Internal processing device and method for mouth mold

Through the integrated test, cleaning, auxiliary melting and spraying functions of the mouth mold mold processing device, the problems of single functions and long processing cycles are solved, and rapid process switching and efficient mold processing are realized.

CN120271210APending Publication Date: 2025-07-08DAYE HUAXING GLASS
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Patent Information

Application Number
CN202510315596.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing port mold mold processing equipment has a single function, making it difficult to achieve rapid replacement or upgrade, and the processing cycle is long, resulting in accumulated positioning errors and frequent transfers between processes.

Method used

A processing device in the mouth mold is designed, integrating detection, cleaning, auxiliary melting and spraying functions. It realizes rapid process switching and positioning through positioning mechanism, translation mechanism, switching platform and lifting mechanism, reducing waiting time between processes.

Benefits of technology

It realizes multifunctional integration, shortens the processing cycle, reduces the clamping error and transfer frequency between processes, and improves the processing compatibility and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The processing device comprises a positioning mechanism, the positioning mechanism comprises a positioning seat and a processing table connected to the top of the positioning seat, four groups of deflector rods are arranged at the top of the processing table, the close ends of the deflector rods are connected with positioning columns, and the ends, away from the positioning columns, of the deflector rods are connected with rotating shafts rotationally matched with the processing table; an adjusting assembly is arranged at the bottom of the machining table and used for adjusting rotation of the four rotating shafts. The translation mechanism is arranged at the bottom of the positioning mechanism; design is carried out according to existing requirements, multi-component cooperative control is achieved, the procedures of detection, cleaning, auxiliary melting, spraying and the like are integrated in the same device, multiple times of clamping and station transferring of a mouth mold are avoided, the treatment period is shortened, switching of different treatment procedures is achieved through the rapid butt joint design of a switching table and a clamping assembly, the waiting time between the procedures is shortened, and the working efficiency is improved. Different processing parts can be conveniently expanded subsequently, and the compatibility is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of mold processing, and specifically to an in-mouth mold processing device and method. Background Art

[0002] The mouth mold is the part used to form the mouth of the glass bottle. There are protrusions and depressions on the inner wall, which will cause the mouth of the bottle to be uneven, affecting the subsequent sealing performance or appearance of the glass bottle. At the same time, during long-term use, the mouth of the bottle is formed in the mouth mold. After long-term use of the mouth mold, wear causes the surface to be uneven or insufficient lubrication, and the glass adheres to the mold. It is necessary to regularly process and clean the mold, strengthen lubrication, and prevent the accumulation of residues.

[0003] In the prior art, most of the processing equipment is designed with a single function, which is not conducive to quickly replacing or upgrading functional components through modular design. During processing, it is necessary to transfer the mouth mold between different equipment or workstations. Frequent clamping leads to the accumulation of positioning errors and a long processing cycle. In view of the above problems, an in-mouth mold processing device and method are proposed. Summary of the Invention

[0004] The purpose of the present invention is to provide an in-mouth mold processing device and method to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solutions:

[0006] An in-mouth mold processing device includes

[0007] a positioning mechanism, which includes a positioning seat and a processing table connected to the top of the positioning seat. Four groups of dial rods are arranged on the top of the processing table. The end portions of the dial rods close to each other are connected with positioning columns. One end of the dial rod far from the positioning column is connected with a rotating shaft rotatably matched with the processing table. An adjusting component is arranged at the bottom of the processing table for adjusting the rotation of the four groups of rotating shafts;

[0008] a translation mechanism arranged at the bottom of the positioning mechanism for adjusting the horizontal movement of the positioning mechanism;

[0009] a switching table, the bottom of the switching table is provided with a support seat, and four groups of installation mechanisms are arranged in a circumferential array on the switching table. A detection part or a cleaning part or an auxiliary melting part or a spraying part is installed at the bottom of the installation mechanism; and

[0010] a lifting mechanism, which includes a support beam and a clamping component arranged at the bottom of the support beam for clamping the installation mechanism and driving the installation mechanism to separate from the switching table. The bottom of the positioning seat is connected with a lifting component for adjusting the lifting of the support beam.

