IP Library Granted Patent US 7,762,402
Granted Patent B2
US 7,762,402 · App. 12/157,263 · Granted Jul 27, 2010

Cyclone with in-situ replaceable liner system and method for accomplishing same

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Quick Facts
Patent No.
US 7,762,402
App. No.
12/157,263
Granted
Jul 27, 2010
Kind
B2
Abstract

Cyclones having an inlet housing and depending conical housing with abrasion resistant liners and a mechanism for replacing the worn out liners without having to remove the cyclones from their working positions and disassembling them. Liner segments are provided in the inlet housing for easy removal and a lifting ring is provided in the bottom end of the conical housing for supporting a stack of liners and an apex cone. Hoisting straps on the lifting ring are used to lift the ring and the stacked liners out of the opened top of the cyclone. A modified cyclone is also disclosed having an open-sided conical housing with special metal reinforced liners in the conical housing and such liners are used as the inlet housing and cover in place of the conventional all metal components. Plural compression applying devices load the liners and apex cone in sealed engagement with each other.

Claims (72)

1. A cyclone for classifying materials, said cyclone comprising:

a) an inlet housing having open top and bottom ends;

b) a cover on the open top end of said inlet housing;

c) a compression collar on said cover;

d) a truncated conical housing depending coaxially from said inlet housing and having an open apex at its lower end, said conical housing including,

i) a flange at the upper end of said conical housing and positioned at the open bottom end of said inlet housing,

ii) a sleeve defining the open bottom apex of said conical housing, said sleeve having a lower end,

iii) a shelf at the lower end of said sleeve and extending into the open apex defined thereby,

iv) a plurality of struts having upper ends attached to said flange and lower ends attached to said sleeve, said struts being spaced apart relative to each other to provide said conical housing with a plurality of side openings;

e) an apex cone having a downwardly tapering body with a flange circumscribing its upper end, the flange of said apex cone resting on the shelf of said conical housing with its body depending axially through the open apex of said conical housing;

f) at least one abrasion resistant liner in said conical housing so as to rest on the flange of said apex cone; and

g) at least a pair of ratchet strap assemblies demountably interconnected between said collar and the flange of said conical housing to applying an compressive force on said cover, said inlet housing, said liner and said apex cone to load them into sealed bearing engagement with each other.

2. A cyclone as claimed in claim 1 and further comprising:

a) said compression collar has an upstanding rim thereon:

b) said flange of said conical housing has a circular ring with a downturned lip formed on its upper end; and

c) said ratchet strap assemblies having a hook on each of its opposite ends one of which is in hooked engagement with the rim of said compression collar with the other being in hooked engagement with the downturned lip of said the circular ring of said conical housing.

3. A cyclone as claimed in claim 1 and further comprising:

a) said compression collar has an upstanding rim thereon:

b) said flange of said conical housing has a circular ring with a plurality of slots formed in spaced apart locations therein; and

c) said ratchet strap assemblies having a hook on each of its opposite ends one of which is in hooked engagement with the rim of said compression collar with the other being in hooked engagement with selected ones of the slots formed in the circular ring of said conical housing.

4. A cyclone as claimed in claim 1 wherein said cover, said inlet housing and said abrasion resistant liner each comprises:

a) a perforated metallic core; and

b) an abrasion resistant material molded on said core to encapsulate said core.

5. A cyclone as claimed in claim 4 wherein said abrasion resistant material is a high energy urethane.

6. A cyclone for classifying materials, said cyclone comprising:

a) an inlet housing having open top and bottom ends;

b) a cover on the open top end of said inlet housing;

c) a compression collar on said cover;

d) a truncated conical housing depending coaxially from said inlet housing and having an open apex at its lower end, said conical housing including,

i) a flange at the upper end of said conical housing and positioned at the open bottom end of said inlet housing,

ii) a sleeve defining the open bottom apex of said conical housing, said sleeve having a lower end,

iii) a shelf at the lower end of said sleeve and extending into the open apex defined thereby,

iv) a plurality of struts having upper ends attached to said flange and lower ends attached to said sleeve, said struts being spaced apart relative to each other to provide said conical housing with a plurality of side openings;

e) an apex cone having a downwardly tapering body with a flange circumscribing its upper end, the flange of said apex cone resting on the shelf of said conical housing with its body depending axially through the open apex of said conical housing;

f) at least one abrasion resistant liner in said conical housing so as to rest on the flange of said apex cone; and

g) at least a pair of ratchet load binders demountably interconnected between said collar and the flange of said conical housing to applying an compressive force on said cover, said inlet housing, said liner and said apex cone to load them into sealed bearing engagement with each other.

