Foam concrete insulation board packaging device

CN224811134UActive Publication Date: 2026-09-29SHENYANG HENGRUIYUAN THERMAL INSULATION MATERIAL CO LTD
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Patent Information

Application Number
CN202522449646.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-19
Publication Date
2026-09-29
Estimated Expiration
2035-11-19

AI Technical Summary

Technical Problem

然而,该专利在包装环节仅简要提及“码垛堆叠”,并未涉及自动化包装设备

Benefits of technology

[0014]本实用新型的一种泡沫混凝土保温板包装装置,与现有技术相比,有益效果为:该泡沫混凝土保温板包装装置通过集成包装货架、齐平、升降等组件,本装置实现了泡沫混凝土保温板从码齐到薄膜包装的全流程自动化;相比传统人工包装,效率提高,且包装一致性高,减少了产品破损风险。装置结构紧凑,适应性强,可处理不同尺寸的保温板,降低了人工成本和操作误差。

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Abstract

The utility model provides a kind of foam concrete insulation board packaging device, belong to foam concrete insulation board production and manufacturing technical field;Including: packing base, still include: packing shelf subassembly, packing shelf subassembly is set on the upper wall surface of packing base;Leveling lifting subassembly, leveling lifting subassembly is set on the upper wall surface of packing base;Leveling subassembly, leveling subassembly is set on the lower wall surface of leveling lifting subassembly;Packing lifting subassembly, packing lifting subassembly is set in the inside of packing base;Packaging component, packaging component is movably set in the outside of packing lifting subassembly;The device is integrated packing shelf, leveling, lifting etc. Component, the device realizes foam concrete insulation board from code leveling to film packaging full-process automation;Compared with traditional manual packing, efficiency is improved, and packing consistency is high, reduces product breakage risk;Device structure is compact, strong adaptability, different size insulation board can be handled, reduces artificial cost and operating error.
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Description

Technical Field

[0001] This utility model belongs to the technical field of foamed concrete insulation board production and manufacturing, specifically relating to a foamed concrete insulation board packaging device. Background Technology

[0002] Foamed concrete insulation board is a lightweight building material with excellent thermal insulation properties, widely used in building exterior wall insulation systems. Its production process includes steps such as mixing and pulping, casting and molding, blank grinding, drying, and packaging. Packaging, as the final and crucial process, directly affects the product's transportation safety, storage stability, and appearance quality.

[0003] In this field, traditional packaging methods largely rely on manual operation. Workers use manual tools to stack and wrap insulation boards with film, resulting in low efficiency, poor consistency, and high labor intensity. With increasing market demand, automated packaging is becoming a trend, but existing technologies often lack integrated solutions, leading to inconsistent packaging quality. For example, patent document CN 113084966 A, "A Manufacturing and Processing Method for Foamed Concrete Insulation Boards," discloses a grinding and finishing machine, which focuses on automating the blank grinding process, improving grinding efficiency and preventing debris wear. However, this patent only briefly mentions "stacking" in the packaging stage and does not involve automated packaging equipment. Specifically, patent CN113084966 A uses a grinding device to finish the blanks, but subsequent stacking and packaging still rely on manual labor, making continuous production impossible. Its shortcomings include: First, the packaging process lacks integrated automated control, leading to a bottleneck in overall production efficiency; second, the stacking operation lacks dedicated equipment, easily causing the insulation board to tilt or be damaged; third, film packaging relies on manual wrapping, resulting in inconsistent packaging tightness and easy loosening during transportation. These shortcomings highlight the urgent need in this field for efficient and reliable packaging devices. While existing technologies such as CN 113084966 A improve the upstream processes, they do not solve the packaging automation problem, thus limiting the overall production line efficiency. Utility Model Content

[0004] To address the problems existing in the prior art, this utility model provides a specific technical solution: a foamed concrete insulation board packaging device, comprising: a packaging base, and further comprising: a packaging shelf assembly disposed on the upper wall of the packaging base; a leveling and lifting assembly disposed on the upper wall of the packaging base; a leveling assembly disposed on the lower wall of the leveling and lifting assembly; a packaging lifting assembly disposed inside the packaging base; and a packaging assembly movably disposed outside the packaging lifting assembly; the packaging shelf assembly comprising: an electrically controlled turntable disposed on the upper wall of the packaging base; and a shelf base plate fixedly disposed on the upper wall of the electrically controlled turntable.

