CN216965894U - Numerical control bender is used in production of aluminium veneer - Google Patents

Numerical control bender is used in production of aluminium veneer Download PDF

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Publication number
CN216965894U
CN216965894U CN202123291791.2U CN202123291791U CN216965894U CN 216965894 U CN216965894 U CN 216965894U CN 202123291791 U CN202123291791 U CN 202123291791U CN 216965894 U CN216965894 U CN 216965894U
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bin
airflow
numerical control
bending machine
control bending
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CN202123291791.2U
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Chinese (zh)
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刘湘兰
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Foshan Lanming Decoration Material Co ltd
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Foshan Lanming Decoration Material Co ltd
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Abstract

The utility model discloses a numerical control bending machine for aluminum veneer production, which comprises a bending machine body, a cleaning mechanism and an airflow mechanism, wherein the lower side of the bending machine body is connected with the cleaning mechanism, the cleaning mechanism comprises a scrap collecting bin, the scrap collecting bin is connected with the airflow bin, a pair of blocking nets are arranged in the airflow bin, a rotation fan is connected between the pair of blocking nets, the airflow bin is internally provided with the airflow mechanism, a communicating pipeline is connected between the scrap collecting bin and the airflow bin, the scrap collecting bin is connected with a falling net, the airflow bin is connected with a guaranteeing net, and the blocking net penetrates through the airflow bin. According to the utility model, through the arrangement of the corresponding mechanism on the numerical control bending machine, the scraps are cleaned in time, the wear and aging speed of the internal parts of the numerical control bending machine is reduced, the service life of the numerical control bending machine is prolonged, the maintenance cost of the numerical control bending machine is reduced, the accuracy of the numerical control bending machine is improved, the bending quality of the plate is improved, and the loss suffered by a user is reduced.

