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Accession number:  20134316904904

  Title:  Wetting angle measurement of liquid PbBi on RAFM steel surface based on ellipse fitting
  Authors:  Pan, Bao Guo1 Email author pcx@mail.ustc.edu.cn; Wang, Wei Hua1 Email author whwang@ipp.ac.cn; Chu, De Lin1; Yang, Jin Hong1; Mei, Luo Qin1; Zhang, Qiang Hua1; Wang, Peng1; Wang, Jun1  
  Author affiliation:  1 Army Officer Academy of PLA, 451 Huangshan Road, Hefei, Anhui, China  
  Source title:  Advanced Materials Research
  Abbreviated source title:  Adv. Mater. Res.
  Volume:  820
  Monograph title:  Metallic Materials and Manufacturing Technology
  Issue date:  2013
  Publication year:  2013
  Pages:  102-105
  Language:  English
  ISSN:  10226680  
  ISBN-13:  9783037858806  
  Document type:  Conference article (CA)
  Conference name:  International Conference on Metallic Materials and Manufacturing Technology, ICMMMT 2013
  Conference date:  September 21, 2013 - September 22, 2013
  Conference location:  Harbin, China
  Conference code:  100395  
  Sponsor:  INTIEA Informatization and Engineering; Scientific.Net; Trans Tech Publications inc.; National Institute of Technology Rourkela; Universitatea Politehnica Din Bucuresti; et al
  Publisher:  Trans Tech Publications Ltd, Kreuzstrasse 10, Zurich-Durnten, CH-8635, Switzerland
  Abstract:  The fusion power is considered an ideal energy for the future due to abundant, green and safety. Wetting properties between the liquid metal and the structural materials in the liquid blanket of the fusion reactor related to the heat exchange efficiency and the irradiated plasma resistance, and directly related to the service life of the reactor structural materials. This article describes the wetting angle measurement experimental procedure of liquid lead-bismuth (PbBi) at reduced activation ferritic/martensitic steel (RAFM steel) surface based on the high-temperature static sessile drop method under the protection of high purity argon, including the images enhancement processing obtained by CCD camera, using ellipse fitting method to calculate the wetting angle, and were measured at 350-600¡ãC. The experimental results show that the wetting angles of liquid PbBi and RAFM steel are greater than 140¡ã, non-wetting. © (2013) Trans Tech Publications, Switzerland.
  Number of references:  5
  Main heading:  Wetting  
  Controlled terms:  Angle measurement  -  Ferritic steel  -  Liquid metals  -  Manufacture  -  Martensitic steel  -  Steel metallography  
  Uncontrolled terms:  Ellipse fitting  -  Ellipse fitting method  -  Experimental procedure  -  Heat exchange efficiency  -  Rafm steels  -  Reduced activation ferritic/martensitic steel  -  Sessile drop method  -  Wetting angle  
  Classification code:  531.1 Metallurgy -  537.1 Heat Treatment Processes -  545.3 Steel -  931.2 Physical Properties of Gases, Liquids and Solids -  943.2 Mechanical Variables Measurements
  DOI:  10.4028/www.scientific.net/AMR.820.102
  Database:  Compendex
   Compilation and indexing terms, © 2013 Elsevier Inc.
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Accession number:  20134316904904
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