Pressing and splicing all-in-one machine for plate glasses frame
By setting up preheating, beam shaping, and nose pad splicing stations in the integrated sheet metal eyeglass frame pressing and splicing machine, and using a material transfer device to realize the automatic transfer of frames, the problem of complex multiple material feeding processes is solved, and convenient and efficient production of eyeglass frames is achieved.
Patent Information
- Application Number
- CN202520561208.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-28
AI Technical Summary
The processing of acetate eyeglass frames requires multiple material supplies and collections, making the process complex and inconvenient.
Design a sheet metal eyeglass frame pressing and splicing machine. The machine frame is equipped with a preheating station, a bridge shaping station, and a nose pad splicing station. The stations are arranged in a straight line and longitudinally. The frames are transferred between the stations by the first and second material transfer devices, so that the nose bridge shaping and nose pad splicing can be completed in one feeding.
The simplified processing procedure and improved production efficiency mean that each frame only needs one feeding to complete preheating, nose bridge shaping and nose pad assembly, making production more convenient and efficient.
Smart Images

Figure CN223904583U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the processing equipment of glasses frame, especially relates to the machine equipment of plate glasses frame beam pressing material splicing. BACKGROUND
[0002] When plate glasses frame is processed and manufactured, the plate material needs to be carved and cut to form a frame main body blank, then the nose bridge position of the blank is shaped (usually pressure shaping), and then the nose pad initial blank is additionally spliced; wherein, the shaping has a corresponding beam shaping device, and the splicing has a corresponding nose pad splicing device; during the processing and manufacturing process, the beam shaping device needs to be fed (blank) for processing and manufacturing, and after completion, the blank with shaped nose bridge position is collected; then, the blank with shaped nose bridge position is fed into another device (i.e. the nose pad splicing device); multiple feeding is required, and the material needs to be collected and arranged for feeding again, which is more complex. SUMMARY
[0003] In view of the technical problems in the background art, the utility model aims to provide a plate glasses frame beam splicing integrated machine which is more convenient to produce.
[0004] To solve the above technical problems, the utility model adopts the following technical scheme: a plate glasses frame beam splicing integrated machine is provided, a preheating station, a beam shaping station and a nose pad splicing station are arranged on the rack, characterized in that: the beam shaping station is arranged between the preheating station and the nose pad splicing station, the preheating station, the beam shaping station and the nose pad splicing station are arranged in a straight line in sequence in the longitudinal direction, a first material moving device is arranged between the preheating station and the beam shaping station, and a second material moving device is arranged between the beam shaping station and the nose pad splicing station.
[0005] The above technical solutions can be further optimized or supplemented as follows.
[0006] Among them, the preheating station to the beam shaping station is also provided with a material walking supporting part for supporting the material and pushing.
[0007] For example, the material walking supporting part includes a translational material walking supporting plate.
[0008] In addition, the input side of the preheating station is provided with an input material supporting plate, the input material supporting plate and the translational material walking supporting plate are a heating lower pad plate at the preheating station, the front and back of the heating lower pad plate are connected with the input material supporting plate and the translational material walking supporting plate respectively, and the input material supporting plate, the heating lower pad plate and the translational material walking supporting plate are arranged in the same plane.
[0009] Among them, the input material supporting plate is also provided with an input material longitudinal moving push plate, and the input material longitudinal moving push plate is in transmission connection with the reciprocating longitudinal moving driving device.
[0010] For example, the first material moving device comprises a first longitudinal push plate, and the first longitudinal push plate is also arranged to move up and down; the second material moving device comprises a second longitudinal push plate, and the second longitudinal push plate is also arranged to move up and down; the second material moving device further comprises a clamp cooperating with the second longitudinal push plate to clamp and place materials, and the clamp comprises a left rotating clamp jaw and a right rotating clamp jaw arranged on the front side of the second longitudinal push plate.
[0011] The plate spectacle frame pressing and splicing all-in-one machine further comprises a longitudinal moving support, the longitudinal moving support is in transmission connection with the longitudinal moving module, the first longitudinal push plate is provided with a first lifting transmission structure between the first longitudinal push plate and the longitudinal moving support, the second longitudinal push plate is provided with a second lifting transmission structure between the second longitudinal push plate and the longitudinal moving support, the left rotating clamp jaw is provided with a left jaw rotating driving part, the left jaw rotating driving part is connected with the second longitudinal push plate, and the right rotating clamp jaw is provided with a right jaw rotating driving part, the right jaw rotating driving part is connected with the second longitudinal push plate.
