Die cutting machine for antenna production

By using a rotary cylinder and a high-pressure air gun in conjunction, waste chips from a die-cutting machine used in antenna production can be quickly cleaned, solving the problem of low efficiency caused by the need to disassemble the placement seat in the prior art and improving processing efficiency.

CN223456123UActive Publication Date: 2025-10-21FUJIAN TONGDA XINGHAI TECH CO LTD
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Patent Information

Application Number
CN202422988634.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-21
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Existing die-cutting machines for antenna production require the placement base to be disassembled when cleaning die-cutting waste, resulting in low processing efficiency.

Method used

A rotating cylinder and a high-pressure air gun are used in conjunction with a moving seat and a driving mechanism. The placement seat is rotated to face the waste chip collection box, and the high-pressure air gun is used to blow away the waste chips, achieving quick cleaning without disassembling the placement seat.

Benefits of technology

The processing efficiency of antenna production is improved, the waste cleaning process is simplified, and production efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223456123U_ABST
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Abstract

The utility model relates to the technical field of antenna processing, in particular to a die-cutting machine for antenna production, which comprises a rotating cylinder, a high-pressure air gun, a moving seat and a second driving mechanism. And then the placing seat is driven by the second driving mechanism to move up and down, then the high-pressure air gun is used for being aligned with the placing groove to blow air, so that the sweeps are blown into the sweep collecting box, the sweeps can be rapidly cleaned without disassembling the placing seat, and then the machining efficiency of the electronic pipeline is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to antenna processing technical field especially relates to a die -cutting machine for antenna production. BACKGROUND

[0002] The die -cutting machine is also called cutting machine, cutting machine, numerical control punching machine, and is mainly used for die -cutting, indentation and gold stamping operation, lamination, automatic waste removal of some corresponding non -metallic materials, self -adhesive, EVA, double -sided adhesive, electronic, mobile phone rubber pad etc., the die -cutting machine uses steel knife, hardware die, steel wire, and is pressed into a certain shape by applying certain pressure through the printing plate, and is an important equipment for post -printing packaging processing.

[0003] The Chinese patent with the authorization announcement number CN2134122494U discloses a die -cutting mechanism of electronic tube line die -cutting machine, specifically discloses that the placing seat is installed and fixed through the positioning plate and cooperation bolt, then the placing seat can be conveniently disassembled, so that the die -cutting waste in the containing groove can be conveniently cleaned, the patent needs to disassemble and install the placing seat through the bolt every time the die -cutting waste is cleaned, and the disassembly and installation through the lifting bolt are not only tedious, but also waste time, and then the processing efficiency of the electronic tube line is reduced. UTILITY MODEL CONTENTS

[0004] The utility model solves the technical problem that: provide a kind of die -cutting machine for antenna production, and electronic scrap can be quickly cleaned without disassembling and installing seat, and then the processing efficiency of electronic tube line is improved.

[0005] In order to solve the above technical problems, the technical scheme adopted by the utility model is as follows: a die -cutting machine for antenna production, comprising:

[0006] Frame:

[0007] Supporting seat, supporting seat is movably connected to frame along X direction or X reverse direction;

[0008] First driving mechanism, first driving mechanism is used to drive supporting seat to move;

[0009] Moving seat, moving seat is movably connected to supporting seat along vertical direction;

[0010] Placing seat, placing seat is rotatably connected to moving seat, the axial direction of rotation is Y direction, the upper surface of placing seat is provided with cutting surface, the cutting surface is provided with containing groove for accommodating die -cutting knife, and the upper surface is horizontally provided with a plurality of placing grooves;

[0011] The second driving mechanism is used for driving the moving base to move;

[0012] The rotating cylinder is connected to the moving base and is used for driving the placing base to rotate;

[0013] The mounting base is movably connected to the frame in the vertical direction, is located above the placing base, and is provided with a die cutting device. The die cutting device comprises a first pressing plate, a spring, a die cutting knife and an extension rod. The die cutting knife is connected to the lower part of the mounting base. One end of the extension rod is connected to the lower part of the mounting base. The first pressing plate is connected to the other end of the extension rod. The spring is coaxially connected to the extension rod and is located between the mounting plate and the first pressing plate. An opening is formed in the first pressing plate for the die cutting knife to pass through.

