Patent · US7717269B2 · B2 · US
Snap lock separatory panel and retainer system
- (11) Publication number
- US7717269B2
- (21) Application number
- US-79853707-A
- (22) Filing date
- 2007-05-15
- (30) Priority date
- 2007-05-15
- (43) Publication date
- 2010-05-18
- (45) Date of grant
- 2010-05-18
- (51) IPC
- B07B 1/49
- (52) CPC
- 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: 1/46, 1/4645
- F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 29/00
- (73) Assignee
- CONN WELD IND INC
- (72) Inventors
- BACHO FRANK J; LANE TRACY LEONARD
- (54) Title
- Snap lock separatory panel and retainer system
- (57) Abstract
A snap lock separatory panel and retainer system includes either a screen wire panel with laterally spaced, longitudinally extending locking bars defining a locking profile, or a urethane panel with laterally spaced, longitudinally extending lips or flanges which also define a locking profile. A retainer system is provided for use in securing these panels. The retainer system utilized center retainers that are engagable with industry standard holes in screen stringer rails of a vibrating separating machine. Each center retainer is provided with an array of retainer pins which are spaced to interdigitate with either screen wire tie rod ends or with urethane panel wall recesses to support the screen panel locking bars or the urethane panel flanges adjacent the retainer pins. Locking strips are provided with undercurrent bores that terminate in undercut receptacles. These bores and receptacles are sized to receive center retainer pin shanks and heads. The locking strips and center retainers cooperate to positively secure the snap lock screen wire panels and/or urethane panels in place on a vibrating separatory machine.
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Claims (25)
- A snap lock separatory panel and retainer system comprising: a separatory panel having a separatory panel locking profile; a center retainer including a plurality of center retainer pins, each such pin including a pin shank and a pin head, said center retainer further including a retainer spine and a resilient retainer encasement; means on said center retainer supporting said separating panel with said locking profile adjacent said center retainer pins; and a locking strip having a plurality of spaced retainer pin receiving receptacles, said locking strip receptacles being adapted to releasably receive said retainer pins to secure said separatory panel to said center retainer.
- The snap lock separatory panel and retainer system of claim 1 wherein said center retainer is securable to a screen stringer rail of a vibrating separatory machine.
- The snap lock separatory panel and retainer system of claim 1 wherein said separatory panel is a separatory screen panel adapted for use with a vibrating separatory machine.
- The snap lock separatory panel and retainer system of claim 1 wherein at least some of said center retainer pins are formed integral with said retainer spine.
- The snap lock separatory panel and retainer system of claim 1 wherein at least some of said center retainer pins include pin sleeves joined to said retainer spine.
- The snap lock separatory panel and retainer system of claim 5 further including a bolt received in each said pin sleeve and having a bolt head forming said center retainer pin head.
- The snap lock separatory panel and retainer system of claim 1 wherein said locking strip is resilient.
- The snap lock separatory panel and retainer system of claim 1 wherein each said retainer pin receiving receptacle includes a receptacle bore and an undercut chamber.
- The snap lock separatory panel and retainer system of claim 8 wherein each said receptacle bore is adapted to receive said pin shank and each said receptacle chamber is adapted to receive said pin head of one of said center retainer pins of said center retainer.
- The snap lock separatory panel and retainer system of claim 1 wherein said retainer spine is rigid.
- The snap lock screen panel and retainer system of claim 10 wherein said retainer spine is one of nylon and metal.
- The snap lock separatory panel and retainer system of claim 10 wherein said retainer spine encasement is polyurethane.
- The snap lock separatory panel and retainer system of claim 3 wherein each said separatory screen panel includes tie-rods having tie rod ends, said tie rod ends being adapted to interdigitate with said center retainer pins.
- The snap lock separatory panel and retainer system of claim 1 further including a plurality of cross dams adapted to cooperate with said locking strip and said center retainers.
- The snap lock separatory panel and retainer system of claim 1 wherein each said separatory panel is a separatory urethane panel adapted for use with a vibrating separating machine.
- The snap lock separatory panel and retainer system of claim 13 wherein said screen panel includes spaced screen panel locking bars forming said locking profile.
- The snap lock separatory panel and retainer system of claim 16 wherein each of said locking bars is attached to said tie rod ends.
- The snap lock separatory panel and retainer system of claim 15 wherein said urethane panel has spaced panel flanges forming said locking profile.
- The snap lock separatory panel and retainer system of claim 18 wherein said panel flanges include panel wall recesses adapted to interdigitate with said center retainer pins.
