Nova Patents
CA2302489C

Grinding mill

Abstract

A grinding mill has a rotating container (40) into which particulate material is fed. The container is rotated above critical speed to form a layer which is retained under high pressure against the container inner surface. Shearing discs (58) mounted inside the container induce shearing of the layer to promote particle fracture by shearing and abrasion in the pressurised layer. Fine ground material travels axially to the container discharge end (64). In one form of the invention, the container is rotated at sufficient speed to form a series of solidified zones (70) alternated with stirred zones (72) next to non-rotating shearing discs (58). These solidified zones act as solid discs rotating with the container.

CA2302489C, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Expired 28 August 2018, 8.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

29 claims: 11 independent, 18 dependent

  1. 1
    CA 02302489 2006-05-24 -8What is claimed is:1. A grinding mill for particulate material, including a rotary container having an inner surface a feed inlet for feeding the particulate material to the container, a rotary drive rotating the container at sufficiently high speed that the particulate material forms a layer retained against the inner surface throughout its rotation, and a shear inducing member contacting said layer so as to induce shearing in said layer, said shear inducing member including one or more radial members extending into the particulate layer, wherein the rotary drive is adapted to rotate the container at a sufficiently high speed to cause one or more substantially solidified zones in particulate material layer.
  2. 4
    A grinding mill according to any one of claims 1-3, wherein a plurality of shear inducing members is spaced axially along said container so as to create alternate solidified and stirred zones.
  3. 5
    A grinding mill according to any one of claims 1-4, wherein the shear inducing member includes radial members extending into the particulate material layer to create said one or more stirred zones.
  4. 6
    A grinding mill according to any one of claims 1-5, wherein said rotary drive is adapted to rotate said container sufficient speed that said one or more substantially solidified zones rotates with said container. CA 02302489 2006-05-24
  5. 7
    A grinding mill according to any one of claims 1-6, wherein said rotary drive is adapted to rotate said container a sufficient speed that said one or more substantially solidified zones rotates with said container co-operates with said shear inducing member to induce said shear.
  6. 8
    A grinding mill according to any one of claims 1-7, wherein said shear inducing member is non-rotational.
  7. 9
    A method of grinding particulate material, including feeding the particulate material to container which has an inner surface, rotating the container at a sufficiently high speed that the particulate material forms a layer retained against the inner surface throughout its rotation, and contacting the layer with a shear inducing member to induce shear in said layer, wherein the container is rotated at a sufficiently high speed to cause one or more substantially solidified zones in the particulate material layer.
  8. 16
    17. A grinding mill for particulate material, including a rotary container having an inner surface, feed inlet for feeding the particulate material to the container, a rotary drive rotating container at sufficiently high speed that the particulate material forms a layer retained against the inner surface throughout its rotation, a shear inducing member contacting said layer so to induce shearing in said layer, said shear inducing member including one or more radial members extending into the particulate layer, wherein said shear inducing member is non-rotational.
  9. 19
    20. A grinding mill according to any one of claims 17-19, wherein the rotary drive is adapted to rotate the container at sufficient speed to cause one or more substantially solidified zones in the particulate material layer. CA 02302489 2006-05-24 - Π -
  10. 22
    23. A method of grinding particulate material, including feeding the particulate material to a container which has an inner surface, rotating the container at sufficiently high speed that the particulate material forms a layer retained against the inner surface throughout its rotation, an contacting the layer with a shear inducing member to induce shear in said layer, wherein said shear inducing member includes one or more radial members extending into the particulate material layer, wherein said shear inducing member is non-rotational.
  11. 28
    29. A method of grinding particulate material, including feeding the particulate 5 material to a container which has an inner surface, rotating the container at an operational speed that is at least three times the speed at which the particulate material forms a layer retained against the inner surface throughout its rotation, and contacting the layer with shear inducing means that are spaced axially along said container so as to create alternate solidified and stirred zones of said particulate material within the 10 container when rotating at said operational speed.