CN105095554A - Method for manufacturing multi-colored model by utilizing linear material - Google Patents

Method for manufacturing multi-colored model by utilizing linear material Download PDF

Info

Publication number
CN105095554A
CN105095554A CN201410224094.0A CN201410224094A CN105095554A CN 105095554 A CN105095554 A CN 105095554A CN 201410224094 A CN201410224094 A CN 201410224094A CN 105095554 A CN105095554 A CN 105095554A
Authority
CN
China
Prior art keywords
model
shaping
dyeing
multicolour
color
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201410224094.0A
Other languages
Chinese (zh)
Inventor
不公告发明人
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201410224094.0A priority Critical patent/CN105095554A/en
Publication of CN105095554A publication Critical patent/CN105095554A/en
Pending legal-status Critical Current

Links

Landscapes

  • Coloring (AREA)

Abstract

The present invention discloses a method for manufacturing a multi-colored model by utilizing a linear material. The method of the present invention provides a manufacturing method of carrying out dying on a material than is required at a preset position according to color requirements of the preset position of the multi-colored model which needs to be manufactured and carrying out shaping at the preset position. According to the method, integration of a dying process of a molding material and a forming process of a model during the manufacturing process of the multi-colored model is realized, and the integrated manufacturing process is also realized. According to the method, an original manufacturing method of the multi-colored model is simplified, the process is optimized, the manufacturing efficiency is improved, the manufacturing cost is reduced, and the color of the model is enriched.

