CN104827816B - One kind layering engraving painting methods - Google Patents

One kind layering engraving painting methods Download PDF

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CN104827816B
CN104827816B CN201510259780.6A CN201510259780A CN104827816B CN 104827816 B CN104827816 B CN 104827816B CN 201510259780 A CN201510259780 A CN 201510259780A CN 104827816 B CN104827816 B CN 104827816B
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engraving
path
module
point
color
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CN104827816A (en
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单威
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Anhui Huazhi smart card technology Co.,Ltd.
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Anhui One Prestige Trade Co Ltd
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Abstract

The invention discloses one kind layering engraving painting methods, comprise the following steps:S1, acquisition object module, and set up the idiosome model of idiosome to be carved;S2, combining target model and idiosome model, generate multiple engraving paths, and each point is identical relative to the feeding depth on idiosome surface on each engraving path;S3, the covering chromatograph obtained on each engraving path, and color dot decomposition is carried out to chromatograph, the point color set of paths for including multiple color paths is generated, the form and aspect of color dot are identical in each point color path;S4, will engraving path be ranked up according to the order of feeding depth from big to small;S5, according to sequence call engraving path idiosome is carved, and often complete one engraving path engraving after, painted according to described corresponding color set of paths in engraving path, then perform again next carve path.The present invention advantageously reduces engraving and the error rate of colouring, improves operating efficiency, reduces idiosome scrappage, improves product qualified rate and quality.

