Full-automatic material splicing machine

By independently setting the pile head feeding mechanism, the adjustment process of the fully automatic material assembly machine is simplified, solving the problem of complex adjustment in the existing technology, and realizing adaptability and accuracy to different specifications and spacings.

CN223559114UActive Publication Date: 2025-11-18ZHEJIANG CHAOJIE CNC EQUIP TECH CO LTD
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Patent Information

Application Number
CN202423236793.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-18
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing fully automatic material assembly machines are complex to adjust when adjusting the specifications and spacing of leaf and pile head materials, making it difficult to adapt to changes in specifications and spacing.

Method used

An independent pile head material feeding mechanism, including a pile head material feeding component and a pile head material suction nozzle, simplifies the structural design through independent adjustment and step-by-step suction and placement.

Benefits of technology

The mechanism for feeding the pile head material has been easily adjustable to adapt to the production of eyeglasses of different specifications and spacings, ensuring the accuracy of the pile head material feeding position and avoiding structural interference.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of glasses processing equipment, in particular to a full-automatic material splicing machine which comprises a material splicing mechanism, a plate feeding mechanism and a leaf feeding mechanism, the material splicing mechanism comprises a material splicing table, the plate feeding mechanism is located on the front side of the material splicing table, the leaf feeding mechanism is located on the rear side of the material splicing table, and the full-automatic material splicing machine further comprises a pile head feeding mechanism. The pile head material feeding mechanism is located on the left side or the right side of the material splicing table and comprises a pile head material feeding assembly and a pile head material feeding suction nozzle, the pile head material feeding assembly comprises a pile head material bin, a pile head material feeding table and a pile head material push plate, and the pile head material push plate is arranged on the pile head material feeding table in a front-back moving mode. The pile head material bin is arranged on the pile head material supply table and comprises a front baffle and a rear baffle, a material passing gap allowing the pile head material push plate to pass is reserved between the front baffle and the pile head material supply table and between the rear baffle and the pile head material supply table, the pile head material conveying suction nozzle is connected with the pile head material supply table and the material splicing table, the pile head material conveying mechanism is independently arranged, and adjustment is easy.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glasses processing equipment field, especially in a kind of full-automatic material splicing machine. BACKGROUND

[0002] Full-automatic material splicing machine is transported stake head material using automatic means on the basis of automatic conveying leaf material, dispense with manual labour, and a kind of material splicing device for spectacle frame processing is disclosed in Chinese practical patent with announcement number CN219338622U, leaf material is supplied by vibrating disc, stake head material is supplied by stock bin, both are disposed on the same side, leaf material and stake head material share third feeding module to carry out feeding, so that when specification changes, third feeding module adjustment must adapt to the specification of leaf material, also must adapt to the specification of stake head material, adjustment space must be large, it must adapt to specification change, also must adapt to spacing change, adjustment is complex. UTILITY MODEL CONTENT

[0003] In view of the technical problems in the background art, the utility model aims at providing a kind of full-automatic material splicing machine, independently setting stake head material sending mechanism, independently adjusting, simplifying structure.

[0004] To solve the above technical problems, the utility model adopts the following technical scheme: the full-automatic material splicing machine, including material splicing mechanism, plate material sending mechanism and leaf material sending mechanism, the material splicing mechanism includes material splicing table, the plate material sending mechanism is located the front side of the material splicing table, the leaf material sending mechanism is located the back side of the material splicing table, the leaf material sending mechanism includes leaf material feeding table and leaf material sending suction nozzle, the leaf material sending suction nozzle is connected with the leaf material feeding table and the material splicing table, wherein, it further includes stake head material sending mechanism, the stake head material sending mechanism is located the left side or right side of the material splicing table, the stake head material sending mechanism includes stake head material feeding assembly and stake head material sending suction nozzle, the stake head material feeding assembly includes stake head material stock bin, stake head material feeding table and stake head material push plate, the stake head material push plate is movably arranged on the stake head material feeding table, the stake head material stock bin is arranged on the stake head material feeding table, the stake head material stock bin includes front baffle and rear baffle, the front baffle and the rear baffle are provided with the material passing gap for the stake head material push plate between the stake head material feeding table, and the stake head material sending suction nozzle is connected with the stake head material feeding table and the material splicing table.

