INHIBITED OXIDISER OR INHIBITED EXPLOSIVE FOR USE IN REACTIVE GROUND
20230280142 ยท 2023-09-07
Assignee
Inventors
- Nicholas Grant Bodley (Wembley Downs, AU)
- Drew Anthony Martin (Kewdale, AU)
- Marjana Kaker (City Beach, AU)
- Jeffrey Richard Andrew Anderson (Stockton, AU)
Cpc classification
F42D5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42D1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An apparatus and method for converting uninhibited bulk explosives or oxidiser into inhibited bulk explosives or oxidiser on demand. The apparatus disperses an inhibitor into a stream of bulk explosive/oxidiser during the conveyance between an explosive truck and a blast hole or in preparation of a bulk oxidiser for use in a bulk explosive vehicle.
Claims
1. An apparatus for selectively outputting either one at a time of two alternative outputs, the alternative outputs consisting of: an uninhibited bulk explosive or oxidiser and an inhibited bulk explosive or oxidiser comprising: an outlet for streaming an output of bulk explosive; and one or more dispersion means for adding, or not adding, an inhibitor on demand into a stream of uninhibited bulk explosive exiting the outlet so as to convert uninhibited bulk explosive into inhibited bulk explosive when the inhibitor is added during output of the bulk.
2. An apparatus for selectively outputting either one at a time of two alternative outputs, the alternative outputs consisting of: an uninhibited bulk explosive oxidiser and an inhibited bulk explosive oxidiser, the apparatus comprising: an outlet for streaming an output of bulk explosive oxidiser; and a dispersion means for adding, or not adding an inhibitor on demand into a stream of uninhibited bulk explosive oxidiser exiting the outlet so as to convert uninhibited bulk explosive oxidiser into inhibited bulk explosive oxidiser when the inhibitor is added during output of the bulk explosive oxidiser.
3. An apparatus according to claim 12, wherein the inhibitor added is or substantially is dry.
4. An apparatus according to claim 1, wherein the dispersion means is adjacent to or at the outlet.
5. An apparatus according to claim 1, wherein the dispersion means is upstream of the outlet.
6. An apparatus according to claim 5, wherein the uninhibited bulk explosive or oxidiser and the inhibited bulk explosive or oxidiser further comprises a feed to the dispersion means.
7. An apparatus according to claim 1, wherein the dispersion means comprises a control means for feeding the inhibitor to the dispersion means on demand.
8. An apparatus according to claim 7, wherein the control means comprises a valve.
9. A vehicle for producing an inhibited bulk explosive at the site of use of the inhibited bulk explosive, the vehicle comprising: a storage for carrying inhibited bulk explosive oxidizer and a storage for the least one other ingredient to the site of a blast hole and a dispersion means for adding the least one other ingredient into a stream of inhibited bulk explosive oxidiser from the storage so as to convert the stream of inhibited bulk explosive oxidiser into a stream of inhibited bulk explosive for insertion into a blast hole.
10. A vehicle according to claim 9, wherein the dispersion means is configured for inhibited bulk explosive oxidiser that is in a dry or substantially dry form.
11. A device for selectively outputting either one at a time of two alternative outputs, the alternative outputs consisting of: an uninhibited bulk explosive and an inhibited bulk explosive, the device comprising: a conduit for streaming of a bulk explosive from a receptacle into a blast hole; the conduit in operative association with means for selectively adding, or not adding, an inhibitor on demand to the stream such that when added the uninhibited bulk explosive is converted to an inhibited bulk explosive.
12. A device according to claim 11, wherein the inhibitor is added directly into the stream.
13. A method for selectively outputting either one at a time of two alternative outputs, the alternative outputs consisting of: an uninhibited bulk explosive and an inhibited bulk explosive for insertion into a blast hole comprising: streaming uninhibited bulk explosive from an outlet; and adding, or not adding, an inhibitor on demand into the stream of uninhibited bulk explosive at the blast hole such that when added the uninhibited bulk explosive is converted to an inhibited bulk explosive.
14. The method of claim 13, wherein the uninhibited bulk explosive is streamed from the outlet directly into the blast hole.
15. A method for outputting an inhibited bulk explosive comprising: conveying inhibited bulk explosive oxidiser and fuel oil to the site of a blast hole; streaming inhibited bulk oxidiser from an outlet; and adding fuel oil into the stream of inhibited explosive oxidiser so as to produce a stream of inhibited bulk explosive into the blast hole.
16. A method according to claim 15, wherein the fuel oil is added into the stream as the inhibited bulk oxidiser is streamed from the outlet directly into the blast hole.
