Claims
- 1. A manifold for connecting a plurality of hydrocyclones to feed and accept conduits, said manifold comprising a hydrocyclone feeding and accepting molded polymeric member, said molded member including
- a feed cavity configured to transport feed materials from the feed conduit to the plurality of hydrocyclones, said feed cavity including an inlet and a plurality of outlets; and
- an accept cavity configured to transport accept materials from the plurality of hydrocyclones to the accept conduits, said accept cavity including a plurality of inlets and an outlet, and wherein said outlets of said feed cavity and said inlets of said accept cavity are separated from each other so that flow of said feed materials from said feed cavity directly into said accept cavity is prevented.
- 2. The manifold as defined in claim 1, wherein at least one of said feed cavity and said accept cavity has a cross-sectional area that varies along the length of the cavity.
- 3. The manifold as defined in claim 2, wherein said varying cross-sectional area is largest at the inlet end of the cavity and reduces progressively toward the other end of the cavity.
- 4. The manifold as defined in claim 2, wherein said varying cross-sectional area is largest at the outlet end of the cavity and reduces progressively toward the other end of the cavity.
- 5. The manifold as defined in claim 1 wherein said molded member includes at least one flange for connecting said manifold to said feed and accept conduits.
- 6. The manifold as defined in claim 1, wherein said polymeric material is primarily glass-reinforced nylon.
- 7. The manifold as defined in claim 1, wherein at least one of said feed cavity and said accept cavity has a round ross-section.
- 8. The manifold as defined in claim 1, wherein said feed cavity and said accept cavity are separated by a common wall.
- 9. The manifold as defined in claim 1, wherein said accept cavity is defined by an exterior wall containing openings defining said plurality of inlets therein, each said opening sized and configured for attachment of an accept nozzle of a said hydrocyclone.
- 10. The manifold as defined in claim 9, wherein said feed cavity is defined by an exterior wall containing openings defining said plurality of outlets therein, each said opening sized and configured for attachment of a feed nozzle of a said hydrocyclone.
- 11. Apparatus for separating material comprising:
- a main feed conduit having an inlet and a plurality of outlets;
- a main accept conduit having a plurality of inlets and an outlet;
- a main reject conduit having a plurality of inlets and an outlet;
- a plurality of hydrocyclones, each of said plurality of hydrocyclones having an inlet and a plurality of outlets with one of said outlets being connected to said main reject conduit; and
- a molded manifold for connecting said plurality of hydrocyclones to said main feed and said main accept conduits, said molded manifold comprising a molded polymeric member, said molded member including
- a feed cavity configured to transport feed materials from the feed conduit to the plurality of hydrocyclones, said feed cavity including an inlet and a plurality of outlets; and
- an accept cavity configured to transport accept materials from the plurality of hydrocyclones to the accept conduits, said accept cavity including a plurality of inlets and an outlet.
- 12. The apparatus as defined in claim 1, wherein said apparatus includes two molded manifolds that are attached to each other so that (1) the feed cavities of the connected manifolds form a common feed cavity and (2) the accept cavities of the connected manifolds form a common accept cavity.
- 13. The apparatus as defined in claim 12, wherein said molded manifolds each include a connecting flange which is angled to a longitudinal axis of the manifold.
- 14. The apparatus as defined in claim 1, wherein said feed cavity and said accept cavity are separated by a common wall.
- 15. The apparatus as defined in claims 1, wherein said accept cavity is defined by an exterior wall containing openings defining said plurality of inlets therein, each said opening sized and configured for attachment of an accept nozzle of a said hydrocyclone.
- 16. The apparatus as defined in claim 15, wherein said feed cavity is defined by an exterior wall containing openings defining said plurality of outlets therein, each said opening sized and configured for attachment of a feed nozzle of a said hydrocyclone.
- 17. The apparatus as defined in claim 11, wherein each of said plurality of hydrocyclones includes a nozzle having a resilient sealing member disposed around its circumference and the resilient sealing member seals against a cylindrical sealing portion of an inside surface of an aperture formed in a wall of said molded manifold.
- 18. An apparatus as defined in claim 17, wherein said aperture defines a surface having a cylindrical sealing portion against which said resilient member can seal.
- 19. An apparatus as defined in claim 1, wherein said main accept conduit, said main feed conduit, and said molded manifold each have a longitudinal axis, and said main feed conduit, said main accept conduit, and said molded manifold are disposed so that the longitudinal axis of said molded manifold is transversely disposed relative to the longitudinal axes of said main feed conduit and said main accept conduit.
- 20. An apparatus as defined in claim 1, wherein said main accept conduit, said main feed conduit, and said molded manifold each have a longitudinal axis, and said main feed conduit, said main accept conduit, and said molded manifold are disposed so that the longitudinal axis of said molded manifold is parallel with the longitudinal axes of said main feed conduit and said main accept conduit.