[0005] In this scheme, when the stake head material push plate exits the material passing gap, the stake head material falls from the stake head material stock bin to the stake head material feeding table, and the stake head material push plate pushes the stake head material out of the material passing gap for the stake head material sending suction nozzle to suck, independently setting stake head material sending mechanism, and the adjustment is simple.

[0006] Preferably, the plate material sending mechanism includes plate material feeding table and plate material sending suction nozzle, and the plate material sending suction nozzle is connected with the plate material feeding table and the material splicing table.

[0007] In this scheme, the plate material suction nozzle sucks the plate material from the plate material supply table and places it on the plate material assembly table, and the placement position is accurate.

[0008] Preferably, the pile head material suction nozzle is arranged on the driving plate, and the driving plate is arranged to be lifted and moved left and right.

[0009] In this scheme, the driving plate with the pile head material suction nozzle realizes lifting and left and right movement.

[0010] Preferably, the pile head material supply table is arranged to move forward and backward for adjustment.

[0011] In this scheme, the pile head material supply table moves forward and backward for adjustment to adapt to different specifications of glasses production.

[0012] Preferably, the number of pile head material hoppers is two, the pile head material push plate corresponds to two, the pile head material supply table is provided with two outer baffles, the pile head material supply table is provided with two inner baffles for left and right movement adjustment, and the inner baffles and the outer baffles form a pushing channel for the pile head material push plate to pass through.

[0013] In this scheme, the moving inner baffles can adjust the width of the pushing channel to adapt to different specifications of pile head materials.

[0014] Preferably, the inner baffles are arranged with protrusions, and the protrusions of the two inner baffles are embedded with each other.

[0015] In this scheme, the protrusions of the inner baffles are embedded with each other, so that the inner baffles will not be skewed, and the accuracy of the pile head material supply position is ensured.

[0016] Preferably, the number of pile head material suction nozzles is two, and the distance between the two pile head material suction nozzles is greater than the distance between the two pile head material push plates.

[0017] In this scheme, the pile head material suction nozzle is not adjusted to adapt to the change of the distance between the pile head materials, and is sucked and placed step by step. The distance between the two pile head material suction nozzles is greater than the distance between the two pile head material push plates, so that the step distance is as moderate as possible, the structure is simple, and only needs to be adjusted in the program.

[0018] Preferably, the driving plate is drivingly connected with a lifting cylinder, the lifting cylinder is installed on a moving seat, a slide rail is arranged below the moving seat, the slide rail cooperates with a sliding block, the sliding block is installed on a mounting seat, and the mounting seat is arranged to move forward and backward for adjustment.

[0019] In this scheme, the mounting seat moves forward and backward for adjustment to ensure that the pile head material suction nozzle can reliably suck the pile head material, and the slide rail moves instead of the sliding block, which can avoid the interference of the slide rail with the lifting of the plate material assembly table.

[0020] Preferably, the pile head feeding mechanism is located on the right side of the material assembling table, and the material discharging push plate is movably arranged on the left side of the material assembling table.

[0021] In this scheme, the pile head feeding mechanism and the material discharging push plate are arranged on the two sides of the material assembling table, so as to avoid interference.

[0022] Preferably, two mounting vertical plates are arranged on the pile head material feeding table, the mounting vertical plates are L-shaped in cross section, a mounting horizontal beam and the front baffle are arranged between the mounting vertical plates, the rear baffle is movably arranged on the mounting vertical plates, and a side baffle is movably arranged on the mounting vertical plates.

[0023] In this scheme, the rear baffle and the side baffle are adjusted to adapt to pile heads of different specifications.

