Machining device for inner ring fire cover
By combining the clamping mechanism of the inner ring flame cap processing device with the cross-shaped linear module, the problems of low processing efficiency and precision of the inner ring flame cap were solved, and a high-efficiency and stable processing process was achieved.
Patent Information
- Application Number
- CN202520288999.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing technologies suffer from low processing efficiency and low precision in the processing of inner ring flame covers, especially in the process of removing processing waste and forming mounting grooves and recesses, which are difficult to complete efficiently.
A processing device for an inner ring flame cap is adopted, including a clamping mechanism, a processing mechanism, and a cross-shaped linear module. The clamping mechanism clamps the inner ring flame cap, and the cross-shaped linear module drives the processing mechanism to perform operations such as milling, drilling, and slotting, ensuring the accuracy and efficiency of the processing.
It improves the processing efficiency and precision of the inner ring flame cap, reduces the impact of processing debris on subsequent processing, and ensures the stability and flexibility of the processing process.
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Figure CN223820066U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of processing devices, in particular to a processing device of an inner ring fire cover. BACKGROUND
[0002] The inner ring fire cover is one of the key components of a gas stove, mainly responsible for providing small fire.
[0003] Reference Figure 1 The top surface of the inner ring fire cover 5 is in the shape of a water droplet, that is, the top of the inner ring fire cover 5 has a mounting protrusion 51 protruding away from the inner ring fire cover 5. The inner ring fire cover 5 has a mounting protrusion 51 on one side and a mounting groove 53 on the other side, wherein the bottom surface of the mounting groove 53 is inclined and the extension direction of the mounting groove 53 is arranged vertically to the center line direction of the inner ring fire cover 5. The top surface of the inner ring fire cover 5 also has a mounting groove 54. In the processing of the inner ring fire cover 5, the top surface of the semi-finished product of the inner ring fire cover 5 has processing waste extending upward, so the processing waste needs to be removed and the top surface of the inner ring fire cover 5 needs to be milled, and then the mounting groove 53 and the mounting groove 54 of the inner ring fire cover 5 are processed to produce the finished product of the inner ring fire cover 5.
[0004] For the related technology in the above, the present application provides a processing device of an inner ring fire cover. CONTENT OF THE UTILITY MODEL
[0005] In order to improve the processing efficiency of the inner ring fire cover, the present application provides a processing device of an inner ring fire cover.
[0006] The processing device of the inner ring fire cover provided by the present application adopts the following technical scheme:
[0007] A processing device of an inner ring fire cover, comprising a machine case, a clamping mechanism arranged on the machine case and used for arranging the inner ring fire cover, a processing mechanism slidably arranged on the machine case and used for processing the inner ring fire cover, and a cross linear module driving the processing mechanism to slide; the clamping mechanism comprises a clamping seat for clamping the inner ring fire cover and a driving piece driving the clamping seat to rotate; the processing mechanism comprises a sliding plate arranged on the cross linear module, a drill bit assembly arranged on the sliding plate and used for processing the mounting groove, a first processing assembly slidably arranged on the sliding plate and used for milling the top surface of the inner ring fire cover, and a second processing assembly slidably arranged on the sliding plate and used for processing the mounting groove; the cross linear module is arranged vertically to the center axis of the inner ring fire cover arranged on the clamping seat.
[0008] By adopting the above technical solution, in the processing of the inner ring flame cap, the inner ring flame cap is placed on the clamping seat. First, the driving component drives the clamping seat to rotate. Then, the cross-shaped linear module drives the first processing component to mill the top surface of the inner ring flame cap. Next, the cross-shaped linear module drives the second processing component to process the installation of the inner ring flame cap. Then, the drill assembly processes the mounting groove on the inner ring flame cap. Finally, the second processing component trims the inner ring flame cap, thereby completing the processing of the inner ring flame cap. The cross-shaped linear module is arranged perpendicularly to the central axis of the inner ring flame cap placed on the clamping seat, which helps to improve the processing efficiency and accuracy of the inner ring flame cap.
[0009] Optionally, the clamping mechanism is vertically arranged on the side wall of the chassis, and the rotation axis of the clamping seat is parallel to the extension line of the bottom surface of the chassis.
