CN216989477U - Punching and punching all-in-one machine for iron shells of glasses boxes - Google Patents

Punching and punching all-in-one machine for iron shells of glasses boxes Download PDF

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Publication number
CN216989477U
CN216989477U CN202220711448.4U CN202220711448U CN216989477U CN 216989477 U CN216989477 U CN 216989477U CN 202220711448 U CN202220711448 U CN 202220711448U CN 216989477 U CN216989477 U CN 216989477U
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China
Prior art keywords
punching
plate
material transferring
iron
transferring roller
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CN202220711448.4U
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Chinese (zh)
Inventor
詹秀科
张仲良
田勋
谢作相
金青青
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WENZHOU YUANHUA ENTERPRISE CO Ltd
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WENZHOU YUANHUA ENTERPRISE CO Ltd
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Abstract

The utility model discloses a punching and punching integrated machine for an iron case of a spectacle case, which comprises: the stamping mechanism is internally provided with a feeding channel, and a feeding end and a discharging end are respectively arranged at the two sides of the feeding channel; the material transferring mechanism comprises a mounting frame, a material transferring roller and a motor, wherein the material transferring roller is rotatably arranged on the mounting frame, the motor drives the material transferring roller to rotate, and a plurality of accommodating grooves are uniformly formed in the material transferring roller along the periphery of the material transferring roller; the first conveying belt penetrates through the feeding channel and is arranged between the stamping mechanism and the material transferring mechanism; the pushing mechanism comprises a material distributing plate, a pushing block capable of sliding on the material distributing plate in a reciprocating mode and a linear guide rail for driving the pushing block to move; and a second conveyor belt. The punching and punching integrated machine for the iron case of the glasses box is reasonable in structural design, and the integrated machine capable of punching and punching the iron case of the glasses box is arranged, so that the production efficiency is greatly improved, and the production cost is effectively reduced.

