Print Quality Assessment of QR Code Elements Achieved by the Digital Thermal Transfer Process
Abstract
1. Introduction
2. Theoretical Part
2.1. Structure of QR Symbols
2.1.1. QR Codes
2.1.2. Micro QR Codes
2.1.3. Reading QR Codes
3. Materials and Methods
4. Results and Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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| Thickness of UV Varnish | Element of 0.01 cm2 (A) | Element of 0.06 cm2 (B) | Element of 0.25 cm2 (C) | Element of 1 cm2 (D) | Element of 4 cm2 (E) | Element of 16 cm2 (F) |
|---|---|---|---|---|---|---|
| (S1) Digital reference | 28.27% | 30.35% | 33.27% | 38.78% | 68.26% | 67.66% |
| (S2) 7 µm layer_1 drop | 27.74% | 29.89% | 35.61% | 38.44% | 68.12% | 67.27% |
| (S3) 14 µm layer _2 drops | 29.06% | 31.86% | 37.14% | 39.43% | 68.69% | 67.80% |
| (S4) 21 µm layer _3 drops | 29.24% | 33.94% | 40.62% | 39.89% | 69.04% | 67.87% |
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Majnarić, I.; Jelkić, M.; Morić, M.; Hajdek, K. Print Quality Assessment of QR Code Elements Achieved by the Digital Thermal Transfer Process. J. Imaging 2026, 12, 86. https://doi.org/10.3390/jimaging12020086
Majnarić I, Jelkić M, Morić M, Hajdek K. Print Quality Assessment of QR Code Elements Achieved by the Digital Thermal Transfer Process. Journal of Imaging. 2026; 12(2):86. https://doi.org/10.3390/jimaging12020086
Chicago/Turabian StyleMajnarić, Igor, Marija Jelkić, Marko Morić, and Krunoslav Hajdek. 2026. "Print Quality Assessment of QR Code Elements Achieved by the Digital Thermal Transfer Process" Journal of Imaging 12, no. 2: 86. https://doi.org/10.3390/jimaging12020086
APA StyleMajnarić, I., Jelkić, M., Morić, M., & Hajdek, K. (2026). Print Quality Assessment of QR Code Elements Achieved by the Digital Thermal Transfer Process. Journal of Imaging, 12(2), 86. https://doi.org/10.3390/jimaging12020086