[0011] In an alternative solution: The adjustment assembly includes a connecting bar and an adjustment bar rotatably connected to the end of the connecting bar. The end of the connecting bar away from the adjustment bar is rotatably connected to a rotating shaft. The ends of two adjacent adjustment bars are rotatably connected to the same set of moving brackets. A guide rod slidably engaged with the moving brackets is installed at the bottom of the processing table. One end of each of the two moving brackets away from each other and on the side away from the processing table is rotatably connected to a pull rod. A moving member for adjusting the movement of the two pull rods is installed on the positioning seat.

[0012] In an alternative solution: The moving member includes a rotating ring rotatably connected to the positioning seat. A connecting ring is fixedly connected to the side of the rotating ring close to the processing table. The end of the pull rod away from the moving bracket is rotatably connected to the connecting ring. An electric telescopic rod is rotatably connected to the side of the positioning seat close to the processing table. The other end of the electric telescopic rod is rotatably connected to the connecting ring.

[0013] In an alternative solution: A circular hole is provided on the processing table, corresponding to the rotating ring. A docking pipe is connected to the bottom of the processing table, passing through the rotating ring and extending to the circular hole. A conveying pipe communicated with the docking pipe is installed in the positioning seat, and the conveying pipe extends to the outside of the positioning seat.

[0014] In an alternative solution: The translation mechanism includes a translation seat provided on one side of the support seat. A moving bracket slidably engaged with the translation seat is installed at the bottom of the positioning seat. A first lead screw is rotatably installed in the translation seat. A first transmission screw hole threadedly engaged with the first lead screw is provided on the moving bracket. A first motor for driving the first lead screw to rotate is installed on one side of the translation seat.

[0015] In an alternative solution: The installation mechanism includes an installation seat and two sets of L-shaped limit plates slidably arranged in the installation seat. The two sets of L-shaped limit plates are symmetrically arranged, and the vertical plates of the two sets of L-shaped limit plates are arranged at the closer ends. Limit sliders are connected to both sides of the horizontal plates of the L-shaped limit plates. Springs are connected to the limit sliders. An adjustment groove for the sliding of the L-shaped limit plates and the limit sliders is provided in the installation seat. A clamping frame is connected to the top of the installation seat. The vertical plates of the L-shaped limit plates extend into the clamping frame. An installation groove for installing the installation seat is provided on the switching table, and limit grooves inserted and matched with the ends of the L-shaped limit plates are provided on both sides of the installation groove.

[0016] In an alternative solution: The clamping assembly includes a clamping seat and two sets of pneumatic grippers installed at the bottom of the clamping seat. Protrusions are connected to the bottoms of the pneumatic grippers. The two protrusions are arranged oppositely, and the outer walls of the protrusions are slidably engaged with the inner walls of the clamping frame. A partition is connected to the middle of the inner cavity of the clamping frame.

[0017] In an alternative solution: The lifting assembly includes a machine base and a hydraulic lifting telescopic rod installed inside the machine base. The top of the hydraulic lifting telescopic rod is connected to a support beam. A second lead screw is rotatably installed inside the support beam. A sliding seat is slidably arranged inside the support beam. The sliding seat is provided with a second transmission screw hole that is threadedly engaged with the second lead screw. A second motor for driving the second lead screw to rotate is installed inside the support beam. The bottom of the second lead screw is connected to a clamping seat.

[0018] In an alternative solution: A rotary driving component for driving the switching table to rotate is provided inside the support seat; A protective frame is provided on one side of the switching table. The bottom of the protective frame is connected to the support seat. An arc-shaped strip is provided on one side of the protective frame. A first arc-shaped groove that is slidably engaged with the arc-shaped strip is provided on the outer wall of the switching table. A second arc-shaped groove that is slidably engaged with the arc-shaped strip is provided on the outer wall of the mounting seat.

