CN216578269U - Online punching device for special-shaped material - Google Patents

Online punching device for special-shaped material Download PDF

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Publication number
CN216578269U
CN216578269U CN202123298183.4U CN202123298183U CN216578269U CN 216578269 U CN216578269 U CN 216578269U CN 202123298183 U CN202123298183 U CN 202123298183U CN 216578269 U CN216578269 U CN 216578269U
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Prior art keywords
punching
special
frame
traction
cutting
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CN202123298183.4U
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Chinese (zh)
Inventor
何海潮
张健
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Changzhou Jwell Extrusion Machinery Manufacturing Co ltd
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Changzhou Jwell Extrusion Machinery Manufacturing Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

Abstract

The utility model discloses an online punching device for special-shaped materials, which comprises a storage release mechanism suitable for dynamically storing or releasing the special-shaped materials, a traction mechanism suitable for intermittently traction and conveying the special-shaped materials, a punching mechanism suitable for punching the special-shaped materials when the special-shaped materials are in a static state and a frame, wherein the traction mechanism is positioned at the back of the storage release mechanism; the storage release mechanism, the traction mechanism and the punching mechanism are respectively arranged on the rack. The utility model discloses can carry special-shaped material well to punch a hole to special-shaped material on line, work efficiency is high.

Description

Online punching device for special-shaped material
Technical Field
The utility model relates to an online punching device of dysmorphism material.
Background
Along with the popularization of plastic products in life, a plurality of profile products are applied to various industries, and have various types and wide purposes, such as shutters, edge banding strips, sealing strips, automobile clamping strips and the like for indoor decoration. At present, the products are continuously produced by adopting a plastic extruder, the production efficiency is higher, and because many products need to be subjected to secondary deep processing after production, such as fixed-length cutting and punching, manpower and material resources are wasted, and the production efficiency is influenced. Some online punching and cutting equipment is also available in the market, but the punching effect is not ideal, the cutting precision is not high, so that more waste products are caused, and more waste is caused.
Disclosure of Invention
The utility model aims to solve the technical problem that overcome prior art's defect, provide an online punching device of dysmorphism material, it can carry the dysmorphism material well to punch a hole on line to the dysmorphism material, work efficiency is high.
In order to solve the technical problem, the technical scheme of the utility model is that: an online punching device for profile materials comprises:
a storage and release mechanism adapted to dynamically store or release profiled material;
a drawing mechanism adapted to intermittently draw the conveyed profile, the drawing mechanism being located downstream of the storage and release mechanism;
the punching mechanism is suitable for punching the special-shaped material when the special-shaped material is in a static state;
the storage and release mechanism, the traction mechanism and the punching mechanism are respectively arranged on the rack.
There is further provided a specific structure of a storage release mechanism, the storage release mechanism including:
the sliding block is arranged on the rack in a sliding manner and can be lifted;
a movable transition roller rotatably supported on the slide block, the profiled material passing around from the underside of the movable transition roller.
In order to further guide the profile material, the storage and release mechanism further comprises two fixed transition rollers which are respectively and rotatably supported on the machine frame and distributed on two sides of the movable transition roller so as to guide the profile material, and the profile material bypasses from the upper side of the fixed transition rollers.
Further, the on-line punching device for the profile material also comprises a cutting mechanism which is suitable for cutting the profile material when the profile material is in a static state, and the cutting mechanism is installed on the rack and is positioned at the rear path of the punching mechanism.
The specific structure of the traction mechanism is further provided, the traction mechanism comprises a rotary driving assembly and two traction assemblies, the punching mechanism and the cutting mechanism are located between the two traction assemblies, and the rotary driving assembly is connected with the two traction assemblies to drive the two traction assemblies to act.
Furthermore, the traction assembly comprises a traction frame fixed on the rack, a lifting block arranged on the traction frame in a liftable and sliding manner, a driven roller rotatably supported on the lifting block, a driving roller rotatably supported on the rack and positioned below the driven roller, and a lifting driving piece arranged between the traction frame and the lifting block and suitable for driving the lifting block to lift;