Description

One kind layering engraving painting methods
Technical field
The present invention relates to decorative pattern engraving dye technology field, more particularly to a kind of layering engraving painting methods.
Background technology
Existing society, with the raising of people's quality of the life, all visual enjoyments, which are also increasingly taken seriously, to be pursued.In order to People's needs are met, various packagings are more and more exquisite, it is exactly to be commonly used to improve visual enjoyment in packaging that wherein decorative pattern, which engraves coloring, A kind of means.Decorative pattern engraves coloring and can be used for a variety of application fields such as bottled container, floor, wallboard.
Existing decorative pattern is engraved in colouring technology, because artistic carving is complicated and changeable, tends to make a fault, so as to lead Scrapping for raw material is caused, it is therefore provided that the application of artistic carving is restricted.In addition, decorative pattern coloring is sprayed frequently with color often Mode, that is, easily cause colour contamination, there is the treatment of details for being difficult to color, also can not extensive use.
Today's society, all kinds of wine product selected as gift in hot topic, people for bottle luxury aspect also increasingly Pay attention to.But, bottle small volume, it is difficult to design accessory decoration product, so decorative pattern is engraved on bottle has good potential city , but be due to the need for prior art can not meet production efficiency and treatment of details, in the top grade commodity packaging such as bottle seldom Use decorative pattern and engrave dye technology, cause these liquid goods usually to occur packing the embarrassment not caught up with.
The content of the invention
The technical problem existed based on background technology, the present invention proposes a kind of layering engraving painting methods.
A kind of layering engraving painting methods proposed by the present invention, comprise the following steps:
S1, acquisition object module, and set up the idiosome model of idiosome to be carved;
S2, combining target model and idiosome model, generate multiple engraving paths, on each engraving path each point relative to The feeding depth on idiosome surface is identical;
S3, the covering chromatograph obtained on each engraving path, and color dot decomposition is carried out to chromatograph, generate and include multiple points The form and aspect of color dot are identical in the point color set of paths in color path, each point color path;
S4, will engraving path be ranked up according to the order of feeding depth from big to small;
S5, according to sequence call engraving path idiosome is carved, and often complete one carve path engraving after, root Painted according to described corresponding color set of paths in engraving path, next engraving path is then performed again.
The present invention using from deep to shallow, engraving with point color alternately engraving colouring mode, advantageously reduce engraving with The error rate of colouring, improves operating efficiency, reduces idiosome scrappage, improves product qualified rate and quality.That puts color path enters one Classification is walked, is conducive to a color procedural order to carry out, point color accuracy is improved, a step is reduced into error rate.
Further, mapping point can as cutter reset home position so that, on same engraving path each point carve During, the feeding depth of cutter is identical, so as to according to engraving path, can carry out layering engraving to idiosome to be carved.And when carving Each point continous way on path is carved, cutter can be carved continuously;When each point is discontinuous on engraving path, engraving path can be returned to The corresponding map point location of next target point, again feeding engraving.So as to avoid carving error, reduction raw material are scrapped Rate.
Preferably, step S2 is specially:Obtain the standard scale layer parameter of object module and the actual top layer ginseng of idiosome model Count, and standard scale layer parameter and actual top layer parameter are mutually mapped, and multiple engraving paths are generated according to both mapping relations, it is each Tool feeding amount is identical in individual engraving path, feeding depth of the tool feeding amount for engraving cutter relative to idiosome top layer.
Preferably, step S2 specifically includes following steps:
S21, coordinate set up according to object module, idiosome model is moved in coordinate, and idiosome model top layer is covered comprehensively Lid object module top layer;
S22, object module surface is decomposed into multiple target points, each target point is mapped to idiosome model surface shape Mapping set is set up into mapping point, and according to the corresponding relation of target point and mapping point;
S23, according to the distance between corresponding target point and mapping point, mapping set is decomposed into multiple mapping groups, In same mapping group, corresponding target point is equal with the distance between mapping point;
S24, according to mapping group generation engraving path.
A kind of system for being layered engraving painting methods, including model building module, path-generating module, point colour analysis mould Block, execution analysis module, drive module, engraving performing module and point color performing module;
Carve performing module and include no less than one engraving cutter;
Point color performing module includes no less than one color shower nozzle;
Drive module respectively with engraving performing module and point color performing module be connected, and for drive carve performing module with The performing module work of point color;
Model building module, the idiosome model for importing object module and idiosome to be carved;
Path-generating module is connected with model building module, and it generates multiple engravings according to object module and idiosome model Each point is identical relative to the feeding depth on idiosome surface on path, each engraving path;
Point colour analysis module is connected with model building module and path-generating module respectively, and it is obtained from path-generating module Path is carved, and the covering chromatograph on each engraving path is obtained according to object module, color dot decomposition, generation are carried out to chromatograph The form and aspect phase of color dot in the point color set of paths for including multiple color paths corresponding with engraving path, each point color path Together;
Perform analysis module to be connected with path-generating module, point colour analysis module and drive module, it gives birth to from path respectively Engraving path and point color set of paths are obtained into module and point colour analysis module;Path will be carved according to feeding by performing analysis module Depth is arranged from big to small, and controls drive module driving engraving performing module to perform each engraving path successively, and is often held Go behind an engraving path, it controls drive module driving point color performing module to perform the corresponding Dian Se roads in the engraving path Footpath is gathered, and next engraving path is then performed again.
Preferably, drive module includes the first drive mechanism and the second drive mechanism, and the first drive mechanism, which is used to drive, carves Performing module work is carved, the second drive mechanism is used to drive point color performing module work, and the second drive mechanism follows the first driving Mechanism works.
Preferably, the point color shower nozzle quantity that point color performing module is included is equal with the form and aspect quantity included in object module.
In the system by the way of point color, painted relative to traditional aerograph, can further improve the fine journey of color Degree, improves tinctorial quality, and by a classification in color path, improving the succession of a color again, is conducive to improving efficiency, keeps away Exempt from error., again can be with and it is equal with the form and aspect quantity included in object module to put the point color shower nozzle quantity that color performing module includes A color shower nozzle colour contamination is further avoided, point chromaticness amount is improved.
Brief description of the drawings
Fig. 1 is a kind of layering engraving painting methods schematic flow sheet proposed by the present invention;
Fig. 2 is a kind of layering engraving toning system schematic diagram.
Embodiment
A kind of reference picture 1, layering engraving painting methods proposed by the present invention, comprises the following steps:
S1, acquisition object module, and the idiosome model of idiosome to be carved is set up, so as to according to engraving model and idiosome mould Type, determines the engraving mode of idiosome to be carved.