Description

A kind of method utilizing linear material to manufacture multicolour model
Invention field
The invention belongs to the manufacturing technology field of multicolour model, what be specifically related to is a kind of method utilizing linear material to manufacture multicoloured model.
Background of invention
The existing method utilizing linear material to manufacture multicoloured model has two kinds, one method to be shaped model with linear material in advance, and the later stage dyes, and be namely first shaped " white tire " model having and coat color that haunts, then dye again, produce multicoloured model.Such as with the T-shirt of multicolour pattern, the T-shirt of the white that is first shaped, then to be enameled pattern by printing and dyeing, could finally manufacture one and be with coloured T-shirt.In the making of also chromatic colour doll, being exactly first be shaped " white tire " doll presenting material true qualities or part doll of not coating color, needing the operation again through tinting on surface, could finally manufacture and be with coloured doll or part doll.
Second method utilizes dyed linear material to be shaped model, namely in advance material is first dyed shades of colour, then utilizes these linear materials having caught shades of colour to make the model making broken colour.Knitting needle knitted fabric such as lucuriant in design, utilize the knitting wool material having contaminated color in advance, knitting form goes out sweater fabric, and in knitting needle knitted fabric, multicolour pattern has several color, and forming process just needs varicolored knitting wool material.Further, with the colored phone housing of multiple patterns, according to the design of pattern and color, utilize the linear materials such as the ABS of multiple color in forming process, figuration manufacture out.
In the manufacture process of model, the dyeing of material and molder are two independently technological processs in multicolour mould manufacturing process for this reason.This manufacture process just causing multicolour model is loaded down with trivial details, complex process, the deficiencies such as color does not enrich, inefficiency.
Summary of the invention
The present invention is directed to the existing complex process utilizing linear material to manufacture multicolour model, process is loaded down with trivial details, and inefficiency etc. are not enough and launch.
Method of the present invention is effectively combined the dyeing of the material in the manufacture process of multicoloured model and forming technology, the color in the precalculated position of the multicolour model that will manufacture according to design, moulding material needed for precalculated position is dyeed, and forms in this precalculated position.In manufacture forming process, do not need because the difference of color, and change the linear material of different colours.Namely according to the color in the precalculated position of the multicolour model of required manufacture, the material needed for precalculated position is dyeed, and form in this precalculated position.The perfection achieving the dyeing course of the material in the manufacture process of multicolour model and the forming process of model is merged, achieve the manufacture process of integration, instead of utilize prestained material to carry out molder or produced model carried out the process that dyes again.
This invention simplifies the dyeing of moulding material and the process of shaping, original multicolour model manufacturing utilizes existing color material directly to manufacture the process of shaping, or carry out the process of model dyeing again after utilizing the material that is unstained to manufacture forming model.Dyeing material and shaping are two separate production runes, and dyeing material is the process that material manufactures, and the process of the model manufacturing that model manufacturing is shaped.
The manufacture method of broken colour model of the present invention:
(1) digital model is built
Utilize the computer aided design softwares such as AutoCAD to design and produce the three-dimensional electronic data model of required multicolour model.
(2) alignment processing of model and moulding material
From the reference position of the multicolour model of required manufacture, the forming unit color of model is corresponding with the dyed color of provided linear moulding material, and the moulding material corresponding to every section of color is all string formed a part for shape material.
(3) dyeing of model manufacturing linear material is shaped
According to modelling needs, from the reference position of model, according to the color required for it, the material required for it is optionally dyeed, is then shaped.Also in reference position, can form while the portion of material corresponding to reference position is carried out selectively staining.
Then at the subsequent position of the reference position of designed model, according to the color required for it, the material required for it is optionally dyeed, is then shaped.Through dyeing repeatedly and forming process, until model manufacturing completes.Or form while the portion of material corresponding to subsequent position is carried out selectively staining, until model manufacturing completes
Utilize staining method to carry out three primary colours dyeing to linear moulding material in the methods of the invention, the chromatic information of 24 RGB of employing represent (R be red, G position is green, B be blueness) each dyeing site point, obtains 16,582,375 kinds of colors in theory.And this method not only comprises the colouring method that three primary colours dyeing also comprises other.
