CN105773066A - Machining method of planar chamfering words - Google Patents
Machining method of planar chamfering words Download PDFInfo
- Publication number
- CN105773066A CN105773066A CN201610176779.1A CN201610176779A CN105773066A CN 105773066 A CN105773066 A CN 105773066A CN 201610176779 A CN201610176779 A CN 201610176779A CN 105773066 A CN105773066 A CN 105773066A
- Authority
- CN
- China
- Prior art keywords
- chamfering
- word
- cutter
- main part
- point
- 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.)
- Granted
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P13/00—Making metal objects by operations essentially involving machining but not covered by a single other subclass
- B23P13/02—Making metal objects by operations essentially involving machining but not covered by a single other subclass in which only the machining operations are important
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Milling Processes (AREA)
Abstract
The invention relates to a production method of planar chamfering words. The method produces according to the following steps: (1) a visual pattern effect of a main body part is designed; (2) manufacturing of a tool plate: data processing center files obtained in the step (1) are guided into a numerical control machining center; (3) the tool plate is positioned; (4) a planar chamfering word machining plate is positioned and machined; (5) chamfering angles of the main body part and a base part are machined; (6) cross combination part connecting parts of visual patterns on the main body part are machined; and (7) planar chamfering words machined in the step (6) are taken down from the tool plate for smooth polishing. The achining method of the planar chamfering words improves the production efficiency, and guarantees the smoothness and the beauty of metal word products.
Description
Technical field
The processing method that the present invention relates to a kind of plane chamfering word.
Background technology
Metal word is decorative product conventional in advertisement field.In prior art, the manufacture method of metal word is all the method adopting artificial.Such as the manufacture method of a kind of 3-dimensional metal word disclosed in Chinese invention patent file directory that publication number is CN102081887.What it adopted is manual manufacture metal word.Adopt the slow cost of the metal word not only efficiency produced in this way high, and unsightly.Very big problem is all there is from the dimensional height roughness aspect of metal word.
Summary of the invention
For solving above-mentioned technical problem, the present invention provides the copper-clad plate of a kind of resin combination and making thereof, has good thermostability, peel strength and machining property.
For reaching above-mentioned purpose, technical scheme is as follows:
A kind of processing method of plane chamfering word, described plane chamfering word includes: main part and base portion, main body section in the top of plane chamfering word its by character form structure constitute plane chamfering word vision pattern;
Base portion is positioned at the bottom of plane chamfering word, as the pedestal of whole plane chamfering word;
The part that described main part is connected with base portion by machining apparatus be processed formed chamfering, on described main part the cross coupled position of vision pattern all adopt machining griffe technique binding site is carried out chamfering formed chamfering connecting portion,
It is characterized in that,
Step one: design agents portion vision pattern effects: open three-dimensional graphics software, vision pattern is made in three-dimensional software, and design the size of main part and base portion, and in three-dimensional cross-sectional, launch typesetting, the information designed is converted into numer centre and can read and feed back the data mart modeling central data file of manufacture;
Step 2: working plate makes: import in numerical control machining center by a kind of for step data mart modeling hub file obtained, being fixed on the lathe for machining of numerical control machining center by the metallic plate that a piece is sized larger than vision pattern, the minute surface pattern of vision pattern is processed acquisition working plate according to minute surface principle by machining center on metal sheet surface;
Some positions on metallic plate are carried out punching location by step 3: working plate positions, and is taken off the metallic plate obtained in step 2;
Step 4: position and process plane chamfering word processing plate, metallic plate one piece to be processed and working plate fixed, and entirety placed on the lathe for machining with machining center, milling is out together with base portion by main part for machining center;
Step 5: the chamfering of processing main part and base portion, numerical control machining center is processed to form chamfering along the adjoining edge of main part Yu base portion;
Step 6: the cross coupled position connecting portion of vision pattern on processing main part, the connecting portion at the cross coupled position of vision pattern on main part is milled out sagittate chamfering and makes plane chamfering word by machining center;
Step 7: plane chamfering word step 6 machined takes off from working plate and carries out smooth polishing.Such as above-mentioned step 4: positioning and process plane chamfering word processing plate is realize in accordance with the following methods: the data mart modeling central data file obtaining plane chamfering word is at least included the composition information of the vision pattern of main part by data mart modeling center, the height of base portion, chamfer dimesion and processing connecting portion griffe data;
