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From ultrasonic to frequency standards: Walter Cady's discovery of the sharp resonance of crystals

机译:从超声波到频率标准:沃尔特·卡迪(Walter Cady)发现晶体的尖锐共振

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摘要

In 1918-1919 Walter G. Cady was the first to recognize the significant electrical consequences of the fact that piezoelectric crystals resonate at very sharp, precise and stable frequencies. Cady was also the first to suggest the employment of these properties, first as frequency standards and then to control frequencies of electric circuits-an essential component in electronic technology. Cady's discovery originated in the course of research on piezoelectric ultrasonic devices for submarine detection (sonar) during World War I. However, for the discovery Cady had to change his research programme to crystal resonance. This change followed Cady's experimental findings and the scientific curiosity that they raised, and was helped by the termination of the war. Cady's transition was also a move from "applied" research, aimed at improving a specific technology, to "pure" research lacking a clear practical aim. This article examines how Cady reached the discovery and his early ideas for its use. It shows that the discovery was not an instantaneous but a gradual achievement. It further suggests that disinterested "scientific" research (rather than "engineering" research) was needed in this process, while research aimed at design was required for the subsequent development of technological devices.
机译:在1918-1919年,沃尔特·卡迪(Walter G. Cady)第一个认识到压电晶体在非常尖锐,精确和稳定的频率下谐振的事实所带来的重大电后果。 Cady也是第一个建议采用这些特性的人,首先将其用作频率标准,然后再控制电路的频率-电子技术中的重要组成部分。 Cady的发现起源于第一次世界大战期间用于水下探测(声纳)的压电超声设备的研究过程。但是,由于这一发现,Cady不得不将其研究计划更改为晶体共振。这一变化是卡迪(Cady)的实验发现和他们提出的科学好奇心所致,战争的终止也对此有所帮助。 Cady的过渡也是从旨在改进特定技术的“应用”研究到缺乏明确实际目标的“纯”研究的转变。本文研究了卡迪如何实现这一发现及其使用的早期想法。它表明发现不是一个瞬时而是一个渐进的成就。它进一步表明,在此过程中需要无私的“科学”研究(而不是“工程”研究),而随后设计技术装置需要针对设计的研究。

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