Shaping of the present invention can comprise multiple manufacturing process, not only comprises braiding and is shaped, pile up the methods such as shaping.
Linear material of the present invention refers to that the face shaping of material is various types of materials of the shape of elongated line.
Beneficial effect
Adopt the manufacture method of above-mentioned multicolour model.Simplify mould manufacturing process, optimize technique, improve manufacture efficiency, reduce manufacturing cost, enrich the color of model.
The method of model manufacturing of the present invention, can achieve the pigmented section of Pixel-level, improves the color accuracy of model, decreases the technique of dyeing, is applicable to numerous manufactured materials, realizes good benefit.Can substitute the manufacture method of existing multicolour model, be the developing direction of following multicolour model manufacturing industry.
Accompanying drawing explanation
By reading hereafter detailed description of the preferred embodiment, various other advantage and benefit will become cheer and bright for those of ordinary skill in the art.Accompanying drawing only for illustrating the object of preferred implementation, and does not think limitation of the present invention.And in whole accompanying drawing, represent identical parts by identical reference symbol.Wherein in the accompanying drawings, the multiple identical parts of alphabetic flag instruction after reference number, when making a general reference these parts, by its last alphabetic flag of omission.In the accompanying drawings:
Fig. 1 is the dyeing shaping process flow diagram of multicolour model;
Fig. 2 is multicolour knitted fabric fabric modelling schematic diagram;
Fig. 3 is dyeing material and the braiding forming process of the initial red color position 1 of multicolour knitted fabric fabric model;
Fig. 4 is the reference position dyeing of blue position 2 moulding material subsequently and the process of braiding shaping of multicolour knitted fabric fabric model;
Fig. 5 is the reference position dyeing of pink colour position 3 moulding material subsequently and the process of shaping of multicolour knitted fabric fabric model;
Fig. 6 is the reference position dyeing of yellow position 4 moulding material subsequently and the process of braiding shaping of multicolour knitted fabric fabric model;
Fig. 7 is the reference position dyeing of green position 5 moulding material subsequently and the process of braiding shaping of multicolour knitted fabric fabric model;
Fig. 8 is the reference position dyeing of orange position 6 moulding material subsequently and the process of shaping of multicolour knitted fabric fabric model;
Fig. 9 is the reference position dyeing of cyan position 7 moulding material subsequently and the process of braiding shaping of multicolor knitted fabric fabric model;
Figure 10 is the design diagram of seven layers of multicolour stereoscopic model;
Figure 11 is dye forming process in the initial red color position 19 of the superiors' model of multicolour stereoscopic model;
Figure 12 is that the blue position subsequently 20 of the superiors' model of multicolour stereoscopic model dyes forming process;
Figure 13 is that the yellow position subsequently 21 of the superiors' model of multicolour stereoscopic model dyes forming process;
Figure 14 is dye forming process in the position of cyan subsequently 22 of the superiors' model of multicolour stereoscopic model;
Figure 15 is that the green position subsequently 23 of the superiors' model of multicolour stereoscopic model dyes forming process;
Figure 16 is dye forming process in the orange subsequently position 24 of the superiors' model of multicolour stereoscopic model;
Figure 17 is dye forming process in the position of pink colour subsequently 25 of the superiors' model of multicolour stereoscopic model;
Figure 18 is dye forming process in the position of purple subsequently 26 of the superiors' model of multicolour stereoscopic model;
Figure 19 is colourless subsequently position 27 forming process of the superiors' model of multicolour stereoscopic model.
Above schematic diagram comprises: the initial red color position 1 of knit fabric model, the blue position subsequently 2 of the reference position of knit fabric model, the position of pink colour subsequently 3 of knit fabric model, the yellow position subsequently 4 of knit fabric model, the green position subsequently 5 of knit fabric model, the orange subsequently position 6 of knit fabric model, the position of cyan subsequently 7 of knit fabric model, the braiding moulding material of shaping initial position and red staining process 8, dyeing shower nozzle 9, the braiding shaping linear material 10 of knit fabric model, be shaped the braiding moulding material of initial subsequent position and blue dyeing process 11, shaping subsequent position braiding moulding material and pink colour dyeing course 12, the braiding moulding material of shaping subsequent position and yellow dyeing course 13, the braiding moulding material of shaping subsequent position and green dyeing course 14, the braiding moulding material of shaping subsequent position and orange dyeing course 15, the braiding moulding material of shaping subsequent position and cyan dyeing course 16, ABS is linear piles up moulding material 17, dyeing nozzle 18, the initial red color position 19 of the superiors of multicolour stereoscopic model, the blue position subsequently 20 of the superiors of multicolour stereoscopic model, the yellow position subsequently 21 of the superiors of multicolour stereoscopic model, the position of cyan subsequently 22 of the superiors of multicolour stereoscopic model, the green position subsequently 23 of the superiors of multicolour stereoscopic model, the orange subsequently position 24 of the superiors of multicolour stereoscopic model, the position of pink colour subsequently 25 of the superiors of multicolour stereoscopic model, the position of purple subsequently 26 of the superiors of multicolour stereoscopic model, the colourless subsequently position 27 of the superiors' model of multicolour stereoscopic model.
