A kind of realizes cutting water gap polishing integrated tool jig
Patent Information
- Application Number
- CN202522241025.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-23
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-10-23
AI Technical Summary
[0006]本实用新型的目的在于提供一种实现切水口打磨一体化工装治具,以解决上述背景技术提出的现有市场上的设备未设计主动排屑系统,加工产生的碎屑易在抛光区堆积,存在划伤工件或磨损设备的问题
[0022] 1. The fixed connection between the support platform and the grinding table provides a stable foundation for processing. The side cylinder interface facilitates power connection. The rectangular groove on the top enables precise positioning of the product. The four air vents in the groove have both heat dissipation and auxiliary adsorption functions, effectively ensuring processing accuracy.
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Figure CN224765983U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tooling and fixture technology, specifically to a tooling and fixture that integrates sprue grinding. Background Technology
[0002] In the field of injection molding, after injection molded products are formed, they usually need to undergo post-processing to meet the customer's quality standards and usage requirements. The core requirements are mainly reflected in two aspects: first, removing the residual sprue generated during the product molding process (i.e., the residual part of the channel through which molten plastic enters the mold cavity during the injection molding process); second, polishing specific functional or appearance surfaces of the product (such as ejector pin marks, insert lines, and green areas on the surface of some products) to ensure the flatness of the area and prevent it from affecting the product's assembly accuracy or appearance quality.
[0003] Currently, in response to the above-mentioned post-processing requirements, the industry generally adopts the traditional manual operation mode: the operator first holds a pair of scissors and other tools to manually cut and remove the residual sprue of the product; after the sprue is removed, the operator then holds a polishing tool to manually polish the areas with pin marks, insert lines and green surfaces to make the surface flat.
[0004] The "Integrated Machine for Grinding and Polishing Sprues" (hereinafter referred to as the "Equipment") with application number CN201921764256.4 has the following working process: the workpiece is transferred to the fixture by the movement of the second drive device along the X direction, and the fixture is then moved to the bottom of the polishing machine by the third drive device to complete the grinding; then the second suction device moves along the Z and X directions to transfer the workpiece to the conveyor belt of the next process. The Equipment can achieve fully automated operation without human supervision, which greatly improves work efficiency. However, it should be noted that the Equipment is not designed with an active chip removal system, and the chips generated during processing are easy to accumulate in the polishing area, which poses a risk of scratching the workpiece or abrading the equipment.
[0005] Based on this, this solution proposes "an integrated tooling fixture for grinding the sprue" to address the aforementioned problems. Utility Model Content
[0006] The purpose of this utility model is to provide an integrated tooling fixture for polishing sprues, in order to solve the problem mentioned in the background art that existing equipment on the market does not have an active chip removal system, and the chips generated during processing are prone to accumulate in the polishing area, which may scratch the workpiece or wear the equipment.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a tooling fixture for integrated grinding of water cutters, comprising a support platform, a grinding table, a protective cover, a motor, and a cutting head;
[0008] A material discharge mechanism is provided above the support platform. The material discharge mechanism includes a protective cover, a motor, a fixed platform, a guide plate, a cutting platform, and a discharge chute. The discharge chute is located on the side of the cutting platform. The guide plate is located below the fixed platform. The protective cover is located on the fixed platform. The motor is installed on the side of the protective cover. The air inlet is located on the side of the protective cover. The turbofan is installed on the side of the motor.
[0009] As a preferred technical solution of this utility model, a grinding table is fixedly connected to the upper surface of the support platform, a cylinder interface is configured on the side of the grinding table, a rectangular groove is opened on the top of the grinding table, and four air vents are evenly opened in the groove of the grinding table.
