Aluminum mirror frame machining and stamping equipment
The stable positioning and automatic material feeding design of the aluminum frame processing device solves the problems of unstable positioning and waste material jamming in aluminum frame processing, thus achieving efficient aluminum frame processing.
Patent Information
- Application Number
- CN202423131407.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Existing aluminum frame processing equipment suffers from unstable aluminum material positioning during use, and the waste material after punching is easily stuck in the mold, affecting processing efficiency.
The design employs a combination of components such as a bearing plate, hydraulic cylinder, punching assembly, limiting plate, and pusher plate to achieve stable positioning of aluminum material and automatic discharge of waste. The aluminum material is horizontally clamped by a threaded rod driven by a dual-axis motor and a limiting plate, vertically positioned by a support block and elastic support assembly, and automatically collected by a pusher plate and spring ring.
It enables stable punching of aluminum frames and automatic waste discharge, improving processing efficiency and quality.
Smart Images

Figure CN223518412U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mirror frame processing technical field, specifically a kind of aluminium mirror frame processing stamping equipment. BACKGROUND
[0002] Eyeglass frame is an important component of glasses, it not only plays the role of supporting lens, also has great influence on the appearance of wearer, and the lens around full-frame eyeglass frame is surrounded by eyeglass frame, it can fix lens well, and the protection effect to lens is relatively strong.
[0003] In the process of processing aluminium mirror frame, it needs to be cut by stamping device on aluminium material to remove the excess material of the position of installing lens, but the existing processing device cannot be stably positioned in the process of using, and the waste after punching can be easily stuck in punching die and cannot be automatically discharged, which is not conducive to improving the processing efficiency of aluminium mirror frame, and the above technical problems are solved by the present aluminium mirror frame processing stamping equipment. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a kind of aluminium mirror frame processing stamping equipment to solve the problems presented in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A kind of aluminium mirror frame processing stamping equipment, including bearing plate, fixed with processing box on the bearing plate, processing box is set in the placing groove, fixed with hydraulic cylinder on the bearing plate, the telescopic end of hydraulic cylinder is fixed with connecting frame, the cutting assembly of sliding connection with processing box is installed on the connecting frame, the vertical sliding installation of the center of processing box is located in the placing groove and is fixed with the supporting assembly between the processing box and the supporting assembly, L-shaped pull plate is fixed on the supporting block, the positioning assembly for limiting the position of the L-shaped pull plate is installed on the processing box, double-shaft motor is fixed on the processing box, the counter sliding assembly is driven to be connected on the double-shaft motor, the limit plate slidingly installed in the placing groove is fixed at both ends of the counter sliding assembly.
[0007] As an improved scheme of the utility model: the counter sliding assembly includes the threaded rod coaxially fixed with the two output shafts of double-shaft motor respectively, the screw thread rotation direction of two threaded rods is opposite, threaded sleeve is threadedly connected on each threaded rod, guide block slidingly connected with processing box is fixed on threaded sleeve, and guide block is fixed with limit plate.
[0008] As an improved scheme of the utility model: the positioning assembly includes the sliding frame which is slidably installed on the top of the processing box, a triangular groove is formed on the L-shaped pull plate, an isosceles trapezoidal block which is adapted to be clamped with the triangular groove is fixed on the sliding frame.
[0009] As an improved scheme of the utility model: the positioning assembly further includes the fixed block which is fixed on the processing box, a guide rod is fixed on the fixed block, the isosceles trapezoidal block is slidably sleeved on the guide rod, and a push spring is fixed between the sliding frame and the fixed block.
[0010] As an improved scheme of the utility model: the elastic supporting assembly includes the guide column which is fixed on the bottom of the supporting block, and a supporting spring which is vertically arranged is fixed between the guide column and the processing box.
[0011] As an improved scheme of the utility model: the punching assembly includes the two punching dies which are fixed on the connecting frame, a plurality of push columns are slidably installed in the punching dies, an X-shaped push frame is fixed on the end of the push column which is away from the pushing plate, and a spring ring is fixed between the pushing plate and the punching die.
[0012] As an improved scheme of the utility model: two extension coaming plates are fixed on the side of the processing box which is away from the punching die, the two extension coaming plates are linearly corresponding to the two punching dies respectively, and a waste groove is fixed on the bearing plate and located below the extension coaming plate.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] The punching die is arranged and extends to the inside of the processing box to punch the aluminum material in the placing groove, the two limiting plates are arranged to transversely position the aluminum material, the supporting block is arranged to vertically position the aluminum material, the aluminum material is effectively positioned, the stable punching of the aluminum material is guaranteed, the waste after punching is firstly pushed into the punching die, and then pushed into the waste groove by the pushing plate to realize automatic discharging, and the processing effect of the aluminum frame is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the overall structure schematic view of the utility model;
[0016] Figure 2 It is the utility model Figure 1 The schematic view under a certain visual angle;
[0017] Figure 3 It is the local structure schematic view of the utility model;
[0018] Figure 4 It is the utility model Figure 3 The enlarged schematic view of A part in the utility model;
[0019] Figure 5 It is the structure schematic view of the punching assembly in the utility model;
[0020] Figure 6 It is the structure schematic view of the punching assembly in the utility model; Figure 5
[0021] Figure 7 It is the structure schematic view of the punching assembly in the utility model.
