Turnover device for die steel machining
By designing a flipping device for mold steel processing, the problem of difficult mold steel flipping operation was solved, realizing automated flipping and improved stability, thus enhancing safety and convenience.
Patent Information
- Application Number
- CN202520077493.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-01-14
AI Technical Summary
The turning operation of mold steel is difficult during processing, requiring multiple people to work together, and the turning stability is poor, affecting safety.
A flipping device for mold steel processing was designed, including a main frame, a support frame, a lifting groove, an adjustment mechanism, a drive motor, and a locking mechanism. The position is adjusted by universal wheels, the connecting mechanism is locked, the height is adjusted by the adjustment mechanism, the drive motor flips the mold steel, and the locking mechanism locks the mold steel, thus realizing automated flipping.
It enables flexible flipping and improved stability of mold steel, reduces manpower requirements, and enhances the safety and ease of operation during the flipping process.
Smart Images

Figure CN223865752U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mold steel processing technology, and in particular relates to a flipping device for mold steel processing. Background Technology
[0002] Mold steel is used in the processing of molds. Because molds have a wide range of uses and the working conditions of various molds are very different, the range of materials used to manufacture molds is very wide. Among the mold materials, mold steel is the most widely used.
[0003] When processing mold steel, it is usually necessary to flip the mold steel. However, the mold steel is heavy, which makes it inconvenient for workers to flip it. The existing method usually uses hoisting equipment to flip it, but the flipping operation is difficult and requires multiple people to work together. The flipping operation is also unstable, which greatly reduces the safety of the flipping process. Utility Model Content
[0004] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a flipping device for mold steel processing, which can effectively solve the problems of the existing technology.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model is a flipping device for processing mold steel, including a main frame one and a main frame two disposed on one side of the main frame one, and also includes:
[0007] The support frame is fixed to the upper end face of the main frame one and the main frame two. There are connecting mechanisms on the left and right sides of the support frame for connecting the main frame one and the main frame two.
[0008] The lifting groove is located inside the support frame, and a lifting slide is slidably engaged inside the lifting groove.
[0009] An adjustment mechanism, located inside the lower end of the support frame, is used to adjust the height of the lifting slide.
[0010] The drive motor is fixed at the center of the upper end face of the lifting slide. The output end of the drive motor is fixed with a tilting frame, and the interior of the tilting frame is evenly filled with ball bearings.
[0011] The locking mechanism, located inside the tilting frame, is used to lock and restrict the mold steel.
[0012] Furthermore, the external structures of the first main frame and the second main frame are compatible, and universal wheels are evenly fixed to the lower end faces of the first main frame and the second main frame.
[0013] Furthermore, the connecting mechanism includes a connecting plate, a connecting slide plate, and a positioning bolt. The connecting plate is rotatably connected to the left and right sides of the support frame, the connecting slide plate is slidably engaged inside the connecting plate, the positioning bolt is threadedly connected to the outside of the connecting plate and connected to the connecting slide plate, and a connecting buckle is connected to the tail end of the connecting slide plate.
[0014] Furthermore, the adjustment mechanism includes an adjustment handle, a worm gear, and a worm wheel. The adjustment handle is rotatably connected to the lower end of the support frame. The worm gear is fixed to the output end of the adjustment handle. The worm wheel is meshed with one side of the worm gear. A lead screw is fixed to the upper end of the worm wheel and threadedly connected to the inside of the lifting slide.
[0015] Furthermore, the cross-section of the flipping frame is a "U" shaped structure, and the ball bearings are evenly arranged along the lower end of the inner wall of the flipping frame.
[0016] Furthermore, the locking mechanism includes an electromagnet, a limiting groove, a clamping member, and a return spring. The electromagnet is symmetrically fixed on the left and right sides of the lower end face of the flipping frame. The limiting groove is symmetrically opened on the upper inside of the flipping frame. The clamping member is slidably engaged inside the limiting groove. The return spring is disposed inside the limiting groove and contacts the clamping member.
[0017] This utility model has the following beneficial effects:
[0018] This invention features casters that allow for flexible positioning of the main frame one and main frame two, while a connecting mechanism can lock and limit their positions, enabling them to be positioned on opposite sides of the conveyor belt. This facilitates subsequent flipping and adjustment of the mold steel. Furthermore, the adjustable mechanism can be adjusted according to the height of the conveyor belt, further expanding the applicability of the equipment.
