Automatic alignment bundling auxiliary tool
By designing automatic alignment bundling auxiliary tools, the positioning boom, positioning forearm, thread sink and 90° marking disk are used to solve the problems of twisting and uneven stress during the baling of aluminum alloy coils, and the improvement of standardization and aesthetics are achieved, simplifying operation and improving baling efficiency.
Patent Information
- Application Number
- CN202421599992.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-07-08
AI Technical Summary
At this stage, there are problems such as twisting and uneven stress during the baling of aluminum alloy coils, which lead to the fall off or breaking of the packaging material. The complex operation requires the cooperation of two people, which increases the risk of injury and time loss of people, and is also poor in aesthetics.
An automatic alignment bundling auxiliary tool is designed, including positioning the upper arm, positioning the forearm, line sinker and 90° marking disk. By observing the overlap between the line sinker and the vertical marking, the tool placement angle is determined to ensure that the steel belt/plastic steel belt is horizontal and vertical after bundling.
The standardization and aesthetics of baling operations have been achieved, the risk of injury and time loss of personnel is reduced, the operation is simplified, and it is suitable for aluminum coils of different coil diameters, improving the baling efficiency and compliance rate.
Smart Images

Figure CN222905938U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of aluminum alloy coil bundling operation and packaging, and in particular relates to an automatic alignment bundling auxiliary tool. Background Art
[0002] Packaging is the most direct symbol and brand of a company’s image, and the quality of packaging is the most direct indicator of whether aluminum coils will be damaged during loading, unloading, transportation and storage. At present, there are still many quality disputes caused by packaging problems, which have a great impact on the company’s product brand. Most packaging is damaged during transportation, causing customers’ first impression of the company’s products to plummet. The steel strap / plastic strap used to fasten the packaging material is the direct link between the packaging materials. The quality of the operation directly affects the continuity of the material’s protective performance, and the distortion after bundling also has a great impact on the company.
[0003] At present, steel strapping / plastic strapping is used to improve the fit between packaging materials and aluminum coils. When the strapping is skewed or pulled after bundling, the uneven force on the steel strapping / plastic strapping may cause the packaging materials to fall off. In severe cases, the uneven force may cause the strapping to break, causing safety problems for the aluminum coils. Secondly, in order to ensure that the steel strapping / plastic strapping meets the requirements and is uniform and beautiful during bundling, two people usually operate at the same time, which may cause injuries. However, if one person operates, he will have to go back and forth between the two end faces to adjust the angle, resulting in a lot of time loss. Furthermore, most operators have different perceptions of angles, so the steel strapping / plastic strapping is not in line with the standard after bundling, which has a great impact on the appearance. Utility Model Content
[0004] The utility model aims to provide an automatic alignment bundling auxiliary tool to solve the above problems.
[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0006] An automatic alignment baling auxiliary tool comprises a positioning arm, a positioning arm, a plumb line and a 90° marking disk, wherein the positioning arms comprise at least three and are arranged radially, positioning arms are respectively arranged at the free ends of the positioning arms, the positioning arms are in an "L" shape, the cross bar of the positioning arm is perpendicular to a clamping plate, the cross bar of the positioning arm is fixedly connected to the positioning arm, the clamping plate of the positioning arm is parallel to the positioning arm, a handle is arranged at the fixed end of one of the positioning arms, a connecting rod is arranged between the handle and the positioning arm, the connecting rod is perpendicular to the positioning arm, a plumb line is arranged on the bottom surface of the connecting rod, a 90° marking disk is arranged between the fixed ends of the other two positioning arms, and the 90° marking disk is parallel to the axis of the positioning arm.
[0007] To further implement the present utility model, the included angle between the positioning large arms is 60°, and the included angle between the positioning small arms is 60°.
[0008] To further implement the present utility model, the positioning large arm includes a vertical arm and inclined arms symmetrically arranged at the bottom end of the vertical arm. A handle is arranged on the vertical arm, and a 90° marking disc is arranged between the inclined arms.
[0009] To further implement the present utility model, the positioning large arms and the positioning small arms are made of stainless steel square tubes.
[0010] To further implement the present utility model, the main line of the plumb bob is made of nylon material.
[0011] The beneficial effects of the present utility model compared with the prior art are as follows:
[0012] The positioning small arm of the present utility model clamps the present utility model inside the core, thereby fixing the present utility model to the aluminum coil. A 90° marking disc is arranged between the included angles of the positioning large arms. By observing the coincidence degree of the plumb bob and the vertical marking line, the placement angle of the tool is determined to meet the requirement that the steel belt / plastic steel belt is horizontal and vertical after bundling.
