Mold core assembly of forming mold for industrial aluminum profile machining
By adjusting and fixing the mold core assembly, the problem of the mold core's inability to self-adjust was solved, enabling efficient forming of various aluminum profiles and improving processing efficiency.
Patent Information
- Application Number
- CN202423140965.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-19
AI Technical Summary
The existing mold core structure cannot be adaptively adjusted, resulting in one mold core being able to only meet the forming process of one type of aluminum profile. This necessitates repeated mold core replacements, which affects processing efficiency.
A mold core assembly was designed, comprising a mold core carrier frame, a cross mold core, a top support frame, a backrest plate, and an electromagnet plate. Through the cooperation of the linkage rod and the electromagnet plate, the mold core can be adjusted and fixed in height to adapt to the forming needs of aluminum profiles of different heights.
It eliminates the need for repeated mold core replacements, improving the stability and processing efficiency of the forming mold and adapting to the forming needs of various aluminum profiles.
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Figure CN223518439U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of forming die core assembly, specifically to a forming die core assembly for industrial aluminum profile machining. BACKGROUND
[0002] Industrial aluminum profile is a kind of alloy material with aluminum as main component, and different cross-sectional shapes of aluminum materials are obtained by hot melting and extrusion of aluminum bar, but the mechanical properties and application fields of the produced industrial aluminum profiles are different due to the different proportions of added alloys.
[0003] For example, the announcement number is CN213321207U (named a plastic product forming die core), including base and replacement device, the upper surface of the base is fixedly connected with operation table, the inner wall of the operation table is provided with die core body, the die core body is slidably connected with the inner wall of the operation table, the replacement device is arranged on the surface of the operation table, the replacement device includes driving rod, the driving rod is rotatably connected with the inner wall of the operation table, the driving rod is sleeved and threadedly connected with push block, the push block is slidably connected with the inner wall of the operation table, the side of the operation table close to the die core body is rotatably connected with rocker, the side of the rocker close to the operation table is fixedly connected with connecting rod, the connecting rod is located in the operation table, the connecting rod is fixedly connected with two symmetrically arranged transmission wheels, the inner wall of the operation table is slidably connected with two symmetrically arranged transmission strips, the transmission wheels are meshedly connected with the transmission strips, by setting the replacement device, when the die core needs to be replaced, the die core body is placed on the surface of the operation table, the driving rod is rotated, the push block is forced to push the die core body to abut against the inner wall of the operation table, the rocker is rotated to drive the connecting rod to rotate, the transmission wheels are forced to rotate to drive the transmission strips and clamping blocks to displace in the direction close to the base of the operation table, the clamping blocks clamp the die core body, the buffer plate abuts against the equipment, and the replacement of the die core is completed.
[0004] The above-mentioned forming die core structure is convenient for replacing the die core by setting the replacement mechanism, but the die core cannot be adaptively adjusted according to the needs during processing, so that one kind of die core can only satisfy one kind of aluminum profile for forming processing, which causes the problem of affecting the aluminum profile processing efficiency due to repeated replacement of the die core. Utility model content
[0005] The utility model discloses a purpose lies in providing a kind of industrial aluminum profile processing is used to form die core subassembly, to solve the problem of the above background technology that the existing form die core structure is replaced by the mechanism of being set to facilitate die core replacement, but die core cannot be self-adaptive adjustment according to needs in the process of processing, lead to a kind of die core can only satisfy one aluminum profile to be formed and processed, cause the problem of repeatedly replacing die core to influence aluminum profile processing efficiency.
[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of industrial aluminum profile processing is used to form die core subassembly, including bottom end seat and top end seat, the side outer wall of bottom end seat is provided with power box, power switch is provided on the both ends outer wall of power box, the output of power box and the input of two power switches are electrically connected;
[0007] Further comprising:
[0008] Die core carrier frame is set on the upper end center position of the bottom end seat, and the die core carrier frame is an integral structure with the bottom end seat, and a die core groove is provided on the inner center position of the die core carrier frame, a hollow inner cavity is provided below the die core groove, and the hollow inner cavity is an integral structure with the die core carrier frame;
[0009] Cross die core is set in the die core groove, and the die core groove is communicated with the hollow inner cavity through the cross die core, and a cross filler block is movably arranged in the cross die core, and a bearing seat plate is arranged in the hollow inner cavity, and the bearing seat plate is an integral structure with the cross filler block;
[0010] Top supporting frame is integrally formed on the bottom center position of the top end seat, and a corresponding plug-in block is integrally formed on the lower end of the top supporting frame.
[0011] Rest plate is arranged on one side of the bearing seat plate, and the rest plate is an integral structure with the bottom end seat, and an electromagnet plate is fixedly embedded on the inner wall of one side of the rest plate, and the bearing seat plate is fixedly connected with the rest plate by the electromagnet plate.
[0012] Preferably, the two ends of the bearing seat plate are provided with two sleeve connection holes, and four guide vertical rods are arranged in the sleeve connection holes.