Embodiment
The invention provides many applicable creative concepts, this creative concept can be reflected in a large number of in concrete context.The specific embodiment described in following embodiments of the present invention only as the exemplary illustration of specific implementation of the present invention, and does not form limitation of the scope of the invention.
Below in conjunction with embodiment, content of the present invention is described further, but the multicolour molds, methods of making of invention is not limited to following embodiment.
Embodiment one, for the manufacture method of multicolour knitted fabric model.
1, utilize the computer aided design softwares such as AutoCAD to design and produce the data model of required broken colour knit fabric model, determine the braiding color of knit fabric, knitting position and braiding scope etc. are as shown in Figure 1.
2, in multicolour knit fabric model, design needs predetermined color and the position of dyeing, as shown in Figure 2.
3, according to the predetermined color needing in multicolour knit fabric model to dye and position, from the reference position 1 of model, as shown in Figure 3, the red units region 1 of the start-up portion on model and the initial weaving unit part on the wire weave material 10 provided will be woven needed for it, one_to_one corresponding, according to the red feature that its start-up portion needs, red staining 8 is carried out to provided material, weave the initial red color position 2 of shaping depanning type simultaneously.
Then, at the subsequent position 2 of the reference position of designed multicolour knit fabric model, as shown in Figure 4, the blue cell region 2 of wanting according to its design, by corresponding with the weaving unit on provided wire weave material 10 for the blue cell region 2 weaving the subsequent position on the model of shaping required for it, according to the blue characteristics that its position needs, the corresponding braided material provided carries out blue dyeing 11, weaves the blue position 2 of shaping depanning type simultaneously.
Again, at the reference position subsequent position 3 of designed multicolour knit fabric model, as shown in Figure 5, the pink colour unit area 3 of wanting according to its design, by corresponding with the moulding material provided on wire weave material 10 for the pink colour unit area 3 weaving the subsequent position on the model of shaping required for it, according to the pink colour that its position needs, pink colour dyeing 12 is carried out to the moulding material 10 required for its braiding forming process, and weaves the pink colour position 3 of shaping depanning type simultaneously.
4th, at the subsequent position 4 of designed knit fabric model, the yellow 4 wanted according to its design, corresponding with the moulding material provided on the yellow unit area 4 of the required subsequent position woven on the model that is shaped and wire weave material 10, according to the yellow that its position needs, yellow dyeing 13 is carried out to the moulding material 10 required for its braiding forming process, and weaves the yellow position 4 of shaping depanning type simultaneously.
5th, at the subsequent position 5 of designed knit fabric model, the green 5 wanted according to its design, corresponding with the moulding material provided on the green cell region 5 of the subsequent position on the model of required shaping and wire weave material 10, according to the green that its position needs, green dyeing 14 is carried out to the moulding material 10 required for its braiding forming process, and weaves the green position 5 of shaping depanning type simultaneously.
6th, at the subsequent position 6 of designed knit fabric model, want according to its design orange 6, corresponding with the moulding material provided on the orange unit area 6 of the subsequent position on the model of required shaping and wire weave material 10, according to its position need orange, orange dyeing 15 is carried out to the braiding moulding material 10 required for its braiding forming process, and weaves the orange position 6 of shaping depanning type simultaneously.
7th, at the subsequent position 7 of designed knit fabric model, the cyan 7 wanted according to its design, corresponding with the braiding moulding material provided on the cyan unit area 7 of the subsequent position on the model of required shaping and linear material 10, according to the cyan that its position needs, cyan dyeing 16 is carried out to the braiding moulding material 10 required for its braiding forming process, and weaves the cyan position 7 of shaping depanning type simultaneously.
According to the predetermined color needing in knit fabric model to dye and position, from linear moulding material 10 reference position, select according to pattern, colour match, carry out three primary colours to dye as required, and utilize coloring material to weave shaping simultaneously, complete the dyeing braiding shaping manufacture process of designed knit fabric model.
Embodiment two, for the manufacture method of seven layers of multicolour stereoscopic model.