Step N1, the cutter of numerical control machining center will navigate to the reference position of working plate, in four orientation angles of this reference position specifically working plate one, the cutter of machining center can take the needle along the edge of a knife line on working plate, and the path according to the record of data mart modeling central data file moves to machining center point, this machining center point is as the processing initial point of processing plane chamfering word;
Step N2, according to the processing initial point in N1, the composition information of the vision pattern of main part is carried out geometrical interference inspection, according to the composition information of the vision pattern of main part, the border width of the metallic plate of generation processing is calibrated, and using the information after calibration as the constraints in the whole course of processing, and carry out geometrical interference inspection using following two interference checking condition as the composition information of the vision pattern to main part:
(3) geometrical interference inspection between polygon;
(4) polygonal extension edge and border width whether interference checking;
When above two check result meet logical relation for being be time, illustrate that above-mentioned inspection result is satisfied by processing conditions;When any of which one checks that result is all unsatisfactory for processing conditions when being no, then Cutters In Mc will repeat step N1, N2 in another orientation angle being automatically moved in working plate until determining processing initial point after meeting two kinds of interference checking conditions;
Step N3, according to carrying out the initial point of geometrical interference inspection in step 2 by main part and base portion milling out, machining center is by the path recorded according to machining center data file by main part and base portion milling out;
There are two kinds of processing conditions: S1 in this step, when the side of base portion is plane, pedestal sidepiece will be milled into into smooth flat along standard routes by cutter;S2, when the side of base portion is arc-shaped, machining center will carry out milling according to method once:
According to the initial point in step 2 as Cutter Body Processing with Machining Center initial point, determine milling path, it is L that initial point is designated as A point terminal note B point distance, path AB milling feed amount be designated as Y, in once row cutter process, milling cutter is calculated X by X according to following rule by down to up nose angle degree by the row cutter track line of A point to B pointn=X1+L*t-Y/(X1+ L*t), wherein X1Referring to that once in row cutter, initial row is to angle, t refers to and once goes the time of cutter walking in process, once repeats said process row cutter again after row cutter until completing the milling cutter process of path AB;It is repeated in said process and completes the milling of main part and base portion.
As above-mentioned, step 6 processed the cross coupled position connecting portion of vision pattern on main part and realizes in accordance with the following methods: the arbitrary connecting portion with crossover sites on vision pattern all adopts this method to be processed,
Step W1, numerical control machining center is by cutter positioning to cross coupled position connecting portion, determine the size of cross coupled position to be processed connecting portion according to the information in data mart modeling central data file, it includes being extended to by the junction point at cross coupled position and hangs long l and opening angle r with the connecting line of base portion chamfer site;
Step W2, arranges the initial feed speed S of cutter in numerical control machining center according to the information obtained in W11, machining center data file calculates the acquisition cutter location at the cutter location correspondence cutter-contact point place on each cutting path based on corresponding cutter-contact point place, and according to this feed speed S1The outstanding long l at cutter-contact point place corresponding to this cutter location obtains the final feed speed of this cutter locationCutter at the uniform velocity will be griffed along alignment main part chamfering position ascender line from base portion chamfer site according to 45° angle direction, and chamfering feed speed is at the uniform velocity down to S2. by S1, completes the chamfer process of cross coupled position connecting portion.Preferably, the degree of depth of the mirror image vision pattern that described working plate mills out is 5 to 8mm.
Preferably, described step 7 adopt diamond wheel plane chamfering word is polished.
A kind of plane chamfering word, applies the processing method manufacture of a kind of plane chamfering word, and it includes main part and base portion,
Main body section in the top of plane chamfering word its by character form structure constitute plane chamfering word vision pattern;
Base portion is positioned at the bottom of plane chamfering word, as the pedestal of whole plane chamfering word;
The part that described main part is connected with base portion is processed forming chamfering by machining apparatus, on described main part the cross coupled position of vision pattern all adopt machining griffe technique binding site is carried out chamfering formed chamfering connecting portion, take up an official post at described base portion outer surface and take at 2 and be designated as A point and B point respectively, A point and B point meet at same point O point along the vertical line of base portion surface any direction tangent line, O point is designated as/OA/ to the distance of A point, O point to the distance of B point be designated as/OB/ ,/OA/ with/OB/ numerical value is equal and be fixed value M.