[0013] Preferably, a limiting hole plate is welded on the top position of the adjacent two guide vertical rods, and a linkage pull rod is arranged in the center position of the limiting hole plate, and the linkage pull rod is an integral structure with the bearing seat plate.
[0014] Preferably, a handle block is welded on the top position of the linkage pull rod, and the size of the handle block is larger than the hole diameter of the limiting hole plate.
[0015] Preferably, the power switch and the seat plate are provided with a conductive wire, and the output end of the power switch is electrically connected with the electromagnet plate in the seat plate through the conductive wire.
[0016] Preferably, the lower end of the corresponding plug-in block is integrally formed with an extrusion die, and the corresponding plug-in block and the extrusion die are respectively connected with the mold core groove and the cross-shaped mold core.
[0017] Preferably, the end face size of the cross-shaped mold core is equal to the end face size of the cross-shaped filling block.
[0018] Compared with the prior art, the utility model has the advantages that:
[0019] The utility model discloses a bearing seat plate is lifted and is positioned to the processing of the linkage pull rod is pulled to the processing of the cross -shaped filling block in the cross -shaped mold core is lifted, and the aluminum profile of different height is conveniently formed and is processed, and the stability of the mold core assembly of the forming die in the use process is improved, and the problem that the existing forming die mold core structure is convenient for mold core replacement through the setting replacement mechanism, but the mold core cannot be adaptively adjusted according to the need in the processing, leading to one kind of mold core only can satisfy one aluminum profile and is formed and processed, causes the problem that the aluminum profile processing efficiency is influenced by repeatedly replacing the mold core. ACCURACY
[0020] Figure 1 It is the front view of the industrial aluminum profile processing forming die mold core assembly structure of the utility model;
[0021] Figure 2 It is the side view of the industrial aluminum profile processing forming die mold core assembly structure of the utility model;
[0022] Figure 3 It is the internal structure schematic view of the industrial aluminum profile processing forming die mold core assembly of the utility model;
[0023] Figure 4 It is the end surface structure schematic view of the industrial aluminum profile processing forming die mold core assembly of the utility model;
[0024] In the drawing: 1, bottom end seat;2, top end seat;3, mold core carrier frame;4, telescopic connecting rod;5, top support frame;6, hollow inner cavity;7, mold core groove;8, corresponding plug-in block;9, extrusion die;10, power box;11, power switch;12, conductive wire;13, seat plate;14, bearing seat plate;15, guide vertical rod;16, limit hole plate;17, linkage pull rod;18, handle block;19, cross -shaped filling block;20, electromagnet plate;21, cross -shaped mold core;22, sleeve joint perforation. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be apparently and completely described in connection with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments.
[0026] Please refer to Figures 1-4 The utility model provides an embodiment: a forming die core subassembly for industrial aluminum profile processing, including bottom end seat 1 and top end seat 2, the side outer wall of bottom end seat 1 is provided with power box 10, both ends outer walls of power box 10 are all provided with power switch 11, and the output of power box 10 is electrically connected with the input of two power switches 11;
[0027] Further comprising:
[0028] The core carrier frame 3 is arranged on the upper end center position of the bottom end seat 1, and the core carrier frame 3 is an integral structure with the bottom end seat 1, and a core groove 7 is arranged on the inner center position of the core carrier frame 3, a hollow inner cavity 6 is arranged below the core groove 7, and the hollow inner cavity 6 is an integral structure with the core carrier frame 3.
[0029] The cross-shaped die core 21 is arranged in the core groove 7, and the core groove 7 is communicated with the hollow inner cavity 6 through the cross-shaped die core 21, and a cross-shaped filling block 19 is movably arranged in the cross-shaped die core 21, and a bearing seat plate 14 is arranged in the hollow inner cavity 6, and the bearing seat plate 14 is an integral structure with the cross-shaped filling block 19.
[0030] The top support frame 5 is integrally formed on the bottom center position of the top end seat 2, and a corresponding plug-in block 8 is integrally formed on the lower end of the top support frame 5.
[0031] The backrest plate 13 is arranged on one side of the bearing seat plate 14, and the backrest plate 13 is an integral structure with the bottom end seat 1, and an electromagnet plate 20 is fixedly embedded on one side of the inner wall of the backrest plate 13, and the bearing seat plate 14 is fixedly connected with the backrest plate 13 through the electromagnet plate 20.
[0032] In use, the aluminum sheet to be formed is placed inside the core groove 7, and then the corresponding plug 8 and the extrusion die 9 are driven downward by the hydraulic mechanism to push the top seat 2, and fall into the core groove 7 and the cross core 21, so as to perform extrusion forming on the aluminum sheet to process aluminum profiles. The load seat plate 14 is lifted and positioned by pulling the linkage pull rod 17, so that the cross filling block 19 is lifted in the cross core 21, facilitating the formation of aluminum profiles of different heights without the need to repeatedly replace different cores. After positioning, press the two power switches 11 to supply power to the electromagnet plate 20 in the seat plate 13, so that the electromagnet plate 20 adsorbs and fixes the load seat plate 14, thereby improving the stability of the core assembly of the forming die during use.
