CN105455331A - Moissanite round diamond processing method - Google Patents

Moissanite round diamond processing method Download PDF

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Publication number
CN105455331A
CN105455331A CN201410463253.2A CN201410463253A CN105455331A CN 105455331 A CN105455331 A CN 105455331A CN 201410463253 A CN201410463253 A CN 201410463253A CN 105455331 A CN105455331 A CN 105455331A
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moissanite
idiosome
manipulator
facet
angle
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CN201410463253.2A
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CN105455331B (en
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曾建辉
钱正新
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Zhejiang julibao Textile Technology Co., Ltd
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Shanghai Daienna Jewelry Co Ltd
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Abstract

The invention provides a moissanite round diamond processing method. The method comprises the steps of circular blank forming through synthesized moissanite raw blank crystals in an enclosing mode, horizontal large table facet grinding, kite facet cutting, star facet cutting, upper-waist small facet cutting, crown portion polishing, lower-waist small facet cutting, sword facet cutting, pavilion portion polishing, sulfuric acid soaking, alcohol cleaning and the like. According to the moissanite round diamond processing method, the chromatic dispersion and refractive index differences existing between synthesized moissanite and a diamond are overcome, so that a prepared moissanite round diamond can also achieve the eight heart-eight-arrow optical effect.

Description

Moissanite round bur processing method
Technical field
The present invention relates to a kind of diamond substitute, relate in particular to a kind of moissanite round bur and processing method thereof.
Background technology
Diamond is rare because of it, sparkling and crystal-clear characteristic and signify eternal implied meaning, is described as the king in jewel, the superfine product raw material of ornaments always.But its fancy price makes masses general sieve hang back to it.Synthetic moissanite is as the substitute of diamond, and its cost price is well below rough diamond, and the closely diamond such as hardness, color, the ordinary people that medium and low middling is taken in, also easily can have, becomes Jewelry Accessories circle new lover in recent years.But because synthetic moissanite and diamond exist objective difference on index of refraction and dispersion, the moissanite of same specification is compared with diamond, can only accomplish " likeness in form ", does not accomplish " alike in spirit ".For 57 of classics round burs, the moissanite round bur of same size, compared with rough diamond round bur, makes with the naked eye or all cannot observe under cut mirror the optical effect of 8 heart 8 arrows, had a strong impact on the purchase experiences of user.
Summary of the invention
The object of this invention is to provide a kind of moissanite round bur as diamond complementary goods or substitute and processing method thereof, be intended to make up the defect existing for above-mentioned prior art.
The invention provides a kind of processing method of moissanite round bur, comprise the steps:
Step one: synthetic moissanite proembryo crystal type machine is added water by smart steel sand wheel encloses conglobate moissanite idiosome enclosing;
Step 2: circular for step one gained moissanite idiosome is bonded on iron staff with AB glue, this iron staff is gripped with manipulator, adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 90 °, and the large table top of this moissanite idiosome is worn into level by smart steel sand wheel.
Step 3: adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 55.3-55.5 °, the scale of manipulator is rotated to 45 ° of positions, smart steel sand wheel cuts out first kite face, with the cutting angle of 45 ° of successive adjustment facets, sequentially cut out second to the 8th kite face;
Step 4: adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 70.5-70.8 °, the initial scale to 22.5 ° of rotating machine arm, cut out first star facet, successively with the cutting angle of 45 ° of rotating machine arms, sequentially cut out second to the 8th star facet;
Step 5: adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 44.8-45.2 °, the initial scale to 11.25 ° of rotating machine arm, cut out first upper little of waist, successively with the cutting angle of 22.5 ° of rotating machine arms, sequentially cut out second to the 16 upper little of waist;
