Invention Grant
- Patent Title: Duplex eutectic silicon alloy, manufacturing method thereof, and manufacturing method of sintered compact using silicon alloy powder
- Patent Title (中): 双相共晶硅合金及其制造方法以及使用硅合金粉末的烧结体的制造方法
-
Application No.: US12917820Application Date: 2010-11-02
-
Publication No.: US08426329B2Publication Date: 2013-04-23
- Inventor: Toshiyuki Watanabe , Masafumi Matsushita , Toshitaka Sakurai , Kazuya Sato , Yoko Matsushita , Takayoshi Misaki , Setsuko Shindo , Ayumi Shindo , Yumiko Kubota , Akiko Matsushita , Kunio Saito , Takumi Shitara , Futoshi Yanagino , Takashi Yoshida , Takashi Mizushima , Osamu Matsuzono , Kazuaki Sato , Kouki Shimizu
- Applicant: Toshiyuki Watanabe , Masafumi Matsushita , Toshitaka Sakurai , Kazuya Sato , Yoko Matsushita , Takayoshi Misaki , Setsuko Shindo , Ayumi Shindo , Yumiko Kubota , Akiko Matsushita , Kunio Saito , Takumi Shitara , Futoshi Yanagino , Takashi Yoshida , Takashi Mizushima , Osamu Matsuzono , Kazuaki Sato , Kouki Shimizu
- Applicant Address: JP Osaka
- Assignee: Sumikin Bussan Corporation
- Current Assignee: Sumikin Bussan Corporation
- Current Assignee Address: JP Osaka
- Agency: Howson & Howson LLP
- Priority: JP2009-251847 20091102
- Main IPC: C04B35/599
- IPC: C04B35/599

Abstract:
A duplex eutectic silicon alloy including 30-70 weight % silicon, 10-45 weight % nitrogen, 1-40 weight % aluminum, and 1-40 weight % oxygen has a eutectic structure comprising a β′-sialon phase and an ο′-sialon phase. The alloy is produced by controlling cooling at a rate of 50° C. or less per minute in combustion synthesis. A ductile sintered product capable of replacing steel in various applications can be produced by placing a compact composed of a powder of the alloy in a sintering furnace which can supply a heat quantity at least ten times the heat capacity of the compact; and sintering the compact at a pressure at least as great as atmospheric pressure, within a nitrogen atmosphere in which the silicon gas mole fraction is 10% or more, and at a temperature within the range from 1400° C. to 1700° C.
Public/Granted literature
Information query
IPC分类: