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Date: 2012
Type: Article
Identifier: uj:5289
Description: This paper presents an experimental investigation to verify the feasibility and effectiveness of heat pipe cooling in drilling operations. The basic idea is to insert a heat pipe at the center of the ... More
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Date: 2011
Type: Article
Identifier: uj:5288
Description: In this paper, the feasibility and effectiveness of heat pipe cooling in end milling operations are investigated. A new embedded heat pipe technology was utilized to remove the heat generated at the t ... More
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Authors: Pentz, D. C.
Date: 2011
Language: English
Type: Article
Identifier: http://hdl.handle.net/10210/17349
Description: Abstract: Magnetic component design has received much attention over the last few decades specifically with their application in high frequency power converters. Conventional indirect cooling methods ... More
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Date: 2007
Type: Article
Identifier: uj:5276
Description: An experimental study of heat transfer performance in 3D internally finned steel-water heat pipe was carried out in this project. All the main parameters that can significantly influence the heat tran ... More
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Date: 2006
Type: Article
Identifier: uj:5270
Description: In this study, a transient analysis of the performance of a heat pipe with a wick structure is performed. A complete formulation of the equation governing the operation of a heat pipe during transient ... More
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Date: 2005
Type: Article
Identifier: uj:5259
Description: Please refer to full text to view abstract
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Date: 2003
Language: English
Type: Conference proceedings
Identifier: http://hdl.handle.net/10210/15756
Description: Abstract: An experimental study is performed in this paper to verify the concept of thermal management of using a heat pipe in the drilling process. The basic idea is to insert a heat pipe at the cent ... More
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Date: 2002
Language: English
Type: Conference proceedings
Identifier: http://hdl.handle.net/10210/15688
Description: A numerical study is conducted on the vapor and liquid flow in a wick structure of an axially rotating heat pipe. For the vapor, the governing equations are the Navier-Stokes. For the liquid a space a ... More
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