Description

Numerical control bender is used in production of aluminium veneer
Technical Field
The utility model belongs to the technical field of numerical control bending machines, and particularly relates to a numerical control bending machine for aluminum veneer production.
Background
The numerical control bending machine can bend a metal plate in a cold state into workpieces with various geometric cross-sectional shapes by utilizing the equipped die, and is a plate forming machine designed for cold-rolled sheet metal processing.
At present, panel is at the in-process of bending, can be because deformation produces certain piece, numerical control bender does not have a clearance clastic mechanism in present stage, the piece can not obtain timely clearance, can get into inside the numerical control bender, this can cause numerical control bender internals's accelerated wear ageing, the life of numerical control bender has not only been reduced, the maintenance cost is improved, the accuracy nature of numerical control bender has still been reduced, the quality that panel was bent has been reduced, cause user's loss.
Therefore, in order to solve the above technical problems, a numerical control bending machine for aluminum single plate production is needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a numerical control bending machine for aluminum veneer production, which aims to solve the problems that scraps generated by the deformation of a plate cannot be cleaned in time, the abrasion and aging of internal parts of the numerical control bending machine are accelerated, and the accuracy of the numerical control bending machine is reduced.
In order to achieve the above object, an embodiment of the present invention provides the following technical solutions:
a numerical control bender is used in production of aluminium veneer includes: the bending machine comprises a bending machine body, a cleaning mechanism and an airflow mechanism;
the lower side of the bending machine body is connected with a cleaning mechanism, the cleaning mechanism comprises a scrap collecting bin, an air flow bin is connected onto the scrap collecting bin, a pair of blocking nets is arranged in the air flow bin, and a self-rotating fan is connected between the pair of blocking nets;
and an airflow mechanism is arranged in the airflow bin.
Furthermore, a communication pipeline is connected between the scrap collecting bin and the airflow bin, so that the scrap collecting bin is conveniently communicated with the airflow bin, and the airflow bin can absorb air and scraps from the scrap collecting bin;
the scrap collecting bin is connected with a falling net, so that scraps generated by deformation can fall into the scrap collecting bin;
the airflow cabin is connected with a guarantee net, so that the possibility of discharging the scraps is further reduced;
the blocking net penetrates through the airflow bin, can be drawn out, and is convenient to replace.
Furthermore, an air bag block is arranged on one side, far away from the pair of barrier nets, of each barrier net, so that the vibration air bag can be supported, and the stability of the vibration air bag is improved;
a vibration air bag is connected between the air bag block and the separation net, the vibration air bag can be compressed after the separation net is impacted, and the vibration air bag can buffer the separation net;
the rotation fan is connected with a pair of vibration balls, and the separation net can be impacted through rotation.
Furthermore, a collection bin is arranged in the airflow bin, so that the scraps can be collected, and the cleaning of a user is facilitated;
the collecting bin is provided with a supporting block which can support the blocking plate, so that the balance of the blocking plate is improved;
be equipped with the baffler on the supporting shoe, can make the piece of separation net separation fall into the collection storehouse through the pull, collection storehouse and baffler all run through the setting of air current storehouse.
Further, the air flow mechanism comprises an air shaft which can drive the fan to rotate through rotation;
the wind shaft is connected with a plurality of fans, and the wind shaft rotates to generate airflow in the airflow bin, so that the air is discharged out of the airflow bin;
a pair of supporting pieces are connected between the wind shaft and the airflow bin, and can support the wind shaft, so that the stability and the balance of the wind shaft are improved.
Furthermore, one side of the wind shaft is connected with a motor which can provide corresponding power for the rotation of the wind shaft;
the motor is connected with the mounting between air current storehouse, can support the motor, makes the stability of motor obtain promoting.
Compared with the prior art, the utility model has the following advantages:
according to the numerical control bending machine, the corresponding mechanisms on the numerical control bending machine are arranged, so that the scraps are cleaned in time, the wear and aging speed of the internal parts of the numerical control bending machine is reduced, the service life of the numerical control bending machine is prolonged, the maintenance cost of the numerical control bending machine is reduced, the accuracy of the numerical control bending machine is improved, the bending quality of the plate is improved, and the loss suffered by a user is reduced.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments described in the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a front sectional view of a numerical control bending machine for aluminum single plate production in an embodiment of the present invention;
FIG. 2 is a schematic view of the structure at A in FIG. 1;
FIG. 3 is a schematic view of the structure at B in FIG. 1;
fig. 4 is a perspective view of a numerical control bending machine for producing aluminum veneers in an embodiment of the utility model.
In the figure: 1. the bending machine comprises a bending machine body, 2 parts of a cleaning mechanism, 201 parts of a scrap collecting bin, 202 parts of an air flow bin, 203 parts of a blocking net, 204 parts of a rotating fan, 205 parts of a communicating pipeline, 206 parts of a falling net, 207 parts of a guaranteeing net, 208 parts of an air bag block, 209 parts of a vibration air bag, 210 parts of a vibration ball, 211 parts of a collecting bin, 212 parts of a supporting block, 213 parts of a blocking plate, 3 parts of an air flow mechanism, 301 parts of an air shaft, 302 parts of a fan, 303 parts of a supporting piece, 304 parts of a motor, 305 parts of a fixing piece.
Detailed Description
The present invention will be described in detail below with reference to embodiments shown in the drawings. The embodiments are not intended to limit the present invention, and structural, methodological or functional changes made by those skilled in the art according to the embodiments are included in the scope of the present invention.
The utility model discloses a numerical control bending machine for producing aluminum veneers, which is shown in figures 1-4 and comprises: bender body 1, clearance mechanism 2 and air current mechanism 3.
Referring to fig. 1-2, the lower side of bender body 1 is connected with cleaning mechanism 2, and cleaning mechanism 2 includes collection bits storehouse 201, can accomodate the piece that panel deformation produced, reduces the possibility that the piece got into bender body 1 inside.
Wherein, the dust collecting bin 201 is connected with an airflow bin 202 which can provide a corresponding channel for the discharge of air and help the collection of the debris.
In addition, a pair of blocking nets 203 is arranged in the airflow cabin 202, so that debris can be filtered, and the possibility of discharging the debris is reduced.
In addition, a rotation fan 204 is connected between the pair of barrier nets 203, and can rotate under the driving of the air flow, and drive the vibration ball 210 to knock the barrier nets 203.
Referring to fig. 1-3, a communication pipe 205 is connected between the chip collecting bin 201 and the airflow bin 202, so as to facilitate the communication between the chip collecting bin 201 and the airflow bin 202, and the airflow bin 202 can absorb air and debris from the chip collecting bin 201.
Wherein, be connected with down to fall net 206 on the collection bits storehouse 201, can make the piece that the deformation produced fall into collection bits storehouse 201.
In addition, a security mesh 207 is attached to the airflow chamber 202 to further reduce the likelihood of debris being expelled.
In addition, the blocking net 203 penetrates through the airflow cabin 202, and the blocking net 203 can be drawn out, so that the blocking net 203 is convenient to replace.
Referring to fig. 1-2, an airbag block 208 is disposed on a side of the pair of barrier nets 203 away from each other, and can support the vibration airbag 209, so as to improve the stability of the vibration airbag 209.
Wherein, be connected with vibrations gasbag 209 between gasbag piece 208 and the separation net 203, after the separation net 203 receives the striking, can compress vibrations gasbag 209, vibrations gasbag 209 can cushion separation net 203.
Preferably, the rotation fan 204 is connected to a pair of vibration balls 210, and the barrier net 203 can be struck by rotation.
Referring to fig. 1-2, a collection chamber 211 is disposed in the airflow chamber 202 for collecting the debris, which is convenient for the user to clean.
The collection chamber 211 is provided with a support block 212, which can support the blocking plate 213, so as to improve the balance of the blocking plate 213.
In addition, the supporting block 212 is provided with a blocking plate 213, so that the scraps blocked by the blocking net 203 can fall into the collecting bin 211 through drawing, and the collecting bin 211 and the blocking plate 213 are arranged through the airflow bin 202.
Referring to fig. 1-3, an airflow mechanism 3 is disposed in the airflow chamber 202, and the airflow mechanism 3 includes a wind shaft 301 that can rotate a fan 302.
The wind shaft 301 is connected to a plurality of fans 302, and the rotation of the fans causes airflow to be generated in the airflow compartment 202, so that air can be discharged out of the airflow compartment 202.
In addition, a pair of supporting pieces 303 are connected between the wind shaft 301 and the airflow cabin 202, so that the wind shaft 301 can be supported, and the stability and balance of the wind shaft 301 are improved.
Referring to fig. 1 to 4, a motor 304 is connected to one side of the wind shaft 301 to provide corresponding power for the rotation of the wind shaft 301.
In addition, a fixing member 305 is connected between the motor 304 and the airflow chamber 202, and can support the motor 304, so that the stability of the motor 304 is improved.
Specifically, the user opens motor 304, it is rotatory to make wind shaft 301 drive fan 302, form the air current from air current storehouse 202, the air current will fall into the piece suction air current storehouse 202 in album bits storehouse 201, and receive the separation of separation net 203, simultaneously, the air current drives rotation fan 204 rotatory, the user takes out baffler 213, the piece that receives the separation of separation net 203 can fall into and collects the storehouse 211, rotation fan 204's rotation can drive vibrations ball 210 and strike separation net 203, the piece on the separation net 203 can receive vibrations, prevent that separation net 203 from blockking up.
According to the technical scheme, the utility model has the following beneficial effects:
according to the numerical control bending machine, the corresponding mechanisms on the numerical control bending machine are arranged, so that the scraps are cleaned in time, the wear and aging speed of the internal parts of the numerical control bending machine is reduced, the service life of the numerical control bending machine is prolonged, the maintenance cost of the numerical control bending machine is reduced, the accuracy of the numerical control bending machine is improved, the bending quality of the plate is improved, and the loss suffered by a user is reduced.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (6)