Step 6: the surface with sand paper, the W5 diamond micro mist of 0.01-0.03 carat being evenly coated in cast iron polishing disk, adjustment position of manipulator is by each facet of moissanite idiosome its bizet of rough polishing successively on this cast iron polishing disk;
Step 7: the surface with sand paper, the W1.5 diamond micro mist of 0.01-0.03 carat being evenly coated in zinc-tin mixing polishing disk, adjustment position of manipulator is by each facet of moissanite idiosome its bizet of finishing polish successively on this zinc-tin mixing polishing disk;
Step 8: adjustment position of manipulator, moissanite idiosome and smart steel sand are taken turns relative angle be adjusted to 47.7-48 °, the initial scale to 11.25 ° of rotating machine arm, cut out little of first lower waist, successively with the cutting angle of 22.5 ° of rotating machine arms, sequentially cut out second to the 16 little of lower waist;
Step 9: adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 49.2-49.5 °, then the scale of manipulator is rotated to 45 ° of positions, smart steel sand wheel cuts out first sword facet, successively with the cutting angle of 45 ° of rotating machine arms, sequentially cut out second to the 8th sword facet;
Step 10: the surface with sand paper, the W5 diamond micro mist of 0.01-0.03 carat being evenly coated in cast iron polishing disk, adjustment position of manipulator is by each facet in moissanite idiosome its booth portion of rough polishing successively on this cast iron polishing disk;
Step 11: the surface with sand paper, the W1.5 diamond micro mist of 0.01-0.03 carat being evenly coated in zinc-tin mixing polishing disk, adjustment position of manipulator, by each facet in moissanite idiosome its booth portion of finishing polish successively on this zinc-tin mixing polishing disk, obtains moissanite round bur finished product;
Step 12: plastic bottle moissanite round bur finished product being put into splendid attire sulfuric acid soaks 30 minutes, takes out moissanite round bur finished product and cools 20 minutes, rinse with clear water;
Step 13: dried up with hair dryer by cleaned moissanite round bur finished product, sprays alcohol thereon and with towel by moissanite round bur finished surface wiped clean, obtains moissanite round bur;
This moissanite round bur comprises bizet, waist, booth portion; Described waist is between described bizet and booth portion, and described bizet comprises 1 large table top, 8 impartial kite faces, 8 impartial star facets, 16 impartial little of upper waists; Described booth portion comprises 16 impartial little of lower waists and 8 impartial sword facets, and the wide ratio of platform is 56-57%, and bizet height is 14.6-14.8%, waist is 3-5%, booth portion height is 44.9-45.1%, and kite face angle is 55.3-55.5 °, and star facet angle is 70.5-70.8 °; Upper waist facet angle is 44.8-45.2 °; Lower waist facet angle is 47.7-48 °; Sword facet angle is 49.2-49.5 °.
Preferably: in step 3, adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 55.3 °;
In step 4, adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 70.5 °;
In step 5, adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 44.8 °;
In step 8, adjustment position of manipulator, moissanite idiosome and smart steel sand are taken turns relative angle be adjusted to 47.8 °;
In step 9, adjustment position of manipulator, the relative angle that moissanite idiosome and smart steel sand are taken turns is adjusted to 49.3 °;
The wide ratio of gained moissanite round bur platform is 57%, and bizet height is 14.6%, and waist height is 4%, booth portion height is 44.9%, and kite face angle is 55.3 °, and star facet angle is 70.5 °, upper waist facet angle is 44.8 °, and lower waist facet angle is 47.8 °, and sword facet angle is 49.3 °.
Preferably: in step 12, sulfuric acid is the sulfuric acid of 75% concentration, described step 13 alcohol is the alcohol of 70% concentration.
Present invention also offers a kind of moissanite round bur.
A kind of moissanite round bur, comprises bizet, waist, booth portion; Waist is between described bizet and booth portion, and described bizet comprises 1 large table top, 8 impartial kite faces, 8 impartial star facets, 16 impartial little of upper waists; Described booth portion comprises 16 impartial little of lower waists and 8 impartial sword facets.With the former bad crystal of synthetic moissanite for raw material, processed by the processing method of above-mentioned moissanite round bur.