[0019] When the conveyor belt is working, this utility model can transport the mold steel into the tilting frame. When it reaches the central position, the electromagnet can be opened to pull the clamping parts downward. Since there are multiple sets of clamping parts, it can not only limit the mold steel, but also block the edges on both sides of the mold steel. In conjunction with the drive motor, it can drive the tilting frame to tilt. After the tilting is completed, it can be pushed back onto the conveyor belt for subsequent processing. Attached Figure Description
[0020] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0021] Figure 1This is a top view schematic diagram of the tilting device for mold steel processing according to this utility model;
[0022] Figure 2 This is a left-side view of the main frame of this utility model;
[0023] Figure 3 This is a top view of the lifting slide of this utility model.
[0024] The attached diagram lists the components represented by each number as follows:
[0025] 1. Main frame one; 2. Casters; 3. Support frame; 4. Connecting plate; 5. Connecting slide plate; 6. Positioning bolt; 7. Main frame two; 8. Lifting groove; 9. Lifting slide; 10. Adjusting handle; 11. Worm gear; 12. Worm wheel; 13. Drive motor; 14. Tilting frame; 15. Ball bearing; 16. Electromagnet; 17. Limiting groove; 18. Clamping component; 19. Return spring. Detailed Implementation
[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0027] Please see Figure 1-3 As shown, this utility model is a flipping device for processing mold steel, including a main frame 1 and a second main frame 7 disposed on one side of the main frame 1, and further including:
[0028] The external structures of main frame 1 and main frame 2 are identical. Universal wheels 2 are evenly fixed to the lower end faces of both main frame 1 and main frame 2. Because the external structures of main frame 1 and main frame 2 are identical and cooperate with the universal wheels 2, their positions can be quickly adjusted, facilitating carrying and transportation by staff. Support frame 3 is fixed to the upper end faces of main frame 1 and main frame 2. Connecting mechanisms are located on the left and right sides of support frame 3 to connect main frame 1 and main frame 2. The connecting mechanisms include connecting plates 4, connecting slide plates 5, and positioning bolts 6. Connecting plates 4 are rotatably connected to the left and right sides of support frame 3, and connecting slide plates 5 slide and lock. The positioning bolt 6 is threaded onto the outside of the connecting plate 4 and connected to the connecting slide plate 5. The tail end of the connecting slide plate 5 is connected to a connecting buckle. The angle can be adjusted by the connecting plate 4. The connecting slide plate 5 inside the connecting plate 4 can be pulled outward and its position can be adjusted as needed. Since the main frame 1 and the main frame 2 7 are symmetrically arranged on both sides of the conveyor belt, and both sides of the main frame 1 and the main frame 2 7 are provided with connecting mechanisms, they can be locked by the connecting buckle at the tail end of the connecting slide plate 5. This can limit the position of the main frame 1 and the main frame 2 7, so as to facilitate subsequent angle adjustment.
[0029] A lifting groove 8 is formed inside the support frame 3, and a lifting slide 9 is slidably engaged inside the lifting groove 8. An adjustment mechanism is set inside the lower end of the support frame 3 for adjusting the height of the lifting slide 9. The adjustment mechanism includes an adjustment handle 10, a worm gear 11, and a worm wheel 12. The adjustment handle 10 is rotatably connected to the lower end of the support frame 3. The worm gear 11 is fixed to the output end of the adjustment handle 10. The worm wheel 12 is meshed with one side of the worm gear 11. A lead screw is fixed to the upper end of the worm wheel 12 and threadedly connected to the inside of the lifting slide 9. The adjustment handle 10 can drive the worm gear 11 to rotate. When the worm gear 11 rotates, it can mesh with the worm wheel 12, which can then rotate, causing the lead screw at the upper end of the worm wheel 12 to rotate, thereby adjusting the lifting slide 9 threadedly connected to its upper end up and down. The lifting groove 8 can limit the lifting slide 9, preventing it from shifting or shaking, thus facilitating subsequent adjustments.
[0030] The drive motor 13 is fixed at the center of the upper end face of the lifting slide 9. The output end of the drive motor 13 is fixed with a tilting frame 14. The interior of the tilting frame 14 is evenly arranged with ball bearings 15. The cross-section of the tilting frame 14 is a "U" shaped structure. The ball bearings 15 are evenly arranged along the lower end of the inner wall of the tilting frame 14. The tilting frame 14 can limit the mold steel plate. The evenly arranged ball bearings 15 on the inner wall of the tilting frame 14 can maintain the stability of the mold steel plate when the conveyor belt transports it, and can prevent the mold steel plate from shifting and shaking.