[0012] In addition, the first longitudinal push plate is further provided with a nose bridge first positioning protrusion, the nose bridge first positioning protrusion is arranged to protrude longitudinally towards the direction of the second longitudinal push plate, and the second longitudinal push plate is further provided with a nose bridge second positioning protrusion, the nose bridge second positioning protrusion is arranged to protrude longitudinally towards the direction of the nose pad splicing station.
[0013] The first longitudinal push plate is provided with a first mounting groove, the nose bridge first positioning protrusion is arranged at the first mounting groove, the second longitudinal push plate is provided with a second mounting groove, the nose bridge second positioning protrusion is arranged at the second mounting groove, and the nose bridge second positioning protrusion is arranged to move longitudinally on the second longitudinal push plate.
[0014] The upper side of the lower heating base plate is provided with a lifting heating upper die, the end of the translational material moving support plate is connected with a plastic forming support plate, the plastic forming support plate is provided with a plastic forming lower seat, the plastic forming lower seat is provided with a plastic forming concave die, the upper side of the plastic forming concave die is provided with a plastic forming convex die, and the plastic forming convex die is arranged on a plastic forming upper seat.
[0015] The plate spectacle frame pressing and splicing all-in-one machine has the following beneficial effects: after one-time feeding, the spectacle frame can be preheated in the preheating station of the machine (for subsequent processing), and then the nose bridge of the spectacle frame can be shaped and the nose pad can be spliced in the pressing beam shaping station and the nose pad splicing station of the machine in sequence, the spectacle frame is transferred and conveyed between the stations by the first material moving device and the second material moving device, and production is more convenient and efficient. BRIEF DESCRIPTION OF DRAWINGS
[0016] The embodiments and examples of the present application will be described below in detail with reference to the accompanying drawings.
[0017] Figure 1 The structure of the embodiments of the present application is shown in the schematic diagram.
[0018] Figure 2 The structure of the embodiments of the present application is shown in the schematic diagram. Figure 1 The structure of the embodiments of the present application is shown in the schematic diagram.
[0019] Figure 3 For Figure 2 Another angle view, where A is the installation position of the left rotating clamp.
[0020] Figure 4 For the structure diagram of the left rotating clamp in the embodiment of the utility model.
[0021] Figure 5 For Figure 3 The schematic view of part structure.
[0022] Figure 6 For Figure 5 The top view.
[0023] In the figure:
[0024] 1, preheating station; 10, heating lower base plate; 11, lifting heating upper die;
[0025] 2, beam pressing shaping station; 20, shaping supporting plate; 25, shaping lifting pressing frame; 26, installation groove;
[0026] 3, nose pad splicing station;
[0027] 4, first material moving device; 40, first longitudinal push plate; 41, first installation slot;
[0028] 5, second material moving device; 50, second longitudinal push plate; 51, left rotating clamp; 52, right rotating clamp; 53, left jaw rotating driving part; 54, right jaw rotating driving part; 55, second installation slot; 56, nose bridge second positioning protruding block;
[0029] 6, material walking supporting part;
[0030] 7, feeding supporting plate; 70, feeding longitudinal moving push plate; 71, reciprocating longitudinal moving driving device; 72, vertical rod; 73, blocking gauge;
[0031] 8, longitudinal moving support; 80, longitudinal moving module; 81, first lifting transmission structure; 82, second lifting transmission structure. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model; obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments, and all other embodiments obtained by those skilled in the art without creative labor based on the embodiments in the utility model belong to the protection scope of the utility model.
[0033] Referring to the drawings, the plate glasses frame pressing and splicing integrated machine in the embodiment of the present embodiment is provided with a preheating station 1, a pressing beam shaping station 2 and a nose pad splicing station 3 on the machine frame.
[0034] The pressing beam shaping station 2 is arranged between the preheating station 1 and the nose pad splicing station 3, and the preheating station 1, the pressing beam shaping station 2 and the nose pad splicing station 3 are arranged in a straight line in sequence in the longitudinal direction, so that the frame (the plate glasses frame in the present embodiment can be referred to as the frame) is heated at the preheating station 1, the nose bridge of the heated frame is shaped (presses) at the pressing beam shaping station 2, and the nose pad (blank) is spliced to the frame at the nose pad splicing station 3.