- A snap lock separatory screen wire panel adapted to cooperate with a retainer system in a vibrating separatory machine, said snap lock separatory screen wire panel comprising: a plurality of profile separatory screen wires extending parallel to, and spaced apart from each other in a direction of material flow in the vibrating separatory machine, each of said profile separatory screen wires having an upper, generally planar surface of a first size and a lower surface of a second size less than said first size, said plurality of profile separatory screen wires in said separatory screen wires panel including first and second spaced outer ones of said profile separatory screen wires and a plurality of inner ones said profile separatory screen wires bounded by said first and second spaced outer ones of said profile separatory screen wires; a plurality of spaced, parallel tie rods supporting said profile separatory screen wires and underlying said screen wires, said tie rods being oriented transversely to said plurality of screen wires, said plurality of tie rods each being welded to said lower surfaces of more than one of said plurality of profile separatory screen wires; a plurality of spaced, parallel tie rod ends of said tie rods, each of said tie rod ends projecting beyond said first and second spaced outer ones of said profile separatory screen wires in a direction transverse to said direction of material flow, and forming first and second tie rod end groups, each of said plurality of tie rod ends having an upper surface; and first and second locking bars each secured to one of said first and second tie rod end groups, each of said locking bars extending parallel to said screen wires and being located adjacent a respective one of said first and second spaced outer ones of said profile separatory screen wires, each said locking bar being generally rectangular in cross-section and forming a locking profile including a lower locking bar face welded to said upper surfaces of said tie rod ends of said respective ones of said first and second tie rod end groups.
- The snap lock separatory screen wire panel of claim 20 wherein said tie rods are cylindrical in cross section.
- A snap lock separatory urethane panel adapted to cooperate with a retainer system in a vibrating separatory machine, said snap lock separatory urethane panel comprising: a generally rectangular panel body including a plurality of longitudinally and laterally extending, intersecting panel ribs, said intersecting panel ribs defining a gridwork containing a plurality of separating compartments; first and second spaced panel longitudinal side walls; first and second spaced panel transverse side walls; an outer longitudinal side wall surface at an outer edge of each said longitudinal side wall, each said outer longitudinal side wall surface being generally vertical in a use position of said snap lock separatory urethane panel; a plurality of spaced panel wall recesses in each of said outer longitudinal side wall surfaces, said panel wall recesses being spaced apart in a flow direction of a material to be separated by said snap lock separatory urethane panel, each of said panel wall recesses being generally vertically extending in said use position of said snap lock separatory urethane panel and being generally semi-cylindrical; and panel wall flanges on said spaced longitudinal panel side walls and on said spaced transverse panel side walls, said panel wall flanges forming locking profiles.
- The snap lock separatory urethane panel of claim 22 wherein said separating compartments have open bottoms.
- The snap lock separatory urethane panel of claim 22 wherein said panel wall flanges have planar upper surfaces.
- The snap lock separatory urethane panel of claim 22 wherein said panel is rectangular and defines a waffle-shaped body.
Description
The present invention is directed generally to a snap lock separatory panel retainer system and to a separatory panel which is usable with such a retainer system. More particularly, the present invention is directed to a separatory panel retainer system that retains separatory panels in a vibrating separatory machine. Most specifically, the present invention is directed to a separatory panel retainer system that utilizes elongated locking strips which engage locking profiles on separatory panels in the vibrating separatory device. These locking strips utilize undercut receptacles to receive enlarged heads of retainer pins that are formed integrally with center retainer strips. The center retainer strips are, in turn secured to screen stringer rails that are typically provided in vibrating separating machines. The locking strips are snap locked onto the center retainer by the engagement of the enlarged heads of the retainer pin in the cooperatively shaped under cut receptacles in the locking strips. The separatory panels that are held in place in the vibrating separating machine are structured having locking profiles which underlie the locking strips in the assembled configuration of the snap lock separatory panel retainer system. Lower ends of selected ones of the retainer pins are received in spaced holes in the screen stringer rail. These retainer pin lower ends are radially expandable to retain the center retainer in screen stringer rails whose holes are of these proper dimensions or whose holes have become oversized due to wear.
