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Fizika Goreniya i Vzryva, 2003 Volume 39, Issue 2, Pages 128–136 (Mi fgv1868)

This article is cited in 5 papers

Possible ignition of particles ejected into the gap in explosive welding of titanium

A. A. Berdychenkoa, B. S. Zlobinb, L. B. Pervukhina, A. A. Shtertserc

a Polzunov Altai State Technical University, Barnaul, 656099
b "MATEM" Research-Industrial Enterprise, Novosibirsk, 630058
c Siberian Division, Russian Academy of Sciences, Design and Technology Institute of High-Rate Hydrodynamics, Novosibirsk, 630090

Abstract: Processes that occur in the welding gap during explosive welding are analyzed. It is shown that metal particles flying out into the gap due to the jet-formation effect can ignite in shock-compressed air. For most metals, the energy released thereby is small and has no significant influence on weld formation. In titanium welding on large areas, surface sections located far from the place of detonation initiation, which experience a long-term action of a hot air flow, can dissolve a large amount of oxygen and nitrogen. If particles from these sections enter the gap, it can lead to chemical reactions with formation of TiO$_2$ and TiN by the mechanism of internal combustion. The energy released in the gap per unit area is commensurable with and even greater than the kinetic energy of the accelerated (flyer) plate. Local bulging and rupture of metal observed in practice can be explained by ignition and combustion of gas-saturated titanium particles in the welding gap.

Keywords: titanium, explosive welding, welding gap, jet-formation effect, particles, gas saturation, ignition, combustion.

UDC: 621.791.044

Received: 24.12.2001
Accepted: 20.08.2002


 English version:
Combustion, Explosion and Shock Waves, 2003, 39:2, 232–239

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