Preferably, described chamfering word is that aluminum material is made.
By technique scheme, the processing method of a kind of plane chamfering word provided by the invention, it has the beneficial effects that:
The processing method providing a kind of machining plane chamfering word improves production efficiency, it is ensured that the flatness of product of metal word, aesthetics etc..In the application present invention, the processing technique in step can process plane chamfering word handsome in appearance.Particularly in baroque vision pattern, the chamfering of crossover sites is always up taking the method manufacture of manual polishing, and the processing method provided in the present invention, it is possible to utilize machining center time processing molding, not only increases efficiency and aesthetics is greatly enhanced.
Accompanying drawing explanation
In order to be illustrated more clearly that the embodiment of the present invention or technical scheme of the prior art, the accompanying drawing used required in embodiment or description of the prior art will be briefly described below.
Fig. 1 is the flow sheet of a kind of plane chamfering word of the present invention;
Fig. 2 is " 4 " font metal word adopting plane chamfering word processing method to produce in the present invention.
Detailed description of the invention
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is clearly and completely described.
Embodiment: the present embodiment for numeral " 4 "
A kind of processing method of plane chamfering word, described plane chamfering word includes: main part 1 and base portion, and 2
Main part 1 be positioned at plane chamfering word top its by character form structure constitute plane chamfering word vision pattern 4;
Base portion 2 is positioned at the bottom of plane chamfering word, as the pedestal of whole plane chamfering word;
The part that described main part 1 is connected with base portion 2 is processed forming chamfering 3 by machining apparatus, on described main part the cross coupled position of vision pattern all adopt machining griffe technique binding site is carried out chamfering formed chamfering connecting portion 4 (as shown in Figure 2)
Step one: design agents portion vision pattern effects: open three-dimensional graphics software, vision pattern is made in three-dimensional software, and designs the size of main part and base portion, and in three-dimensional cross-sectional, launch typesetting.In the design process the whole of 4 fonts are launched, so can calculate typesetting and go out the overall dimensions of 4 fonts and include the area of theme partial visual pattern, the height of base portion.It is converted into numer centre after being designed by above-mentioned data message and can read and feed back the data mart modeling central data file of manufacture.
Step 2: working plate makes: imported in numerical control machining center by a kind of for step data mart modeling hub file obtained.The metallic plate that one piece is sized larger than vision pattern is fixed on the lathe for machining of numerical control machining center.The hardness of this metallic plate is greater than the metallic plate of subsequent production processing, and the minute surface pattern of vision pattern is processed acquisition working plate according to minute surface principle by machining center on metal sheet surface.Working plate is the processing base of the metallic plate as following process, owing in the course of processing, the metallic plate of generation processing will be applied pressure downwards by the cutter of machining center.Therefore working plate to have the working groove of the pattern of and plane chamfering word mirror image, so the base part of plane chamfering word will not be produced extruding force man-hour and cause base portion to deform adding.In the present embodiment, the working groove on working plate extends 8mm in working plate.
