Pick-up device for die casting die

By designing a die casting mold pickup device including the device main body, the operating table, the stamping mechanism and other components, the problem of fixed and inactive mold position in the prior art is solved, and the rapid removal of metal parts is achieved, and the efficiency and effect of die casting are improved.

CN222985692UActive Publication Date: 2025-06-17TIANJIN RONGHE TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422172465.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-06-17
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

When used, the existing die-casting molds are fixed and unable to move, making it difficult to quickly remove metal parts, reducing the efficiency and effect of die-casting.

Method used

A die casting mold pickup device is designed, including a device body, an operating table, a stamping mechanism, a mold body, a slider, an installation block, a screw, a connecting block, a positioning board, a pressing board, a support block, an installation board, a limiting assembly, a buffering assembly and a fixing mechanism. Through the cooperation of these components, the mold body can be driven to slide out of the stamping mechanism to facilitate the removal of metal parts.

Benefits of technology

It realizes the quick removal of metal parts, improves the efficiency and effect of die casting, and enhances the practicality of die casting molds.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222985692U_ABST
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Abstract

The utility model relates to the technical field of die casting machining accessory devices, in particular to a piece taking device for a die casting die, which can enable a worker to quickly drive a stamped metal part to slide out of the lower part of a stamping mechanism through a die main body, so that the worker can conveniently take out the metal part. Therefore, the working efficiency and effect of die casting of the metal part are improved, and the practicability is enhanced; comprising a device body, an operation table and a stamping mechanism, the front end of the top of the device body is connected with the bottom of the operation table, and the stamping mechanism is arranged at the rear end of the top of the device body; the mold comprises an operation table, and further comprises a mold main body, two sets of sliding plates, two sets of mounting blocks, a first screw rod, a connecting block, two sets of positioning plates, two sets of pressing plates, a supporting block, two sets of mounting plates, a limiting assembly, a buffering assembly and a fixing mechanism, the two sets of mounting blocks are evenly arranged at the top of the operation table, and the two ends of the first screw rod are rotationally connected with one ends of one set of mounting blocks correspondingly; and the connecting block is in threaded connection with the first screw rod.
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Description

Technical Field

[0001] The utility model relates to the technical field of auxiliary devices for die-casting part processing, in particular to a part taking device for a die-casting part mold. Background Technique

[0002] As is well known, a die-casting part mold is a tool specifically used for the die-casting process. It is designed to quickly inject molten metal into the mold cavity under high pressure to form metal parts with specific shapes. A die-casting mold generally consists of two main parts: a moving mold (the moving part) and a fixed mold (the fixed part); when the mold is closed, the cavity formed between them is the shape of the product.

[0003] When an existing die-casting part mold is in use, the position of the mold is fixed and cannot be moved. After the processing is completed by a die-casting machine, the staff cannot quickly separate the die-cast metal part in the mold from the actuator of the die-casting machine, making it impossible to quickly take out the die-cast metal part, thereby reducing the working efficiency and effect of die-casting the metal part, and thus resulting in poor practicability. Summary of the Utility Model

[0004] In order to solve the above technical problems, the utility model provides a part taking device for a die-casting part mold, which can enable the staff to quickly drive the die-cast metal part to slide out below the stamping mechanism through the mold body, facilitating the staff to take it out, thereby improving the working efficiency and effect of die-casting the metal part, and thus enhancing the practicability.

[0005] A part taking device for a die-casting part mold of the utility model comprises a device main body, an operating table and a stamping mechanism. The front end of the top of the device main body is connected to the bottom of the operating table, and the stamping mechanism is arranged at the rear end of the top of the device main body; it further comprises a mold main body, two groups of sliding plates, two groups of mounting blocks, a first screw rod, a connecting block, two groups of positioning plates, two groups of pressing plates, a supporting block, two groups of mounting plates, a limiting component, a buffering component and a fixing mechanism. Two groups of mounting blocks are evenly arranged on the top of the operating table. The two ends of the first screw rod are respectively rotatably connected to one end of a group of mounting blocks. The connecting block is in threaded connection with the first screw rod, and the bottom of the connecting block is in sliding contact with the top of the operating table. The top of the connecting block is connected to the bottom of the mold main body, and the two ends of the bottom of the mold main body are respectively connected to the top of a group of sliding plates. The bottoms of the two groups of sliding plates are respectively in sliding contact with the top of the operating table through the limiting component. One group of positioning plates is respectively arranged at one end of the two groups of sliding plates, and the two ends of the top of the operating table are respectively clamped with a group of positioning plates through the fixing mechanism. Two groups of mounting plates are evenly arranged at the rear end of the top of the operating table. The front ends of the two groups of mounting plates are respectively connected to the rear end of the supporting block. The front end of the supporting block is evenly sleeved with the rear ends of the two groups of pressing plates through the buffering component. The front ends of the two groups of pressing plates are respectively in close contact with the rear end of the mold main body.

