A drop-type radiosonde catapult, catapult device and automatic delivery device
A technology of ejection device and radiosonde, which is applied in the direction of launcher, instrument, transportation and packaging, etc., can solve the problems of limited flying height, difficult manual operation, high cost of human and financial resources for detection, and achieve high versatility and convenient ejection Effect
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Embodiment 1
[0037]Such asFigure 1-Figure 3 As shown, a drop-down radiosonde projectile barrel of this embodiment includes a barrel body 1, an elastic member 3, and a clamping release assembly located in the barrel body 1. One end of the elastic member 3 is connected to the cylinder body 1, and the other end is connected to the push plate 27. The clamping release assembly is arranged along the axis of the cylinder body 1, and one side of the push plate 27 is connected to the push plate 27. The end of the clamp release assembly is clamped; the clamp release assembly is driven by the driving end of the ejection steering gear 107 to reciprocate along the axial direction of the barrel body 1 to clamp or release the push plate 27; Wherein, when the push plate 27 is clamped, the elastic member 3 is compressed. After the push plate 27 is released, the radiosonde in the cylinder body 1 is ejected under the action of the elastic member 3.
[0038]The ejection barrel of this embodiment can effectively eject ...
Embodiment 2
[0048]Such asFigure 4 As shown, an ejection device of this embodiment includes the radiosonde projectile barrel 105, the revolving frame wheel, the stepping motor 106, the ejection steering gear 107, and the release control system 110 described in Embodiment 1. The ejection barrel is A number of them are all installed in the rotating frame wheel along the direction of rotation perpendicular to the rotating frame wheel. The stepping motor 106 is connected to the rotating frame wheel and drives the rotating frame wheel to rotate to make any radiosonde The ejection barrel corresponds to the drive end of the ejection steering gear 107, and the drive end of the ejection steering gear 107 drives the chuck release assembly in the corresponding radiosonde ejection barrel to reciprocate, and the release control system 110 is used for After the drop-down radiosonde enters the launch state, the radiosonde is ejected out of the projectile barrel by controlling the connected ejection steering ge...
Embodiment 3
[0054]Such asFigure 1-Figure 5As shown, an automatic delivery device of this embodiment includes the ejection device described in Embodiment 2 and a pod cabin 400, the ejection device 100 is installed inside the pod 400, and the first supporting end cover , The second supporting end cover is fixed in the pod cabin body, the revolving frame wheel is coaxially arranged in the pod cabin body 400 and can rotate in the pod cabin body 400, the stepping motor 106, The ejection steering gear 107, the door steering gear 109 and the delivery control system 110 are respectively installed on the supporting end cover.
[0055]Specifically, when the pod control system issues an ejection command, it first controls the pod door servo to open the door, and when the door opening sensor detects that the door is opened in place, the ejection device starts to operate to eject the radiosonde ; When the radiosonde pops out smoothly, the door servo is turned off, and when the door close sensor detects that th...
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