Some positions on metallic plate are carried out punching location by step 3: working plate positions, and is taken off the metallic plate obtained in step 2;
Step 4: location plane chamfering word processing plate, fixes metallic plate one piece to be processed and working plate, and entirety is placed on the lathe for machining with machining center, and milling is out together with connecting portion by main part for machining center;Position and process plane chamfering word processing plate to realize in accordance with the following methods: the data mart modeling central data file obtaining plane chamfering word is at least included the composition information of the vision pattern of main part by data mart modeling center, the height of base portion, chamfer dimesion and processing connecting portion griffe data;
Step N1, the cutter of numerical control machining center will navigate to the reference position of working plate, in four orientation angles of this reference position specifically working plate one, the cutter of machining center can take the needle along the edge of a knife line on working plate, and the path according to the record of data mart modeling central data file moves to machining center point, this machining center point is as the processing initial point of processing plane chamfering word;
Step N2, according to the processing initial point in N1, the composition information of the vision pattern of main part is carried out geometrical interference inspection, according to the composition information of the vision pattern of main part, the border width of the metallic plate of generation processing is calibrated, and using the information after calibration as the constraints in the whole course of processing, and carry out geometrical interference inspection using following two interference checking condition as the composition information of the vision pattern to main part:
(5) geometrical interference inspection between polygon;
(6) polygonal extension edge and border width whether interference checking;
When above two check result meet logical relation for being be time, illustrate that above-mentioned inspection result is satisfied by processing conditions;When any of which one checks that result is all unsatisfactory for processing conditions when being no, then Cutters In Mc will repeat step N1, N2 in another orientation angle being automatically moved in working plate until determining processing initial point after meeting two kinds of interference checking conditions;
Step N3, according to carrying out the initial point of geometrical interference inspection in step 2 by main part and base portion milling out, machining center is by the path recorded according to machining center data file by main part and base portion milling out;
There are two kinds of processing conditions: S1 in this step, when the side of base portion is plane, pedestal sidepiece will be milled into into smooth flat along standard routes by cutter;S2, when the side of base portion is arc-shaped, machining center will carry out milling according to method once:
According to the initial point in step 2 as Cutter Body Processing with Machining Center initial point, determine milling path, it is L that initial point is designated as A point terminal note B point distance, path AB milling feed amount be designated as Y, in once row cutter process, milling cutter is calculated X by X according to following rule by down to up nose angle degree by the row cutter track line of A point to B pointn=X1+L*t-Y/(X1+ L*t), wherein X1Referring to that once in row cutter, initial row is to angle, t refers to and once goes the time of cutter walking in process, once repeats said process row cutter again after row cutter until completing the milling cutter process of path AB;It is repeated in said process and completes the milling of main part and base portion.
Step 5: the chamfering of processing main part and base portion, numerical control machining center is processed to form chamfering along the adjoining edge of main part Yu base portion;
Step 6: the cross coupled position connecting portion of vision pattern on processing main part, by griffing technique, the cross coupled position connecting portion of vision pattern on main part is processed, the milling cutter of machining center particularly keeps constant rotating speed, at base portion and main part link position uniform motion from bottom to top, the cross coupled position connecting portion of vision pattern on main part is milled out sagittate chamfering connecting portion and makes plane chamfering word;Step 6 is processed on main part the cross coupled position connecting portion of vision pattern according to
Following methods realizes: the arbitrary connecting portion with crossover sites on vision pattern all adopts this method to be processed,
Step W1, numerical control machining center is by cutter positioning to cross coupled position connecting portion, determine the size of cross coupled position to be processed connecting portion according to the information in data mart modeling central data file, it includes being extended to by the junction point at cross coupled position and hangs long l and opening angle r with the connecting line of base portion chamfer site;
Step W2, arranges the initial feed speed S of cutter in numerical control machining center according to the information obtained in W11, machining center data file calculates the acquisition cutter location at the cutter location correspondence cutter-contact point place on each cutting path based on corresponding cutter-contact point place, and according to this feed speed S1The outstanding long l at cutter-contact point place corresponding to this cutter location obtains the final feed speed of this cutter locationCutter at the uniform velocity will be griffed along alignment main part chamfering position ascender line from base portion chamfer site according to 45° angle direction, and chamfering feed speed is at the uniform velocity down to S2. by S1, completes the chamfer process of cross coupled position connecting portion.
Step 7: plane chamfering word step 6 machined takes off from working plate and carries out smooth polishing.
The described above of disclosed embodiment of this invention, makes professional and technical personnel in the field be capable of or uses the present invention.The multiple amendment of these embodiments be will be apparent from for those skilled in the art, and generic principles defined herein can without departing from the spirit or scope of the present invention, realize in other embodiments.Therefore, the present invention is not intended to be limited to the embodiments shown herein, and is to fit to the widest scope consistent with principles disclosed herein and features of novelty.