[0010] By adopting the above technical solution, the fixed connection between the upper surface of the support platform and the grinding table provides a stable installation foundation for the grinding table, preventing displacement or shaking of the grinding table during the sprue grinding operation, and effectively ensuring processing accuracy. The cylinder interface configured on the side of the grinding table can be easily connected to external cylinder components, providing a stable power transmission interface for subsequent driving of the cutting or grinding structure, reducing the adaptation difficulty in the power connection process. The rectangular groove opened on the top of the grinding table can accurately position the product placed on it, preventing the product from shifting during processing. The four evenly spaced air vents in the groove can also work with the pneumatic system to achieve slight adsorption and fixation of the product, further improving the stability of the product during processing and ensuring the accuracy of the sprue and grinding processes.
[0011] As a preferred technical solution of this utility model, the upper surface of the support platform is bolted to the support frame, the support frame is a right-angled U-shaped structure, and the upper part of the support frame is bolted to fix the fixing platform;
[0012] The above technical solution involves bolting the support frame to the upper surface of the support platform. This bolted connection offers the advantage of easy assembly and disassembly. Subsequent maintenance, replacement, or repositioning of the support frame can be performed without complex operations, reducing the maintenance cost and difficulty of the fixture. The support frame adopts a right-angled U-shaped structure, which minimizes material usage and reduces the overall weight of the fixture while ensuring its own support strength. It also provides ample space for the processing area below the fixture, ensuring that the placement and processing of products are not affected. The support frame is bolted to a fixed platform, ensuring its stability after installation and preventing loosening during subsequent cutting and material handling processes. The bolts also allow for adjustment of the platform's position, improving the fixture's adaptability to different processing requirements and ensuring the stability of subsequent component collaboration.
[0013] As a preferred technical solution of this utility model, a protective cover is fixedly connected to the side of the fixed platform, a motor is fixedly connected to the side of the protective cover, the output shaft of the motor is fixedly connected to the turbofan, and a guide plate is fixedly connected to the side of the protective cover above the fixed platform, with the left side of the guide plate having an inclined structure;
[0014] By adopting the above technical solution, the fixed connection between the side of the fixed platform and the protective cover can effectively protect the motor and turbofan inside the protective cover, preventing debris and dust generated during processing from entering the motor and turbofan, avoiding component wear or failure, and extending the service life of the motor and turbofan. The fixed connection between the side of the protective cover and the motor ensures that the motor output shaft can stably drive the turbofan to rotate. Together with the air inlet on the side of the protective cover, a stable airflow can be formed to promptly suck away or blow away the debris and dust generated during processing from the processing area, keeping the processing environment clean, preventing debris from adhering to the surface of the product and affecting the processing quality, and also preventing debris accumulation from hindering the operation of other components. The guide plate fixed on the side of the protective cover above the fixed platform has a sloping structure on its left side that can accurately guide the airflow and falling debris, guiding the debris smoothly to the subsequent discharge structure. At the same time, the sloping design will not obstruct the placement and processing of the product, ensuring a smooth chip removal process and improving the overall processing efficiency.
[0015] As a preferred technical solution of this utility model, a guide rod is fixedly connected to the upper surface of the fixed platform. The guide rod is an equilateral trapezoidal structure. There are two guide rods symmetrically distributed. A cutting table is fixedly connected to the center line above the guide rod. Rectangular grooves are symmetrically opened on both sides of the cutting table for the cutting head to pass through.
[0016] The above technical solution provides a stable installation foundation for the guide rod by fixing the upper surface of the platform. The guide rod adopts an equilateral trapezoidal structure, which has higher structural strength and stability than a regular rectangular structure with the same amount of material, and can better withstand the forces exerted by the cutting table and during the processing. The two symmetrically distributed guide rods can provide balanced support for the cutting table above, preventing the cutting table from tilting or shifting due to uneven force, and ensuring the horizontal stability of the cutting table during processing. The fixed connection between the center line of the guide rod and the cutting table ensures that the cutting table is in the center processing area of the fixture, which facilitates precise cooperation with components such as the cutting head and the second cylinder. The symmetrical rectangular grooves on both sides of the cutting table can provide precise guidance for the movement of the cutting head, preventing the cutting head from deviating from the preset trajectory during the cutting process, ensuring the accuracy of the cut position, and preventing the cutting head from colliding with the cutting table, thus protecting the cutting head and the cutting table and extending their service life.