17. An apparatus according to claim 1 wherein, the output streams bulk explosive directly into the blast hole.
18. A vehicle according to claim 9, wherein the stream of inhibited bulk explosive is output directly into the blast hole.
19. A vehicle according to claim 9, further comprising a controller for adding the other ingredient to the stream of the inhibited bulk explosive oxidizer in a controlled manner to produce inhibited explosive on demand as it is inserted into the blast hole.
Description
DESCRIPTION OF DRAWINGS
[0046] In order to provide a better understanding of the present invention embodiments will now be described may be described, by way of example only, with reference to the drawings, in which:
[0047]
[0048]
[0049]
[0050]
DETAILED DESCRIPTION
[0051] Referring to
[0052] Referring to
[0053] The on demand ability in this embodiment is apparent when the crusher 32 is turned on or off or when inhibitor 30 is inserted into the feed 31 or left empty. In the instance where the rotary or conical crusher 32 is turned on and the feed 19 has inhibitor 30 loaded and available for dispersion, the inhibitor 30 will be dispersed by the dispersion means into the stream of uninhibited bulk explosives at the transfer junction 34 to convert the stream of uninhibited bulk oxidiser 28 to a stream of inhibited bulk explosive 36 for insertion into the blast hole. In the instance that the rotary, jaw, pin, conical or crusher of any sort 32 is turned off or there is no inhibitor 30 inserted into the feed 31, a negligible amount or no inhibitor 30 will be added by the dispersion means throughout the stream of uninhibited bulk explosive 28 at the transfer junction 34. Negligible in this context means substantially low such that it is unable to convert the stream of uninhibited bulk oxidiser 28 into a stream of inhibited bulk explosive 36. Accordingly, a stream of uninhibited bulk oxidiser 28 or a stream of inhibited bulk explosive 36 can be produced without needing to dose the uninhibited bulk oxidiser 28 prior to arriving at site or on site converting the entire supply of uninhibited bulk oxidiser 28 to an inhibited bulk explosive 36. Using inhibitor 30 to convert the uninhibited bulk oxidiser 28 stream to an inhibited bulk explosive stream could be selectively done only on blast holes which contain reactive ground. Otherwise the stored uninhibited bulk oxidiser 28 will be used for blast holes that do not contain reactive ground.
[0054] It should be appreciated by the skilled address that there are various other methods for producing the on demand feature. For example, a valve could separate the feed 31 with the inhibitor 30 from each of a dispersion means such that the valve can be opened or close. The valve in the open position would allow dispersion of the inhibitor 30 into the stream of uninhibited bulk oxidiser 28 converting it into a stream of inhibited bulk oxidiser 36. The valve in the closed position would not provide inhibitor 30 through the dispersion means preventing the uninhibited bulk oxidiser 28 from converting to an inhibited bulk oxidiser 36 as it is streamed through the transfer junction 34, which is in operative association with the apparatus 46, and then fuel oil can be added to form bulk explosive for insertion into the blast hole.
[0055] Referring to
[0056] Referring to
[0057] A first dispersion point disperses the inhibitor 30 from a transfer hose 44 with the assistance of gravity, pneumatically or by some other means 42 to a dispersion means located at the rear transfer 20. A second dispersion point disperses inhibitor 30 from the transfer hose 44 to a dispersion means located at the transfer junction 34. A third dispersion point disperses inhibitor 30 from the transfer hose 44 to a dispersion means at a point between the transfer junction 34 and the swivel 24. A fourth dispersion point disperses the inhibitor 30 from the transfer hose 44 to a dispersion means at the output 18.
[0058] The skilled addressee will appreciate that other suitable points for adding or locating dispersing means for adding inhibitor 30 to the stream of uninhibited bulk oxidiser 28 or a stream of uninhibited bulk oxidiser 28 in the process of being converted to a stream of inhibited bulk explosive 36 are envisaged in this invention. Furthermore, the skilled addressee will also appreciate that the invention anticipates any number of dispersion means being added to the system for selectively adding inhibitor 30 to the stream of uninhibited bulk oxidiser 28 or a stream of uninhibited bulk oxidiser 28 in the process of being converted to a stream of inhibited bulk explosive 36.
[0059] The skilled person will also appreciate that the inhibitor may be in granular, power, emulsion or dissolved liquid form. Preferably it will be in granular form.
[0060] Modifications may be made to the present invention within the context of that described and shown in the drawings. Such modifications are intended to form part of the invention described in this specification.