Compared with prior art, technique effect of the present invention is: by adjustment work flow, overcome the dispersion of the existence between synthetic moissanite and diamond and the difference of index of refraction, make 57 round burs made with synthetic moissanite also can realize the optical effect of 8 heart 8 arrows.
figure of description
Fig. 1 is the former bad crystal schematic diagram of synthetic moissanite;
Fig. 2 is for obtain moissanite schematic diagram through procedure of processing one machining;
Fig. 3 is for obtain moissanite schematic diagram through procedure of processing three machining;
Fig. 4 is for obtain moissanite schematic diagram through procedure of processing four machining;
Fig. 5 is through procedure of processing slender acanthopanax work gained moissanite schematic diagram;
Fig. 6 is for obtain moissanite schematic diagram through procedure of processing eight machining;
Fig. 7 is for obtain moissanite schematic diagram through procedure of processing nine machining;
Fig. 8 is with the operating diagram of iron staff bonded carbon silica processing on smart steel sand wheel;
Fig. 9 is with iron staff bonded carbon silica polishing processing work schematic diagram on cast iron polishing disk;
Figure 10 is with iron staff bonded carbon silica polishing processing work schematic diagram on zinc-tin mixing polishing disk;
Figure 11 is manipulator dial schematic diagram;
Figure 12 is moissanite processing work flow chart.
Each Reference numeral title is as follows:
1, large table top; 2, kite face; 3, star facet; 4, little of upper waist; 5, little of lower waist; 6, sword facet; 7, smart steel sand wheel; 8, iron staff; 9, cast iron polishing disk; 10, zinc-tin mixing polishing disk.
Detailed description of the invention
Below in conjunction with each drawings and Examples, the present invention will be further described.
As illustrated in figs. 8-11:
With AB glue, moissanite idiosome is bonded on iron staff, iron staff is gripped with manipulator, by adjustment position of manipulator, adjust moissanite idiosome and smart steel sand in the vertical direction to take turns/the relative position of polishing disk, by along dial rotating machine arm, adjust the cutting angle of the idiosome of moissanite in the horizontal direction.
As shown in figs. 1-12:
Adopt following work flow to process synthetic moissanite proembryo crystal, concrete steps are as follows:
Step one: synthetic moissanite proembryo crystal type machine is added water by smart steel sand wheel 7 encloses conglobate moissanite idiosome enclosing;
Step 2: circular for step one gained moissanite idiosome is bonded on iron staff 8 with AB glue, this iron staff is gripped with manipulator, adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns 7 is adjusted to 90 °, and the large table top 1 of this moissanite idiosome is worn into level by smart steel sand wheel 7.
Step 3: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns 7 is adjusted to 55.3-55.5 °, the scale of manipulator is rotated to 45 ° of positions, smart steel sand wheel 7 cuts out first kite face 2, with the cutting angle of 45 ° of successive adjustment facets, sequentially cut out second to the 8th kite face 2;
Step 4: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns 7 is adjusted to 70.5-70.8 °, the initial scale to 22.5 ° of rotating machine arm, cut out first star facet 3, successively with the cutting angle of 45 ° of rotating machine arms, sequentially cut out second to the 8th star facet 3;
Step 5: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns 7 is adjusted to 44.8-45.2 °, the initial scale to 11.25 ° of rotating machine arm, cut out first upper little face 4 of waist, successively with the cutting angle of 22.5 ° of rotating machine arms, sequentially cut out second to the 16 upper little face 4 of waist;
Step 6: the surface with sand paper, the W5 diamond micro mist of 0.01-0.03 carat being evenly coated in cast iron polishing disk 9, adjustment position of manipulator is by each facet of moissanite idiosome its bizet of rough polishing successively on this cast iron polishing disk 9;
Step 7: the surface with sand paper, the W1.5 diamond micro mist of 0.01-0.03 carat being evenly coated in zinc-tin mixing polishing disk 10, adjustment position of manipulator is by each facet of moissanite idiosome its bizet of finishing polish successively on this zinc-tin mixing polishing disk 10;
