Welding of Electronic Modules for the Polaris Missile

G. Allen, J. Wettstein
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Abstract

Some time ago the potential value of welding electronic modules was recognized. An investigation was authorized to locate and solve the problems which would be encountered Jf this technique were to be applied to the electronic modules. This paper summarizes the status of findings to date, the number of problems still under investigation, and other subjects requiring study. Preparations have been made for the first production application of welding electronic modules. A welding specification OS 11889 has been released. This specification states the requirements of suitable welding machines and the criteria for certifying weld schedules and in-process and final inspection. Preliminary weld schedules have been developed which meet the broad requirements of the specification. The thousands of welds made and tested during the development of these schedules have served to field test the requirements and related conditions to current experience in industry. The investigations offer evidence that nickel, Dumet, and Kovar are weldable lead materials to nickel interconnecting media. To meet standards, separate weld schedules are required for each material size; moreover, variations in material composition and temper must be limited. Continuing study of other essential aspects of the problems are being pursued.
北极星导弹电子模块的焊接
不久前,人们认识到焊接电子模块的潜在价值。授权进行一项调查,以确定和解决如果将这种技术应用于电子模块将会遇到的问题。本文总结了迄今为止的研究成果、仍在研究的问题数量以及其他需要研究的课题。为焊接电子模块的首次生产应用做好了准备。焊接规范OS 11889已经发布。本规范规定了适用焊机的要求,以及焊接时间表、过程检验和最终检验的认证标准。已经制定了初步的焊接时间表,以满足规范的广泛要求。在这些时间表的制定过程中,成千上万的焊缝被制造和测试,用于现场测试要求和相关条件,以及当前的工业经验。研究提供了镍、Dumet和Kovar是可焊接的铅材料到镍互连介质的证据。为了符合标准,每种材料尺寸都需要单独的焊接时间表;此外,必须限制材料成分和回火的变化。目前正在继续研究这些问题的其他重要方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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