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公开(公告)号:US20230036748A1
公开(公告)日:2023-02-02
申请号:US17933207
申请日:2022-09-19
申请人: Kohsuke Miyazaki , Hiroyuki Naito , Takumi Yokoyama , Junjiroh Sogame , Shinichiroh Satoh , Naoki Oya , Katsuhiko Fujii
发明人: Kohsuke Miyazaki , Hiroyuki Naito , Takumi Yokoyama , Junjiroh Sogame , Shinichiroh Satoh , Naoki Oya , Katsuhiko Fujii
IPC分类号: B29C64/165 , B33Y10/00 , B33Y70/10 , B22F10/14 , B28B1/00 , B33Y80/00 , C09D133/14 , C09D131/02 , C09D175/04 , C09D139/06 , C09D161/04
摘要: Provided is a three-dimensional object producing method that includes applying an object forming liquid to powder including a base material and an organic material to form a solidified product, and removing the powder deposited on the solidified product from the solidified product using a powder removal liquid including an organic solvent. The following formulae are satisfied RED of non-forming part 0.55. The forming part is a portion of the powder to which the object forming liquid is applied and RED of the forming part is a distance between HSP of the forming part and HSP of the organic solvent. The non-forming part is a portion of the powder to which the object forming liquid is not applied and RED of the non-forming part is a distance between HSP of the non-forming part and HSP of the organic solvent.
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公开(公告)号:US20210001543A1
公开(公告)日:2021-01-07
申请号:US16918128
申请日:2020-07-01
申请人: Junjiroh SOGAME , Kohsuke Miyazaki , Takumi Yokoyama , Shinichiroh Satoh , Takafumi Sasaki , Osamu Mizuta , Hiroyuki Miyata , Naoki Oya
发明人: Junjiroh SOGAME , Kohsuke Miyazaki , Takumi Yokoyama , Shinichiroh Satoh , Takafumi Sasaki , Osamu Mizuta , Hiroyuki Miyata , Naoki Oya
IPC分类号: B29C64/153 , B33Y70/00 , B33Y80/00 , B33Y10/00
摘要: Provided is a powder material for producing a three-dimensional object including: a base material; a resin; and resin particles, wherein an amount W (mass %) of carbon remaining in the powder material after heating in a vacuum of 10−2 Pa or lower at 450 degrees C. for 2 hours satisfies the following formula: W (mass %)
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公开(公告)号:US20220112329A1
公开(公告)日:2022-04-14
申请号:US17645784
申请日:2021-12-23
IPC分类号: C08G18/73 , C08G18/62 , C08G18/54 , B33Y10/00 , B33Y70/00 , B29C64/165 , B29C64/35 , B33Y40/20 , B28B1/00 , B22F10/10 , B22F10/68
摘要: A three-dimensional object producing method including: forming a powder material layer with a powder material for three-dimensional object formation, where the powder material includes a base material and a resin including a reactive functional group; and applying a curing liquid to the powder material layer to form a cured product, where the curing liquid contains a curing agent capable of forming a covalent bond with the reactive functional group, wherein the curing agent includes an aliphatic compound having two or more isocyanate groups at a molecular terminal thereof.
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公开(公告)号:US20240316627A1
公开(公告)日:2024-09-26
申请号:US18603497
申请日:2024-03-13
IPC分类号: B22F1/05 , B22F1/052 , B22F1/065 , B22F10/14 , B22F10/64 , B33Y10/00 , B33Y40/20 , B33Y70/00
CPC分类号: B22F1/05 , B22F1/052 , B22F1/065 , B22F10/14 , B22F10/64 , B33Y10/00 , B33Y40/20 , B33Y70/00 , B22F2301/052 , B22F2304/10 , B22F2998/10
摘要: A powder for forming 3D objects includes a group of particles having an identical composition. The group of the particles includes 50% by mass or greater of aluminum. An oxygen content of the group of the particles is 950 ppm or less. A volume-based particle size frequency distribution of the powder for forming 3D objects has a peak top in a particle diameter range of 40 μm or greater and 70 μm or less, and a peak top in a particle diameter range of 10 μm or greater and 30 μm or less. A ratio (a frequency (%) of the peak top in the particle diameter range of 40 μm or greater and 70 μm or less)/(a frequency (%) of the peak top in the particle diameter range of 10 μm or greater and 30 μm or less) is 1.5 or greater.
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公开(公告)号:US20230264385A1
公开(公告)日:2023-08-24
申请号:US18165417
申请日:2023-02-07
摘要: A three-dimensional fabricating powdered material is provided that comprises: a base material comprising an inorganic material and having a mean volume particle diameter of 25 μm or more to 70 μm or less; and an inorganic oxide having a mean volume particle diameter of 120 nm or less, the inorganic oxide attached to the base material.