7. A cyclone as claimed in claim 6 and further comprising:

a) said compression collar has an upstanding rim thereon:

b) said flange of said conical housing has a circular ring with a downturned lip formed on its upper end; and

c) said ratchet load binders having a hook on each of its opposite ends one of which is in hooked engagement with the rim of said compression collar with the other being in hooked engagement with the downturned lip of said the circular ring of said conical housing.

8. A cyclone as claimed in claim 6 and further comprising:

a) said compression collar has an upstanding rim thereon:

b) said flange of said conical housing has a circular ring with a plurality of slots formed in spaced apart locations therein; and

c) said ratchet load binders having a hook on each of its opposite ends one of which is in hooked engagement with the rim of said compression collar with the other being in hooked engagement with selected ones of the slots formed in the circular ring of said conical housing.

9. A cyclone as claimed in claim 6 wherein said cover, said inlet housing and said abrasion resistant liner each comprises:

a) a perforated metallic core; and

b) an abrasion resistant material molded on said core to encapsulate said core.

10. A cyclone as claimed in claim 9 wherein said abrasion resistant material is a high energy urethane.

11. A cyclone for classifying materials, said cyclone comprising:

a) an inlet housing having open top and bottom ends;

b) a cover on the open top end of said inlet housing;

c) a compression collar on said cover;

d) a truncated conical housing depending coaxially from said inlet housing and having an open apex at its lower end, said conical housing including,

i) a flange at the upper end of said conical housing and positioned at the open bottom end of said inlet housing,

ii) a sleeve defining the open bottom apex of said conical housing, said sleeve having a lower end,

iii) a shelf at the lower end of said sleeve and extending into the open apex defined thereby,

iv) a plurality of struts having upper ends attached to said flange and lower ends attached to said sleeve, said struts being spaced apart relative to each other to provide said conical housing with a plurality of side openings;

e) an apex cone having a downwardly tapering body with a flange circumscribing its upper end, the flange of said apex cone resting on the shelf of said conical housing with its body depending axially through the open apex of said conical housing;

f) at least one abrasion resistant liner in said conical housing so as to rest on the flange of said apex cone; and

g) at least a pair of toggle load binders demountably interconnected between said collar and the flange of said conical housing to applying an compressive force on said cover, said inlet housing, said liner and said apex cone to load them into sealed bearing engagement with each other.

12. A cyclone as claimed in claim 11 and further comprising:

a) said compression collar has an upstanding rim thereon:

b) said flange of said conical housing has a circular ring with a downturned lip formed on its upper end; and

c) said togglet load binders having a hook on each of its opposite ends one of which is in hooked engagement with the rim of said compression collar with the other being in hooked engagement with the downturned lip of said the circular ring of said conical housing.

13. A cyclone as claimed in claim 11 and further comprising:

a) said compression collar has an upstanding rim thereon:

b) said flange of said conical housing has a circular ring with a plurality of slots formed in spaced apart locations therein; and

c) said toggle load binders having a hook on each of its opposite ends one of which is in hooked engagement with the rim of said compression collar with the other being in hooked engagement with selected ones of the slots formed in the circular ring of said conical housing.

14. A cyclone as claimed in claim 11 wherein said cover, said inlet housing and said abrasion resistant liner each comprises:

a) a perforated metallic core; and

b) an abrasion resistant material molded on said core to encapsulate said core.

15. A cyclone as claimed in claim 14 wherein said abrasion resistant material is a high energy urethane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2012
From: HAKOLA, GORDON R.
To: GIW INDUSTRIES, INC.
Reel/Frame 028103/0382 →
Continuity (3)
Continuation In Part 1170392600 · Feb 9, 2007
Division 1071671100 · Nov 19, 2003
Related Publication 20080290008A1 · Nov 27, 2008