Claims
- 1. A currency bill comprising a printing sheet comprising a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, wherein the printing sheet is uncharged, with printing on at least one side of said printing sheet.
- 2. A currency bill as in claim 1 with printing on at both sides of said printing sheet.
- 3. The currency bill of claim 1, wherein the fibrous electrically conductive filler contains tin oxide in an amount of 5-100 parts by weight and antimony oxide in an amount of 0.01-10 parts by weight per 100 parts by weight of fibers of the fibrous electrically conductive filler.
- 4. The currency bill of claim 1, wherein the fibrous electrically conductive filler contains indium oxide and cobalt oxide in the amount of 0.01-10 parts by weight per 100 parts by weight of the fibrous electrically conductive filler.
- 5. A security comprising a printing sheet comprising a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, with printing on at least one side of said printing sheet.
- 6. The security of claim 5, wherein the fibrous electrically conductive filler contains tin oxide in an amount of 5-100 parts by weight and antimony oxide in an amount of 0.01-10 parts by weight per 100 parts by weight of fibers of the fibrous electrically conductive filler.
- 7. The security of claim 5, wherein the fibrous electrically conductive filler contains indium oxide and cobalt oxide in the amount of 0.01-10 parts by weight per 100 parts by weight of the fibrous electrically conductive filler.
- 8. An admission ticket comprising a printing sheet comprising a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, with printing on at least one side of said printing sheet.
- 9. The admission ticket of claim 8, wherein the fibrous electrically conductive filler contains tin oxide in an amount of 5-100 parts by weight and antimony oxide in an amount of 0.01-10 parts by weight per 100 parts by weight of fibers of the fibrous electrically conductive filler.
- 10. The admission ticket of claim 8, wherein the fibrous electrically conductive filler contains indium oxide and cobalt oxide in the amount of 0.01-10 parts by weight per 100 parts by weight of the fibrous electrically conductive filler.
- 11. A currency bill comprising a printing sheet made from a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, wherein the printing sheet is uncharged with printing on at least one side of said printing sheet.
- 12. A security comprising a printing sheet made from a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, wherein the printing sheet is uncharged, with printing on at least one side of said printing sheet.
- 13. An admission ticket comprising a printing sheet made from a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, wherein the printing sheet is uncharged, with printing on at least one side of said printing sheet.
- 14. A currency bill consisting essentially of a printing sheet made from a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, wherein the printing sheet is uncharged with printing on both sides of said printing sheet.
- 15. A security consisting essentially of a printing sheet made from a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, wherein the printing sheet is uncharged with printing on at least one side of said printing sheet.
- 16. An admission ticket consisting essentially of a printing sheet made from a resin containing 5 to 80 wt % of a fibrous electrically conductive filler which has (1) a volume resistivity of less than 100 Ω·cm, (2) an average fiber length of 3-50 μm, (3) an average fiber diameter of 0.01 to 5 μm, (4) an aspect ratio of 3 to 100 and (5) a surface coated with an electrically conductive layer containing at least a tin oxide and an antimony oxide, wherein the printing sheet is uncharged, with and printing on at least one side of said printing sheet.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9-247901 |
Aug 1997 |
JP |
|
CROSS-REFERRENCE TO RELATED APPLICATIONS
This application is a §371 of International PCT Application Ser. No. PCT/JP97/04808, filed Dec. 25, 1997, which claims priority from Japanese application No. 247,901/1997, filed Aug. 27, 1997.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP97/04808 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO99/10418 |
3/4/1999 |
WO |
A |
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
4554094 |
Babler et al. |
Nov 1985 |
A |
4904636 |
Hayashi et al. |
Feb 1990 |
A |
4933109 |
Yamada et al. |
Jun 1990 |
A |
6101362 |
Shimura et al. |
Aug 2000 |
A |
Foreign Referenced Citations (4)
Number |
Date |
Country |
267535 |
May 1988 |
EP |
586846 |
Mar 1994 |
EP |
0 696 615 |
Feb 1996 |
EP |
9105668 |
May 1991 |
WO |
Non-Patent Literature Citations (3)
Entry |
English Abstract of JP-A-09-059,427—Haruyama et al. |
Patent Abstracts of Japan, Publication No. 61136532, published Jun. 24, 1986. |
Database WPI, Section Ch, Week 199517, JP 07 052526 dated Feb. 28, 1995. |