[0017] As a preferred technical solution of this utility model, the cutting table has symmetrical discharge grooves on both sides, and a through groove structure is formed at the bottom of the discharge groove and the connection surface with the fixed table for material discharge;
[0018] The above technical solution features symmetrically designed discharge slots on both sides of the cutting table, which can accurately collect waste generated during the cutting process. The symmetrical design ensures that no matter which side the cutting head is cutting from, the waste will fall into the corresponding discharge slot in a timely manner, preventing waste from accumulating on the surface of the cutting table and affecting the processing accuracy of subsequent products or hindering the movement of the cutting head. The through-slot structure at the bottom of the discharge slot and the connection surface with the fixed table allows the waste falling into the discharge slot to be smoothly discharged from the fixture, achieving rapid and automatic waste discharge. This eliminates the need for frequent manual shutdowns to clean the cutting table, reducing processing interruption time and significantly improving overall processing efficiency. It also prevents waste from accumulating inside the fixture and causing component jamming, ensuring the continuous and stable operation of the fixture.
[0019] As a preferred technical solution of this utility model, the cutting head is fixedly connected to the cutting frame, the cutting frame is fixedly connected to the telescopic shaft end of the second cylinder, and the second cylinder is symmetrically configured with the same structure as the first cylinder;
[0020] By adopting the above technical solution, the fixed connection between the cutting head and the cutting frame ensures that the cutting head and the cutting frame form a stable integral structure, preventing the cutting head from loosening or shifting during high-speed cutting or under stress, ensuring the stability of the cutting action of the cutting head, and thus improving the accuracy of the sprue cutting. The fixed connection between the cutting frame and the telescopic shaft end of the second cylinder utilizes the stable power of the cylinder telescopic movement to drive the movement of the cutting frame and the cutting head. Compared with manual or other power methods, cylinder power has stronger controllability and can precisely adjust the cutting speed, stroke, and force of the cutting head, ensuring the consistency of each sprue cutting operation and reducing processing errors. The first cylinder with the same structure is arranged symmetrically at the second cylinder position, enabling the fixture to have the ability to work with two cylinders in tandem. It can not only drive different cutting components simultaneously with the two cylinders to improve cutting efficiency, but also use the first cylinder to assist in fixing the product or to cooperate with other processes, enhancing the functionality and adaptability of the fixture, meeting the sprue grinding requirements of products of different specifications, and improving the versatility of the fixture.
[0021] Compared with the prior art, the beneficial effects of this utility model are:
[0022] 1. The fixed connection between the support platform and the grinding table provides a stable foundation for processing. The side cylinder interface facilitates power connection. The rectangular groove on the top enables precise positioning of the product. The four air vents in the groove have both heat dissipation and auxiliary adsorption functions, effectively ensuring processing accuracy.
[0023] 2. The bolted connection between the bearing platform and the support frame facilitates disassembly and maintenance. The right-angle U-shaped support frame reduces weight while ensuring strength and reserving operating space. The fixed platform, which is fixed by bolts, is highly stable and its position is adjustable, improving the adaptability of the fixture.
[0024] 3. The fixed connection between the fixed platform and the protective cover can protect the motor and the turbofan. The motor drives the turbofan and works with the air inlet to clean the processing environment. The guide plate on the side of the protective cover can accurately guide the airflow and debris to ensure smooth chip removal.
[0025] 4. The equilateral trapezoidal structure and symmetrically distributed guide rods provide stable support. Their fixed connection with the cutting table ensures that the cutting table is in the central processing area. The rectangular grooves on both sides of the cutting table provide precise guidance for the cutting head, avoiding collisions and ensuring the accuracy of the cut.