[0005] Preferably, the flush lifting assembly includes: a flush lifting rod disposed on the upper wall of the packaging base; and a flush crossbeam disposed on the upper wall of the flush lifting rod.

[0006] Preferably, the flushing assembly includes: a flushing base disposed on the lower wall of the flushing beam; four flushing hydraulic rods, each fixedly disposed inside the flushing base; four flushing connecting rods, each fixedly disposed at the drive end of the flushing hydraulic rods; and two flushing plates, each fixedly disposed outside two adjacent flushing connecting rods.

[0007] Preferably, the packaging lifting assembly includes: two packaging lifting slides, which are respectively fixedly mounted on the upper wall of the packaging base, and the upper ends of the two packaging lifting slides are fixed by connecting rods; a packaging lifting screw, the two ends of which are movably mounted inside the packaging base and inside the connecting rods at the upper ends of the packaging lifting slides by bearings; and a packaging lifting motor, which is fixedly mounted on the lower wall of the packaging base, and the drive end of the packaging lifting motor is connected to the packaging lifting screw.

[0008] Preferably, the packaging assembly includes: a packaging lifting platform, which is movably disposed outside the two packaging lifting slides and the packaging lifting screw, and is movably disposed outside the packaging lifting screw by means of a thread; and a packaging shaft, which is fixedly disposed on the upper wall of the packaging lifting platform.

[0009] Preferably, a counterweight platform is provided at the tail end of the flush crossbeam.

[0010] Preferably, the inner wall surfaces of the two flat plates are provided with an anti-slip coating.

[0011] Preferably, a fixed base is provided between the flush lifting rod and the packaging base.

[0012] Preferably, the lower wall of the packaging base is provided with several shock-absorbing support feet.

[0013] Preferably, a nut is movably provided at the upper end of the packaging shaft via a thread.

[0014] This utility model discloses a packaging device for foamed concrete insulation boards. Compared with existing technologies, the advantages are as follows: By integrating packaging shelves, leveling, and lifting components, this device achieves full automation of the foamed concrete insulation board packaging process from stacking to film packaging. Compared with traditional manual packaging, it improves efficiency, ensures high packaging consistency, and reduces the risk of product damage. The device has a compact structure, strong adaptability, and can handle insulation boards of different sizes, reducing labor costs and operational errors.

[0015] This device solves the problem of inaccurate pallet rotation and positioning by using packaging rack components, achieving a uniform film wrapping effect. The servo control of the electronically controlled turntable ensures accurate rotation angles, avoiding the instability of manual rotation, thus guaranteeing the tightness and aesthetics of the film wrapping.

[0016] This device solves the problem of poor stability during lifting by using a leveling lifting assembly, achieving a smooth and even stacking effect. The electro-hydraulic design of the leveling lifting rod and the balancing effect of the counterweight prevent swaying during lifting, ensuring precise positioning of the leveling assembly and reducing offset when stacking insulation boards. Furthermore, the leveling assembly solves the problem of inconsistent force during manual stacking, achieving a fast and uniform clamping effect. The hydraulic system provides controllable clamping force, and the anti-slip coating increases friction, keeping the insulation boards neat on all four sides and preventing damage or tilting caused by uneven force.