1. The utility model provides an aluminium is numerical control bender for veneer production which characterized in that includes:
a bender body (1);
the cleaning mechanism (2) is connected to the lower side of the bending machine body (1), the cleaning mechanism (2) comprises a scrap collecting bin (201), an air flow bin (202) is connected to the scrap collecting bin (201), a pair of blocking nets (203) is arranged in the air flow bin (202), and a rotation fan (204) is connected between the pair of blocking nets (203);
and the airflow mechanism (3) is arranged in the airflow bin (202).
2. The numerical control bending machine for aluminum single plate production according to claim 1, wherein a communication pipeline (205) is connected between the scrap collecting bin (201) and the airflow bin (202), a falling net (206) is connected to the scrap collecting bin (201), a guarantee net (207) is connected to the airflow bin (202), and the blocking net (203) penetrates through the airflow bin (202).
3. The numerical control bending machine for aluminum veneer production according to claim 2, wherein a pair of the blocking nets (203) is provided with an air bag block (208) at a side far away from each other, a vibration air bag (209) is connected between the air bag block (208) and the blocking nets (203), and a pair of vibration balls (210) is connected to the rotation fan (204).
4. The numerical control bending machine for aluminum veneer production according to claim 3, wherein a collection bin (211) is arranged in the airflow bin (202), a support block (212) is arranged on the collection bin (211), a blocking plate (213) is arranged on the support block (212), and the collection bin (211) and the blocking plate (213) are both arranged to penetrate through the airflow bin (202).
5. The numerical control bending machine for aluminum single plate production according to claim 1, wherein the air flow mechanism (3) comprises an air shaft (301), a plurality of fans (302) are connected to the air shaft (301), and a pair of supporting members (303) are connected between the air shaft (301) and the air flow bin (202).
6. The numerical control bending machine for aluminum veneer production according to claim 5, wherein a motor (304) is connected to one side of the wind shaft (301), and a fixing member (305) is connected between the motor (304) and the airflow cabin (202).
CN202123291791.2U 2021-12-25 2021-12-25 Numerical control bender is used in production of aluminium veneer Active CN216965894U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123291791.2U CN216965894U (en) 2021-12-25 2021-12-25 Numerical control bender is used in production of aluminium veneer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123291791.2U CN216965894U (en) 2021-12-25 2021-12-25 Numerical control bender is used in production of aluminium veneer

Publications (1)

Publication Number Publication Date
CN216965894U true CN216965894U (en) 2022-07-15

Family

ID=82347779

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123291791.2U Active CN216965894U (en) 2021-12-25 2021-12-25 Numerical control bender is used in production of aluminium veneer

Country Status (1)

Country Link
CN (1) CN216965894U (en)

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