[0026] 5. The discharge troughs on both sides of the central cutting table can collect waste materials, and the bottom through trough can realize the automatic discharge of waste materials, reducing downtime for cleaning and improving processing efficiency;
[0027] 6. The fixed connection between the cutting head and the cutting frame, and between the cutting frame and the second cylinder, ensures stable cutting action and controllable power. The symmetrically configured first cylinder enhances the functionality of the fixture, meets the processing needs of products of different specifications, improves the versatility of the fixture, and promotes the fixture to achieve efficient, precise and stable sprue grinding operation. Attached Figure Description
[0028] Figure 1 This is a side view of the structure of this utility model;
[0029] Figure 2 This is a schematic diagram of the structure of the support platform and the grinding table of this utility model;
[0030] Figure 3 This is a schematic diagram of the guide rod and the first cylinder structure of this utility model;
[0031] Figure 4 This is a schematic diagram of the cutting table and guide plate structure of this utility model;
[0032] Figure 5 This is a schematic diagram of the cutting frame and the second cylinder of this utility model.
[0033] In the diagram: 1. Support platform; 2. Grinding table; 3. Protective cover; 4. Motor; 5. Support frame; 6. Fixing platform; 7. Guide rod; 8. First cylinder; 9. Product; 10. Cutting frame; 11. Second cylinder; 12. Air inlet; 13. Cutting table; 14. Guide plate; 15. Turbine fan; 16. Discharge chute; 17. Cutting head. Detailed Implementation
[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0035] Please see Figure 1-5 The technical solution of this utility model includes: a support platform 1, a grinding table 2, a protective cover 3, a motor 4, a support frame 5, a fixed platform 6, a guide rod 7, a first cylinder 8, a product 9, a cutting frame 10, a second cylinder 11, an air inlet 12, a cutting table 13, a guide plate 14, a turbo fan 15, a discharge trough 16, and a cutting head 17.
[0036] A material discharge mechanism is provided above the support platform 1. The material discharge mechanism includes a protective cover 3, a motor 4, a fixed platform 6, a guide plate 14, a cutting table 13, and a discharge chute 16. The discharge chute 16 is opened on the side of the cutting table 13. The guide plate 14 is set below the fixed platform 6. The protective cover 3 is set on the fixed platform 6. The motor 4 is installed on the side of the protective cover 3. The air inlet 12 is set on the side of the protective cover 3. The turbo fan 15 is installed on the side of the motor 4.
[0037] A grinding table 2 is fixedly connected to the upper surface of the support platform 1. A cylinder interface is configured on the side of the grinding table 2. A rectangular groove is opened on the top of the grinding table 2, and four air vents are evenly opened in the groove. The fixed connection between the upper surface of the support platform 1 and the grinding table 2 provides a stable installation foundation for the grinding table 2, preventing displacement or shaking of the grinding table 2 when grinding the sprue of the product 9, effectively ensuring processing accuracy. The cylinder interface configured on the side of the grinding table 2 can be easily connected to external cylinder components, providing a stable power transmission interface for subsequent driving of the cutting or grinding structure, reducing the adaptation difficulty in the power connection process. The rectangular groove opened on the top of the grinding table 2 can accurately position the product 9 placed on it, preventing the product 9 from shifting during processing. The four air vents evenly opened in the groove can also work with the pneumatic system to achieve slight adsorption and fixation of the product 9, further improving the stability of the product 9 during processing and ensuring the accuracy of the sprue cutting and grinding processes.
[0038] The upper surface of the support platform 1 is bolted to the support frame 5, which has a right-angled U-shaped structure. The fixed platform 6 is bolted on top of the support frame 5. The bolted connection to the support frame 5 on the upper surface of the support platform 1 offers the advantage of easy assembly and disassembly. If maintenance, replacement, or position adjustment of the support frame 5 is required later, it can be completed without complicated operations, reducing the maintenance cost and difficulty of the fixture. The right-angled U-shaped structure of the support frame 5 can minimize material usage and reduce the overall weight of the fixture while ensuring its own support strength. At the same time, it leaves sufficient space for the processing area below the fixture, without affecting the placement and processing of the product 9. The fixed platform 6 is bolted on top of the support frame 5, which not only ensures the stability of the fixed platform 6 after installation and prevents it from loosening in subsequent cutting, material arrangement and other processes, but also allows the installation position of the fixed platform 6 to be adjusted by bolts, improving the adaptability of the fixture to different specifications of processing requirements and ensuring the stability of subsequent collaborative work of various components.