[0006] Preferably, the limiting component includes two groups of positioning blocks. Two groups of chutes are evenly arranged on the top of the operating table. The two groups of positioning blocks are respectively slidably connected to the chutes of the operating table, and the tops of the two groups of positioning blocks are respectively connected to the bottom of a group of sliding plates, and the bottoms of the two groups of sliding plates are respectively slidably in close contact with the top of the operating table.

[0007] Preferably, the fixing mechanism includes two groups of fixing plates, two groups of clamping plates, two groups of first clamping blocks and an adjusting component. The two ends of the top of the operating table are respectively connected to the bottom of a group of fixing plates. One ends of the two groups of fixing plates are respectively slidably in close contact with one ends of a group of clamping plates through the adjusting component. A group of first clamping blocks are respectively arranged at the bottoms of the two groups of clamping plates, and a group of clamping slots are respectively arranged at one ends of the tops of the two groups of positioning plates. The bottoms of the two groups of first clamping blocks are respectively clamped with the clamping slots of a group of positioning plates.

[0008] Preferably, the adjusting component includes two groups of second screws and two groups of first sliders. A group of chutes are respectively arranged at one ends of the two groups of fixing plates. The two ends of the two groups of second screws are respectively rotatably connected to one ends of the chutes of the fixing plates. The two groups of first sliders are respectively threadedly connected to the second screws, and the two groups of first sliders are respectively slidably connected to the chutes of the fixing plates. The other ends of the two groups of first sliders are respectively connected to one ends of the clamping plates.

[0009] Preferably, the buffering component includes multiple groups of damping rods and multiple groups of connecting springs. Two groups of grooves are evenly arranged at the front end of the supporting block. The rear ends of the grooves of the two groups of supporting blocks are respectively evenly connected to the rear ends of multiple groups of damping rods. The rear ends of the two groups of pressing plates are respectively evenly connected to the front ends of multiple groups of damping rods. A group of connecting springs are respectively arranged on the outer sides of the multiple groups of damping rods, and the two groups of pressing plates are respectively slidably sleeved in the grooves of the supporting block.

[0010] Preferably, it further includes two groups of rotating handles. The tops of the two groups of second screws respectively pass through the tops of the chutes of the fixing plates and are connected to the bottoms of a group of rotating handles.

[0011] Preferably, it further includes a turntable. The front ends of the first screws respectively pass through the front ends of the chutes of the operating table and are connected to the rear end of the turntable.

[0012] Preferably, it further includes two groups of sponge pads. A group of sponge pads are respectively arranged at the front ends of the two groups of pressing plates, and the front ends of the two groups of sponge pads are respectively in close contact with the rear end of the mold body.

[0013] Compared with the prior art, a part-taking device for a die-casting mold of the present utility model has the following beneficial effects: When the stamping mechanism finishes die-casting, the staff first adjusts the fixing mechanism until it disengages from the positioning plate respectively, and then rotates the first screw rod, so that the connecting block drives the mold body to slide until the mold body slides out from under the stamping mechanism through the sliding plate and the limiting component. Then the staff can take out the metal parts after being press-fitted in the mold body. It enables the staff to quickly drive the metal parts after stamping out from under the stamping mechanism through the mold body, which is convenient for the staff to take out, thus improving the working efficiency and effect of die-casting the metal parts, and therefore enhancing the practicability. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic structural diagram of the present utility model;

[0015] Figure 2 is a right-view three-dimensional schematic structural diagram of the present utility model;

[0016] Figure 3 is a right-view sectional schematic diagram of a part of the structure of the present utility model;

[0017] Figure 4 is an enlarged schematic diagram of a partial structure at A of the present utility model;

[0018] Reference signs in the drawings: 1, device main body; 2, operating table; 3, stamping mechanism; 4, mold body; 5, sliding plate; 6, mounting block; 7, first screw rod; 8, connecting block; 9, positioning plate; 10, pressing plate; 11, supporting block; 12, mounting plate; 13, positioning block; 14, fixing plate; 15, clamping plate; 16, first clamping block; 17, second screw rod; 18, first slider; 19, damping rod; 20, connecting spring; 21, rotating handle; 22, turntable; 23, sponge pad. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] The following combines the drawings and embodiments to further describe in detail the specific embodiments of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.

