Clinical Research

The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency

Volume: 6 Number: 2 December 30, 2022
EN

The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency

Abstract

The fast-growing printing technologies play a significant role in increasing promotional and advertising activities in the manufacturing industry. Among these technologies, pad printing is a method in which the drawn image is transferred to the object directly. This method can be used in all other sectors in terms of permanence, production speed, and ease of use. To perform the pad printing process with a zero-defect policy, parameter optimization is vital. To obtain the desired efficiency, the main parameters affecting pad printing need to be enhanced and applied during the whole process such as engraving depth and silicon geometry. This work aims to observe the effects of the engraving depth and silicone geometry printing parameters on pad printing quality. With the optimized settings, the durability of the printing has been increased, the printing time performance has been improved and the error-free printing goal has been succeeded. The alterations made in engraving depth and silicone geometry were examined and the maximum printing efficiency and productivity are reached in our pad printing process.

Keywords

References

  1. [1] John Kaverman, Trent Pepicelli, Modern Pad Printing, 2016

Details

Primary Language

English

Subjects

Engineering

Journal Section

Clinical Research

Publication Date

December 30, 2022

Submission Date

October 20, 2022

Acceptance Date

November 18, 2022

Published in Issue

Year 2022 Volume: 6 Number: 2

APA
Daşdemir, B., Kukcu, B., Anıl, A., Buyuk, U., Vanlı, A. S., & Akdoğan, A. (2022). The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency. International Journal of Multidisciplinary Studies and Innovative Technologies, 6(2), 189-192. https://izlik.org/JA33UF53CN
AMA
1.Daşdemir B, Kukcu B, Anıl A, Buyuk U, Vanlı AS, Akdoğan A. The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency. IJMSIT. 2022;6(2):189-192. https://izlik.org/JA33UF53CN
Chicago
Daşdemir, Buse, Burak Kukcu, Aycan Anıl, Ugur Buyuk, Ali Serdar Vanlı, and Anil Akdoğan. 2022. “The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency”. International Journal of Multidisciplinary Studies and Innovative Technologies 6 (2): 189-92. https://izlik.org/JA33UF53CN.
EndNote
Daşdemir B, Kukcu B, Anıl A, Buyuk U, Vanlı AS, Akdoğan A (December 1, 2022) The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency. International Journal of Multidisciplinary Studies and Innovative Technologies 6 2 189–192.
IEEE
[1]B. Daşdemir, B. Kukcu, A. Anıl, U. Buyuk, A. S. Vanlı, and A. Akdoğan, “The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency”, IJMSIT, vol. 6, no. 2, pp. 189–192, Dec. 2022, [Online]. Available: https://izlik.org/JA33UF53CN
ISNAD
Daşdemir, Buse - Kukcu, Burak - Anıl, Aycan - Buyuk, Ugur - Vanlı, Ali Serdar - Akdoğan, Anil. “The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency”. International Journal of Multidisciplinary Studies and Innovative Technologies 6/2 (December 1, 2022): 189-192. https://izlik.org/JA33UF53CN.
JAMA
1.Daşdemir B, Kukcu B, Anıl A, Buyuk U, Vanlı AS, Akdoğan A. The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency. IJMSIT. 2022;6:189–192.
MLA
Daşdemir, Buse, et al. “The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency”. International Journal of Multidisciplinary Studies and Innovative Technologies, vol. 6, no. 2, Dec. 2022, pp. 189-92, https://izlik.org/JA33UF53CN.
Vancouver
1.Buse Daşdemir, Burak Kukcu, Aycan Anıl, Ugur Buyuk, Ali Serdar Vanlı, Anil Akdoğan. The Effect of Engraving Depth and Silicon Geometry on Pad Printing Efficiency. IJMSIT [Internet]. 2022 Dec. 1;6(2):189-92. Available from: https://izlik.org/JA33UF53CN