Multifunctional flexible loading platform based on multi-variety guidance cabin

By combining the rotating support block and the sliding table, the problem that existing loading platforms cannot adapt to different structural forms of guidance cabins is solved, enabling flexible assembly of multiple types of guidance cabins and improving the utilization rate and production efficiency of the assembly platform.

CN121514852APending Publication Date: 2026-02-13NORTH NAVIGATION CONTROL TECH
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Patent Information

Application Number
CN202511830288.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-05
Publication Date
2026-02-13

AI Technical Summary

Technical Problem

Existing flexible loading platforms are not suitable for guidance modules with different structural forms, resulting in insufficient manufacturing flexibility and adaptability.

Method used

A multifunctional flexible loading platform was designed, which adopts a combination structure of rotating blocks and sliding tables. By freely switching the rotating blocks and freely combining the sliding tables, the assembly requirements of guidance cabins with different structural forms can be realized, including the combined use of base plates, rotating blocks, sliding tables and slide rails.

Benefits of technology

It enables flexible assembly of various types of guidance modules, improves the utilization rate of the assembly platform, saves manufacturing costs, and solves the problem of tight factory space.

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Abstract

The invention relates to a multifunctional flexible loading platform based on multi-variety guidance cabins, and belongs to the technical field of guidance cabin assembly. The device comprises a base plate (6), a rear rotating supporting block (1), a rotating supporting block I (2), a rotating supporting block II (3), a rotating supporting block III (4), a front rotating supporting block (5), a sliding table I (7), a sliding table II (8), a sliding table III (9) and a sliding rail (10). The problem that a flexible loading platform is not suitable for guidance cabins of different structural forms is solved, and the assembly requirements of various guidance cabins of different structural forms can be met through free switching of the rotary supporting blocks and free combination of the sliding tables. And switching of the rotary supporting blocks and combination of the sliding tables are simple and convenient, and quick production changing can be achieved.
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Description

Technical Field

[0001] This invention belongs to the field of guidance module assembly technology, specifically relating to a multifunctional flexible loading platform based on multiple types of guidance modules. Background Technology

[0002] As the manufacturing industry moves towards automation and intelligence, assembly lines are also iterating towards automation. Currently, the structure of guidance modules is not limited to two sections: a front section and a rear section. Some guidance modules consist of three sections: a front section, a middle section, and a rear section. Current flexible loading platforms for guidance modules are only suitable for guidance module products of the same structure but different calibers, and cannot simultaneously meet the assembly needs of products with different structural forms, resulting in low manufacturing flexibility and adaptability.

[0003] To address the aforementioned problems, this invention proposes a multifunctional flexible loading platform based on multiple types of guidance modules. This platform is not limited to assembling guidance module products of the same series. Its unique platform tray structure makes the operating platform more flexible and adaptable to the assembly needs of different series of guidance modules. Summary of the Invention

[0004] (a) Technical problems to be solved The technical problem to be solved by the present invention is how to provide a multifunctional flexible loading platform based on multiple types of guidance modules, so as to solve the problem that existing flexible loading platforms cannot be applied to guidance modules with different structural forms.

[0005] (II) Technical Solution To solve the above-mentioned technical problems, the present invention proposes a multifunctional flexible loading platform based on a multi-variety guidance cabin, comprising: a base plate 6, a rear rotating support block 1, a rotating support block I 2, a rotating support block II 3, a rotating support block III 4, a front rotating support block 5, a slide table I 7, a slide table II 8, a slide table III 9, and a slide rail 10. The rear rotating support block 1 is fixed above the rear end of the base plate 6, and the corresponding area is set as a fixed support area; The front end of the substrate 6 is provided with a slide rail 10. The slide table Ⅲ9, slide table Ⅱ8 and slide table Ⅰ7 are arranged sequentially on the slide rail 10 from front to back. The three slide tables are configured to be able to move freely along the slide rail 10, and the corresponding moving area is set as a moving support area. The fixed support area is used to support the rear compartment of the guidance module, and the movable support area is used to support the middle and front compartments of the guidance module. The rotating support block I2 and rotating support block II3 are mounted on slide table I7, the rotating support block III4 is mounted on slide table II8, and the front rotating support block 5 is mounted on slide table III9; The slide table II8 is provided with insertion holes II13 and insertion holes I12 at its front and rear ends, respectively. The slide table I7 is provided with a insertion pin I11 at its front end, which is used to cooperate with the insertion hole I12 at the rear end of the slide table II8 to combine the slide table I7 and the slide table II8. The rear end of the slide table Ⅲ9 is provided with a plug-in pin Ⅱ14, which is used to cooperate with the plug-in hole Ⅱ13 at the front end of the slide table Ⅱ8 to combine the slide table Ⅱ8 and the slide table Ⅲ9.

