MLchartDataset catalogue

Patent · US5551573A · A · US

Machine and method for separating recyclable matter

(11) Publication number
US5551573A
(21) Application number
US-37406695-A
(22) Filing date
1995-01-18
(30) Priority date
1992-08-14
(43) Publication date
1996-09-03
(45) Date of grant
1996-09-03
(52) CPC
  • B03B Separating solid materials using liquids or using pneumatic tables or jigs: 9/06
  • B03C Magnetic or electrostatic separation of solid materials from solid materials or fluids; separation by high-voltage electric fields: 1/12
  • B07B Separating solids from solids by sieving, screening, sifting or by using gas currents; separating by other dry methods applicable to bulk material, e.g. loose articles fit to be handled like bulk material: 1/22, 9/00
  • Y02W Climate change mitigation technologies related to wastewater treatment or waste management: 30/52
  • Y10S Technical subjects covered by former uspc cross-reference art collections [xracs] and digests: 209/93
(73) Assignee
CP MFG INC
(54) Title
Machine and method for separating recyclable matter
(57) Abstract

A machine for sorting recyclable matter includes a trommel for conducting and screening an input flow of recyclable matter and a magnetic mechanism coupled to the trommel for extracting magnetic material from the input flow while the trommel rotates. The input flow is dropped vertically from the trommel into a positive-pressure air separator which separates the flow into a first material stream including lightweight articles and a second material stream including relatively heavy articles. The heavy articles of the second material stream drop downwardly in the air separator. Padded baffles are provided in the air separator for reducing the downward velocity of the second material stream, which substantially lowers breakage of glass articles.

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Claims (13)

  1. An apparatus for extracting magnetic articles from a stream of matter, comprising: a frame; a trommel rotatably mounted to the frame, the trommel including an input opening for receiving a flow of matter, a plurality of perforations opening through the trommel, and an unapertured annulus with an inner surface, the annulus forming a discharge opening of the trommel for discharging a flow of matter; an extracting mechanism including a plurality of permanent magnets mounted to rotate with the trommel, the extracting mechanism including means responsive to rotation of the trommel for bringing permanent magnets into direct contact with the annulus following a disengagement location and for disengaging permanent magnets from direct contact with the annulus at the disengagement location; and the extracting mechanism including a member mounted to the frame, the member projecting into the discharge opening for receiving and discharging magnetic articles from the flow of matter when the magnetic articles are released from the inner surface at the disengagement location.
  2. The apparatus of claim 1, the trommel being tilted, with the discharge opening being lower than the input opening.
  3. The apparatus of claim 1, wherein the member includes a chute positioned below the disengagement location.
  4. An apparatus for extracting magnetic materials from a flow of matter, comprising: a frame; a trommel rotatably mounted to the frame to receive a flow of matter, the trommel including an input opening for receiving a flow of matter and a discharge opening for discharging the flow of matter; the discharge opening including a unapertured annulus, the trommel including a plurality of perforations that open through the trommel between the unapertured annulus and the input opening; means for rotating the trommel on the frame; an extracting mechanism including a plurality of permanent magnets, the extracting mechanism responding to rotation of the trommel by means for bringing magnets of the plurality of permanent magnets into direct contact with the unapertured annulus and for disengaging other magnets of the plurality of permanent magnets from the unapertured annulus at a discharge location; and the extracting mechanism further including a member fixedly located with respect to the trommel and extending into the discharge opening to receive magnetic articles dropped from an inner surface of the unapertured annulus at the disengagement location.
  5. The apparatus of claim 4, wherein the member includes a chute with a receiving end that projects into the discharge opening, the receiving end being positioned below the disengagement location.
  6. The apparatus of claim 5, wherein the trommel is tilted, the discharge opening being lower than the input opening.
  7. The apparatus of claim 4, wherein the trommel is tilted, the discharge opening being lower than the input opening.
  8. The apparatus of claim 4, wherein the permanent magnets are arranged between a pair of endless belts to rotate with the trommel.
  9. A material separator machine including the apparatus for extracting magnetic materials of claim 4, further including: an air separator following the discharge opening to direct a substantially vertical stream of air through the flow of matter, with magnetic materials substantially removed, the stream of air separating relatively light materials from the flow of matter; first material flow means coupled to the air separator providing a first material flow including the relatively light materials; and second material flow means for receiving the flow of matter and providing a second material flow.
  10. The material separator machine of claim 9, wherein the air separator is mounted to the frame to provide a stream of high velocity air substantially in a vertically upward direction, the material separator machine further including a cyclone coupling the air separator with the first material flow means.
  11. A method for separating magnetic materials from a stream of matter using an apertured, rotatable trommel with an opening and an unapertured annulus forming a discharge opening, and a plurality of permanent magnets arrayed around the discharge opening to rotate with the trommel, the method comprising the steps of: rotating the trommel; conducting a heterogeneous stream of material through the trommel from its input opening to its discharge opening; screening the stream of material by passing it over apertures in the trommel; applying permanent magnets to the discharge opening such that each permanent magnet rotates with the trommel in direct contact with the annulus; as each permanent magnet rotates with the trommel in direct contact with the annulus, disengaging the permanent magnet from direct contact with the annulus when the permanent magnet rotates past a disengagement location; receiving magnetic articles from the heterogeneous stream of material when they are released by disengagement of permanent magnets from the annulus at the discharge location; and conducting magnetic articles from the trommel to a collection point.
  12. The method of claim 11, further using an air separator following the discharge opening of the trommel and including the steps of: following the receiving step, conducting the heterogeneous stream of material, with the magnetic articles substantially removed, from the discharge opening of the trommel past the air separator; and substantially vertically separating relatively light articles from the heterogeneous stream of material at the air separator.
  13. The method of claim 12, further including: conducting the relatively light articles to a collection location; and conducting the heterogeneous stream of material, with the magnetic articles and the relatively light articles removed, to a collection location.