[0010] By adopting the above technical solution, the clamping mechanism is vertically arranged on the side wall of the chassis and the rotation axis of the clamping seat is parallel to the extension line of the bottom surface of the chassis. This allows the machining debris generated during the inner ring flame cap machining process to fall to the bottom surface of the chassis, which helps to reduce the probability that machining debris will accumulate on the top surface of the inner ring flame cap and affect the subsequent machining accuracy of the inner ring flame cap.
[0011] Optionally, the clamping seat includes a clamping base connected to the output shaft of the drive member, a clamping block mounted on the clamping base, and a limiting plate mounted on the clamping block and cooperating with the mounting protrusion, the limiting plate having an arcuate groove for arranging the mounting protrusion.
[0012] By adopting the above technical solution, the specific structure of the clamping seat is disclosed. The setting of the limiting seat and the setting of the arc groove on the limiting plate helps to limit the inner ring flame cap arranged on the clamping seat, which helps to improve the processing efficiency of the inner ring flame cap.
[0013] Optionally, the first machining assembly includes a first mounting base slidably mounted on the slide plate, a first tool holder arranged on the first mounting base, and a first milling cutter mounted on the first tool holder; the second machining assembly includes a second mounting base slidably mounted on the slide plate, a second tool holder arranged on the second mounting base, and a second milling cutter mounted on the second tool holder.
[0014] By adopting the above technical solution, the specific structures of the first processing component and the second processing component are disclosed. The arrangement of the first mounting base and the first tool holder helps to reduce the probability of the first milling cutter moving during processing. The arrangement of the second mounting base and the second tool holder helps to reduce the probability of the second milling cutter moving during processing, which helps to ensure the processing accuracy of the inner ring fire cover.
[0015] Optionally, the first milling cutter has a machining tip that is inclined away from the second milling cutter.
[0016] By adopting the above technical solution, the machining tip of the first milling cutter makes it easier for the first milling cutter to cut into the inner ring flame cap material. The inclined setting of the machining tip helps to form a smoother and more uniform machining surface during the cutting process, improving the machining accuracy of the inner ring flame cap.
[0017] Optionally, the sliding plate has a mounting groove, the first mounting seat has a first mounting slider that mates with the mounting groove, and the second mounting seat has a second mounting slider that mates with the mounting groove. The first mounting seat and the second mounting seat are pressed onto the sliding plate by screws.
[0018] By adopting the above technical solution, the first mounting seat and the second mounting block can be quickly installed and disassembled on the sliding plate through the cooperation between the mounting groove and the first mounting block and the second mounting block, and it is also helpful to adjust the position of the first mounting seat and the second mounting block on the sliding plate.
[0019] Optionally, the number of the first mounting slider and the second mounting slider is two.
[0020] By adopting the above technical solution, the arrangement of the two first mounting sliders and the second mounting slider helps to improve the stability of the first mounting seat and the second mounting seat on the sliding plate, and reduces the probability that the first mounting seat and the second mounting seat will move during the processing and affect the processing accuracy of the inner ring fire cover.
[0021] Optionally, the cross-shaped linear module includes a first sliding component mounted on the chassis for driving the processing mechanism to slide left and right, and a second sliding component for driving the processing mechanism to slide back and forth, wherein the sliding path of the second sliding component is spatially perpendicular to the sliding path of the first sliding component.
[0022] By adopting the above technical solution, the structure of the cross-shaped linear module is disclosed. Driving the cross-shaped linear module facilitates the processing of the inner ring flame cover. The sliding path of the second sliding component is spatially perpendicular to the sliding path of the first sliding component, enabling the processing device to achieve precise position adjustment in three-dimensional space, further improving the flexibility and accuracy of the processing.
[0023] In summary, this application includes at least one of the following beneficial technical effects:
[0024] 1. A processing device for an inner ring flame cap, wherein the inner ring flame cap is clamped by a clamping mechanism, and the processing mechanism is driven by a cross linear module to process the inner ring flame cap, thereby completing the processing of the inner ring flame cap, which helps to improve the processing efficiency and processing accuracy of the inner ring flame cap.
