COMPRESSED-AIR-OPERATED EXPULSION DEVICE
20210308849 ยท 2021-10-07
Inventors
Cpc classification
B25C1/043
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a pneumatic expulsion device (10) for expelling objects (14) or fluid substances from a reservoir by means of a drive piston (18) which is subjectable to a gas volume compressible in a compression chamber (23), the drive piston (18) being provided with a drive mechanism for compressing the gas volume and with a trigger for expanding the compressed gas volume. The compression chamber (23) is provided with a relief mechanism for temporarily venting the compression chamber (23) and with a filling mechanism (41) for filling the vented compression chamber (23) with compressed air.
Claims
1. A pneumatic expulsion device (10) for expelling objects (14) or fluid substances from a reservoir by means of a drive piston (18) which is subjectable to a gas volume compressible in a compression chamber (23), the drive piston (18) being provided with a drive mechanism (26) for compressing the gas volume and with a trigger for expanding the compressed gas volume, characterized in that the compression chamber (23) is provided with a relief mechanism (37) for temporarily venting the compression chamber (23) and with a filling mechanism (41) for filling the vented compression chamber (23) with compressed air.
2. The pneumatic expulsion device according to claim 1, characterized in that the filling mechanism (41) has a connecting device (43) which is connected to the compression chamber (23) and which serves to be connected to a compressed air source.
3. The pneumatic expulsion device according to claim 2, characterized in that the compressed air source is a replaceable compressed air cylinder (45) which is connected to the connection mechanism (43).
4. The pneumatic expulsion device according to claim 2, characterized in that the connection mechanism (43) has a pressure reducer (46).
5. The pneumatic expulsion device according to claim 1, characterized in that the drive mechanism (26) has a rotation drive member (27) which is engaged to a linear drive member (28) which is an expulsion plunger (19), acts on the drive piston (18), and is accommodated in a linear guide (20), the drive mechanism (26) being detachably connected to a cylinder unit (17), which forms the compression chamber (23), via a piston stopper (24).
Description
[0016] Hereinafter, a preferred embodiment of the invention will be explained in more detail with reference to the drawing.
[0017]
[0018]
[0019]
[0020]
[0021]
[0022] Expulsion unit 13 has a drive piston 18 which is disposed in a cylinder unit 17 and which is provided with an expulsion plunger 19 guided on a linear guide 20 which simultaneously forms a cylinder bottom 22 of cylinder unit 17, cylinder bottom 22 being provided with a plunger opening 21.
[0023] A piston stopper 24 forming a lower stop position of drive piston 18, which is illustrated in its top dead center position in
[0024] As illustrated in
[0025] As shown in
[0026] For triggering the expulsion in a defined manner, expulsion device 10 has a trigger 36 (
[0027] As shown in
[0028] Filling mechanism 41 has a connection mechanism 43 which is connected to compression chamber 23 via a filling opening 42 and to which a replaceable compressed air cylinder 45 can be connected via a filling valve 44. Compression chamber 23 is provided with a pressure gauge 47 for monitoring the filling pressure in compression chamber 23.
[0029] In the case at hand, connection mechanism 43 is provided with a pressure reducer 46, allowing compressed air cylinder 45, which preferably has a filling pressure of 300 bar, to be connected via filling valve 44, and pressure reducer 46, which is preferably sellable, allowing a filling pressure of about 23 bar suitable for filling compression chamber 23 to be set.
[0030] As can be seen from a comparison of