Special Edition
a) H.Masuda:"Observation of Water Cluster and Water film by Non-Contact AFM" - Related to 1)
SPM DATA BASE
b) Observation of Adsorbed Water Droplets on Gold Surface.
c) In-situ KFM observation of atmospheric corrosion on low alloy steel.
d) In-situ KFM observation of atmospheric corrosion on low alloy steel - part 2.
e) In-situ KFM observation of atmospheric corrosion on low alloy steel - part 3
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Part of Recent Pablication (1995 - )
1) H.Masuda:"Direct Observation of Water Droplet on Graphite by Non-Contacting AFM" J.Japan Inst. Metals, 61, No.2 (1997) 140-144 -Japanese
2) H.Masuda:"Analysis of Corrosion Reaction on metal Surfaces by KFM", Hyomen Kagaku, 18, No.2 (1997) 72-78 -Japanese
3) H.Masuda:"Nanoscopic Analysis of Aqueous corrosion by Scanning tunneling Microscopy", Corrosion, 52, No.6 (1996) 435
4) H.Masuda:"SPM Observation of Initial Oxidation at Elevated Temperature" Ceramics, 31, No.2 (1996) 103-106 -Japanese
5) H.Masuda et.al :"In-situ Measurement of Photo-Electron Emission during Initial Stage of Oxidation at Elevated Temperature", J.Japan Inst. Metals, 59, No.12 (1995) 1322-1325 -Japanese
6) H.Masuda:"Improvement of Accuracy at atomic scale measurement" Kinozairyo, 15 (1995) 33 - Japanese
7) H.Masuda:"Observation of Water Droplet on Various Materials by Non-Contacting AFM" J.Japan Inst. Metals, 62, No.2 (1998) 173-180 -Japanese
8) H.Masuda:"Observation of Adsorbed Water on Various Materials by AFM and FT-IR" J.Japan Inst. Metals, 62, No.7 (1998) 617-620 -Japanese
9) H.Masuda:"Observation of Adsorbed Water Droplets on Gold Surface" J.Japan Inst. Metals, 62, No.10 (1998) 961-966 -Japanese
10) H.Masuda:"Possibility of Observation of Water Film by Measuring Surface Potential Distribution" J.Japan Inst. Metals, 62, No.12 (1998) 1183-1188-Japanese
11) H.Masuda:"Scanning Probe Microscope" Ferum, 3, No.12 (1998) 34-40 -Japanese
12) H.Masuda:"Recent progress on Scanning Probe Microscopy" Trans. J.Japan Inst. Metals, 40, No.3(1999)169-181
13) H.Masuda: "KFM Observation of Corrosion on Iron" 14th International Corrosion Congress, Capetown South Africa, 94.1 (1999)
14) H.Masuda & M.Yamamoto: "Observation of Sea Salt Particle by AFM" Corrosion Engineering, 48, No.5(1999)307-310-Japanese
15) H.Masuda & K. Noda: "SKFM Observation of Corrosion on Iron" Electrochemical Society Proceedings Volume 99-28(2000)351-361
16) H.Masuda: "SKFM Observation of Corrosion on Stainless Steel" Eurocorr2000, London, UK,00010604.pdf(2000)
17) H.Masuda: "Effect of MgCl2 Liquid Thickness on Atmospheric Corrosion Of Pure Iron" Corrosion, 57, No.2 (2001) 99-109
18) H.Masuda: "New emerging techniques (non-electrochemical) in corrosion studies" The 15th International Corrosion Congress, Spain 2002
19) H.Masuda: "SKFM Observation of Pit Initiation on Stainless Steels" The 15th International Corrosion Congress, Spain 2002
20) H.Masuda: "Visualization of Hydrogen Distribution by Scanning Electrochrmical Microscopy" J.Japan Inst. Metals, 64 (2000) 903 -Japanese
21) H.Masuda & S.Matsuoka: "Evaluation of Hydrogen Embrittlement by Slow SZW Method" Corrosion Engineering, 49(2000)379-Japanese
22) H.Masuda & H.Katayama: "Damage Monitoring by surface potential Measurement" 4th NDE conference, London 2004
23) H.Masuda: "Atmospheric Corrosion of Low Alloy Steel near Seashore environment under High Relative Humidity Condition" Eurocorr2004, Nice, France 2004
24) H.Masuda & H.Katayama: "Development of New SCC Test Method Simulating Seashore Environment" Eurocorr2005,lisbon, Portogal 2005
25) H.Masuda & H.Katayama: "Developement of portable ddevice for measuring accumulation rate of sea salt particles" Corrsion Science, 47 (2005) 2411-2418
26) H.Masuda & H.Katayama: "KFM Observation of Atmospheric Corrosion on Low Alloy Steels Near the Seashore Environment" Proceeding Vol. of 208th Meeting of Electrochemcal Society (2005) 111-120
27) H.Masuda: hSurface Analysis by Scanning Probe Microscopyh, Sikizai, 78 (2005) 211-214 in Japanese
New 28) H.Masuda: " SKFM Observation OF SCC on Stainless Steel " Eurocorr2006, Marrstricht, Holland 2006
New 29 H. Masuda: " Long Term Laboratry Test Using New Atmospheric Corrosion Test Device " J. Japan Inst. Metals, 70 (2006) 780-784 in Japanese
New 30) H.Masuda: h SKFM observation of SCC on SUS304 stainless steelh Corrosion Science, 49 (2007) 120-129
New 31) H. Masuda:g Atmospheric corrosion of low alloy steels in a high-humidity seashore environmenth, Local probe techniques for corrosion research, EFC45 (2007) 137-144
New 32) H.Masuda and H. Katayama: hRole of Relative Humidity on Corrosion of Low Carbon Steels by Seasalt Particlesh, Corr. Engineering, 56 (2007) 154-157 in Japanese
New 33) H.Masuda: " Long Term Indoor Atmospheric Corrosion Test by New Cyclic Corrosion Test Device" Eurocorr2007, Freiburg, Germany 2007
New 34) H. Masuda:g Effect of Stress on Hydrogen Distribution around SCC Crack of SUS304 Stainless Steelh, ECS Transaction, 11, No.22 (2008) 57-70@
a. Portable surface potential measurement device (similar to Kelvin microscope).
contact: h-wada@hiro-con.co.jp
b. New atmospheric corrosion test device that can simulate real environment.
contact: oie@polka.plala.or.jp
c. Portable measurenet device for accumulation rate of sea salt.
prototype was made
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Book
"Introduction of MIC for engineers" edited by H.Masuda et.al, Maruzen 2004-Japanese