Automobile tire mold machining device and technology
By introducing components such as negative pressure absorption tubes and driving plates into the automotive tire mold processing device, the problems of metal debris splashing and residue during drilling are solved, efficient debris absorption and removal are achieved, and the cleanliness of the processing environment and mold quality are improved.
Patent Information
- Application Number
- CN202510143373.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-05-09
AI Technical Summary
In the prior art, metal debris generated during drilling will splash and fall on the surface of the mold, contaminating the processing environment and affecting the quality of the mold.
An automobile tire mold processing device is designed, including air induced air, ash collection barrel and an absorption tube. The metal debris produced by the drilling hole are absorbed into the ash collection barrel through the negative pressure absorption tube, and the debris below are removed through the driving plate and the lifting mechanism.
It effectively avoids the splash of metal debris, reduces the residue of debris on the mold, and improves the cleanliness of the processing environment and the mold quality.
Smart Images

Figure CN119952521A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of equipment for producing automobile tire molds, and more specifically, to an automobile tire mold processing device and process. Background Art
[0002] Automobile tires are important components to ensure vehicle safety and driving performance, and tire molds are one of the most critical core equipment in tire production. The quality of tire molds directly affects tire performance and production efficiency. In the process of producing automobile tire molds, workers often use automobile tire mold processing equipment to perform drilling and cutting operations on tire molds.
[0003] The document with prior art publication number CN215845842U provides a punching device with a waste collection mechanism for automobile tire mold processing. The device is provided with a clamp structure and a rotating mechanism. After punching a hole, the tire mold is rotated to the next punching position to continue punching. The tire mold does not need to be held all the time during the punching process, which saves physical effort.
[0004] Although the above-mentioned existing technical solutions can reduce the difficulty of mold processing and collect the debris generated by drilling, they still have the following defects: the above-mentioned technical solutions only use the recovery cavity to receive the waste generated by processing, but the drilling process will inevitably produce some metal debris that splashes around and falls on the mold surface. This part of metal waste will not only pollute the mold processing environment, but also affect the mold quality. In view of this, we propose a car tire mold processing device and process. Summary of the invention
[0005] Technical issues to be solved The purpose of this application is to provide a car tire mold processing device and process, which solves the technical problem in the prior art that metal waste not only pollutes the mold processing environment but also affects the mold quality. It can efficiently absorb the metal debris generated by drilling, which can not only avoid the splashing of metal debris but also reduce the residue of debris on the mold. Technical Solution
[0006] The embodiment of the present application provides a vehicle tire mold processing device, comprising: Fixed bracket, The punching mechanism includes a mounting shell fixedly mounted on a fixed frame, a movable frame is slidably connected in the mounting shell, a lifting cylinder is fixedly mounted on the movable frame, a lifting end of the lifting cylinder is fixedly connected to a receiving frame, a drilling device is fixedly mounted on the receiving frame, a telescopic frame is fixedly mounted on one side of the mounting shell, and a telescopic end of the telescopic frame is fixedly connected to the movable frame; A placing mechanism, which is used to place and fix the tire mold; The suction mechanism includes an air induced device, the air induced device has an air suction end fixedly connected to a sealed shell, an ash collecting bucket is installed in the sealed shell, the ash collecting bucket is densely covered with filter holes, an absorption pipe is passed through one side of the sealed shell, one end of the absorption pipe passes through the ash collecting bucket and extends to the inner cavity of the ash collecting bucket; A leak-proof assembly, which is used to remove debris from under the tire mold during drilling; The collecting component is used to collect the absorbed metal debris.
[0007] After adopting the above technical solution, As an optional solution of the technical solution of this application document, the placing mechanism includes: A bearing frame, wherein the bearing frame is fixedly mounted on the fixing frame; A driving frame, which is restricted by the supporting frame and is rotatably connected thereto; A plurality of clamps, which are mounted on a driving frame and are used to clamp a tire mold; The driving mechanism is used to drive the driving frame to rotate.
[0008] After adopting the above technical solution, the metal debris generated by drilling can be efficiently absorbed, which can not only avoid the splash of metal debris, but also reduce the residue of debris on the mold.
[0009] As an optional solution of the technical solution of the present application document, the clamp includes a first clamping plate fixedly mounted on a driving frame, a connecting frame fixedly mounted on the driving frame, a screw rod rotatably connected to the connecting frame, a second clamping plate threadedly connected to the screw rod, and the second clamping plate is restricted by the connecting frame and slidably connected thereto.