[0024] The pile head feeding mechanism is independently arranged, and the adjustment is simple; the inner baffle can adjust the width of the material pushing channel, and adapt to pile heads of different specifications; the protrusions of the inner baffles are embedded with each other, so that the inner baffles are not inclined, and the accuracy of the pile head material feeding position is ensured; the pile head feeding mechanism and the material discharging push plate are arranged on the two sides of the material assembling table, so as to avoid interference. BRIEF DESCRIPTION OF DRAWINGS

[0025] The embodiments and examples of the present application will be described below in detail with reference to the accompanying drawings.

[0026] Figure 1 The present application is a structural schematic diagram.

[0027] Figure 2 The present application is a three-dimensional structural schematic diagram of a material assembling mechanism.

[0028] Figure 3 The present application is a three-dimensional structural schematic diagram of a pile head feeding mechanism.

[0029] Figure 4 The present application is Figure 3 The present application is an enlarged view of A.

[0030] Figure 5 The present application is a three-dimensional structural schematic diagram of a pile head material bin.

[0031] Figure 6 The present application is a three-dimensional structural schematic diagram of a front baffle.

[0032] In the figure: 1, material splicing mechanism; 2, material splicing table; 3, plate material feeding mechanism; 4, pile head material push plate; 5, front baffle; 6, leaf material feeding mechanism; 7, driving plate; 8, outer baffle; 9, pile head material feeding mechanism; 10, pile head material feeding assembly; 11, pile head material bin; 12, pile head material feeding table; 13, rear baffle; 14, pile head material suction nozzle; 15, inner baffle; 16, protrusion; 17, lifting cylinder; 18, moving seat; 19, sliding rail; 20, sliding block; 21, mounting seat; 22, discharge push plate; 23, mounting vertical plate; 24, mounting cross beam; 25, side baffle; 27, welding part. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, and not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0034] In the description of the present application, it should be understood that the terms "upper", "lower", etc. indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0035] In the description of the present application, the terms "first", "second", etc. are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated.

[0036] Referring to the drawings, Figures 1-6 In an embodiment of the present embodiment, a full-automatic material splicing machine includes a material splicing mechanism 1, a plate material feeding mechanism 3 and a leaf material feeding mechanism 6. The material splicing mechanism 1 includes a material splicing table 2. The plate material feeding mechanism 3 is located in front of the material splicing table 2. The plate material feeding mechanism 3 includes a plate material feeding table and a plate material suction nozzle. The plate material suction nozzle connects the plate material feeding table and the material splicing table 2. The leaf material feeding mechanism 6 is located behind the material splicing table 2. The leaf material feeding mechanism 6 includes a leaf material feeding table and a leaf material suction nozzle. The leaf material suction nozzle connects the leaf material feeding table and the material splicing table 2.

[0037] The pile head material feeding mechanism 9 is located on the right side of the material assembling table 2, and the material pushing plate 22 is movably arranged on the left side of the material assembling table 2. The pile head material feeding mechanism 9 comprises a pile head material feeding assembly 10 and a pile head material feeding nozzle 14. The pile head material feeding assembly 10 comprises a pile head material bin 11, a pile head material feeding table 12 and a pile head material pushing plate 4. The pile head material pushing plate 4 is movably arranged on the pile head material feeding table 12. The pile head material bin 11 is arranged on the pile head material feeding table 12. The pile head material bin 11 comprises a front baffle 5 and a rear baffle 13. The front baffle 5 and the rear baffle 13 are arranged to leave a material passing gap for the pile head material pushing plate 4 to pass through. The pile head material feeding nozzle 14 is connected to the pile head material feeding table 12 and the material assembling table 2. The pile head material feeding nozzle 14 is arranged on a driving plate 7, which is movably arranged and vertically movable.