[0025] 2. The cooperation between the mounting groove and the first and second mounting sliders helps to achieve rapid adjustment of the first and second mounting seats on the sliding plate, thereby improving the flexibility of the processing device for the inner ring fire cover;
[0026] 3. The fact that the sliding path of the second sliding component is spatially perpendicular to the sliding path of the first sliding component helps to improve the machining accuracy of the inner ring fire cover. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the inner ring flame cap.
[0028] Figure 2 This is the processing device for the inner ring fire cap in the embodiments of this application.
[0029] Figure 3 This is a schematic diagram of the clamping mechanism in the embodiments of this application.
[0030] Figure 4 yes Figure 3 A magnified view of a portion of point A in the middle.
[0031] Figure 5 This is a schematic diagram showing the cooperation between the clamping mechanism, the processing mechanism, and the cross-shaped linear module in the embodiments of this application.
[0032] Figure 6 This is a cross-sectional schematic diagram of the first processing component and the sliding plate in an embodiment of this application.
[0033] Figure 7 yes Figure 5 A magnified view of a portion of point B in the middle.
[0034] Figure 8 This is a cross-sectional schematic diagram of the second processing component and the sliding plate in an embodiment of this application.
[0035] Explanation of reference numerals in the attached drawings: 1. Chassis; 2. Clamping mechanism; 21. Clamping seat; 211. Clamping base; 212. Clamping block; 213. Limiting plate; 2131. Mounting part; 2132. First groove; 2133. Second groove; 2134. Arc groove; 22. Driving component; 3. Machining mechanism; 31. Sliding plate; 311. Mounting slide; 32. Drill bit assembly; 33. First machining assembly; 331. First mounting seat; 3311. First arrangement groove; 3312. First mounting slider; 332. 1. Tool holder; 3321. Second arrangement slot; 333. First milling cutter; 3331. Machining tip; 34. Second machining assembly; 341. Second mounting base; 3411. Third arrangement slot; 3412. Second mounting slider; 342. Second tool holder; 3421. Fourth arrangement slot; 343. Second milling cutter; 4. Cross-shaped linear module; 41. First sliding assembly; 42. Second sliding assembly; 5. Inner ring cap; 51. Mounting protrusion; 52. Mounting protrusion; 53. Mounting slot; 54. Mounting groove. Detailed Implementation
[0036] The following is in conjunction with the appendix Figures 1-8 This application will be described in further detail.
[0037] This application discloses a processing apparatus for an inner ring flame cap. (Refer to...) Figure 2 A processing device for an inner ring flame cap includes a housing 1, a clamping mechanism 2 mounted on the housing 1 for arranging the inner ring flame cap 5, a processing mechanism 3 slidably mounted on the housing 1 for processing the inner ring flame cap 5, and a cross-shaped linear module 4 for driving the processing mechanism 3 to slide.
[0038] Reference Figure 3 and Figure 4 The clamping mechanism 2 includes a clamping seat 21 for clamping the inner ring flame cap 5 and a driving member 22 for rotating the clamping seat 21. The clamping seat 21 includes a clamping base 211 connected to the output shaft of the driving member 22, a clamping block 212 mounted on the top surface of the clamping base 211, and a limiting plate 213 mounted on the clamping block 212 for engaging with the mounting protrusion 51 of the inner ring flame cap 5. The limiting plate 213 has an arc-shaped groove 2134 for accommodating the mounting protrusion 51 of the inner ring flame cap 5. The limiting plate 213 also has a mounting portion 2131 that engages with the clamping block 212, and the limiting plate 213 has a first groove 2132 and a second groove 2133 connected to the bottom surface of the first groove 2132 in the mounting portion 2131. The width of the first groove 2132 is greater than the width of the second groove 2133, so that a stepped surface is formed between the first groove 2132 and the second groove 2133. The screw abuts against the bottom surface of the first groove 2132, thereby pressing the limiting plate 213 onto the clamping block 212.
[0039] ReferenceFigure 2 and Figure 3 To reduce the impact of machining debris on the subsequent machining accuracy of the inner ring fire cover 5, the clamping mechanism 2 is vertically arranged on the side wall of the housing 1, and the rotation axis of the clamping seat 21 is parallel to the extension line of the bottom surface of the housing 1, so that the machining debris can fall onto the bottom surface of the housing 1. In this embodiment, the clamping seat 21 has three clamping blocks 212, and the three clamping blocks 212 are evenly spaced axially, with a limit plate 213 installed on one of the clamping blocks 212. The driving component 22 is a servo motor to achieve high-precision positioning.