[0010] After adopting the above technical solution, it is convenient to fix the mold to be processed.
[0011] As an optional solution of the technical solution of this application document, the driving mechanism includes an electric motor, a driving gear is fixedly connected to the output end of the motor, a driving gear ring is sleeved and fixed on one side of the driving frame, and the driving gear is meshingly connected with the driving gear ring.
[0012] After adopting the above technical solution, the driving frame can drive the mold to rotate, thereby facilitating drilling holes at various positions of the mold.
[0013] As an optional solution to the technical solution of the present application document, a first cleaning cylinder is sleeved on the outer side of the drilling tool of the drilling equipment, and an air distribution pipe is fixedly connected to the other end of the absorption tube, and the air distribution pipe is communicated with the inner cavity of the first cleaning cylinder.
[0014] After adopting the above technical solution, the first cleaning tube cover is arranged outside the punching position, which can reduce the metal splashing.
[0015] As an optional solution of the technical solution of this application document, the leak-proof component includes: A driving plate, a second cleaning cylinder is installed above the driving plate, and the inner cavity of the second cleaning cylinder is connected to the air distribution pipe; The lifting mechanism is used to drive the driving plate and the second cleaning cylinder to move up and down. The lifting mechanism includes: A first rack, the first rack is fixedly mounted on the receiving frame; The rotating frame, the fixed rod and the rotating frame are all fixedly installed on the moving frame, the rotating frame is rotatably connected with a connecting gear, and the first rack is meshed and connected with the connecting gear; A fixed rod, one side of the fixed rod is slidably connected with a second rack, the second rack is meshed and connected with the connecting gear, and the second rack is fixedly connected with the driving plate.
[0016] After adopting the above technical solution, while the receiving frame drives the drilling tool to move downward, it drives the plate and the second cleaning cylinder to move upward. If the drilled hole is a through hole, the second cleaning cylinder can absorb and remove the debris leaked from the bottom, further avoiding the residue of debris and ensuring the cleanliness of the processing environment.
[0017] As an optional solution of the technical solution of this application document, the first cleaning cylinder and the second cleaning cylinder are both composed of dust cleaning cylinders, and the dust cleaning cylinders include: A connecting plate, wherein a through hole is formed on the connecting plate on the first cleaning cylinder; The receiving tube is a hollow structure, and a plurality of suction holes are provided on the inner wall of the receiving tube. A transfer hose is fixedly connected to one side of the receiving tube, and the transfer hose is fixedly connected to one side of the air distribution pipe; The telescopic rod comprises a slide bar slidably inserted into the receiving frame and the driving plate, and a first spring is sleeved on the outer side of the slide bar; A fitting mechanism is also installed on one side of the dust cleaning cylinder. The fitting mechanism includes a plurality of pressing plates. The pressing plates are limited by the receiving cylinder and are slidably connected thereto. A second spring is fixedly connected between the pressing plates and the receiving cylinder. The end of the receiving tube is slidably matched with the end of the connecting disk. A magnetic ring is embedded and fixed on the end of the receiving tube. The magnetic ring is magnetically matched with the connecting disk. An elastic part is fixedly connected between the receiving tube and the connecting disk.
[0018] After adopting the above technical solution, during the operation of the induced draft equipment, the inner cavity of the receiving tube is in a negative pressure state, which absorbs the debris generated by the processing, and the setting of the first spring and the slide rod allows the receiving tube to be extended and retracted within a certain range, thereby ensuring the smooth drilling.
[0019] As an optional solution of the technical solution of this application document, the collection component includes: A bearing shell, in which a waste box is slidably connected; A discharge pipe is fixedly connected to one side of the ash collecting bucket, an end of the discharge pipe passes through one side of the bearing shell and extends to its inner cavity, and a discharge valve is also installed in the discharge pipe.
[0020] After adopting the above technical solution, the debris in the ash collecting barrel is discharged into the waste box through the discharge pipe, and the staff can handle the debris by pulling out the waste box.
