Published April 1, 2016 | Version v1
Journal article

Basic principles of creating a new generation of high- temperature brazing filler alloys

  • 1. National Research Nuclear University MEPhI (Moscow Engineering Physics Institute) Kashirskoe Highway 31, 115409 Moscow (Russian Federation)

Description

The development of new materials is based on the formation of a structural-phase state providing the desired properties by selecting the base and the complex of alloying elements. The development of amorphous filler alloys for a high-temperature brazing has its own features that are due to the limited life cycle and the production method of brazing filler alloys. The work presents a cycle of analytical and experimental materials science investigations including justification of the composition of a new amorphous filler alloy for brazing the products from zirconium alloys at the temperature of no more than 800 °C and at the unbrazing temperature of permanent joints of more than 1200 °C. The experimental alloys have been used for manufacture of amorphous ribbons by rapid quenching, of which the certification has been made by X-ray investigations and a differential-thermal analysis. These ribbons were used to obtain permanent joints from the spacer grid cells (made from the alloy Zr-1% Nb) of fuel assemblies of the thermal nuclear reactor VVER-440. The brazed samples in the form of a pair of cells have been exposed to corrosion tests in autoclaves in superheated water at a temperature of 350 °C, a pressure of 160 MPa and duration of up to 6,000 h. They have been also exposed to destructive tests using a tensile machine. The experimental results obtained have made it possible to propose and patent a brazing filler alloy of the following composition: Zr-5.5Fe-(2.5-3.5)Be-1Nb-(5-8)Cu-2Sn-0.4Cr-(0.5-1.0)Ge. Its melting point is 780 °C and the recommended brazing temperature is 800°C. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/1757-899X/130/1/012038

Additional details

Publishing Information

Journal Title
IOP Conference Series. Materials Science and Engineering (Online)
Journal Volume
130
Journal Issue
1
Journal Page Range
[7 p.]
ISSN
1757-899X

Conference

Title
10. international school-conference on materials for extreme environment: Development, production and application
Acronym
MEEDPA10
Dates
19-23 Oct 2015
Place
Moscow (Russian Federation)