Step 8: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns 7 is adjusted to 47.7-48 °, the initial scale to 11.25 ° of rotating machine arm, cut out first little face 5 of lower waist, successively with the cutting angle of 22.5 ° of rotating machine arms, sequentially cut out second to the 16 little face 5 of lower waist;
Step 9: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns 7 is adjusted to 49.2-49.5 °, then the scale of manipulator is rotated to 45 ° of positions, smart steel sand wheel cuts out first sword facet 6, successively with the cutting angle of 45 ° of rotating machine arms, sequentially cut out second to the 8th sword facet 6;
Step 10: the surface with sand paper, the W5 diamond micro mist of 0.01-0.03 carat being evenly coated in cast iron polishing disk 9, adjustment position of manipulator is by each facet in moissanite idiosome its booth portion of rough polishing successively on this cast iron polishing disk 9;
Step 11: the surface with sand paper, the W1.5 diamond micro mist of 0.01-0.03 carat being evenly coated in zinc-tin mixing polishing disk 10, adjustment position of manipulator, by each facet in moissanite idiosome its booth portion of finishing polish successively on this zinc-tin mixing polishing disk 10, obtains moissanite round bur finished product;
Step 12: plastic bottle moissanite round bur finished product being put into splendid attire sulfuric acid soaks 30 minutes, takes out moissanite round bur finished product and cools 20 minutes, rinse with clear water;
Step 13: dried up with hair dryer by cleaned moissanite round bur finished product, sprays alcohol thereon and with towel by moissanite round bur finished surface wiped clean, obtains moissanite round bur; Controlling the relative angle that in step 3 described in above-mentioned work flow, four, five, eight, nine, moissanite idiosome and smart steel sand are taken turns is fixed numbers, processes three times, obtains three pieces of moissanite round bur finished products as follows:
Embodiment 1:
One piece of moissanite round bur, comprises bizet, waist, booth portion; Described waist is between described bizet and booth portion, and described bizet comprises the impartial little face 4 of upper waist of the impartial star facet 3,16 in 2,8 impartial, kite face of 1 large table top 1,8; Described booth portion comprises 16 impartial little faces of lower waist 5 and 8 impartial sword facets 6, and its wide ratio is 57%; Its bizet height is 14.6%; Its waist height is 4%; Its booth portion height is 44.9%; Its kite face 2 angle is 55.3 °; Its star facet 3 angle is 70.5 °; On it, waist little face 4 angle is 44.8 °; Its lower waist little face 5 angle is 47.7 °; Its sword facet 6 angle is 49.2 °.
Embodiment 2:
One piece of moissanite round bur, comprises bizet, waist, booth portion; Described waist is between described bizet and booth portion, and described bizet comprises the impartial little face 4 of upper waist of the impartial star facet 3,16 in 2,8 impartial, kite face of 1 large table top 1,8; Described booth portion comprises 16 impartial little faces of lower waist 5 and 8 impartial sword facets 6, and its wide ratio is 56%; Its bizet height is 14.7%; Its waist height is 3%; Its booth portion height is 45%; Its kite face 2 angle is 55.4 °; Its star facet 3 angle is 70.6 °; On it, waist little face 4 angle is 45 °; Its lower waist little face 5 angle is 47.9 °; Its sword facet 6 angle is 49.4 °.
Embodiment 3:
One piece of moissanite round bur, comprises bizet, waist, booth portion; Described waist is between described bizet and booth portion, and described bizet comprises the impartial little face 4 of upper waist of the impartial star facet 3,16 in 2,8 impartial, kite face of 1 large table top 1,8; Described booth portion comprises 16 impartial little faces of lower waist 5 and 8 impartial sword facets 6, and its wide ratio is 56.5%; Its bizet height is 14.8%; Its waist height is 5%; Its booth portion height is 45.1%; Its kite face 2 angle is 55.5 °; Its star facet 3 angle is 70.8 °; On it, waist little face 4 angle is 45.2 °; Its lower waist little face 5 angle is 48 °; Its sword facet angle is 49.5 °.
Above-mentioned three pieces of moissanite round burs can by the optical effect of naked-eye observation to 8 heart 8 arrows.
The above, be only a few embodiments of the present invention, the present invention is not limited to the restriction of above-described embodiment, all above-described embodiment is done according to technical spirit of the present invention similar amendment, change and replacement, still belong in the scope of technical solution of the present invention.Protection scope of the present invention is only defined by claims.

