CN207630160U - Automobile engine nacelle sealing element automatic cutter - Google Patents
Automobile engine nacelle sealing element automatic cutter Download PDFInfo
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- CN207630160U CN207630160U CN201721734893.8U CN201721734893U CN207630160U CN 207630160 U CN207630160 U CN 207630160U CN 201721734893 U CN201721734893 U CN 201721734893U CN 207630160 U CN207630160 U CN 207630160U
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Abstract
The utility model discloses a kind of automobile engine nacelle sealing element automatic cutters, it is characterized in that, unit is cut including board, the first feeding unit, the second feeding unit, first, second cuts unit and control unit, and first feeding unit, the second feeding unit, first cut unit, second cut unit and be electrically connected with control unit;First feeding unit and the second feeding unit are all set on board;First cuts unit and second cuts the side that unit is set to board;Starting material is sent to first and cuts unit by the first feeding unit, first cuts the processing materials that starting material is cut into several rectangles according to the minimum enclosed rectangle of sealing element by unit, processing materials are sent to second and cut unit by the second feeding unit, and second cuts unit cuts into sealing element by processing materials.The utility model proposes guillotine realize from starting material and be worked into the full automation operation that sealing element cuts, save human cost, improve whole efficiency.
Description
Technical field
The utility model is related to a kind of guillotines, and in particular to a kind of automobile engine nacelle sealing element automatic cutter.
Background technology
Automobile engine nacelle sealing element guillotine on the market needs first to carry out material before carrying out material and cutting at present
Processing, by the suitable size of starting material value processing then could carry out finally cut, not only increase in process
Human cost, and in process due to not being the accurate dimensioned according to sealing element, to cause the wave of material
Take.
Moreover, current guillotine also needs to manually input sealing element size, it is not only cumbersome, but also inputting
It is susceptible to mistake in the process, final finished size is caused deviation occur.
In addition, traditional cutting machine cannot be incuded and be automatically stopped to the environment around cutting machine in cutting process
Running, it is easy to occur hurting sb.'s feelings or hindering animal event.
Utility model content
To solve the deficiencies in the prior art, the purpose of this utility model is to provide a kind of automobile engine nacelle sealing elements certainly
Dynamic guillotine realizes the full automation operation for being worked into sealing element and cutting from starting material, saves human cost, carry
High whole efficiency.
In order to realize above-mentioned target, the utility model adopts the following technical scheme:A kind of automobile engine nacelle sealing element
Automatic cutter, which is characterized in that cut unit, the second sanction including board, the first feeding unit, the second feeding unit, first
Cut unit and control unit, first feeding unit, the second feeding unit, first cut unit, second cut unit with
Control unit is electrically connected;First feeding unit and the second feeding unit are all set on board;Described first cuts unit
The side that unit is set to board is cut with second;Control unit controls the first feeding unit and starting material is sent to the first sanction
Cut unit, first cuts the machining object that starting material is cut into several rectangles according to the minimum enclosed rectangle of sealing element by unit
Processing materials are sent to second and cut unit by material, control unit the second feeding unit of control, and second cuts unit by machining object
Material cuts into sealing element.
Further, described first to cut unit include image acquiring device, fabrication design device and the first cutter device,
Described image acquisition device, the general image information for obtaining starting material;The fabrication design device is according to starting material
General image information and sealing element minimum enclosed rectangle, starting material is divided into the cutting region of several rectangles, it is described
The area equation of the area of cutting region and the minimum enclosed rectangle of sealing element;First cutter device is according to the cutting of division
Region cuts starting material, obtains processing materials identical with the minimum enclosed rectangle shape of sealing element.
Further, described image acquisition device is additionally operable to the image letter in the first cutter device cutting operation region obtained
Breath, and is sent to control unit by the image information in cutting operation region and analyzes, if control unit the analysis found that
There is foreign matter to enter cutting operation region, then cuts off the power supply of the first cutter device.
