the lifting groove 27, which can improve the stability and connection strength of the lifting rod 26 and the lifting seat 16 when they are connected, reduce the occurrence of faults, and improve the practicality of the device.

[0045] The upper side of the base 1 is fixed with two arc-shaped guide seats 56 symmetrically left and right.

[0046] With the above structure, when the lifting mechanism lifts and then rotates and moves the building energy-saving sound insulation material box 6, the lower side of the base 1 can be in contact with the lower side of the arc-shaped guide seat 56, thereby achieving the supporting operation of the building energy-saving sound insulation material box 6, preventing the transverse beam 11 from deforming due to the excessive weight of the building energy-saving sound insulation material, and also protecting the lifting mechanism by bearing the pressure of the lifting mechanism, prolonging the service life of the device, and improving the safety of use.

[0047] The transport vehicle includes a seat 17 and a push frame 41, the lower side of the seat 17 is fixed with a plurality of moving wheels 39, the upper side of the seat 17 is fixed with a plurality of second insertion rods 18 corresponding to the connecting seat 5, the limiting mechanism includes a trapezoidal block 40, a driving cavity 42 is formed in the inside of the seat 17, the trapezoidal block 40 extends into the driving cavity 42 and is fixed with a limiting plate 44, a third spring 45 is fixed between the limiting plate 44 and the driving cavity 42, a transmission mechanism is arranged between the limiting plate 44 and the push frame 41, and the arc-shaped guide seat 56 is provided with a positioning slot 23 corresponding to the trapezoidal block 40.

[0048] With the above structure, when the transport vehicle is pushed into the gap 22 during work, the trapezoidal block 40 enters the positioning slot 23 to position the transport vehicle, thereby aligning the second insertion rod 18 with the connecting seat 5 and ensuring the stability of the work. When the transport vehicle needs to be pulled away, the push frame 41 drives the transmission mechanism to move, so that the transmission mechanism drives the trapezoidal block 40 to disengage from the positioning slot 23, thereby achieving the locking of the transport vehicle. The simple push-pull of the transport vehicle can achieve positioning and disengagement, which is simple and convenient to operate without additional operation.

[0049] The transmission mechanism includes a transmission rod 43, the transmission rod 43 is fixedly connected with the push frame 41, an extension slot is formed in the transmission rod 43, a fourth spring 57 is fixed in the extension slot, a contact block 46 is arranged on the fourth spring 57, and the contact block 46 is in contact with the limiting plate 44.

[0050] With the above structure, when the transport vehicle enters the gap 22, when the trapezoidal block 40 contacts the arc-shaped guide seat 56, under the action of the inclined surface of the trapezoidal block 40, the fourth spring 57 is extruded, so that the trapezoidal block 40 can smoothly enter the arc-shaped guide seat 56, when it is needed to push away the transport vehicle, pull the push frame 41, so that the transmission rod 43 moves outward, so that the abutting block 46 is separated from the limiting plate 44, under the action of the third spring 45, the trapezoidal block 40 is separated from the positioning groove 23, simple and convenient to operate.

[0051] The inside of the base 1 is provided with a water cavity 47, and the inside of the water cavity 47 is fixed with a suction seat 48 and an air outlet seat 55 at the upper end, the upper side of the suction seat 48 is fixed with a plurality of suction heads 21, the upper side of the air outlet seat 55 is fixed with a plurality of air outlet heads 20, the suction seat 48 is fixed with a fan 49, the inside of the water cavity 47 is fixed with a drying box 50, the drying box 50 is communicated with the air outlet seat 55, the drying box 50 is connected with a first air inlet pipe 51, the air outlet seat 55 is connected with a second air inlet pipe 53, the first air inlet pipe 51 is fixed with a first electromagnetic valve 52, the second air inlet pipe 53 is fixed with a second electromagnetic valve 54, the first air inlet pipe 51 and the second air inlet pipe 53 are jointly connected with a third air inlet pipe, and the air inlet end of the third air inlet pipe is located at the upper part of the water cavity 47.

[0052] With the above mechanism, during work, two-thirds of water can be loaded in the base 1, then the fan 49 is started, the suction heads 21 are used to suck air, then the air is purified by water, and then the air is discharged through the air outlet heads 20, realizing the purification of the air, and the first electromagnetic valve 52 or the second electromagnetic valve 54 can be selected according to different situations, when the first electromagnetic valve 52 is opened, dry air can be discharged, when the second electromagnetic valve 54 is opened, humid air can be discharged, meeting different use requirements, at the same time, water can be added in the base 1, to ensure the stability of the base 1, and when transportation is needed, the water can be discharged, reducing the weight of the device, realizing the effect of convenient transportation and stability, and high practicality.