[0017] This device solves the problem of asynchronous film lifting by using a packaging lifting assembly, achieving precise lifting synchronized with rotation. The closed-loop control of the packaging lifting motor ensures that the lifting speed matches the rotation of the electrically controlled turntable, enabling spiral winding of the film and improving packaging speed and consistency. Furthermore, the packaging assembly solves the problem of inconvenient film installation, achieving quick roll changes and reliable fixation, reducing downtime and increasing equipment utilization. Attached Figure Description

[0018] Figure 1 A schematic diagram of the overall structure of the foamed concrete insulation board packaging device provided by this utility model. Figure 2 A partial structural diagram of the foamed concrete insulation board packaging device provided by this utility model; Figure 3 A second partial structural schematic diagram of the foamed concrete insulation board packaging device provided by this utility model; Figure 4An exploded view of the third partial structure of the foamed concrete insulation board packaging device provided by this utility model; in, Figures 1 to 4 The attached diagram and components of the foamed concrete insulation board packaging device are as follows: 1. Packaging base; 2. Electrically controlled turntable; 3. Shelf base plate; 4. Flush lifting rod; 5. Flush beam; 6. Flush base; 7. Flush hydraulic rod; 8. Flush connecting rod; 9. Flush plate; 10. Packaging lifting slide bar; 11. Packaging lifting screw; 12. Packaging lifting motor; 13. Packaging lifting platform; 14. Packaging shaft; 15. Counterweight platform. Detailed Implementation

[0019] The following are specific implementation cases and appendices. Figures 1-4 The present invention will be further described below, but it is not limited to these embodiments. The present invention provides a technical solution: a foamed concrete insulation board packaging device, comprising: a packaging base 1, and further comprising: a packaging shelf assembly, the packaging shelf assembly being disposed on the upper wall of the packaging base 1; a leveling lifting assembly, the leveling lifting assembly being disposed on the upper wall of the packaging base 1; a leveling assembly, the leveling assembly being disposed on the lower wall of the leveling lifting assembly; a packaging lifting assembly, the packaging lifting assembly being disposed inside the packaging base 1; and a packaging assembly, the packaging assembly being movably disposed outside the packaging lifting assembly; the packaging shelf assembly comprises: an electrically controlled turntable 2, the electrically controlled turntable 2 being disposed on the upper wall of the packaging base 1; a shelf base plate 3, the shelf base plate 3 being fixedly disposed on the upper wall of the electrically controlled turntable 2; and a plurality of shock-absorbing support feet being provided on the lower wall of the packaging base 1.

[0020] As a preferred embodiment, the flushing lifting assembly further includes: a flushing lifting rod 4, which is disposed on the upper wall of the packaging base 1; a flushing crossbeam 5, which is disposed on the upper wall of the flushing lifting rod 4, and a counterweight platform 15 is provided at the tail of the flushing crossbeam 5; and a fixed base is provided between the flushing lifting rod 4 and the packaging base 1.

[0021] As a preferred embodiment, the flushing assembly further includes: a flushing base 6, which is disposed on the lower wall of the flushing beam 5; four flushing hydraulic rods 7, which are respectively fixedly disposed inside the flushing base 6; four flushing connecting rods 8, which are respectively fixedly disposed on the drive end of the flushing hydraulic rods 7; and two flushing plates 9, which are respectively fixedly disposed on the outside of two adjacent flushing connecting rods 8, and the inner wall surface of the two flushing plates 9 is provided with an anti-slip coating.

[0022] As a preferred embodiment, the packaging lifting assembly further includes: two packaging lifting slides 10, which are respectively fixedly mounted on the upper wall of the packaging base 1, and the upper ends of the two packaging lifting slides 10 are fixed by connecting rods; a packaging lifting screw 11, the two ends of which are movably mounted inside the packaging base 1 and inside the connecting rod at the upper end of the packaging lifting slides 10 by bearings; and a packaging lifting motor 12, which is fixedly mounted on the lower wall of the packaging base 1, and the drive end of the packaging lifting motor 12 is connected to the packaging lifting screw 11.

