Composition dependence of titanium in silver-copper-titanium alloy braze on dissimilar laser brazing of boron nitride ceramics and cemented carbide

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Abstract

Dissimilar laser brazing of boron nitride ceramics and cemented carbide has been investigated by using silver-copper-titanium braze alloys with different titanium contents of up to 2.80 mass%; efficient bond strength was achieved using brazes with more than 1.25 mass% of titanium. The contact angle between hexagonal boron nitride ceramics and the molten braze, which was measured by the sessile drop method at 1123 K, decreased to less than 30° when the Ti content was over 0.41 mass%. The difference in the wetting property determined by laser brazing method and that by sessile drop method is attributed to the difference in the heating process of the two methods. Structural analysis of the interface between the boron nitride ceramics and the braze was carried out by electron probe micro-analysis (EPMA). © 2009 The Japan Institute of Metals.

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Sechi, Y., Takezaki, A., Matsumoto, T., Tsumura, T., & Nakata, K. (2009). Composition dependence of titanium in silver-copper-titanium alloy braze on dissimilar laser brazing of boron nitride ceramics and cemented carbide. Materials Transactions, 50(6), 1294–1299. https://doi.org/10.2320/matertrans.ME200822

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