[0014] The first driving member is used for driving the mounting base to move;

[0015] The second pressing plate is movably connected to the frame in the vertical direction and is located below the placing base;

[0016] The second driving member is used for driving the second pressing plate to move;

[0017] The scrap collecting box is located on one side of the mounting base in the X direction;

[0018] The high-pressure air gun is connected to the frame and has a spraying direction towards the scrap collecting box;

[0019] The first driving mechanism drives the support base to switch between the first state and the second state;

[0020] In the first state, the placing base is located between the first pressing plate and the second pressing plate, and the cutting surface faces upwards;

[0021] In the second state, the placing base is located between the scrap collecting box and the high-pressure air gun, and the cutting surface faces the side.

[0022] Further, the first driving mechanism comprises a lead screw shaft and a first driving motor. The lead screw shaft is connected to the frame, and the axial direction of the lead screw shaft is the X direction. The support base is in sliding connection with the lead screw shaft. The first driving motor is in transmission connection with the lead screw shaft.

[0023] Further, the second driving mechanism comprises a second driving motor, a first connecting rod, a second connecting rod and a limiting guide column. The limiting guide column is connected to the support base, and the axial direction of the limiting guide column is the vertical direction. The moving base is in sliding connection with the limiting guide column. The second driving motor is connected to the support base, and the output shaft of the second driving motor is in the X direction. One end of the first connecting rod is connected to the output shaft of the second driving motor. One end of the second connecting rod is pivotally connected with the first connecting rod, and the axial direction of the pivot connection is the X direction. The other end of the second connecting rod is pivotally connected with the moving base, and the axial direction of the pivot connection is the X direction.

[0024] Further, the first driving member and the second driving member are both cylinders, and the cylinder body axial direction is vertical.

[0025] Further, the second driving mechanism has two, and the two second driving mechanisms are rotationally symmetrically arranged.

[0026] The utility model discloses the beneficial effect lies in: compared with the prior art, through setting up rotation cylinder, high pressure air gun, mobile seat and second driving mechanism, the placing seat first through rotation cylinder clockwise rotation 90 degrees, makes the one end of placing groove towards scrap collecting box, then mobile seat is driven under the second driving mechanism and moves up and down, then utilizes high pressure air gun and aims at placing groove and carries out blowing, thereby blows the scrap into scrap collecting box, does not need to carry out the dismounting and sets up seat to be able to to the scrap for quick cleaning, and further improves the processing efficiency of electronic tube line. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a structure schematic diagram of the die cutting machine for antenna production of the specific embodiment of the utility model;

[0028] Figure 2 It is Figure 1 A enlarged view of A part.

[0029] REFERENCE NUMERALS

[0030] 1, frame, 11, high pressure air gun,

[0031] 2, support seat,

[0032] 3, first driving mechanism, 31, screw shaft, 32, first driving motor,

[0033] 4, placing seat, 41, cutting surface,

[0034] 5, second driving mechanism, 51, second driving motor, 52, first connecting rod, 53, second connecting rod, 54, limiting guide pillar,

[0035] 6, rotation cylinder,

[0036] 7, mounting seat, 71, die cutting device, 711, first pressing plate, 7111, opening, 712, spring, 713, telescopic rod, 714, die cutting knife,

[0037] 8, first driving member,

[0038] 9, second pressing plate,

[0039] 10, second driving member,

[0040] 101, scrap collecting box. DETAILED DESCRIPTION

[0041] In order to explain the technical content of the utility model, the purposes and effects achieved, the following will be described in combination with the embodiments and the accompanying drawings.

[0042] Please refer to Figures 1 to 2 A die cutting machine for antenna production, comprising:

[0043] Frame 1:

[0044] Support seat 2, support seat 2 is movably connected to frame 1 along X direction or X reverse direction;

[0045] First drive mechanism 3, first drive mechanism 3 is used for driving support seat 2 to move;

[0046] Moving seat, moving seat is movably connected to support seat 2 along vertical direction;

[0047] Placing seat 4, placing seat 4 is rotatably connected to moving seat, the axis of rotation is Y direction, the upper surface of the placing seat 4 is provided with cutting surface 41, the cutting surface 41 is provided with accommodating groove for accommodating die cutter 714, and the upper surface is provided with a plurality of placing grooves;

[0048] Second drive mechanism 5, second drive mechanism 5 is used for driving moving seat to move;

[0049] Rotary cylinder 6, rotary cylinder 6 is connected to moving seat, rotary cylinder 6 is used for driving placing seat 4 to rotate;