[0023] As a preferred embodiment, the packaging assembly further includes: a packaging lifting platform 13, which is movably disposed outside the two packaging lifting slides 10 and the packaging lifting screw 11, and is movably disposed outside the packaging lifting screw 11 by means of a thread; and a packaging shaft 14, which is fixedly disposed on the upper wall of the packaging lifting platform 13, and a nut is movably disposed at the upper end of the packaging shaft 14 by means of a thread.

[0024] Working Principle: Before using this device, the operator connects an external AC power source to provide energy to the electrical equipment within the device. An external hydraulic power source is connected to the four flush hydraulic rods 7 to provide power for their operation. A matching controller is also connected to the device to provide control and operating logic for the electrical equipment. The operator places the packaging film outside the packaging shaft 14 and secures the film to the outside of the shaft using nuts. This completes the pre-use preparation.

[0025] The operator places the pallet containing the foamed concrete insulation boards onto the upper wall of the rack base plate 3 using a forklift, aligning the pallet with the rack base plate 3. The operator then initiates the leveling procedure. First, the leveling lifting rod 4 retracts, positioning two leveling plates 9 on either side of the foamed concrete insulation boards on the pallet. Next, the four leveling hydraulic rods 7 retract, their drive ends driving the two leveling plates 9 relative to each other via four leveling connecting rods 8, clamping and aligning the foamed concrete insulation boards on the pallet. Then, the drive ends of the four leveling hydraulic rods 7 extend, driving the two leveling plates 9 to move away from each other via the four leveling connecting rods 8 until the four leveling hydraulic rods 7 reach their maximum extension. Finally, the leveling lifting rod 4 raises the leveling beam 5 until it reaches its highest point. Then, the electrically controlled turntable 2 rotates the shelf base plate 3 90 degrees, and the leveling lifting rod 4 retracts, positioning the two leveling plates 9 on the other two sides of the foam concrete insulation board on the pallet. Next, the four leveling hydraulic rods 7 retract, and their drive ends, through the four leveling connecting rods 8, drive the two leveling plates 9 to move relative to each other, clamping and aligning the foam concrete insulation board on the pallet. This process is repeated once more to complete the alignment of the foam concrete insulation board on the pallet.

[0026] The operator then attaches the film to the neatly stacked foam concrete insulation board. The operator then initiates the packaging process; the electrically controlled turntable 2 rotates the shelf base plate 3, causing the foam concrete insulation board on the pallet to rotate as well, allowing the packaging film to wrap around the outside of the insulation board. Simultaneously, the packaging lifting motor 12 rotates, driving the packaging lifting screw 11 to rotate. The screw causes the packaging lifting platform 13 to rise, rising outside the two packaging lifting slides 10 and the packaging lifting screw 11, carrying the packaging film located outside the packaging shaft 14. The combined action of the rotating foam concrete insulation board and the rising packaging film completes the packaging of the foam concrete insulation board on the pallet.

[0027] Example: This foamed concrete insulation board packaging device mainly includes a packaging base 1, a packaging rack assembly, a leveling and lifting assembly, a leveling assembly, a packaging lifting assembly, and a packaging assembly. The packaging base 1 serves as the supporting foundation for the entire device, with several shock-absorbing support feet on its lower wall for vibration reduction and stability. The packaging rack assembly is located on the upper wall of the packaging base 1 and is used to support and rotate the foamed concrete insulation board pallets. The leveling and lifting assembly and the leveling assembly work together to align the insulation boards. The packaging lifting assembly and the packaging assembly are responsible for the film packaging operation. The entire device is automated through an electrical control system, improving packaging efficiency and consistency.