[0035] The first material transferring device 4 is arranged between the preheating station 1 and the pressing beam shaping station 2, and the frame is transferred from the preheating station 1 to the pressing beam shaping station by the first material transferring device 4, so as to realize the transfer and conveying of the frame. The second material transferring device 5 is arranged between the pressing beam shaping station and the nose pad splicing station 3, and the frame is transferred from the pressing beam shaping station to the nose pad splicing station 3 by the second material transferring device 5, so as to realize the transfer and conveying of the frame.
[0036] In the plate glasses frame pressing and splicing integrated machine, only one feeding is needed for each frame, and then the frame preheating (for subsequent processing) is completed at the preheating station 1 in the machine, and then the nose bridge shaping and the nose pad splicing of the frame are completed in sequence at the pressing beam shaping station 2 and the nose pad splicing station 3 in the machine. The first material transferring device 4 and the second material transferring device 5 are used to transfer and convey the frame between the stations, so that the production is more convenient.
[0037] The following optimizations or further explanations can be made on the basis of the above embodiments.
[0038] The heating device, such as the high-frequency heating device, is arranged at the preheating station 1; the pressing beam shaping device is arranged at the pressing beam shaping station 2; and the nose pad splicing device is arranged at the nose pad splicing station 3. The high-frequency heating device, the pressing beam shaping device and the nose pad splicing device are mature technologies, and are not the technical problems to be solved by the present embodiment.
[0039] In the present embodiment, the material conveying and supporting part 6 is arranged between the preheating station 1 and the pressing beam shaping station 2, and is used to support the material (i.e. the frame) and push it, so that the frame can be smoothly and stably transferred.
[0040] For example, the material conveying and supporting part 6 includes a translational material conveying and supporting plate, which is used to support the frame material and push it to move.
[0041] The frame material can be manually placed one by one at the preheating station 1. For example, the preheating station 1 is provided with an input tray 7 at the input side. The frame material is placed on the input tray 7 and then pushed to the preheating station 1 by manual operation. Of course, a push plate can also be used. For example, the input tray 7 is provided with an input longitudinal moving push plate 70 which is in transmission connection with a reciprocating longitudinal moving driving device 71 (such as a cylinder). The input longitudinal moving push plate 70 is driven by the reciprocating longitudinal moving driving device 71 to move longitudinally and reciprocally, and the frame material on the input tray 7 is pushed into the preheating station 1. The frame material can be placed on the input tray 7 manually, or a material bin (formed by a plurality of vertical rods 72) for stacking the frame can be arranged above the input tray 7. The bottom layer of the stacked frame is supported by the input tray 7, and the input longitudinal moving push plate 70 is arranged between the input tray 7 and the lower end of the material bin to move longitudinally and reciprocally, and the bottom layer of the frame material is pushed out one by one. A left and right stop gauge 73 can be arranged between the input tray 7 and the lower end of the material bin to ensure the stability of the position during the pushing process.
[0042] In addition, the input tray 7 and the translation material walking tray (i.e. the material walking component 6) are the heating lower pad 10 at the preheating station 1. The heating lower pad 10 is connected to the input tray 7 and the translation material walking tray respectively. The input tray 7, the heating lower pad 10 and the translation material walking tray are arranged in the same plane, which is convenient for pushing the frame material longitudinally, and the connection of the station and the feeding are simple.
[0043] For example, the first material moving device 4 comprises a first longitudinal push plate 40, which is also provided with lifting action, i.e. the first longitudinal push plate 40 can move longitudinally (i.e. forward and backward) and move up and down. After moving up, it can move over the frame. After moving down, it is located at the back side of the frame. When moving longitudinally forward, it pushes the frame to the pressing beam shaping station 2. It can also slightly push the frame at the preheating station 1 to the deviation correction position to make the preheating more smooth, and then push the frame to the pressing beam shaping station. Similarly, the second material moving device 5 comprises a second longitudinal push plate 50, which is also provided with lifting action, i.e. the second longitudinal push plate 50 can move longitudinally (i.e. forward and backward) and move up and down. After moving up, it can move over the frame. After moving down, it is located at the back side of the frame. When moving longitudinally forward, it cooperates with the frame to move to the nose pad splicing station 3. It can also slightly push the frame at the pressing beam shaping station 2 to the deviation correction position to make the pressing beam shaping more smooth, and then cooperate with the frame to move to the nose pad splicing station 3. Moreover, the second material moving device 5 also comprises a clamp, which cooperates with the second longitudinal push plate 50 to clamp and release the frame. After clamping, the clamp can lift and move horizontally to the position, and then release the frame. For example, the clamp comprises a left rotating clamp jaw 51 and a right rotating clamp jaw 52 arranged on the front side of the second longitudinal push plate 50. When the left rotating clamp jaw 51 and the right rotating clamp jaw 52 rotate towards the second longitudinal push plate 50, they can clamp the material. When they rotate in the opposite direction, they release the material. The structure is relatively compact and is not easy to interfere with the operation of other structures.