[0050] Mounting seat 7, mounting seat 7 is movably connected to frame 1 along vertical direction, mounting seat 7 is located above placing seat 4, mounting seat 7 is provided with die cutting device 71, die cutting device 71 includes first pressing plate 711, spring 712, die cutter 714 and telescopic rod 713, die cutter 714 is connected to the lower part of mounting seat 7, one end of telescopic rod 713 is connected to the lower part of mounting seat 7, first pressing plate 711 is connected to the other end of telescopic rod 713, spring 712 is coaxially connected to telescopic rod 713, spring 712 is located between mounting plate and first pressing plate 711, and first pressing plate 711 is provided with opening 7111 for die cutter 714 to pass through;

[0051] First drive part 8, first drive part 8 is used for driving mounting seat 7 to move;

[0052] Second pressing plate 9, second pressing plate 9 is movably connected to frame 1 along vertical direction, and second pressing plate 9 is located below placing seat 4;

[0053] Second drive part 10, second drive part 10 is used for driving second pressing plate 9 to move;

[0054] Waste collecting box 101, waste collecting box is located on the X side of mounting seat 7;

[0055] A high-pressure air gun 11 is connected to the frame 1, and the jet direction of the high-pressure air gun 11 is towards the scrap collecting box 101.

[0056] The first driving mechanism 3 drives the support base 2 to switch between the first state and the second state.

[0057] In the first state, the placing base 4 is located between the first pressing plate 711 and the second pressing plate 9, and the cutting surface 41 faces upwards.

[0058] In the second state, the placing base 4 is located between the scrap collecting box 101 and the high-pressure air gun 11, and the cutting surface 41 faces sideways.

[0059] In the above embodiment, first, a plurality of antennas to be die-cut are placed in the placing grooves respectively, and the positions are adjusted so that the die-cutting points are located in the accommodating grooves, then the first driving member 8 drives the mounting base 7 to move downwards, thereby driving the die-cutting knife 714 and the first pressing plate 711 to move downwards, when the first pressing plate 711 moves to adhere to the cutting surface 41 of the placing base 4, it will continue to move downwards, at this time, the spring 712 is squeezed and shrinks, thereby using the reverse force generated by the deformation of the spring 712 to enable the first pressing plate 711 to effectively fix the antenna, the mounting base 7 drives the die-cutting knife 714 to continue to move downwards so that the die-cutting knife 714 penetrates through the passage one into the accommodating groove, thereby being able to die-cut the antenna, after the die-cutting is completed, when it is necessary to clean the scrap of the placing base 4, the first driving mechanism 3 drives the support base 2 to move, so that the placing base 4 is located between the scrap collecting box 101 and the high-pressure air gun 11, then the rotary air cylinder 6 drives the placing base 4 to rotate clockwise by 90 degrees, then the second driving mechanism 5 drives the moving base to move up and down, then the high-pressure air gun 11 blows the placing groove, thereby blowing the scrap into the scrap collecting box 101, after the cleaning is completed, the rotary air cylinder 6 drives the placing base 4 to rotate counterclockwise by 90 degrees, the first driving mechanism 3 drives the support base 2 to move to the first state to continue die-cutting, compared with the prior art, by setting the rotary air cylinder 6, the high-pressure air gun 11, the moving base and the second driving mechanism 5, the placing base 4 is first rotated clockwise by 90 degrees by the rotary air cylinder 6, so that one end of the placing groove faces the scrap collecting box 101, then the placing base 4 moves up and down under the drive of the second driving mechanism 5, then the high-pressure air gun 11 blows the placing groove, thereby blowing the scrap into the scrap collecting box 101, without disassembling the mounting base, the electronic scrap can be quickly cleaned, thereby improving the processing efficiency of the electronic pipeline.

[0060] As an optional embodiment, the first driving mechanism 3 comprises a lead screw shaft 31 and a first driving motor 32, the lead screw shaft 31 is connected to the frame 1, the axial direction of the lead screw shaft 31 is the X direction, the support base 2 is slidingly connected to the lead screw shaft 31, and the first driving motor 32 is in transmission connection with the lead screw shaft 31.

[0061] In the above embodiment, the first driving motor 32 is turned on to drive the screw shaft 31 to rotate, so that the support base 2 can move stably along the X direction or the reverse direction of the X direction.

[0062] As an optional embodiment, the second driving mechanism 5 comprises a second driving motor 51, a first connecting rod 52, a second connecting rod 53 and a limiting guide column 54. The limiting guide column 54 is connected to the support base 2, the axial direction of the limiting guide column 54 is vertically reverse, the moving base is slidably connected to the limiting guide column 54, the second driving motor 51 is connected to the support base 2, the output shaft of the second driving motor 51 is in the X direction, one end of the first connecting rod 52 is connected to the output shaft of the second driving motor 51, one end of the second connecting rod 53 is pivotally connected to the first connecting rod 52, the pivot axial direction is in the X direction, the other end of the second connecting rod 53 is pivotally connected to the moving base, and the pivot axial direction is in the X direction.