Citations (17)
- US2002195377A1
- US2005167341A1
- US3795311A
- US4283278A
- US4909929A
- US5112475A
- US5248043A
- US5277319A
- US5361911A
- US5398817A
- US5755334A
- US5769241A
- US6206200B1
- US6964341B2
- US7090083B2
- US7273151B2
- US7296685B2
Record as JSON
{
"publication_number": "US7717269B2",
"country": "US",
"kind": "B2",
"title": "Snap lock separatory panel and retainer system",
"abstract": "A snap lock separatory panel and retainer system includes either a screen wire panel with laterally spaced, longitudinally extending locking bars defining a locking profile, or a urethane panel with laterally spaced, longitudinally extending lips or flanges which also define a locking profile. A retainer system is provided for use in securing these panels. The retainer system utilized center retainers that are engagable with industry standard holes in screen stringer rails of a vibrating separating machine. Each center retainer is provided with an array of retainer pins which are spaced to interdigitate with either screen wire tie rod ends or with urethane panel wall recesses to support the screen panel locking bars or the urethane panel flanges adjacent the retainer pins. Locking strips are provided with undercurrent bores that terminate in undercut receptacles. These bores and receptacles are sized to receive center retainer pin shanks and heads. The locking strips and center retainers cooperate to positively secure the snap lock screen wire panels and/or urethane panels in place on a vibrating separatory machine.",
"claims": [
"1. A snap lock separatory panel and retainer system comprising: a separatory panel having a separatory panel locking profile; a center retainer including a plurality of center retainer pins, each such pin including a pin shank and a pin head, said center retainer further including a retainer spine and a resilient retainer encasement; means on said center retainer supporting said separating panel with said locking profile adjacent said center retainer pins; and a locking strip having a plurality of spaced retainer pin receiving receptacles, said locking strip receptacles being adapted to releasably receive said retainer pins to secure said separatory panel to said center retainer.",
"2. The snap lock separatory panel and retainer system of claim 1 wherein said center retainer is securable to a screen stringer rail of a vibrating separatory machine.",
"3. The snap lock separatory panel and retainer system of claim 1 wherein said separatory panel is a separatory screen panel adapted for use with a vibrating separatory machine.",
"4. The snap lock separatory panel and retainer system of claim 1 wherein at least some of said center retainer pins are formed integral with said retainer spine.",
"5. The snap lock separatory panel and retainer system of claim 1 wherein at least some of said center retainer pins include pin sleeves joined to said retainer spine.",
"6. The snap lock separatory panel and retainer system of claim 5 further including a bolt received in each said pin sleeve and having a bolt head forming said center retainer pin head.",
"7. The snap lock separatory panel and retainer system of claim 1 wherein said locking strip is resilient.",
"8. The snap lock separatory panel and retainer system of claim 1 wherein each said retainer pin receiving receptacle includes a receptacle bore and an undercut chamber.",
"9. The snap lock separatory panel and retainer system of claim 8 wherein each said receptacle bore is adapted to receive said pin shank and each said receptacle chamber is adapted to receive said pin head of one of said center retainer pins of said center retainer.",
"10. The snap lock separatory panel and retainer system of claim 1 wherein said retainer spine is rigid.",
"11. The snap lock screen panel and retainer system of claim 10 wherein said retainer spine is one of nylon and metal.",
"12. The snap lock separatory panel and retainer system of claim 10 wherein said retainer spine encasement is polyurethane.",
"13. The snap lock separatory panel and retainer system of claim 3 wherein each said separatory screen panel includes tie-rods having tie rod ends, said tie rod ends being adapted to interdigitate with said center retainer pins.",
"14. The snap lock separatory panel and retainer system of claim 1 further including a plurality of cross dams adapted to cooperate with said locking strip and said center retainers.",
"15. The snap lock separatory panel and retainer system of claim 1 wherein each said separatory panel is a separatory urethane panel adapted for use with a vibrating separating machine.",
"16. The snap lock separatory panel and retainer system of claim 13 wherein said screen panel includes spaced screen panel locking bars forming said locking profile.",
"17. The snap lock separatory panel and retainer system of claim 16 wherein each of said locking bars is attached to said tie rod ends.",
"18. The snap lock separatory panel and retainer system of claim 15 wherein said urethane panel has spaced panel flanges forming said locking profile.",
"19. The snap lock separatory panel and retainer system of claim 18 wherein said panel flanges include panel wall recesses adapted to interdigitate with said center retainer pins.",