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公开(公告)号:US10444651B2
公开(公告)日:2019-10-15
申请号:US15911443
申请日:2018-03-05
申请人: Mariko Takii , Koichi Sakata , Tohru Suganuma , Masahiro Seki , Masashi Nagayama , Toyoaki Tano , Kohsuke Miyazaki
发明人: Mariko Takii , Koichi Sakata , Tohru Suganuma , Masahiro Seki , Masashi Nagayama , Toyoaki Tano , Kohsuke Miyazaki
摘要: A carrier is provided including a core particle and a resin layer coating the surface of the core particle. The resin layer includes fine metal particles, and a detected metal element amount A obtained by X-ray photoelectron spectrometry of the surface of the carrier is in a range of 4.0 atomic %≤A≤20.0 atomic % and an average major-axis length B of the fine metal particle exposing from the resin layer is in a range of 100 nm≤B≤800 nm.
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7.
公开(公告)号:US20180113393A1
公开(公告)日:2018-04-26
申请号:US15730795
申请日:2017-10-12
申请人: Masahiro SEKI , Hiroyuki Kishida , Haruki Murata , Shinya Nakagawa , Kei Niwayama , Saori Yamada , Kohsuke Miyazaki
发明人: Masahiro SEKI , Hiroyuki Kishida , Haruki Murata , Shinya Nakagawa , Kei Niwayama , Saori Yamada , Kohsuke Miyazaki
CPC分类号: G03G9/1131 , G03G9/1075 , G03G9/1132 , G03G9/1139 , G03G15/0806
摘要: A carrier for a developer of an electrostatic latent image, the carrier including: core particles having magnetism; and a coating layer coating a surface of each of the core particles, wherein the coating layer includes two or more kinds of inorganic particles, at least one kind of inorganic particles among the two or more kinds of inorganic particles is inorganic particles A having conductivity and a peak particle diameter of from 300 nm through 1,000 nm, and surface roughness of the carrier calculated by Formula 1 below is from 1.10 m2/g through 1.90 m2/g, C−F Formula 1 where C is a BET specific surface area (m2/g) of the carrier and F is a BET specific surface area (m2/g) of the core particles.
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8.
公开(公告)号:US10254674B2
公开(公告)日:2019-04-09
申请号:US15730795
申请日:2017-10-12
申请人: Masahiro Seki , Hiroyuki Kishida , Haruki Murata , Shinya Nakagawa , Kei Niwayama , Saori Yamada , Kohsuke Miyazaki
发明人: Masahiro Seki , Hiroyuki Kishida , Haruki Murata , Shinya Nakagawa , Kei Niwayama , Saori Yamada , Kohsuke Miyazaki
摘要: A carrier for a developer of an electrostatic latent image, the carrier including: core particles having magnetism; and a coating layer coating a surface of each of the core particles, wherein the coating layer includes two or more kinds of inorganic particles, at least one kind of inorganic particles among the two or more kinds of inorganic particles is inorganic particles A having conductivity and a peak particle diameter of from 300 nm through 1,000 nm, and surface roughness of the carrier calculated by Formula 1 below is from 1.10 m2/g through 1.90 m2/g, C−F Formula 1 where C is a BET specific surface area (m2/g) of the carrier and F is a BET specific surface area (m2/g) of the core particles.
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公开(公告)号:US10025214B2
公开(公告)日:2018-07-17
申请号:US15392482
申请日:2016-12-28
申请人: Masashi Nagayama , Mariko Takii , Yoshihiro Murasawa , Haruki Murata , Kei Niwayama , Tohru Suganuma , Koichi Sakata , Saori Yamada , Shinya Nakagawa , Kohsuke Miyazaki
发明人: Masashi Nagayama , Mariko Takii , Yoshihiro Murasawa , Haruki Murata , Kei Niwayama , Tohru Suganuma , Koichi Sakata , Saori Yamada , Shinya Nakagawa , Kohsuke Miyazaki
摘要: Carrier for image forming includes a core material particle including a magnetic material and a coating layer disposed on the surface of the core material particle, the coating layer including a resin, carbon black, an inorganic particulate A, and an inorganic particulate B. The carbon black has a concentration gradient along a thickness direction of the coating layer with a concentration from high to low toward a surface of the coating layer while the inorganic particulate A has a concentration gradient along a thickness direction of the coating layer with a concentration from low to high toward the surface of the coating layer. The volume ratio of the carbon black is 0-30 percent at a depth range of 0.0-0.1 μm from the surface of the coating layer. The inorganic particulate A is electroconductive with a powder specific resistance of 200 Ω·cm or less.
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