Pick mechanism pick roll tire having multiple tread widths

US9302866B1 · US · B1

Patent metadata
FieldValue
Publication numberUS-9302866-B1
Application numberUS-201514629780-A
CountryUS
Kind codeB1
Filing dateFeb 24, 2015
Priority dateFeb 24, 2015
Publication dateApr 5, 2016
Grant dateApr 5, 2016

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A center-fed media feed system including a media sheet pick mechanism having a hub-mounted D-shaped pick tire having variable tread width along the outer circumference thereof and a media aligner downstream of the pick mechanism. The nip of the pick tire contacting a media sheet is disposed at a first predetermined distance from the media aligner. A wide tread portion initially contacts a leading edge portion of the media sheet providing a first media feeding force to move the media sheet toward the media aligner and, at a second predetermined distance between the leading edge of the media and the media aligner, a narrow tread portion of the pick tire contacts the media so as to provide a reduced media feeding force, allowing the media sheet to align to the media aligner and then be fed into a feed nip in the media aligner or a downstream feed roll pair.

First claim

Opening claim text (preview).

What is claimed is: 1. A media feed system in an image forming device, comprising: a frame; a media support for holding a media stack having one or more media sheets, the media support abutting the frame; a shaft rotatably mounted to the frame and positioned above the media stack, the shaft operably coupleable to a drive source in the image forming device; a pick roll coupled to the shaft and rotatable therewith to pick a sheet of media from the media stack and feed the picked media sheet into a media feed path in a media feed direction, the pick roll including: a D-shaped hub coupled to the shaft; and a D-shaped pick tire mounted on the hub, the pick tire rotatable to contact the media sheet of the media stack at a pick position and to pick and move the media sheet in the media feed direction; the pick tire having a wide tread portion contiguous with a narrow tread portion, the wide tread portion having a first circumferential length, the narrow tread portion having a tread width that is less than a width of the wide tread portion, the narrow tread portion having a second circumferential length, the wide tread portion applying a first media feeding force that is greater than a second media feeding force applied by the narrow tread portion; and, an aligner for aligning a leading edge of the picked media sheet to be transverse to the media feed direction, the aligner disposed downstream of the pick position at a distance that is less than a sum of the first and second circumferential lengths and greater than the first circumferential length, the aligner positioned transverse to the media feed path, wherein, when the pick tire initially contacts the media sheet at the pick position with the wide tread portion, the wide tread portion applies the first media feeding force to the media sheet to move the sheet in the media feed direction and into the media feed path, and, as the pick tire is further rotated the narrow tread portion contacts the picked media sheet to apply the second media feeding force allowing the leading edge of the media sheet to contact and align with the aligner. 2. The media feed system of claim 1 , wherein the pick tire further comprises three tire bands, an inner tire band abuttingly positioned between two outer tire bands, the inner tire band having a circumferential tread length substantially equal to the sum of the first and second circumferential lengths and the two outer bands each having a circumferential tread length substantially equal to the first circumferential length. 3. The media feed system of claim 2 , wherein the hub has one of an axial key and an axial keyway and each of the three tire bands has a corresponding one of an axial keyway and an axial key. 4. The media feed system of claim 2 , wherein the hub has a width that is greater than a sum of widths of the inner and two outer bands, and, further wherein the inner band is spaced apart from the two outer bands. 5. The media feed system of claim 4 , wherein the inner band is positioned between a first and a second alignment member radially depending from the hub and positioned about a centerline of the hub and one of the two outer bands is positioned in between a left flange of the hub and a third alignment member radially depending from the hub and spaced apart from the left flange of the hub and the other of the two outer bands is positioned in between a right flange of the hub and a fourth alignment member radially depending from the hub and spaced apart from the right flange of the hub. 6. The media feed system of claim 1 , wherein the pick tire further comprises an inner band positioned in abutment between two outer bands, the inner band and the two outer bands being substantially identical, each band having a circumferential tread length substantially equal to the first circumferential length, and, further wherein the inner band is positioned on the hub opposite to each of the two outer bands. 