[0044] The plate material frame pressing and splicing all-in-one machine also comprises a longitudinal moving bracket 8, which is in transmission connection with a longitudinal moving module 80 (containing a corresponding motor). The longitudinal moving module 80 drives the longitudinal moving bracket 8 to move longitudinally back and forth, i.e. to move forward and backward. The first longitudinal push plate 40 and the longitudinal moving bracket 8 are provided with a first lifting transmission structure 81, which drives the first longitudinal push plate 40 to move up and down on the longitudinal moving bracket 8, and also drives the first longitudinal push plate 40 to move longitudinally back and forth. Similarly, the second longitudinal push plate 50 and the longitudinal moving bracket 8 are provided with a second lifting transmission structure 82, which drives the second longitudinal push plate 50 to move up and down on the longitudinal moving bracket 8, and also drives the second longitudinal push plate 50 to move longitudinally back and forth.
[0045] For example, the left rotating gripper 51 is provided with a left gripper rotating driving part 53, the left gripper rotating driving part 53 is connected with the second longitudinal push plate 50, that is, the left rotating gripper 51 is driven to rotate by the left gripper rotating driving part 53 (such as a rotating air cylinder), and the left rotating gripper 51 moves longitudinally and lifts together with the second longitudinal push plate 50; similarly, the right rotating gripper 52 is provided with a right gripper rotating driving part 54, the right gripper rotating driving part 54 is connected with the second longitudinal push plate 50, that is, the right rotating gripper 52 is driven to rotate by the right gripper rotating driving part 54 (such as a rotating air cylinder), and the right rotating gripper 52 moves longitudinally and lifts together with the second longitudinal push plate 50.
[0046] Wherein, the first longitudinal push plate 40 is further provided with a nose bridge first positioning protrusion (not shown in the figure), the nose bridge first positioning protrusion is longitudinally protrudingly arranged towards the direction of the second longitudinal push plate 50, and is positioned by the nose bridge first positioning protrusion when the first longitudinal push plate 40 pushes the frame, and is inserted into the nose bridge of the frame, so as to ensure more accurate pushing, and the first longitudinal push plate 40 can be provided with a first mounting groove 41 for replacement and installation of the nose bridge first positioning protrusion so as to adapt to different specifications and sizes of the nose bridge. Similarly, the second longitudinal push plate 50 is further provided with a nose bridge second positioning protrusion 56, the nose bridge second positioning protrusion 56 is longitudinally protrudingly arranged towards the direction of the nose pad splicing station 3, and is positioned by the nose bridge second positioning protrusion 56 when the second longitudinal push plate 50 pushes the frame, and is inserted into the nose bridge of the frame, so as to ensure more accurate pushing, and the second longitudinal push plate 50 can be provided with a second mounting groove 55 for replacement and installation of the nose bridge second positioning protrusion 56 so as to adapt to different specifications and sizes of the nose bridge.
[0047] The first longitudinal push plate 40 is provided with a first mounting groove 41, the nose bridge first positioning protrusion is arranged at the first mounting groove 41, the second longitudinal push plate 50 is provided with a second mounting groove 55, and the nose bridge second positioning protrusion 56 is arranged at the second mounting groove 55, so as to facilitate installation and replacement of the nose bridge of the frame of different sizes and shapes. In addition, the nose bridge second positioning protrusion 56 is longitudinally movably arranged on the second longitudinal push plate 50 (such as being driven by a configuration air cylinder 57 to move longitudinally and extend and retract), so as to facilitate the nose bridge second positioning protrusion 56 to retreat and separate from the frame.
[0048] In addition, the upper side of the lower pad 10 is provided with a lifting heating upper die 11, which is closed to cooperate with the preheating heating lens frame when descending, and returns to the original position when ascending. This is a mature technology. The end of the translation feeding support plate is connected to the shaping support plate 20; the shaping support plate 20 is provided with a shaping lower seat, which can be installed on the shaping support plate 20 by setting an installation groove 26, and the shaping lower seat is provided with a shaping concave die. The upper side of the shaping convex die is provided with a shaping convex die, which is closed to cooperate with the shaping when descending, and returns to the original position when ascending. The shaping convex die is installed on the shaping upper seat, which is set on the shaping lifting pressure frame 25 and moves up and down with it. Corresponding cylinders or motors can be configured to drive the lifting of the heating upper die 11, the shaping lifting pressure frame 25, and other lifting devices.
