喇叭式扬声器设计中若干基本要求的定量探讨

F. Massa
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摘要

喇叭喇叭由于在相对较宽的频率范围内保持高效率的实际可能性而得到了广泛的商业应用。然而,这种扬声器的固有局限性并没有被普遍认识到,因为在电动力系统中选择常数时必须满足的特定关系也没有被认识到。本文讨论了单个扬声器覆盖整个再现范围的局限性。它显示了振动系统的组成部分之间必须保持的定量关系,以确保在所有频率下的最高效率。同时也说明了使用铝线音圈要获得一定的增益,必须满足一定的关系。除非满足这些条件,否则用铝代替铜可能会导致效率下降。本文还描述了为避免单喇叭扬声器的局限性而采用的各种方法,以覆盖广泛的再现范围,并最后描述了一种新的实验开发的扬声器,该扬声器采用两个完全独立的驱动元件安装在一个共同的磁性结构上;每个锥体喂养一个单独的角。这种复合结构的形状近似于一个直径5英尺、深2英尺、重量不到100磅的圆柱体。
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Horn-Type Loud Speakers-A Quantitative Discussion of Some Fundamental Requirements in Their Design
Horn loud speakers have found widespread commercial application due to their practical possibility of maintaining high efficiency over a relatively wide frequency range. The inherent limitations of such speakers are not generally recognized, however, as neither are the specific relations that must be satisfied in the choice of constants in the electrodynamic system. This paper discusses the limitations of a single speaker to cover the entire range of reproduction. It shows the quantitative relations that must be maintained between the components of the vibrating system in order to secure maximum efficiency at all frequencies. It also demonstrates that certain definite relations must be satisfied if one is to gain by the use of aluminum-wire voice coils. Unless these are satisfied, a loss in efficiency may occur by using aluminum instead of copper. The paper also describes various means that have been employed to avoid the limitations of the single-horn speaker to cover a wide range of reproduction, and concludes with a description of a new experimentally developed speaker employing two entirely separate driving elements mounted on a common magnetic structure; each cone feeding a separate horn. The composite structure takes the approximate form of a cylinder five feet in diameter, two feet deep, and weighs under 100 pounds.
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