- 21. The apparatus as defined in claim 11, wherein at least one of said feed cavity and said accept cavity has a cross-sectional area that varies along the length of the cavity.
- 22. The apparatus as defined in claim 21, wherein said varying cross-sectional area is largest at the inlet end of the cavity and reduces progressively toward the other end of the cavity.
- 23. The apparatus as defined in claim 21, wherein said varying cross-sectional area is largest at the outlet end of the cavity and reduces progressively toward the other end of the cavity.
- 24. The apparatus as defined in claim 11, wherein said molded member includes at least one flange for connecting said manifold to said feed and accept conduits.
- 25. The apparatus as defined in claim 11, wherein said polymeric material is primarily glass-reinforced nylon.
- 26. An apparatus for separating material comprising:
- a plurality of hydrocyclones, each of said plurality of hydrocyclones having an inlet and a plurality of outlets with one of said outlets being connected to a main reject conduit; and
- a manifold for connecting a plurality of hydrocyclones to feed and accept conduits, said manifold comprising:
- a feed portion defining a feed cavity configured to transport feed materials form the feed conduit to the plurality of hydrocyclones, said feed cavity including an inlet and a plurality of outlets, said feed portion including a first wall extending in a longitudinal direction of said feed cavity;
- an accept portion defining an accept cavity configured to transport accept materials form the plurality of hydrocyclones to the accept conduits, said accept cavity including a plurality of inlets and an outlet, said accept portion including a second wall extending in a longitudinal direction of said accept cavity; and
- wherein each of said plurality of hydrocyclones includes a nozzle having a resilient sealing member disposed around its circumference and the resilient sealing member seals against a cylindrical sealing portion of an inside surface of an aperture formed in at least one of said first and second walls.
- 27. The apparatus as defined in claim 26, wherein the main reject conduit is disposed so that each said hydrocyclone can be tilted to bring the resilient sealing member of the nozzle into sealing engagement with said cylindrical sealing portion of the aperture in said manifold.
- 28. The apparatus as defined in claim 26, wherein said manifold is formed to include a smooth metal member which is bent into shape.
- 29. The apparatus as defined in claim 26, wherein said aperture has a diameter, wherein said inside surface of said aperture has a length along the direction of flow through said aperture, and wherein said length is less than said diameter.
- 30. The apparatus as defined in claim 26, wherein each of said plurality of hydrocyclones includes a pair of nozzles, each of said nozzles having a resilient sealing member disposed around its circumference and the resilient sealing member seals against a cylindrical sealing portion of an inside surface of one of a pair of apertures formed in at least one of said first and second walls.
- 31. The apparatus as defined in claim 30, wherein each of said apertures has a diameter, wherein said inside surface of said aperture has a length along the direction of flow through said aperture, and wherein said length is less than said diameter.
- 32. An apparatus for separating material comprising:
- a feed conduit having an inlet and a plurality of feed outlets;
- an accepts conduit having a plurality of accept inlets and an outlet;
- a plurality of hydrocyclones, each said hydrocyclone having a feed inlet, a rejects outlet, and an accepts outlet, said rejects outlet being removably connected to a main reject conduit; and
- a manifold operatively connecting a plurality of said hydrocyclones to said feed and accept conduits, said manifold being disposed substantially entirely between a longitudinal axis of said feed conduit and a longitudinal axis of said accept conduit,
- said manifold having at least one feed inlet configured to be removably connected to a said feed outlet of said feed conduit,
- said manifold having at least one accepts outlet configured to be removably connected to a said accepts inlet of said accepts conduit, and
- said manifold having a plurality of hydrocyclone feed outlets and accepts inlets structured and arranged to removably receive said feed inlets and said accepts outlets of each said hydrocyclone.
- 33. An apparatus as defined in claim 32, wherein said manifold comprises:
- a feed portion defining a feed cavity configured to transport feed materials from said feed conduit to said plurality of hydrocyclones, said feed cavity including an inlet and a plurality of outlets; and
- an accept portion defining an accept cavity configured to transport accept materials from said plurality of hydrocyclones to said accept conduits, said accept cavity including a plurality of inlets and an outlet.
- 34. An apparatus as defined in claim 32, wherein said manifold is disposed above said feed conduit and below said accept conduit.
- 35. An apparatus as defined in claim 32, wherein said manifold is a molded polymeric member.
- 36. An apparatus as defined in claim 32, wherein each of said plurality of hydrocyclones includes a nozzle having a resilient sealing member disposed around its circumference and the resilient sealing member seals against a cylindrical sealing portion of an inside surface of an aperture formed in a wall of said manifold.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part application of Ser. No. 07/562,208, now U.S. Pat. No. 5,096,587 filed Jul 31, 1990, the disclosure of which is incorporated herein by reference.
US Referenced Citations (17)
Continuation in Parts (1)
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Number |
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562208 |
Jul 1990 |
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