Claims (3)

1. a moissanite round bur processing method, is characterized in that: comprise the steps:
Step one: synthetic moissanite proembryo crystal type machine is added water by smart steel sand wheel (7) encloses conglobate moissanite idiosome enclosing;
Step 2: circular for step one gained moissanite idiosome is bonded on iron staff (8) with AB glue, this iron staff is gripped with manipulator, adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 90 °, and the large table top (1) of this moissanite idiosome is worn into level by smart steel sand wheel (7);
Step 3: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 55.3-55.5 °, the scale of manipulator is rotated to 45 ° of positions, smart steel sand wheel (7) cuts out first kite face (2), with the cutting angle of 45 ° of successive adjustment facets, sequentially cut out second to the 8th kite face (2);
Step 4: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 70.5-70.8 °, the initial scale to 22.5 ° of rotating machine arm, cut out first star facet (3), successively with the cutting angle of 45 ° of rotating machine arms, sequentially cut out second to the 8th star facet (3);
Step 5: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 44.8-45.2 °, the initial scale to 11.25 ° of rotating machine arm, cut out first upper little of waist (4), successively with the cutting angle of 22.5 ° of rotating machine arms, sequentially cut out second to the 16 upper little of waist (4);
Step 6: the surface with sand paper, the W5 diamond micro mist of 0.01-0.03 carat being evenly coated in cast iron polishing disk (9), adjustment position of manipulator is by each facet of moissanite idiosome its bizet of rough polishing successively on this cast iron polishing disk (9);
Step 7: the surface with sand paper, the W1.5 diamond micro mist of 0.01-0.03 carat being evenly coated in zinc-tin mixing polishing disk (10), adjustment position of manipulator is by each facet of moissanite idiosome its bizet of finishing polish successively on this zinc-tin mixing polishing disk (10);
Step 8: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 47.7-48 °, the initial scale to 11.25 ° of rotating machine arm, cut out little of first lower waist (5), successively with the cutting angle of 22.5 ° of rotating machine arms, sequentially cut out second to the 16 little of lower waist (5);
Step 9: adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 49.2-49.5 °, then the scale of manipulator is rotated to 45 ° of positions, smart steel sand wheel cuts out first sword facet (6), successively with the cutting angle of 45 ° of rotating machine arms, sequentially cut out second to the 8th sword facet (6);
Step 10: the surface with sand paper, the W5 diamond micro mist of 0.01-0.03 carat being evenly coated in cast iron polishing disk (9), adjustment position of manipulator is by each facet in moissanite idiosome its booth portion of rough polishing successively on this cast iron polishing disk (9);
Step 11: the surface with sand paper, the W1.5 diamond micro mist of 0.01-0.03 carat being evenly coated in zinc-tin mixing polishing disk (10), adjustment position of manipulator, by each facet in moissanite idiosome its booth portion of finishing polish successively on this zinc-tin mixing polishing disk (10), obtains moissanite round bur finished product;
Step 12: plastic bottle moissanite round bur finished product being put into splendid attire sulfuric acid soaks 30 minutes, takes out moissanite round bur finished product and cools 20 minutes, rinse with clear water;
Step 13: dried up with hair dryer by cleaned moissanite round bur finished product, sprays alcohol thereon and with towel by moissanite round bur finished surface wiped clean, obtains moissanite round bur;
This moissanite round bur comprises bizet, waist, booth portion; Described waist is between described bizet and booth portion, and described bizet comprises 1 large table top (1), 8 impartial kite faces (2), 8 impartial star facets (3), 16 impartial little of upper waists (4); Described booth portion comprises 16 impartial lower waists little (5) and 8 impartial sword facets (6), the wide ratio of platform is 56-57%, bizet height is 14.6-14.8%, waist is 3-5%, booth portion height is 44.9-45.1%, kite face (2) angle is 55.3-55.5 °, and star facet (3) angle is 70.5-70.8 °; Upper waist little (4) angle is 44.8-45.2 °; Lower waist little (5) angle is 47.7-48 °; Sword facet (6) angle is 49.2-49.5 °.
2. a moissanite round bur processing method as claimed in claim 1, is characterized in that:
In step 3, adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 55.3 °;
In step 4, adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 70.5 °;
In step 5, adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 44.8 °;
In step 8, adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 47.8 °;
In step 9, adjustment position of manipulator, the relative angle making moissanite idiosome and smart steel sand take turns (7) is adjusted to 49.3 °;
The wide ratio of gained moissanite round bur platform is 57%, bizet height is 14.6%, waist height is 4%, booth portion height is 44.9%, kite face (2) angle is 55.3 °, and star facet (3) angle is 70.5 °, and upper waist little (4) angle is 44.8 °, lower waist little (5) angle is 47.8 °, and sword facet (6) angle is 49.3 °.
3. a moissanite round bur processing method as claimed in claim 1 or 2, it is characterized in that: in step 12, sulfuric acid is the sulfuric acid of 75% concentration, described step 13 alcohol is the alcohol of 70% concentration.
CN201410463253.2A 2014-09-12 2014-09-12 Moissanite round bur processing method Active CN105455331B (en)