[0013] The materials required for the present utility model are simple, easy to obtain, and low in cost. The installation and disassembly are simple and easy to implement; the gravity effect is fully utilized to ensure the standard of the bundling operation; the size of the positioning small arm can be determined according to the different coil diameters of the aluminum coil, which can meet the bundling operations with different coil diameter requirements, conform to the actual on-site production, and improve the aesthetics after bundling; single-person independent operation can be realized without frequent adjustment, which greatly alleviates the shortage of personnel at the packaging site. The bundling efficiency and compliance rate will be significantly improved, the work efficiency is improved, and the number of operators and safety risks are reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural diagram of the present utility model;
[0015] Figure 2 is Figure 1 the right view of;
[0016] Figure 3 is a three-dimensional structural diagram of the present utility model;
[0017] Figure 4 is a schematic working state diagram of the present utility model;
[0018] The meanings of the reference numerals are as follows: 1, positioning large arm; 1-1, vertical arm; 1-2, inclined arm; 2, positioning small arm; 2-1, cross bar; 2-2, clamping plate; 3, plumb bob; 4, 90° marking disc; 5, handle; 6, connecting rod; 7, aluminum coil; 8, core. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] The present utility model will be further described below in conjunction with the accompanying drawings and specific embodiments.
[0020] As Figures 1-3 shown, an automatic alignment bundling auxiliary tool includes a positioning boom 1, a positioning forearm 2, a plumb bob 3, a 90° scale disk 4, and a handle 5. The positioning boom 1 includes at least three and is arranged radially. The included angle between the positioning booms 1 is 60°. The positioning boom 1 includes a vertical arm 1-1 and inclined arms 1-2 symmetrically arranged at the bottom end of the vertical arm 1-1. The free ends of the positioning booms 1 are respectively provided with positioning forearms 2. The included angle between the positioning forearms 2 is 60°. The positioning forearm 2 is in an "L" shape. The cross bar 2-1 of the positioning forearm 2 is perpendicular to the clamping plate 2-2. The cross bar 2-1 of the positioning forearm 2 is fixedly connected to the positioning boom 1. The clamping plate 2-2 of the positioning forearm 2 is parallel to the positioning boom 1. The fixed end of the vertical arm 1-1 is provided with a handle 5. A connecting rod 6 is arranged between the handle 5 and the positioning boom 1. The connecting rod 6 is perpendicular to the positioning boom 1. A plumb bob 3 is arranged on the bottom surface of the connecting rod 6. A 90° scale disk 4 is arranged between the fixed ends of the inclined arms 1-2. The 90° scale disk 4 is parallel to the axis of the positioning boom 1.
[0021] As Figure 4 shown, select the device of the present utility model with a suitable size of the positioning forearm 2 according to the diameter of the aluminum coil, and ensure that the length of the cross bar 2-1 of the positioning forearm 2 is not less than 1 / 2 of the diameter of the aluminum coil. After selecting the device, insert the device of the present utility model into the core 8 of the aluminum coil 7, so that the positioning boom 1 penetrates into the core 8. The cross bar 2-1 of the positioning forearm 2 fits against the inner wall of the core 8. The clamping plate 2-2 fits against the outermost side of the aluminum coil 7. The 90° included angle between the cross bar 2-1 and the clamping plate 2-2 is stuck at the junction of the aluminum coil 7 and the core 8, and the installation is completed.
[0022] By observing the plumb bob 3 and the vertical scale on the 90° scale disk 4, when the plumb bob 3 coincides with the vertical scale of the 90° scale 4, it is determined that the placement angle of the device of the present utility model is correct, meeting the requirement that the steel belt / plastic steel belt is horizontal and vertical after bundling, and then bundling can be started.
Claims
1. An automatic alignment bundling auxiliary tool, characterized in that: The invention comprises a positioning arm (1), a positioning arm (2), a plumb line (3), a 90° marking disk (4) and a handle (5), wherein the positioning arm (1) comprises at least three positioning arms (2) arranged radially, and the free ends of the positioning arm (1) are respectively provided with positioning arms (2), the positioning arms (2) are in an "L" shape, the cross bar (2-1) of the positioning arms (2) is perpendicular to the clamping plate (2-2), the cross bar (2-1) of the positioning arms (2) is fixedly connected to the positioning arm (1), and the positioning arms (2) are provided with a plurality of positioning arms (4) arranged radially. The clamping plate (2-2) of (2) is parallel to the positioning arm (1), a handle (5) is arranged at the fixed end of one of the positioning arms (1), a connecting rod (6) is arranged between the handle (5) and the positioning arm (1), the connecting rod (6) is perpendicular to the positioning arm (1), a plumb line (3) is arranged on the bottom surface of the connecting rod (6), and a 90° marking disk (4) is arranged between the fixed ends of the other two positioning arms (1), and the 90° marking disk (4) is parallel to the axis of the positioning arm (1).
2. The automatic alignment baling aid according to claim 1, characterized in that: The angle between the positioning arms (1) is 60°, and the angle between the positioning arms (2) is 60°.
3. The automatic alignment baling aid according to claim 1 or 2, characterized in that: The positioning arm (1) comprises a vertical arm (1-1) and an inclined arm (1-2) symmetrically arranged at the bottom end of the vertical arm (1-1); a handle (5) is arranged on the vertical arm (1-1); and a 90° marking disk (4) is arranged between the inclined arms (1-2).