[0021] As an optional solution of the technical solution of this application document, the discharge valve includes: The driving shaft is rotatably installed on the ash collecting bucket, and an auger blade is sleeved and fixed on one side of the driving shaft. The auger blade is slidably matched with the inner wall of the feeding tube, and an anti-blocking brush is fixedly installed on the other side of the driving shaft. The anti-blocking brush is in frictional contact with the inner wall of the ash collecting bucket; A rotating mechanism, the rotating mechanism is used to drive the driving shaft to rotate; The rotating mechanism includes: A driving wheel, which is sleeved and fixed on the output shaft of the motor and the driving shaft; Belt, belt and driving wheel friction transmission.
[0022] After adopting the above technical solution, the staff does not need to clean the ash collecting bucket frequently, and it is convenient for the staff to carry out subsequent treatment of the waste in the waste box.
[0023] The present application also discloses a process for processing a car tire mold, comprising the following steps: S1. A staff member places a tire mold between a first clamping plate and a second clamping plate to fix the mold; S2, the motor and the telescopic frame are running, the mold is adjusted to the appropriate position, and the drilling tool is positioned to the drilling position; S3, under the action of the lifting cylinder, the drilling equipment moves downward while running to punch holes in the tire mold; S4, while the drilling device moves downward, the first rack moves along with it, the second rack drives the driving plate and the second cleaning cylinder to move upward, and the pressing plate is gradually attached to the outside of the mold; S5. During the drilling process, the inner cavity of the receiving tube of the induced draft equipment is in a negative pressure state, and the debris generated by the processing is absorbed into the ash collecting bucket. Beneficial Effects
[0024] One or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages: The technical solution of the present application can efficiently absorb the metal debris generated by drilling by providing air induced equipment, ash collecting buckets and absorption pipes, which can not only avoid the splashing of metal debris, but also reduce the residue of debris on the mold.
[0025] The technical solution of the present application is to set up a driving plate and a lifting mechanism. When the receiving frame drives the drilling tool to move downward, the driving plate and the second cleaning cylinder will move upward. If the drilled hole is a through hole, the second cleaning cylinder can absorb and remove the debris leaked from below, further avoiding the residue of debris and ensuring the cleanliness of the processing environment.
[0026] The technical solution of the present application is to set up a pressing plate and a second spring. Under the action of the second spring, the densely distributed pressing plates can fit tightly against the outside of the mold, adapt to different mold contours, prevent debris from flying out of the gap, fully improve the cleaning effect of processing waste, and also fully prevent debris from accidentally splashing.
[0027] The technical solution of the present application provides a connecting plate and a magnetic ring, so that after the pressing plate is attached to the outside of the mold, the drilling tool can still be translated within a small range, which makes it convenient for the staff to adjust the drilling position without affecting the debris removal effect, thereby effectively improving the accuracy of mold drilling.
[0028] The technical solution of the present application can discharge the debris in the ash bin into the waste box by setting a waste box discharge pipe and a discharge valve, eliminating the need for staff to frequently clean the ash bin, while facilitating subsequent disposal of the waste in the waste box by staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a schematic diagram of the overall structure of a vehicle tire mold processing device disclosed in a preferred embodiment of the present application; Figure 2 This is a structural schematic diagram of a holding mechanism in a vehicle tire mold processing device disclosed in a preferred embodiment of the present application; Figure 3 It is a partial structural schematic diagram of one side of the moving frame in the automobile tire mold processing device disclosed in a preferred embodiment of the present application; Figure 4 This is a schematic structural diagram of a dust cleaning cylinder in a vehicle tire mold processing device disclosed in a preferred embodiment of the present application; Figure 5 This is a bottom view schematic diagram of the structure of a dust cleaning cylinder in a vehicle tire mold processing device disclosed in a preferred embodiment of the present application; Figure 6 A schematic diagram of a part of the structure on one side of a pressing plate in a vehicle tire mold processing device disclosed in a preferred embodiment of the present application; Figure 7 This is a schematic structural diagram of a leak-proof component in a vehicle tire mold processing device disclosed in a preferred embodiment of the present application; Figure 8 This is a schematic structural diagram of a collecting component in a vehicle tire mold processing device disclosed in a preferred embodiment of the present application; Fig. 9 It is a schematic cross-sectional view of the structure of a feed pipe in a car tire mold processing device disclosed in a preferred embodiment of the present application; Explanation of the reference numerals in the figure: 1. fixed frame; 2. mounting housing; 3. mobile frame; 4. telescopic frame; 5. placing mechanism; 501. bearing frame; 502. driving frame; 503. driving gear ring; 504. connecting frame; 505. driving gear; 506. second clamping plate; 507. screw rod; 508. first clamping plate; 509. motor; 6. suction mechanism; 601. air induction device; 602. sealing housing; 603. ash collecting bucket; 604. air distribution pipe; 605. filter hole; 606. absorption pipe; 7. anti-leakage component; 701. driving plate; 702. fixed rod; 703. first rack; 7 04. Rotating frame; 705. Second rack; 706. Connecting gear; 8. Collecting assembly; 801. Carrying shell; 802. Waste box; 803. Feeding pipe; 804. Driving wheel; 805. Driving shaft; 806. Auger blade; 807. Belt; 808. Anti-blocking brush; 9. Cleaning cylinder; 901. Connecting plate; 902. Receiver; 903. Elastic part; 905. Suction hole; 906. Pressing plate; 907. Second spring; 908. Transfer hose; 909. Magnetic ring; 910. First spring; 911. 10. Lifting cylinder; 11. Drilling equipment; 12. Receiver. DETAILED DESCRIPTION
[0030] The present invention will be further described in detail below by enumerating embodiments of the present invention in conjunction with the accompanying drawings.
