Housing molding device for new energy prime mover

By combining molding, grinding, and cutting mechanisms and employing a movable and steerable rolling molding method, the problem of inaccurate shell molding has been solved, achieving an efficient and rapid processing flow and improving the applicability and quality of the equipment.

WO2026000269A1PCT designated stage Publication Date: 2026-01-02JIANGXI YONGDELI NEW ENERGY CO LTD
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Patent Information

Application Number
PCT/CN2024/101771
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-06-27
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

Existing equipment suffers from uneven heating during the shell forming process, leading to inaccurate forming. This requires repeated adjustments, and the equipment is also limited in function, has a long processing time, and is inefficient.

Method used

By adopting a combination of forming, grinding, and cutting mechanisms, and changing to a movable and steerable rolling forming method, the workflow of grinding and cutting is integrated, reducing the transportation distance between equipment and improving processing efficiency.

Benefits of technology

It enables rapid prototyping and efficient processing of the outer shell, ensuring dimensional accuracy, reducing processing time, and improving the applicability and quality of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN2024101771_02012026_PF_FP_ABST
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Abstract

A housing forming device for a new energy prime mover, specifically comprising: a bottom plate. The top of the bottom plate is provided with a through groove; the top of the bottom plate is fixedly connected to an annular frame; the inner surface of the annular frame is fixedly connected to a forming mechanism; the right side of the bottom plate is rotatably connected to rotating frames; two rotating frames are provided; and a conveying mechanism is provided between the opposing sides of the two rotating frames. By providing the forming mechanism, the conveying mechanism, a grinding mechanism, and a cutting mechanism, a fixed pressing mode is replaced with an adjustable-direction rolling forming mode, and a working mode that integrates grinding and cutting is used, such that a housing is processed more quickly, and once formed, the housing can be directly transferred to quality inspection, thereby improving device processing efficiency.
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Description

A new energy prime mover equipment shell forming equipment TECHNICAL FIELD

[0001] The present application relates to the field of new energy technology, in particular to a new energy prime mover equipment shell forming equipment. BACKGROUND

[0002] New energy, also known as unconventional energy. It refers to various forms of energy other than traditional energy. It refers to the energy that is just beginning to develop and utilize or is actively researched and needs to be popularized, such as solar energy, geothermal energy, wind energy, ocean energy, biomass energy and nuclear fusion energy.

[0003] The existing equipment adopts the method of pressing for shell forming. If the shell is unevenly heated, the accurate sample cannot be obtained by pressing in turn, and it needs to be repeatedly adjusted, which consumes more time. In addition, the function of the equipment is relatively single, and the processing time of the shell is relatively long. SUMMARY

[0004] In order to achieve the above purpose, the present application is realized by the following technical scheme: a new energy prime mover equipment shell forming equipment, specifically comprising:

[0005] A bottom plate, a through slot is formed in the top of the bottom plate, an annular frame is fixedly connected to the top of the bottom plate, a forming mechanism is fixedly connected to the inner surface of the annular frame, a rotating frame is rotatably connected to the right side of the bottom plate, the rotating frame is provided with two, a conveying mechanism is formed between the opposite sides of the two rotating frames, a horizontal slot is formed in the left side of the bottom plate, a polishing mechanism is rotatably connected to the inner surface of the horizontal slot, an arc-shaped table is rotatably connected to the outer surface of the bottom plate, a cutting mechanism is fixedly connected to the inner surface of the arc-shaped table, a fixed box is fixedly connected to the bottom of the bottom plate, a pressing table is fixedly connected to the inner surface of the fixed box, a rolling stick is rotatably connected to the inner surface of the through slot, and a vertical column is uniformly fixedly connected to the bottom of the bottom plate; The forming mechanism, the conveying mechanism, the polishing mechanism and the cutting mechanism are arranged in the equipment, polishing and cutting limiting functions are arranged at the inlet and outlet positions of the equipment, the fixed pressing mode is changed to the rolling forming mode of the movable steering, and the forming effect of the shell after heating is better.

[0006] The forming mechanism comprises a fixed pipe, the outer surface of the fixed pipe is fixedly connected with the inner surface of the annular frame, the inner surface of the fixed pipe is rotatably connected with a driving rod, the outer surface of the driving rod is fixedly connected with a threaded table, and the inner surface of the threaded table is threadedly connected with a threaded rod.