[0020] As Figures 1 to 4As shown in the figure, a part-taking device for a die-casting mold of the utility model includes a device main body 1, an operating table 2 and a stamping mechanism 3. The front end of the top of the device main body 1 is connected to the bottom of the operating table 2, and the stamping mechanism 3 is arranged at the rear end of the top of the device main body 1; it also includes a mold main body 4, two groups of sliding plates 5, two groups of mounting blocks 6, a first screw 7, a connecting block 8, two groups of positioning plates 9, two groups of pressing plates 10, a supporting block 11, two groups of mounting plates 12, a limiting component, a buffering component and a fixing mechanism. Two groups of mounting blocks 6 are evenly arranged on the top of the operating table 2. The two ends of the first screw 7 are respectively rotatably connected to one end of a group of mounting blocks 6. The connecting block 8 is threadedly connected to the first screw 7, and the bottom of the connecting block 8 is slidably and closely attached to the top of the operating table 2. The top of the connecting block 8 is connected to the bottom of the mold main body 4, and the two ends of the bottom of the mold main body 4 are respectively connected to the top of a group of sliding plates 5. The bottoms of the two groups of sliding plates 5 are respectively slidably and closely attached to the top of the operating table 2 through the limiting component. One group of positioning plates 9 is respectively arranged at one end of the two groups of sliding plates 5, and the two ends of the top of the operating table 2 are respectively clamped with a group of positioning plates 9 through the fixing mechanism. Two groups of mounting plates 12 are evenly arranged at the rear end of the top of the operating table 2. The front ends of the two groups of mounting plates 12 are respectively connected to the rear end of the supporting block 11. The front end of the supporting block 11 is slidably sleeved with the rear ends of the two groups of pressing plates 10 evenly through the buffering component. The front ends of the two groups of pressing plates 10 are respectively closely attached to the rear end of the mold main body 4; after the die-casting of the stamping mechanism is completed, the staff first adjusts the fixing mechanism until it is disengaged from the positioning plate respectively, and then rotates the first screw, so that the connecting block drives the mold main body to slide until the mold main body slides out from under the stamping mechanism through the sliding plate and the limiting component, and then the staff can take out the metal parts after being press-fitted in the mold main body. It can enable the staff to quickly drive the metal parts after stamping out from under the stamping mechanism through the mold main body, which is convenient for the staff to take out, thereby improving the working efficiency and effect of die-casting the metal parts, and thus enhancing the practicability.

[0021] As a preference of the above embodiment, the limiting component includes two groups of positioning blocks 13. Two groups of chutes are evenly arranged on the top of the operating table 2. The two groups of positioning blocks 13 are respectively slidably connected to the chutes of the operating table 2, and the tops of the two groups of positioning blocks 13 are respectively connected to the bottom of a group of sliding plates 5, and the bottoms of the two groups of sliding plates 5 are respectively slidably and closely attached to the top of the operating table 2; it can enable the mold main body to slide quickly, prevent the mold main body from tilting when the sliding plate drives it to slide, which affects the sliding effect, and thus enhances the practicability.

[0022] Preferably, as in the above embodiment, the fixing mechanism includes two sets of fixing plates 14, two sets of clamping plates 15, two sets of first clamping blocks 16 and an adjusting component. The two ends of the top of the operating table 2 are respectively connected to the bottom of a set of fixing plates 14. One ends of the two sets of fixing plates 14 are respectively slidably and closely attached to one end of a set of clamping plates 15 through the adjusting component. One set of first clamping blocks 16 are respectively arranged at the bottoms of the two sets of clamping plates 15, and one set of clamping slots are respectively arranged at one ends of the tops of the two sets of positioning plates 9. The bottoms of the two sets of first clamping blocks 16 are respectively clamped with the clamping slots of one set of positioning plates 9. The staff can slide the two sets of clamping plates through the adjusting component until the two sets of clamping plates respectively drive the first clamping blocks and the clamping slots of the positioning plates to disengage, so that the staff can quickly limit and fix the mold body, thus enhancing the practicability.