[0019] A usage method of an in-mouth die mold processing device includes the following steps: Step 1, Connect each component inside the device to a control system, and adjust the detection sensitivity, cleaning intensity, melting temperature, and spraying thickness according to the selected detection piece, cleaning piece, auxiliary melting piece, and spraying piece;

[0020] Step 2, The translation mechanism can adjust the horizontal movement of the positioning mechanism. Place the mouth die to be processed on the top of the processing table. Then the translation mechanism drives the positioning mechanism to reset. The adjustment component works, controlling the synchronous rotation of the four groups of rotating shafts. The rotation directions of the two groups of rotating shafts that are close to each other are opposite. Driven by the rotation of the four groups of rotating shafts, the ends of the four groups of dial rods approach, and the four groups of positioning columns cooperate to center and position the mouth die;

[0021] Step 3, The switching table rotates, switching the corresponding installation mechanism to be placed above the mouth die. The clamping component clamps the installation mechanism and drives the installation mechanism to separate from the switching table. With the cooperation of the lifting component, the installation mechanism can be driven to descend;

[0022] Step 4, Use the detection piece to photograph and scan the inner wall of the mouth die to observe the inner wall defects;

[0023] Step 5, Switch to the cleaning piece, and use the cleaning piece to remove the residues on the inner wall of the mouth die. Before removal, the auxiliary melting piece can be used to melt the residues. After cleaning, the spraying piece can be used to spray the release agent;

[0024] Step 6, Take out the processed mouth die, and reset each component inside the device.

[0025] Compared with the prior art, the beneficial effects of the present invention are:

[0026] In the present invention, the die to be processed is placed on the top of the processing table. Then, the translation mechanism drives the positioning mechanism to reset. The adjustment component works to control the synchronous rotation of the four groups of rotating shafts. The rotation directions of the two groups of rotating shafts close to each other are opposite. Driven by the rotation of the four groups of rotating shafts, the ends of the four groups of lever rods approach each other. The four groups of positioning columns cooperate to center and position the die. By rotating the switching table, the corresponding installation mechanism is switched to be placed above the die. The clamping component clamps the installation mechanism and drives the installation mechanism to separate from the switching table. With the cooperation of the lifting component, the installation mechanism can be driven to descend. Through coordinated control, processes such as detection, cleaning, auxiliary melting, and spraying are integrated into the same device, avoiding multiple clamping and station transfer of the die, shortening the processing cycle. The quick docking design of the switching table and the clamping component realizes the switching of different processing procedures, reduces the waiting time between processes, and is also convenient for expanding different processing components in the future, improving compatibility. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a schematic structural diagram of the present invention.

[0028] Figure 2 It is a schematic structural diagram of the other side in the present invention.

[0029] Figure 3 It is a schematic structural diagram of the positioning mechanism and the translation mechanism in the present invention.

[0030] Figure 4 It is a schematic structural diagram of the positioning mechanism in the present invention.

[0031] Figure 5 It is a schematic partial structural diagram of the positioning mechanism in the present invention.

[0032] Figure 6 It is a schematic structural diagram of the switching table and the installation mechanism in the present invention.

[0033] Figure 7 It is a schematic structural diagram of the lifting mechanism in the present invention.

[0034] In the figure: 1, positioning mechanism; 2, translation mechanism; 3, switching table; 4, support base; 5, installation mechanism; 6, lifting mechanism; 7, protective frame; 8, detection piece; 9, cleaning piece; 10, auxiliary melting piece; 11, spraying piece;

[0035] 201, translation base; 202, first lead screw;

[0036] 101, positioning seat; 102, processing table; 103, lever rod; 104, positioning column; 105, rotating shaft; 106, connecting strip; 107, adjusting strip; 108, moving frame; 109, guide rod; 1010, pull rod; 1011, rotating ring; 1012, connecting ring; 1013, electric telescopic rod; 1014, moving frame; 1015, docking pipe; 1016, conveying pipe;

[0037] 301, mounting groove; 302, limiting groove; 303, first arc-shaped groove;

[0038] 501, mounting base; 502, L-shaped limiting plate; 503, limiting slider; 504, clamping frame; 505, second arc-shaped groove;