1, utilize the computer aided design softwares such as AutoCAD to design and produce the data model of seven layers of required multicolour stereoscopic model, shown in Figure 10, this model is divided into seven layers, every one deck is made up of the forming unit of nine kinds of colors again, the composition order of every layer of color is different again, and its color is respectively redness, blueness, yellow, cyan, green, orange, pink colour, purple, colourless (being unstained) form.Every layer of size is the thickness of 9cm × 9cm, edge 1cm.Nine color cell sizes in every layer are the thickness of 3cm × 3cm, edge 1cm.
2, nine precalculated positions and nine kinds of colors of dyeing are needed according to one deck design topmost of multicolour cube model, from linear ABS moulding material reference position layer, corresponding with the linear ABS moulding material region required for these nine precalculated positions and nine kinds of predetermined colors and dyed color.Dye and to dye to ABS material needed for every unit according to three primary colours, windrow of going forward side by side builds figuration manufacture.
First dyeed and forming process in the initial red color position 19 of the superiors of multicolour stereoscopic model.Shaping initial red color unit area 19 to be piled up according to design and ABS linear moulding material 17 corresponding, according to the redness that its three-dimensional layer position needs, the corresponding moulding material provided carries out red staining, piles up the red start element region of the stereoscopic model that is shaped simultaneously.
Secondly, stereoscopic model the superiors the subsequent layer 20 of initial layers, the blue region 20 wanted according to its design, corresponding with the yellow elementary layer region 20 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the yellow that its position needs, the corresponding shaping ABS material provided carries out blue dyeing, piles up the blueness of the stereoscopic model that is shaped with rear region 20 simultaneously.
3rd, in the subsequent layer 21 of the initial layers of the superiors of stereoscopic model, the cyan areas 21 of wanting according to its design, corresponding with the pink colour elementary layer region 21 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the cyan that its position needs, the corresponding shaping ABS material provided carries out cyan dyeing, piles up the pink colour of the stereoscopic model that is shaped with rear region 21 simultaneously.
4th, in the subsequent layer 22 of the initial layers of stereoscopic model, the green area 22 wanted according to its design, corresponding with the turquoise elementary layer region 22 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the turquoise that its position needs, the corresponding shaping ABS material provided carries out pink colour dyeing, piles up the turquoise subsequent layer 22 of the stereoscopic model that is shaped simultaneously.
5th, in the subsequent layer 23 of the initial layers of stereoscopic model, the orange areas 23 wanted according to its design, corresponding with the orange elementary layer region 23 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the green that its position needs, the corresponding shaping ABS material provided carries out orange dyeing, piles up the orange subsequent layer 23 of the stereoscopic model that is shaped simultaneously.
6th, in the subsequent layer 24 of the initial layers of stereoscopic model, the pink colour layer 24 wanted according to its design, corresponding with the pink colour elementary layer region 24 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the purple that its position needs, the corresponding shaping ABS material provided carries out pink colour dyeing, piles up the pink colour subsequent layer 24 of the stereoscopic model that is shaped simultaneously.
7th, in the subsequent layer 25 of the initial layers of stereoscopic model, the purple layer 25 wanted according to its design, corresponding with the violet cell layer region 25 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the purple that its position needs, the corresponding shaping ABS material provided carries out purple dye, piles up the purple subsequent layer 25 of the stereoscopic model that is shaped simultaneously.
8th. at the subsequent position 26 of stereoscopic model, the purple layer 26 wanted according to its design, corresponding with the violet cell layer region 26 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the purple that its position needs, the corresponding shaping ABS material provided carries out purple dye, piles up the purple subsequent layer 26 of the stereoscopic model that is shaped simultaneously.
9th, in the subsequent layer 27 of the initial layers of stereoscopic model, that wants according to its design need not dye 27, corresponding with original elementary layer region 27 of the required subsequent position piled up on the stereoscopic model of shaping and ABS linear moulding material 17, according to the purple that its position needs, the corresponding shaping ABS material provided carries out dyeing, and piles up original color subsequent layer 27 of the stereoscopic model that is shaped simultaneously.
According to precalculated position and the color demand of every layer of needs dyeing in solid forming model, from linear moulding material 17 reference position, the manufacture process that the dyeing of repetition individual layer is shaped seven times, just complete dyeing material and the figuration manufacture process of stereoscopic model demand color region, the dyeing of the linear material provided utilizes three primary colours dyeing course.