Claims
1. A plate spectacle frame pressing and splicing integrated machine, a preheating station (1), a pressing beam shaping station (2) and a nose pad splicing station (3) are arranged on the rack, characterized in that: the pressing beam shaping station (2) is arranged between the preheating station (1) and the nose pad splicing station (3), the preheating station (1), the pressing beam shaping station (2) and the nose pad splicing station (3) are arranged in a straight line in sequence, a first material moving device (4) is arranged between the preheating station (1) and the pressing beam shaping station (2), a second material moving device (5) is arranged between the pressing beam shaping station and the nose pad splicing station (3).
2. The plate spectacle frame press-splicing integrated machine of claim 1, wherein: A material walking and supporting part (6) is arranged between the preheating station (1) and the pressing beam shaping station (2) for supporting and pushing the material.
3. The plate spectacle frame press-splicing integrated machine of claim 1, wherein: The material walking and supporting part (6) comprises a translational material walking and supporting plate.
4. The plate spectacle frame press-splicing integrated machine of claim 3, wherein: The input side of the preheating station (1) is provided with an input material supporting plate (7), the input material supporting plate (7) and the translational material walking and supporting plate are connected by a heating lower backing plate (10) at the preheating station (1), the heating lower backing plate (10) is connected with the input material supporting plate (7) and the translational material walking and supporting plate in sequence, the input material supporting plate (7), the heating lower backing plate (10) and the translational material walking and supporting plate are arranged in the same plane.
5. The plate spectacle frame press-splicing integrated machine of claim 4, wherein: The input material supporting plate (7) is provided with an input material longitudinal moving push plate (70), and the input material longitudinal moving push plate (70) is drivingly connected with a reciprocating longitudinal moving driving device (71).
6. The plate spectacle frame pressing and splicing integrated machine of claim 3 or 4, characterized in that: the first material moving device (4) comprises a first longitudinal push plate (40), and the first longitudinal push plate (40) is further provided with lifting action, the second material moving device (5) comprises a second longitudinal push plate (50), and the second longitudinal push plate (50) is further provided with lifting action, the second material moving device (5) further comprises a clamp cooperating with the second longitudinal push plate (50) to clamp the material, the clamp comprises a left rotating clamp jaw (51) and a right rotating clamp jaw (52) arranged on the front side of the second longitudinal push plate (50).
7. The plate spectacle frame press-splicing integrated machine of claim 6, wherein: further comprising a longitudinal moving support (8) drivingly connected with a longitudinal moving module (80), a first lifting transmission structure (81) is arranged between the first longitudinal push plate (40) and the longitudinal moving support (8), a second lifting transmission structure (82) is arranged between the second longitudinal push plate (50) and the longitudinal moving support (8), the left rotating clamp jaw (51) is provided with a left jaw rotating driving part (53) connected with the second longitudinal push plate (50), the right rotating clamp jaw (52) is provided with a right jaw rotating driving part (54) connected with the second longitudinal push plate (50).
8. The plate spectacle frame pressing and splicing integrated machine of claim 6, characterized in that: the first longitudinal push plate (40) is further provided with a first nose bridge positioning protrusion arranged longitudinally towards the second longitudinal push plate (50), the second longitudinal push plate (50) is further provided with a second nose bridge positioning protrusion (56) arranged longitudinally towards the nose pad splicing station (3).
9. The plate spectacle frame pressing and splicing integrated machine of claim 8, characterized in that: The first longitudinal push plate (40) is provided with a first mounting groove (41), and the first positioning protrusion of the nose bridge is arranged at the first mounting groove (41), The second longitudinal push plate (50) is provided with a second mounting groove (55), and the second positioning protrusion (56) of the nose bridge is arranged at the second mounting groove (55), The second positioning protrusion (56) of the nose bridge is arranged in longitudinal movement on the second longitudinal push plate (50).
10. The plate spectacle frame press-splicing integrated machine of claim 4, wherein: The upper part of the lower base plate (10) is provided with a lifting heating upper die (11), The end of the translation feeding supporting plate is connected with a shaping supporting plate (20), the shaping supporting plate (20) is provided with a shaping lower seat, and the shaping concave die is installed on the shaping lower seat, The upper part of the shaping concave die is provided with a shaping convex die, and the shaping convex die is installed on the shaping upper seat.