Blank Cover Image

低熱伝導率難削材のエンドミル加工におけるMQLの工具温度への影響

フォーマット:
論文
責任表示:
岡田, 将人 ; 細川, 晃 ; 浅川, 直紀 ; 藤田, 祐介 ; 上田, 隆司
言語:
日本語
出版情報:
日本機械学会 = Japan Society of Mechanical Engineers, 2012-01-01
著者名:
掲載情報:
Nihon Kikai Gakkai Ronbunshu, C Hen/Transactions of the Japan Society of Mechanical Engineers, Part C
ISSN:
0387-5024  CiNii Research  Webcat Plus  JAIRO
巻:
78
通号:
792
開始ページ:
3093
終了ページ:
3013
バージョン:
author
概要:
The effect of minimum quantity lubrication (MQL) method in end milling of stainless steel and titanium alloy that are typical difficult-to-cut materials with coated carbide tool is investigated. The effect is mainly evaluated by tool flank temperature, cutting force and tool wear behavior. The tool flank temperature is measured using a two-color pyrometer with an optical fiber having small measurement area and high response speed under non-contact condition with tool. In MQL cutting of SUS304 and Ti-6A1-4V at cutting speed v=25m/min, the tool flank temperature decreases approximately 50°C and 100°C than the case of dry cutting respectively, and the effect of MQL on tool flank temperature is especially obtained in low-speed cutting. On the other hand, the tool flank temperature in MQL cutting of Ti-6A1-4V is higher than the case of dry cutting in cutting speed v=100m/min or more. In the high-speed cutting of Ti-6A1-4V, it is observed that the several chips adhere on the rake face of cutting edge. In addition, the output voltages from detector are obtained when the adhesion chips on the cutting edge pass through the measurement area of two-color pyrometer. In the case of the SUS304, the feed and thrust force are decreased by the supplying oil mist in high speed cutting. The generation of micro-crack at cutting edge is contained by applying MQL even high speed cutting of Ti-6A1-4V that is not obtained the effect of temperature decreasing. © 2012 The Japan Society of Mechanical Engineers. 続きを見る
URL:
http://hdl.handle.net/2297/32477
タイトル・著者・出版者が同じ資料

類似資料:

1
 
2
 
3
 
4
 
5
 
6
 
7
 
8
 
9
 
10
 
11
 
12
 

村松, 健吾, 源濟, 優輔, 細川, 晃, 上田, 隆司, 古本, 達明, 秀田, 守弘

精密工学会 = The Japan Society for Precision Engineering

鬼頭, 亮太, 高杉, 敬吾, 浅川, 直紀, 岡田, 将人

精密工学会 = The Japan Society for Precision Engineering

小矢, 畑亘, 岡田, 将人, 安井, 慎之介, 細川, 晃, 田中, 隆太郎, 上田, 隆司

The Japan Society of Mechanical Engineers = 日本機械学会

鬼頭, 亮太, 高杉, 敬吾, 浅川, 直紀, 岡田, 将人

精密工学会 = The Japan Society for Precision Engineering

上原, 祐也, 細川, 晃, 上田, 隆司, 田中, 隆太郎, 古本, 達明, 秀田, 守弘

精密工学会 = The Japan Society for Precision Engineering

嶋村, 公二, 細川, 晃, 上田, 隆司, 政, 誠一

精密工学会 = The Japan Society for Precision Engineering

鬼頭, 亮太, 高杉, 敬吾, 浅川, 直紀, 岡田, 将人

精密工学会 = The Japan Society for Precision Engineering

細川, 晃, 岡田, 将人, 北川, 修介, 田中, 隆太郎, 上田, 隆司

精密工学会 = The Japan Society for Precision Engineering

田中, 隆太郎, 山根, 八洲男, 岡田, 将人, 細川, 晃, 上田, 隆司

精密工学会 = The Japan Society for Precision Engineering

城野, 麻未, 高杉, 敬吾, 岡田, 将人, 浅川, 直紀, 田中, 秀岳

精密工学会 = The Japan Society for Precision Engineering