[0039] A protective cover 3 is fixedly connected to the side of the fixed platform 6, and a motor 4 is fixedly connected to the side of the protective cover 3. The output shaft of the motor 4 is fixedly connected to the turbofan 15. A guide plate 14 is fixedly connected to the side of the protective cover 3 above the fixed platform 6. The left side of the guide plate 14 has a sloping structure. The fixed connection between the side of the fixed platform 6 and the protective cover 3 can effectively protect the motor 4 and turbofan 15 inside the protective cover 3, preventing debris and dust generated during processing from entering the motor 4 and turbofan 15, avoiding wear or failure of components, and extending the service life of the motor 4 and turbofan 15. The fixed connection between the side of the protective cover 3 and the motor 4 ensures that the output shaft of the motor 4 can... The stable rotation of the turbofan 15, combined with the air inlet 12 on the side of the protective cover 3, forms a stable airflow, which promptly sucks away or blows away the debris and dust generated during processing from the processing area, keeping the processing environment clean, preventing debris from adhering to the surface of the product 9 and affecting the processing quality, and also preventing debris accumulation from hindering the operation of other components; the guide plate 14 fixed on the side of the protective cover 3 above the fixed table 6 has a sloping structure on its left side that can accurately guide the airflow and falling debris, guiding the debris to flow smoothly to the subsequent discharge structure. At the same time, the sloping design will not obstruct the placement and processing operation of the product 9, ensuring a smooth chip removal process and improving the overall processing efficiency;
[0040] Guide rods 7 are fixedly connected to the upper surface of the fixed platform 6. The guide rods 7 are equilateral trapezoidal structures, and there are two symmetrically distributed guide rods 7. A cutting table 13 is fixedly connected to the center line above the guide rods 7. Rectangular grooves are symmetrically formed on both sides of the cutting table 13 for the cutting head 17 to pass through. The fixed connection between the upper surface of the fixed platform 6 and the guide rods 7 provides a stable mounting foundation for the guide rods 7. The equilateral trapezoidal structure of the guide rods 7, compared to a common rectangular structure, provides higher structural strength and stability with the same material usage, and can better withstand the forces exerted by the cutting table 13 and during processing. The two symmetrically distributed guide rods 7 can provide balanced support to the upper cutting table 13, avoiding... The non-cutting table 13 may tilt or shift due to uneven force, ensuring the horizontal stability of the cutting table 13 during processing; the fixed connection between the upper center line of the guide rod 7 and the cutting table 13 ensures that the cutting table 13 is in the center processing area of the fixture, facilitating precise cooperation with components such as the cutting head 17 and the second cylinder 11; the symmetrical rectangular grooves on both sides of the cutting table 13 provide precise guidance for the movement of the cutting head 17, preventing the cutting head 17 from deviating from the preset trajectory during cutting, ensuring the accuracy of the cut nozzle position, and preventing the cutting head 17 from colliding with the cutting table 13, protecting the cutting head 17 and the cutting table 13, and extending the service life of both.
[0041] The cutting table 13 has symmetrically arranged discharge slots 16 on both sides. A through-slot structure is provided at the bottom of the discharge slot 16 where it connects with the fixed table 6 for material discharge. The symmetrical discharge slots 16 on both sides of the cutting table 13 can accurately receive the waste generated during the cutting process. The symmetrical design ensures that no matter which side the cutting head 17 cuts from, the waste can fall into the corresponding discharge slot 16 in time, avoiding the accumulation of waste on the surface of the cutting table 13 and preventing the waste from affecting the processing accuracy of the subsequent product 9 or hindering the movement of the cutting head 17. The through-slot structure at the bottom of the discharge slot 16 where it connects with the fixed table 6 allows the waste falling into the discharge slot 16 to be smoothly discharged into the fixture, realizing the rapid and automatic discharge of waste. There is no need for frequent manual shutdowns to clean the cutting table 13, which reduces processing interruption time and significantly improves the overall processing efficiency. At the same time, it also avoids the accumulation of waste inside the fixture, which can cause parts to jam and ensure the continuous and stable operation of the fixture.