S21, coordinate set up according to object module, idiosome model is moved in coordinate, and idiosome model top layer is covered comprehensively Lid object module top layer;
S22, object module surface is decomposed into multiple target points, each target point is mapped to idiosome model surface shape Mapping set is set up into mapping point, and according to the corresponding relation of target point and mapping point;
S23, according to the distance between corresponding target point and mapping point, mapping set is decomposed into multiple mapping groups, In same mapping group, corresponding target point is equal with the distance between mapping point;
S24, according to mapping group generation engraving path.
Step S21 to S24 purpose can be reduced to:Combining target model and idiosome model, generate multiple engraving paths, often Tool feeding amount is identical in one engraving path.Specially:Obtain the standard scale layer parameter of object module and the reality of idiosome model Border top layer parameter, and standard scale layer parameter and actual top layer parameter mutually map, according to the multiple engravings of both mapping relations generation Tool feeding amount is identical in path, each engraving path, and the tool feeding amount is engraving cutter relative to idiosome top layer Feeding depth.
Thus, mapping point can as cutter reset home position so that, on same engraving path each point carve process In, the feeding depth of cutter is identical, so as to according to engraving path, can carry out layering engraving to idiosome to be carved.And when engraving road Each point continous way on footpath, cutter can be carved continuously;When each point is discontinuous on engraving path, engraving path can return to next The corresponding map point location of individual target point, again feeding engraving.So as to avoid carving error, raw material scrappage is reduced.
S3, the covering chromatograph obtained on each engraving path, and color dot decomposition is carried out to chromatograph, generate and include multiple points The form and aspect of color dot are identical in the point color set of paths in color path, each point color path.
The further classification in point color path, is conducive to a color procedural order to carry out, and point color accuracy is improved, by one Step reduction error rate.
S4, will engraving path be ranked up according to the order of tool feeding amount from big to small.
S5, according to sequence call engraving path idiosome is carved, and often complete one carve path engraving after, root Painted according to described corresponding color set of paths in engraving path, next engraving path is then performed again.
In present embodiment, using from deep to shallow, engraving and point color engraving alternately paint mode, advantageously reduce Engraving and the error rate of colouring, improve operating efficiency, reduce idiosome scrappage, improve product qualified rate and quality.
Reference picture 2, a kind of layering engraving toning system proposed by the present invention, including:Model building module, coordinates measurement mould Block, point colour analysis module, execution analysis module, drive module, engraving performing module and point color performing module.
Carve performing module and include no less than one engraving cutter, what cutter can be moved relative to idiosome to be carved Install.
Point color performing module includes no less than one color shower nozzle, and point color shower nozzle can be moved relative to idiosome to be carved Installation.
Drive module respectively with engraving performing module and point color performing module be connected, and for drive carve performing module with The performing module work of point color is carved and painted respectively.
Model building module, the idiosome model for importing object module and idiosome to be carved.
Path-generating module is connected with model building module, and it generates multiple engravings according to object module and idiosome model Each point is identical relative to the feeding depth on idiosome surface on path, each engraving path.
Specifically, path-generating module sets up coordinate according to object module, and idiosome model is moved in coordinate, and idiosome The comprehensive coverage goal model top layer in model top layer;Then object module surface is decomposed into multiple target points, by each target Point is mapped to idiosome model surface formation mapping point, and sets up mapping set according to the corresponding relation of target point and mapping point;Again According to the distance between corresponding target point and mapping point, mapping set is decomposed into multiple mapping groups, same mapping is small In class, corresponding target point is equal with the distance between mapping point;Finally, according to mapping group generation engraving path.
In present embodiment, mapping point can as cutter reset home position so that, each point on same engraving path During engraving, the feeding depth of cutter is identical, so as to according to engraving path, can carry out layering engraving to idiosome to be carved.And When each point continous way on engraving path, cutter can be carved continuously;When each point is discontinuous on engraving path, engraving path can The corresponding map point location of next target point is returned to, again feeding engraving.So as to avoid carving error, raw material report is reduced Useless rate.
Point colour analysis module is connected with model building module and path-generating module respectively, and it is obtained from path-generating module Path is carved, and the covering chromatograph on each engraving path is obtained according to object module, color dot decomposition, generation are carried out to chromatograph The form and aspect phase of color dot in the point color set of paths for including multiple color paths corresponding with engraving path, each point color path Together.
In present embodiment, an engraving path a plurality of color path of correspondence is put during color, point color shower nozzle is sequentially completed The corresponding a plurality of color path in one engraving path, is then sequentially completed the corresponding a plurality of Dian Se roads in next engraving path again Footpath.Thus, according to engraving path, colouring work of the point color shower nozzle on idiosome surface to be carved is also to be layered what is carried out, and same In chromatograph, point color shower nozzle is further refined according to the difference of form and aspect for a color job.Thus, using point in present embodiment The mode of color, paints relative to traditional aerograph, can further improve the fine degree of color, improves tinctorial quality, and passes through To a classification in color path, the succession of a color is improved again, is conducive to improving efficiency, it is to avoid error.
In present embodiment, the point color shower nozzle quantity that point color performing module is included and the form and aspect quantity included in object module It is equal, a color shower nozzle colour contamination can be so avoided, point chromaticness amount is improved.
Perform analysis module to be connected with path-generating module, point colour analysis module and drive module, it gives birth to from path respectively Engraving path and point color set of paths are obtained into module and point colour analysis module;Path will be carved according to feeding by performing analysis module Depth is arranged from big to small, and controls drive module driving engraving performing module to perform each engraving path successively, and is often held Go behind an engraving path, it controls drive module driving point color performing module to perform the corresponding Dian Se roads in the engraving path Footpath is gathered, and next engraving path is then performed again.
In present embodiment, after the completion of carving position most deep engraving path, engraving at first, i.e., to engraving path progress Colouring;Then carve after the completion of position shallower engraving path relatively, engraving, i.e., the engraving path is painted again;Thus, Alternately engraving is with painting successively, until completing work.
In present embodiment, idiosome to be carved is processed in the way of from deep to shallow, is conducive to restitution point color staggered floor The problem of, improve passing rate of processing.
Specifically, drive module includes the first drive mechanism and the second drive mechanism, and the first drive mechanism, which is used to drive, carves Performing module work is carved, the second drive mechanism is used to drive point color performing module work, and the second drive mechanism follows the first driving Mechanism works.
The foregoing is intended to be a preferred embodiment of the present invention, but protection scope of the present invention is not limited thereto, Any one skilled in the art the invention discloses technical scope in, technique according to the invention scheme and its Inventive concept is subject to equivalent or change, should all be included within the scope of the present invention.