Claims (7)
1. a processing method for plane chamfering word, described plane chamfering word includes: main part and base portion, main body section in the top of plane chamfering word its by character form structure constitute plane chamfering word vision pattern;
Base portion is positioned at the bottom of plane chamfering word, as the pedestal of whole plane chamfering word;
The part that described main part is connected with base portion is processed forming chamfering by machining apparatus,
On described main part the cross coupled position of vision pattern all adopt machining griffe technique binding site is carried out chamfering formed chamfering connecting portion,
It is characterized in that,
Step one: design agents portion vision pattern effects: open three-dimensional graphics software, vision pattern is made in three-dimensional software, and design the size of main part and base portion, and in three-dimensional cross-sectional, launch typesetting, the information designed is converted into numer centre and can read and feed back the data mart modeling central data file of manufacture;
Step 2: working plate makes: import in numerical control machining center by a kind of for step data mart modeling hub file obtained, being fixed on the lathe for machining of numerical control machining center by the metallic plate that a piece is sized larger than vision pattern, the minute surface pattern of vision pattern is processed acquisition working plate according to minute surface principle by machining center on metal sheet surface;
Some positions on metallic plate are carried out punching location by step 3: working plate positions, and is taken off the metallic plate obtained in step 2;
Step 4: position and process plane chamfering word processing plate, metallic plate one piece to be processed and working plate fixed, and entirety placed on the lathe for machining with machining center, milling is out together with base portion by main part for machining center;
Step 5: the chamfering of processing main part and base portion, numerical control machining center is processed to form chamfering along the adjoining edge of main part Yu base portion;
Step 6: the cross coupled position connecting portion of vision pattern on processing main part, the connecting portion at the cross coupled position of vision pattern on main part is milled out sagittate chamfering and makes plane chamfering word by machining center;
Step 7: plane chamfering word step 6 machined takes off from working plate and carries out smooth polishing.
2. the processing method of a kind of plane chamfering word according to claim 1, it is characterized in that, step 4: position and process plane chamfering word processing plate and realize in accordance with the following methods: the data mart modeling central data file obtaining plane chamfering word is at least included the composition information of the vision pattern of main part by data mart modeling center, the height of base portion, chamfer dimesion and processing connecting portion griffe data;
Step N1, the cutter of numerical control machining center will navigate to the reference position of working plate, in four orientation angles of this reference position specifically working plate one, the cutter of machining center can take the needle along the edge of a knife line on working plate, and the path according to the record of data mart modeling central data file moves to machining center point, this machining center point is as the processing initial point of processing plane chamfering word;
Step N2, according to the processing initial point in N1, the composition information of the vision pattern of main part is carried out geometrical interference inspection, according to the composition information of the vision pattern of main part, the border width of the metallic plate of generation processing is calibrated, and using the information after calibration as the constraints in the whole course of processing, and carry out geometrical interference inspection using following two interference checking condition as the composition information of the vision pattern to main part:
(1) geometrical interference inspection between polygon;
(2) polygonal extension edge and border width whether interference checking;
When above two check result meet logical relation for being be time, illustrate that above-mentioned inspection result is satisfied by processing conditions;When any of which one checks that result is all unsatisfactory for processing conditions when being no, then Cutters In Mc will repeat step N1, N2 in another orientation angle being automatically moved in working plate until determining processing initial point after meeting two kinds of interference checking conditions;
Step N3, according to carrying out the initial point of geometrical interference inspection in step 2 by main part and base portion milling out, machining center is by the path recorded according to machining center data file by main part and base portion milling out;
There are two kinds of processing conditions: S1 in this step, when the side of base portion is plane, pedestal sidepiece will be milled into into smooth flat along standard routes by cutter;S2, when the side of base portion is arc-shaped, machining center will carry out milling according to method once:
According to the initial point in step 2 as Cutter Body Processing with Machining Center initial point, determine milling path, it is L that initial point is designated as A point terminal note B point distance, path AB milling feed amount be designated as Y, in once row cutter process, milling cutter is calculated X by X according to following rule by down to up nose angle degree by the row cutter track line of A point to B pointn=X1+L*t-Y/(X1+ L*t), wherein X1Referring to that once in row cutter, initial row is to angle, t refers to and once goes the time of cutter walking in process, once repeats said process row cutter again after row cutter until completing the milling cutter process of path AB;It is repeated in said process and completes the milling of main part and base portion.