Description

Punching and punching integrated machine for iron case of glasses box
Technical Field
The utility model relates to the technical field of spectacle case manufacturing, in particular to a punching and punching integrated machine for an iron case of a spectacle case.
Background
The inner shell of the existing glasses case is usually made of plastic or iron, and when the inner shell is made of iron, the manufacturing process is generally as follows: firstly, stamping the iron sheet by a stamping machine to enable the iron sheet to be sunken to form the shape of the inner shell of the glasses box; and transferring or conveying the punched iron case of the glasses case to a punching machine, and punching the iron case of the glasses case through the punching machine. However, in the above process, the iron sheet needs to be punched and punched by two independently arranged punches and punching machines, and manual operation is often required during the punching process, so that the labor cost is increased, and the production efficiency is low.
Disclosure of Invention
The punching and punching integrated machine overcomes the defects of the prior art, is reasonable in structural design, greatly improves the production efficiency and effectively reduces the production cost by arranging the integrated machine capable of punching and punching the iron shell of the spectacle case.
In order to realize the purpose, the utility model provides the following technical scheme:
the utility model provides a punching press all-in-one that punches of spectacle case iron-clad, includes:
the stamping mechanism is internally provided with a feeding channel, and a feeding end and a discharging end are respectively arranged at the two sides of the feeding channel;
the material transferring mechanism comprises a mounting frame, a material transferring roller and a motor, wherein the material transferring roller is rotatably arranged on the mounting frame, the motor drives the material transferring roller to rotate, and a plurality of accommodating grooves are uniformly formed in the material transferring roller along the periphery of the material transferring roller;
the first conveying belt penetrates through the feeding channel and is arranged between the stamping mechanism and the material transferring mechanism;
the pushing mechanism comprises a material distributing plate, a pushing block capable of sliding on the material distributing plate in a reciprocating mode and a linear guide rail for driving the pushing block to move;
the second conveying belt is arranged between the material transferring mechanism and the material pushing mechanism, and a material guide plate is arranged at the position, close to the material transferring roller, of the second conveying belt;
the punching mechanism is provided with two punching mechanisms which are respectively positioned at two sides of the material pushing mechanism, each punching mechanism comprises a material receiving plate with a feeding end and a discharging end, a fixed limiting plate arranged on one side of the material receiving plate, a movable limiting plate which is arranged on the material receiving plate and can be close to or far away from the fixed limiting plate to move, a punching plate which is arranged on one side of the fixed limiting plate and can be close to or far away from the material receiving plate to move and is provided with a punching piece, and two lateral limiting plates which are arranged at two sides of the material receiving plate and can be close to or far away from the punching plate to move.
Preferably, the first conveying belt and the second conveying belt are arranged straightly, the first conveying belt is higher than the second conveying belt in the vertical direction, the containing grooves are provided with five containing grooves, the containing grooves are arranged at an angle of approximately 72 degrees, each containing groove is provided with a first rotating position which is opposite to and parallel to the first conveying belt and a second rotating position which is downward inclined relative to the second conveying belt and approximately 36 degrees relative to the second conveying belt.
Preferably, the material guide plate is arranged obliquely upward relative to the second conveying belt and is aligned with the containing groove at the second rotating position or is lower than the containing groove at the rotating position.
Preferably, one side of the material transferring roller is provided with a material blocking strip which is arranged in an arc shape.
Preferably, connect the below of flitch to be equipped with the backup pad, connect the flitch to be close to or keep away from the backup pad and remove, one side of backup pad is equipped with the locating plate, connect the flitch to be close to when the backup pad removes can with the locating plate butt, the piece that punches a hole can pass fixed limiting plate setting.
Preferably, the guide block is arranged above the material receiving plate, the guide block is provided with a guide hole, and the lateral limiting plate can be arranged in the guide hole in a sliding mode.
Preferably, a shielding plate is arranged above the material distributing plate, and a material blocking plate extending towards the second conveying belt is connected to the shielding plate.
Preferably, the punching machine further comprises a supporting seat for supporting the material transferring mechanism and a supporting table for supporting the material pushing mechanism and the punching mechanism.