[0006] Among them, the various types of guidance modules are respectively designated as Guidance Module 1 and Guidance Module 2; The guidance module 1 is a guidance module consisting of two sections: a front module and a rear module. When the device platform is assembled with guidance compartment 1, slide table I7 and slide table II8 are combined, and the front compartment of the product is supported by the joint action of rotating support block I2 and rotating support block III4. The guidance module 2 is a guidance module consisting of three sections: the front module, the middle module, and the rear module. When the device platform is assembled with guidance compartment 2, slide II 8 and slide III 9 are combined. The middle compartment of the product is supported by rotating support block I 2 and rotating support block II 3 on slide I 7, and rotating support block III 4 and front rotating support block 5 are used to support the front compartment of the product.

[0007] When the device platform is assembled with the guidance cabin 1, the insertion pin I11 is lifted upward and the slide I7 is pulled forward so that the insertion pin I11 is inserted into the insertion hole I12, and the slide I7 and the slide II8 are combined together. Rotate rotating block II3 outward by 90° around its rotating shaft II16. At this time, the rear rotating block 1 supports the rear compartment, and rotating blocks I2 and III4 support the front compartment. Pull the slide I7 and slide II8 assembly to complete the docking of the front and rear compartments.

[0008] When assembling the guidance compartment 2 on the device platform, the insertion pin II14 is lifted upwards, and the slide III9 is ​​pulled backwards to make the insertion pin II14 engage in the insertion hole II13, so that the slides II8 and III9 are combined together. At this time, the rear rotating support block 1 supports the rear compartment section, the rotating support block I2 and the rotating support block II3 support the middle compartment section, and the rotating support block III4 and the front rotating support block 5 support the front compartment section. The slide I7 is pulled to complete the docking assembly of the middle compartment and the rear compartment. The combination of slides II8 and III9 is ​​pulled to complete the docking assembly of the front compartment and the middle compartment.

[0009] The rear rotating block 1 is configured to rotate 90° around its upper rotating shaft Ⅲ17 to change the support surface.

[0010] The rotating block I2 is equipped with a support wheel 18. The rotating block I2 can rotate 90° around its pivot I15, thereby allowing the support wheel to be replaced and the support height to be changed to accommodate guidance cabins of different diameters.

[0011] (III) Beneficial Effects This invention proposes a multifunctional flexible loading platform based on multiple types of guidance cabins. Through the free switching of rotating blocks and the free combination of sliding tables, it can meet the assembly requirements of multiple types of guidance cabins with different structural forms. Furthermore, the switching of rotating blocks and the combination of sliding tables are simple and convenient, allowing for rapid production changeovers.

[0012] This invention is applicable to the assembly of guidance modules of various types and structures. A single production line can assemble guidance modules of various types, which improves the utilization rate of the assembly platform, saves the manufacturing cost of the guidance module assembly platform, and also solves the problem of tight factory space. Attached Figure Description

[0013] Figure 1 This is a front view of the loading platform of the present invention; Figure 2 This is a top view of the loading platform of the present invention; Figure 3 This is a schematic diagram of the slide rail and slide table of the present invention; Figure 4 This is a schematic diagram of the slide table I of the present invention; Figure 5 This is a schematic diagram of the support structure behind the loading platform of the present invention; Figure 6 This is an isometric view of the loading platform of the present invention; Figure 7 This is a schematic diagram of the product series 1 loaded on the platform of the present invention; Figure 8 This is a schematic diagram of the product series 2 loaded on the platform of the present invention; Figure 9 This is a schematic diagram of the rotating support block structure of the present invention. Detailed Implementation

[0014] To make the objectives, contents, and advantages of the present invention clearer, the specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples.