[0023] Preferably, as in the above embodiment, the adjusting component includes two sets of second screws 17 and two sets of first sliders 18. One set of sliding grooves are respectively arranged at one ends of the two sets of fixing plates 14. The two ends of the two sets of second screws 17 are respectively rotatably connected to one ends of the sliding grooves of the fixing plates 14. The two sets of first sliders 18 are respectively threadedly connected to the second screws 17, and the two sets of first sliders 18 are respectively slidably connected to the sliding grooves of the fixing plates 14. The other ends of the two sets of first sliders 18 are respectively connected to one end of the clamping plates 15. It can enable the staff to quickly adjust the clamping plates, thus enhancing the practicability.

[0024] Preferably, as in the above embodiment, the buffer component includes multiple sets of damping rods 19 and multiple sets of connecting springs 20. Two sets of grooves are evenly arranged at the front end of the support block 11. The rear ends of the two sets of grooves of the support block 11 are respectively evenly connected to the rear ends of multiple sets of damping rods 19. The rear ends of the two sets of pressing plates 10 are respectively evenly connected to the front ends of multiple sets of damping rods 19. One set of connecting springs 20 are respectively arranged on the outer sides of the multiple sets of damping rods 19, and the two sets of pressing plates 10 are respectively slidably sleeved with the grooves of the support block 11. During the process of the multiple sets of damping rods driving the connecting springs to expand and contract, the acting force generated by extrusion and collision can be effectively reduced, thus enhancing the practicability.

[0025] Preferably, as in the above embodiment, it further includes two sets of rotating handles 21. The tops of the two sets of second screws 17 respectively pass through the tops of the sliding grooves of the fixing plates 14 and are connected to the bottom of a set of rotating handles 21. It can enable the staff to quickly rotate the second screws, thus enhancing the practicability.

[0026] Preferably, as in the above embodiment, it further includes a turntable 22. The front ends of the first screws 7 respectively pass through the front ends of the sliding grooves of the operating table 2 and are connected to the rear end of the turntable 22. It can enable the staff to quickly rotate the first screws, thus enhancing the practicability.

[0027] Preferably, as in the above embodiment, it further includes two sets of sponge pads 23. One set of sponge pads 23 are respectively arranged at the front ends of the two sets of pressing plates 10, and the front ends of the two sets of sponge pads 23 are respectively closely attached to the rear end of the mold body 4.

[0028] A part-taking device for a die-casting mold of the utility model has the following working principle. After the die-casting by the stamping mechanism is completed, the staff first rotates two second screws through the rotating handle, so that the two second sliders drive the clamping plates to slide respectively until the two clamping plates drive the first clamping blocks and the positioning plates to disengage from the clamping. Then, the staff rotates the first screw through the turntable, so that the connecting block drives the mold body to slide until the mold body slides out from under the stamping mechanism through the sliding plate and the positioning block. Then, the staff can take out the metal parts after the pressing in the mold body.

[0029] The terms "vertical", "horizontal", "left", "right" and similar expressions used in this text are for illustrative purposes only.

[0030] Preferably, the "first", "second", "third" mentioned above do not represent specific quantities and orders, but are only used for name distinction.

[0031] The above are only preferred embodiments. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the preferred technical principle, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the preferred.

