Pneumatic Aggregate Sample Device
20220268668 ยท 2022-08-25
Inventors
Cpc classification
International classification
Abstract
The present invention comprises an aggregate sample device comprising an air compression system mounted to one side of an aggregate conveyor belt frame. Mounted on the opposite side of the conveyor is a crossover housing that is joined to a discharge chute. The compression system is comprised of a compressor that charges an air tank. Projecting out of the air tank is a air discharge line that has on its terminal head a nozzle which is inserted into an aperture located in an end plate of the crossover housing such that the nozzle is in direct proximity to aggregate traveling on an aggregate conveyor. The compression system is charged such that the air tank reaches an ideal pressure and then an operator deploys a switch which releases a volume of air at high pressure such that a sample of aggregate on the conveyor is blown off the conveyor, constrained by the crossover housing and directed into the discharge chute where the aggregate is directed downward into a sample receptacle.
Claims
1. A pneumatic aggregate sampling system comprising: an air compression storage system comprising a power source, a motor, an air compressor and a tank whereby air is introduced into the tank for storage; a threaded aperture in the tank whereby there is an air discharge line that is connected to the threaded aperture in the tank and a high speed gate valve in line with the air discharge line and a nozzle located at a terminal end of the air discharge line; a crossover housing having a top plate, side plates and an end plate mountable to a belt conveyor sub-frame such that it is positioned directly above a belt conveyor that is conveying an aggregate material; a crossover housing aperture located in the end plate of the crossover housing that is adapted to receive the nozzle that is connected to the air tank; and a vertical discharge chute connected to the crossover housing located on the opposite side of the belt conveyor from the air compression storage system.
2. The pneumatic aggregate sampling system of claim 1 whereby the nozzle tapers down from where it is connected to the air discharge line to its terminal end and the terminal end of the nozzle is wider than it is tall.
3. The pneumatic aggregate sampling system of claim 2 whereby the air compression storage system is housed and supported by a sub-assembly frame further comprising a bottom plate, two side plates, a back plate and a top plate whereby the side plates have arms that extend upwards.
4. The pneumatic aggregate sampling system of claim 3 where the air tank has a circular flange with bolt apertures mounted on either end of the air tank and said bolt apertures correspond to curvilinear slots located in the upper regions of the side plate arms of the sub-assembly frame such that the tank can be mounted in between the side plate arms.
5. The pneumatic aggregate sampling system of claim 4 whereby the curvilinear slots allow the tank to be rotated five degrees to precisely mount the tank to adapt to various conveyor belt systems.
6. The pneumatic aggregate sampling system of claim 1 whereby the air tank has a 30 gallon capacity, the pressure is set to 150 pounds per square inch and the amount of time the high speed gate valve stays open is two seconds when the air compression system is actuated.
7. The pneumatic aggregate sampling system of claim 1 further comprising an electronic pressure regulating switch that sets the air tank pressure.
8. The pneumatic aggregate sampling system of claim 7 further comprising a long-range transmitter and receiver connected to the high-speed dump valve such that the pneumatic aggregate sampling system can be operated remotely.
9. The pneumatic aggregate sampling system of claim 1 further comprising a back plate in the interior of the crossover housing that is perpendicular to the top plate and side plates and extends downwards and directly over the nozzle and the crossover housing aperture to prevent blowback of aggregate on an operator.
10. The pneumatic aggregate sampling system of claim 1 further comprising an impact curtain that extends downward from the top of the discharge chute and directly adjacent to the conveyor belt.
11. The pneumatic aggregate sampling system of claim 1 further comprising rubber skirts that are locate on both of the crossover housing sides plates and extend downwards to the conveyor belt.
12. A pneumatic aggregate sampling system comprising: an air nozzle adjacent to a conveyor belt that is carrying aggregate whereby said air nozzle supplies a high pressure burst of air into a crossover housing having a top plate, side plates and an end plate whereby said crossover housing is mountable to a belt conveyor sub-frame such that it is positioned directly above a belt conveyor that is conveying an aggregate material; a crossover housing aperture located in the end plate of the crossover housing that is adapted to receive the nozzle that is connected to an air supply line; and a vertical discharge chute connected to the crossover housing located on the opposite side of the belt conveyor from the air compression storage system.
13. The pneumatic aggregate sampling system of claim 12 whereby the nozzle tapers down from where its connection with the air supply line to its terminal end and the terminal end of the nozzle is wider than it is tall.
14. The pneumatic aggregate sampling system of claim 13 further comprising an electronically controlled high speed gate valve in line on the air supply line located before the air supply line reaches the nozzle.