Preferably, a sensor is arranged on the stamping mechanism.
The utility model has the beneficial effects that:
the punching and punching integrated machine for the iron case of the glasses box is reasonable in structural design, and the integrated machine capable of punching and punching the iron case of the glasses box is arranged, so that the production efficiency is greatly improved, and the production cost is effectively reduced.
Drawings
FIG. 1 is a first schematic structural diagram in accordance with an embodiment of the present invention;
FIG. 2 is a second schematic structural diagram in accordance with one embodiment of the present invention;
FIG. 3 is a first schematic view of a material transferring mechanism according to an embodiment of the present invention;
FIG. 4 is a second schematic structural view of a material transferring mechanism according to an embodiment of the present invention;
FIG. 5 is a schematic diagram of a pushing mechanism and a punching mechanism according to an embodiment of the present invention;
FIG. 6 is a schematic view of a pushing mechanism according to an embodiment of the present invention;
FIG. 7 is a schematic diagram of a hole punching mechanism according to an embodiment of the present invention.
In the figure: a. a first rotational position; b. a second rotational position; 1. a stamping mechanism; 11. a feed channel; 12. a feed end; 13. a discharge end; 2. a material transferring mechanism; 21. a mounting frame; 22. a material transferring roller; 221. a containing groove; 23. a motor; 24. blocking the material strips; 3. a first conveyor belt; 4. a material pushing mechanism; 41. a material distributing plate; 411. a shielding plate; 42. a push block; 43. a linear guide rail; 5. a second conveyor belt; 51. a stock guide; 6. a punching mechanism; 61. a material receiving plate; 611. a feeding end; 612. a discharging end; 62. fixing a limit plate; 63. a movable limit plate; 64. punching a plate; 65. a lateral limiting plate; 66. a support plate; 67. positioning a plate; 68. a guide block; 681. a guide hole; 7. a supporting seat; 8. and a support table.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1-7, a punching and punching integrated machine for an iron case of a spectacle case comprises: the stamping mechanism 1 is internally provided with a feeding channel 11, a feeding end 12 and a discharging end 13 are respectively arranged at two sides of the feeding channel 11, and the stamping mechanism 1 is provided with a sensor; the material transferring mechanism 2 comprises a mounting frame 21, a material transferring roller 22 rotatably arranged on the mounting frame 21 and a motor 23 for driving the material transferring roller 22 to rotate, wherein a plurality of accommodating grooves 221 are uniformly formed in the material transferring roller 22 along the periphery of the material transferring roller; the first conveying belt 3 penetrates through the feeding channel 11 and is arranged between the punching mechanism 1 and the material transferring mechanism 2; a pushing mechanism 4 including a material distributing plate 41, a pushing block 42 reciprocally sliding on the material distributing plate 41, and a linear guide rail 43 driving the pushing block 42 to move; the second conveying belt 5 is arranged between the material transferring mechanism 2 and the material pushing mechanism 4, and a material guide plate 51 is arranged at the position close to the material transferring roller 22; the punching mechanisms 6 are provided with two parts and are respectively positioned at two sides of the material pushing mechanism 4, each punching mechanism 6 comprises a material receiving plate 61 with a feeding end 611 and a discharging end 612, a fixed limiting plate 62 arranged at one side of the material receiving plate 61, a movable limiting plate 63 arranged on the material receiving plate 61 and capable of moving close to or far away from the fixed limiting plate 62, a punching plate 64 arranged at one side of the fixed limiting plate 62 and capable of moving close to or far away from the material receiving plate 61 and provided with a punching piece, and two lateral limiting plates 65 arranged at two sides of the material receiving plate 61 and capable of moving close to or far away from the punching plate 64; the first conveying belt 3 and the second conveying belt 5 are arranged straightly, the first conveying belt 3 is higher than the second conveying belt 5 in the vertical direction, five containing grooves 221 are arranged, two adjacent containing grooves 221 are arranged at an angle of about 72 degrees, each containing groove 221 is provided with a first rotating position a which is opposite to and parallel to the first conveying belt 3 and a second rotating position b which is arranged obliquely downwards relative to the second conveying belt 5 and forms an angle of about 36 degrees with the second conveying belt 5; the material guide plate 51 is arranged obliquely upward relative to the second conveyor belt 5 and is aligned with the containing groove 221 at the second rotating position b or is lower than the containing groove 221 at the rotating position; a supporting plate 66 is arranged below the material receiving plate 61, the material receiving plate 61 can move close to or far away from the supporting plate 66, a positioning plate 67 is arranged on one side of the supporting plate 66, the material receiving plate 61 can be abutted against the positioning plate 67 when moving close to the supporting plate 66, and the punched piece can pass through the fixed limiting plate 62; a guide block 68 is arranged above the material receiving plate 61, a guide hole 681 is formed in the guide block 68, and the lateral limiting plate 65 can be arranged in the guide hole 681 in a sliding mode; the punching machine further comprises a supporting seat 7 for supporting the material transferring mechanism 2 and a supporting table 8 for supporting the material pushing mechanism 4 and the punching mechanism 6.
