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首页> 外文期刊>CERAMICS INTERNATIONAL >Actively brazed alumina to alumina joints using CuTi, CuZr and eutectic AgCuTi filler alloys
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Actively brazed alumina to alumina joints using CuTi, CuZr and eutectic AgCuTi filler alloys

机译:使用CuTi,CuZr和低共熔AgCuTi填充合金将氧化铝钎焊至氧化铝接头

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摘要

Al_2O_3 to Al_2O_3 joints were produced using a one stage active brazing technique based on CuTi, CuZr and AgCuTi active brazing alloys. Singleand double-butt joints were used for microstructural (light and scanning electron microscopy and X-ray diffraction) and mechanical property (double shear test) studies, respectively. The joints produced with CuZr filler alloys (containing 2%, 4%, 6% and 8% Zr, wt%) showed low shear strengths (0.2–0.4 MPa) due to the presence of ZrO_2 at the braze–substrate interface and failed in mode I crack opening. Higher shear strengths of 15–24 and 42 MPa were obtained by using CuTi filler alloys (containing 2%, 4%, 6%, 8% and 10% Ti, wt%) (mode II/mode III dependent on the Ti content) and the eutectic (Ag–27 wt% Cu–5 wt% Ti) alloy, respectively. The high shear strengths were attributed to the small amount of Cu_2(AlTi)_4O at the braze–substrate interface and led, in the case of the ternary alloy, to the failure of the substrate rather than the braze (mode III axial splitting).
机译:使用基于CuTi,CuZr和AgCuTi活性钎焊合金的一级活性钎焊技术生产了Al_2O_3至Al_2O_3接头。单对接和双对接接头分别用于显微组织(光学和扫描电子显微镜以及X射线衍射)和力学性能(双剪切试验)研究。 CuZr填充合金(含2%,4%,6%和8%Zr,wt%)生产的接头显示出低剪切强度(0.2-0.4 MPa),这是由于在钎焊-基底界面处存在ZrO_2而导致的。我打开模式。通过使用CuTi填充合金(含有2%,4%,6%,8%和10%Ti,wt%)可获得更高的抗剪强度,为15-24和42 MPa(模式II /模式III取决于Ti含量)和共晶(Ag–27 wt%Cu–5 wt%Ti)合金。高剪切强度归因于钎焊-基底界面处的少量Cu_2(AlTi)_4O,并且在三元合金的情况下,导致了基底的破坏而不是钎焊的破坏(III型轴向分裂)。

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