[0028] The packaging rack assembly includes an electrically controlled turntable 2 and a rack base plate 3. The electrically controlled turntable 2 is fixedly installed at the center of the upper wall of the packaging base 1, and integrates a servo motor and reducer to achieve precise rotation control. The rotation angle of the electrically controlled turntable 2 is adjustable, typically set to continuous rotation from 0° to 360°, or rotation in 90° increments to adapt to packaging needs. The rack base plate 3 is fixedly installed on the upper wall of the electrically controlled turntable 2, made of high-strength steel plate, and the surface can be coated with an anti-slip coating to increase friction with the pallet. The dimensions of the rack base plate 3 can be customized according to standard pallet dimensions (e.g., 1200mm × 1000mm), and the edges are equipped with positioning pins or guide grooves for easy pallet alignment. Electrically, the electrically controlled turntable 2 is controlled by a PLC, receiving commands from the main control system to achieve start, stop, speed adjustment, and angle positioning. A rotary encoder provides real-time position feedback to ensure accuracy.

[0029] The leveling and lifting assembly includes a leveling lifting rod 4, a leveling beam 5, and a counterweight platform 15. The leveling lifting rod 4 is vertically installed on the upper wall of the packaging base 1, near the side of the packaging rack assembly. The leveling lifting rod 4 is an electric hydraulic cylinder or a servo electric cylinder, and its stroke can be adjusted according to the stacking height of the insulation boards. The fixed base of the leveling lifting rod 4 is connected to the packaging base 1 by bolts to ensure stability. The leveling beam 5 is horizontally set on the upper wall of the leveling lifting rod 4 and adopts a rectangular steel tube structure to reduce weight and maintain rigidity. The counterweight platform 15 is located at the tail of the leveling beam 5. The counterweight platform 15 is made of cast iron blocks and is used to balance the weight of the leveling assembly to prevent tipping during lifting. The leveling lifting rod 4 is controlled by a PLC, the lifting speed is adjustable, and limit switches are equipped to detect the upper and lower limit positions to ensure safety.

[0030] The flushing assembly includes a flushing base 6, four flushing hydraulic rods 7, four flushing connecting rods 8, and two flushing plates 9. The flushing base 6 is fixedly mounted on the lower wall of the flushing beam 5 and has a rectangular frame structure with reserved internal space for installing the flushing hydraulic rods 7. The four flushing hydraulic rods 7 are fixedly mounted at the four corners of the flushing base 6, and each flushing hydraulic rod 7 is a double-acting hydraulic cylinder powered by an external hydraulic power source. The stroke of the flushing hydraulic rod 7 is set according to the size of the insulation board, and the drive end is connected by a thread or pin. The four flushing connecting rods 8 are fixedly mounted on the drive end of the flushing hydraulic rods 7, and each flushing connecting rod 8 is a rigid connecting rod that transmits the linear motion of the hydraulic rods to the flushing plates 9. The two flushing plates 9 are fixedly mounted on the outside of two adjacent flushing connecting rods 8, that is, every two flushing connecting rods 8 support one flushing plate 9. The flushing plates 9 have an L-shaped or flat structure, and the inner wall surface has an anti-slip coating to increase friction with the insulation board and prevent slippage. The flushing assembly is controlled via a hydraulic solenoid valve. The PLC outputs a signal to control the opening and closing of the solenoid valve, thereby controlling the extension and retraction of the flushing hydraulic rod 7. A pressure sensor monitors the hydraulic pressure to ensure appropriate clamping force and prevent damage to the insulation board.

[0031] The packaging lifting assembly includes two packaging lifting slides 10, a packaging lifting screw 11, and a packaging lifting motor 12. The two packaging lifting slides 10 are vertically fixed to the upper wall of the packaging base 1, symmetrically arranged on both sides of the packaging rack assembly. The packaging lifting slides 10 are smooth rods or linear guides with a hardened surface treatment to ensure wear resistance. The upper ends of the packaging lifting slides 10 are fixed by connecting rods, forming a portal frame to increase overall rigidity. The packaging lifting screw 11 is vertically positioned between the two packaging lifting slides 10, with its two ends movably mounted inside the packaging base 1 and inside the connecting rod at the upper end of the packaging lifting slides 10 via bearings. The packaging lifting motor 12 is fixed to the lower wall of the packaging base 1 and is a servo motor or stepper motor, connected to the lower end of the packaging lifting screw 11 via a coupling. The control of the packaging lifting motor 12 is handled by a PLC, achieving precise speed and position control, with encoder feedback of the screw position.