[0007] Preferably, the bottom of the threaded rod is rotatably connected with a steering rod, the bottom of the steering rod is fixedly connected with a side table, and the bottom of the side table is rotatably connected with a limiting plate.

[0008] Preferably, the top of the limiting plate is fixedly connected with a spring between the outer surface of the side table, the limiting plate is provided with two, the opposite sides of the two limiting plates are rotatably connected with a rotating table, and the outer surface of the rotating table is slidably connected with the inner surface of the through groove. Through the use of the forming mechanism, the extrusion equipment movable up, down, left and right is arranged in the forming mechanism, and the flexibility is higher.

[0009] Preferably, the polishing mechanism comprises a connecting table, the outer surface of the connecting table is rotatably connected with the inner surface of the horizontal groove, the left side of the connecting table is communicated with a U-shaped frame, and the inner surface of the U-shaped frame is rotatably connected with a conveying wheel.

[0010] Preferably, the outer surface of the conveying wheel is drivingly connected with a conveying belt, the inner surface of the connecting table is rotatably connected with a vertical shaft, and the outer surface of the vertical shaft is slidably connected with a sliding sleeve.

[0011] Preferably, the outer surface of the sliding sleeve is uniformly rotatably connected with a polishing rod, and the outer surface of the conveying belt is fixedly connected with the outer surface of the sliding sleeve. Through the use of the polishing mechanism, the conveying structure is arranged in the polishing mechanism, and the polishing structure can control the polishing work on any place of the shell.

[0012] Preferably, the cutting mechanism comprises a rack, the outer surface of the rack is fixedly connected with the outer surface of the arc-shaped table, the rack is provided with two, and the outer surfaces of the two racks are rotatably connected with a driving gear.

[0013] Preferably, the opposite sides of the two driving gears are rotatably connected with a connecting rod, the outer surface of the connecting rod is fixedly connected with an inclined plate, and the top of the inclined plate is rotatably connected with a cutting disc. Through the use of the cutting mechanism, the left-right adjusting cutting structure is arranged in the cutting mechanism, and the shell can be cut without being fixed after entering the table surface.

[0014] Preferably, the conveying mechanism comprises a dark groove, the outer surface of the dark groove is arranged on the outer surface of the rotating frame, the dark groove is provided with two, and the opposite sides of the two dark grooves are rotatably connected with a rotating shaft.

[0015] Preferably, the outer surface of the rotating shaft is fixedly connected with a slide, and the inner surface of the slide is uniformly fixedly connected with an anti-skid strip. Through the use of the conveying mechanism, the anti-skid channel that can be turned is arranged in the conveying mechanism, and the input shell has the effect of anti-skid.

[0016] The application provides a new energy prime mover equipment shell forming equipment.

[0017] The new energy prime mover equipment shell forming equipment, the inside of the equipment is provided with a forming mechanism, a conveying mechanism, a polishing mechanism and a cutting mechanism, polishing and cutting limiting functions are arranged at the inlet and outlet positions of the equipment respectively, the fixed pressing mode is changed to the movable turning and rolling forming mode, the effect of shell forming after heating is better, then the polishing and cutting work is integrated, the shell processing effect is faster, and the formed shell can be directly sent to the quality inspection, the distance between the equipment and the equipment is reduced, the shell is carried back and forth, and the processing efficiency of the equipment is improved.

[0018] The new energy prime mover equipment shell forming equipment, by using the forming mechanism, the extrusion equipment can move up and down and left and right in the forming mechanism, which is more flexible, and can complete good extrusion effect on shell materials of different sizes and thicknesses, and has wider application range.

[0019] The new energy prime mover equipment shell forming equipment, by using the polishing mechanism, the inside of the polishing mechanism is provided with a conveying structure, the polishing structure can control the polishing work on any place of the shell by using the conveying structure, the polishing range is wider, the thickness of the material is ensured to be consistent, and the quality of the equipment is improved.

[0020] The new energy prime mover equipment shell forming equipment, by using the cutting mechanism, the inside of the cutting mechanism is provided with left and right adjusting cutting structure, the shell can be cut without fixing after entering the table surface, the use is more convenient, and the size deviation of the shell can be ensured to be small.

