Published June 1, 2009 | Version v1
Report

Brazing Refractory Metals Used In High-Temperature Nuclear Instrumentation

Description

As part of the U. S. Department of Energy (DOE) sponsored Next Generation Nuclear Project (NGNP) currently ongoing at Idaho National Laboratory (INL), the irradiation performance of candidate high-temperature gas reactor fuels and materials is being evaluated at INL's Advanced Test Reactor (ATR). The design of the first Advanced Gas Reactor (AGR 1) experiment, currently being irradiated in the ATR, required development of special techniques for brazing niobium and molybdenum. Brazing is one technique used to join refractory metals to each other and to stainless steel alloys. Although brazing processes are well established, it is difficult to braze niobium, molybdenum, and most other refractory metals because they quickly develop adherent oxides when exposed to room-temperature air. Specialized techniques and methods were developed by INL to overcome these obstacles. This paper describes the techniques developed for removing these oxides, as well as the ASME Section IX-qualified braze procedures that were developed as part of the AGR-1 project. All brazes were made using an induction coil with an inert or reducing atmosphere at low pressure. Other parameters, such as filler metals, fluxes used, and general setup procedures, are also discussed.

Additional details

Publishing Information

Imprint Pagination
vp.
Report number
INL/CON--09-15266

Conference

Title
1. International Conference on Advancements in Nuclear Instrumentation, Measurement Methods and Their Applications
Dates
7-10 Jun 2009
Place
Marseille (France)

Optional Information

Contract/Grant/Project number
AC07-99ID-13727
Funding organization
DOE - NE (United States)