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公开(公告)号:US20170190593A1
公开(公告)日:2017-07-06
申请号:US15315633
申请日:2015-06-01
Applicant: NISSHIN ENGINEERING INC.
Inventor: Yoshifumi SAKAI , Daisuke SATO , Keitaroh NAKAMURA , Akihiro KINOSHITA
CPC classification number: C01G41/006 , B01J19/08 , B01J19/087 , B01J2219/0869 , B01J2219/0886 , B01J2219/089 , B01J2219/0894 , B01J2219/0898 , C01G41/00 , C01P2002/72 , C01P2002/84 , C01P2006/60
Abstract: The purpose/problem of the present invention is to provide a method for producing tungsten complex oxide particles useful as a heat shield material or the like that permits inexpensive production of a stable composition. This method for producing tungsten complex oxide particles includes a step for preparing a dispersion in which a raw material powder has been dispersed, a step for feeding the dispersion into a thermal plasma flame, and a step for supplying gas containing oxygen to the terminal portion of the thermal plasma flame and producing tungsten complex oxide particles. The dispersion preferably includes a carbon element.
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公开(公告)号:US12163032B2
公开(公告)日:2024-12-10
申请号:US16954853
申请日:2018-12-06
Applicant: NISSHIN ENGINEERING INC.
Inventor: Shu Watanabe , Naohito Uemura , Keitaroh Nakamura
Abstract: Provided are composite particles having the optical characteristic of a lower transmittance in the visible light region, i.e., a higher light-blocking performance in the visible light region, and a method for producing composite particles. The composite particles have at least one of Al and Ti formed into a composite with ZrN.
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公开(公告)号:US20230256509A1
公开(公告)日:2023-08-17
申请号:US18306669
申请日:2023-04-25
Applicant: NISSHIN ENGINEERING INC.
Inventor: Shu WATANABE , Shiori SUEYASU , Keitaroh NAKAMURA
CPC classification number: B22F9/12 , B22F1/054 , B22F1/102 , B22F2301/255 , B22F2304/054
Abstract: A production method for silver fine particles retain capabilities such as conductivity and make it possible to form wiring at even lower temperatures; and silver fine particles. A silver fine particle production method in which silver powder is used to produce silver fine particles by means of a gas phase method. The silver fine particle production method has a step for supplying an organic acid to the silver fine particles. The gas phase method is, for example, a plasma method or a flame method. The silver fine particles have a surface coating that includes at least a carboxyl group.
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公开(公告)号:US11154907B2
公开(公告)日:2021-10-26
申请号:US16651236
申请日:2018-09-14
Applicant: NISSHIN SEIFUN GROUP INC. , NISSHIN ENGINEERING INC.
Inventor: Kenji Jikihara , Yusuke Igawa , Tatsuya Onishi , Toru Yoshikawa , Kazumi Kozawa
Abstract: This powder-classifying apparatus has: a centrifugation chamber configured so as to be sandwiched between two opposing members; an air supply unit that supplies air into the centrifugation chamber and generates a swirl flow; a raw material supply unit that supplies raw-material powder into the swirl flow; a fine powder recovery unit having an opening part through which air that includes fine powder classified within the centrifugation chamber is ejected to outside of the centrifugation chamber; a coarse powder recovery unit provided to the outer edge part of the centrifugation chamber, for ejecting classified coarse powder to outside of the centrifugation chamber; and an annular slit provided to at least one of the members that constitute the centrifugation chamber, the slit being provided in a region between the center part of the centrifugation chamber and the outer edge part.
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公开(公告)号:US10144060B2
公开(公告)日:2018-12-04
申请号:US15527947
申请日:2015-11-20
Applicant: NISSHIN ENGINEERING INC.
Inventor: Shu Watanabe , Keitaroh Nakamura , Shiori Sueyasu
Abstract: In the present invention, a fine silver particle has a particle diameter of 65-80 nm and has, on the surface of the particle, a thin film comprising a hydrocarbon compound. The fine silver particle has an exothermic peal temperature of 140-155° C. in differential thermal analysis. If d denotes the particle diameter after firing at a temperature of 100° C. for one hour and D denotes the particle diameter before firing, it is preferable for the fine silver particle to have a particle growth rate, as represented by (d−D)/D (%), of 50% or higher.
