Multi-layered plastic sleeve for a blanket cylinder and a method for producing the multi-layered plastic sleeve
This invention relates to a multi-layered plastic sleeve and a method for producing the multi-layered plastic sleeve for use with a blanket cylinder in an electrophotographic process.
1 . A method for producing a multi-layered plastic sleeve for use with a blanket cylinder in an electrophotographic process, the method comprising:
a. positioning a quantity of an outer coating material for the blanket cylinder sleeve on the inside of a mold having an inner surface and a longitudinal axis and an inner diameter equal to the desired outer diameter of the sleeve, the quantity being an amount sufficient to produce a selected thickness on the inside of the mold and distributed uniformly on the inner surface of the mold;
b. positioning a second quantity of at least one of a liquid or liquefiable plastic at a temperature below 100° C. and liquid plastic precursors of a plastic in the mold containing the outer coating material, the second quantity being an amount sufficient to produce the sleeve of a selected thickness;
c. rotating the mold about its longitudinal axis to produce a centrifugal force of at least about 5 times the force of gravity at the inside of the mold;
d. heating the mold to a temperature from about 25 to about 100° C. during rotation of the mold; and
e. removing the sleeve from the mold, the sleeve having a wall thickness from about 1 to about 20 mm.
2 . The method of claim 1 , wherein the outer coating material is a ceramer or a fluorocarbon polymer or copolymer.
3 . The method of claim 1 , wherein the blanket cylinder has an outer diameter from about 2 cm to about 400 cm.
4 . The method of claim 1 , wherein the plastic is a rigid polyurethane plastic.
5 . The method of claim 1 , wherein the plastic is a thermoplastic plastic.
6 . The method of claim 1 , wherein the plastic is a thermosetting plastic.
7 . The method of claim 1 , wherein the sleeve has a wall thickness variation of no more than +/−12.5 microns from the average wall thickness.
8 . The method of claim 1 , wherein the centrifugal force is from about 5 to about 10 times the force of gravity.
9 . The method of claim 1 , wherein the outer coating is applied to the inside of the mold by ring coating.
10 . The method of claim 1 , wherein a plurality of plastics are positioned in the mold, the plastics having different specific gravities.
11 . The method of claim 10 , wherein the plurality of plastics form a plurality of layers in the sleeve wall during rotation of the mold.
12 . A method for producing a multi-layered plastic sleeve having a sleeve wall thickness for use with a blanket cylinder in an electrophotographic process, the method comprising:
a. positioning a quantity of an outer coating material for the blanket cylinder sleeve, a quantity of plastic material consisting of at least one of a liquid or liquefiable plastic at a temperature below 100° C. and liquid plastic precursors in a mold having an inside, an inner surface and a longitudinal axis, the quantity of each of the outer coating material and of each of the plastic materials being an amount sufficient to produce a layer of each of the materials in the sleeve wall of a selected thickness, the materials having different specific gravities so that the outer coating material is formed as an outside of the sleeve;
b. rotating the mold about its longitudinal axis to produce a centrifugal force of at least about 5 times the force of gravity at the inside of the mold;
c. heating the mold to a temperature from about 25 to about 100° C. during rotation of the mold; and
d. removing the sleeve from the mold, the sleeve having a wall thickness from about 1 to about 20 mm.
13 . The method of claim 12 , wherein the outer coating material is a ceramer or a fluorocarbon polymer or copolymer.
14 . The method of claim 12 , wherein the plastic is a rigid polyurethane plastic.
15 . The method of claim 12 , wherein the sleeve has a wall thickness variation of no more than +/−12.5 microns from the average wall thickness.
16 . The method of claim 12 , wherein a plurality of plastics are positioned in the mold, the plastics having different specific gravities.
17 . The method of claim 12 , wherein the plurality of plastics form a plurality of layers in the sleeve wall during rotation of the mold.
18 . A method for producing a multi-layered plastic sleeve having a sleeve wall thickness for use with an image cylinder or a blanket cylinder in an electrophotographic process, the method comprising:
a. positioning a plurality of plastic materials consisting of liquid or liquefiable plastic at a temperature below 100° C. and liquid plastic precursors in a mold having an inside, an inner surface and a longitudinal axis, the quantity of each of the plastic materials being an amount sufficient to produce a layer of each of the plastic materials in the sleeve wall of a selected thickness, the plastic materials having different specific gravities so that layers of the plastic materials are formed in the sleeve wall;
b. rotating the mold about its longitudinal axis to produce a centrifugal force of at least about 5 times the force of gravity at the inside of the mold;
c. heating the mold to a temperature from about 25 to about 100° C. during rotation of the mold; and
d. removing the sleeve from the mold, the sleeve having a wall thickness from about 1 to about 20 mm.
19 . The method of claim 18 , wherein one of the plastic materials include a rigid polyurethane plastic.
20 . The method of claim 18 , wherein one of the plastic materials include a thermoplastic plastic.
21 . The method of claim 18 , wherein one of the plastic materials include a thermosetting plastic.
22 . The method of claim 18 , wherein the sleeve has a wall thickness variation of no more than +/−12.5 microns from the average wall thickness.
23 . The method of claim 18 , wherein the centrifugal force is from about 5 to about 10 times the force of gravity.
24 . A sleeve for a blanket cylinder in an electrophotographic process, the cylinder comprising:
a. an outer layer selected from a ceramer and fluorocarbon polymers and copolymers; and
b. at least two inner layers inside the outer layer, each inner layer consisting of a different plastic material selected from a liquid or liquefiable plastic at a temperature below 100° C. and a rigid polyurethane, the sleeve having a wall thickness from about 1 to about 20 mm with a wall thickness variation of about +/−12.5 microns from an average wall thickness.