[0040] Reference Figure 5 The processing mechanism 3 includes a sliding plate 31 mounted on the cross-shaped linear module 4, a drill assembly 32 mounted on the sliding plate 31 facing the clamping seat 21 and used for processing the mounting groove 53, a first processing assembly 33 slidably mounted on the sliding plate 31 facing the clamping seat 21 and used for milling the top surface of the inner ring flame cap 5, and a second processing assembly 34 slidably mounted on the sliding plate 31 facing the clamping seat 21 and used for processing the mounting groove 54 on the top surface of the inner ring flame cap 5.
[0041] Reference Figure 6 and Figure 7 The first machining assembly 33 includes a first mounting base 331 slidably mounted on a sliding plate 31, a first tool holder 332 disposed on the first mounting base 331, and a first milling cutter 333 mounted on the first tool holder 332. The first mounting base 331 has a first arrangement groove 3311 for arranging the first tool holder 332, and the first tool holder 332 is pressed into the first arrangement groove 3311 by screws. The first tool holder 332 has a second arrangement groove 3321 for arranging the first milling cutter 333 at a location away from the first mounting base 331, and the first milling cutter 333 is fixed into the first arrangement groove 3311 by screws. The first milling cutter 333 has a machining tip 3331, and the machining tip 3331 is inclined away from the second milling cutter 343.
[0042] Reference Figure 7 and Figure 8 The second machining assembly 34 includes a second mounting base 341 slidably mounted on the sliding plate 31 facing the clamping assembly, a second tool holder 342 disposed on the second mounting base 341, and a second milling cutter 343 mounted on the second tool holder 342. The second mounting base 341 has a third arrangement groove 3411 for arranging the second tool holder 342, and the second tool holder 342 is pressed into the third arrangement groove 3411 by screws. The second tool holder 342 has a fourth arrangement groove 3421 for arranging the second milling cutter 343 at a location away from the first mounting base 331, and the second milling cutter 343 is fixed into the fourth arrangement groove 3421 by screws. In this embodiment, the tip of the second milling cutter 343 is inclined away from the first milling cutter 333.
[0043] Reference Figure 6 and Figure 8 To facilitate adjustment and maintenance of the first mounting base 331 and the second mounting base 341, the sliding plate 31 has mounting grooves 311. The first mounting base 331 has a first mounting slider 3312 that mates with the mounting groove 311, and the second mounting base 341 has a second mounting slider 3412 that mates with the mounting groove 311. The first mounting base 331 and the second mounting base 341 are pressed onto the sliding plate 31 by screws. The presence of two first mounting sliders 3312 and two mounting sliders 3412 helps improve the stability of the first mounting base 331 and the second mounting base 341 on the sliding plate 31. In this embodiment, the sliding plate 31 has three mounting grooves 311 evenly spaced along its length, which helps adjust the position of the first mounting base 331 and the second mounting base 341. The mounting grooves 311 are T-shaped grooves, and both the first mounting slider 3312 and the second mounting slider 3412 are T-shaped sliders.
[0044] Reference Figure 5 The cross-shaped linear module 4 includes a first sliding assembly 41 mounted on the housing 1 for driving the machining mechanism 3 to slide left and right, and a second sliding assembly 42 mounted on the first sliding assembly 41 for driving the machining mechanism 3 to slide back and forth. The sliding path of the second sliding assembly 42 is spatially perpendicular to the sliding path of the first sliding assembly 41. To improve the machining accuracy of the inner ring flame cap 5, the sliding path of the second sliding assembly 42 is spatially perpendicular to the axis of symmetry of the inner ring flame cap 5 arranged on the clamping base 21.