Claims (5)

1. one kind layering engraving painting methods, it is characterised in that comprise the following steps:
S1, acquisition object module, and set up the idiosome model of idiosome to be carved;
S2, the standard scale layer parameter for obtaining object module and idiosome model actual top layer parameter, and standard scale layer parameter and reality Border top layer parameter is mutually mapped, and multiple engraving paths are generated according to both mapping relations, tool feeding in each engraving path Amount is identical, feeding depth of the tool feeding amount for engraving cutter relative to idiosome top layer;
S3, the covering chromatograph obtained on each engraving path, and color dot decomposition is carried out to chromatograph, generate and include multiple Dian Se roads The form and aspect of color dot are identical in the point color set of paths in footpath, each point color path;
S4, will engraving path be ranked up according to the order of feeding depth from big to small;
S5, according to sequence call engraving path idiosome is carved, and often complete one carve path engraving after, according to institute State engraving corresponding of path color set of paths to be painted, next engraving path is then performed again.
2. layering engraving painting methods as claimed in claim 1, it is characterised in that step S2 specifically includes following steps:
S21, coordinate set up according to object module, idiosome model is moved in coordinate, and idiosome model top layer covers mesh comprehensively Mark model top layer;
S22, object module surface is decomposed into multiple target points, each target point is mapped into the formation of idiosome model surface reflects Exit point, and mapping set is set up according to the corresponding relation of target point and mapping point;
S23, according to the distance between corresponding target point and mapping point, mapping set is decomposed into multiple mapping groups, it is same In individual mapping group, corresponding target point is equal with the distance between mapping point;
S24, according to mapping group generation engraving path.
3. the system of layering engraving painting methods as claimed in claim 1 or 2, it is characterised in that including model building module, Path-generating module, point colour analysis module, execution analysis module, drive module, engraving performing module and point color performing module;
Carve performing module and include no less than one engraving cutter;
Point color performing module includes no less than one color shower nozzle;
Drive module is connected with engraving performing module and point color performing module respectively, and for driving engraving performing module and point color Performing module works;
Model building module, the idiosome model for importing object module and idiosome to be carved;
Path-generating module is connected with model building module, and it generates multiple engraving paths according to object module and idiosome model, Each point is identical relative to the feeding depth on idiosome surface on each engraving path;
Point colour analysis module is connected with model building module and path-generating module respectively, and it obtains from path-generating module and carved Path, and the covering chromatograph on each engraving path is obtained according to object module, color dot decomposition, generation and carving are carried out to chromatograph The corresponding point color set of paths for including multiple color paths in path is carved, the form and aspect of color dot are identical in each point color path;
Perform analysis module to be connected with path-generating module, point colour analysis module and drive module, it is respectively from coordinates measurement mould Block and point colour analysis module obtain engraving path and point color set of paths;Path will be carved according to feeding depth by performing analysis module Arrange from big to small, and control drive module driving engraving performing module to perform each engraving path successively, and often performed Behind one engraving path, it controls drive module driving point color performing module to perform described corresponding color path set in engraving path Close, next engraving path is then performed again.
4. the system of layering engraving painting methods as claimed in claim 3, it is characterised in that drive module includes the first driving Mechanism and the second drive mechanism, the first drive mechanism are used to drive engraving performing module work, and the second drive mechanism is used to drive Point color performing module work, the second drive mechanism follows the first drive mechanism to work.
5. the system of layering engraving painting methods as claimed in claim 4, it is characterised in that the point that point color performing module is included Color shower nozzle quantity is equal with the form and aspect quantity included in object module.
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Publication number Priority date Publication date Assignee Title
CN109515054A (en) * 2017-09-16 2019-03-26 南京美克斯精密机械有限公司 A kind of metal incision method