the rotary driving assembly comprises a driving motor and synchronous belt wheels which are fixed on the driving roller and coaxial with the driving roller, the two synchronous belt wheels are connected through a synchronous belt in a transmission mode, and an output shaft of the driving motor is connected with one of the driving rollers to drive the driving roller to rotate.
Further provided is a concrete structure of a punching mechanism, the punching mechanism including:
a punch;
the punching frame is fixed on the rack;
the punching die is fixed on the rack and is provided with a punching groove matched with the punch in shape;
and the punching air cylinder is arranged between the punching frame and the punch and is suitable for driving the punch to descend so that the punch is matched with the punching groove to punch holes on the profile.
Further to allow the profiled bar to better pass through the punching mechanism, the punching die is provided with a guide groove conforming to the shape of the profiled bar to guide the movement of the profiled bar.
There is further provided a concrete structure of a cutting mechanism, the cutting mechanism including:
a cutter;
a cutting frame fixed on the frame;
the limiting block is fixed on the rack, a positioning channel is arranged in the limiting block, and the special-shaped material penetrates through the positioning channel;
and the cutting cylinder is arranged between the cutting frame and the cutting knife and is suitable for driving the cutting knife to descend so as to cut off the special-shaped material.
Further, in order to avoid the over-looseness or over-tightening of the special-shaped material, the on-line punching device for the special-shaped material further comprises an upper detection device, a lower detection device and a controller; wherein the content of the first and second substances,
the lower detection device is suitable for detecting that the movable transition roller descends to the lowest position to generate a starting signal;
the upper detection device is suitable for detecting that the movable transition roller rises to the highest position to generate a stop signal;
the controller is in signal connection with the upper detection device, the lower detection device and the traction mechanism respectively and is suitable for controlling the traction mechanism to start when receiving the starting signal and controlling the traction mechanism to stop when receiving the stopping signal.
After the technical scheme is adopted, the traction mechanism intermittently conveys the special-shaped material forward for a certain length, when the special-shaped material is in a static state, the punching mechanism punches a hole on the special-shaped material, because the production of the special-shaped material is continuous, and the traction of the traction mechanism and the punching of the punching mechanism are intermittent, the utility model discloses a storage release mechanism dynamically stores or releases the special-shaped material, thereby further leading the utility model discloses can match with the production speed of the special-shaped material, can accomplish online punching well, greatly improve work efficiency; the utility model discloses a draw the subassembly to be equipped with two, mechanism and cutting mechanism of punching a hole lie in two and draw between the subassembly, and then in the in-process that mechanism punched a hole or cutting mechanism cutting of punching a hole, draw the subassembly locking or compress tightly special-shaped material through two, prevent that special-shaped material skew or slip, improved punching a hole precision and cutting accuracy widely.
Drawings
Fig. 1 is a schematic structural view of the special-shaped material on-line punching device of the present invention;
fig. 2 is a schematic structural view of the traction assembly of the present invention;
fig. 3 is a schematic structural view of the punching mechanism of the present invention;
fig. 4 is a schematic structural diagram of the cutting mechanism of the present invention.
Detailed Description
In order that the present invention may be more readily and clearly understood, the following detailed description of the present invention is provided in connection with the accompanying drawings.
As shown in fig. 1, 2, 3, and 4, an in-line punching apparatus for profile material includes:
a storage and release mechanism adapted to dynamically store or release profiled material;
a traction mechanism 1 suitable for intermittently drawing and conveying the special-shaped material, wherein the traction mechanism 1 is positioned at the back of the storage and release mechanism;
a punching mechanism 2 adapted to punch a hole in the profile material when the profile material is in a stationary state;
and the storage and release mechanism, the traction mechanism 1 and the punching mechanism 2 are respectively arranged on the frame 3.
Specifically, drive mechanism 1 carries certain length forward with dysmorphism material intermittent type nature, when dysmorphism material is in quiescent condition, punches a hole on special-shaped material in mechanism 2 of punching a hole, because the production of special-shaped material is continuous, and drive mechanism 1 pull and punch a hole of mechanism 2 and be intermittent type nature, the utility model discloses a storage release mechanism dynamic storage or release special-shaped material, and then make the utility model discloses can with the production speed phase-match of special-shaped material, can accomplish well punching a hole on line, improve work efficiency widely.