[0015] This embodiment provides a multifunctional flexible loading platform based on a multi-variety guidance cabin, including: a base plate 6, a rear rotating support block 1, a rotating support block I 2, a rotating support block II 3, a rotating support block III 4, a front rotating support block 5, a slide table I 7, a slide table II 8, a slide table III 9, and a slide rail 10. The rear rotating support block 1 is fixed above the rear end of the base plate 6, and the corresponding area is set as a fixed support area; The front end of the substrate 6 is provided with a slide rail 10. The slide table Ⅲ9, slide table Ⅱ8 and slide table Ⅰ7 are arranged sequentially on the slide rail 10 from front to back. The three slide tables are configured to be able to move freely along the slide rail 10, and the corresponding moving area is set as a moving support area. The fixed support area is used to support the rear compartment of the guidance module, and the movable support area is used to support the middle and front compartments of the guidance module. The rotating support block I2 and rotating support block II3 are mounted on slide table I7, the rotating support block III4 is mounted on slide table II8, and the front rotating support block 5 is mounted on slide table III9; The slide table II8 is provided with insertion holes II13 and insertion holes I12 at its front and rear ends, respectively. The slide table I7 is provided with a insertion pin I11 at its front end, which is used to cooperate with the insertion hole I12 at the rear end of the slide table II8 to combine the slide table I7 and the slide table II8. The rear end of the slide table Ⅲ9 is provided with a plug-in pin Ⅱ14, which is used to cooperate with the plug-in hole Ⅱ13 at the front end of the slide table Ⅱ8 to combine the slide table Ⅱ8 and the slide table Ⅲ9.

[0016] Among them, the various types of guidance modules are respectively designated as Guidance Module 1 and Guidance Module 2; The guidance module 1 is a guidance module consisting of two sections: a front module and a rear module. When the device platform is assembled with guidance compartment 1, slide table I7 and slide table II8 are combined, and the front compartment of the product is supported by the joint action of rotating support block I2 and rotating support block III4. The guidance module 2 is a guidance module consisting of three sections: the front module, the middle module, and the rear module. When the device platform is assembled with guidance compartment 2, slide II 8 and slide III 9 are combined. The middle compartment of the product is supported by rotating support block I 2 and rotating support block II 3 on slide I 7, and rotating support block III 4 and front rotating support block 5 are used to support the front compartment of the product.

[0017] When the device platform is assembled with the guidance cabin 1, the insertion pin I11 is lifted upward and the slide I7 is pulled forward so that the insertion pin I11 is inserted into the insertion hole I12, and the slide I7 and the slide II8 are combined together. Rotate rotating block II3 outward by 90° around its rotating shaft II16. At this time, the rear rotating block 1 supports the rear compartment, and rotating blocks I2 and III4 support the front compartment. Pull the slide I7 and slide II8 assembly to complete the docking of the front and rear compartments.

[0018] When assembling the guidance compartment 2 on the device platform, the insertion pin II14 is lifted upwards, and the slide III9 is ​​pulled backwards to make the insertion pin II14 engage in the insertion hole II13, so that the slides II8 and III9 are combined together. At this time, the rear rotating support block 1 supports the rear compartment section, the rotating support block I2 and the rotating support block II3 support the middle compartment section, and the rotating support block III4 and the front rotating support block 5 support the front compartment section. The slide I7 is pulled to complete the docking assembly of the middle compartment and the rear compartment. The combination of slides II8 and III9 is ​​pulled to complete the docking assembly of the front compartment and the middle compartment.

[0019] The rear rotating block 1 is configured to rotate 90° around its upper rotating shaft Ⅲ17 to change the support surface.

[0020] The rotating block I2 is equipped with a support wheel 18. The rotating block I2 can rotate 90° around its pivot I15, thereby allowing the support wheel to be replaced and the support height to be changed to accommodate guidance cabins of different diameters.

[0021] The mobile support area adopts a design of rotating blocks and support wheels. The front compartment can rotate around the support wheel axis, which facilitates the alignment of the two compartments when docking. The fixed support area adopts a structure of rotating blocks and silicone rubber pads. The silicone rubber pads can not only protect the surface coating of the compartment from being scratched, but also prevent the compartment from rotating radially when tightening the docking screws due to the friction between the pads and the compartment.

[0022] This multi-functional flexible loading platform features a non-powered transmission system. The base plate is made of PVC board, which boasts excellent chemical stability, high hardness, high strength, reliable insulation, and is non-deformable and easy to process. Support components and guide rails are made of aluminum, resulting in an attractive appearance and lightweight design.

[0023] The rotating support block spring pin in the movable support area is made of Q235 steel and is connected to the rotating support block through two oil-free brass bushings. When a changeover is required, the operator pushes the rotating support block along the axis to compress the spring, causing the positioning pin to separate from the positioning pin hole. While continuously pushing the rotating support block axially, the operator also presses radially, causing the rotating support block to rotate around the spring pin. The positioning pin then rotates 90° along the rotating guide groove. After the rotation is complete, the operator stops pressing, the compressed spring returns to its original position, and the positioning pin inserts into the positioning pin hole, completing the changeover operation.