[0053] The working principle of the present invention is as follows: when in use, the base 1 is fixed on the indoor ground, the extension seat 2 extends outdoors, and there are more than two building energy-saving sound insulation material boxes 6. One of the building energy-saving sound insulation material boxes 6 is connected to the mobile seat 4 through a connecting mechanism, and is initially located at the upper outer end of the extension seat 2. When the external equipment places the building energy-saving sound insulation material on the building energy-saving sound insulation material box 6, the building energy-saving sound insulation material box 6 is driven to move to the bottom of the lifting mechanism by the mobile motor 8, and then the electric telescopic rod 12 is used to drive the driving seat 13 to descend, so that the limiting grooves 36 of the two lifting seats 16 correspond to the lifting rod 26, and then the driving motor 14 drives the bidirectional screw 38 to rotate, and the bidirectional screw 38 drives the two lifting seats 16 to move toward each other through the moving plate 15, so that the lifting rod 26 enters the limiting groove 36, and then continues to move, pressing the lifting rod 26, thereby driving the unlocking rod 24 to press the first insertion rod 29 or The second insertion rod 18 is unlocked. After unlocking, the electric telescopic rod 12 contracts, thereby driving the building energy-saving sound insulation material box 6 to rise through the lifting seat 16 and the lifting rod 26. At the same time, another lifting mechanism is used to lift the empty building energy-saving sound insulation material box 6 placed on the transport vehicle, and then the rotating motor 10 drives the crossbeam 11 to rotate, so that the positions of the two building energy-saving sound insulation material boxes 6 are exchanged. At the same time, when the lifting mechanism lifts the building energy-saving sound insulation material box 6 and then rotates it, the lower side of the base 1 can be brought into contact with the lower side of the arc-shaped guide seat 56, thereby realizing the support operation of the building energy-saving sound insulation material box 6, so that the unloading operation and the loading operation are carried out separately, which can ensure the continuity of work and improve work efficiency. At the same time, the transport vehicle can be used to transport the building energy-saving sound insulation material to the designated location and then unload it, reducing the steps of transferring the building energy-saving sound insulation material, reducing the difficulty of work, and being highly practical. When the transport vehicle is pushed into the gap 22, the trapezoidal block 40 enters the positioning groove 23 to position the transport vehicle, thereby aligning the second insertion rod 18 with the connecting seat 5 to ensure the stability of the work. When the transport vehicle needs to be pulled away, the transmission mechanism is driven to move by the push frame 41, so that the transmission mechanism drives the trapezoidal block 40 to disengage from the positioning groove 23, and the contact locking of the transport vehicle can be achieved. Positioning and disengagement can be achieved by simply pushing and pulling the transport vehicle. At the same time, when working, two-thirds of water can be filled into the base 1, and then the fan 49 can be turned on, and the exhaust head 21 can be used to The air is exhausted, and then purified by water and discharged through the air outlet 20 to achieve air purification. The first solenoid valve 52 or the second solenoid valve 54 can be opened according to different situations. When the first solenoid valve 52 is opened, dry air can be discharged, and when the second solenoid valve 54 is opened, moist air can be discharged to meet different usage requirements. At the same time, adding water to the base 1 can ensure the stability of the base 1, and when transportation is required, the water can be drained to reduce the weight of the device, thereby achieving the effect of being easy to transport and ensuring stability, and having strong practicality.

[0054] In summary, through the setting of the transport vehicle, the building energy-saving sound insulation material box 6 and the like, the number of times of transferring and carrying the building energy-saving sound insulation material is reduced, thereby reducing the difficulty of work and improving the comfort of work.

[0055] The specific embodiments described herein are merely illustrative of the principles of this application. Numerous modifications or adaptations will be readily apparent to those skilled in the art of this application without departing from the spirit or scope of the application as defined by the following claims.

Claims

1. A floor-type safe unloading platform for transferring building energy-saving and sound-insulating materials, comprising a base (1), characterized in that: An extension seat (2) is fixed to the periphery of the base (1), baffles (19) are fixed to the left and right sides of the extension seat (2), a notch (22) is opened on the side of the periphery of the base (1) corresponding to the extension seat (2), a mobile motor (8) is fixed on the base (1), a mobile screw (7) extending to the extension seat (2) is fixed to the output shaft end of the mobile motor (8), a guide rail (3) is fixed to the extension seat (2), a mobile seat (4) is slidably connected to the guide rail (3), and the mobile seat (4) is connected to the building energy-saving sound insulation material box (6) through a connecting mechanism, a transport vehicle is provided in the notch (22), a second plug (18) cooperating with the connecting mechanism is provided on the transport vehicle, and a limiting mechanism is provided between the transport vehicle and the notch (22), a column (9) is fixed on the upper side of the base (1), a rotating motor (10) is fixed to the upper end of the column (9), a beam (11) is fixed to the output shaft end of the rotating motor (10), and a lifting mechanism is fixed to both ends of the lower side of the beam (11).

2. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 1 is characterized in that: The connecting mechanism includes a connecting seat (5), which is fixed on the lower side of the building energy-saving sound insulation material box (6), a connecting cavity (28) is provided inside the connecting seat (5), the lower end of the connecting cavity (28) is provided with an inclined surface, a plurality of connecting rings (30) are provided inside the connecting cavity (28), a first spring (31) is fixed between the uppermost connecting ring (30) and the connecting cavity (28), a first insertion rod (29) is fixed on the upper side of the movable seat (4), the first insertion rod (29) passes through the center holes of the plurality of connecting rings (30) in sequence and extends into the connecting cavity (28), an unlocking port is provided on the side of the connecting cavity (28), and an unlocking component is provided in the unlocking port.

3. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 2 is characterized in that: The unlocking assembly includes an unlocking rod (24), the unlocking rod (24) is slidably connected to the unlocking port, a pointed cone portion is provided at one end of the unlocking rod (24) located in the unlocking cavity, a sliding cavity (32) is provided on the inclined surface, an avoidance groove (35) cooperating with the unlocking rod (24) is provided at the upper end of the sliding cavity (32), a slide plate (33) is slidably connected in the sliding cavity (32), the slide plate (33) is fixedly connected to the unlocking rod (24), a second spring (34) is fixed between the slide plate (33) and the sliding cavity (32), a connecting rod (25) is fixed to the other end of the unlocking rod (24), and a lifting rod (26) is fixed to the upper end of the connecting rod (25).

4. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 3 is characterized in that: The lifting mechanism includes an electric telescopic rod (12), which is fixed to the lower side of the crossbeam (11), a driving seat (13) is fixed to the lower end of the electric telescopic rod (12), a driving motor (14) is fixed to the driving seat (13), a bidirectional screw (38) is fixed to the output shaft end of the driving motor (14), two movable plates (15) are threadedly connected to the bidirectional screw (38), a lifting seat (16) is fixed to the lower end of the movable plate (15), and a limiting groove (36) is provided on the opposite surface of the lifting seat (16), and the limiting groove (36) cooperates with the lifting rod (26).

5. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 4 is characterized in that: A lifting groove (27) is provided on the outer side of the lifting rod (26), and a limiting block (37) is fixed inside the limiting groove (36), and the limiting block (37) cooperates with the lifting groove (27).

6. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 1 is characterized in that: Two arc-shaped guide seats (56) are fixed symmetrically on the upper side of the base (1).

7. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 6 is characterized in that: The transport vehicle includes a seat (17) and a push frame (41), a plurality of moving wheels (39) are fixed on the lower side of the seat (17), a plurality of second insertion rods (18) corresponding to the connecting seat (5) are fixed on the upper side of the seat (17), a limiting mechanism includes a trapezoidal block (40), a driving cavity (42) is opened inside the seat (17), the trapezoidal block (40) extends into the driving cavity (42) and is fixed with a limiting plate (44), a third spring (45) is fixed between the limiting plate (44) and the driving cavity (42), a transmission mechanism is provided between the limiting plate (44) and the push frame (41), and a positioning groove (23) corresponding to the trapezoidal block (40) is opened on the arc guide seat (56).

8. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 7 is characterized in that: The transmission mechanism includes a transmission rod (43), the transmission rod (43) is fixedly connected to the push frame (41), a telescopic slot is provided on the transmission rod (43), a fourth spring (57) is fixed in the telescopic slot, a conflicting block (46) is provided at a height above the fourth spring (57), and the conflicting block (46) conflicts with the limiting plate (44).

9. The floor-standing safety unloading platform for transferring building energy-saving and sound-insulating materials according to claim 1 is characterized in that: A water cavity (47) is provided inside the base (1). An exhaust seat (48) and an air outlet seat (55) are fixed to the upper end of the water cavity (47). A plurality of exhaust heads (21) are fixed on the upper side of the exhaust seat (48). A plurality of air outlet heads (20) are fixed on the upper side of the air outlet seat (55). A fan (49) is fixed on the exhaust seat (48). A drying box (50) is fixed inside the water cavity (47). The drying box (50) is connected to the air outlet seat (55). A first air inlet pipe (51) is connected to the drying box (50). A second air inlet pipe (53) is connected to the air outlet seat (55). A first solenoid valve (52) is fixed to the first air inlet pipe (51). A second solenoid valve (54) is fixed to the second air inlet pipe (53). The first air inlet pipe (51) and the second air inlet pipe (53) are commonly connected to a third air inlet pipe. The air inlet end of the third air inlet pipe is located at the upper part of the water cavity (47).

Citation Information

Patent Citations

  • A special floor-type unloading platform for factory buildings

    CN119507691B