As shown in fig. 1, the storage release mechanism includes:
a slide block 41 which is arranged on the frame 3 in a sliding way and can be lifted;
a movable transition roller 42 rotatably supported on the slider 41, the profile material passing around from the lower side of the movable transition roller 42.
As shown in fig. 1, in order to guide the profile material, the storage and release mechanism further includes two fixed transition rollers 43 rotatably supported on the frame 3 and distributed on both sides of the movable transition roller to guide the profile material, and the profile material is passed over the fixed transition rollers 43.
As shown in fig. 1 and 4, the on-line shaped material punching device further comprises a cutting mechanism 5 which is suitable for cutting the shaped material when the shaped material is in a static state, and the cutting mechanism 5 is installed on the frame 3 and is positioned at the rear path of the punching mechanism 2.
As shown in fig. 1 and 2, the drawing mechanism 1 comprises a rotary driving assembly and two drawing assemblies, the punching mechanism 2 and the cutting mechanism 5 are positioned between the two drawing assemblies, and the rotary driving assembly is connected with the two drawing assemblies to drive the two drawing assemblies to act.
As shown in fig. 1 and 2, the traction assembly includes a traction frame 11 fixed on the frame 3, a lifting block configured to be lifted and lowered on the traction frame 11, a driven roller 12 rotatably supported on the lifting block, a driving roller 13 rotatably supported on the frame 3 and located below the driven roller 12, and a lifting driving member 14 disposed between the traction frame 11 and the lifting block and adapted to drive the lifting block to lift;
the rotation driving component comprises a driving motor 15 and synchronous belt wheels 16 which are fixed on the driving rollers 13 and are coaxial with the driving rollers 13, the two synchronous belt wheels 16 are connected through synchronous belt transmission, and an output shaft of the driving motor 15 is connected with one of the driving rollers 13 to drive the driving rollers 13 to rotate.
In the present exemplary embodiment, the lifting drive 14 comprises a spindle which is rotatably mounted on the traction carriage 11 and is screwed to the respective lifting block.
Specifically, the utility model discloses a traction assembly is equipped with two, and mechanism 1 and the cutting mechanism 5 of punching a hole are located between two traction assemblies, and then punch a hole or the in-process of the 5 cutting of cutting mechanism at mechanism 1 of punching a hole, through two traction assembly locking or compress tightly special-shaped material, prevent special-shaped material skew or slip, improved punching a hole precision and cutting accuracy widely.
As shown in fig. 1 and 3, the punching mechanism 2 includes:
a punch 21;
a punching frame 22 fixed on the frame 3;
a punching die 23 fixed on the frame 3, wherein a punching groove matched with the punch 21 in shape is arranged on the punching die 23;
and the punching air cylinder 24 is arranged between the punching frame 22 and the punch 21 and is suitable for driving the punch 21 to descend so that the punch 21 is matched with the punching groove to punch holes on the special-shaped material.
In this embodiment, in order to allow the profile to better pass through the punching mechanism 2, the punching die 23 is provided with a guide groove conforming to the shape of the profile to guide the profile in its movement.
As shown in fig. 1 and 4, the cutting mechanism 5 includes:
a cutter 51;
a cutting frame 52 fixed to the frame 3;
a limiting block 53 fixed on the frame 3, wherein a positioning channel is arranged in the limiting block 53, and the special-shaped material passes through the positioning channel;
and a cutting cylinder 54 disposed between the cutting frame 52 and the cutting blade 51 and adapted to drive the cutting blade 51 to descend to cut the profile.
In this embodiment, the arrangement of the positioning channel can effectively prevent the special-shaped material from moving in the cutting process. The cutter 51 clings to the limiting block 53 to descend in the descending process.
As shown in fig. 1, in order to avoid the profile material from being too loose or too tight to be pulled, the on-line punching device for the profile material further comprises an upper detection device 6, a lower detection device 7 and a controller; wherein the content of the first and second substances,
said lower detection means 7 are adapted to detect the lowering of the movable transition roller 42 to the lowest position to generate an activation signal;
said upper detection means 6 are adapted to detect the rising of the movable transition roller 42 to the uppermost position to generate a stop signal;
the controller is respectively in signal connection with the upper detection device 6, the lower detection device 7 and the traction mechanism 1 and is suitable for controlling the traction mechanism 1 to start when receiving a starting signal and controlling the traction mechanism 1 to stop when receiving a stopping signal.
In the present embodiment, the upper detection device 6 and the lower detection device 7 are both proximity switches.
The above-mentioned embodiments further explain in detail the technical problems, technical solutions and advantages solved by the present invention, and it should be understood that the above only is a specific embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (10)