Further, described first to cut unit further include waste material collection device, and the waste material collection device is used for first
Beginning material remaining waste material after cutting is recycled.
Further, described second to cut unit include position regulator and the second cutter device, the position adjustment
Device is detected analysis for the position to the processing materials, obtains phase of the processing materials relative to the second cutter device
To location information, and according to the position of relative position information adjustment processing materials;Control unit controls the second cutter device
Processing materials are cut into sealing element.
Further, the position regulator includes camera and X ray sensor, and the camera adds for obtaining
The position video information of work material, the X ray sensor is used to detect the thickness information of processing materials, according to processing materials
Position video information and thickness information obtain relative position information of the processing materials relative to the second cutter device.
Further, described control unit includes feeding control module, memory module and cut-sytle pollination module, the feeding
Control module, startup and pause for controlling first feeding unit and the second feeding unit;The memory module, is used for
Store the dimension data information of sealing element;The cut-sytle pollination module cuts unit and second for control first and cuts unit
Carry out cutting operation.
Further, described control unit further includes wireless communication module, the wireless communication module be used for terminal into
Row communication connection.
Further, the guillotine further includes terminal, and the terminal establishes data transmission with the wireless communication module
Link, the dimension data information for sending sealing element to control unit and relevant control instruction.
The utility model is beneficial in that:
The utility model proposes a kind of automobile engine nacelle sealing element automatic cutter, which cuts including first
Unit and second cuts unit, and first, which cuts unit, cuts into the larger starting material of area the external square of minimum with sealing element
Then the identical processing materials of shape second cut unit processing materials are cut into final sealing element again.In the whole process,
The automation processing for not only realizing starting material, reduces human cost, and Mechanized Processing mode is also to greatest extent
Starting material is utilized, reduces waste caused by starting material manpower process, to save physics cost, finally
Improve whole efficiency.
Description of the drawings
Fig. 1 is the structural schematic diagram of the automobile engine nacelle sealing element automatic cutter of the utility model one embodiment;
Fig. 2 is the schematic diagram of the sealing element minimum enclosed rectangle of the utility model one embodiment;
Fig. 3 is the first of the utility model one embodiment to cut cell schematics;
Fig. 4 is the second of the utility model one embodiment to cut cell schematics.
Specific implementation mode
Specific introduce is made to the utility model below in conjunction with the drawings and specific embodiments.
Shown in referring to Fig.1, a kind of automobile engine nacelle sealing element automatic cutter of the utility model, including board 10, the
One feeding unit 20, the second feeding unit 30, first cut unit 40, second cut unit 50 and control unit 60.Described
One feeding unit 20, the second feeding unit 30, first cut unit 40, second cut unit 50 and be electrically connected with control unit 60
It connects.First feeding unit, 20 and second feeding unit 30 is all set on board 10.Described first cuts unit 50 and
Two cut the side that unit 60 is set to board 10.Wherein:
First feeding unit 20 cuts unit 40 for unprocessed starting material to be sent to first;
First cuts unit 40, described to add for unprocessed starting material to be cut into the smaller processing materials of size
The shape and area of work material are all identical as the minimum enclosed rectangle of sealing element;
Second feeding unit 30 cuts unit 50 for the processing materials block-by-block of well cutting to be sent to second;
Second cuts unit 50, for processing materials to be cut into final sealing element according to the size of sealing element;
Starting material is sent to first for controlling the first feeding unit 20 and cuts unit 40 by control unit 60, and first
It cuts after starting material cuts into the processing materials of several rectangles by unit 40 according to the minimum enclosed rectangle of sealing element, control is single
Member 60 controls the second feeding unit 30 processing materials are sent to second again cuts unit 50, and second cuts unit 50 by machining object
Material cuts into sealing element.