[0032] The packaging assembly includes a packaging lifting platform 13 and a packaging shaft 14. The packaging lifting platform 13 is movably mounted outside the two packaging lifting slides 10 and the packaging lifting screw 11, and is connected to the packaging lifting slides 10 via linear bearings and threadedly connected to the packaging lifting screw 11 to achieve lifting movement. The packaging lifting platform 13 is a steel plate structure with mounting holes on its upper wall. The packaging shaft 14 is fixedly mounted on the upper wall of the packaging lifting platform 13 and is a cylindrical rod used for rolling packaging film. A nut is movably mounted on the upper end of the packaging shaft 14 via a thread to secure the film roll and prevent it from falling off. The movement of the packaging assembly is synchronized with the rotation of the packaging rack assembly and is coordinated and controlled by a PLC.

[0033] The electrical control system is the core of this device, ensuring that all components work together harmoniously. The system is based on a PLC (such as the Siemens S7-1200 series) and equipped with an HMI for operator monitoring and parameter setting. The control logic, operational logic, and electrical components are described below.

[0034] a. Control Cabinet Layout: The control cabinet is installed near the base 1 of the packaging and includes a PLC module, power supply module, motor driver, relays, contactors, circuit breakers, and terminal blocks. The cabinet door is equipped with an emergency stop button, indicator lights, and an HMI touchscreen.

[0035] b. Power Supply: The operator connects an external three-phase 380V AC power supply to the main circuit breaker of the control cabinet to provide power for this device. The control circuit uses a 24V DC safety voltage, converted by a switching power supply. An external hydraulic power source is connected separately to supply oil to the flush hydraulic rod 7. The hydraulic station has its own motor and oil tank, and the working pressure is set through a pressure regulating valve.

[0036] c. Sensor Configuration: Position sensor: Limit switches are equipped on the flush lifting rod 4 and the packaging lifting assembly to detect the lifting limit position; the electric control turntable 2 is equipped with a rotary encoder to provide angle feedback; Pressure sensor: A pressure sensor is installed in the hydraulic circuit of the flush hydraulic rod 7 to monitor the clamping force and prevent overload; Photoelectric sensor: A photoelectric sensor is installed on the shelf base plate 3 to detect whether the pallet is in place; Encoder: Encoders are equipped on the packaging lifting motor 12 and the motor of the electric control turntable 2 to achieve closed-loop control.

[0037] d. PLC program logic: ① Initialization program: After power-on, the PLC performs a self-test, and all components return to their initial positions, such as the flush lifting rod 4 rising to the top and the flush hydraulic rod 7 retracting. ② Leveling Procedure: The operator initiates the leveling process via HMI. After the PLC detects the tray's arrival signal, it controls the leveling lifting rod 4 to retract, causing the two leveling plates 9 to descend to the height of the insulation board on both sides. The PLC outputs a signal to control the hydraulic solenoid valve, causing the four leveling hydraulic rods 7 to retract, driving the leveling connecting rod 8 to move the two leveling plates 9 relative to each other, clamping the insulation board. The pressure sensor provides real-time feedback, and the PLC adjusts the solenoid valve opening to ensure the clamping force is within the set range. After clamping for several seconds, the PLC controls the leveling hydraulic rods 7 to extend, causing the leveling plates 9 to move away from each other and release the insulation board. Then, the leveling lifting rod 4 rises to its highest point. The PLC controls the electrically controlled turntable 2 to rotate 90°, repeating the above clamping action to level the other two sides of the insulation board. The entire process can be repeated 2-4 times to ensure that all four sides are level.

