IP Library Granted Patent US 9,327,496
Granted Patent B2
US 9,327,496 · App. 14/382,875 · Granted May 3, 2016

Ink film constructions

Inventors: Benzion Landa (Nes Ziona, IL); Sagi Abramovich (Ra'anana, IL); Galia Golodetz (Rehovot, IL); Gregory Nakhmanovich (Rishon Lezion, IL); Alon Asher (Tel Aviv, IL); Mattetyahu Litvak (Tel Aviv, IL)
Assignee: LANDA CORPORATION LTD.
B41J2/01B32B3/10B32B5/02B41M5/0256B41M5/03C09D11/322B05D1/00D06P1/00D06P3/00D06Q1/00Y10T428/24802Y10T428/24934
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,327,496
App. No.
14/382,875
Granted
May 3, 2016
Kind
B2
Abstract

An ink film construction including: (a) a first printing substrate selected from the group consisting of an uncoated fibrous printing substrate, a commodity coated fibrous printing substrate, and a plastic printing substrate; and (b) an ink dot set contained within a square geometric projection projecting on the first printing substrate, the ink dot set containing at least 10 distinct ink dots, fixedly adhered to a surface of the first printing substrate, all the ink dots within the square geometric projection being counted as individual members of the set, each of the ink dots containing at least one colorant dispersed in an organic polymeric resin, each of the dots having an average thickness of less than 2,000 nm, and a diameter of 5 to 300 micrometers; each ink dot of the ink dots having a generally convex shape in which a deviation from convexity, (DC dot ), is defined by: DC dot =1−AA/CSA, AA being a calculated projected area of the dot, the area disposed generally parallel to the first fibrous printing substrate; and CSA being a surface area of a convex shape that minimally bounds a contour of the projected area; wherein a mean deviation from convexity (DC dotmean ) of the ink dot set is at most 0.05.

Claims (37)

1. An ink film construction comprising:

(a) a first printing substrate selected from the group consisting of an uncoated fibrous printing substrate, a commodity coated fibrous printing substrate, and a plastic printing substrate; and

(b) an ink dot set contained within a square geometric projection projecting on said first printing substrate, said ink dot set containing at least 10 distinct ink dots, fixedly adhered to a surface of said first printing substrate, all said ink dots within said square geometric projection being counted as individual members of said set, each of said ink dots containing at least one colorant dispersed in an organic polymeric resin, each of said dots having an average thickness of less than 2,000 nm, and a diameter of 5 to 300 micrometers;

each ink dot of said ink dots having a generally convex shape in which a deviation from convexity, (DC dot ), is defined by:

DC dot =1− AA/CSA,

AA being a calculated projected area of said dot, said area disposed generally parallel to said first fibrous printing substrate; and

CSA being a surface area of a convex shape that minimally bounds a contour of said projected area;

wherein a mean deviation from convexity (DC dotmean ) of said ink dot set is at most 0.05.

2. The ink film construction of claim 1 , said mean deviation being at most 0.04, at most 0.03, at most 0.025, at most 0.022, at most 0.02, at most 0.018, at most 0.017, at most 0.016, at most 0.015, or at most 0.014.

3. The ink film construction of claim 1 , said square geometric projection having a side length within a range of 0.5 mm to 15 mm.

4. The ink film construction of claim 1 , said square geometric projection having a side length of about 10 mm, 5 mm, 2 mm, 1 mm, 0.8 mm, or 0.6 mm.

5. The ink film construction of claim 1 , said diameter being at least 7, at least 10, at least 12, at least 15, at least 18, or at least 20 micrometers.

6. The ink film construction of claim 1 , wherein said first printing substrate is an uncoated fibrous printing substrate.

7. The ink film construction of claim 1 , wherein said first printing substrate is a commodity coated fibrous printing substrate.

8. The ink film construction of claim 7 , said mean deviation being at most 0.013, at most 0.012, at most 0.010, at most 0.009, or at most 0.008.

9. The ink film construction of claim 1 , wherein said first printing substrate is a plastic printing substrate.

10. The ink film construction of claim 9 , said mean deviation being at most 0.013, at most 0.012, at most 0.010, at most 0.009, or at most 0.008.

11. The ink film construction of claim 9 , said plurality of ink dots exhibiting, on said plastic printing substrate, an adhesive failure of at most 10%, or at most 5%, when subjected to a standard tape test.

12. The ink film construction of claim 9 , said plurality of ink dots being substantially free of adhesive failure when subjected to a standard tape test.

13. The ink film construction of claim 1 , said ink dot set having at least 20, at least 50, or at least 200 of said distinct ink dots.

14. The ink film construction of claim 1 , said DC dotmean being at least 0.0005, at least 0.001, at least 0.0015, at least 0.002, at least 0.0025, at least 0.003, at least 0.004, at least 0.005, at least 0.006, at least 0.008, at least 0.010, at least 0.012, or at least 0.013.