[0031] Reference Figure 1-Figure 8 The embodiment of the present application discloses a vehicle tire mold processing device, which includes: a fixing frame 1, a punching mechanism, a receiving mechanism 5, a suction mechanism 6, a leak-proof component 7 and a collecting component 8.
[0032] The punching mechanism includes a mounting shell 2 fixedly mounted on a fixed frame 1, a movable frame 3 is slidably connected in the mounting shell 2, a lifting cylinder 10 is fixedly mounted on the movable frame 3, a lifting end of the lifting cylinder 10 is fixedly connected to a receiving frame 12, a drilling device 11 is fixedly mounted on the receiving frame 12, a telescopic frame 4 is fixedly mounted on one side of the mounting shell 2, and a telescopic end of the telescopic frame 4 is connected and fixed to the movable frame 3; The placing mechanism 5 is used to place and fix the tire mold; The suction mechanism 6 includes an air induced device 601, the air induced device 601 has a sealed shell 602 fixedly connected to its suction end, an ash collecting bucket 603 is installed in the sealed shell 602, the ash collecting bucket 603 is densely covered with filter holes 605, an absorption pipe 606 is penetrated on one side of the sealed shell 602, one end of the absorption pipe 606 passes through the ash collecting bucket 603 and extends to the inner cavity of the ash collecting bucket 603; The anti-leakage assembly 7 is used to remove debris under the tire mold during drilling; The collecting assembly 8 is used to collect the absorbed metal debris.
[0033] The staff fixes the tire mold to be processed on the supporting mechanism 5, then moves the drilling equipment 11 to the appropriate position through the telescopic frame 4, and positions the drilling tool to the drilling position. Under the action of the lifting cylinder 10, the drilling equipment 11 moves downward while running to drill holes in the tire mold. During this period, the air induced device 601 is running, and the end of the absorption pipe 606 is in a negative pressure state. The debris generated by the drilling is immediately absorbed into the ash collecting bucket 603. In this way, the metal debris generated by the drilling can be efficiently absorbed, which can not only avoid the splashing of metal debris, but also reduce the residue of debris on the mold.
[0034] Reference Figure 1 and Figure 2 An embodiment of the present application provides an automobile tire mold processing device, wherein the placing mechanism 5 includes a supporting frame 501, a driving frame 502, a plurality of clamps and a driving mechanism.
[0035] The supporting frame 501 is fixedly mounted on the fixing frame 1; the driving frame 502 is limited by the supporting frame 501 and is rotationally connected thereto; the clamp is mounted on the driving frame 502 and is used to clamp the tire mold; and the driving mechanism is used to drive the driving frame 502 to rotate.
[0036] Based on the above scheme, the present application provides a car tire mold processing device, in which the clamp includes a first clamping plate 508 fixedly mounted on a driving frame 502, a connecting frame 504 fixedly mounted on the driving frame 502, a screw rod 507 rotatably connected to the connecting frame 504, the screw rod 507 is threadedly connected to a second clamping plate 506, and the second clamping plate 506 is restricted by the connecting frame 504 and is slidably connected thereto.