[0042] The cutting head 17 is fixedly connected to the cutting frame 10, and the cutting frame 10 is fixedly connected to the telescopic shaft end of the second cylinder 11. The second cylinder 11 is symmetrically positioned with an identical first cylinder 8. This fixed connection ensures that the cutting head 17 and the cutting frame 10 form a stable overall structure, preventing the cutting head 17 from loosening or shifting during high-speed cutting or under stress, thus ensuring the stability of the cutting action and improving the precision of the cut. The fixed connection between the cutting frame 10 and the telescopic shaft end of the second cylinder 11 utilizes the stable power of the cylinder's extension and retraction to drive the cutting frame 10 and the cutting head 17. Compared to manual or other power methods, cylinder power offers greater controllability, allowing for precise adjustment of the cutting speed, stroke, and force of the cutting head 17. This ensures consistency in each sprue cutting operation and reduces processing errors. A first cylinder 8 with the same structure is positioned symmetrically to the second cylinder 11, enabling the fixture to work in tandem with the two cylinders. This allows for simultaneous driving of different cutting components by the two cylinders, improving cutting efficiency. Alternatively, the first cylinder 8 can be used to assist in fixing the product 9 or to coordinate with other processes, enhancing the fixture's functionality and adaptability. This meets the sprue grinding requirements of products 9 of different specifications, improving the fixture's versatility.
[0043] Working principle: When using an integrated tooling fixture for sprue cutting and grinding, the product 9 is first positioned and fixed. The product 9 to be processed is placed in the rectangular groove above the grinding table 2, which is fixedly connected to the upper surface of the support platform 1. The rectangular groove can directly and initially position the product 9, preventing lateral displacement during subsequent processing. At the same time, the pneumatic system is connected through four evenly spaced air vents in the groove of the grinding table 2. The pneumatic suction force is used to slightly adsorb and fix the product 9, further improving the stability of the product 9 during processing and avoiding positional displacement due to vibration. This lays the foundation for the accuracy of subsequent sprue cutting and grinding processes.
[0044] Next, the cutting process is started. Since the support frame 5, which is bolted to the upper surface of the support platform 1, has a right-angled U-shaped structure, the fixed platform 6, which is bolted on top of it, can stably support the cutting-related components. At this time, the second cylinder 11, which is fixedly connected to the cutting frame 10, is activated. The telescopic shaft end of the second cylinder 11 drives the cutting frame 10 and the cutting head 17, which is fixed to the cutting frame 10, to move. The two symmetrical equilateral trapezoidal guide rods 7, which are fixedly connected to the upper surface of the fixed platform 6, have fixed the cutting platform 13 in the center processing area of the fixture through the upper center line position. The cutting head 17 can move precisely along the rectangular grooves symmetrically opened on both sides of the cutting platform 13, avoiding the cutting head 17 from deviating from the preset trajectory during the cutting process, and ensuring the accuracy of the cutting position of the sprue of the product 9. At the same time, the first cylinder 8, which is symmetrically configured with the second cylinder 11, can be activated synchronously. Its telescopic action can provide auxiliary fixing force from the side of the product 9, further limiting the longitudinal displacement of the product 9, preventing the product 9 from shaking due to force during cutting, and ensuring the accuracy of the sprue cutting.
