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Perancangan Aplikasi Alat Uji Motor Listrik UAV Berbasis Graphic User Interface (GUI) Menggunakan Software Python Aisyah, Luthfa Refihat; Azka, Muizuddin; Musthofa, Ahmad; Yulianto, Katri
Jurnal Sains dan Teknologi Penerbangan Vol 1 No 01 (2024): Aviation Science and Technology Journal
Publisher : Politeknik Penerbangan Indonesia Curug

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54147/astj.v1i01.1022

Abstract

The development and test of electric motors on Unmanned Aerial Vehicles (UAV) requires a sophisticated and efficient approach. This research discusses the design of innovative UAV electric motor test equipment applications using Python software-based Graphic User Interface (GUI). The main objective of this application is to provide an intuitive and effective user interface to control, monitor, and test the performance of UAV electric motors. In this study, the waterfall method was used for system development. Preliminary test results show that the application is easy to use and efficient in testing UAV electric motors. It is hoped that this design will help the development of UAV technology by providing easy-to-use and reliable test equipment for researchers, technicians, and developers in the field of unmanned flight.
Biomechanics and biocompatibility assessment of bone drilling for surgical application: asystematic literature review Lenggo Ginta, Turnad Lenggo Ginta; Mujiarto, Mujiarto; Jufriadi, Jufriadi; Setyobudi, Nanang; Yulianto, Katri; Febriansyah, Dwi Jaya; Azka, Muizuddin
Jurnal Polimesin Vol 22, No 2 (2024): April
Publisher : Politeknik Negeri Lhokseumawe

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30811/jpl.v22i2.4749

Abstract

This systematic literature review delves into the intricate relationship between biomechanics and biocompatibility within the context of bone drilling for surgical applications. It meticulously analyzes the forces, stresses, and strains that bone undergoes during drilling, shedding light on essential variables crucial for enhancing surgical efficacy. Moreover, it scrutinizes the mechanical attributes of drilling tools, particularly drill bits, assessing factors such as material composition, design intricacies, and heat generation, all of which profoundly influence drilling performance. The review also thoroughly investigates the implications of drilling materials on bone tissue biocompatibility, addressing concerns such as corrosion, wear debris, and potential toxicity. By synthesizing current research, it offers up-to-date insights into advancements and strategies aimed at overcoming challenges in bone drilling. Ultimately, this review serves to refine bone drilling techniques, advocating for safer and more efficient surgical practices, and ultimately aiming to improve patient outcomes through a comprehensive understanding of biomechanical and biocompatibility considerations.