"20. A snap lock separatory screen wire panel adapted to cooperate with a retainer system in a vibrating separatory machine, said snap lock separatory screen wire panel comprising: a plurality of profile separatory screen wires extending parallel to, and spaced apart from each other in a direction of material flow in the vibrating separatory machine, each of said profile separatory screen wires having an upper, generally planar surface of a first size and a lower surface of a second size less than said first size, said plurality of profile separatory screen wires in said separatory screen wires panel including first and second spaced outer ones of said profile separatory screen wires and a plurality of inner ones said profile separatory screen wires bounded by said first and second spaced outer ones of said profile separatory screen wires; a plurality of spaced, parallel tie rods supporting said profile separatory screen wires and underlying said screen wires, said tie rods being oriented transversely to said plurality of screen wires, said plurality of tie rods each being welded to said lower surfaces of more than one of said plurality of profile separatory screen wires; a plurality of spaced, parallel tie rod ends of said tie rods, each of said tie rod ends projecting beyond said first and second spaced outer ones of said profile separatory screen wires in a direction transverse to said direction of material flow, and forming first and second tie rod end groups, each of said plurality of tie rod ends having an upper surface; and first and second locking bars each secured to one of said first and second tie rod end groups, each of said locking bars extending parallel to said screen wires and being located adjacent a respective one of said first and second spaced outer ones of said profile separatory screen wires, each said locking bar being generally rectangular in cross-section and forming a locking profile including a lower locking bar face welded to said upper surfaces of said tie rod ends of said respective ones of said first and second tie rod end groups.",
"21. The snap lock separatory screen wire panel of claim 20 wherein said tie rods are cylindrical in cross section.",
"22. A snap lock separatory urethane panel adapted to cooperate with a retainer system in a vibrating separatory machine, said snap lock separatory urethane panel comprising: a generally rectangular panel body including a plurality of longitudinally and laterally extending, intersecting panel ribs, said intersecting panel ribs defining a gridwork containing a plurality of separating compartments; first and second spaced panel longitudinal side walls; first and second spaced panel transverse side walls; an outer longitudinal side wall surface at an outer edge of each said longitudinal side wall, each said outer longitudinal side wall surface being generally vertical in a use position of said snap lock separatory urethane panel; a plurality of spaced panel wall recesses in each of said outer longitudinal side wall surfaces, said panel wall recesses being spaced apart in a flow direction of a material to be separated by said snap lock separatory urethane panel, each of said panel wall recesses being generally vertically extending in said use position of said snap lock separatory urethane panel and being generally semi-cylindrical; and panel wall flanges on said spaced longitudinal panel side walls and on said spaced transverse panel side walls, said panel wall flanges forming locking profiles.",
"23. The snap lock separatory urethane panel of claim 22 wherein said separating compartments have open bottoms.",
"24. The snap lock separatory urethane panel of claim 22 wherein said panel wall flanges have planar upper surfaces.",
"25. The snap lock separatory urethane panel of claim 22 wherein said panel is rectangular and defines a waffle-shaped body."
],
"description_excerpt": "The present invention is directed generally to a snap lock separatory panel retainer system and to a separatory panel which is usable with such a retainer system. More particularly, the present invention is directed to a separatory panel retainer system that retains separatory panels in a vibrating separatory machine. Most specifically, the present invention is directed to a separatory panel retainer system that utilizes elongated locking strips which engage locking profiles on separatory panels in the vibrating separatory device. These locking strips utilize undercut receptacles to receive enlarged heads of retainer pins that are formed integrally with center retainer strips. The center retainer strips are, in turn secured to screen stringer rails that are typically provided in vibrating separating machines. The locking strips are snap locked onto the center retainer by the engagement of the enlarged heads of the retainer pin in the cooperatively shaped under cut receptacles in the locking strips. The separatory panels that are held in place in the vibrating separating machine are structured having locking profiles which underlie the locking strips in the assembled configuration of the snap lock separatory panel retainer system. Lower ends of selected ones of the retainer pins are received in spaced holes in the screen stringer rail. These retainer pin lower ends are radially expandable to retain the center retainer in screen stringer rails whose holes are of these proper dimensions or whose holes have become oversized due to wear.",
"cpc": [
"B07B 1/46",
"B07B 1/4645",
"F16B 29/00"
],
"ipc": [
"B07B 1/49"
],
"assignees": [
"CONN WELD IND INC"
],
"inventors": [
"BACHO FRANK J",
"LANE TRACY LEONARD"
],
"filing_date": "2007-05-15",
"publication_date": "2010-05-18",
"grant_date": "2010-05-18",
"priority_date": "2007-05-15",
"application_number": "US-79853707-A",
"family_id": "40026426",
"citations": [
"US2002195377A1",
"US2005167341A1",
"US3795311A",
"US4283278A",
"US4909929A",
"US5112475A",
"US5248043A",
"US5277319A",
"US5361911A",
"US5398817A",
"US5755334A",
"US5769241A",
"US6206200B1",
"US6964341B2",
"US7090083B2",
"US7273151B2",
"US7296685B2"
]
}
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