With reference to shown in Fig. 2, the minimum enclosed rectangle 71 of sealing element 70 is the Two-dimensional Maximum range of sealing element 70, i.e., with given
70 each vertex of sealing element in maximum abscissa, minimum abscissa, maximum ordinate, minimum ordinate fix the square on boundary
Shape.
In one embodiment of the utility model, with reference to shown in Fig. 3, described first cuts unit 40 obtains including image
Take device 41, fabrication design device 42 and the first cutter device 43.Wherein:Described image acquisition device 41, it is initial for obtaining
The general image information of material.The fabrication design device 42, most according to the general image information and sealing element of starting material
Starting material is divided into the cutting region of several rectangles by small boundary rectangle, and the area and sealing element of the cutting region are most
The area equation of small boundary rectangle.First cutter device 40 cuts starting material according to the cutting region of division,
Obtain processing materials identical with the minimum enclosed rectangle shape of sealing element.In addition, described first to cut unit 40 further include giving up
Expect collection device, the waste material collection device is for remaining waste material to recycle after cutting to starting material.Recycling
On the one hand waste material prevents waste material from bringing operation in next step into, the waste material on the other hand collected is also allowed for handling or be recycled.
Further, described image acquisition device 41 can be also used for the first cutter device cutting operation region obtained
Image information, and the image information in cutting operation region is sent to control unit 60 and is analyzed, if control unit 60 passes through
It crosses analysis and has found that foreign matter enters cutting operation region, then cut off the power supply of the first cutter device 43.Setting both can be to prevent in this way
It only brings foreign matter into starting material and equipment is damaged, be also possible to prevent worker and accidentally put his hand into cutting in opertions engineering
Operating area and cause to damage.
In second embodiment of the utility model, with reference to shown in Fig. 4, described second, which cuts unit 50, includes position tune
Engagement positions 51 and the second cutter device 52.The position adjustment fills 51 and sets, and is detected for the position to the processing materials
Analysis obtains relative position information of the processing materials relative to the second cutter device, and is adjusted according to the relative position information
The position of processing materials.Control unit 60 controls the second cutter device 52 and processing materials is cut into sealing element.Specifically, described
Position regulator includes camera and X ray sensor, and the camera is used to obtain the position video information of processing materials,
The X ray sensor is used to detect the thickness information of processing materials, is believed according to the position video information and thickness of processing materials
Breath obtains relative position information of the processing materials relative to the second cutter device.
In the third embodiment of the utility model, described control unit include feeding control module, memory module and
Cut-sytle pollination module.The feeding control module, for control first feeding unit and the second feeding unit startup and
Pause.The memory module, the dimension data information for storing sealing element.The cut-sytle pollination module, for controlling first
It cuts unit and second and cuts unit progress cutting operation.Further, described control unit can also include radio communication mold
Block, the wireless communication module with terminal for being communicatively coupled.Further, the guillotine further includes terminal, described
Terminal establishes data transmission link with the wireless communication module, the dimension data information for sending sealing element to control unit
And relevant control instruction.Thereby realize complete terminal control so that operating personnel need not be manually entered sealing element
Dimension data, only the design drawing of sealing element need to be sent to control unit, control unit can therefrom extract sealing element
Then dimension information carries out automation manipulation.
The basic principles and main features and advantage of the utility model have been shown and described above.The technical staff of the industry
It should be appreciated that above-described embodiment does not limit the utility model in any form, it is all by the way of equivalent substitution or equivalent transformation
The technical solution obtained, all falls in the scope of protection of the utility model.
Claims (9)
1. a kind of automobile engine nacelle sealing element automatic cutter, which is characterized in that including board, the first feeding unit, second
Feeding unit, first cut unit, second cut unit and control unit, first feeding unit, the second feeding unit,
One cuts unit, second cuts unit and be electrically connected with control unit;First feeding unit and the second feeding unit are all set
It is placed on board;Described first cuts unit and second cuts the side that unit is set to board;Control unit control first is sent
Starting material is sent to first and cuts unit by material unit, and first cuts unit will be initial according to the minimum enclosed rectangle of sealing element
Material cuts into the processing materials of several rectangles, and processing materials are sent to second and cut by control unit the second feeding unit of control
Unit, second cuts unit cuts into sealing element by processing materials.
