Anti-friction ring for a developer roller in a liquid electrophotographic printer
10698342 ยท 2020-06-30
Assignee
Inventors
Cpc classification
G03G15/0817
PHYSICS
International classification
Abstract
In one example, a sealing system for a developer roller in a liquid electrophotographic printer includes a pair of arcuate seals each with an annular sealing surface to seal one end of the developer roller; a pair of washers each having a low friction surface to contact one of the sealing surfaces; and a pair of retainers each to hold one of the washers flat against the end of the roller.
Claims
1. A sealing system for a developer roller in a liquid electrophotographic printer, comprising: a pair of arcuate seals each with an annular sealing surface to seal one end of the developer roller; a pair of washers each having a low friction surface to contact one of the sealing surfaces, each washer pre-flexed with a concave shape; and a pair of retainers each to hold one of the washers flat against the end of the roller.
2. The sealing system of claim 1, where the developer roller includes a shaft and each retainer comprises a push-on retainer to bear on the shaft to hold the corresponding washer flat against the end of the roller.
3. A group of parts for a developer unit in a liquid electrophotographic printer, comprising: a developer roller; a shaft extending axially from each end of the roller; multiple anti-friction rings each having a low friction surface to encircle the shaft at one end of the developer roller; and multiple push-on retainers each to press one of the anti-friction rings against one end of the developer roller.
4. The group of claim 3, where each anti-friction ring is concave to be flattened against the end of the developer roller with one of the retainers.
5. The group of claim 3, where an outer diameter of each anti-friction ring is less than an outer diameter of the developer roller.
6. A developer roller assembly for liquid electrophotographic printing, comprising: a developer roller including a conductive core and a compliant exterior surrounding the core; a shaft extending axially from each end of the developer roller; a flat anti-friction ring encircling the shaft on each end of the developer roller, each anti-friction ring having a low friction outboard surface facing away from the end of the roller; and a push-on retainer pressing each anti-friction ring against the corresponding end of the developer roller.
7. The roller assembly of claim 6, comprising a seal pressed against the low friction surface of the anti-friction ring at each end of the developer roller.
8. The roller assembly of claim 6, where each anti-friction ring comprises a washer pre-flexed to a concave shape and flattened against the end of the developer roller with one of the retainers.
9. The roller assembly of claim 6, where the low friction surface on each anti-friction ring is made of polytetrafluoroethylene.
10. The roller assembly of claim 9, where each anti-friction ring is made of polytetrafluoroethylene.
11. The roller of claim 6, where the compliant exterior wraps around the ends of the conductive cylinder and each anti-friction ring is pressed against the compliant exterior.
Description
DRAWINGS
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(6) The same part numbers designate the same or similar parts throughout the figures. The figures are not necessarily to scale.
DESCRIPTION
(7) In liquid electrophotographic printing, a thin film of LEP ink is applied to the exterior of a developer roller and then presented to a photoconductor at a nip between the developer roller and the photoconductor. In some developer units, foam seals are pressed against the face at each end of the developer roller to prevent ink leaking off the ends of the roller. The developer roller rotates at high speed during operation. Friction between the seal and the rotating roller can tear the foam seals and generate heat that can damage the ink.
(8) A new sealing system has been developed to reduce friction between the seals and the ends of the developer roller. In one example, the sealing system includes a pair of PTFE (polytetrafluoroethylene) or other low friction washers, each pre-flexed with a concave shape (bowed out at the center of the washer), and a corresponding pair of push-on retainers to flatten and hold the washers against the ends of the developer roller. Each retainer is pushed onto the roller shaft to secure the corresponding washer against the end of the roller. The seals are then pressed against the outboard face of the PTFE washers to reduce friction between the seals and the developer roller. Pre-flexing the washers with an outward bow helps enable a thinner washer to stay flat for a good seal.
(9) These and other examples shown in the figures and described below illustrate but do not limit the scope of the patent, which is defined in the Claims following this Description.
(10) As used in this document, low friction means a coefficient of friction less than 0.3.
(11)
(12) Referring first to
(13) The now more concentrated ink film 22 on developer roller 14 is presented to photoconductor 25 where some of the ink is transferred in the pattern of a latent electrostatic image on the photoconductor as the desired ink image 42. A charged cleaner roller 18 rotates along developer roller 14 to electrically remove residual ink from roller 14. In this example, cleaner roller 18 is scrubbed with a sponge roller 20 that is rotated against cleaner roller 18. Some of the ink residue may be absorbed into sponge roller 20 and some may fall away. Excess carrier liquid and ink drains to return chamber 32 where it can be recycled to reservoir 28.
(14) As shown in
(15) Referring now to
(16) In the example shown in
(17) Referring specifically to
(18) As noted above, the examples shown in the figures and described herein illustrate but do not limit the scope of the patent, which is defined in the following Claims.
(19) A, an and the used in the claims means one or more.