Claims (4)

1. utilize linear moulding material to manufacture a method for multicolour model, it is characterized in that comprising the following steps:
(1) reference position of the required model manufactured, according to the color required for it, optionally dyes to the moulding material required for it and is shaped.
(2) subsequent position of the reference position of the required model manufactured, according to the color required for it, optionally dyes to the moulding material required for it and is shaped.
(3) step of (2) is repeated, until model completes.
2. claim 1 the linear material that describes refer to that face shaping is the material of the shape of elongated line.
3. dyeing according to claim 1 and shaping is first dyeed, postforming.
4. dyeing according to claim 1 and shaping is that dyeing and shaping are carried out simultaneously.
CN201410224094.0A 2014-05-24 2014-05-24 Method for manufacturing multi-colored model by utilizing linear material Pending CN105095554A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410224094.0A CN105095554A (en) 2014-05-24 2014-05-24 Method for manufacturing multi-colored model by utilizing linear material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410224094.0A CN105095554A (en) 2014-05-24 2014-05-24 Method for manufacturing multi-colored model by utilizing linear material

Publications (1)

Publication Number Publication Date
CN105095554A true CN105095554A (en) 2015-11-25

Family

ID=54575985

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410224094.0A Pending CN105095554A (en) 2014-05-24 2014-05-24 Method for manufacturing multi-colored model by utilizing linear material

Country Status (1)

Country Link
CN (1) CN105095554A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6165406A (en) * 1999-05-27 2000-12-26 Nanotek Instruments, Inc. 3-D color model making apparatus and process
CN103395206A (en) * 2013-07-24 2013-11-20 北京数码视讯科技股份有限公司 True color printing method and true color printing device
CN203344319U (en) * 2013-04-09 2013-12-18 重庆绿色智能技术研究院 3D (three-dimensional) printing rapid forming device based on magnetorheological material
CN103692655A (en) * 2014-01-10 2014-04-02 上海那恒新材料有限公司 Color 3D (three-dimensional) printer and corresponding 3D printing method thereof
CN203567190U (en) * 2013-08-01 2014-04-30 甘春丽 Colorful 3D printer

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6165406A (en) * 1999-05-27 2000-12-26 Nanotek Instruments, Inc. 3-D color model making apparatus and process
CN203344319U (en) * 2013-04-09 2013-12-18 重庆绿色智能技术研究院 3D (three-dimensional) printing rapid forming device based on magnetorheological material
CN103395206A (en) * 2013-07-24 2013-11-20 北京数码视讯科技股份有限公司 True color printing method and true color printing device
CN203567190U (en) * 2013-08-01 2014-04-30 甘春丽 Colorful 3D printer
CN103692655A (en) * 2014-01-10 2014-04-02 上海那恒新材料有限公司 Color 3D (three-dimensional) printer and corresponding 3D printing method thereof

Similar Documents

Publication Publication Date Title
CN1786308B (en) Digital code manufacturing method for jacquard weave double surface embroidery
CN103938371B (en) The preparation method of clothes solely spent by a kind of imitative plain embroidery picture-weaving in silk
CN102505243B (en) Method for designing and manufacturing double-side colored jacquard fabrics by adopting complementary color principle
CN104532439A (en) All-coloring-structure-based knitting and printing combined jacquard design method
CN107530975A (en) System and method for generating the image in 3 D-printing object
CN108691057B (en) High-pattern-effect jacquard fabric design and weaving method based on shadow weave
CN107921701A (en) Color mapping in 3D printing
CN103320932A (en) Preparation technique of yarn-dyed jacquard fabric with printing texture characteristic
CN108381905A (en) 3D printing color rendering method and device based on the diffusion of Octree error
CN108035048B (en) Weaving method of double-warp three-weft jacquard fabric with double-weft gradient color development
CN101633280A (en) Manufacturing technology of multilayer chromaticity cloth engraving picture
CN107460616B (en) A kind of preparation method of the show-through transparent jacquard weave three-dimensional shell fabric of odd-shaped cross section monofilament
CN107345331B (en) The building of digital jacquard woven fabric multiple bases subregion colour mixture model and its application method
CN105015247A (en) Decorative picture fabric produced through digital printing embroidery compound process and production method of fabric
CN105095554A (en) Method for manufacturing multi-colored model by utilizing linear material
CN107059214A (en) A kind of full color is through colour-rendering jacquard fabric woven design method
CN102289543A (en) Method for separating colors of patterns of brocade based on genetic-fuzzy clustering algorithm
WO2007145429A1 (en) Color slide fastener, manufacturing apparatus and method thereof
CN103241022B (en) Screen printing method and decorative panel manufactured by same
CN205088388U (en) Colored jacquard weave four layers of knitting with silk presss from both sides empty pique
CN103202560A (en) Method of forming jacquard collar
CN1066481A (en) The preparation method of colored ice line batik
CN101224339B (en) Mahjong and fabricating method thereof
CN204097657U (en) A kind of experience in buying the lottery tickets gradual change Sichuan brocade
CN103473988A (en) Color card device for colored spinning and method for arranging cards of color card device

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20151125

WD01 Invention patent application deemed withdrawn after publication