AU699877B2 - Apparatus for the production of a GUF field and method of using same - Google Patents

Apparatus for the production of a GUF field and method of using same Download PDF

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Publication number
AU699877B2
AU699877B2 AU50342/96A AU5034296A AU699877B2 AU 699877 B2 AU699877 B2 AU 699877B2 AU 50342/96 A AU50342/96 A AU 50342/96A AU 5034296 A AU5034296 A AU 5034296A AU 699877 B2 AU699877 B2 AU 699877B2
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Prior art keywords
exciter
field
coils
coil
rod
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AU5034296A (en
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Lionel Gordon Johnston
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Priority claimed from AUPN1985A external-priority patent/AUPN198595A0/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

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Description

I
-2- The present invention relates to an apparatus for the production of a GUF field and methods of using same. More particularly, the apparatus and methods of the present invention are intended for use in isolation, extraction and separation of noble and base metals from their ores.
The present invention provides an apparatus for the production of a GUF field comprising a plurality of substantially annular coils, an elongate exciter rod and a frame for positioning the annular coils relative to each other and the exciter rod relative thereto, wherein the plurality of substantially annular coils comprise at least one of each of an exciter coil, a secondary coil and a primary coil, the exciter coil, secondary coil and primary coil being arranged in a spaced apart *but concentric manner, and the exciter rod is provided so as to pass substantially centrally through the or each exciter, secondary and primary coil.
Preferably, a detector coil is provided in addition to the or each excitor coil, secondary coil and primary coil.
*t S 15 The frame is preferably provided with adjustable legs allowing adjustable *,support of the exciter, secondary and primary coils relative to each other. The frame may further have provided an exciter tube to accept therein the exciter rod in a movable manner.
Still preferably, the plurality of substantially annular coils may comprise a primary coil, a secondary coil spaced either side thereof and two exciter coils spaced either side of the primary coil but further away therefrom than the secondary coils. The primary coil is preferably of a greater diameter than the or each secondary coil, the secondary coil being of greater diameter than the or each exciter coil.
The coils are preferably formed from annular toroids, the toroids themselves being formed of Bakelite having wire wrapped thereabout and having insulation applied thereto. The exciter rod is preferably formed of an elongate rod about -3which has been wrapped a length of wire. A fragment of indium is preferably provided at one end of the exciter rod.
The apparatus preferably further comprises a form of PLC or other source of computing power. The PLC or its alternative drives four modules. In addition a control board or main frame may also be provided.
The apparatus of the present invention may still further comprise a plurality of collection plates for collection of noble and base metals.
The present invention further provides a method for the isolation, extraction and/or separation of noble and base metals comprising the steps of crushing an 10 ore, passing this crushed ore through a GUF field produced by the apparatus described hereinabove promoting the formation of MMP's (magnetic monopulse/magnetic mono-pull), passing the metal/MMP complexes past one or more collection plates having a neutralising field generated thereby and resulting in decay of the metal/MMP complexes for collection of the metal.
15 The present invention still further provides a method for the production of energy by use of the apparatus described hereinabove and increasing the magnetic S* field reverse flux therein and providing inductors inside the field, thereby allowing energy in the form of electricity to be drawn off the field.
p p The present invention will now be described, by way of example only, with reference to one embodiment thereof and the accompanying drawings in which: Fig. 1 is a schematic diagram representing one embodiment of an apparatus for the production of a GUF field and the extraction of base or noble metals from ores in accordance with the present invention; Fig. 2 is a plan view of various coils utilised in the apparatus of Fig. 1; -4- Fig. 3A is a top plan view of a frame for supporting the various coils of Fig. 2; and Fig. 3B is a side view of one leg of the frame of Fig. 3A showing therein adjustment means.
In Fig. 1 there is shown an apparatus 10 for the production of a GUF field comprising one primary annular coil 12, two secondary annular coils 14 and two exciter annular coils 16. The coils 12, 14 and 16 are arranged concentrically in relation to each other. The primary coil 12 is flanked by the two secondary coils .:14 which are in turn flanked by the exciter coils 16.