15. The ink film construction of claim 1 , said average thickness being within a range of 100-1,200 nm, 200-1,200 nm, 200-1,000 nm, 100-800 nm, 100-600 nm, 100-500 nm, 100-450 nm, 100-400 nm, 100-350 nm, 100-300 nm, 200-450 nm, 200-400 nm, or 200-350 nm.

16. The ink film construction of claim 1 , said average thickness being at most 1,800 nm, at most 1,500 nm, at most 1,200 nm, at most 1,000 nm, at most 800 nm, at most 500 nm, at most 450 nm, or at most 400 nm.

17. An ink film construction comprising:

(a) a first printing substrate selected from the group consisting of an uncoated fibrous printing substrate, a commodity coated fibrous printing substrate, and a plastic printing substrate; and

(b) an ink dot set contained within a square geometric projection projecting on said first printing substrate, said ink dot set containing at least 10 distinct ink dots, fixedly adhered to a surface of said first printing substrate, all said ink dots within said square geometric projection being counted as individual members of said set, each of said ink dots containing at least one colorant dispersed in an organic polymeric resin, each of said dots having an average thickness of less than 2,000 nm, and a diameter of 5 to 300 micrometers;

each ink dot of said ink dots having a deviation from a smooth circular shape, (DR dot ), represented by:

DR dot =[P 2 /(4π· A )]−1,

P being a measured or calculated perimeter of said ink dot;

A being a maximal measured or calculated area contained by said perimeter;

wherein a mean deviation (DR dotmean ) of said ink dot set is at most 0.60.

18. An ink film construction according to claim 1 ,

wherein a plurality of said ink dots form a continuous ink film covering an area of said surface, said film having an average thickness of at most 2,200 nm, at most 2,100 nm, at most 2,000 nm, at most 1,900 nm, at most 1,800 nm, at most 1,700 nm, at most 1,600 nm, at most 1,500 nm, or at most 1,400 nm;

wherein, within said area, the ink film construction exhibits a color gamut volume of at least 425 kilo(ΔE) 3 , at least 440 kilo(ΔE) 3 , at least 460 kilo(ΔE) 3 , at least 480 kilo(ΔE) 3 , or at least 500 kilo(ΔE) 3 .

19. The ink film construction of claim 18 , wherein said printing substrate is a fibrous printing substrate.

20. An ink film construction according to claim 17 , wherein a plurality of said ink dots form a continuous ink film covering an area of said surface, said film having an average thickness of at most 2,200 nm, at most 2,100 nm, at most 2,000 nm, at most 1,900 nm, at most 1,800 nm, at most 1,700 nm, at most 1,600 nm, at most 1,500 nm, or at most 1,400 nm;

within said area, the ink film construction exhibits a color gamut volume of at least 425 kilo(ΔE) 3 , at least 440 kilo(ΔE) 3 , at least 460 kilo(ΔE) 3 , at least 480 kilo(ΔE) 3 , or at least 500 kilo(ΔE) 3 .

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Dec 11, 2025
From: WINDER PTE. LTD.
To: LANDA CORPORATION LTD.
Reel/Frame 073185/0343 →
LIEN Recorded Jul 16, 2024
From: LANDA CORPORATION LTD.
To: WINDER PTE. LTD.
Reel/Frame 068380/0961 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2016
From: LANDA, BENZION; ABRAMOVICH, SAGI; GOLODETZ, GALIA; NAKHMANOVICH, GREGORY; ASHER, ALON; LITVAK, MATTETYAHU
To: LANDA CORPORATION LTD.
Reel/Frame 037460/0607 →
Continuity (20)
Provisional Application 61606913 · Mar 5, 2012
Provisional Application 61606985 · Mar 5, 2012
Provisional Application 61607537 · Mar 6, 2012
Provisional Application 61611557 · Mar 15, 2012
Provisional Application 61611570 · Mar 15, 2012
Provisional Application 61611567 · Mar 15, 2012
Provisional Application 61619372 · Apr 2, 2012
Provisional Application 61619349 · Apr 2, 2012
Provisional Application 61640493 · Apr 30, 2012
Provisional Application 61641258 · May 1, 2012
Provisional Application 61641133 · May 1, 2012
Provisional Application 61640881 · May 1, 2012
Provisional Application 61641223 · May 1, 2012
Provisional Application 61641653 · May 2, 2012
Provisional Application 61645086 · May 10, 2012
Provisional Application 61645085 · May 10, 2012
Provisional Application 61645077 · May 10, 2012
Provisional Application 61645076 · May 10, 2012
Provisional Application 61645075 · May 10, 2012
Related Publication 20150024180A1 · Jan 22, 2015