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Improvements in and relating to sound transmitting and receiving apparatus particularly applicable in navigation to recording depths or distances

机译:声音发送和接收设备的改进以及与之相关的改进,尤其适用于导航到记录深度或距离的导航

摘要

329,403. Murray, A. J. L., and Shuttle worth, N. Feb. 23, 1929. Recording signals. -In subsubmarine echo-sounding apparatus the receiver operates, through thermionic valve amplfying apparatus, electro-chemical recording apparatus to obtain a continuous record of depths or distances. The invention is described with reference to depth-sounding apparatus of the type set forth in Specification 236,601. Referring to Fig. 1 (Prov.), a sound transmitter A emits a highly damped impulse each time a pair of contact fingers X, Y are insulated by a segment on a rotating drum T. The receiver C is connected to telephones I which are short-circuited by adjustable brushes X1, Y1, excepting when the latter are on an insulated segment of the rotating drum R. The receiving circuit is connected to an amplifier H, the telephones being cut-out when desired by a switch E. The recording apparatus comprises a metal drum G rotated with the transmitting drum T, and a stylus P caused to advance along the axis of the drum by bevel gearing L, N and a screw W. The drum G is insulated from the main driving mechanism, and has one connection from the amplifier connected to it, the other connection being to the stylus P, which is also insulated. The surface of the drum is covered with chemically prepared paper, upon which the sound waves travelling directly to the receiver when the transmitter A operates make a mark electrolytically, the waves reflected from the sea bed making a second mark on the paper. A continuous record of depths is thus obtained. Several graphs may be recorded on the same paper by providing additional insulated segments in the transmitting and receiving drums T, R, or, by gearing, causing these two drums to rotate at some speed which is a multiple of that of the recording drum G. In a modification, Fig. 2 (Prov.), the recording drum G is stationary, and the stylus P rotates round it, being carried in a semi-circular frame mounted on screwed shafts W carried at one end by a disc M connected by an insulated coupling 0 to the main driving mechanism. At their opposite ends, the screwed shafts rotate in insulated bearings in the transmitting drum T. As the stylus moves round the drum G it is given a longitudinal motion by the engagement of insulated planet wheels N2 with a stationary sun wheel N1. A two-pole switch F is used to connect the receiver either to the recorder alone or to the telephones and recorder. In modified methods of recording, the sensitized paper may be in strip form and moved at a rate controlled by the ship's log or propellers and the stylus may reciprocate across the paper. An alternative form of continuous recorder is shown in Fig. 1 (Comp.). The sensitized paper passes from a roll A between a roller B and a compression roller C, over a driving roller E and between the reverse side of roller B and a second compression roller D. The rollers B, C, D are carried by a frame hinged on a shaft Q. The sensitizing solution (consisting of a 5 per cent solution of potassium iodide and a 2 per cent solution of starch) may be applied to the paper just before it reaches the roller E, or the paper may be previously sensitized and moistened with water before reaching the roller E. Two insulated pulleys F, G are driven with the roller and axe connected by a metal band J carrying a series of equally-spaced stylus pens P. The circumference of the pulley G is a whole multiple of the spacing between the pens P, which spacing may be equal to the width of the paper. The back of the paper is metallized. The recording current is led to the pens through a brush L contacting with the pulley F and returns through a brush N contacting with the roller B. The fingers X, Y controlling the transmitter are operated from the pulley G, an impulse being emitted just as each pen P touches the paper. A heating element may be placed below the roller E. The apparatus may be adapted for various ranges of soundings by varying the speed of the driving means and by varying the sensitivity of the amplifier. This latter variation may be made automatic by a relay which, when the signal strength is excessive, moves the contact of a resistance or an inductance. The sensitized paper may be ruled' so that depths can be read directly, or a transparent scale may be placed in front of it.
机译:329,403。 Murray,A。J. L.和Shuttleworth,1929年2月23日,N.。记录信号。 -在潜水艇回声测深仪中,接收器通过热电子阀放大设备操作电化学记录设备,以获得深度或距离的连续记录。参照说明书236,601中所述类型的测深仪描述本发明。参见图1(上),每当一对接触指X,Y被转鼓T上的一段绝缘时,声音发射器A发出高阻尼的脉冲。接收器C连接到电话I,电话I可调电刷X1,Y1短路,但后者在转鼓R的绝缘部分上时除外。接收电路连接到放大器H,需要时通过开关E切断电话。录音该装置包括与传动鼓T一起旋转的金属鼓G,以及由锥齿轮L,N和螺钉W使触针P沿着鼓的轴线前进的鼓。鼓G与主驱动机构绝缘,并且具有放大器所连接的一个连接是它,另一个是绝缘的触控笔P。滚筒的表面覆盖有化学处理过的纸,当发射器A操作时,直接传播到接收器的声波在电解膜上形成标记,从海床反射的波在纸上形成第二标记。由此获得深度的连续记录。通过在发送和接收鼓T,R中提供其他绝缘段,或通过齿轮传动,使这两个鼓以某些速度旋转,可以将几张图表记录在同一张纸上,该速度是记录鼓G的倍数。在图2(Prov。)的一种变型中,记录鼓G是静止的,并且触控笔P绕其旋转,并被安装在半圆形框架中,该半圆形框架被安装在由连接有光盘M的一端固定的螺杆W上。与主驱动机构的绝缘联轴器0。丝杠轴在其相对端在传动鼓T的绝缘轴承中旋转。随着测针绕着鼓G的运动,绝缘行星齿轮N2与固定太阳轮N1的啮合会产生纵向运动。两极开关F用于将接收器单独连接到录音机或电话和录音机。在改进的记录方法中,敏化纸可以呈条状,并以受船上原木或螺旋桨控制的速率移动,并且测针可以在纸上往复运动。连续记录器的另一种形式如图1(比较)所示。感光纸从辊A穿过辊B与压缩辊C之间,驱动辊E上方以及辊B的反面与第二压缩辊D之间。辊B,C,D由框架承载敏化溶液(由5%的碘化钾溶液和2%的淀粉溶液组成)可以在纸张到达辊E之前就涂在它上面,或者也可以事先对纸张进行敏化。并在到达滚筒E之前用水浸湿。两个绝缘的皮带轮F,G被驱动,并且滚筒和轴由金属带J连接,金属带J承载一系列等距的触控笔P。皮带轮G的圆周是整数倍笔P之间的间距的一半,该间距可以等于纸的宽度。纸的背面已金属化。记录电流通过与皮带轮F接触的刷子L引导到笔,并通过与滚筒B接触的刷子N返回。控制发送器的手指X,Y从皮带轮G上操作,发出的脉冲与每支笔P接触纸张。可以将加热元件放置在辊E下方。通过改变驱动装置的速度并通过改变放大器的灵敏度,该设备可以适用于各种探测范围。后者可以通过继电器自动实现,当信号强度过大时,继电器会移动电阻或电感的触点。可以对敏化的纸进行裁切,以便可以直接读取深度,或者可以在其前面放置透明的刻度尺。

著录项

  • 公开/公告号GB329403A

    专利类型

  • 公开/公告日1930-05-22

    原文格式PDF

  • 申请/专利权人 ARTHUR JOHN LAYARD MURRAY;NEWTON SHUTTLEWORTH;

    申请/专利号GB19290006055

  • 发明设计人

    申请日1929-02-23

  • 分类号G01S1/72;

  • 国家 GB

  • 入库时间 2022-08-24 08:54:06

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