[0038] In the embodiment, the material assembling mechanism 1 further comprises a welding member 27, which is arranged to assemble the materials by eccentric vibration, which is a mature technology. The material assembling table 2 is provided with a material positioning block to clamp and position the plate material. The plate material feeding table is provided with a plate material bin and a plate material pushing plate. The plate material falls from the plate material bin, and the plate material pushing plate pushes the plate material to a predetermined feeding position for the plate material feeding nozzle to suck. The leaf material feeding table is provided with a positioning groove connected to the parallel guide rail of the vibrating disc. The plate material feeding nozzle puts the plate material on the plate material feeding table onto the material assembling table 2. The leaf material feeding nozzle puts the leaf material on the leaf material feeding table onto the plate material on the material assembling table 2. The material assembling table 2 is raised to press the leaf material and the plate material below the welding member 27. The welding member 27 assembles the leaf material and the plate material together. Then, the material assembling table 2 is reset. The pile head material feeding nozzle 14 puts the pile head material on the pile head material feeding table 12 onto the plate material on the material assembling table 2. The material assembling table 2 is raised again. The welding member 27 assembles the pile head material and the plate material together. Finally, the material pushing plate 22 pushes the assembled plate material away.

[0039] In other alternative embodiments, the plate material can be directly pushed into the material assembling table 2, which is a mature technology.

[0040] Referring to the accompanying drawings Figures 4-6The pile head material feeding table 12 is adjusted and set to move forward and backward, the pile head material hoppers 11 are two in number, the pile head material push plates 4 correspond to two, the pile head material feeding table 12 is provided with two outer baffles 8, the pile head material feeding table 12 is adjusted and set to move left and right and is provided with two inner baffles 15, the inner baffles 15 and the outer baffles 8 form a pushing channel for the pile head material push plates 4 to pass through, the inner baffles 15 are provided with protrusions 16 at intervals, the protrusions 16 of the two inner baffles 15 are embedded with each other, the number of the pile head material suction nozzles 14 is two, the distance between the two pile head material suction nozzles 14 is greater than the distance between the two pile head material push plates 4, the driving plate 7 is transmissionally connected with a lifting cylinder 17, the lifting cylinder 17 is installed on a moving seat 18, the moving seat 18 is provided below with a sliding rail 19, the sliding rail 19 cooperates with a sliding block 20, the sliding block 20 is installed on a mounting seat 21, the mounting seat 21 is adjusted and set to move forward and backward, the pile head material feeding table 12 is provided above with two mounting vertical plates 23, the mounting vertical plates 23 are L-shaped in cross section, the mounting vertical plates 23 are provided between with a mounting cross beam 24 and the front baffle 5, the rear baffle 13 is adjusted and set to move forward and backward on the mounting vertical plates 23, the mounting vertical plates 23 are provided above with side baffles 25 which are adjusted and set to move left and right.

[0041] In the embodiment, the pile head material feeding table 12 is adjusted and the pile head material is taken and placed step by step to adapt to different specifications of glasses production, without considering the change of the distance between the pile head materials, the driving structure of the pile head material suction nozzle 14 is simple; the inner baffles 15 are moved to adjust the pushing channel and the protrusions 16 of the inner baffles 15 are embedded with each other, the pushing channel is kept accurate and adapts to different specifications of the pile head materials, without considering the change of the distance between the pile head materials; the outer baffle 8 and the rear baffle 13 are adjusted to adapt to different specifications of the pile head materials, wherein the pile head material is taken and placed step by step to adapt to the change of the distance between the pile head materials, so that the structure of the pile head material hopper 11, the pushing channel and the driving plate 7 are all simple enough.

[0042] The preferred embodiments of the utility model are described above, it should be indicated that the protection scope of the utility model is not limited to this. For the person skilled in the art, on the premise of not departing from the technical range disclosed by the utility model, equivalent embodiments can also be improved and polished or replaced, which is also regarded as the protection scope of the utility model.

