Roll Having Textured Axial Ends to Prevent Toner Leakage
US-2015293469-A1 · Oct 15, 2015 · US
US10095157B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10095157-B2 |
| Application number | US-201715782337-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 12, 2017 |
| Priority date | Nov 11, 2016 |
| Publication date | Oct 9, 2018 |
| Grant date | Oct 9, 2018 |
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A semiconductive roller is provided which includes a roller body including a tubular inner layer of an inner layer elastic material containing a softener, and an outer layer of an outer layer elastic material provided on an outer periphery of the inner layer. The outer layer elastic material has a swelling percentage of not higher than 1% as measured when the outer layer elastic material is immersed in the softener at 100° C. for 24 hours. Thus, the semiconductive roller has proper flexibility to be substantially free from imaging failures such as white voids, image density reduction and fogging, and is less liable to cause the contamination of a photoreceptor body and the like and the associated defective image formation which may otherwise occur due to the bleeding of the softener.
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What is claimed is: 1. A semiconductive roller comprising a roller body which comprises: a tubular inner layer of an inner layer elastic material containing a softener; and an outer layer of an outer layer elastic material provided on an outer periphery of the inner layer, the outer layer elastic material having a swelling percentage of not higher than 1% as measured when the outer layer elastic material is immersed in the softener at 100° C. for 24 hours. 2. The semiconductive roller according to claim 1 , wherein the inner layer elastic material is a crosslinked product of an inner layer rubber composition comprising a nonpolar rubber and not less than 15 parts by mass of the softener based on 100 parts by mass of the nonpolar rubber, wherein the outer layer elastic material is a crosslinked product of an outer layer rubber composition comprising a polar rubber. 3. The semiconductive roller according to claim 2 , wherein the softener is present in a proportion of not less than 15 parts by mass and not greater than 180 parts by mass based on 100 parts by mass of the nonpolar rubber in the crosslinked product of the inner layer rubber composition. 4. The semiconductive roller according to claim 2 , wherein the softener is present in a proportion of not less than 50 parts by mass and not greater than 150 parts by mass based on 100 parts by mass of the nonpolar rubber in the crosslinked product of the inner layer rubber composition. 5. The semiconductive roller according to claim 2 , wherein the softener has a dynamic viscosity of not lower than 10 mm 2 /s at 100° C. 6. The semiconductive roller according to claim 5 , wherein the softener has a dynamic viscosity of not lower than 10 mm 2 /s and not higher than 35 mm 2 /s at 100° C. 7. The semiconductive roller according to claim 5 , wherein the softener is a petroleum-derived oil having an aniline point of not lower than 120° C. 8. The semiconductive roller according to claim 7 , wherein the softener is a petroleum-derived oil having an aniline point of not lower than 120° C. and not higher than 150° C. 9. The semiconductive roller according to claim 2 , wherein the crosslinked product of the inner layer rubber composition is different in solubility parameter (SP) value from the softener by a difference of less than 1, wherein the crosslinked product of the outer layer rubber composition is different in solubility parameter (SP) value from the softener by a difference of not less than 1. 10. The semiconductive roller according to claim 1 , wherein the outer layer has a thickness of not less than 0.1 mm and not greater than 1 mm. 11. The semiconductive roller according to claim 1 , which is incorporated as a developing roller in an electrophotographic image forming apparatus.
characterised by the structure of the donor member, e.g. surface properties · CPC title
Developing device · CPC title
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