IP Library Granted Patent US 9,776,446
Granted Patent B2
US 9,776,446 · App. 15/105,672 · Granted Oct 3, 2017

Front face side substrate for thermal transfer image-receiving sheet, and thermal transfer sheet

Inventors: Hirokazu Takahashi (Tokyo, JP); Junpei Oomura (Tokyo, JP); Hiroshi Matsuura (Tokyo, JP); Hiroshi Honda (Koga, JP)
Assignees: Dai Nippon Printing Co., Ltd.; Mitsui Chemicals Tohcello, Inc.
B41M5/44B32B27/08B32B27/20B32B27/32B41M5/41B41M5/42B32B2250/24B32B2250/242B32B2264/102B32B2264/104B41M2205/02B41M2205/32B41M2205/36B41M2205/38
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Quick Facts
Patent No.
US 9,776,446
App. No.
15/105,672
Granted
Oct 3, 2017
Kind
B2
Abstract

A front face side substrate provided between a supporting member and a receiving layer of a thermal transfer image-receiving sheet. The front face side substrate includes a front face side layer provided on one surface of a substrate layer and a rear face side layer provided on another surface of the substrate layer. The substrate layer includes (A) a propylene-based polymer, (B) calcium carbonate, and (C) titanium oxide, and the weight of (A) is 70% by weight to 94.5% by weight, the weight of (B) is 5% by weight to 28% by weight, and the weight of (C) is 0.5% by weight to 3% by weight, based on the assumption that the total weight of (A), (B) and (C) is 100% by weight. The front face side layer includes a modified propylene-based polymer, and the rear face side layer includes a propylene-based polymer.

Claims (36)

1. A front face side substrate for a thermal transfer image-receiving sheet,

comprising a layered structure of a front face side layer, a substrate layer and a rear face side layer in this order;

the substrate layer comprising (A) a propylene-based polymer, (B) calcium carbonate, and (C) titanium oxide, and the weight of (A) being in the range of from not less than 70% by weight to not more than 94.5% by weight, the weight of (B) being in the range of from not less than 5% by weight to not more than 28% by weight, and the weight of (C) being in the range of from not less than 0.5% by weight to not more than 3% by weight, based on the assumption that the total weight of (A), (B) and (C) is 100% by weight;

the front face side layer comprising a modified propylene-based polymer; and

the rear face side layer comprising a propylene-based polymer.

2. The front face side substrate for a thermal transfer image-receiving sheet according to claim 1 ,

wherein the front face side layer comprises (D) a propylene homopolymer,

as the modified propylene-based polymer; or

wherein the front face side layer comprises (D) a propylene homopolymer and (E) a propylene-α-olefin random copolymer, the weight of (E) is not more than 50% by weight, based on the assumption that the total weight of (D) and (E) is 100% by weight; and either or both of (D) and (E) is the modified propylene-based polymer.

3. The front face side substrate for a thermal transfer image-receiving sheet according to claim 2 ,

wherein the rear face side layer contains (F) a propylene homopolymer, and (G) a propylene-α-olefin random copolymer, and the weight of (F) is in the range of from not less than 40% by weight to not more than 90% by weight, based on the assumption that the total weight of (F) and (G) is 100% by weight.

4. The front face side substrate for a thermal transfer image-receiving sheet according to claim 3 , wherein an adhesive layer is further provided on the front face side layer.

5. The front face side substrate for a thermal transfer image-receiving sheet according to claim 2 , wherein the thickness of the front face side layer is in the range of from not less than 0.5 μm to not more than 10 μm.

6. The front face side substrate for a thermal transfer image-receiving sheet according to claim 5 , wherein an adhesive layer is further provided on the front face side layer.

7. The front face side substrate for a thermal transfer image-receiving sheet according to claim 2 , wherein an adhesive layer is further provided on the front face side layer.

8. The front face side substrate for a thermal transfer image-receiving sheet according to claim 1 ,

wherein the rear face side layer contains (F) a propylene homopolymer, and (G) a propylene-α-olefin random copolymer, and the weight of (F) is in the range of from not less than 40% by weight to not more than 90% by weight, based on the assumption that the total weight of (F) and (G) is 100% by weight.

9. The front face side substrate for a thermal transfer image-receiving sheet according to claim 8 , wherein the thickness of the front face side layer is in the range of from not less than 0.5 μm to not more than 10 μm.

10. The front face side substrate for a thermal transfer image-receiving sheet according to claim 9 , wherein an adhesive layer is further provided on the front face side layer.

11. The front face side substrate for a thermal transfer image-receiving sheet according to claim 8 , wherein an adhesive layer is further provided on the front face side layer.

12. The front face side substrate for a thermal transfer image-receiving sheet according to claim 1 , wherein the modified propylene-based polymer is a propylene-based polymer graft-modified with an unsaturated carboxylic acid or a derivative thereof.

13. The front face side substrate for a thermal transfer image-receiving sheet according to claim 12 , wherein the thickness of the front face side layer is in the range of from not less than 0.5 μm to not more than 10 μm.

14. The front face side substrate for a thermal transfer image-receiving sheet according to claim 13 , wherein an adhesive layer is further provided on the front face side layer.

15. The front face side substrate for a thermal transfer image-receiving sheet according to claim 12 , wherein an adhesive layer is further provided on the front face side layer.

16. The front face side substrate for a thermal transfer image-receiving sheet according to claim 1 , wherein the thickness of the front face side layer is in the range of from not less than 0.5 μM to not more than 10 μm.

17. The front face side substrate for a thermal transfer image-receiving sheet according to claim 16 , wherein an adhesive layer is further provided on the front face side layer.

18. The front face side substrate for a thermal transfer image-receiving sheet according to claim 1 , wherein an adhesive layer is further provided on the front face side layer.

19. A thermal transfer image-receiving sheet, comprising:

a supporting member

a receiving layer provided on one surface of the supporting member; and

a front face side substrate provided between the supporting member and the receiving member;

the front face side substrate comprising a layered structure of a rear face side layer, a substrate layer and a front face side layer, and being arranged in this order from the supporting member;

the substrate layer comprising (A) a propylene-based polymer, (B) calcium carbonate, and (C) titanium oxide, and the weight of (A) being in the range of from not less than 70% by weight to not more than 94.5% by weight, the weight of (B) being in the range of from not less than 5% by weight to not more than 28% by weight, and the weight of (C) being in the range of from not less than 0.5% by weight to not more than 3% by weight, based on the assumption that the total weight of (A), (B) and (C) is 100% by weight;

the front face side layer comprising a modified propylene-based polymer; and

the rear face side layer comprising a propylene-based polymer.

20. A thermal transfer image-receiving sheet according to claim 19 , wherein the thickness of the supporting member is in the range of from not less than 150 μm to not more than 300 μm.

Assignments (2)
CHANGE OF NAME Recorded Sep 3, 2024
From: MITSUI CHEMICALS TOHCELLO, INC.
To: RM TOHCELLO CO., LTD.
Reel/Frame 068824/0103 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2016
From: OOMURA, JUNPEI; MATSUURA, HIROSHI; HONDA, HIROSHI
To: DAI NIPPON PRINTING CO., LTD.; MITSUI CHEMICALS TOHCELLO, INC.
Reel/Frame 038939/0298 →
Priority Claims (1)
JP 2013-261223 · Dec 18, 2013 · national
Continuity (1)
Related Publication 20170043604A1 · Feb 16, 2017