Claims

1. A full-automatic material assembling machine, comprising a material assembling mechanism (1) comprising a material assembling table (2); a plate material feeding mechanism (3) located at the front side of the material assembling table (2); a leaf material feeding mechanism (6) located at the rear side of the material assembling table (2), the leaf material feeding mechanism (6) comprising a leaf material feeding table and a leaf material feeding nozzle, the leaf material feeding nozzle connecting the leaf material feeding table and the material assembling table (2); characterized in that and further comprising a pile head material feeding mechanism (9) located at the left side or the right side of the material assembling table (2), the pile head material feeding mechanism (9) comprising a pile head material feeding assembly (10) comprising a pile head material bin (11), a pile head material feeding table (12) and a pile head material pushing plate (4), the pile head material pushing plate (4) being movably arranged on the pile head material feeding table (12), the pile head material bin (11) being arranged on the pile head material feeding table (12), the pile head material bin (11) comprising a front baffle (5) and a rear baffle (13), the front baffle (5) and the rear baffle (13) leaving a material passing gap between the pile head material feeding table (12) for the pile head material pushing plate (4) to pass through; a pile head material feeding nozzle (14) connecting the pile head material feeding table (12) and the material assembling table (2).

2. The full-automatic material assembling machine according to claim 1, characterized in that: The plate material feeding mechanism (3) comprises a plate material feeding table and a plate material feeding nozzle, the plate material feeding nozzle connecting the plate material feeding table and the material assembling table (2).

3. The full-automatic material assembling machine according to claim 1, characterized in that: The pile head material feeding nozzle (14) is arranged on a driving plate (7), the driving plate (7) being arranged in a lifting and left-right moving manner.

4. The full-automatic material assembling machine according to claim 1, characterized in that: The pile head material feeding table (12) is arranged in a front-rear moving adjustment manner.

5. The full-automatic material assembling machine according to claim 1, characterized in that: The pile head material bin (11) is in a number of two, the pile head material pushing plate (4) is in a number of two, the pile head material feeding table (12) is provided with two outer baffles (8), the pile head material feeding table (12) is arranged in a left-right moving adjustment manner and is provided with two inner baffles (15), the inner baffles (15) and the outer baffles (8) form a pushing material channel for the pile head material pushing plate (4) to pass through.

6. A fully automatic panel builder as claimed in claim 5, characterized in that: The inner baffles (15) are arranged in a spaced manner and are provided with protrusions (16), the protrusions (16) of the two inner baffles (15) are embedded with each other.

7. The full-automatic material assembling machine according to claim 5, characterized in that: The number of the pile head material feeding nozzles (14) is two, the distance between the two pile head material feeding nozzles (14) is greater than the distance between the two pile head material pushing plates (4).

8. The full-automatic material assembling machine according to claim 3, characterized in that: The driving plate (7) is drivingly connected with a lifting cylinder (17), the lifting cylinder (17) is mounted on a moving seat (18), the moving seat (18) is provided below with a slide rail (19), the slide rail (19) cooperates with a sliding block (20), the sliding block (20) is mounted on a mounting seat (21), the mounting seat (21) is arranged in a front-rear moving adjustment manner.

9. The full-automatic material assembling machine according to claim 1, characterized in that: The pile head material feeding mechanism (9) is located at the right side of the material assembling table (2), and the material assembling table (2) is arranged in a left-right moving adjustment manner and is provided with an ejection pushing plate (22) at the left side.

10. The full-automatic material assembling machine according to claim 1, characterized in that: The pile head material feeding table (12) is provided with two mounting vertical plates (23), the mounting vertical plates (23) are L-shaped in cross section, mounting cross beams (24) and the front baffle (5) are arranged between the mounting vertical plates (23), the rear baffle (13) is movably arranged on the mounting vertical plates (23), and side baffles (25) are movably arranged on the mounting vertical plates (23).

Citation Information

Patent Citations

  • Material splicing device for glasses frame processing

    CN219338622U