Multifunctional multi-position integrated material box
By designing a guiding mechanism and a sensing plate system on the material box, the problem of the small diameter of the existing material box insertion hole, which makes it difficult for forklifts to insert, is solved, enabling accurate insertion and handling by forklifts, and improving efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-04-14
AI Technical Summary
The existing material box mechanism has a small insertion hole diameter, which makes it difficult for forklift forks to align, resulting in the forklift having difficulty effectively inserting and moving the material box.
Design a multi-functional, multi-position integrated material box with a guiding mechanism including a rotating base and a sensing plate. The sensor detects the position of the forks and indicates that the forks should be accurately inserted. The rotating base and the sensing plate work together to ensure that the forklift can accurately insert the material box.
This technology enables forklift forks to accurately align and insert into the material box, improving the handling efficiency and safety of the material box and preventing collision damage.
Smart Images

Figure CN224117852U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of machine tool material boxes, and in particular to a multi-functional, multi-position integrated material box. Background Technology
[0002] The multi-functional, multi-position integrated material box structure for machine tools is a design used to improve the automation level and work efficiency of machine tools. In this structure, the automatic conveying of the material box is achieved through linear guide rails, thereby realizing the transfer function of multiple plate-shaped objects. The high-precision linear motion provided by the linear guide rails ensures the accuracy of the material box's position each time it moves.
[0003] Existing material box structures are usually placed on the drive components of linear guides, making it easy to pick up the material box structure from the conveyor mechanism. A common method is to transport the material box structure by an external forklift. However, the diameter of the insertion holes on the existing material box mechanism is small, which makes it difficult for the forklift forks to align. Therefore, we propose a multi-functional, multi-position integrated material box to solve this problem. Utility Model Content
[0004] To address the aforementioned problems, this utility model proposes a multifunctional, multi-position integrated material box, which can more accurately solve the problems described above.
[0005] This utility model is achieved through the following technical solution:
[0006] This utility model proposes a multi-functional, multi-position integrated material box, including a machine tool mounting frame. The machine tool mounting frame is equipped with a linear guide rail, which includes two driving components and a material box body. The material box body is placed on top of the two corresponding driving components. The material box body includes two side frame plates. One side of each side frame plate is fixedly connected to the same side panel through multiple arc-shaped pieces. One side of each side panel has two insertion holes, which are used for external forklifts to insert and transport the material box body. One side of each side panel is equipped with two guiding mechanisms, which are used to guide the external forklifts into the insertion holes.
[0007] Furthermore, the guiding mechanism includes a rotating seat, which is fixedly connected to one side of the corresponding side panel. A rotating plate is rotatably mounted on the rotating seat, and the rotating plate is used to cover the corresponding insertion hole. Two rotating plates located on the same side are symmetrically arranged.
[0008] Furthermore, an upper sensing plate and a lower sensing plate are horizontally slidably installed on the top and bottom of one side of the rotating plate. A sensor is provided on one side of both the upper and lower sensing plates, and a sensor light is provided on the front side of both the upper and lower sensing plates.
[0009] Furthermore, multiple round rods are fixedly installed on one side of the rotating plate, and several round grooves are opened on one side of both the upper and lower sensing plates. The round rods are slidably installed in the corresponding round grooves. Multiple buffer springs are fixedly connected between the upper and lower sensing plates and the corresponding rotating plates, and the buffer springs are wound around the outside of the corresponding round rods.
[0010] Furthermore, a square groove is provided on one side of the rotating plate, and an inner sensing plate is slidably installed in the square groove. A second sensing light is provided on the front side of the rotating plate, and a second sensor is provided on one side of the inner sensing plate. The inner sensing plate is electrically connected to the corresponding second sensing light.
[0011] Furthermore, a plurality of support springs are fixedly connected to one side of the inner wall of the square groove, and one end of the support spring is fixedly connected to one side of the corresponding inner sensing plate.
[0012] Furthermore, a plurality of strip-shaped holes are provided on one side of the side panel. The strip-shaped holes are located above or below the corresponding insertion holes, and the strip-shaped holes are used for the upper and lower sensing plates to pass through the corresponding side panel.
[0013] Furthermore, the two side frame plates are fixedly connected by connecting rods, and multiple fixing rods are fixedly installed between the two side panels. A beaded plate is fixedly sleeved on the outside of the fixing rods, and the multiple fixing rods and beaded plates cooperate to support the plate material.