[0039] 601, support beam; 602, clamping seat; 603, pneumatic gripper; 604, sliding seat; 605, second lead screw; 606, machine base; 607, hydraulic lifting telescopic rod. Detailed implementation manners

[0040] In the present invention, unless otherwise clearly defined and limited, terms such as "mounting", "connecting", "coupling", "fixing", etc. shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal communication of two components or the interaction relationship between two components, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0041] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0042] Please refer to Figure 1-7 , in the embodiment of the present invention, a device for processing inside a die mold includes a positioning mechanism 1, which includes a positioning seat 101 and a processing table 102 connected to the top of the positioning seat 101. Four groups of push rods 103 are provided on the top of the processing table 102. The ends of the push rods 103 close to each other are all connected to positioning columns 104. One end of the push rod 103 away from the positioning column 104 is connected to a rotating shaft 105 that is rotationally matched with the processing table 102. An adjusting assembly is provided at the bottom of the processing table 102 for adjusting the rotation of the four groups of rotating shafts 105;

[0043] A translation mechanism 2 disposed at the bottom of the positioning mechanism 1 for adjusting the horizontal movement of the positioning mechanism 1; a switching table 3, a support base 4 is provided at the bottom of the switching table 3, and four groups of mounting mechanisms 5 are arranged in a circumferential array on the switching table 3, and a detection member 8 or a cleaning member 9 or an auxiliary melting member 10 or a spraying member 11 is mounted at the bottom of the mounting mechanism 5; and a lifting mechanism 6, which includes a support beam 601 and a clamping assembly provided at the bottom of the support beam 601 for clamping the mounting mechanism 5 and driving the mounting mechanism 5 to separate from the switching table 3, and a lifting assembly is connected to the bottom of the positioning seat 101 for adjusting the lifting of the support beam 601;

[0044] With the above solution, each component in the device is connected to the control system, and according to the selected detection member 8, cleaning member 9, auxiliary melting member 10 and spraying member 11, the detection sensitivity, cleaning intensity, melting temperature and spraying thickness are adjusted;

[0045] The translation mechanism 2 can adjust the horizontal movement of the positioning mechanism 1. Place the die to be processed on the top of the processing table 102, and then the translation mechanism 2 drives the positioning mechanism 1 to reset. The adjustment assembly works to control the synchronous rotation of the four groups of rotating shafts 105. The rotation directions of the two groups of adjacent rotating shafts 105 are opposite. Driven by the rotation of the four groups of rotating shafts 105, the ends of the four groups of toggle rods 103 approach, and the four groups of positioning columns 104 cooperate to center the die;

[0046] The switching table 3 rotates to switch the corresponding mounting mechanism 5 above the die. The clamping assembly clamps the mounting mechanism 5 and drives the mounting mechanism 5 to separate from the switching table 3. With the cooperation of the lifting assembly, the mounting mechanism 5 can be driven to descend;

[0047] The inner wall of the die is photographed and scanned by the detection member 8 to observe the inner wall defects;

[0048] Switch to the cleaning member 9 to remove the residues on the inner wall of the die by the cleaning member 9. Before removal, the auxiliary melting member 10 can be used to melt the residues, and after cleaning, the spraying member 11 can be used to spray the release agent; take out the processed die, and each component in the device resets.

[0049] Please refer to Figure 4 and Figure 5 As shown in, the adjustment assembly includes an adapter bar 106 and an adjustment bar 107 rotatably connected to the end of the adapter bar 106. The end of the adapter bar 106 away from the adjustment bar 107 is rotatably connected to the rotating shaft 105. The ends of the two groups of adjacent adjustment bars 107 are rotatably connected to the same group of moving brackets 108. A guide rod 109 slidably matched with the moving brackets 108 is installed at the bottom of the processing table 102. One end of the two groups of moving brackets 108 away from each other and on the side away from the processing table 102 are both rotatably connected to a pull rod 1010. A moving member for adjusting the movement of the two groups of pull rods 1010 is installed on the positioning seat 101;