7. The media feed system of claim 1 , wherein the hub includes a rim and a shaft coupler removably coupled to the shaft with the rim being removably attached to the shaft coupler, and, when attached to the shaft coupler, rotatable with the shaft. 8. The media feed system of claim 1 , wherein the narrow tread portion has a width that tapers inwardly from a right and a left edge of the pick tire beginning adjacent an end of the wide tread portion. 9. The media feed system of claim 1 , wherein the narrow tread portion has a substantially constant width along the second circumferential length. 10. The media feed system of claim 1 , wherein the aligner is a pair of bump align feed rolls. 11. The media feed system of claim 1 , wherein the aligner is a gate rotatably mounted to the frame and coupleable to the drive source, and, when rotated into a first position, the gate is in the media feed path for contact with the leading edge of the picked media sheet, and, when rotated into a second position, the gate is out of the media feed path. 12. A media feed system in an image forming device, comprising: a frame; a media support for holding a media stack having one or more media sheets to be fed in a media feed direction along a media feed path, the media support abutting the frame; a shaft rotatably mounted to the frame and positioned above the media stack, the shaft operably coupleable to a drive source in the image forming apparatus; a pick roll coupled to the shaft and rotatable therewith to pick a topmost sheet of media from the media stack, the pick roll centered about a centerline of the media feed path, the pick roll including: a hub mounted to the shaft so as to rotate therewith, the hub including: a shaft coupler removably coupled to the shaft; and a D-shaped rim removably attached to the shaft coupler; and, a D-shaped pick tire removably mounted on the rim, the pick tire contacting a topmost media sheet of the media stack at a pick position and drivable by the shaft to pick and move the topmost media sheet in the media feed direction into the media feed path; the pick tire having a wide tread portion contiguous with a narrow tread portion, the wide tread portion having a first circumferential length, the narrow tread portion having a tread width that is less than a width of the wide tread portion, the narrow tread portion having a second circumferential length, the wide tread portion applying a first media feeding force to the topmost media sheet that is greater than a second media feed force applied by the narrow tread portion to the topmost media sheet; a feed roll pair mounted to the frame downstream of the pick roll in the media feed direction and forming a feed nip for receiving the picked media sheet, the feed nip positioned at a predetermined distance from the pick position that is about equal to a sum of the first and the second circumferential length; and an aligner for aligning a leading edge of the picked media sheet transverse to the media feed direction, the aligner coupleable to the drive source and moveable between a first position in the media feed path and a second position out of the media feed path, the aligner disposed between the pick mechanism and the feed roll pair and positioned transverse to the media feed direction, the aligner disposed downstream of the pick position at a distance that is less than a sum of the first and second circumferential lengths and greater than the first circumferential length, wherein, the pick tire is rotated to initially contact the topmost media sheet with the wide tread portion applying the first media feeding force to move the topmost media in the media feed direction, and as the pick tire is rotated the narrow tread portion th

Assignees

Inventors

Classifications

  • B65H3/0638Primary

    Construction of the rollers or like rotary separators (B65H3/0615 takes precedence; construction of feed or guide rollers B65H27/00) · CPC title

  • Driving devices therefor · CPC title

  • Movable stops or gauges, e.g. rising and falling front stops {(B65H11/007 takes precedence)} · CPC title

  • Forces; Stresses · CPC title

  • Controlling article feeding, separating, pile-advancing, or associated apparatus, to take account of incorrect feeding, absence of articles, or presence of faulty articles · CPC title

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What does patent US9302866B1 cover?
A center-fed media feed system including a media sheet pick mechanism having a hub-mounted D-shaped pick tire having variable tread width along the outer circumference thereof and a media aligner downstream of the pick mechanism. The nip of the pick tire contacting a media sheet is disposed at a first predetermined distance from the media aligner. A wide tread portion initially contacts a leadi…
Who is the assignee on this patent?
Lexmark Int Inc
What technology area does this patent fall under?
Primary CPC classification B65H3/0638. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Apr 05 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).