An exciter rod 18 is provided extending substantially co-axially through the coils 12, 14 and 16. The coils 12, 14 and 16 are depicted in Fig. 2. The primary coil 12 has an outer diameter of 60 cm and an inner diameter of 52 cm. The primary coil 12 further has provided thereabout an aluminium wire wrapping of 88 feet in length. The secondary coil 14 has an outer diameter of 40 cm and an inner diameter of 32 cm. The secondary coil 14 has provided thereabout an aluminium wire wrapping of 40 feet in length.
The exciter coil 16 has an outer diameter of 14 cm and an inner diameter of 6 cm. The exciter coil 16 has provided thereabout an aluminium wire wrapping of feet in length. The aluminium Wire wrapping of each of the coils 12, 14 and 16 results from the coils 12, 14 and 16 being formed of 10 mm thick Bakelite toroids. Each toroid is 40 mm wide and tightly wrapped in 3.2 mm diameter aluminium wire. The toroids are then wrapped in insulation tape. Two of the toroids have provided thereon adjusters 20, as shown in Fig. 1. Each adjuster has two wraps provided thereabout.
The exciter rod 18 is formed by wrapping insulated 3.2 mm diameter aluminium wire around an elongate rod at least 10 mm in diameter and at least 30 cm long.
One end, preferably the bottom end, of the elongate rod has a small fragment of indium provided thereat.
The apparatus 10 of Fig. 1 further comprises a plurality of collection plates 22.
The collection plates are formed of Bakelite and exceed 95 cm 2 in area. A detector coil 24 is further provided as are a control board 26, a computer 28 and an Atari Falcon "030" 30. The board 26, computer 28 and Atari 30 comprise a form of PLC (programmable logic controller) that governs the operation of the apparatus The preferred operating frequency and pulse frequency of the coils are recited below: ICOIL FREQUENCY PULSE w v Primary Coil (12) 38.3 Hz 2-16 ns at 120 ns intervals Secondary Coil 1 (14) 326.4 Hz 4-12 ns at 100 ns intervals Secondary Coil 2 (14) 326.5 Hz(rev pulse) 4-6 ns at 100 ns intervals Exciter Coil 1 (16) 153.2 Hz 20 ns at 200 ns intervals Exciter Coil 2 (16) 153.2 Hz The exciter rod 18 operates at 50,000 to 85,000 Volts DC. The pulse duration and frequency is accurately controlled by the PLC and in particular the Atari and control codes.
The apparatus 10 of the present invention further has associated therewith a striker 32 or starter connected to both the exciter rod 18 and primary coil 12, as shown in Fig. 1. A battery 34 is associated with the striker 32.
In Fig. 3A there is shown a multi-level frame 36 comprised of rack members or square frame members 38. The frame 36 is constructed of 35 mm PVC tubing and has corner members 40 able to fit about and move with respect to a leg 42, as shown in Fig. 3B. The square frame members 38 are preferably 90 cm square. The frame members 38 have cross members 44 provided therein and defining or holding therein a central exciter tube 46 through which the exciter rod 18 is movable.
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-6- Each leg 42 has adjustment means provided thereon in the form of apertures 48.
The apertures 48 allow adjustment of the height of the various frame members 38. The coils 12, 14 and 16 are supported on the frame members 38 and thereby the relative positions of the coils 12, 14 and 16 may be adjusted without the need to touch the coils 12, 14 and 16 or toroids from which they are formed.
The Generator is controlled by 4 modules each with 250 megabytes of memory and with 4 x 604 ppc cpu running at 100 MHz. These modules are in turned controlled by the computer 28 which in turned is then controlled by the Atari S• with a 68030 CPU running at 40 MHz, A 68882 FPU running at 50 MHz, and a 56001 DSP running at 50 MHz. The Control Data is passed from this computer 28 to the control modules from a 1 Giga byte SCSI Hard Drive. The running program and operating system equations are placed into RAM on the control modules using the Processing power of the Atari 30. When this information is sent it is converted to 604 machine code. Data is also sent from the control 15 modules to the Atari 30. This is used to keep a running and data log of the apparatus 10 in operation.
The program of the Atari 30 in accordance with the one embodiment of the present invention is described hereinafter recited as Example 1.
°°oo The operation of the apparatus 10 of the present invention may be described as follows. After setting up of the frame 36 in the desired position through manipulation of the frame members 38 with respect to the legs 42 a user (not shown) may connect the various wires interconnecting the components of the apparatus 10 as shown in Fig. 1.
The computer 28, Atari 30 and control board 26 are subsequently activated. The toroids are initialised with the exciter rod 18 and the Atari Falcon 30 initialisation program commenced. Data transfer is started between the program as shown in Example 1 and the control board 26. This results in a 340% flux particle detected by the detector coil 24.