Claims

1. A die-casting mold removal device, comprising a device body (1), an operating table (2) and a punching mechanism (3), wherein the top front end of the device body (1) is connected to the bottom of the operating table (2), and the top rear end of the device body (1) is provided with a punching mechanism (3); characterized in that: The mold body (4) further comprises two sets of slide plates (5), two sets of mounting blocks (6), a first screw rod (7), a connecting block (8), two sets of positioning plates (9), two sets of pressure plates (10), a supporting block (11), two sets of mounting plates (12), a limiting assembly, a buffer assembly and a fixing mechanism. The top of the operating table (2) is evenly provided with two sets of mounting blocks (6). The two ends of the first screw rod (7) are respectively rotatably connected to one end of a set of mounting blocks (6). The connecting block (8) is threadedly connected to the first screw rod (7). The bottom of the connecting block (8) is slidably attached to the top of the operating table (2). The top of the connecting block (8) is connected to the bottom of the mold body (4). ) are respectively connected to the top of a group of slide plates (5) at both ends of the bottom, the bottoms of the two groups of slide plates (5) are respectively slidably fitted on the top of the operating table (2) through a limiting assembly, one end of each of the two groups of slide plates (5) is respectively provided with a group of positioning plates (9), and the two ends of the top of the operating table (2) are respectively clamped with a group of positioning plates (9) through a fixing mechanism, two groups of mounting plates (12) are evenly arranged at the rear end of the top of the operating table (2), the front ends of the two groups of mounting plates (12) are respectively connected to the rear end of the support block (11), the front end of the support block (11) is evenly slidably fitted on the rear ends of the two groups of pressing plates (10) through a buffer assembly, and the front ends of the two groups of pressing plates (10) are respectively fitted tightly on the rear end of the mold body (4).

2. A die-casting mold removal device as claimed in claim 1, characterized in that: The limiting assembly comprises two groups of positioning blocks (13), two groups of sliding grooves are evenly arranged on the top of the operating table (2), the two groups of positioning blocks (13) are respectively slidably connected to the sliding grooves of the operating table (2), and the tops of the two groups of positioning blocks (13) are respectively connected to the bottoms of a group of slide plates (5), and the bottoms of the two groups of slide plates (5) are respectively slidably and tightly attached to the top of the operating table (2).

3. A die-casting mold removal device as claimed in claim 2, characterized in that: The fixing mechanism comprises two groups of fixing plates (14), two groups of clamping plates (15), two groups of first clamping blocks (16) and an adjusting assembly. The two ends of the top of the operating table (2) are respectively connected to the bottom of a group of fixing plates (14). One end of the two groups of fixing plates (14) is slidably pressed against one end of a group of clamping plates (15) through the adjusting assembly. The bottom of the two groups of clamping plates (15) is respectively provided with a group of first clamping blocks (16). The top ends of the two groups of positioning plates (9) are respectively provided with a group of clamping slots. The bottoms of the two groups of first clamping blocks (16) are respectively clamped with the clamping slots of the one group of positioning plates (9).

4. A die-casting mold removal device as claimed in claim 3, characterized in that: The adjustment assembly comprises two groups of second screw rods (17) and two groups of first sliders (18); one end of each of the two fixed plates (14) is provided with a group of slide grooves; both ends of the two groups of second screw rods (17) are respectively rotatably connected to one end of the slide grooves of the fixed plates (14); the two groups of first sliders (18) are respectively threadedly connected to the second screw rods (17); and the two groups of first sliders (18) are respectively slidably connected to the slide grooves of the fixed plates (14); and the other ends of the two groups of first sliders (18) are respectively connected to one end of the clamping plate (15).

5. A die-casting mold removal device as claimed in claim 4, characterized in that: The buffer assembly comprises a plurality of groups of damping rods (19) and a plurality of groups of connecting springs (20); the front end of the support block (11) is evenly provided with two groups of grooves; the rear ends of the grooves of the two groups of support blocks (11) are evenly connected to the rear ends of the plurality of groups of damping rods (19); the rear ends of the two groups of pressure plates (10) are evenly connected to the front ends of the plurality of groups of damping rods (19); a group of connecting springs (20) are respectively provided on the outside of the plurality of groups of damping rods (19); and the two groups of pressure plates (10) are respectively slidably fitted with the grooves of the support block (11).

6. A die-casting mold removal device as claimed in claim 5, characterized in that: It also includes two groups of rotating handles (21), and the tops of the two groups of second screw rods (17) respectively pass through the top of the sliding groove of the fixed plate (14) and are connected to the bottom of one group of rotating handles (21).

7. A die-casting mold removal device as claimed in claim 6, characterized in that: It also includes a turntable (22), and the front end of the first screw rod (7) passes through the front end of the slide groove of the operating table (2) and is connected to the rear end of the turntable (22).

8. A die-casting mold removal device as claimed in claim 7, characterized in that: It also comprises two groups of sponge pads (23), wherein the front ends of the two groups of pressing plates (10) are respectively provided with a group of sponge pads (23), and the front ends of the two groups of sponge pads (23) are respectively in close contact with the rear ends of the mold body (4).