[0037] Based on the above scheme, the present application provides an automobile tire mold processing device, the driving mechanism of which includes a motor 509, a driving gear 505 is fixedly connected to the output end of the motor 509, a driving gear ring 503 is sleeved and fixed on one side of the driving frame 502, and the driving gear 505 is meshingly connected with the driving gear ring 503.
[0038] The staff places the tire mold between the first clamping plate 508 and the second clamping plate 506, and then rotates the screw 507 until the second clamping plate 506 is in close contact with the mold contour. During the punching process, the motor 509 runs, and under the connection between the driving gear ring 503 and the active gear 505, the driving frame 502 can drive the mold to rotate, thereby facilitating the punching of holes at various positions of the mold.
[0039] Reference Figure 1 and Figure 3 In an embodiment of the present application, a vehicle tire mold processing device is provided, wherein a first cleaning cylinder is sleeved on the outer side of the drilling tool of the drilling device 11, and an air distribution pipe 604 is fixedly connected to the other end of the absorption pipe 606, and the air distribution pipe 604 is communicated with the inner cavity of the first cleaning cylinder.
[0040] Reference Figure 1 and Figure 7 In an embodiment of the present application, a vehicle tire mold processing device is provided, wherein the leakage-proof component 7 includes a driving plate 701 and a lifting mechanism.
[0041] A second cleaning cylinder is installed above the driving plate 701, and the inner cavity of the second cleaning cylinder is connected to the air distribution pipe 604; The lifting mechanism is used to drive the driving plate 701 and the second cleaning cylinder to move up and down.
[0042] On the basis of the above scheme, the present application provides an automobile tire mold processing device, wherein the lifting mechanism includes a first rack 703 , a rotating frame 704 and a fixed rod 702 .
[0043] Among them, the first rack 703 is fixedly installed on the supporting frame 12; the fixed rod 702 and the rotating frame 704 are both fixedly installed on the mobile frame 3, and the rotating frame 704 is rotatably connected with a connecting gear 706, and the first rack 703 is meshed with the connecting gear 706; a second rack 705 is slidably connected to one side of the fixed rod 702, and the second rack 705 is meshed with the connecting gear 706, and the second rack 705 is connected and fixed to the driving plate 701.
[0044] While the receiving frame 12 drives the drilling tool to move downward, the first rack 703 moves along with it. Due to the connecting action of the connecting gear 706, the second rack 705 drives the driving plate 701 and the second cleaning cylinder to move upward. If the drilled hole is a through hole, the second cleaning cylinder can absorb and remove the debris leaked from the bottom, further avoiding the residue of debris and ensuring the cleanliness of the processing environment.
[0045] Reference Figure 3 , Figure 4 , Figure 5 and Figure 6 In an automobile tire mold processing device provided in an embodiment of the present application, the first cleaning cylinder and the second cleaning cylinder are both composed of a dust cleaning cylinder 9, and the dust cleaning cylinder 9 includes a connecting plate 901, a receiving cylinder 902 and a telescopic rod.
[0046] A through hole is provided on the connecting disk 901 on the first cleaning cylinder, and the receiving cylinder 902 is arranged in a hollow structure. A plurality of suction holes 905 are provided on the inner wall of the receiving cylinder 902. A transfer hose 908 is fixedly connected to one side of the receiving cylinder 902, and the transfer hose 908 is fixedly connected to one side of the air distribution duct 604; the telescopic rod includes a sliding rod 911 slidably penetrated on the receiving frame 12 and the driving plate 701, and a first spring 910 is sleeved on the outer side of the sliding rod 911.
[0047] During the operation of the induced draft device 601, the inner cavity of the receiving tube 902 is in a negative pressure state, which absorbs the debris generated during processing, and the setting of the first spring 910 and the slide bar 911 allows the receiving tube 902 to be extended and retracted within a certain range, thereby ensuring smooth drilling.
[0048] Based on the above scheme, the present application provides a car tire mold processing device, in which a fitting mechanism is also installed on one side of the cleaning cylinder 9, and the fitting mechanism includes a plurality of pressing plates 906, which are restricted by the receiving cylinder 902 and are slidably connected thereto, and a second spring 907 is fixedly connected between the pressing plate 906 and the receiving cylinder 902.
[0049] Under the action of the second spring 907, the densely packed pressing plates 906 can fit tightly to the outside of the mold and adapt to different mold contours, thereby preventing debris from flying out of the gaps, fully improving the cleaning effect of processing waste, and also fully preventing debris from accidentally splashing.