Crushed ore, for example gold ore, is then passed under the collection plates 22.
Depending upon the concentration of gold (the minimum economic concentration of gold is 0.05 gm per ton) the plates 22 may be placed in a reverse field thereby releasing the gold. To shut down the apparatus 10 the exciter rod 18 is removed from the coils 12, 14 and 16.
The apparatus 10 of the present invention is very effective for isolation, extraction and separation of the noble metals which are namely gold, silver, platinum, osmium, iridium, rhodium and ruthenium. As the present invention works on a sub atomic level it will work on very low grade and very complex ore S* 10 which must be crushed down to at least the size of the metal bearing grains.
The metal bearing ore is passed through the field this is then acted on by the field causing metal/MMP's reaction since these combinations are only stable within the fields. A smaller field surrounds the collection plates 22. When the smaller fields are turned on, they very effectively neutralise the larger field 15 causing the metal/MMP complexes to decay and release the metal which may then be collected.
The apparatus 10 can be used to extract base metals such as copper, lead, zinc, nickel, thallium, mercury, cobalt. These metals are extracted in a similar method °°°that is used for noble metals and noted above.
By increasing the magnetic field reverse flux and having inductors inside the field, energy in the form of electricity can be drawn off the field. The amount of energy that can be withdrawn form the field is envisaged to be unlimited because when you withdraw energy the field the EMF replaces it.
The various basic formulae utilised in the control of the apparatus 10 and method of the present invention are recited hereinafter as Example 2.
The oscillating electrostatic field created within the powerful electro-magnetic and magnetic fields of the present invention cause field interactions which lead to the production of a pulsating GUF field. The pulsating GUF field produces on -8intense pulse of tachyons, mesons, neutrinos and MMP's. It is a feature of the present invention that the number and type of particles depend upon the frequency of the individual field. The PLC or its equivalent of the present invention allows careful control of the field strengths thereby allowing careful control of the production of particles.
Modifications and variations such as would be apparent to the skilled addressee are considered to fall within the scope of the present invention.
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41 FORUMULA'S USED WITH THE CONTROL OF EPGAS A Ricci's Tensor &62kV =cj< X1/ fi _F
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r> B. Energy Electromagnetic Equation C. Tensor for Symmetrical energy Flux
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4 4 CL pq)dd L 7 dr
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M Electromagnetic Variation Tenso r N Gravitional Variation Tensor V Txv" <p Xfq/A y) 43 o All Eguations and Tensors have the following propteries 2 A 2 P Energy Implusion Tensor Q Tachyon Gamma Factor where u2>c2
C
9**C 2/
Z
R Tachyon Energy- Momentum Relation -2 ZZ S Tachyon Lorentz Energy =-1.0228 mc- T Tachyonic ER Velocity Transformations d V x !S 7V 7- -44- The Claims defining the invention are as follows:- 1. An apparatus for the production of a GUF field comprising a plurality of substantially annular coils, an elongate exciter rod and a frame for positioning the annular coils relative to each other and the exciter rod relative thereto, wherein the plurality of substantially annular coils comprise at least one of each of an exciter coil, a secondary coil and a primary coil, the exciter coil, secondary coil and primary coil being arranged in a spaced apart but concentric manner, and the exciter rod is provided so as to pass substantially centrally through the or each exciter, secondary and primary coil.
An apparatus according to claim 1, wherein a detector coil is provided in addition to the or each exciter coil, secondary coil and primary coil.
9;"t 3. An apparatus according to claims 1 or 2, wherein the frame is provided with adjustable legs allowing adjustable support of the or each exciter coil, 15 secondary coil and primary coil relative to each other.
9 4. An apparatus according to any one of the preceding claims, wherein the frame has provided therein an exciter tube to accept therein the exciter rod in a movable manner.
An apparatus according to claim 1, wherein the plurality of substantially annular coils may comprise a primary coil, a secondary coil spaced either side thereof and two exciter coils spaced either side of the primary coil but further away therefrom than the secondary coils.
6. An apparatus according to any one of the preceding claims, wherein the primary coil is preferably of a greater diameter than the or each secondary coil, the secondary coil being of greater diameter than the or each exciter coil.