[0022] In the figure: 1-bear the board, 2-processed box, 3-hydraulic cylinder, 4-connecting frame, 5-waste groove, 6-limiting plate, 7-punching die, 8-locating block, 9-putting groove, 10-L-shaped pull plate, 11-extended fence, 12-guide column, 13-support spring, 14-isosceles trapezoidal block, 15-triangle groove, 16-sliding frame, 17-fixing block, 18-pushing spring, 19-guide rod, 20-pushing plate, 21-X-shaped pushing frame, 22-pushing column, 23-spring ring, 24-double-shaft motor, 25-threaded rod, 26-threaded sleeve, 27-guide block. DETAILED DESCRIPTION
[0023] The technical scheme of the utility model will be explained further in detail in combination with specific embodiments:
[0024] First embodiment
[0025] Please refer to Figures 1-7 , an aluminum mirror frame processing stamping equipment, including bearing plate 1, bearing plate 1 is fixed with processing box 2, processing box 2 is provided with putting groove 9, bearing plate 1 is fixed with hydraulic cylinder 3, the telescopic end of hydraulic cylinder 3 is fixed with connecting frame 4, connecting frame 4 is installed with punching assembly that is slidingly connected with processing box 2, processing box 2 center vertical sliding installation has the locating block 8 in putting groove 9, the elastic support assembly is installed between locating block 8 and processing box 2, locating block 8 is fixed with L-shaped pull plate 10, processing box 2 is installed with the positioning assembly for limiting the position of L-shaped pull plate 10, processing box 2 is fixed with double-shaft motor 24, double-shaft motor 24 is drivingly connected with the opposite sliding assembly, and the opposite sliding assembly is fixed with the limiting plate 6 slidingly installed in putting groove 9 at both ends.
[0026] When the aluminum material is punched and processed by the device, the aluminum material is inserted into the putting groove 9, the opposite sliding assembly is driven by the double-shaft motor 24, so that the opposite sliding assembly can horizontally clamp and limit the aluminum material, ensure the stability of the processing process, and greatly improve the processing stability of the aluminum mirror frame.
[0027] Wherein, the counter sliding assembly comprises two threaded rods 25 coaxially fixed with the two output shafts of the double-shaft motor 24 respectively, the screw rotation directions of the two threaded rods 25 are opposite, each threaded rod 25 is threadedly sleeved with a threaded sleeve 26, the threaded sleeve 26 is fixed with a guide block 27 slidingly connected with the processing box 2, and the guide block 27 is fixed with the limiting plate 6.
[0028] Specifically, the double-shaft motor 24 drives the two threaded rods 25 to rotate, the threaded rods 25 drive the threaded sleeves 26 threadedly sleeved therewith to slide, and the threaded sleeves 26 drive the limiting plates 6 to move under the guidance of the guide blocks 27. At this time, the two limiting plates 6 move towards each other and clamp the aluminum material at the ends, so that the position of the limiting plates 6 is stable, and the processing quality of the aluminum frame is greatly improved.
[0029] In addition, the positioning assembly comprises a sliding frame 16 slidingly installed on the top of the processing box 2, the L-shaped pull plate 10 is provided with a triangular groove 15, and the sliding frame 16 is fixed with an isosceles trapezoidal block 14 adapted to be clamped with the triangular groove 15. The positioning assembly further comprises a fixed block 17 fixed on the processing box 2, a guide rod 19 fixed on the fixed block 17, and the isosceles trapezoidal block 14 slidingly sleeved on the guide rod 19. The sliding frame 16 and the fixed block 17 are fixed with a push spring 18.
[0030] During the installation of the aluminum material in the placing groove 9, the middle part of the aluminum material is supported by the supporting block 8, and the aluminum material is lowered into the placing groove 9 by pressing the L-shaped pull plate 10 to drive the supporting block 8 and the aluminum material to move downward. When the triangular groove 15 on the L-shaped pull plate 10 moves downward to be opposite to the isosceles trapezoidal block 14, the isosceles trapezoidal block 14 is inserted into the triangular groove 15 under the guidance of the guide rod 19 and the pushing action of the push spring 18, so as to position the vertical position of the L-shaped pull plate 10, that is, to realize the positioning effect of the installation position of the aluminum material, to ensure the accurate correspondence between the aluminum material and the punching die, and to greatly improve the processing quality of the aluminum frame.
[0031] Second embodiment
[0032] Please refer to Figures 1-7 On the basis of the first embodiment, in addition, the punching assembly comprises two punching dies 7 fixed on the connecting frame 4, a plurality of push rods 22 slidingly installed in the punching dies 7, an X-shaped push frame 21 fixed on the end of the push rod 22 away from the push plate 20, and a spring ring 23 fixed between the push plate 20 and the punching die 7.