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Publication number Priority date Publication date Assignee Title
CN108127804A (en) * 2017-12-21 2018-06-08 暨南大学 A kind of rolling clamp for diamond laser cutting
CN108523329A (en) * 2018-02-07 2018-09-14 上海黛恩妠珠宝有限公司 A kind of moissanite round bur
CN108838800A (en) * 2018-06-28 2018-11-20 广州智柏钻石有限公司 Diamond support noose, angle of grinding surface acquisition methods and method for processing diamond
CN109393672A (en) * 2018-10-26 2019-03-01 浙江明牌珠宝科技有限公司 A kind of diamond processing process

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US20090260396A1 (en) * 2008-04-16 2009-10-22 Eitan Broukman Methods for processing ornamental diamonds and corresponding ornamental diamonds
CN102198701A (en) * 2011-05-11 2011-09-28 山东大学 Method for processing facet silicon carbide jewel finished product
CN102525050A (en) * 2012-01-16 2012-07-04 山东大学 Moissanite gem with bright carving surface and cutting and grinding processing methods thereof

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US20020007648A1 (en) * 2000-07-20 2002-01-24 Wolfgang Bamminger Gem
JP2006218163A (en) * 2005-02-14 2006-08-24 Crane:Kk Jewel
CN101462311A (en) * 2007-12-19 2009-06-24 广州柏志钻石有限公司 Method for processing diamond
US20090260396A1 (en) * 2008-04-16 2009-10-22 Eitan Broukman Methods for processing ornamental diamonds and corresponding ornamental diamonds
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108127804A (en) * 2017-12-21 2018-06-08 暨南大学 A kind of rolling clamp for diamond laser cutting
CN108523329A (en) * 2018-02-07 2018-09-14 上海黛恩妠珠宝有限公司 A kind of moissanite round bur
CN108838800A (en) * 2018-06-28 2018-11-20 广州智柏钻石有限公司 Diamond support noose, angle of grinding surface acquisition methods and method for processing diamond
CN108838800B (en) * 2018-06-28 2023-09-29 广州智柏钻石有限公司 Diamond bearing cable sleeve, grinding surface angle acquisition method and diamond processing method
CN109393672A (en) * 2018-10-26 2019-03-01 浙江明牌珠宝科技有限公司 A kind of diamond processing process

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