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Advances in the Development of Missile Telemetry Test Sets: Utilizing 3D Printing for Rapid Prototyping and Manufacturing

机译:导弹遥测试验套装发展进展:利用3D打印进行快速原型制作和制造

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Functionally testing missiles in the All Up Round (AUR), a configuration that consists of a complete system packaged in its flight worthy state, requires the use of test sets along with constituent conformal equipment for interfacing. During developmental testing, telemetry (TM) sections are integrated within an AUR missile. These test sets monitor TM unit performance while maintaining form, fit, and function; therefore, resulting in complete data confidence. Initiating TM functional tests permit a capability in verifying that TM sections have been integrated properly. Safety being a priority, in order to attenuate RF radiation leakage while providing repeatable test capabilities in the near-field, antenna couplers are fabricated as a shielding interface between the user and radiating source and a coupling interface between an AUR missile and the test set. Generally, antenna couplers are composed of metallic bodies which require machine shop fabrication. The process of getting machined parts can take up to several months which can delay delivery schedules. With the availability of 3D printing capabilities and methods in metalizing various materials, a novel approach to fabricating antenna couplers has been explored. The use of modeling Software Packages (Computer Aided Design and Electromagnetic Solvers) and additive printing play key roles in reducing the development cycle time while saving costs, decreasing weight, and sustaining performance. This paper will detail the efforts using 3D printing capabilities in the development and fabrication of an antenna coupler with several examples cited herein.
机译:在功能上测试导弹(AUR)中,该配置包括在其飞行中包装的完整系统组成,要求使用测试集以及用于接口的组成集合设备。在发育测试期间,遥测(TM)部分集成在AUR导弹内。这些测试设置监控TM单元性能,同时保持形式,适合和功能;因此,导致完整的数据信心。启动TM功能测试允许验证TM部分已正确整合的功能。安全是优先权,为了衰减RF辐射泄漏,同时在近场提供可重复的测试能力,天线耦合器被制造为用户和辐射源之间的屏蔽接口以及AUR导弹和测试集之间的耦合界面。通常,天线耦合器由需要机器车间制造的金属体构成。获取机加工部件的过程可能需要多达几个月,可以延迟交付时间表。随着3D打印能力和在金属化各种材料的方法的可用性,已经探讨了制造天线耦合器的新方法。使用建模软件包(计算机辅助设计和电磁求解器)和添加剂印刷在降低开发循环时间的同时节省成本,减少重量和持续性能时的关键作用。本文将详细介绍在具有本文引用的几个例子的天线耦合器的开发和制造中使用3D打印能力的努力。

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