[0014] The beneficial effects of this utility model are as follows:
[0015] When the forks touch the upper or lower sensor plate, sensor one converts the touch signal into an electrical signal, causing sensor light one to light up, thus indicating that the forks are moving up or down. When the forks touch the inner sensor plate, sensor one converts the touch signal into an electrical signal, causing sensor light two to light up, indicating that the forks are aligned with the insertion hole. This helps guide the forks through the insertion hole, making it easier for external forklifts to insert and transport the material box body. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of a multi-functional, multi-position integrated material box proposed in this utility model;
[0017] Figure 2 for Figure 1 A magnified view of part A in the middle;
[0018] Figure 3 This is a first-view perspective three-dimensional structural diagram of the guiding mechanism of a multi-functional multi-position integrated material box proposed in this utility model.
[0019] Figure 4 This is a two-dimensional structural diagram of the guiding mechanism of a multifunctional multi-position integrated material box proposed in this utility model, viewed from a second perspective.
[0020] The attached figures are labeled as follows:
[0021] In the diagram: 1. Machine tool mounting frame; 2. Drive unit; 3. Material box body; 4. Side frame plate; 5. Side panel; 6. Socket hole; 7. Rotary seat; 8. Rotating plate; 9. Upper sensor plate; 10. Lower sensor plate; 11. Sensor light one; 12. Round rod; 13. Buffer spring; 14. Inner sensor plate; 15. Sensor light two; 16. Strip hole; 17. Bead plate. Detailed Implementation
[0022] To more clearly and completely illustrate the technical solution of this utility model, the following description, in conjunction with the accompanying drawings, will further explain this utility model.
[0023] Please refer to Figures 1-4 This utility model proposes a multi-functional, multi-position integrated material box, including a machine tool mounting frame 1, on which a linear guide rail is provided. The linear guide rail includes two driving components 2 and a material box body 3. The material box body 3 is placed on top of the corresponding two driving components 2. The material box body 3 includes two side frame plates 4. One side of the side frame plate 4 is fixedly connected to the same side panel 5 through multiple arc-shaped pieces. Two insertion holes 6 are opened on one side of the side panel 5. The multiple insertion holes 6 are used for external forklifts to insert and transport the material box body 3. Two guiding mechanisms are provided on one side of the side panel 5. The guiding mechanisms are used to guide the external forklifts into the insertion holes 6.
[0024] In this embodiment, the guiding mechanism includes a rotating seat 7, which is fixedly connected to one side of the corresponding side panel 5. A rotating plate 8 is rotatably mounted on the rotating seat 7, and the rotating plate 8 is used to cover the corresponding insertion hole 6. The two rotating plates 8 located on the same side are symmetrically arranged.
[0025] In this embodiment, an upper sensing plate 9 and a lower sensing plate 10 are horizontally slidably installed on the top and bottom of one side of the rotating plate 8. A sensor is provided on one side of the upper sensing plate 9 and the lower sensing plate 10, and a sensor light 11 is provided on the front side of the upper sensing plate 9 and the lower sensing plate 10.
[0026] In this embodiment, a plurality of round rods 12 are fixedly installed on one side of the rotating plate 8. A plurality of round grooves are opened on one side of the upper sensing plate 9 and the lower sensing plate 10. The round rods 12 are slidably installed in the corresponding round grooves. A plurality of buffer springs 13 are fixedly connected between the upper sensing plate 9 and the lower sensing plate 10 and the corresponding rotating plate 8. The buffer springs 13 are wound around the outside of the corresponding round rods 12.
[0027] In this embodiment, a square groove is provided on one side of the rotating plate 8, and an inner sensing plate 14 is slidably installed in the square groove. A second sensing lamp 15 is provided on the front side of the rotating plate 8, and a second sensor is provided on one side of the inner sensing plate 14. The inner sensing plate 14 is electrically connected to the corresponding second sensing lamp 15.
[0028] In this embodiment, a plurality of support springs are fixedly connected to one side of the inner wall of the square groove, and one end of the support spring is fixedly connected to one side of the corresponding inner sensing plate 14.
[0029] It should be noted that sensors are provided on the upper sensor plate 9, the lower sensor plate 10 and the inner sensor plate 14. The sensors convert the contact signal with the forks into electrical signals, thereby causing the sensor light 11 or the sensor light 2 15 to light up, indicating the different states of the forks, which helps guide the forks through the insertion hole 6.
[0030] In this embodiment, a plurality of strip holes 16 are provided on one side of the side panel 5. The strip holes 16 are located above or below the corresponding insertion holes 6. The strip holes 16 are used for the upper sensing plate 9 and the lower sensing plate 10 to pass through the corresponding side panel 5. The strip holes 16 are used for the upper sensing plate 9 and the lower sensing plate 10 to pass through the side panel 5, so that the upper sensing plate 9 and the lower sensing plate 10 can be stored in the material box body 3, and avoid the guide mechanism from colliding with other parts of the machine tool and causing damage during the transportation of the material box body 3.