[0033] In addition, two extension fences 11 are fixed on the side of the processing box 2 away from the punching die 7, the two extension fences 11 are linearly corresponding to the two punching dies 7 respectively, and the waste groove 5 is fixed on the bearing plate 1 below the extension fence 11.
[0034] Through the above setting, in the process that the hydraulic cylinder 3 drives the connecting frame 4 to drive the punching die 7 to extend to the inside of the processing box 2, the punching die 7 punches the aluminum material in the placing groove 9, the pushing plate 20 is pushed to compress the spring ring 23, after the aluminum material is punched, the spring ring 23 resets and pushes the pushing plate 20, so that the pushing plate 20 pushes the waste material in the punching die 7, so that the waste material is pushed into the waste groove 5 to realize automatic discharge and collection of the waste material, and it is also convenient for the punching die 7 to punch the next aluminum material, and the processing efficiency of the aluminum frame is greatly improved.
[0035] In summary, the punching die 7 is arranged to extend to the inside of the processing box 2 to punch the aluminum material in the placing groove 9, the two limiting plates 6 are arranged to transversely position the aluminum material, the aluminum material is vertically positioned by the supporting block 8, effective positioning of the aluminum material is realized, stable punching of the aluminum material is ensured, the waste material after punching is first pushed into the punching die 7, and then the pushing plate 20 pushes the waste material into the waste groove 5 to realize automatic discharge, and the processing effect of the aluminum frame is greatly improved.
Claims
1. An aluminum mirror frame processing stamping equipment, comprising a bearing plate (1), a processing box (2) is fixed on the bearing plate (1), and a placing groove (9) is formed in the processing box (2), characterized in that, The hydraulic cylinder (3) is fixed on the bearing plate (1), the telescopic end of the hydraulic cylinder (3) is fixed with a connecting frame (4), the connecting frame (4) is provided with a punching assembly which is slidably connected with the processing box (2), the center of the processing box (2) is vertically slidably provided with a supporting block (8) which is located in a placing groove (9), the supporting block (8) and the processing box (2) are provided with an elastic supporting assembly, the supporting block (8) is fixed with an L-shaped lifting plate (10), the processing box (2) is provided with a positioning assembly for limiting the position of the L-shaped lifting plate (10), the processing box (2) is fixed with a double-shaft motor (24), the double-shaft motor (24) is drivingly connected with a counter sliding assembly, the two ends of the counter sliding assembly are fixed with limiting plates (6) which are slidably arranged in the placing groove (9).
2. The aluminum mirror frame processing and stamping device according to claim 1, characterized in that, The counter sliding assembly comprises two threaded rods (25) which are coaxially fixed with the two output shafts of the double-shaft motor (24) respectively, the screw thread directions of the two threaded rods (25) are opposite, each threaded rod (25) is threadedly sleeved with a threaded sleeve (26), the threaded sleeve (26) is fixed with a guide block (27) which is slidably connected with the processing box (2), and the guide block (27) is fixed with the limiting plate (6).
3. The aluminum mirror frame processing and stamping device according to claim 1, characterized in that, The positioning assembly comprises a sliding frame (16) which is slidably arranged on the top of the processing box (2), the L-shaped lifting plate (10) is provided with a triangular groove (15), and the sliding frame (16) is fixed with an isosceles trapezoidal block (14) which is adapted to be clamped with the triangular groove (15).
4. The aluminum mirror frame processing and stamping device according to claim 3, characterized in that, The positioning assembly further comprises a fixed block (17) which is fixed on the processing box (2), the fixed block (17) is fixed with a guide rod (19), the isosceles trapezoidal block (14) is slidably sleeved on the guide rod (19), and the sliding frame (16) and the fixed block (17) are fixed with a pushing spring (18).
5. The aluminum mirror frame processing and stamping apparatus according to claim 1, wherein The elastic supporting assembly comprises a guide column (12) which is fixed on the bottom of the supporting block (8), and a supporting spring (13) which is vertically arranged between the guide column (12) and the processing box (2).
6. The aluminum mirror frame processing and stamping apparatus according to claim 1, wherein The punching assembly comprises two punching dies (7) which are fixed on the connecting frame (4), a plurality of pushing columns (22) are slidably arranged in the punching dies (7), one end of each pushing column (22) away from a pushing plate (20) is fixed with an X-shaped pushing frame (21), and the pushing plate (20) and the punching die (7) are fixed with a spring ring (23).
7. The aluminum mirror frame processing and stamping apparatus according to claim 6, wherein Two extension surrounding plates (11) are fixed on the side of the processing box (2) away from the punching die (7), the two extension surrounding plates (11) are linearly corresponding to the two punching dies (7) respectively, and a waste groove (5) is fixed on the bearing plate (1) below the extension surrounding plate (11).