[0038] ③ Packaging Procedure: The operator installs the film roll onto the packaging shaft 14 and secures it with nuts. The PLC synchronously controls the electric turntable 2 and the packaging lifting motor 12: the electric turntable 2 rotates at a constant speed, driving the tray and insulation board to rotate; the packaging lifting motor 12 drives the packaging lifting screw 11 to rotate, causing the packaging lifting platform 13 to rise at a corresponding speed. The lifting stroke is set according to the height of the insulation board, and the encoder ensures position synchronization. After packaging is completed, all components stop, and the operator can proceed to the next step.

[0039] In the description of this utility model, the term "multiple" refers to two or more. Unless otherwise explicitly defined, the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. The terms "connection," "installation," "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0040] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A packaging device for foamed concrete insulation boards, comprising: The packaging base (1) is characterized in that it further includes: A packaging rack assembly, wherein the packaging rack assembly is disposed on the upper wall of the packaging base (1); A flush lifting assembly is provided on the upper wall of the packaging base (1); A flushing component, wherein the flushing component is disposed on the lower wall surface of the flushing lifting component; A packaging lifting assembly is disposed inside the packaging base (1); A packaging assembly, wherein the packaging assembly is movably disposed outside the packaging lifting assembly; Packaging shelving components include: An electrically controlled turntable (2) is installed on the upper wall of the packaging base (1); Shelf base plate (3), which is fixedly installed on the upper wall of the electric control turntable (2).

2. The foamed concrete insulation board packaging device according to claim 1, characterized in that, The flushing and lifting assembly includes: A flush lifting rod (4) is provided on the upper wall of the packaging base (1); The flush beam (5) is set on the upper wall of the flush lifting rod (4).

3. The foamed concrete insulation board packaging device according to claim 1, characterized in that, The flushing component includes: A flush base (6) is provided on the lower wall of the flush beam (5); Four flush hydraulic rods (7) are fixedly installed inside the flush base (6); Four flush connecting rods (8) are respectively fixedly installed at the drive end of the flush hydraulic rod (7); Two flush plates (9) are fixedly installed on the outside of two adjacent flush connecting rods (8).

4. The foamed concrete insulation board packaging device according to claim 1, characterized in that, The packaging lifting assembly includes: Two packaging lifting slides (10) are fixedly installed on the upper wall of the packaging base (1), and the upper ends of the two packaging lifting slides (10) are fixed by connecting rods. Packaging lifting screw (11), the two ends of which are movably set inside the packaging base (1) and inside the connecting rod at the upper end of the packaging lifting slide (10) via bearings; Packaging lifting motor (12) is fixedly installed on the lower wall of the packaging base (1), and the driving end of the packaging lifting motor (12) is connected to the packaging lifting screw (11).

5. The foamed concrete insulation board packaging device according to claim 1, characterized in that, The packaging component includes: Packaging lifting platform (13), wherein the packaging lifting platform (13) is movably disposed outside the two packaging lifting slides (10) and the packaging lifting screw (11), and the packaging lifting platform (13) is movably disposed outside the packaging lifting screw (11) by means of a thread; Packaging shaft (14), which is fixedly installed on the upper wall of the packaging lifting platform (13).

6. The foamed concrete insulation board packaging device according to claim 2, characterized in that, The tail of the flush crossbeam (5) is provided with a counterweight platform (15).

7. The foamed concrete insulation board packaging device according to claim 3, characterized in that, The inner walls of the two flat plates (9) are provided with an anti-slip coating.

8. The foamed concrete insulation board packaging device according to claim 2, characterized in that, A fixed base is provided between the flush lifting rod (4) and the packaging base (1).

9. The foamed concrete insulation board packaging device according to claim 1, characterized in that, The lower wall of the packaging base (1) is provided with several shock-absorbing support feet.

10. The foamed concrete insulation board packaging device according to claim 5, characterized in that, The upper end of the packaging shaft (14) is provided with a nut via a thread.

Citation Information

Patent Citations

  • Foam concrete insulation board manufacturing and processing method

    CN113084966A