[0050] Specifically, when the pull rod 1010 moves, it can drive the moving frame 108 to slide and adjust on the guide rod 109. When the two groups of moving frames 108 approach each other, the adjustment bar 107 will drive the connecting bar 106 to rotate around the axis of the rotating shaft 105, and drive the rotating shaft 105 to rotate. During the rotation of the rotating shaft 105, the toggle lever 103 is driven to rotate. Since the two groups of moving frames 108 move in opposite directions during movement, and the two adjustment bars 107 connected to the same group of moving frames 108 rotate in opposite directions when driven, the four rotating shafts 105 will rotate synchronously, but the two adjacent rotating shafts rotate in opposite directions, enabling the four toggle levers 103 to move synchronously to perform clamping or unclamping operations.

[0051] Please refer to Figure 4 and Figure 5 As shown in FIGS. Figure 4 and Figure 5 , the moving member includes a rotating ring 1011 rotatably connected to the positioning seat 101. One side of the rotating ring 1011 close to the processing table 102 is fixedly connected with an adapter ring 1012. One end of the pull rod 1010 away from the moving frame 108 is rotatably connected to the adapter ring 1012. One side of the positioning seat 101 close to the processing table 102 is rotatably connected with an electric telescopic rod 1013, and the other end of the electric telescopic rod 1013 is rotatably connected to the adapter ring 1012;

[0052] Specifically, during the telescopic movement of the electric telescopic rod 1013, the rotation of the rotating ring 1011 can be adjusted, driving the adapter ring 1012 to rotate, and causing the pull rod 1010 to move.

[0053] Please refer to Figure 3 、 Figure 4 and Figure 5 As shown in FIGS. Figure 3 , Figure 4 and Figure 5 , a circular hole is provided on the processing table 102, which corresponds to the rotating ring 1011. A docking pipe 1015 is connected to the bottom of the processing table 102, passing through the rotating ring 1011 and extending to the circular hole. A conveying pipe 1016 communicated with the docking pipe 1015 is installed in the positioning seat 101, and the conveying pipe 1016 extends to the outside of the positioning seat 101;

[0054] Specifically, when the die is centered, the middle cavity of the die is communicated with the circular hole, and the docking pipe 1015 is connected to an external negative pressure air extraction device, which is convenient for timely dust removal during the inner wall treatment of the die.

[0055] Please refer to Figure 3 and Figure 4 As shown in FIGS. Figure 3 and Figure 4 , the translation mechanism 2 includes a translation seat 201 provided on one side of the support seat 4. A moving frame 1014 slidably engaged with the translation seat 201 is installed at the bottom of the positioning seat 101. A first lead screw 202 is rotatably installed in the translation seat 201, and a first transmission screw hole threadedly engaged with the first lead screw 202 is provided on the moving frame 1014. A first motor for driving the first lead screw 202 to rotate is installed on one side of the translation seat 201;

[0056] Specifically, the first motor operates to drive the first lead screw 202 to rotate, thereby driving the moving frame 1014 to slide on the translation base 201 and adjusting the horizontal position of the positioning base 101.

[0057] Please refer to Figure 6 , the installation mechanism 5 includes an installation base 501 and two groups of L-shaped limiting plates 502 slidably arranged in the installation base 501. The two groups of L-shaped limiting plates 502 are symmetrically arranged, and the vertical plates of the two groups of L-shaped limiting plates 502 are arranged at the closer ends. Both sides of the horizontal plate of the L-shaped limiting plate 502 are connected with limiting sliders 503. Springs are connected to the limiting sliders 503. An adjustment groove for the sliding of the L-shaped limiting plate 502 and the limiting slider 503 is provided in the installation base 501. A clamping frame 504 is connected to the top of the installation base 501. The vertical plate of the L-shaped limiting plate 502 extends into the clamping frame 504. An installation groove 301 for installing the installation base 501 is provided on the switching table 3. Limiting grooves 302 for plugging and matching with the ends of the L-shaped limiting plates 502 are provided on both sides of the installation groove 301;

[0058] Specifically, when the installation base 501 is placed in the installation groove 301, under the force of the spring, the L-shaped limiting plate 502 slides in the adjustment groove, and the end of the L-shaped limiting plate 502 can be placed in the limiting groove 302 to limit the position of the installation base 501.