[0021] The new energy prime mover equipment shell forming equipment, by using the conveying mechanism, the inside of the conveying mechanism is provided with a turning anti-skid channel, which has an anti-skid effect on the input shell, and can be connected with the rear rolling structure by turning, so that the input of the material is more stable, and direct contact of the hand is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0022] Fig. 1 is a schematic view of the external structure of the new energy prime mover equipment shell forming equipment;

[0023] Fig. 2 is a bottom view of the new energy prime mover equipment shell forming equipment;

[0024] Fig. 3 is a partial view of the forming mechanism;

[0025] Fig. 4 is a schematic view of the internal structure of the forming mechanism;

[0026] Fig. 5 is a side view of the forming mechanism;

[0027] Fig. 6 is a schematic view of the external structure of the polishing mechanism;

[0028] Figure 7 is a schematic diagram of the external structure of the cutting mechanism of the present application;

[0029] Figure 8 is a schematic diagram of the external structure of the conveying mechanism of the present application.

[0030] In the figure: 1, base plate; 2, through slot; 3, ring-shaped frame; 4, forming mechanism; 401, fixed tube; 402, drive rod; 403, threaded table; 404, threaded rod; 405, steering rod; 406, side table; 407, limiting plate; 408, spring; 409, rotating table; 5, rotating frame; 6, conveying mechanism; 601, hidden slot; 602, rotating shaft; 603, slide; 604, anti-skid strip; 7, transverse slot; 8, polishing mechanism; 801, connecting table; 802, U-shaped frame; 803, transmission wheel; 804, transmission belt; 805, vertical shaft; 806, sliding sleeve; 807, polishing rod; 9, arc-shaped table; 10, cutting mechanism; 1001, rack; 1002, drive gear; 1003, connecting rod; 1004, inclined surface plate; 1005, cutting disc; 11, fixed box; 12, pressing table; 13, rolling stick; 14, vertical column. DETAILED DESCRIPTION

[0031] The present application will be further described below in conjunction with the drawings and specific embodiments. The embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

[0032] As shown in Figures 1-8, the present application provides a technical solution: specifically comprising:

[0033] The bottom plate 1 is provided with a through groove 2 on the top, and the top of the bottom plate 1 is fixedly connected with an annular frame 3, the inner surface of the annular frame 3 is fixedly connected with a forming mechanism 4, the right side of the bottom plate 1 is rotatably connected with a rotating frame 5, the rotating frame 5 is provided with two, the through groove 2 is provided with a conveying mechanism 6 between the opposite sides of the two rotating frames 5, the left side of the bottom plate 1 is provided with a horizontal groove 7, the inner surface of the horizontal groove 7 is rotatably connected with a polishing mechanism 8, the outer surface of the bottom plate 1 is rotatably connected with an arc-shaped table 9, the inner surface of the arc-shaped table 9 is fixedly connected with a cutting mechanism 10, the bottom of the bottom plate 1 is fixedly connected with a fixed box 11, the inner surface of the fixed box 11 is fixedly connected with a pressing table 12, the inner surface of the through groove 2 is rotatably connected with a rolling stick 13, and the bottom of the bottom plate 1 is uniformly fixedly connected with a stand 14; the fixed pressing mode is changed into the movable turning and rolling forming mode, the effect of forming after heating the shell is better, then the polishing and cutting work are integrated into one work mode, the effect of processing the shell is more rapid, and after forming, the shell can be directly sent to the quality inspection, the distance between the equipment and the equipment is reduced, the shell is not moved back and forth, and the processing efficiency of the equipment is improved.

[0034] The forming mechanism 4 comprises a fixed pipe 401, the outer surface of the fixed pipe 401 is fixedly connected with the inner surface of the annular frame 3, the inner surface of the fixed pipe 401 is rotatably connected with a driving rod 402, the outer surface of the driving rod 402 is fixedly connected with a threaded table 403, and the inner surface of the threaded table 403 is threadedly connected with a threaded rod 404.

[0035] The bottom of the threaded rod 404 is rotatably connected with a turning rod 405, the bottom of the turning rod 405 is fixedly connected with a side table 406, and the bottom of the side table 406 is rotatably connected with a limiting plate 407.

[0036] The top of the limiting plate 407 and the outer surface of the side table 406 are fixedly connected with springs 408, the limiting plate 407 is provided with two, the opposite sides of the two limiting plates 407 are rotatably connected with a rotating table 409, and the outer surface of the rotating table 409 is slidably connected with the inner surface of the through groove 2. Different sizes and thicknesses of shell materials can be well extruded, and the application range is wider.