[0045] During the cutting operation, the discharge mechanism is activated to ensure timely cleaning of debris: Inside the protective cover 3 fixedly connected to the side of the fixed table 6, the motor 4 fixedly connected to the side of the protective cover 3 starts to run. The output shaft of the motor 4 drives the turbofan 15 installed on its side to rotate at high speed. Combined with the air inlet 12 opened on the side of the protective cover 3, a stable airflow is formed. The airflow can blow away or suck the debris and dust generated by the cutting head 17 from the processing area to a designated direction. At this time, the guide plate 14 fixedly connected to the side of the protective cover 3 above the fixed table 6 plays a guiding role. Because its left side is a sloping structure, it can accurately guide the debris carried by the airflow to the discharge grooves 16 symmetrically opened on both sides of the cutting table 13. After the debris falls into the discharge groove 16, it is directly discharged outside the fixture through the through groove structure opened at the bottom of the discharge groove 16 and the connection surface with the fixed table 6. This avoids the debris from accumulating on the surface of the cutting table 13 or adhering to the surface of the product 9. This does not affect the smoothness of subsequent cutting operations and also prevents the debris from scratching the surface of the product 9 and affecting the processing quality.
[0046] Throughout the entire process, the support platform 1 serves as the basic support structure, providing a stable installation platform for all components such as the grinding platform 2 and the support frame 5. The right-angled U-shaped structure of the support frame 5 ensures the support strength while reserving sufficient operating space for the processing area below, without affecting the picking, placing, processing, and observation of the product 9. The coordinated cooperation of all components enables the precision, efficiency, and automation of the grinding of the sprue of the product 9.
[0047] This completes a series of tasks. The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0048] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A fixture for integrated grinding of water inlets, comprising a support platform (1), an air inlet (12), and a turbine fan (15); characterized in that: A discharge mechanism is provided above the support platform (1). The discharge mechanism includes a protective cover (3), a motor (4), a fixed platform (6), a guide plate (14), a cutting table (13), and a discharge chute (16). The discharge chute (16) is located on the side of the cutting table (13). The guide plate (14) is located below the fixed platform (6). The protective cover (3) is located on the fixed platform (6). The motor (4) is installed on the side of the protective cover (3). The air inlet (12) is located on the side of the protective cover (3). The turbo fan (15) is installed on the side of the motor (4).
2. The integrated tooling jig for performing a water-jet cut and polishing according to claim 1, wherein, The upper surface of the support platform (1) is fixedly connected to the grinding table (2). The grinding table (2) is equipped with a cylinder interface on its side. A rectangular groove is opened on the top of the grinding table (2), and four air vents are evenly opened in the groove of the grinding table (2).
3. The integrated tooling jig for performing a water-jet cutting and polishing according to claim 2, wherein, The upper surface of the support platform (1) is bolted to the support frame (5), which is a right-angled U-shaped structure. The support frame (5) is bolted to the top of the support frame (5) to fix the fixing platform (6).
4. The integrated tooling jig for performing a water-jet cutting and polishing according to claim 3, wherein, The fixed platform (6) is fixedly connected to the side of the protective cover (3), the protective cover (3) is fixedly connected to the side of the motor (4), the output shaft of the motor (4) is fixedly connected to the turbofan (15), and the protective cover (3) above the fixed platform (6) is fixedly connected to the side of the guide plate (14), the left side of the guide plate (14) is a sloping structure.
5. The integrated tooling jig for performing a water-jet cutting and polishing according to claim 4, wherein, The guide rod (7) is fixedly connected to the upper surface of the fixed platform (6). The guide rod (7) is an equilateral trapezoidal structure. There are two guide rods (7) symmetrically distributed. The cutting table (13) is fixedly connected to the center line above the guide rod (7). The cutting table (13) has rectangular grooves symmetrically opened on both sides for the cutting head (17) to pass through.
6. The integrated tooling jig for cutting and grinding a water gap according to claim 5, wherein, The cutting table (13) has symmetrically opened discharge slots (16) on both sides. The bottom of the discharge slot (16) is opened at the connection surface with the fixed table (6) for discharge.
7. The integrated tooling jig for cutting and grinding a waterbox according to claim 6, wherein, The cutting head (17) is fixedly connected to the cutting frame (10), and the cutting frame (10) is fixedly connected to the telescopic shaft end of the second cylinder (11). The second cylinder (11) is symmetrically arranged with the same structure as the first cylinder (8).
Citation Information
Patent Citations
Nozzle cutting and polishing integrated machine
CN211307256U