[0031] In this embodiment, the two side frame plates 4 are fixedly connected by connecting rods, and multiple fixing rods are fixedly installed between the two side panels 5. A beaded plate 17 is fixedly sleeved on the outside of the fixing rods. The multiple fixing rods and the beaded plate 17 cooperate to support the plate material.
[0032] The working principle of this utility model is as follows: Initially, the rotating plate 8 is flush with the side panel 5, the inner sensing plate 14 is housed in the insertion hole 6, and the upper sensing plate 9 and lower sensing plate 10 pass through the strip hole 16 and are housed in the material box body 3, so as to avoid the guide mechanism from colliding with other parts of the machine tool and causing damage during the transportation of the material box body 3; when it is necessary to use an external forklift to move the material box body 3, the multiple rotating plates 8 are rotated so that they form a 90-degree angle with the side panel 5, and then the two forks of the forklift are controlled to move to the middle of one side of the material box body 3, at which time the two forks are located between the two rotating plates 8. The two forks move to opposite sides and approach the insertion hole 6. If the forks touch the upper sensor plate 9 and the lower sensor plate 10, sensor one converts the touch signal into an electrical signal, causing sensor light one 11 to light up, thus indicating that the forks move down or up. When the forks touch the inner sensor plate 14, sensor one converts the touch signal into an electrical signal, causing sensor light two 15 to light up, thus indicating that the forks are aligned with the insertion hole 6. Finally, the forks move in the front-back direction and pass through the two insertion holes 6, so that the forks pass through the material box body 3 and can lift the material box body 3 for handling operations.
[0033] Of course, there may be other implementations of this utility model. Based on this implementation, other implementations obtained by those skilled in the art without any creative effort are all within the scope of protection of this utility model.
Claims
1. A multi-functional, multi-position integrated material box, comprising a machine tool mounting frame, wherein a linear guide rail is provided on the machine tool mounting frame, and the linear guide rail includes two driving components, characterized in that, The device includes a material box body, which is placed on top of two corresponding drive components. The material box body includes two side frame plates. One side of each side frame plate is fixedly connected to the same side panel through multiple arc-shaped pieces. One side of each side panel has two insertion holes, which are used for external forklifts to insert and transport the material box body. Two guide mechanisms are provided on one side of each side panel to guide the external forklifts into the insertion holes.
2. The multi-functional, multi-position integrated material box according to claim 1, characterized in that, The guiding mechanism includes a rotating seat, which is fixedly connected to one side of the corresponding side panel. A rotating plate is rotatably mounted on the rotating seat, and the rotating plate is used to cover the corresponding insertion hole. Two rotating plates located on the same side are symmetrically arranged.
3. The multi-functional multi-position integrated material box according to claim 2, characterized in that, The upper and lower sensing plates are horizontally slidably installed on the top and bottom of one side of the rotating plate. A sensor is provided on one side of the upper and lower sensing plates, and a sensor light is provided on the front side of the upper and lower sensing plates.
4. A multi-functional, multi-position integrated material box according to claim 3, characterized in that, Multiple round rods are fixedly installed on one side of the rotating plate. Several round grooves are opened on one side of the upper and lower sensing plates. The round rods are slidably installed in the corresponding round grooves. Multiple buffer springs are fixedly connected between the upper and lower sensing plates and the corresponding rotating plates. The buffer springs are wrapped around the outside of the corresponding round rods.
5. A multi-functional, multi-position integrated material box according to claim 2, characterized in that, A square groove is provided on one side of the rotating plate, and an inner sensing plate is slidably installed in the square groove. A second sensing light is provided on the front side of the rotating plate, and a second sensor is provided on one side of the inner sensing plate. The inner sensing plate is electrically connected to the corresponding second sensing light.
6. A multi-functional, multi-position integrated material box according to claim 5, characterized in that, Multiple support springs are fixedly connected to one side of the inner wall of the square groove, and one end of each support spring is fixedly connected to one side of the corresponding inner sensing plate.
7. A multi-functional, multi-position integrated material box according to claim 1, characterized in that, The side panel has multiple strip holes on one side, which are located above or below the corresponding insertion holes. The strip holes are used for the upper and lower sensing plates to pass through the corresponding side panel.
8. A multi-functional, multi-position integrated material box according to claim 1, characterized in that, The two side frame plates are fixedly connected by connecting rods, and multiple fixing rods are fixedly installed between the two side panels. A beaded plate is fixedly sleeved on the outside of the fixing rods, and the multiple fixing rods and beaded plates cooperate to support the plate material.