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JPS57149422

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DESCRIPTION JPS57149422
BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view showing a prior art
example, and FIGS. 2 and 3 are views showing one embodiment of the present invention, and FIG.
2 is a perspective view showing the state in the air. 3 is a perspective view showing the state in
water. 1 ... vibration type sensor unit, 2 ... absorber, 3 ... support frame, 4a, 4b ... stringing.
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a support
mechanism for a vibration type sensor unit that receives underwater sound. In the vibration type
sensor unit, since the sensor unit itself needs to be shaken by receiving underwater sound, a
structure in which the sensor unit is supported on a support frame through an absorber such as
a comb is adopted. FIG. 1 is a perspective view showing a conventional support mechanism for
supporting such a vibration sensor unit. Reference numeral 1 denotes a vibration sensor unit,
and the vibration type sensor unit-12557 = P.theta. Through the lower part of the support frame
3 is supported. In this configuration, the vibration type wrench unit 1 is damped by the absorber
2, and when it receives underwater water in water, the vibration type sensor unit 1 itself vibrates
to receive underwater sound. However, the support mechanism with such a configuration must
be collected during a busy period so that the absorber does not cut by the wedge M of the
vibration 1311 sensor 1 N at Q%, and it is dropped from the air and the vibration type sensor is
When laying the unit in water, the vibration-type sensor unit has suffered from a drawback such
as damage to internal parts due to the vibration in the air by hitting the supporting frame. An
object of the present invention is to solve such a drawback. Therefore, by connecting the upper
part and the upper part of the vibration type center unit and the support frame with ten cables of
a predetermined length, the vibration of the vibration type sensor unit can be reduced. It is
characterized in that winter is suppressed to a certain range. The following is an example of a
tree draft according to Fig. 2 and Fig. 3: 61. 2 is an oblique 2-256 view showing the state in the
air, and FIG. 3 is a perspective view showing the state in the water, in which 1 is a vibration or
sensor unit, Reference numeral 2 denotes an absorber made of rubber or the like, and 3 denotes
04-05-2019
1
a support frame in which the vibration type sensor unit 1 is supported on the inner surface by
means of a plurality of absorbers 2. These are the same as those shown in FIG. In the present
proposal, one end of a plurality of tension cords 4a is connected to the upper part of the
vibration type sensor unit 1, and the other end is connected to the upper part of the support
frame 3. Further, one end of the tension cord 4b is connected to the lower part of the vibration
type sensor unit 1, and the other end is connected to the lower part of the support frame 3 to
form a support mechanism. In addition, the length of the tension cords 4a and 4b is the distance
between the upper portion of the vibration-type sensor unit 1 and the toe portion of the support
frame 3 and the lower portion of the vibration-type sensor unit 1 and the lower portion of the
support frame 3 It is longer than the distance between Next, the operation of the above-described
configuration will be described.
First, when the vibration type sensor unit 1 is dropped into the air, as shown in FIG. 2, the
vibration type sensor unit 1 is positioned below the position in water by its own weight in the
support frame 3-25. [Since the plurality of tension cords 4a on the partial side extend completely
and stick to each other, the motion of the vibration-type sensor unit 1 in the L direction and the
motion to the left and right are suppressed +1 r11. At this time, the tension cord 4b on the toe
side is loosened or extended when the F portion of the vibration type sensor unit 1 is shaken to
the left and right, and the fluctuation range is suppressed uniformly. As described above, in the
state in the air, the swing range of the vibration type sensor unit 1 is suppressed to a certain
range by the arches 4a and 4b, so the vibration type sensor unit 1 does not hit the support frame
3, and ) Can prevent damage to internal parts. Next, when the vibration-type sensor unit 1 lands
on the water and is laid in water, as shown in FIG. 3, the vibration-type sensor unit 1 moves to-[1]
rather than the position in the air, thereby the tension cord 4a In this state, the vibration% lj
sensor unit 1 is damped by the absorber 2 and can receive underwater sound (d). As described
above, the present invention is based on a vibration sensor unit, a part of a support frame, a -L
part of a support frame, and a lower part of a vibration type sensor knee-4 sas knit and a part of
a support frame Can be controlled to a certain range in either the air or in the water, so that they
can be restrained to a certain range, so that they can be transported or laid, etc. It is possible to
prevent the lightening of the absorber and to prevent damage to parts inside the vibration type
sensor unit.
04-05-2019
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