[0033] Please refer to Figure 4 The two ends of the load seat plate 14 are provided with two sleeve connection holes 22, and the four sleeve connection holes 22 are provided with guide vertical rods 15 inside, and the four guide vertical rods 15 are integrated with the bottom seat 1. The two sleeve connection holes 22 at the two ends of the load seat plate 14 serve as sleeve connection and movable connection with the guide vertical rods 15, please refer to Figure 1 The top positions of the two adjacent guide vertical rods 15 are welded with limiting hole plates 16, and the center positions of the limiting hole plates 16 are provided with linkage pull rods 17, and the linkage pull rods 17 are integrated with the load seat plate 14. The limiting hole plates 16 welded at the top positions of the two adjacent guide vertical rods 15 serve to limit the movement range of the load seat plate 14, please refer to Figure 1 The top positions of the linkage pull rods 17 are welded with handle blocks 18, and the size of the handle blocks 18 is greater than the hole diameter of the limiting hole plates 16. The handle blocks 18 welded at the top positions of the linkage pull rods 17 serve to facilitate the pulling of the linkage pull rods 17, please refer to Figure 1 The power switch 11 and the seat plate 13 are provided with a conductive wire 12, and the output end of the power switch 11 is electrically connected with the electromagnet plate 20 inside the seat plate 13 through the conductive wire 12. The conductive wire 12 between the power switch 11 and the seat plate 13 serves to supply power to the electromagnet plate 20, please refer to Figure 1 The lower end of the corresponding plug 8 is integrally formed with an extrusion die 9, and the corresponding plug 8 and the extrusion die 9 are connected with the core groove 7 and the cross core 21 respectively. The extrusion die 9 integrally formed at the lower end of the corresponding plug 8 serves to be connected with the cross core 21, please refer to Figure 3 The end face size of the cross core 21 is equal to the end face size of the cross filling block 19.
[0034] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.
Claims
1. A shaped die core assembly for industrial aluminum profile machining, comprising a bottom end seat (1) and a top end seat (2), a power supply box (10) is arranged on one side outer wall of the bottom end seat (1), power switches (11) are arranged on both ends of the power supply box (10), and the output end of the power supply box (10) is electrically connected with the input ends of the two power switches (11); characterized in that Further comprising: a die core carrier frame (3) arranged on the upper end center position of the bottom end seat (1), the die core carrier frame (3) is an integral structure with the bottom end seat (1), a die core groove (7) is arranged on the inner center position of the die core carrier frame (3), a hollow inner cavity (6) is arranged below the die core groove (7), and the hollow inner cavity (6) is an integral structure with the die core carrier frame (3); a cross die core (21) arranged in the die core groove (7), the die core groove (7) is in communication with the hollow inner cavity (6) through the cross die core (21), a cross filling block (19) is movably arranged in the cross die core (21), a bearing seat plate (14) is arranged in the hollow inner cavity (6), and the bearing seat plate (14) is an integral structure with the cross filling block (19); a top supporting frame (5) integrally arranged on the bottom center position of the top end seat (2), and a corresponding plug-in block (8) integrally arranged on the lower end of the top supporting frame (5); a leaning seat plate (13) arranged on one side of the bearing seat plate (14), the leaning seat plate (13) is an integral structure with the bottom end seat (1), an electromagnet plate (20) is fixedly embedded on one side inner wall of the leaning seat plate (13), and the bearing seat plate (14) is fixedly connected with the leaning seat plate (13) through the electromagnet plate (20).
2. An industrial aluminum profile processing forming die core assembly according to claim 1, characterized in that: Both ends of the bearing seat plate (14) are provided with two sleeve joint holes (22), four guide vertical rods (15) are arranged in the sleeve joint holes (22), and the four guide vertical rods (15) are integral structures with the bottom end seat (1).
3. An industrial aluminum profile processing forming die core assembly according to claim 2, characterized in that: Limiting hole plates (16) are welded on the top positions of two adjacent guide vertical rods (15), a linkage pull rod (17) is arranged in the center position of the limiting hole plate (16), and the linkage pull rod (17) is an integral structure with the bearing seat plate (14).
4. The die core assembly of claim 3, wherein: A handle block (18) is welded on the top position of the linkage pull rod (17), and the size of the handle block (18) is greater than the hole diameter of the limiting hole plate (16).
5. The die core assembly of claim 1, wherein: A conductive wire (12) is arranged between the power switch (11) and the leaning seat plate (13), and the output end of the power switch (11) is electrically connected with the electromagnet plate (20) in the leaning seat plate (13) through the conductive wire (12).
6. An industrial aluminum profile processing forming die core assembly according to claim 1, characterized in that: An extrusion die core (9) is integrally arranged on the lower end of the corresponding plug-in block (8), and the corresponding plug-in block (8) and the extrusion die core (9) are respectively connected with the die core groove (7) and the cross die core (21); the end face size of the cross die core (21) is equal to the end face size of the cross filling block (19).
Citation Information
Patent Citations
Mold core of plastic product forming mold
CN213321207U