15. The pneumatic aggregate sampling system of claim 14 further comprising a back plate in the interior of the crossover housing that is perpendicular to the top plate and side plates and extends downwards and directly over the nozzle and the crossover housing aperture to prevent blowback of aggregate on an operator.
16. The pneumatic aggregate sampling system of claim 15 further comprising an impact curtain that extends downward from the top of the discharge chute and directly adjacent to the conveyor belt.
17. The pneumatic aggregate sampling system of claim 16 further comprising rubber skirts that are locate on both of the crossover housing sides plates and extend downwards to the conveyor belt.
18. A method for sampling the size of aggregate traveling on a conveyor belt comprising the steps of: providing a pneumatic aggregate sampling system further comprising an air nozzle adjacent to a conveyor belt that is carrying aggregate whereby said air nozzle supplies a high pressure burst of air into a crossover housing having a top plate, side plates and an end plate whereby said crossover housing is mountable to a belt conveyor sub-frame such that it is positioned directly above a belt conveyor that is conveying an aggregate material and a crossover housing aperture located in the end plate of the crossover housing that is adapted to receive the nozzle that is connected to an air supply line and a vertical discharge chute connected to the crossover housing located on the opposite side of the belt conveyor from the air nozzle; attaching and positioning said pneumatic aggregate sampling system onto a conveyor belt sub-frame; placing a sampling bin underneath the discharge chute; operating an electronically controlled high speed gate valve in line on the air supply line located before the air supply line reaches the nozzle such that a sample of aggregate is blown off the conveyor belt and into the sampling bin; and retrieving the sample of aggregate to test for size consistency.
19. The method of claim 18 further comprising the step of providing a localized air compression storage system comprising a power source, a motor, an air compressor and a tank whereby air is introduced into the tank for storage and a threaded aperture located in the tank whereby the air supply line that is connected to the threaded aperture in the tank and the high speed gate valve is in line with the air supply line and the nozzle is located at a terminal end of the air supply line and the air compression storage system is housed in and supported by a sub-assembly frame further comprising a bottom plate, two side plates, a back plate and a top plate whereby the side plates have arms that extend upwards.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0016] Referring now to
[0017] Turning now to
[0018] Referring now to
[0019] Also shown in
[0020] Also shown in
[0021] The discharge chute 68, crossover housing 52 and compression system sub-assembly 12 are made of metal and preferably steel. The pneumatic aggregate sample device saves aggregate producers time, money, and man-power by drastically reducing the amount of time testing of aggregate sample size has taken up to this point.
[0022] The principles, embodiments, and modes of operation of the present invention have been set forth in the foregoing specification. The embodiments disclosed herein should be interpreted as illustrating the present invention and not as restricting it. The foregoing disclosure is not intended to limit the range of equivalent structure available to a person of ordinary skill in the art in any way, but rather to expand the range of equivalent structures in ways not previously contemplated. Numerous variations and changes can be made to the foregoing illustrative embodiments without departing from the scope and spirit of the present invention.
ENUMERATED ELEMENTS OF THE INVENTION
[0023] 10 Aggregate sample device [0024] 12 Compression system sub-assembly frame [0025] 12a Side plate [0026] 12b Bottom plate [0027] 12c Back plate [0028] 12d Top plate [0029] 14 Tank mount arms [0030] 15 Mounting slots [0031] 16 Compression system [0032] 18 Compression system housing [0033] 20 Motor [0034] 22 Two stage compressor [0035] 24 Air supply line [0036] 26 Power Source [0037] 28 Electronic pressure regulator [0038] 30 Pressure gauges [0039] 32 Tank pressure line [0040] 34 Air tank [0041] 35 Mounting flange [0042] 36 Drain valve [0043] 38 Air discharge line [0044] 40 Threaded aperture in tank [0045] 42 High speed gate valve [0046] 44 Electrical wire [0047] 45 Receiver for remote operation [0048] 46 Pressure switch [0049] 48 Nozzle [0050] 50 Control panel [0051] 51 Channel unit [0052] 52 Crossover housing [0053] 54 Top plate [0054] 56 Side plates [0055] 58 End plate [0056] 60 Housing aperture for nozzle [0057] 62 Rubber skirts [0058] 64 Back plate [0059] 66 Impact curtain [0060] 68 Discharge chute [0061] 70 Slope plate [0062] 72 Aggregate conveyor [0063] 74 conveyor belt [0064] 76 conveyor frame [0065] 78 aggregate