Backpack-type high-bay warehouse for lifting and storing angle steel
Through the backpack-type three-dimensional warehouse design, the three-dimensional storage of angle steel is achieved using components such as shelves, columns, lifting platforms and telescopic arms, which solves the problems of angle steel being corroded by accumulated water and oil and covering a large area, and improves storage efficiency and stability.
Patent Information
- Application Number
- CN202310100909.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-30
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2042-05-30
AI Technical Summary
Angle steel is stacked directly on the ground in the tower production workshop and is easily corroded by accumulated water and oil, occupying a large area of the ground, affecting the production process.
It adopts a backpack-type three-dimensional warehouse design, including shelves, columns, lifting tables, telescopic arms and motors, and realizes three-dimensional storage of angle steel through lifting and telescopicity to avoid contact with the ground.
Three-dimensional storage of angle steel is achieved, reducing the area of land, avoiding water accumulation and oil pollution, and improving storage stability and efficiency.
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Figure CN116002271B_ABST
Abstract
Description
[0001] This application is a divisional application with the application date of May 30, 2022, application number 2022106043289, and invention name “Backpack-type three-dimensional warehouse”. Technical Field
[0002] The invention relates to the field of angle steel equipment, in particular to a backpack-type stereoscopic warehouse. Background Art
[0003] Angle steel is a very important component in the manufacture of iron towers. At present, the angle steels in the iron tower production workshop are directly stacked on the ground. When the angle steels need to be welded together, if they are stacked directly on the ground, firstly, water and oil will easily accumulate on the ground. The presence of accumulated water and oil will easily cause the angle steels to be corroded. Secondly, it will occupy a large area of the ground, causing certain obstacles to the production process. Summary of the Invention
[0004] In view of the above problems, the present invention proposes a backpack-type stereoscopic warehouse.
[0005] The technical solution adopted by the present invention is as follows:
[0006] A backpack-type three-dimensional warehouse includes shelves, columns, a lifting platform, a telescopic arm, a lifting motor and a telescopic motor. A plurality of cargo bins are arranged on the shelves. The columns are arranged on one side of the shelves, and there are no less than two columns. The two ends of the lifting platform are respectively slidably matched with the two columns. The lifting motor is arranged on the lifting platform or the columns. The telescopic arm is slidably set on the lifting platform. The telescopic motor is arranged on the lifting platform, and the telescopic motor is matched with the telescopic arm.
[0007] In this backpack-type stereoscopic garage, multiple cargo compartments are arranged on the shelves, and the distance between each cargo compartment relative to the ground is continuously increasing. The cargo compartments are arranged on the shelves from low to high relative to the ground. At the same time, a column is set on one side of the shelf, and the lifting platform is slidably and adjustably installed on the column through a lifting motor. When the lifting motor is working, the lifting platform can rise or fall on the column, and a telescopic arm is installed on the lifting platform through a telescopic motor. When the telescopic motor is working, the telescopic arm can be extended to the cargo compartment or retracted from the cargo compartment to the lifting platform, so the telescopic arm can realize the transfer of angle steel between the lifting platform and the cargo compartment.
[0008] The specific lifting platform is provided with a slide rail, the telescopic arm is slidably installed on the slide rail, a rack is provided on the telescopic arm, and a gear is installed on the telescopic motor. When the telescopic motor is working, it can drive the telescopic arm to move along the slide rail, thereby realizing the movement of the telescopic arm relative to the slide rail, thereby realizing the telescopic arm extending toward or leaving the shelf.
[0009] In summary, this warehouse realizes the three-dimensional storage of angle steel by setting up shelves, columns and lifting platforms, which occupies a small area and the angle steel will not be contaminated by water and oil on the ground during storage.
[0010] Optionally, it further includes a base and a guide rail, wherein the guide rail is arranged on one side of the shelf, the base is slidably arranged on the guide rail, the column is arranged on the base, and a moving motor is arranged on the base.
[0011] Specifically, the mobile motor is equipped with a mobile wheel, which fits tightly with the guide rail. When the mobile wheel rotates, it can drive the base to slide on the guide rail. This design is to enable more cargo compartments to be installed on the shelf, thereby realizing the movable installation of the shelf. The guide rail is set to realize the movable installation of the base, so that the lifting platform can move along the guide rail to move the goods on the warehouse.
[0012] Optionally, a lifting rope is further included, and a guide wheel is provided on the lifting platform. The lifting platform is slidably engaged with the column through the guide wheel, one end of the lifting rope is engaged with the shaft of the lifting motor, and the other end of the lifting rope is engaged with the lifting platform.