3. the processing method of a kind of plane chamfering word according to claim 1, it is characterized in that, step 6 is processed the cross coupled position connecting portion of vision pattern on main part realize in accordance with the following methods: the arbitrary connecting portion with crossover sites on vision pattern all adopts this method to be processed
Step W1, numerical control machining center is by cutter positioning to cross coupled position connecting portion, determine the size of cross coupled position to be processed connecting portion according to the information in data mart modeling central data file, it includes being extended to by the junction point at cross coupled position and hangs long l and opening angle r with the connecting line of base portion chamfer site;
Step W2, arranges the initial feed speed S of cutter in numerical control machining center according to the information obtained in W11, machining center data file calculates the acquisition cutter location at the cutter location correspondence cutter-contact point place on each cutting path based on corresponding cutter-contact point place, and according to this feed speed S1The outstanding long l at cutter-contact point place corresponding to this cutter location obtains the final feed speed of this cutter locationCutter at the uniform velocity will be griffed along alignment main part chamfering position ascender line from base portion chamfer site according to 45° angle direction, and chamfering feed speed is at the uniform velocity down to S2. by S1, completes the chamfer process of cross coupled position connecting portion.
4. the processing method of a kind of plane chamfering word according to claim 1, it is characterised in that the degree of depth of the mirror image vision pattern milled out on described working plate is 5 to 8mm.
5. the processing method of a kind of plane chamfering word according to claim 1, it is characterised in that adopt diamond wheel that plane chamfering word is polished in described step 7.
6. a plane chamfering word, the processing method of the application a kind of plane chamfering word described in claim 1, it is characterised in that it includes main part and base portion,
Main body section in the top of plane chamfering word its by character form structure constitute plane chamfering word vision pattern;
Base portion is positioned at the bottom of plane chamfering word, as the pedestal of whole plane chamfering word;
The part that described main part is connected with base portion is processed forming chamfering by machining apparatus, on described main part the cross coupled position of vision pattern all adopt machining griffe technique binding site is carried out chamfering formed chamfering connecting portion, take up an official post at described base portion outer surface and take at 2 and be designated as A point and B point respectively, A point and B point meet at same point O point along the vertical line of base portion surface any direction tangent line, O point is designated as/OA/ to the distance of A point, O point to the distance of B point be designated as/OB/ ,/OA/ with/OB/ numerical value is equal and be fixed value M.
7. a kind of plane chamfering word according to claim 6, it is characterised in that described chamfering word is that aluminum material is made.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201610176779.1A CN105773066B (en) | 2016-03-24 | 2016-03-24 | The processing method of plane chamfering word |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201610176779.1A CN105773066B (en) | 2016-03-24 | 2016-03-24 | The processing method of plane chamfering word |
Publications (2)
Publication Number | Publication Date |
---|---|
CN105773066A true CN105773066A (en) | 2016-07-20 |
CN105773066B CN105773066B (en) | 2018-02-16 |
Family
ID=56391750
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201610176779.1A Active CN105773066B (en) | 2016-03-24 | 2016-03-24 | The processing method of plane chamfering word |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN105773066B (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107065767A (en) * | 2017-03-23 | 2017-08-18 | 北京精雕科技集团有限公司 | A kind of generation method in 3D profiles chamfer machining path |
Citations (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
NL1008566C2 (en) * | 1998-03-12 | 1999-09-14 | Armada Kemperman B V | Illuminated advertising sign, name display or logo |
