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An upgraded brazing technique to manufacture ceramic-metal joints for UHV applications

机译:一种升级的钎焊技术,用于制造特高压应用的陶瓷-金属接头

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The properties of an upgraded active vacuum brazing procedure, explicitly developed to manufacture ceramic-metal joints, are presented and some of the most significant applications described. The essential feature of the technique is the use of AgCuTi as brazing material, which permits the joining of alumina (Al2O3) very reliably with various metals, including stainless steel. The careful control of the brazing cycle and the quality of the alumina, in terms of purity and density, play an essential role in determining the final performances of the components. With the technology presented, several vacuum components have been developed and manufactured, among which the most interesting are electrical feedthroughs compatible with commercially available signal connectors and capable of operating at temperatures of 500(degrees)C or higher. In particular, a completely new model of a signal feedthrough, to be used with the Minisnap-Plug of Odu and presenting an alumina-stainless steel joint, has been developed and thoroughly tested in the laboratory. Its performances have been verified at more than 700degreesC, with temperature variations of up to 10degrees/min. The latest version of these feedthroughs has shown good vacuum tightness and reliability up to 650degreesC and therefore presents better characteristics than most of the feedthroughs commercially available. In addition to being tested on the bench, some feedthroughs have been used in the nuclear fusion experiment Reversed Field eXperiment (RFX), without showing any sign of degradation or ageing. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 5]
机译:展示了经过升级开发的主动真空钎焊程序的性能,该程序是专门为制造陶瓷-金属接头而开发的,并介绍了一些最重要的应用。该技术的基本特征是使用AgCuTi作为钎焊材料,从而可以非常可靠地将氧化铝(Al2O3)与包括不锈钢在内的各种金属接合。就纯度和密度而言,对钎焊循环和氧化铝质量的仔细控制在确定组件的最终性能方面起着至关重要的作用。利用提出的技术,已经开发和制造了几种真空组件,其中最令人感兴趣的是与市场上可买到的信号连接器兼容并且能够在500°C或更高温度下工作的电气馈通。特别是,已经开发出一种全新的信号馈通模型,该模型将与Odu的Minisnap-Plug一起使用,并呈现氧化铝-不锈钢接头,并在实验室中进行了全面测试。其性能已在700摄氏度以上的温度下得到验证,温度变化高达10摄氏度/分钟。这些馈通的最新版本在高达650°C的温度下显示出良好的真空密封性和可靠性,因此比市售的大多数馈通具有更好的特性。除了在工作台上进行测试之外,一些馈通装置还用于核聚变实验反向场实验(RFX)中,没有任何降解或老化的迹象。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:5]

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