[0013] Optionally, a roller conveyor is further included, and the roller conveyor is arranged on one side of the shelf.
[0014] The function of the roller conveyor is to transfer the angle steel to the lifting platform or to transport the angle steel from the lifting platform to another place.
[0015] Optionally, a correction tray is further included, which is arranged on a roller conveyor, and the gap between the rotating round roller of the roller conveyor and the correction tray serves as a transmission channel for the angle steel.
[0016] The specific correction pallet is set on the roller conveyor. The gap between the correction pallet and the rotating round roller of the roller conveyor is the transmission channel for the angle steel. The correction pallet is set on the roller conveyor to guide the conveying path of the angle steel and prevent the roller conveyor from deviating when transmitting the angle steel.
[0017] Optionally, a triangular groove is provided on the correction tray.
[0018] The correction tray is provided with a triangular groove, which is used to accommodate the top corner part of the angle steel. The groove arm is used to contact the two edges of the angle steel, and the angle of the top angle of the groove is greater than 90 degrees. Because the top angle of the angle steel is 90 degrees, this can ensure that the groove accommodates the top corner part of the angle steel while ensuring that there is a large gap between the groove and the angle steel, ensuring that the angle steel will not be stuck in the groove, and at the same time ensuring that the top angle of the angle steel will not be worn when the angle steel is guided.
[0019] Optionally, a fixed support arm is provided on the lifting platform, and the fixed support arm and the telescopic arm are in the same plane.
[0020] Because the telescopic arm is movable, and in order to improve the stability of the lifting platform when transporting angle steel, if only the telescopic arm is used to support the angle steel, then the lifting platform is likely to shake when transporting the angle steel, causing the angle steel to slip. In order to improve the stability when transporting the angle steel, a fixed support arm fixed on the lifting platform is set up, and the fixed support arm is used to contact the angle steel to improve the stability of the angle steel on the telescopic arm.
[0021] Optionally, a planar first supporting surface is provided on the fixed supporting arm, and a serrated second supporting surface is provided on the telescopic arm.
[0022] Because the telescopic arm needs to transfer the angle steel, a serrated second support surface is set on the telescopic arm, and the serrated second support surface is used to support the angle steel. This design can ensure the friction between the telescopic arm and the angle steel, and ensure that the angle steel can be stuck in the telescopic arm during the transfer process, and ensure that the angle steel will not be unable to move from the fixed support plate and the supporting rod due to static friction.
[0023] Optionally, a plurality of supporting rods are provided in the shelf, and an arc-shaped concave supporting surface is provided on the supporting rods.
[0024] The specific function of the concave supporting surface is to support the angle steel. Using the arc-shaped concave supporting surface to support the angle steel can ensure that the angle steel will not slip off from both sides of the supporting rod. At the same time, due to the use of the arc-shaped concave supporting surface, the angle steel can slide on the arc surface, so the telescopic plate can ensure that the angle steel can be smoothly transferred into or out of the supporting rod when transferring the angle steel.
[0025] Optionally, the supporting rods are in parallel.
[0026] The beneficial effects of the present invention are: by arranging shelves, columns and lifting platforms, three-dimensional storage of angle steels is achieved, which occupies a small area, and the angle steels will not be contaminated by accumulated water and oil on the ground during storage. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a schematic diagram of a backpack-type three-dimensional warehouse.
[0028] Figure 2 yes Figure 1 The enlarged schematic diagram of point A in the middle,
[0029] Figure 3 yes Figure 1 The enlarged schematic diagram of point B in the middle is shown in Figure 2.
[0030] Figure 4 yes Figure 1 Enlarged schematic diagram of point C in the middle.
[0031] The reference numerals in the figure are: 1. Roller conveyor; 101. Rotating roller; 2. Cable drum; 3. Lifting cable; 4. Lifting motor; 5. Guide rail; 6. Base; 7. Column; 8. Moving motor; 9. Lifting platform; 901. Fixed support arm; 902. Telescopic arm; 9021. Second supporting surface; 903. Slide rail; 10. Telescopic motor; 11. Shelf; 1101. Support rod; 11011. Supporting surface; 12. Correction pallet; 1201. Groove; 13. Guide wheel. DETAILED DESCRIPTION
[0032] The present invention will be described in detail below with reference to the accompanying drawings.
[0033] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, a backpack-type three-dimensional warehouse includes shelves 11, columns 7, lifting platforms 9, telescopic arms 902, lifting motors 4 and telescopic motors 10. A plurality of cargo bins are arranged on the shelves 11. The columns 7 are arranged on one side of the shelves 11, and there are no less than two columns 7. The two ends of the lifting platform 9 are respectively slidably matched with the two columns 7. The lifting motor 4 is arranged on the lifting platform 9 or on the columns 7. The telescopic arm 902 is slidably set on the lifting platform 9. The telescopic motor 10 is arranged on the lifting platform 9. The telescopic motor 10 is matched with the telescopic arm 902.