Citations (14)

  • DE2750191A1
  • DE4214428A1
  • FR2666537A1
  • US1034969A
  • US1870629A
  • US4139454A
  • US4242197A
  • US4318804A
  • US4387019A
  • US4715951A
  • US5091077A
  • US5328034A
  • US5452804A
  • US707088A
Record as JSON
{
  "publication_number": "US5551573A",
  "country": "US",
  "kind": "A",
  "title": "Machine and method for separating recyclable matter",
  "abstract": "A machine for sorting recyclable matter includes a trommel for conducting and screening an input flow of recyclable matter and a magnetic mechanism coupled to the trommel for extracting magnetic material from the input flow while the trommel rotates. The input flow is dropped vertically from the trommel into a positive-pressure air separator which separates the flow into a first material stream including lightweight articles and a second material stream including relatively heavy articles. The heavy articles of the second material stream drop downwardly in the air separator. Padded baffles are provided in the air separator for reducing the downward velocity of the second material stream, which substantially lowers breakage of glass articles.",
  "claims": [
    "1. An apparatus for extracting magnetic articles from a stream of matter, comprising: a frame; a trommel rotatably mounted to the frame, the trommel including an input opening for receiving a flow of matter, a plurality of perforations opening through the trommel, and an unapertured annulus with an inner surface, the annulus forming a discharge opening of the trommel for discharging a flow of matter; an extracting mechanism including a plurality of permanent magnets mounted to rotate with the trommel, the extracting mechanism including means responsive to rotation of the trommel for bringing permanent magnets into direct contact with the annulus following a disengagement location and for disengaging permanent magnets from direct contact with the annulus at the disengagement location; and the extracting mechanism including a member mounted to the frame, the member projecting into the discharge opening for receiving and discharging magnetic articles from the flow of matter when the magnetic articles are released from the inner surface at the disengagement location.",
    "2. The apparatus of claim 1, the trommel being tilted, with the discharge opening being lower than the input opening.",
    "3. The apparatus of claim 1, wherein the member includes a chute positioned below the disengagement location.",
    "4. An apparatus for extracting magnetic materials from a flow of matter, comprising: a frame; a trommel rotatably mounted to the frame to receive a flow of matter, the trommel including an input opening for receiving a flow of matter and a discharge opening for discharging the flow of matter; the discharge opening including a unapertured annulus, the trommel including a plurality of perforations that open through the trommel between the unapertured annulus and the input opening; means for rotating the trommel on the frame; an extracting mechanism including a plurality of permanent magnets, the extracting mechanism responding to rotation of the trommel by means for bringing magnets of the plurality of permanent magnets into direct contact with the unapertured annulus and for disengaging other magnets of the plurality of permanent magnets from the unapertured annulus at a discharge location; and the extracting mechanism further including a member fixedly located with respect to the trommel and extending into the discharge opening to receive magnetic articles dropped from an inner surface of the unapertured annulus at the disengagement location.",
    "5. The apparatus of claim 4, wherein the member includes a chute with a receiving end that projects into the discharge opening, the receiving end being positioned below the disengagement location.",
