Dispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†

A dry powder coating method has been applied to develop high-performance contact-materials for the electrical industry. Using a high-speed/high-shear type of mill, the dispersion and compounding process of particulate Ag and nano-meter-size Ni...

Full description

Bibliographic Details
Main Authors: Munetake Satoh, Takahiko Yamashita, Kei Miyanami, Kenji Higashi, Shinji Tanimura, Hayato Inada, Koji Tsuji
Format: Article
Language:English
Published: Hosokawa Powder Technology Foundation 2014-05-01
Series:KONA Powder and Particle Journal
Online Access:https://www.jstage.jst.go.jp/article/kona/12/0/12_1994025/_pdf/-char/en
id doaj-ac818bb89d834f62b50f642d101b2c8e
record_format Article
spelling doaj-ac818bb89d834f62b50f642d101b2c8e2021-02-03T01:25:06ZengHosokawa Powder Technology FoundationKONA Powder and Particle Journal0288-45342187-55372014-05-0112017317710.14356/kona.1994025konaDispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†Munetake Satoh0Takahiko Yamashita1Kei Miyanami2Kenji Higashi3Shinji Tanimura4Hayato Inada5Koji Tsuji6Department of Chemical Engineering, Faculty of Engineering, University of Osaka PrefectureDepartment of Chemical Engineering, Faculty of Engineering, University of Osaka PrefectureDepartment of Chemical Engineering, Faculty of Engineering, University of Osaka PrefectureDepartment of Mechanical Engineering, Faculty of Engineering, University of Osaka PrefectureDepartment of Mechanical Engineering, Faculty of Engineering, University of Osaka PrefectureMaterials Research and development Laboratory, Matsushita Electric WorksMaterials Research and development Laboratory, Matsushita Electric WorksA dry powder coating method has been applied to develop high-performance contact-materials for the electrical industry. Using a high-speed/high-shear type of mill, the dispersion and compounding process of particulate Ag and nano-meter-size Ni powder were investigated. The transformation of the particles throughout the process was shown by the torque and temperature curves during the treatment in the mill. The optimum operating conditions for both dispersion of fine particles into the matrix and sintering process were discussed based on the physical properties of bulk powders and sintered composite.† This report was originally printed in Journal of the Japan Society of Powder and Powder Metallurgy , 40(3), 299-302 (1993) in Japanese, before being translated into English by KONA Editorial Committee with the permission of the editorial committee of Japan Society of Powder and Powder Metallurgy.https://www.jstage.jst.go.jp/article/kona/12/0/12_1994025/_pdf/-char/en
collection DOAJ
language English
format Article
sources DOAJ
author Munetake Satoh
Takahiko Yamashita
Kei Miyanami
Kenji Higashi
Shinji Tanimura
Hayato Inada
Koji Tsuji
spellingShingle Munetake Satoh
Takahiko Yamashita
Kei Miyanami
Kenji Higashi
Shinji Tanimura
Hayato Inada
Koji Tsuji
Dispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†
KONA Powder and Particle Journal
author_facet Munetake Satoh
Takahiko Yamashita
Kei Miyanami
Kenji Higashi
Shinji Tanimura
Hayato Inada
Koji Tsuji
author_sort Munetake Satoh
title Dispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†
title_short Dispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†
title_full Dispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†
title_fullStr Dispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†
title_full_unstemmed Dispersion and Compounding Process of Particulate Ag and Fine Ni Powder Using a High-speed/High-shear Mill [Translated]†
title_sort dispersion and compounding process of particulate ag and fine ni powder using a high-speed/high-shear mill [translated]†
publisher Hosokawa Powder Technology Foundation
series KONA Powder and Particle Journal
issn 0288-4534
2187-5537
publishDate 2014-05-01
description A dry powder coating method has been applied to develop high-performance contact-materials for the electrical industry. Using a high-speed/high-shear type of mill, the dispersion and compounding process of particulate Ag and nano-meter-size Ni powder were investigated. The transformation of the particles throughout the process was shown by the torque and temperature curves during the treatment in the mill. The optimum operating conditions for both dispersion of fine particles into the matrix and sintering process were discussed based on the physical properties of bulk powders and sintered composite.† This report was originally printed in Journal of the Japan Society of Powder and Powder Metallurgy , 40(3), 299-302 (1993) in Japanese, before being translated into English by KONA Editorial Committee with the permission of the editorial committee of Japan Society of Powder and Powder Metallurgy.
url https://www.jstage.jst.go.jp/article/kona/12/0/12_1994025/_pdf/-char/en
work_keys_str_mv AT munetakesatoh dispersionandcompoundingprocessofparticulateagandfinenipowderusingahighspeedhighshearmilltranslated
AT takahikoyamashita dispersionandcompoundingprocessofparticulateagandfinenipowderusingahighspeedhighshearmilltranslated
AT keimiyanami dispersionandcompoundingprocessofparticulateagandfinenipowderusingahighspeedhighshearmilltranslated
AT kenjihigashi dispersionandcompoundingprocessofparticulateagandfinenipowderusingahighspeedhighshearmilltranslated
AT shinjitanimura dispersionandcompoundingprocessofparticulateagandfinenipowderusingahighspeedhighshearmilltranslated
AT hayatoinada dispersionandcompoundingprocessofparticulateagandfinenipowderusingahighspeedhighshearmilltranslated
AT kojitsuji dispersionandcompoundingprocessofparticulateagandfinenipowderusingahighspeedhighshearmilltranslated
_version_ 1724289657318932480