[0050] Based on the above scheme, the present application provides a car tire mold processing device, in which the end of the receiving tube 902 is slidably matched with the end of the connecting disk 901, and a magnetic ring 909 is embedded and fixed on the end of the receiving tube 902. The magnetic ring 909 is magnetically matched with the connecting disk 901, and an elastic member 903 is fixedly connected between the receiving tube 902 and the connecting disk 901.
[0051] The arrangement of the magnetic ring 909 and the connecting plate 901 enables the drilling tool to still move horizontally within a small range after the staff attaches the pressing plate 906 to the outside of the mold, making it easy for the staff to adjust the drilling position, thereby effectively improving the accuracy of the mold drilling.
[0052] Reference Figure 1 , Figure 8 and Fig. 9 In an embodiment of the present application, a vehicle tire mold processing device is provided, wherein the collecting assembly 8 includes a carrying shell 801 and a feeding pipe 803 .
[0053] Among them, a waste box 802 is slidably connected in the supporting shell 801; a discharge pipe 803 is fixedly connected to one side of the ash collecting bucket 603, and the end of the discharge pipe 803 passes through one side of the supporting shell 801 and extends to its inner cavity, and a discharge valve is also installed in the discharge pipe 803.
[0054] Under the action of the discharge valve, the debris in the ash collecting bucket 603 is discharged into the waste box 802 through the discharge pipe 803, and the staff can pull out the waste box 802 to deal with the debris.
[0055] On the basis of the above scheme, the present application provides an automobile tire mold processing device, wherein the discharge valve includes a drive shaft 805 and a rotating mechanism.
[0056] The driving shaft 805 is rotatably installed on the ash collecting bucket 603. An auger blade 806 is fixedly sleeved on one side of the driving shaft 805. The auger blade 806 slides with the inner wall of the discharge pipe 803. An anti-blocking brush 808 is also fixedly installed on the other side of the driving shaft 805. The anti-blocking brush 808 is in frictional contact with the inner wall of the ash collecting bucket 603. The rotating mechanism is used to drive the driving shaft 805 to rotate.
[0057] Based on the above scheme, the present application provides an automobile tire mold processing device, wherein the rotating mechanism includes a driving wheel 804 and a belt 807 .
[0058] The driving wheel 804 is sleeved and fixed on the output shaft of the motor 509 and the driving shaft 805 ; the belt 807 and the driving wheel 804 are frictionally driven.
[0059] During the operation of the motor 509, under the connection between the belt 807 and the driving wheel 804, the driving shaft 805 will drive the anti-blocking brush 808 to rotate, sweeping away the debris adhering to the inner wall of the ash collecting bucket 603, thereby ensuring the smooth suction of the debris. At the same time, the auger blade 806 rotates accordingly, discharging the debris in the ash collecting bucket 603 into the waste box 802, eliminating the need for the staff to frequently clean the ash collecting bucket 603, and facilitating the staff to subsequently process the waste in the waste box 802.
[0060] The automobile tire mold processing process recorded in this embodiment includes the following steps: S1. A staff member places a tire mold between the first clamping plate 508 and the second clamping plate 506 to fix the mold; S2, the motor 509 and the telescopic frame 4 are running, the mold is adjusted to a proper position, and the drilling tool is positioned to the drilling position; S3, under the action of the lifting cylinder 10, the drilling device 11 moves downward while running to punch holes in the tire mold; S4. When the drilling device 11 moves downward, the first rack 703 moves along with it, and the second rack 705 drives the driving plate 701 and the second cleaning cylinder to move upward, and the pressing plate 906 gradually fits the outer side of the mold; S5. During the drilling process, the inner cavity of the receiving tube 902 of the induced draft device 601 is in a negative pressure state, and the debris generated during the drilling is absorbed into the ash collecting bucket 603.
[0061] The implementation principle of a car tire mold processing device in an embodiment of the present application is as follows: when relevant staff need to use the present technical solution to drill holes in the car tire mold during processing of the car tire mold, the staff first places the tire mold between the first clamping plate 508 and the second clamping plate 506, and then rotates the screw 507 until the second clamping plate 506 is in close contact with the mold contour.