    "6. The apparatus of claim 5, wherein the trommel is tilted, the discharge opening being lower than the input opening.",
    "7. The apparatus of claim 4, wherein the trommel is tilted, the discharge opening being lower than the input opening.",
    "8. The apparatus of claim 4, wherein the permanent magnets are arranged between a pair of endless belts to rotate with the trommel.",
    "9. A material separator machine including the apparatus for extracting magnetic materials of claim 4, further including: an air separator following the discharge opening to direct a substantially vertical stream of air through the flow of matter, with magnetic materials substantially removed, the stream of air separating relatively light materials from the flow of matter; first material flow means coupled to the air separator providing a first material flow including the relatively light materials; and second material flow means for receiving the flow of matter and providing a second material flow.",
    "10. The material separator machine of claim 9, wherein the air separator is mounted to the frame to provide a stream of high velocity air substantially in a vertically upward direction, the material separator machine further including a cyclone coupling the air separator with the first material flow means.",
    "11. A method for separating magnetic materials from a stream of matter using an apertured, rotatable trommel with an opening and an unapertured annulus forming a discharge opening, and a plurality of permanent magnets arrayed around the discharge opening to rotate with the trommel, the method comprising the steps of: rotating the trommel; conducting a heterogeneous stream of material through the trommel from its input opening to its discharge opening; screening the stream of material by passing it over apertures in the trommel; applying permanent magnets to the discharge opening such that each permanent magnet rotates with the trommel in direct contact with the annulus; as each permanent magnet rotates with the trommel in direct contact with the annulus, disengaging the permanent magnet from direct contact with the annulus when the permanent magnet rotates past a disengagement location; receiving magnetic articles from the heterogeneous stream of material when they are released by disengagement of permanent magnets from the annulus at the discharge location; and conducting magnetic articles from the trommel to a collection point.",
    "12. The method of claim 11, further using an air separator following the discharge opening of the trommel and including the steps of: following the receiving step, conducting the heterogeneous stream of material, with the magnetic articles substantially removed, from the discharge opening of the trommel past the air separator; and substantially vertically separating relatively light articles from the heterogeneous stream of material at the air separator.",
    "13. The method of claim 12, further including: conducting the relatively light articles to a collection location; and conducting the heterogeneous stream of material, with the magnetic articles and the relatively light articles removed, to a collection location."
  ],
  "cpc": [
    "B03B 9/06",
    "B03C 1/12",
    "B07B 1/22",
    "B07B 9/00",
    "Y02W 30/52",
    "Y10S 209/93"
  ],
  "assignees": [
    "CP MFG INC"
  ],
  "filing_date": "1995-01-18",
  "publication_date": "1996-09-03",
  "grant_date": "1996-09-03",
  "priority_date": "1992-08-14",
  "application_number": "US-37406695-A",
  "family_id": "25459690",
  "citations": [
    "DE2750191A1",
    "DE4214428A1",
    "FR2666537A1",
    "US1034969A",
    "US1870629A",
    "US4139454A",
    "US4242197A",
    "US4318804A",
    "US4387019A",
    "US4715951A",
    "US5091077A",
    "US5328034A",
    "US5452804A",
    "US707088A"
  ]
}

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