[0037] The polishing mechanism 8 comprises a connecting table 801, the outer surface of the connecting table 801 is rotatably connected with the inner surface of the horizontal groove 7, the left side of the connecting table 801 is communicated with a U-shaped frame 802, and the inner surface of the U-shaped frame 802 is rotatably connected with a conveying wheel 803.

[0038] The outer surface of the conveying wheel 803 is drivingly connected with a conveying belt 804, the inner surface of the connecting table 801 is rotatably connected with a vertical shaft 805, and the outer surface of the vertical shaft 805 is slidably connected with a sliding sleeve 806.

[0039] The outer surface of the sliding sleeve shell 806 is uniformly rotationally connected with a polishing rod 807, and the outer surface of the conveying belt 804 is fixedly connected with the outer surface of the sliding sleeve shell 806. The polishing range is wider, the thickness of the material is uniform, and the quality of the equipment is improved.

[0040] The cutting mechanism 10 comprises a rack 1001, the outer surface of the rack 1001 is fixedly connected with the outer surface of the arc-shaped table 9, and the rack 1001 is provided with two, and the outer surfaces of the two racks 1001 are all meshingly connected with a driving gear 1002.

[0041] The opposite sides of the two driving gears 1002 are rotationally connected with a connecting rod 1003, the outer surface of the connecting rod 1003 is fixedly connected with an inclined plane plate 1004, and the top of the inclined plane plate 1004 is rotationally connected with a cutting disc 1005. The shell enters the table surface, and the cutting operation can be performed without fixing after the two sides are consistent in width, which is more convenient to use, and can ensure that the size deviation of the shell is small.

[0042] The conveying mechanism 6 comprises a dark groove 601, the outer surface of the dark groove 601 is opened in the outer surface of the rotating frame 5, the dark groove 601 is provided with two, and the opposite sides of the two dark grooves 601 are rotationally connected with a rotating shaft 602.

[0043] The outer surface of the rotating shaft 602 is fixedly connected with a slide 603, and the inner surfaces of the slides 603 are uniformly fixedly connected with anti-skid strips 604. The input shell has the effect of anti-skid, and at the same time, the rotation thereof can be communicated with the rolling structure behind, so that the input of the material is more stable, and direct contact of the hand is avoided.

[0044] When in use, the front end of the shell material to be shaped is contacted with the inside of the slide 603, and is pushed inwards. After being inserted, the rotating shaft 602 is turned upwards to drive the slide 603 upwards, so that the outer surface of the roller 13 is kept in communication. The shell material directly reaches the outer surface of the roller 13 after passing through the slide 603. At this time, the roller 13 starts to rotate. The shell material is driven by the rotation of the roller 13 and slides from below the roller 13 to the inside of the pressing table 12. The shell gradually moves forward along the bottom of the pressing table 12. The threaded rod 404 is turned downwards to drive the two side tables 406 to move downwards. The limiting plate 407 also moves downwards to gradually widen the space below the rotating table 409. The rotating table 409 slowly moves downwards until it moves to the outside of the shell material to deform and roll the shell. In order to compress the shell material in all directions, the driving rod 402 above the equipment can be started. The driving rod 402 rotates left and right to drive the threaded table 403 to rotate left and right. The rotating table 409 below also moves left and right on the outer surface of the shell material. The shaped shell moves outwardly with the pushing of the rear material. The shell material passes between the vertical shaft 805 and the connecting table 801 to the outside of the arc-shaped table 9. At this time, several polishing rods 807 above the equipment are started to polish the edges of the shell material. Then the shell material continues to move forward. The driving gear 1002 is started twice to drive the cutting disc 1005 to move to the outside of the shell material. Then the cutting disc 1005 is started to cut the outside of the material. After polishing and cutting, the shaped shell can be taken out.

[0045] Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art and related fields without creative labor should belong to the scope of protection of the present application. The structures, devices and operation methods not specifically described and explained in the present application, such as without special description and limitation, are implemented according to the conventional means in the art.