[0062] After the mold is fixed, the motor 509 is running, and the driving frame 502 drives the mold to rotate under the connection between the driving gear ring 503 and the driving gear 505, and the mold is adjusted to a proper position. The drilling device 11 is moved to a proper position through the telescopic frame 4, and the drilling tool is positioned to the punching position. Under the action of the lifting cylinder 10, the drilling device 11 moves downward while running to punch holes in the tire mold.
[0063] When the drilling device 11 moves downward, the first rack 703 moves along with it, and the second rack 705 drives the driving plate 701 and the second cleaning cylinder to move upward, and then the pressing plate 906 gradually fits the outside of the mold.
[0064] During the drilling process, the inner cavity of the receiving tube 902 of the induced draft device 601 is in a negative pressure state, and the debris generated during the drilling is absorbed into the ash collecting bucket 603.
[0065] In addition, during the operation of the motor 509, under the connection between the belt 807 and the driving wheel 804, the driving shaft 805 drives the anti-blocking brush 808 to rotate, sweeping away the debris adhering to the inner wall of the ash collecting bucket 603, and at the same time, the auger blade 806 rotates accordingly, discharging the debris in the ash collecting bucket 603 into the waste box 802. This process is continued to complete the operation of drilling the mold.
Claims
1. An automobile tire mold processing device, characterized in that: Include: Fixing bracket (1), A punching mechanism, the punching mechanism comprising a mounting shell (2) fixedly mounted on a fixed frame (1), a movable frame (3) being slidably connected inside the mounting shell (2), a lifting cylinder (10) being fixedly mounted on the movable frame (3), a lifting end of the lifting cylinder (10) being fixedly connected to a receiving frame (12), a drilling device (11) being fixedly mounted on the receiving frame (12), a telescopic frame (4) being fixedly mounted on one side of the mounting shell (2), and a telescopic end of the telescopic frame (4) being connected and fixed to the movable frame (3); A placing mechanism (5), the placing mechanism (5) being used to place and fix the tire mold; A suction mechanism (6), the suction mechanism (6) comprising an air induction device (601), the air induction end of the air induction device (601) being fixedly connected to a sealed shell (602), an ash collecting bucket (603) being installed in the sealed shell (602), the ash collecting bucket (603) being densely covered with filter holes (605), an absorption pipe (606) being passed through one side of the sealed shell (602), one end of the absorption pipe (606) passing through the ash collecting bucket (603) and extending to the inner cavity of the ash collecting bucket (603); An anti-leakage component (7), the anti-leakage component (7) being used to remove debris below the tire mold during drilling; A collecting component (8), wherein the collecting component (8) is used to collect the absorbed metal debris.
2. The automobile tire mold processing device according to claim 1, characterized in that: The receiving and placing mechanism (5) comprises: A carrier frame (501), wherein the carrier frame (501) is fixedly mounted on the fixing frame (1); A driving frame (502), wherein the driving frame (502) is restricted by the supporting frame (501) and is rotationally connected thereto; A plurality of clamps, wherein the clamps are mounted on a driving frame (502) and are used to clamp a tire mold; A driving mechanism, wherein the driving mechanism is used to drive the driving frame (502) to rotate.
3. The automobile tire mold processing device according to claim 2, characterized in that: The clamp comprises a first clamping plate (508) fixedly mounted on a driving frame (502); a connecting frame (504) fixedly mounted on the driving frame (502); a screw rod (507) rotatably connected to the connecting frame (504); the screw rod (507) is threadedly connected to a second clamping plate (506); and the second clamping plate (506) is restricted by the connecting frame (504) and is slidably connected thereto.
4. The automobile tire mold processing device according to claim 2, characterized in that: The driving mechanism comprises a motor (509), the output end of the motor (509) is fixedly connected to a driving gear (505), one side of the driving frame (502) is sleeved and fixed with a driving gear ring (503), and the driving gear (505) is meshingly connected to the driving gear ring (503).
5. The automobile tire mold processing device according to claim 1, characterized in that: A first cleaning cylinder is sleeved on the outside of the drilling tool of the drilling equipment (11); the other end of the absorption tube (606) is fixedly connected to an air distribution tube (604); and the air distribution tube (604) is in communication with the inner cavity of the first cleaning cylinder.