By adopting the technical scheme, in the utility model, the rolled iron sheet can be unreeled to the stamping mechanism 1, the stamping mechanism 1 is a stamping machine provided with a stamping die, the iron sheet enters from the feeding end 12, and after the stamping operation is finished, the iron sheet waste material is discharged from the discharging end 13. The sensor is arranged, so that the iron sheet entering the stamping area of the stamping mechanism 1 can be detected, and the iron sheet can be stamped by the stamping machine every time the stamping machine descends. And the iron sheet after the stamping is formed into an iron shell of the glasses case with an upward opening, and the iron shell is conveyed by the first conveying belt 3. Therefore, the main purpose of the material transferring mechanism 2 is to transfer the iron shell of the glasses case from the state of opening upwards to the state of opening downwards, and to transfer the iron shell by the second conveying belt 5. The iron case with the upward opening may enter the accommodating groove 221 with the first rotation position a, and along with the rotation of the motor 23 (the motor 23 may be set as a stepping motor or a servo motor, and the rotation angle of the motor 23 is about 72 degrees at each time), the accommodating groove 221 may be located at the second rotation position b after passing through two different rotation positions, and the iron case with the upward opening in the accommodating groove 221 may slide onto the second conveying belt 5 through the material guiding plate 51, and at this time, the iron case with the upward opening may be in a downward opening state and conveyed by the second conveying belt 5. The expressions of substantially 72 degrees and substantially 36 degrees described above are generally described as a prefix, because the precise angle of the ideal state cannot be achieved due to the precision error caused by the machine manufacturing. And along with the conveying of second conveyer belt 5, the spectacle case iron-clad can be carried to on dividing flitch 41, along with the reciprocating motion of ejector pad 42, the spectacle case iron-clad can be carried to the mechanism 6 that punches that is located dividing flitch 41 both sides at interval. And connect flitch 61 to be close to the one end of dividing flitch 41 and be material loading end 611, connect the one end that flitch 61 kept away from and divide flitch 41 to be unloading end 612, the spectacle case iron-clad just can be located through material loading end 611 and connect flitch 61. Then, connect flitch 61 can move down relative to backup pad 66 to movable limiting plate 63 is close to fixed limiting plate 62 and removes, and side direction limiting plate 65 removes and carries on spacingly to the both sides of spectacle case iron-clad, so can realize the fine spacing to the spectacle case iron-clad, the operation of punching of the preface to the spectacle case iron-clad of being convenient for. And wherein the movable limiting plate 63 can be moved to a designated position in advance, so that a passage for the iron shell of the glasses case to pass through is formed between the movable limiting plate 63 and the fixed limiting plate 62, and wherein the movement of the material receiving plate 61, the movable limiting plate 63, the lateral limiting plate 65 and the punching plate 64 can be realized by an air cylinder, an oil cylinder or an electric cylinder. Accomplish the spacing operation back to the spectacle case iron-clad, alright punch the operation to the spectacle case iron-clad, wherein punch the hole piece (not shown in the figure) and can pass fixed limiting plate 62 and punch the lateral part of spectacle case iron-clad. The iron case of the glasses case after the punching operation is blanked from the blanking end 612.
As a modified specific embodiment, a material blocking strip 24 arranged in an arc shape is arranged on one side of the material transferring roller 22; a baffle plate 411 is arranged above the material distributing plate 41, and a material baffle plate extending to the second conveying belt 5 is connected to the baffle plate 411.
By adopting the technical scheme, the arrangement of the material blocking strip 24 can block the material of the iron shell of the glasses case on the material conveying roller 22, so that the falling condition is avoided; the shielding plate 411 is arranged to limit and shield the iron case shells entering the material distribution plate 41, so that the iron case shells can be conveyed to the material distribution plate 41 individually, and have a better position state; due to the arrangement of the material baffle (not shown in the figure), the iron shells of the glasses cases on the second conveying belt 5 cannot be stacked, and the glasses cases can be smoothly conveyed to the material distributing plate 41.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered as the technical solutions and the utility model concepts of the present invention in the scope of the present invention.