[0063] In the above embodiment, the second driving motor 51 is turned on to drive the first connecting rod 52 to rotate, so that the second connecting rod 53 is swung, and the moving base can move up and down along the limiting guide column 54.

[0064] As an optional embodiment, the first driving member 8 and the second driving member are both air cylinders, and the axial direction of the cylinder body of the air cylinder is vertical.

[0065] As an optional embodiment, the second driving mechanism 5 has two, and the axial directions of the two second driving mechanisms 5 are symmetrically arranged.

[0066] In the above embodiment, the moving base can be moved up and down more stably.

[0067] The above only describes the embodiments of the present application, and does not limit the patent range of the present application. Any equivalent transformation or direct or indirect application in the related technical field based on the content of the present application is also included in the patent protection range of the present application.

Claims

1. A die cutting machine for antenna production, characterized by, The utility model relates to a cutting device for cutting machine, including: Frame: Supporting seat, supporting seat is connected to frame along X direction or X reverse direction is movable; First drive mechanism, first drive mechanism is used for driving supporting seat moves; Moving seat, moving seat is connected to supporting seat along vertical direction is movable; Placing seat, placing seat is rotatably connected to moving seat, the axial direction of rotation is Y direction, the upper surface of placing seat is equipped with cutting surface, and the cutting surface is equipped with the accommodating groove for accommodating die cutting knife, and the cutting upper surface is horizontally equipped with a plurality of placing grooves; Second drive mechanism, second drive mechanism is used for driving moving seat moves; Rotary cylinder, rotary cylinder is connected to moving seat, and rotary cylinder is used for driving placing seat rotates; Mounting seat, mounting seat is connected to frame along vertical direction is movable, and mounting seat is located above placing seat, and mounting seat is equipped with die cutting device, and die cutting device includes first pressing plate, spring, die cutting knife and telescopic rod, die cutting knife is connected to the lower part of mounting seat, one end of telescopic rod is connected to the lower part of mounting seat, first pressing plate is connected to the other end of telescopic rod, spring is coaxially connected to telescopic rod, and spring is located between mounting plate and first pressing plate, and first pressing plate is equipped with the opening for die cutting knife to pass through; First drive part, first drive part is used for driving mounting seat moves; Second pressing plate, second pressing plate is connected to frame along vertical direction is movable, and second pressing plate is located below placing seat; Second drive part, second drive part is used for driving second pressing plate moves; Waste collection box, waste collection box is located in the X direction one side of mounting seat; High pressure air gun, high pressure air pressure is connected to frame, and the jet direction of high pressure air gun is towards waste collection box; First drive mechanism drives supporting seat switches in first state and second state; First state, placing seat is located between first pressing plate and second pressing plate, and cutting surface faces up; Second state, placing seat is located between waste collection box and high pressure air gun, and cutting surface faces the side.

2. The die cutting machine for antenna production according to claim 1, characterized in that, First drive mechanism includes lead screw shaft and first drive motor, lead screw shaft is connected to frame, and the axial direction of lead screw shaft is X direction, and supporting seat is slidably connected with lead screw shaft, and first drive motor is in transmission connection with lead screw shaft.

3. The die cutting machine for antenna production according to claim 1, characterized by Second drive mechanism includes second drive motor, first connecting rod, second connecting rod and limiting guide pillar, limiting guide pillar is connected to supporting seat, and the axial direction of limiting guide pillar is vertical reverse direction, and moving seat is slidably connected with limiting guide pillar, second drive motor is connected to supporting seat, and the output shaft of second drive motor is X direction, one end of first connecting rod is connected to the output shaft of second drive motor, one end of second connecting rod is pivoted with first connecting rod, and the axial direction of pivot is X direction, and the other end of second connecting rod is pivoted with moving seat, and the axial direction of pivot is X direction.

4. The die cutting machine for antenna production according to claim 1, characterized by First drive part and second drive part are all air cylinders, and the axial direction of cylinder body of air cylinder is vertical direction.

5. The die cutting machine for antenna production according to claim 3, characterized in that, Second drive mechanism has two, and the axial direction of rotary cylinder of two second drive mechanisms is symmetrically arranged.