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High strength alumina joints via transient liquid phase bonding

机译:通过瞬时液相键合的高强度氧化铝接头

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摘要

Low melting boron oxide, instead of metallic materials in other methods of transient liquid phase bonding, was taken as braze in joining alumina in this paper. Pure boron oxide melts at low temperature and reacts with alumina matrix to form a stable high melting compound. This transient liquid phase bonding has the advantage of producing a ceramic joint for high temperature applications at low processing temperature. In this study, alumina pieces coated with boron oxide layers in various thicknesses were bonded at 800 deg C for various times in air under minor loading. The average flexural strength of joints were measured by means of four point bending, while the microstructure of the cross-section and fractured surface was observed by means of scanning electron microscopy. Phases at joints were identified by low angle X-ray diffraction. The maximum flexural strength reaches a value of 155 MPa after joining at 800 deg C for 15 h with a 21 (Jim interlayer. Three compounds, 3Al_2O_3-B_3O_3, 2Al_2O_3-B3O3 and 9Al_2O_3;-2B_3O_3; have been found at the joint. It is also found that 2Al_2O_3; B_3O_3 whiskers dominate at the joint with the maximum strength.
机译:本文以低熔点的氧化硼代替钎焊其他过渡金属方法中的金属材料为钎焊氧化铝。纯氧化硼在低温下熔化并与氧化铝基体反应形成稳定的高熔点化合物。这种瞬态液相键合的优势在于可以在较低的加工温度下为高温应用生产陶瓷接头。在这项研究中,涂覆有各种厚度的氧化硼层的氧化铝片在空气中以较小的负荷在800摄氏度下粘合了不同的时间。通过四点弯曲测量接头的平均抗弯强度,而通过扫描电子显微镜观察横截面和断裂表面的微观结构。接头处的相通过低角度X射线衍射鉴定。与21(Jim中间层)在800℃接合15小时后,最大抗弯强度达到155 MPa。在接合处发现了3Al_2O_3-B_3O_3、2Al_2O_3-B3O3和9Al_2O_3; -2B_3O_3;这三种化合物。还发现2Al_2O_3; B_3O_3晶须以最大强度在接头处占主导地位。

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