[0059] Please refer to Figure 1 , Figure 6 and Figure 7 , the clamping assembly includes a clamping base 602 and two groups of pneumatic grippers 603 installed at the bottom of the clamping base 602. The bottom of the pneumatic gripper 603 is connected with a convex block. The two convex blocks are arranged oppositely, and the outer wall of the convex block is slidably matched with the inner wall of the clamping frame 504. A partition is connected to the middle of the inner cavity of the clamping frame 504;

[0060] When the two groups of pneumatic grippers 603 approach each other for clamping, the convex blocks at the bottom of the pneumatic grippers 603 are placed in the clamping frame 504, squeezing the vertical plates of the two groups of L-shaped limiting plates 502, driving the vertical plates of the L-shaped limiting plates 502 to abut against the partition, so that the pneumatic grippers 603 can clamp the installation mechanism 5, and at the same time, the ends of the L-shaped limiting plates 502 are separated from the limiting grooves 302, releasing the fixation of the installation mechanism 5 on the switching table 3;

[0061] In actual use, different processing components can be configured at the bottom of the installation base 501 according to requirements for processing the die.

[0062] Please refer to Figure 2, the lifting assembly includes a base 606 and a hydraulic lifting telescopic rod 607 installed inside the base 606. The top of the hydraulic lifting telescopic rod 607 is connected to a support beam 601. A second lead screw 605 is rotatably installed inside the support beam 601. A sliding seat 604 is slidably arranged inside the support beam 601. The sliding seat 604 is provided with a second transmission screw hole that is threadedly engaged with the second lead screw 605. A second motor for driving the second lead screw 605 to rotate is installed inside the support beam 601. The bottom of the second lead screw 605 is connected to a clamping seat 602;

[0063] Specifically, the hydraulic lifting telescopic rod 607 can control the lifting of the support beam 601. During the lifting of the support beam 601, the height of the clamped installation mechanism 5 can be adjusted. When the second motor works, it can drive the second lead screw 605 to rotate and adjust the horizontal movement of the sliding seat 604.

[0064] Furthermore, a rotary drive component for driving the switching table 3 to rotate is provided inside the support base 4;

[0065] A protective frame 7 is provided on one side of the switching table 3. The bottom of the protective frame 7 is connected to the support base 4. An arc-shaped strip is provided on one side of the protective frame 7. A first arc-shaped groove 303 that is slidably engaged with the arc-shaped strip is provided on the outer wall of the switching table 3. A second arc-shaped groove 505 that is slidably engaged with the arc-shaped strip is provided on the outer wall of the mounting seat 501;

[0066] When away from the clamping assembly, both the first arc-shaped groove 303 and the second arc-shaped groove 505 are slidably engaged with the arc-shaped strip, so that the installation mechanism 5 can be stably placed inside the switching table 3.

[0067] The working principle of the present invention is: Connect each component in the device to a control system, and adjust the detection sensitivity, cleaning strength, melting temperature, and spraying thickness according to the selected detection part 8, cleaning part 9, auxiliary melting part 10, and spraying part 11;

[0068] The translation mechanism 2 can adjust the horizontal movement of the positioning mechanism 1. Place the die to be processed on the top of the processing table 102. Then the translation mechanism 2 drives the positioning mechanism 1 to reset. The adjustment component works to control the synchronous rotation of the four groups of rotating shafts 105. The rotation directions of the two groups of adjacent rotating shafts 105 are opposite. Driven by the rotation of the four groups of rotating shafts 105, the ends of the four groups of lever rods 103 approach, and the four groups of positioning columns 104 cooperate to center and position the die;

[0069] The switching table 3 rotates to switch the corresponding installation mechanism 5 above the die. The clamping assembly clamps the installation mechanism 5 and drives the installation mechanism 5 to separate from the switching table 3. With the cooperation of the lifting assembly, the installation mechanism 5 can be driven to descend;

[0070] The inner wall of the die is photographed and scanned by the detection part 8 to observe the inner wall defects;

[0071] Switch the cleaning part 9 to remove the residues on the inner wall of the die through the cleaning part 9. Before removal, the auxiliary melting part 10 can be used to melt the residues, and after cleaning, the spraying part 11 can be used to spray the release agent;

[0072] Take out the processed die, and reset each component in the device.