[0045] The implementation principle of the processing device for an inner ring flame cap according to an embodiment of this application is as follows: During the processing of the inner ring flame cap 5, the inner ring flame cap 5 is first clamped by the clamping seat 21, and at the same time, the driving component 22 drives the clamping seat 21 to rotate horizontally. Then, the cross-shaped linear module 4 drives the first processing component 33 to mill the top surface of the inner ring flame cap 5. Then, the second processing component 34 processes the mounting groove 54 on the top surface of the inner ring flame cap 5. After the mounting groove 54 is processed, the clamping seat 21 stops rotating, and the cross-shaped linear module 4 drives the drill bit component 32 to process the mounting groove 53 of the inner ring flame cap 5. Finally, the driving component 22 drives the clamping seat 21 to rotate again, and the second processing component 34 performs the final milling of the inner ring flame cap 5, thereby completing the processing of the inner ring flame cap 5. The cooperation between the clamping mechanism 2, the processing mechanism 3, and the cross-shaped linear module 4 helps to improve the processing accuracy and efficiency of the inner ring flame cap 5.
[0046] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A processing apparatus for an inner ring flame cap, characterized in that, The assembly includes a chassis (1), a clamping mechanism (2) mounted on the chassis (1) for arranging an inner ring flame cap (5), a machining mechanism (3) slidably mounted on the chassis (1) for machining the inner ring flame cap (5), and a cross-shaped linear module (4) for driving the machining mechanism (3) to slide; the clamping mechanism (2) includes a clamping seat (21) for clamping the inner ring flame cap (5) and a driving member (22) for driving the clamping seat (21) to rotate; the machining mechanism (3) includes a cross-shaped linear module (4) mounted on the chassis (1) for machining the inner ring flame cap (5). The linear module (4) includes a sliding plate (31), a drill assembly (32) mounted on the sliding plate (31) for machining the mounting groove (53), a first machining assembly (33) slidably mounted on the sliding plate (31) for milling the top surface of the inner ring fire cap (5), and a second machining assembly (34) slidably mounted on the sliding plate (31) for machining the mounting groove (54); the cross linear module (4) is arranged perpendicularly to the central axis of the inner ring fire cap (5) arranged on the clamping seat (21).
2. The processing apparatus for an inner ring flame cap according to claim 1, characterized in that, The clamping mechanism (2) is vertically arranged on the side wall of the chassis (1) and the rotation axis of the clamping seat (21) is parallel to the extension line of the bottom surface of the chassis (1).
3. The processing apparatus for an inner ring flame cap according to claim 2, characterized in that, The clamping base (21) includes a clamping base (211) connected to the output shaft of the drive member (22), a clamping block (212) mounted on the clamping base (211), and a limiting plate (213) mounted on the clamping block (212) and cooperating with the mounting protrusion (51). The limiting plate (213) has an arcuate groove (2134) for arranging the mounting protrusion (51).
4. The processing apparatus for an inner ring flame cap according to claim 1, characterized in that, The first machining assembly (33) includes a first mounting base (331) slidably mounted on the slide plate (31), a first tool holder (332) arranged on the first mounting base (331), and a first milling cutter (333) mounted on the first tool holder (332); the second machining assembly (34) includes a second mounting base (341) slidably mounted on the slide plate (31), a second tool holder (342) arranged on the second mounting base (341), and a second milling cutter (343) mounted on the second tool holder (342).
5. The processing apparatus for an inner ring flame cap according to claim 4, characterized in that, The first milling cutter (333) has a machining tip (3331) and the machining tip (3331) is inclined in a direction away from the second milling cutter (343).
6. The processing apparatus for an inner ring flame cap according to claim 4, characterized in that, The sliding plate (31) has a mounting groove (311), the first mounting seat (331) has a first mounting slider (3312) that cooperates with the mounting groove (311), and the second mounting seat (341) has a second mounting slider (3412) that cooperates with the mounting groove (311). The first mounting seat (331) and the second mounting seat (341) are pressed onto the sliding plate (31) by screws.
7. The processing apparatus for an inner ring flame cap according to claim 6, characterized in that, The number of the first mounting slider (3312) and the second mounting slider (3412) is two.
8. The processing apparatus for an inner ring flame cap according to claim 1, characterized in that, The cross-shaped linear module (4) includes a first sliding component (41) installed on the chassis (1) for driving the processing mechanism (3) to slide left and right, and a second sliding component (42) for driving the processing mechanism (3) to slide back and forth. The sliding path of the second sliding component (42) is spatially perpendicular to the sliding path of the first sliding component (41).