2. automobile engine nacelle sealing element automatic cutter according to claim 1, which is characterized in that described first cuts
Unit includes image acquiring device, fabrication design device and the first cutter device, and described image acquisition device is initial for obtaining
The general image information of material;The fabrication design device is outer according to the general image information of starting material and the minimum of sealing element
Rectangle is connect, starting material is divided into the cutting region of several rectangles, the area of the cutting region and the minimum of sealing element are outer
Connect the area equation of rectangle;First cutter device cuts starting material according to the cutting region of division, obtain with
The identical processing materials of minimum enclosed rectangle shape of sealing element.
3. automobile engine nacelle sealing element automatic cutter according to claim 2, which is characterized in that described image obtains
Device is additionally operable to the image information in the first cutter device cutting operation region obtained, and by the image information in cutting operation region
It is sent to control unit to be analyzed, if control unit the analysis found that there is foreign matter to enter cutting operation region, is cut off
The power supply of first cutter device.
4. automobile engine nacelle sealing element automatic cutter according to claim 2, which is characterized in that described first cuts
Unit further includes waste material collection device, the waste material collection device be used for starting material by cutting after remaining waste material into
Row recycling.
5. automobile engine nacelle sealing element automatic cutter according to claim 1, which is characterized in that described second cuts
Unit includes position regulator and the second cutter device, the position regulator, for the position to the processing materials
It is detected analysis, obtains relative position information of the processing materials relative to the second cutter device, and according to the relative position
Information adjusts the position of processing materials;Control unit controls the second cutter device and processing materials is cut into sealing element.
6. automobile engine nacelle sealing element automatic cutter according to claim 5, which is characterized in that the position adjustment
Device includes camera and X ray sensor, and the camera is used to obtain the position video information of processing materials, and the X is penetrated
Line sensor is used to detect the thickness information of processing materials, is obtained and is added according to the position video information and thickness information of processing materials
Relative position information of the work material relative to the second cutter device.
7. automobile engine nacelle sealing element automatic cutter according to claim 1, which is characterized in that described control unit
Including feeding control module, memory module and cut-sytle pollination module, the feeding control module, for controlling first feeding
The startup and pause of unit and the second feeding unit;The memory module, the dimension data information for storing sealing element;It is described
Cut-sytle pollination module cuts unit and second for control first and cuts unit progress cutting operation.
8. automobile engine nacelle sealing element automatic cutter according to claim 7, which is characterized in that described control unit
Further include wireless communication module, the wireless communication module with terminal for being communicatively coupled.
9. automobile engine nacelle sealing element automatic cutter according to claim 8, which is characterized in that the guillotine is also
Including terminal, the terminal establishes data transmission link with the wireless communication module, for sending sealing element to control unit
Dimension data information and relevant control instruction.
Priority Applications (1)
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CN201721734893.8U CN207630160U (en) | 2017-12-13 | 2017-12-13 | Automobile engine nacelle sealing element automatic cutter |
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CN201721734893.8U CN207630160U (en) | 2017-12-13 | 2017-12-13 | Automobile engine nacelle sealing element automatic cutter |
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CN207630160U true CN207630160U (en) | 2018-07-20 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107891469A (en) * | 2017-12-13 | 2018-04-10 | 宁波杭州湾新区双林汽车部件有限公司 | Automobile engine nacelle seal automatic cutter |
-
2017
- 2017-12-13 CN CN201721734893.8U patent/CN207630160U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107891469A (en) * | 2017-12-13 | 2018-04-10 | 宁波杭州湾新区双林汽车部件有限公司 | Automobile engine nacelle seal automatic cutter |
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