IP Library Granted Patent US 8,861,675
Granted Patent B2
US 8,861,675 · App. 13/397,173 · Granted Oct 14, 2014

Method and apparatus for sorting materials according to relative composition

Inventors: Edward J. Sommer, Jr. (Nashville, TN); Charles E. Roos (Nashville, TN); David B. Spencer (Bedford, MA); R. Lynn Conley (Antioch, TN)
Assignee: Spectramet, LLC
G01N23/06B07C5/3416B07C2501/0036B07C2501/0009G01N2223/643G01N23/12G01N2223/64B07C5/3422B07C2501/0054G01N23/087B07C5/368
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Quick Facts
Patent No.
US 8,861,675
App. No.
13/397,173
Granted
Oct 14, 2014
Kind
B2
Abstract

Disclosed herein is a metal sorting device including an X-ray tube, a dual energy detector array, a microprocessor, and an air ejector array. The device senses the presence of samples in the x-ray sensing region and initiates identifying and sorting the samples. After identifying and classifying the category of a sample, at a specific time, the device activates an array of air ejectors located at specific positions in order to place the sample in the proper collection bin.

Claims (21)

1. A sorting device to distinguish materials of differing composition, comprising:

an X-ray tube, wherein the X-ray tube is in a fixed position;

a first multi-energy detector having a photon counting rate of about 1 million counts per second, positioned in a fixed position to receive x-rays from the X-ray tube;

wherein the first multi-energy detector is a multi-energy detector array for detecting more than two energy levels simultaneously, wherein the energy levels range from about 1 KeV to about 160 KeV;

a second multi-energy detector, wherein the second multi-energy detector is positioned in a fixed position to receive secondary x-rays;

a microprocessor operationally connected to the first multi-energy detector and the detector array;

a computer memory operationally connected to the microprocessor;

an ejector controller operationally connected to the microprocessor; and

at least one ejector attached to the ejector controller.

2. The device of claim 1 , wherein the first multi-energy detector is a multi-energy cadmium zinc telluride pixel detection system.

3. A sorting device to distinguish materials of differing composition, comprising:

an X-ray tube, wherein the X-ray tube is in a fixed position;

a multi-energy detector having a photon counting rate of about 1 million counts per second, positioned in a fixed position to receive x-rays from the X-ray tube;

wherein the multi-energy detector is a multi-energy detector array for detecting more than two energy levels simultaneously, wherein the energy levels range from about 1 KeV to about 160 KeV;

wherein the multi-energy detector further comprises a plurality of linear x-ray detector arrays positioned side-by-side and transposed across a direction of flow of materials to be sorted with material flow being between the multi-energy detector and the x-ray tube so that x-rays penetrate through the material stream prior to striking the multi-energy detector;

a microprocessor operationally connected to the multi-energy detector and the detector arrays;

a computer memory operationally connected to the microprocessor;

an ejector controller operationally connected to the microprocessor; and

at least one ejector attached to the ejector controller.

4. The device of claim 3 , wherein an x-ray filter is placed over each of the plurality of the linear x-ray detector arrays so to filter out energy ranges of x-rays before such x-rays strike the detector arrays.

5. The device of claim 4 , wherein each of the plurality of the linear x-ray detector arrays has an x-ray filter to filter out an energy range of x-rays different than that of the filters for the other of the plurality of the linear x-ray detector arrays.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2014
From: SOMMER, EDWARD J., JR.; ROOS, CHARLES E.; SPENCER, DAVID B.; CONLEY, R. LYNN
To: SPECTRAMET, LLC
Reel/Frame 032270/0785 →
Continuity (6)
Continuation 12960199 · Dec 3, 2010
Continuation 12493578 · Jun 29, 2009
Continuation 11498694 · Aug 3, 2006
Continuation In Part 11069243 · Mar 1, 2005
Provisional Application 60549089 · Mar 1, 2004
Related Publication 20120148018A1 · Jun 14, 2012