Claims (9)

1. The utility model provides a punching press all-in-one that punches of spectacle case iron-clad which characterized in that includes:
the stamping mechanism is internally provided with a feeding channel, and a feeding end and a discharging end are respectively arranged at the two sides of the feeding channel;
the material transferring mechanism comprises a mounting frame, a material transferring roller and a motor, wherein the material transferring roller is rotatably arranged on the mounting frame, the motor drives the material transferring roller to rotate, and a plurality of accommodating grooves are uniformly formed in the material transferring roller along the periphery of the material transferring roller;
the first conveying belt penetrates through the feeding channel and is arranged between the stamping mechanism and the material transferring mechanism;
the pushing mechanism comprises a material distributing plate, a pushing block capable of sliding on the material distributing plate in a reciprocating manner and a linear guide rail for driving the pushing block to move;
the second conveying belt is arranged between the material transferring mechanism and the material pushing mechanism, and a material guide plate is arranged at the position, close to the material transferring roller, of the second conveying belt;
the punching mechanisms are provided with two side plates which are respectively positioned at two sides of the material pushing mechanism, each punching mechanism comprises a material receiving plate with a feeding end and a discharging end, a fixed limiting plate arranged at one side of the material receiving plate, a movable limiting plate arranged on the material receiving plate and capable of being close to or far away from the fixed limiting plate to move, a punching plate arranged at one side of the fixed limiting plate and capable of being close to or far away from the material receiving plate to move and provided with a punching piece, and two side limiting plates arranged at two sides of the material receiving plate and capable of being close to or far away from the punching plate to move.
2. The integrated punching and punching machine for iron shells of spectacle cases as claimed in claim 1, wherein the first conveyor belt and the second conveyor belt are arranged straight and the first conveyor belt is vertically higher than the second conveyor belt, the accommodating grooves are provided with five and are arranged at an angle of about 72 degrees between two adjacent accommodating grooves, each accommodating groove has a first rotation position which is arranged opposite and parallel to the first conveyor belt and a second rotation position which is arranged at a downward inclination relative to the second conveyor belt and is arranged at an angle of about 36 degrees relative to the second conveyor belt.
3. The integrated punching and punching machine for iron casings of spectacle cases of claim 2, wherein the material guide plate is disposed obliquely upward with respect to the second conveyor and is aligned with the receiving groove at the second rotational position or lower than the receiving groove at the above rotational position.
4. The punching and punching integrated machine for the iron case of the spectacle case as claimed in claim 1, 2 or 3, wherein one side of the material transferring roller is provided with a material blocking strip arranged in an arc shape.
5. The punching and punching all-in-one machine for the iron shells of the spectacle cases as claimed in claim 1 or 2, wherein a support plate is arranged below the material receiving plate, the material receiving plate can move close to or away from the support plate, a positioning plate is arranged on one side of the support plate, the material receiving plate can be abutted against the positioning plate when moving close to the support plate, and the punched piece can pass through the fixed limiting plate.
6. The punching and punching integrated machine for the iron case of the spectacle case as claimed in claim 5, wherein a guide block is arranged above the material receiving plate, a guide hole is formed in the guide block, and the lateral limiting plate can be slidably arranged in the guide hole.
7. The punching and punching integrated machine for the iron case of the spectacle case as claimed in claim 4, wherein a baffle plate is arranged above the material distribution plate, and a material baffle plate extending towards the second conveying belt is connected to the baffle plate.
8. The integrated punching and punching machine for the iron case of the spectacle case as claimed in claim 1 or 2, further comprising a supporting seat for supporting the material transferring mechanism and a supporting table for supporting the material pushing mechanism and the punching mechanism.
9. The integrated punching and punching machine for the iron case of the spectacle case as claimed in claim 8, wherein the punching mechanism is provided with a sensor.
CN202220711448.4U 2022-03-29 2022-03-29 Punching and punching all-in-one machine for iron shells of glasses boxes Active CN216989477U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220711448.4U CN216989477U (en) 2022-03-29 2022-03-29 Punching and punching all-in-one machine for iron shells of glasses boxes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220711448.4U CN216989477U (en) 2022-03-29 2022-03-29 Punching and punching all-in-one machine for iron shells of glasses boxes

Publications (1)

Publication Number Publication Date
CN216989477U true CN216989477U (en) 2022-07-19

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ID=82373443

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220711448.4U Active CN216989477U (en) 2022-03-29 2022-03-29 Punching and punching all-in-one machine for iron shells of glasses boxes

Country Status (1)

Country Link
CN (1) CN216989477U (en)

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