[0034] In this backpack-type stereoscopic garage, multiple cargo warehouses are arranged on the shelf 11, and the distance between each cargo warehouse relative to the ground is constantly increasing. The cargo warehouses are arranged on the shelf 11 from low to high relative to the ground. At the same time, a column 7 is set on one side of the shelf 11, and the lifting platform 9 is slidably and adjustably installed on the column 7 through the lifting motor 4. When the lifting motor 4 is working, the lifting platform 9 can rise or fall on the column 7, and a telescopic arm 902 is installed on the lifting platform 9 through the telescopic motor 10. When the telescopic motor 10 is working, the telescopic arm 902 can be extended to the cargo warehouse or the telescopic arm 902 can be retracted from the cargo warehouse to the lifting platform 9, so the telescopic arm 902 can realize the transfer of angle steel between the lifting platform 9 and the cargo warehouse.
[0035] The specific lifting platform 9 is provided with a slide rail 903, the telescopic arm 902 is slidably installed on the slide rail 903, a rack is provided on the telescopic arm 902, and a gear is installed on the telescopic motor 10. When the telescopic motor 10 is working, it can drive the telescopic arm 902 to move along the slide rail 903, thereby realizing the movement of the telescopic arm 902 relative to the slide rail 903, thereby realizing the telescopic arm 902 extending toward the shelf 11 or leaving the shelf 11.
[0036] In summary, the warehouse realizes the three-dimensional storage of angle steel by setting up shelves 11, columns 7 and lifting platforms 9, which occupies a small area and the angle steel will not be contaminated by water and oil on the ground during storage.
[0037] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, it also includes a base 6 and a guide rail 5. The guide rail 5 is set on one side of the shelf 11. The base 6 is slidably set on the guide rail 5. The column 7 is set on the base 6. The base 6 is provided with a moving motor 8.
[0038] Specifically, the mobile motor 8 is provided with a mobile wheel, which is tightly fitted with the guide rail 5. When the mobile wheel rotates, it can drive the base 6 to slide on the guide rail 5. This design is to enable more warehouses to be arranged on the shelf 11, thereby realizing the movable installation of the shelf 11, and thus the guide rail 5 is provided to realize the movable installation of the base 6, so that the lifting platform 9 can move along the guide rail 5 to move the goods on the warehouse.
[0039] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, it also includes a lifting rope 3, and a guide wheel is provided on the lifting platform 9. The lifting platform 9 is slidably matched with the column 7 through the guide wheel. One end of the lifting rope 3 is matched with the shaft of the lifting motor 4, and the other end of the lifting rope 3 is matched with the lifting platform 9.
[0040] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, a roller conveyor is also included, which is arranged on one side of the shelf 11.
[0041] The function of the roller conveyor is to transfer the angle steel to the lifting platform 9 or to transport the angle steel from the lifting platform 9 to another place.
[0042] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, it also includes a correction tray 12, which is set on the roller conveyor, and the gap between the rotating round roller 101 of the roller conveyor and the correction tray 12 is the transmission channel of the angle steel.
[0043] Specifically, the correction pallet 12 is arranged on the roller conveyor. The gap between the correction pallet 12 and the rotating round roller 101 of the roller conveyor is the transmission channel for the angle steel. The correction pallet 12 is arranged on the roller conveyor, which can guide the conveying path of the angle steel and prevent the roller conveyor from deviating when transmitting the angle steel.
[0044] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, a triangular groove 1201 is provided on the correction tray 12 .
[0045] The correction tray 12 is provided with a triangular groove 1201, which is used to accommodate the top corner part of the angle steel. The groove arm of the groove 1201 is used to contact the two edges of the angle steel, and the angle of the top angle of the groove 1201 is greater than 90 degrees. Because the top angle of the angle steel is 90 degrees, the groove 1201 can accommodate the top corner part of the angle steel while ensuring that there is a large gap between the groove 1201 and the angle steel, ensuring that the angle steel will not be stuck in the groove 1201, and at the same time ensuring that the top angle of the angle steel will not be worn when the angle steel is wired.
[0046] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, a fixed support arm 901 is provided on the lifting platform 9, and the fixed support arm 901 and the telescopic arm 902 are in the same plane.