[0031] A locking mechanism, located inside the tilting frame 14, is used to lock and restrict the mold steel. The locking mechanism includes an electromagnet 16, a limiting groove 17, a clamping member 18, and a return spring 19. The electromagnet 16 is symmetrically fixed on the left and right sides of the lower end face of the tilting frame 14. The limiting groove 17 is symmetrically formed on the upper part of the interior of the tilting frame 14. The clamping member 18 is slidably engaged inside the limiting groove 17. The return spring 19 is located inside the limiting groove 17 and contacts the clamping member 18. When the mold steel plate is conveyed to the center position of the tilting frame 14 by the conveyor belt, the electromagnet 16 can be energized, generating magnetism. The clamping member 18 can then be pulled downwards. Since there are multiple sets of clamping members 18, they can not only limit the mold steel, but also seal the edges on both sides of the mold steel. The limiting groove 17 can limit the position of the clamping member 18, preventing the clamping member 18 from shifting. Then, in cooperation with the drive motor 13, it can drive the flipping frame 14 to flip, thereby flipping the mold steel plate 180°. After the flipping is completed, the power supply to the electromagnet 16 can be stopped, and the reset spring 19 can reset the clamping member 18. Then, the mold steel plate can be manually pushed onto the conveyor belt, and then transported by the conveyor belt for subsequent processing.
[0032] The above are merely preferred embodiments of the present utility model and do not limit the present utility model. Any modifications, equivalent substitutions, or improvements made to the technical solutions described in the foregoing embodiments, or to some of the technical features, shall fall within the protection scope of the present utility model.
Claims
1. A flipping device for processing mold steel, comprising a main frame one (1) and a main frame two (7) disposed on one side of the main frame one (1), characterized in that, Also includes: The support frame (3) is fixed on the upper end face of the main frame one (1) and the main frame two (7). There are connecting mechanisms on the left and right sides of the support frame (3) for connecting the main frame one (1) and the main frame two (7). The lifting groove (8) is opened inside the support frame (3), and the lifting slide (9) is slidably engaged inside the lifting groove (8); An adjustment mechanism is located at the lower end of the support frame (3) and is used to adjust the height of the lifting slide (9); The drive motor (13) is fixed at the center of the upper end face of the lifting slide (9). The output end of the drive motor (13) is fixed with a flipping frame (14). The interior of the flipping frame (14) is evenly provided with ball bearings (15). The locking mechanism is located inside the flipping frame (14) and is used to lock and limit the mold steel.
2. The turning device for machining mold steel according to claim 1, characterized in that, The external structure of the main frame one (1) and the main frame two (7) are consistent, and the lower end surfaces of the main frame one (1) and the main frame two (7) are uniformly fixed with casters (2).
3. The turning device for machining mold steel according to claim 1, characterized in that, The connecting mechanism includes a connecting plate (4), a connecting slide plate (5), and a positioning bolt (6). The connecting plate (4) is rotatably connected to the left and right sides of the support frame (3). The connecting slide plate (5) is slidably engaged inside the connecting plate (4). The positioning bolt (6) is threadedly connected to the outside of the connecting plate (4) and connected to the connecting slide plate (5). The tail end of the connecting slide plate (5) is connected to a connecting buckle.
4. The flipping device for machining mold steel according to claim 1, characterized in that, The adjustment mechanism includes an adjustment handle (10), a worm gear (11), and a worm wheel (12). The adjustment handle (10) is rotatably connected to the lower end of the support frame (3). The worm gear (11) is fixed to the output end of the adjustment handle (10). The worm wheel (12) is meshed with one side of the worm gear (11). The upper end of the worm wheel (12) is fixed with a lead screw and threadedly connected to the inside of the lifting slide (9).
5. A flipping device for machining mold steel according to claim 1, characterized in that, The cross-section of the flipping frame (14) is a "U" shaped structure, and the ball bearings (15) are evenly arranged along the lower end of the inner wall of the flipping frame (14).
6. A flipping device for machining mold steel according to claim 5, characterized in that, The locking mechanism includes an electromagnet (16), a limiting groove (17), a clamping member (18), and a return spring (19). The electromagnet (16) is symmetrically fixed on the left and right sides of the lower end face of the flipping frame (14). The limiting groove (17) is symmetrically opened on the upper part of the inside of the flipping frame (14). The clamping member (18) is slidably engaged in the inside of the limiting groove (17). The return spring (19) is set inside the limiting groove (17) and contacts the clamping member (18).