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A Simple Test to Determine the Effectiveness of Different Braze Compositions for Joining Ti-Tubes to C/C Composite Plates

机译:一个简单的测试,以确定将钛管连接到C / C复合板的不同钎焊成分的有效性

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摘要

A simple tube-plate joint tensile test was implemented to compare the effectiveness of commercial brazes, namely, TiCuNi, TiCuSil, and Cu-ABA, used for bonding Ti-tubes joined to C-C composite plates. The different braze systems yielded different; yet, repeatable results. The Cu-ABA system proved to have about twice the load-carrying ability of the other two systems due to the fact that the bonded area between the braze material and the C-C plate was largest for this system. The orientation of the surface fiber tows also had a significant effect on load-carrying ability with tows oriented perpendicular to the tube axis displaying the highest failure loads. Increasing the process load and modifying the surface of the C-C plate by grooving out channels for the Ti-Tube to nest in resulted in increased load-carrying ability for the TiCuSil and Cu-ABA systems due to increased bonded area and better penetration of the braze material into the C-C composite.
机译:进行了一个简单的管板接头拉伸试验,以比较商用钎焊TiCuNi,TiCuSil和Cu-ABA的有效性,该钎焊用于粘结与C-C复合板连接的Ti管。不同的钎焊系统产生不同的结果。然而,可重复的结果。由于在该系统中钎焊材料和C-C板之间的结合面积最大,因此事实证明Cu-ABA系统具有约两倍于其他两个系统的承载能力。表面纤维丝束的取向对承载能力也有显着影响,垂直于管轴取向的丝束显示出最大的破坏载荷。通过开槽Ti-Tube以便嵌套的通道来增加工艺负荷并修改CC板的表面,从而导致TiCuSil和Cu-ABA系统的承载能力增强,这是由于增加了键合面积并提高了钎焊的穿透性材料放入CC复合材料中。

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