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH09311707A (en) * 1996-05-22 1997-12-02 Matsuo:Kk Automatic work system
CN1282202A (en) * 2000-08-29 2001-01-31 禾宇精密科技有限公司 Engraving method of circuit board and its equipment
CN101746198A (en) * 2008-12-17 2010-06-23 比亚迪股份有限公司 Device for acquiring position coordinate parameters of laser engraving patterns, laser engraving method and laser engraving system
WO2011094997A1 (en) * 2010-02-08 2011-08-11 重庆斯沃德光电设备设计制造有限公司 Multi-functional laser-processing nc system
JP5274714B1 (en) * 2012-03-02 2013-08-28 三菱電機株式会社 Machining program generation device, machining program generation method, and machining program generation program
CN103600615A (en) * 2013-12-10 2014-02-26 北京精雕科技有限公司 Method for sculpturing pattern on irregular eggshell surface

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH09311707A (en) * 1996-05-22 1997-12-02 Matsuo:Kk Automatic work system
CN1282202A (en) * 2000-08-29 2001-01-31 禾宇精密科技有限公司 Engraving method of circuit board and its equipment
CN101746198A (en) * 2008-12-17 2010-06-23 比亚迪股份有限公司 Device for acquiring position coordinate parameters of laser engraving patterns, laser engraving method and laser engraving system
WO2011094997A1 (en) * 2010-02-08 2011-08-11 重庆斯沃德光电设备设计制造有限公司 Multi-functional laser-processing nc system
JP5274714B1 (en) * 2012-03-02 2013-08-28 三菱電機株式会社 Machining program generation device, machining program generation method, and machining program generation program
CN103600615A (en) * 2013-12-10 2014-02-26 北京精雕科技有限公司 Method for sculpturing pattern on irregular eggshell surface

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