PENGARUH KELENGKUNGAN LENSA POLYCARBONATE TERHADAP PEMBUATAN BEVEL UNTUK FRAME SEMI RIMLESS DENGAN MESIN AUTO GROOVER

Authors

  • Opep Nugraha Aro gapopin
  • Bunyamin Rizki Abdillah Akademi Refraksi Optisi dan Optometry Gapopin
  • Hanie Supandi Akademi Refraksi Optisi dan Optometry Gapopin

DOI:

https://doi.org/10.54363/jmo.v4i1.116

Keywords:

polycarbonate, groover, bevel, deskriptif, semirimless

Abstract

Auto groover is a tool used to produce lenses with hidden bevels so that there are parts of the rope tied to the resulting bevel and are used on semi rimless or half frame types. This can be affected by the thickness and curvature of the lens, so this study wants to prove how exactly are polycarbonate lenses made with good bevels.

 This research uses a descriptive method. The initial screening was conducted by reading the titles and abstracts by using search engine with keyword “Polycarbonate Lens AND Bevel Type AND Autogroover” in the journals ScieneDirect, Plos One, and in Bahasa Google Scholar.

Based on the results of the journal search it was concluded that making bevels in an optical dispensing laboratory using an autogroover machine requires high precision and skill from practitioners so that glasses can be produced according to the type of frame chosen by the patient.

References

Armario Dhila, M. (2016). Proses Faset Manual Lensa Double Fokus Flattop Pada Frame Semi Rimless Di Optik Yukawi Pati. Univeristas Widya Husada Semarang Library Repository.

Brooks, C. W. (2003). Essentials of Ophthalmic Lens Finishing: Second Edition. Essentials of Ophthalmic Lens Finishing: Second Edition, 1–476. https://doi.org/10.1016/B978-0-7506-7213-9.X5001-6

Brooks, C. W. (2003). Essentials of Ophthalmic Lens Finishing: Second Edition. Essentials of Ophthalmic Lens Finishing: Second Edition, 1–476. https://doi.org/10.1016/B978-0-7506-7213-9.X5001-6

Budiana, W., Nugraha, O. C., & Zakiati, N. (2020). Pemakaian Hidden Bevel Lensa Cr -39 Dengan Auto. Jurnal Mata Optik, 1(2).

Charitidis, C., Laskarakis, A., Kassavetis, S., Gravalidis, C., & Logothetidis, S. (2004). Optical and nanomechanical study of anti-scratch layers on polycarbonate lenses. Superlattices and Microstructures, 36(1–3), 171–179. https://doi.org/10.1016/J.SPMI.2004.08.015

Istikharomah, P. N. (2021). Proses Faset Manual Lensa Organik Single Vision Pada Full Frame Plastik Di Optik Pro Semarang.

McMahon, J. M., & Beckerman, S. (2007). Testing safety eyewear: How frame and lens design affect lens retention. Optometry - Journal of the American Optometric Association, 78(2), 78–87. https://doi.org/10.1016/J.OPTM.2006.07.011

Nurtanto, D. (2017). Kontribusi Kuat Lentur Polikarbonat Pada Pelat Beton Berpori (The Contribution of Polycarbonate Flexural Strength into Porous Concrete Slab). Jurnal Rekayasa Sipil Dan Lingkungan, 1(01), 1. https://doi.org/10.19184/jrsl.v1i01.6039

Rochmadi, & Permono, A. (2018). Mengenal Polimer dan Polimerisasi. 2, 95–96.

Shukla, A. V. (2019). Clinical Optics Primer for Ophthalmic Medical Personnel - Google Books. Retrieved March 4, 2023, from SLACK Incorporated website: https://www.google.co.id/books/edition/Clinical_Optics_Primer_for_Ophthalmic_Me/Kr_cVsnM-owC?hl=id&gbpv=1&dq=cylinder+spheris&pg=PA110&printsec=frontcover

Stein, H. A. (Harold A., Stein, R. M., & Freeman, M. I. (2018). Facts about glasses. 207–235. https://doi.org/10.1016/B978-0-323-39477-2.00013-0

Yazdan Mehr, M., Van Driel, W. D., Udono, H., & Zhang, G. Q. (2014). Surface aspects of discolouration in Bisphenol A Polycarbonate (BPA-PC), used as lens in LED-based products. Optical Materials, 37(C), 155–159. https://doi.org/10.1016/J.OPTMAT.2014.05.015

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Published

2023-03-31

How to Cite

Nugraha, O., Rizki Abdillah, B., & Supandi, H. (2023). PENGARUH KELENGKUNGAN LENSA POLYCARBONATE TERHADAP PEMBUATAN BEVEL UNTUK FRAME SEMI RIMLESS DENGAN MESIN AUTO GROOVER . Jurnal Mata Optik, 4(1), 27–32. https://doi.org/10.54363/jmo.v4i1.116

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