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US20190134670A1 - Material separation and conveyance using tuned waves - Google Patents

Material separation and conveyance using tuned waves
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Publication number
US20190134670A1
US20190134670A1US16/103,843US201816103843AUS2019134670A1US 20190134670 A1US20190134670 A1US 20190134670A1US 201816103843 AUS201816103843 AUS 201816103843AUS 2019134670 A1US2019134670 A1US 2019134670A1
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United States
Prior art keywords
controller
output device
modulated signals
signal
modulated
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US16/103,843
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Spencer Allen Miller
Reza Khoshnoodi
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Individual
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Individual
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Priority to US16/103,843priorityCriticalpatent/US20190134670A1/en
Publication of US20190134670A1publicationCriticalpatent/US20190134670A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

Systems, methods and computer readable media for material separation and conveying using tuned waves are disclosed.

Description

Claims (20)

What is claimed is:
1. A system comprising:
a controller programmed to separate materials using tuned waves;
an input device configured to measure material response to stimulation; and
an output device configured to generate tuned waves based on one or more control signals received from the controller.
2. The system ofclaim 1, wherein the controller is configured to provide independent control over output signals to each output device.
3. The system ofclaim 1, wherein the controller is configured to control one or more of a frequency, an amplitude, signal phasing, and signal duration of the one or more control signals.
4. The system ofclaim 1, further comprising a plate configured with a two-axis of inclination and disposed so as to communicate the tuned waves from the output devices.
5. The system ofclaim 1, wherein the controller is further configured to control one or more of fluid flow, fluid pressure, and fluid flow direction for wet material separation/conveyance.
6. The system ofclaim 1, wherein the controller is configured to perform operations including:
providing material via a material hopper;
configuring a controller with material separation/conveyance parameters based on one or more components of the material;
generating, at the controller, one or more modulated signals in accordance with the parameters, each modulated signal corresponding to an output device;
amplifying the modulated signals;
supplying the amplified modulated signals to an output device; and
causing the material to be separated in response to application of the modulated signals from the output device via a resonator plate.
7. The system ofclaim 6, wherein the controller is further configured to receive a feedback signal from a feedback sensor and provide the feedback signal to the controller.
8. The system ofclaim 7, wherein the controller is further configured to adjust, with the controller, the modulated signal based on the received feedback signal.
9. A method comprising:
providing material via a material hopper;
configuring a controller with material separation/conveyance parameters based on one or more components of the material;
generating, at the controller, one or more modulated signals in accordance with the parameters, each modulated signal corresponding to an output device.
amplifying the modulated signals;
supplying the amplified modulated signals to an output device; and
causing the material to be separated in response to application of the modulated signals from the output device via a resonator plate.
10. The method ofclaim 9, further comprising receiving a feedback signal from a feedback sensor and providing the feedback signal to the controller.
11. The method ofclaim 10, further comprising adjusting, with the controller, the modulated signal based on the received feedback signal.
12. The method ofclaim 9, further comprising orienting one or more of the output devices to a predetermined angle of incidence via a gimble corresponding to each output device.
13. The method ofclaim 10, wherein the feedback sensor is an ultrasonic sensor.
14. The method ofclaim 9, further comprising moving each separated components of the material to a respective output chute.
15. A nontransitory computer readable medium having stored thereon instructions that, when executed by a processor, cause the processor to perform operations including:
providing material via a material hopper;
configuring a controller with material separation/conveyance parameters based on one or more components of the material;
generating, at the controller, one or more modulated signals in accordance with the parameters, each modulated signal corresponding to an output device.
amplifying the modulated signals;
supplying the amplified modulated signals to an output device; and
causing the material to be separated in response to application of the modulated signals from the output device via a resonator plate.
16. The nontransitory computer readable medium ofclaim 15, wherein the operations further comprise receiving a feedback signal from a feedback sensor and providing the feedback signal to the controller.
17. The nontransitory computer readable medium ofclaim 16, wherein the operations further include adjusting, with the controller, the modulated signal based on the received feedback signal.
18. The nontransitory computer readable medium ofclaim 15, wherein the operations further include orienting one or more of the output devices to a predetermined angle of incidence via a gimble corresponding to each output device.
19. The nontransitory computer readable medium ofclaim 16, wherein the feedback sensor is an ultrasonic sensor.
20. The nontransitory computer readable medium ofclaim 15, wherein the operations further include moving each separated components of the material to a respective output chute.
US16/103,8432013-02-212018-08-14Material separation and conveyance using tuned wavesAbandonedUS20190134670A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US16/103,843US20190134670A1 (en)2013-02-212018-08-14Material separation and conveyance using tuned waves

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
US201361767679P2013-02-212013-02-21
US14/187,195US9440263B2 (en)2013-02-212014-02-21Material separation and conveyance using tuned waves
US15/263,346US10046367B2 (en)2013-02-212016-09-12Material separation and conveyance using tuned waves
US16/103,843US20190134670A1 (en)2013-02-212018-08-14Material separation and conveyance using tuned waves

Related Parent Applications (1)

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US15/263,346ContinuationUS10046367B2 (en)2013-02-212016-09-12Material separation and conveyance using tuned waves

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US20190134670A1true US20190134670A1 (en)2019-05-09

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US14/187,195Expired - Fee RelatedUS9440263B2 (en)2013-02-212014-02-21Material separation and conveyance using tuned waves
US15/263,346ActiveUS10046367B2 (en)2013-02-212016-09-12Material separation and conveyance using tuned waves
US16/103,843AbandonedUS20190134670A1 (en)2013-02-212018-08-14Material separation and conveyance using tuned waves

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US14/187,195Expired - Fee RelatedUS9440263B2 (en)2013-02-212014-02-21Material separation and conveyance using tuned waves
US15/263,346ActiveUS10046367B2 (en)2013-02-212016-09-12Material separation and conveyance using tuned waves

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US (3)US9440263B2 (en)
WO (1)WO2014130898A1 (en)

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WO2014130898A1 (en)*2013-02-212014-08-28Miller Spencer AllenMaterial separation and conveyance using tuned waves
DE102015201683A1 (en)*2015-01-302016-08-04Zbv-Automation Gmbh Acoustic separation device
WO2018210431A1 (en)*2017-05-192018-11-22Metso Sweden AbUltrasonic detection system and method

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US5148922A (en)*1988-04-261992-09-22Marriott Paul AGravity particle separator
US6351676B1 (en)*1993-04-162002-02-26Oliver Manufacturing CompanyComputer controlled separator device
US5711888A (en)*1993-05-111998-01-27Sonosep Biotech, Inc.Multilayered piezoelectric resonator for the separation of suspended particles
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US7571817B2 (en)*2002-11-062009-08-11Varco I/P, Inc.Automatic separator or shaker with electromagnetic vibrator apparatus
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Also Published As

Publication numberPublication date
US9440263B2 (en)2016-09-13
US20140374326A1 (en)2014-12-25
WO2014130898A1 (en)2014-08-28
US10046367B2 (en)2018-08-14
US20170216888A1 (en)2017-08-03

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