1. An on-line punching device for special-shaped materials is characterized in that,
it includes:
a storage and release mechanism adapted to dynamically store or release profiled material;
a drawing mechanism (1) suitable for intermittently drawing and conveying the profile, wherein the drawing mechanism (1) is positioned at the rear of the storage and release mechanism;
a punching mechanism (2) suitable for punching the special-shaped material when the special-shaped material is in a static state;
the storage and release mechanism, the traction mechanism (1) and the punching mechanism (2) are respectively arranged on the rack (3).
2. A profile on-line punching apparatus according to claim 1,
the storage release mechanism includes:
a sliding block (41) which is arranged on the frame (3) in a sliding way and can be lifted;
a movable transition roller (42) rotatably supported on the slide (41), the profiled material passing around from the underside of the movable transition roller (42).
3. A profile on-line punching apparatus according to claim 2,
the storage and release mechanism further comprises two fixed transition rollers (43) which are respectively supported on the frame (3) in a rotating mode and distributed on two sides of the movable transition roller so as to guide the profiled materials, and the profiled materials bypass from the upper side of the fixed transition rollers (43).
4. A profile on-line punching apparatus according to claim 1,
the cutting machine further comprises a cutting mechanism (5) which is suitable for cutting the special-shaped material when the special-shaped material is in a static state, wherein the cutting mechanism (5) is arranged on the machine frame (3) and is positioned at the rear path of the punching mechanism (2).
5. The profile on-line punching apparatus according to claim 4,
the punching mechanism (2) and the cutting mechanism (5) are positioned between the two traction assemblies, and the rotary driving assembly is connected with the two traction assemblies to drive the two traction assemblies to act.
6. A profile on-line punching apparatus according to claim 5,
the traction assembly comprises a traction frame (11) fixed on the rack (3), a lifting block arranged on the traction frame (11) in a liftable and liftable sliding manner, a driven roller (12) rotatably supported on the lifting block, a driving roller (13) rotatably supported on the rack (3) and positioned below the driven roller (12), and a lifting driving piece (14) arranged between the traction frame (11) and the lifting block and suitable for driving the lifting block to lift;
the rotary driving assembly comprises a driving motor (15) and synchronous belt wheels (16) which are fixed on the driving roller (13) and coaxial with the driving roller (13), the two synchronous belt wheels (16) are connected through synchronous belt transmission, and an output shaft of the driving motor (15) is connected with one of the driving rollers (13) to drive the driving roller (13) to rotate.
7. A profile on-line punching apparatus according to claim 1,
the punching mechanism (2) comprises:
a punch (21);
a punching frame (22) fixed on the frame (3);
the punching die (23) is fixed on the rack (3), and a punching groove matched with the punch (21) in shape is formed in the punching die (23);
and the punching air cylinder (24) is arranged between the punching frame (22) and the punch (21) and is suitable for driving the punch (21) to descend so that the punch (21) is matched with the punching groove to punch holes on the special-shaped material.
8. A profile on-line punching apparatus according to claim 7,
the punching die (23) is provided with a guide groove which is consistent with the shape of the special-shaped section so as to guide the special-shaped section to move.
9. A profile on-line punching apparatus according to claim 4,
the cutting mechanism (5) comprises:
a cutter (51);
a cutting frame (52) fixed on the frame (3);
a limiting block (53) fixed on the frame (3), wherein a positioning channel is arranged in the limiting block (53), and the special-shaped material passes through the positioning channel;
and the cutting cylinder (54) is arranged between the cutting frame (52) and the cutting knife (51) and is suitable for driving the cutting knife (51) to descend so as to cut off the special-shaped material.
10. A profile on-line punching apparatus according to claim 2,
the device also comprises an upper detection device (6), a lower detection device (7) and a controller; wherein the content of the first and second substances,
the lower detection means (7) are adapted to detect the lowering of the movable transition roller (42) to the lowest position to generate an activation signal;
the upper detection means (6) being adapted to detect the rising of the movable transition roller (42) to the uppermost position to generate a stop signal;
the controller is respectively in signal connection with the upper detection device (6), the lower detection device (7) and the traction mechanism (1) and is suitable for controlling the traction mechanism (1) to start when receiving a starting signal and controlling the traction mechanism (1) to stop when receiving a stopping signal.
CN202123298183.4U 2021-12-24 2021-12-24 Online punching device for special-shaped material Active CN216578269U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123298183.4U CN216578269U (en) 2021-12-24 2021-12-24 Online punching device for special-shaped material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123298183.4U CN216578269U (en) 2021-12-24 2021-12-24 Online punching device for special-shaped material

Publications (1)

Publication Number Publication Date
CN216578269U true CN216578269U (en) 2022-05-24

Family

ID=81616671

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123298183.4U Active CN216578269U (en) 2021-12-24 2021-12-24 Online punching device for special-shaped material

Country Status (1)

Country Link
CN (1) CN216578269U (en)

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