Solubility and Dissolution Rate of Ni Base Alloy to Molten Ag-Cu-Pd Brazing Filler

Author:

IKESHOJI Toshi-Taka1,WATANABE Yuki2,SUZUMURA Akio1,YAMAZAKI Takahisa1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Tokyo Institute of Technology

2. Graduate School of Tokyo Institute of Technology

Publisher

Japan Society of Mechanical Engineers

Subject

Mechanical Engineering,General Materials Science

Reference12 articles.

1. Erosion–corrosion of stainless steels, titanium, tantalum and zirconium

2. A Predictive Model for Localized Erosion—Corrosion

3. (3) On the Investigation of Erosion of Cooling Pipe of LE-7A’s Nozzle Skirt Assy, National Space Development Agency (NASDA), (in Japanese), Press Release, Dec.27, 2000, Tokyo, http://www.jaxa.jp/press/archives/nasda/2000/12/le7a_001227_j.html (2000).

4. Heat-resisting Brazing of Stainless Steel SUS316L with Newly Developed Palladium Containing Filler Metals(Report 2). Heat-resisting Brazing of Stainless Steel SUS316L with Palladium-Nickel Based Filler Metals.

5. (5) Ikeshoji, T.-T., Suzumura, A., Sasabe, K. and Yamazaki, T., Erosion of Ni Sub-Strate by Marangoni Convection of Molten Ag-Cu-Pd Brazing Filler Metal Brazing, High Temperature Brazing and Diffusion Welding, LÖT2004, DVS-Berichte, Vol.231 (2004).

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1. Kinetics of Assimilation of Additions in Liquid Metals;Treatise on Process Metallurgy;2014

2. Air Brazing: A New Method of Ceramic-Ceramic and Ceramic-Metal Joining;Ceramic Integration and Joining Technologies;2011-10-24

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