Claims

1. A shell forming device for a new energy power source, characterized in that, Specifically comprising: The bottom plate (1), the top of the bottom plate (1) is provided with a through slot (2), the top of the bottom plate (1) is fixedly connected with an annular frame (3), the inner surface of the annular frame (3) is fixedly connected with a forming mechanism (4), the right side of the bottom plate (1) is rotatably connected with a rotating frame (5), the rotating frame (5) is provided with two, the conveying mechanism (6) is arranged between the opposite sides of the two rotating frames (5), the left side of the bottom plate (1) is provided with a horizontal groove (7), the inner surface of the horizontal groove (7) is rotatably connected with a polishing mechanism (8), the outer surface of the bottom plate (1) is rotatably connected with an arc-shaped table (9), the inner surface of the arc-shaped table (9) is fixedly connected with a cutting mechanism (10), the bottom of the bottom plate (1) is fixedly connected with a fixed box (11), the inner surface of the fixed box (11) is fixedly connected with a pressing table (12), the inner surface of the through slot (2) is rotatably connected with a rolling stick (13), the bottom of the bottom plate (1) is uniformly fixedly connected with a stand column (14); The forming mechanism (4) comprises a fixed tube (401), the outer surface of the fixed tube (401) is fixedly connected with the inner surface of the annular frame (3), the inner surface of the fixed tube (401) is rotatably connected with a driving rod (402), the outer surface of the driving rod (402) is fixedly connected with a threaded table (403), and the inner surface of the threaded table (403) is threadedly connected with a threaded rod (404).

2. The new energy prime mover housing forming apparatus according to claim 1, characterized in that: The bottom of the threaded rod (404) is rotatably connected with a steering rod (405), the bottom of the steering rod (405) is fixedly connected with a side table (406), and the bottom of the side table (406) is rotatably connected with a limiting plate (407).

3. The new energy prime mover housing forming apparatus according to claim 2, characterized in that: The top of the limiting plate (407) and the outer surface of the side table (406) are fixedly connected with a spring (408), the limiting plate (407) is provided with two, and the opposite sides of the two limiting plates (407) are rotatably connected with a rotating table (409), and the outer surface of the rotating table (409) is slidably connected with the inner surface of the through slot (2).

4. The new energy prime mover housing forming apparatus according to claim 1, characterized in that: The polishing mechanism (8) comprises a connecting table (801), the outer surface of the connecting table (801) is rotatably connected with the inner surface of the horizontal groove (7), the left side of the connecting table (801) is communicated with a U-shaped frame (802), and the inner surface of the U-shaped frame (802) is rotatably connected with a conveying wheel (803).

5. The new energy prime mover housing forming apparatus according to claim 4, characterized in that: The outer surface of the conveying wheel (803) is drivingly connected with a conveying belt (804), the inner surface of the connecting table (801) is rotatably connected with a vertical shaft (805), and the outer surface of the vertical shaft (805) is slidably connected with a sliding sleeve (806).

6. The new energy prime mover housing forming apparatus according to claim 5, characterized in that: The outer surface of the sliding sleeve (806) is uniformly rotatably connected with a polishing rod (807), and the outer surface of the conveying belt (804) is fixedly connected with the outer surface of the sliding sleeve (806).

7. The new energy prime mover housing forming apparatus according to claim 1, characterized in that: The cutting mechanism (10) comprises a rack (1001), the outer surface of the rack (1001) is fixedly connected with the outer surface of the arc-shaped table (9), the rack (1001) is provided with two, the outer surfaces of the two racks (1001) are all meshingly connected with driving gears (1002).

8. The new energy prime mover shell forming apparatus according to claim 7, characterized in that: The opposite sides of the two driving gears (1002) are rotatably connected with connecting rods (1003), the outer surface of the connecting rod (1003) is fixedly connected with an inclined plane plate (1004), the top of the inclined plane plate (1004) is rotatably connected with a cutting disc (1005).

9. The new energy prime mover housing forming apparatus according to claim 1, characterized in that: The conveying mechanism (6) comprises a dark groove (601), the outer surface of the dark groove (601) is arranged on the outer surface of the rotating frame (5), the dark groove (601) is provided with two, and the opposite sides of the two dark grooves (601) are rotatably connected with a rotating shaft (602).

10. The new energy prime mover shell forming apparatus according to claim 9, characterized in that: The outer surface of the rotating shaft (602) is fixedly connected with a slide (603), and the inner surfaces of the slides (603) are uniformly fixedly connected with anti-skid strips (604).

Citation Information

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