[0047] Because the telescopic arm 902 is movable, and in order to improve the stability of the lifting platform 9 when transporting the angle steel, if the telescopic arm 902 is the only support for the angle steel, then the lifting platform 9 is likely to shake when transporting the angle steel, causing the angle steel to slip. In order to improve the stability of the angle steel during transportation, a fixed support arm 901 fixed to the lifting platform 9 is provided. The fixed support arm 901 is in contact with the angle steel to improve the stability of the angle steel on the telescopic arm 902.
[0048] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, a planar first support surface is provided on the fixed support arm 901 , and a serrated second support surface 9021 is provided on the telescopic arm 902 .
[0049] Because the telescopic arm 902 needs to transfer the angle steel, a serrated second support surface 9021 is set on the telescopic arm 902, and the serrated second support surface 9021 is used to support the angle steel. This design can ensure the friction between the telescopic arm 902 and the angle steel, ensuring that the angle steel can be stuck in the telescopic arm 902 during the transfer process, and ensuring that the angle steel will not be unable to move from the fixed support plate and the supporting rod 1101 due to static friction.
[0050] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, a plurality of supporting rods 1101 are provided in the shelf 11 , and an arc-shaped concave supporting surface 11011 is provided on the supporting rods 1101 .
[0051] The specific function of the concave supporting surface 11011 is to support the angle steel. Using the arc-shaped concave supporting surface 11011 to support the angle steel can ensure that the angle steel will not slip off from both sides of the supporting rod 1101. At the same time, due to the use of the arc-shaped concave supporting surface 11011, the angle steel can slide on the arc surface, so the telescopic plate can ensure that the angle steel can be smoothly transferred into or out of the supporting rod 1101 when transferring the angle steel.
[0052] As attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 And attached Figure 4 As shown, the supporting rods 1101 are in a parallel state.
[0053] The above description is only a preferred embodiment of the present invention and does not limit the scope of patent protection of the present invention. Any equivalent transformation made by using the contents of the present invention specification, directly or indirectly applied in other related technical fields, is also included in the scope of protection of the present invention.
Claims
1. A backpack-type three-dimensional warehouse for lifting and storing angle steel, characterized in that: It includes a shelf, a column, a lifting platform, a telescopic arm, a lifting motor and a telescopic motor. A plurality of cargo bins are arranged on the shelf. The column is set on one side of the shelf, and there are no less than two columns. The two ends of the lifting platform are respectively slidably matched with the two columns. The lifting motor is set on the lifting platform or the column. The telescopic arm is slidably set on the lifting platform. The telescopic motor is set on the lifting platform. The telescopic motor is matched with the telescopic arm. It also includes a roller conveyor, which is arranged on one side of the shelf; It also includes a correction tray, which is arranged on a roller conveyor, and the gap between the rotating round roller of the roller conveyor and the correction tray serves as a transmission channel for the angle steel; The correction tray is provided with a triangular groove; the groove is used to accommodate the top corner portion of the angle steel, the groove arm is used to contact the two edges of the angle steel, and the angle of the top angle of the groove is greater than 90 degrees; The lifting platform is provided with a fixed support arm, and the fixed support arm and the telescopic arm are in the same plane; The lifting platform is provided with a slide rail, the telescopic arm is slidably installed on the slide rail, a rack is provided on the telescopic arm, and a gear is installed on the telescopic motor. When the telescopic motor is working, it drives the telescopic arm to move along the slide rail; The fixed support arm and the telescopic rod are used to contact the angle steel or steel pipe.
2. The backpack-type high-bay warehouse for lifting and storing angle steels according to claim 1, characterized in that: It also includes a base and a guide rail, wherein the guide rail is arranged on one side of the shelf, the base is slidably arranged on the guide rail, the column is arranged on the base, and a moving motor is arranged on the base.
3. The backpack-type high-bay warehouse for lifting and storing angle steels according to claim 1, characterized in that: It also includes a lifting cable, a guide wheel is provided on the lifting platform, the lifting platform is slidably matched with the column through the guide wheel, one end of the lifting cable is matched with the shaft of the lifting motor, and the other end of the lifting cable is matched with the lifting platform.
4. The backpack-type high-bay warehouse for lifting and storing angle steels according to claim 1, characterized in that: The fixed support arm is provided with a planar first support surface, and the telescopic arm is provided with a serrated second support surface.
5. The backpack-type high-bay warehouse for lifting and storing angle steels according to claim 1, characterized in that: A plurality of supporting rods are arranged in the shelf, and an arc-shaped concave supporting surface is arranged on the supporting rods.
6. The backpack-type high-bay warehouse for lifting and storing angle steels according to claim 5, characterized in that: The supporting rods are in a parallel state.
Citation Information
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