6. The automobile tire mold processing device according to claim 5, characterized in that: The anti-leakage component (7) comprises: A driving plate (701), wherein a second cleaning cylinder is installed above the driving plate (701), and the inner cavity of the second cleaning cylinder is connected to the air distribution pipe (604); A lifting mechanism, the lifting mechanism is used to drive the driving plate (701) and the second cleaning cylinder to move up and down, and the lifting mechanism comprises: A first rack (703), the first rack (703) being fixedly mounted on the receiving frame (12); A rotating frame (704), wherein the fixed rod (702) and the rotating frame (704) are both fixedly mounted on the movable frame (3), a connecting gear (706) is rotatably connected to the rotating frame (704), and the first rack (703) is meshingly connected to the connecting gear (706); A fixed rod (702), one side of which is slidably connected to a second rack (705), the second rack (705) being meshingly connected to a connecting gear (706), and the second rack (705) being fixedly connected to the driving plate (701).
7. The automobile tire mold processing device according to claim 6, characterized in that: The first cleaning cylinder and the second cleaning cylinder are both composed of a dust cleaning cylinder (9), and the dust cleaning cylinder (9) comprises: A connecting disk (901), wherein the connecting disk (901) on the first cleaning cylinder is provided with a through hole; A receiving tube (902), the receiving tube (902) being of a hollow structure, a plurality of suction holes (905) being provided on the inner wall of the receiving tube (902), a transfer hose (908) being fixedly connected to one side of the receiving tube (902), and the transfer hose (908) being fixedly connected to one side of the air distribution tube (604); A telescopic rod, the telescopic rod comprising a slide rod (911) slidably inserted into the receiving frame (12) and the driving plate (701), and a first spring (910) is sleeved on the outer side of the slide rod (911); A fitting mechanism is also installed on one side of the cleaning cylinder (9), the fitting mechanism comprising a plurality of pressing plates (906), the pressing plates (906) being restricted by the receiving cylinder (902) and slidably connected thereto, and a second spring (907) being fixedly connected between the pressing plates (906) and the receiving cylinder (902); The end of the receiving tube (902) is slidably matched with the end of the connecting disk (901); a magnetic ring (909) is embedded and fixed in the end of the receiving tube (902); the magnetic ring (909) is magnetically matched with the connecting disk (901); and an elastic member (903) is fixedly connected between the receiving tube (902) and the connecting disk (901).
8. The automobile tire mold processing device according to claim 4, characterized in that: The collecting component (8) comprises: A carrying shell (801), wherein a waste box (802) is slidably connected inside the carrying shell (801); A discharge pipe (803), the discharge pipe (803) is fixedly connected to one side of the ash collecting bucket (603), the end of the discharge pipe (803) passes through one side of the supporting shell (801) and extends to the inner cavity thereof, and a discharge valve is also installed in the discharge pipe (803).
9. The automobile tire mold processing device according to claim 8, characterized in that: The discharge valve comprises: A driving shaft (805), the driving shaft (805) being rotatably inserted into the ash collecting bucket (603), an auger blade (806) being sleeved and fixed on one side of the driving shaft (805), the auger blade (806) being slidably matched with the inner wall of the feeding tube (803), an anti-blocking brush (808) being fixedly mounted on the other side of the driving shaft (805), the anti-blocking brush (808) being in frictional contact with the inner wall of the ash collecting bucket (603); A rotating mechanism, the rotating mechanism being used to drive the driving shaft (805) to rotate; The rotating mechanism comprises: A driving wheel (804), wherein the driving wheel (804) is sleeved and fixed on an output shaft of the motor (509) and a driving shaft (805); A belt (807) is provided, wherein the belt (807) and the driving wheel (804) are frictionally driven.
10. The automobile tire mold processing process according to any one of claims 1 to 9, characterized in that: The following steps are involved: S1. A staff member places a tire mold between a first clamping plate (508) and a second clamping plate (506) to fix the mold; S2, the motor (509) and the telescopic frame (4) are running, the mold is adjusted to a suitable position, and the drilling tool is positioned to the drilling position; S3, under the action of the lifting cylinder (10), the drilling device (11) moves downward while running to drill holes in the tire mold; S4, while the drilling device (11) moves downward, the first rack (703) moves accordingly, the second rack (705) drives the driving plate (701) and the second cleaning cylinder to move upward, and the pressing plate (906) gradually fits the outer side of the mold; S5. During the drilling process, the inner cavity of the receiving tube (902) of the induced draft device (601) is in a negative pressure state, and the debris generated during the drilling process is absorbed into the dust collecting bucket (603).
Citation Information
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