[0073] The above is only a preferred embodiment of the present invention, and it is not a limitation of the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present invention still fall within the protection scope of the technical solution of the present invention.

Claims

1. An in-die treatment device for a die, characterized in that, including a positioning mechanism (1), which includes a positioning base (101) and a processing table (102) connected to the top of the positioning base (101). Four groups of lever rods (103) are provided on the top of the processing table (102). The end portions of the lever rods (103) close to each other are all connected to positioning columns (104). One end of the lever rod (103) far from the positioning column (104) is connected to a rotating shaft (105) rotatably matched with the processing table (102). An adjusting assembly is provided at the bottom of the processing table (102) for adjusting the rotation of the four groups of rotating shafts (105); a translation mechanism (2) provided at the bottom of the positioning mechanism (1) for adjusting the horizontal movement of the positioning mechanism (1); a switching table (3), a support base (4) is provided at the bottom of the switching table (3). Four groups of mounting mechanisms (5) are arranged in a circumferential array on the switching table (3). A detection member (8) or a cleaning member (9) or an auxiliary melting member (10) or a spraying member (11) is mounted at the bottom of the mounting mechanism (5); and a lifting mechanism (6), which includes a support beam (601) and a clamping assembly provided at the bottom of the support beam (601) for clamping the mounting mechanism (5) and driving the mounting mechanism (5) to separate from the switching table (3). A lifting assembly is connected to the bottom of the positioning base (101) for adjusting the lifting of the support beam (601).

2. The in-die treatment device according to claim 1, characterized in that The adjusting assembly includes an adapter bar (106) and an adjusting bar (107) rotatably connected to the end of the adapter bar (106). One end of the adapter bar (106) far from the adjusting bar (107) is rotatably connected to the rotating shaft (105). The end portions of two adjacent adjusting bars (107) are rotatably connected to the same moving frame (108). A guide rod (109) slidably matched with the moving frame (108) is mounted at the bottom of the processing table (102). One end of the two moving frames (108) far from each other and on the side far from the processing table (102) is rotatably connected to a pull rod (1010). A moving member for adjusting the movement of the two pull rods (1010) is mounted on the positioning base (101).

3. The in-die processing device according to claim 2, characterized in that The moving member includes a rotating ring (1011) rotatably connected to the positioning base (101). An adapter ring (1012) is fixedly connected to the side of the rotating ring (1011) close to the processing table (102). One end of the pull rod (1010) far from the moving frame (108) is rotatably connected to the adapter ring (1012). An electric telescopic rod (1013) is rotatably connected to the side of the positioning base (101) close to the processing table (102). The other end of the electric telescopic rod (1013) is rotatably connected to the adapter ring (1012).

4. The in-die treatment device according to claim 3, characterized in that, A circular hole is provided on the processing table (102), which corresponds to the rotating ring (1011). A docking pipe (1015) passing through the rotating ring (1011) and extending to the circular hole is connected to the bottom of the processing table (102). A conveying pipe (1016) communicated with the docking pipe (1015) is mounted in the positioning base (101), and the conveying pipe (1016) extends to the outside of the positioning base (101).

5. The in-die treatment device according to claim 1, characterized in that, The translation mechanism (2) includes a translation base (201) provided on one side of the support base (4). A moving frame (1014) that is slidably engaged with the translation base (201) is installed at the bottom of the positioning base (101). A first lead screw (202) is rotatably installed in the translation base (201). A first transmission screw hole that is threadedly engaged with the first lead screw (202) is provided on the moving frame (1014). A first motor for driving the first lead screw (202) to rotate is installed on one side of the translation base (201).