[0024] By rationally designing the structure of each rotating support block, quick and precise production changes can be achieved without disassembly, enabling compatibility with multiple product models.

[0025] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A multi-functional flexible loading platform based on multi-variety guidance modules, characterized in that, include: Substrate (6), rear rotating support block (1), rotating support block I (2), rotating support block II (3), rotating support block III (4), front rotating support block (5), slide table I (7), slide table II (8), slide table III (9), slide rail (10); The rear rotating support block (1) is fixed above the rear end of the base plate (6), and the corresponding area is set as a fixed support area; The front end of the substrate (6) is provided with a slide rail (10), and the slide table III (9), slide table II (8) and slide table I (7) are arranged in sequence on the slide rail (10) from front to back. The three slide tables are configured to be able to move freely along the slide rail (10), and the corresponding moving area is set as a moving support area. The fixed support area is used to support the rear compartment of the guidance module, and the movable support area is used to support the middle and front compartments of the guidance module. The rotating support block I (2) and the rotating support block II (3) are mounted on the slide table I (7), the rotating support block III (4) is mounted on the slide table II (8), and the front rotating support block (5) is mounted on the slide table III (9); The slide table II (8) is provided with insertion holes II (13) and insertion holes I (12) at its front and rear ends respectively. The slide table I (7) is provided with insertion pin I (11) at its front end, which is used to cooperate with insertion holes I (12) at the rear end of the slide table II (8) to combine the slide table I (7) and the slide table II (8). The rear end of the slide table Ⅲ (9) is provided with a plug pin Ⅱ (14) for engaging with the plug hole Ⅱ (13) at the front end of the slide table Ⅱ (8) to combine the slide table Ⅱ (8) and the slide table Ⅲ (9).

2. The multifunctional flexible loading platform based on multi-variety guidance modules as described in claim 1, characterized in that, The various types of guidance modules are respectively designated as Guidance Module 1 and Guidance Module 2; The guidance module 1 is a guidance module consisting of two sections: a front module and a rear module. When the device platform is assembled with the guidance cabin No. 1, slide table I (7) and slide table II (8) are combined, and the front cabin of the product is supported by the combined action of rotating support block I (2) and rotating support block III (4); The guidance module 2 is a guidance module consisting of three sections: the front module, the middle module, and the rear module. When the device platform is assembled with the guidance cabin No. 2, slide II (8) and slide III (9) are combined. The middle cabin of the product is supported by the rotating support block I (2) and rotating support block II (3) on slide I (7), and the rotating support block III (4) and the front rotating support block (5) are used to support the front cabin of the product.

3. The multi-functional flexible loading platform based on multi-type guidance modules as described in claim 2, characterized in that, When the device platform is assembled with the guidance cabin No. 1, the insertion pin I (11) is lifted up and the slide I (7) is pulled forward so that the insertion pin I (11) is inserted into the insertion hole I (12) and the slide I (7) and the slide II (8) are combined together. Rotate the rotating block II (3) outward by 90° around the rotating shaft II (16) on it. At this time, the rear rotating block (1) supports the rear compartment, and the rotating block I (2) and rotating block III (4) support the front compartment. Pull the slide I (7) and slide II (8) assembly to complete the docking of the front compartment and the rear compartment.

4. The multi-functional flexible loading platform based on multi-type guidance modules as described in claim 3, characterized in that, When assembling the guidance compartment 2 on the device platform, lift the plug pin II (14) upwards and pull the slide III (9) backwards so that the plug pin II (14) is inserted into the plug hole II (13), so that the slide II (8) and the slide III (9) are combined together. At this time, the rear rotating block (1) supports the rear compartment section, the rotating block I (2) and the rotating block II (3) support the middle compartment section, the rotating block III (4) and the front rotating block (5) support the front compartment section. Pull the slide I (7) to complete the docking assembly of the middle compartment and the rear compartment. Pull the combination of the slide II (8) and the slide III (9) to complete the docking assembly of the front compartment and the middle compartment.

5. The multifunctional flexible loading platform based on multi-variety guidance modules as described in claim 4, characterized in that, The rear rotating block (1) is configured to rotate 90° around its upper rotating axis III (17) to change the support surface.

6. The multi-functional flexible loading platform based on multi-variety guidance modules as described in claim 5, characterized in that, The rotating block I (2) is provided with a support wheel (18). The rotating block I (2) rotates 90° around its axis I (15) so that the support wheel can be replaced, thereby changing the support height and adapting to the assembly of guidance cabins of different diameters.