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公开(公告)号:US11798707B2
公开(公告)日:2023-10-24
申请号:US16961612
申请日:2019-01-10
Applicant: NISSHIN ENGINEERING INC.
Inventor: Shu Watanabe , Shiori Sueyasu , Keitaroh Nakamura
CPC classification number: H01B1/02 , B22F1/054 , B22F1/102 , B22F1/142 , B22F3/02 , B22F9/12 , B22F2301/10 , B22F2304/054 , B22F2999/00 , B22F1/142 , B22F2201/02
Abstract: Provided are copper microparticles which have exceptional oxidation resistance, in which oxidation is reduced even when the copper microparticles are held at a firing temperature in an oxygen-containing atmosphere, and in which sintering also occurs. The copper microparticles have a particle diameter of 10-100 nm, have a surface coating material, and are such that, after the copper microparticles are held for one hour at a temperature of 400° C. in an oxygen-containing atmosphere, the particle diameter exceeds 100 nm while a copper state is retained.
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公开(公告)号:US20220402029A1
公开(公告)日:2022-12-22
申请号:US17777196
申请日:2020-11-10
Applicant: NISSHIN ENGINEERING INC.
Inventor: Shu WATANABE , Shiori SUEYASU , Keitaro NAKAMURA
Abstract: Provided is a fine particle production apparatus and a fine particle production method capable of easily obtaining surface treated fine particles. The fine particle production apparatus produces fine particles using feedstock by means of a gas-phase process. The apparatus includes a treatment section configured to transform the feedstock into a mixture in a gas phase state by means of the gas-phase process, a feedstock supply section configured to supply the feedstock to the treatment section, a cooling section configured to cool the mixture in a gas phase state in the treatment section using a quenching gas containing an inert gas, and a supply section configured to supply a surface treating agent to fine particle bodies in a temperature region in which the surface treating agent is not denatured, the fine particle bodies being produced by cooling the mixture in the gas phase state with the quenching gas.
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公开(公告)号:US20220402025A1
公开(公告)日:2022-12-22
申请号:US17777459
申请日:2020-09-29
Applicant: NISSHIN ENGINEERING INC.
Inventor: Shu WATANABE , Shiori SUEYASU , Keitaro NAKAMURA
Abstract: Fine particles that can be sintered and grow to 100 nm or larger without oxidation even when retained at a baking temperature in an oxygen-containing atmosphere and that can suppress oxidation in a long-term preservation in the air or other oxygen-containing atmospheres, a method of producing the fine particles, and a method of producing fine particles that can suppress oxidation in a collecting process after the production of the fine particles. A fine particle production method for producing fine particles using feedstock powder by means of a gas-phase process includes a step of producing fine particle bodies by converting the feedstock powder into a mixture in a gas phase state using a gas-phase process and cooling the mixture in a gas phase state with a quenching gas containing an inert gas and a hydrocarbon gas having 4 or less carbon atoms, and a step of supplying an organic acid to the produced fine particle bodies.
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公开(公告)号:US11479674B2
公开(公告)日:2022-10-25
申请号:US16982481
申请日:2019-03-11
Applicant: NISSHIN ENGINEERING INC.
Inventor: Keitaroh Nakamura , Daisuke Sato
Abstract: Provided are: composite particles having excellent oxidation resistance; and a method for producing composite particles. The composite particles are obtained by forming a composite of TiN and at least one of Al, Cr, and Nb. In the method for producing composite particles, a titanium powder and a powder of at least one of Al, Cr, and Nb are used as raw material powders and composite particles are produced using a gas phase method.
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公开(公告)号:US20210087404A1
公开(公告)日:2021-03-25
申请号:US16954853
申请日:2018-01-06
Applicant: NISSHIN ENGINEERING INC.
Inventor: Shu WATANABE , Naohito UEMURA , Keitaroh NAKAMURA
Abstract: Provided are composite particles having the optical characteristic of a lower transmittance in the visible light region, i.e., a higher light-blocking performance in the visible light region, and a method for producing composite particles. The composite particles have at least one of Al and Ti formed into a composite with ZrN.
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