CN1456417A (en) * | 2002-11-28 | 2003-11-19 | 齐永仁 | Products with tree-dimensional patterns and writings and process thereof |
CN102081887A (en) * | 2010-12-31 | 2011-06-01 | 沈兴华 | Three-dimensional metal character and making method thereof |
CN102310318A (en) * | 2011-08-31 | 2012-01-11 | 吴江市精工铝字制造厂 | Forming method of aluminum characters |
CN102363257A (en) * | 2011-06-27 | 2012-02-29 | 吴江市精工铝字制造厂 | A processing method of a three-dimensional aluminum alloy character |
CN102371472A (en) * | 2011-08-31 | 2012-03-14 | 吴江市精工铝字制造厂 | Method for forming copper words |
CN103707702A (en) * | 2012-10-09 | 2014-04-09 | 青岛三利中德美水设备有限公司 | Mold for rubber characters and method for manufacturing mold |
CN204303267U (en) * | 2014-12-15 | 2015-04-29 | 苏州市三弦钣金有限公司 | Sphere metal word |
CN205211298U (en) * | 2015-12-09 | 2016-05-04 | 苏州市三弦钣金有限公司 | Plane chamfer word |
-
2016
- 2016-03-24 CN CN201610176779.1A patent/CN105773066B/en active Active
Patent Citations (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
NL1008566C2 (en) * | 1998-03-12 | 1999-09-14 | Armada Kemperman B V | Illuminated advertising sign, name display or logo |
CN1456417A (en) * | 2002-11-28 | 2003-11-19 | 齐永仁 | Products with tree-dimensional patterns and writings and process thereof |
CN102081887A (en) * | 2010-12-31 | 2011-06-01 | 沈兴华 | Three-dimensional metal character and making method thereof |
CN102363257A (en) * | 2011-06-27 | 2012-02-29 | 吴江市精工铝字制造厂 | A processing method of a three-dimensional aluminum alloy character |
CN102310318A (en) * | 2011-08-31 | 2012-01-11 | 吴江市精工铝字制造厂 | Forming method of aluminum characters |
CN102371472A (en) * | 2011-08-31 | 2012-03-14 | 吴江市精工铝字制造厂 | Method for forming copper words |
CN103707702A (en) * | 2012-10-09 | 2014-04-09 | 青岛三利中德美水设备有限公司 | Mold for rubber characters and method for manufacturing mold |
CN204303267U (en) * | 2014-12-15 | 2015-04-29 | 苏州市三弦钣金有限公司 | Sphere metal word |
CN205211298U (en) * | 2015-12-09 | 2016-05-04 | 苏州市三弦钣金有限公司 | Plane chamfer word |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107065767A (en) * | 2017-03-23 | 2017-08-18 | 北京精雕科技集团有限公司 | A kind of generation method in 3D profiles chamfer machining path |
CN107065767B (en) * | 2017-03-23 | 2023-04-25 | 北京精雕科技集团有限公司 | Method for generating 3D contour chamfering processing path |
Also Published As
Publication number | Publication date |
---|---|
CN105773066B (en) | 2018-02-16 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN107077126B (en) | The generation method and lathe of cutter path | |
CN101420829A (en) | Metal case and manufacturing method therefor | |
CN106707969B (en) | A kind of three-dimensional class cycloid polishing locus generation method along central axis feeding | |
US20100274375A1 (en) | Method and system for making reliefs and sculptures | |
CN105212452B (en) | A kind of manufacture method of the pendant body being carved with personalized embossed portrait | |
CN108109199A (en) | A kind of planar-formed surface three dimension modeling method of end mill processing | |
CN203599558U (en) | Rotate obtuse angle forming tool and machined component | |
KR102020244B1 (en) | A product formed multidirectional latent images and Manufacturing Method | |
CN105773066A (en) | Machining method of planar chamfering words | |
CN205211298U (en) | Plane chamfer word | |
CN106114037A (en) | A kind of building block engraving process | |
CN108345733A (en) | Screw-on cutter plane machining shapes surface three dimension modeling method | |
CN102320215A (en) | Manufacturing method of crystal handicraft product | |
CN115366568B (en) | Self-adaptive olive pit conformal carving method and system | |
CN104582259A (en) | Golden finger plate with bevel edge chamfer and processing method for golden finger plate | |
Shin et al. | An integrated CAPP/CAM system for stamping die pattern machining | |
Zhang et al. | Line-based sunken relief generation from a 3D mesh | |
CN106128327A (en) | The processing method of wavy metal word | |
CN113303573A (en) | Metal support inlaid with diamond and diamond inlaid ornament | |
CN204303267U (en) | Sphere metal word | |
CN207561475U (en) | A kind of more facet diamond rabbets | |
CN106141577B (en) | The manufacture method of metal pattern word | |
CN113116032A (en) | Metal ornament surface structure forming reflection projection and processing method | |
JP4572387B2 (en) | High-precision 3D map production method | |
Duke | Drawing Light-fields: Hand-drawn Approaches to Abrasion Holography |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
GR01 | Patent grant | ||
GR01 | Patent grant |