Claims (10)

  1. 7. An apparatus according to any one of the preceding claims, wherein the coils are preferably formed from annular toroids, the toroids themselves being formed of Bakelite having wire wrapped thereabout and having insulation applied thereto.
  2. 8. An apparatus according to any one of the preceding claims, wherein the exciter rod is preferably formed of an elongate rod about which has been wrapped a length of wire.
  3. 9. An apparatus according to claim 8, wherein a fragment of indium is provided at one end of the exciter rod. 10 10. An apparatus according to any one of the preceding claims, wherein the apparatus further comprises a form of PLC or other source of computing •power.
  4. 11. An apparatus according to claim 10, wherein the PLC or alternative source of computing power drives four modules. 0°
  5. 12. An apparatus according to claim 10 or 11, wherein a control board or main frame is also provided in connection with the PLC or alternative source of S Ue S°computing power. 55S5** U
  6. 13. An apparatus according to any one of the preceding claims, wherein a plurality of collection plates for collection of noble and base metals are provided therein.
  7. 14. A method for the isolation, extraction and/or separation of noble and base metals comprising the steps of crushing an ore, passing this crushed ore through a GUF field produced by an apparatus according to any one of claims 1 to 13 and thereby promoting the formation of metal/MMP (magnetic mono-pulse/magnetic mono-pull) complexes, passing the metal/MMP Jt. b .complexes past one or more collection plates having a neutralising field -46- generated thereby and resulting in decay of the metal/MMP complexes for collection of the metal. A method for the production of energy by use of the apparatus according to any one of claims 1 to 13, wherein a magnetic field reverse flux is increased therein and inductors are provided inside the field thereby allowing energy in the form of electricity to be drawn off the field.
  8. 16. An apparatus substantially as hereinbefore described with reference to Figures. 1, 2 and 3.
  9. 17. A method for the isolation, extraction and/or separation of noble and base metals substantially as hereinbefore described with reference to Figures. 1, 2 and 3.
  10. 18. A method for the production of energy substantially as hereinbefore described with reference to Figures. 1, 2 and 3. Perth, Western Dated this nineteenth day of October 1998. Patent Attorneys for the Applicant LIONEL GORDON JOHNSTON Applicant Wray Associates Perth, Western Australia Patent Attorneys for the Applicant ABSTRACT Apparatus (10) for the production of a GUF field and method of using same, the apparatus (10) comprising a plurality of substantially annular coils (12, 14, 16), an elongate exciter rod (18) and a frame (36) for positioning the annular coils (12, 14, 16) relative to each other and the exciter rod (18) relative thereto. The plurality of substantially annular coils comprise at least one of each of an exciter coil a secondary coil (14) and a primary coil (12). 4a S a. a 0
AU50342/96A 1995-03-27 1996-03-27 Apparatus for the production of a GUF field and method of using same Ceased AU699877B2 (en)

Priority Applications (1)

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AUPN1985A AUPN198595A0 (en) 1995-03-27 1995-03-27 E.P.Gas
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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1572722A (en) * 1978-02-28 1980-08-06 Int Research & Dev Co Ltd Magnetic separator
US4253079A (en) * 1979-04-11 1981-02-24 Amnon Brosh Displacement transducers employing printed coil structures
US5415529A (en) * 1992-11-30 1995-05-16 Framatome Linear-induction electromagnetic machine with optimized magnetic flux distribution and use

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1572722A (en) * 1978-02-28 1980-08-06 Int Research & Dev Co Ltd Magnetic separator
US4253079A (en) * 1979-04-11 1981-02-24 Amnon Brosh Displacement transducers employing printed coil structures
US5415529A (en) * 1992-11-30 1995-05-16 Framatome Linear-induction electromagnetic machine with optimized magnetic flux distribution and use

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