6. The in-die processing device according to claim 1, wherein The installation mechanism (5) includes an installation base (501) and two groups of L-shaped limit plates (502) slidably disposed in the installation base (501). The two groups of L-shaped limit plates (502) are symmetrically arranged, and the vertical plates of the two groups of L-shaped limit plates (502) are disposed at the closer ends. Limit sliders (503) are connected to both sides of the horizontal plate of the L-shaped limit plate (502). Springs are connected to the limit sliders (503). An adjustment groove for the L-shaped limit plate (502) and the limit slider (503) to slide is provided in the installation base (501). A clamping frame (504) is connected to the top of the installation base (501). The vertical plate of the L-shaped limit plate (502) extends into the clamping frame (504). An installation groove (301) for installing the installation base (501) is provided on the switching table (3). Limit grooves (302) that are inserted and matched with the ends of the L-shaped limit plates (502) are provided on both sides of the installation groove (301).

7. The in-die treatment device according to claim 6, characterized in that, The clamping assembly includes a clamping base (602) and two groups of pneumatic grippers (603) installed at the bottom of the clamping base (602). Protrusions are connected to the bottoms of the pneumatic grippers (603). The two protrusions are oppositely arranged, and the outer walls of the protrusions are slidably engaged with the inner wall of the clamping frame (504). A partition is connected to the middle of the inner cavity of the clamping frame (504).

8. The in-die treatment device according to claim 7, wherein The lifting assembly includes a machine base (606) and a hydraulic lifting telescopic rod (607) installed in the machine base (606). The top of the hydraulic lifting telescopic rod (607) is connected to a support beam (601). A second lead screw (605) is rotatably installed in the support beam (601). A sliding seat (604) is slidably disposed in the support beam (601). A second transmission screw hole that is threadedly engaged with the second lead screw (605) is provided on the sliding seat (604). A second motor for driving the second lead screw (605) to rotate is installed in the support beam (601). The bottom of the second lead screw (605) is connected to the clamping base (602).

9. The in-die processing device according to claim 6, characterized in that A turntable drive component for driving the switching table (3) to rotate is provided in the support base (4); a protective frame (7) is provided on one side of the switching table (3). The bottom of the protective frame (7) is connected to the support base (4). An arc-shaped strip is provided on one side of the protective frame (7). A first arc-shaped groove (303) that is slidably engaged with the arc-shaped strip is provided on the outer wall of the switching table (3). A second arc-shaped groove (505) that is slidably engaged with the arc-shaped strip is provided on the outer wall of the installation base (501).

10. A method of using the in-die processing device of the die mold according to claim 1, characterized in that, Including the following steps: Step 1: Connect each component in the device to the control system. According to the selected detection part (8), cleaning part (9), auxiliary melting part (10) and spraying part (11), adjust the detection sensitivity, cleaning strength, melting temperature and spraying thickness; Step 2: The translation mechanism (2) can adjust the positioning mechanism (1) to move horizontally. Place the die to be processed on the top of the processing table (102). Then the translation mechanism (2) drives the positioning mechanism (1) to reset. The adjusting component works to control the four groups of rotating shafts (105) to rotate synchronously. The rotating directions of the two groups of rotating shafts (105) that are close to each other are opposite. Driven by the rotation of the four groups of rotating shafts (105), the ends of the four groups of lever rods (103) approach each other, and the four groups of positioning columns (104) cooperate to center and position the die; Step 3: The switching table (3) rotates to switch the corresponding installation mechanism (5) above the die. The clamping component clamps the installation mechanism (5) and drives the installation mechanism (5) to separate from the switching table (3). With the cooperation of the lifting component, the installation mechanism (5) can be driven to descend; Step 4: Use the detection part (8) to photograph and scan the inner wall of the die to observe the inner wall defects; Step 5: Switch to the cleaning part (9) to remove the residues on the inner wall of the die through the cleaning part (9). Before removal, the auxiliary melting part (10) can be used to melt the residues. After cleaning, the spraying part (11) can be used to spray the release agent; Step 6: Take out the processed die, and each component in the device resets.