Rancang Bangun Mesin Uji Aus Berbasis ASTM G65

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Kurniawan Kurniawan
Yogi Elka Institan

Abstract

To support advanced material research, a machine that can perform wear testing is needed, one of which refers to the ASTM G65 standard. This journal contains the process of making the design of ASTM G65-based wear test equipment with the scope of design, construction, validation and verification.


Validation at the design stage is carried out by vibration analysis using Ansys software. From the data obtained, transmissibility analysis was carried out so that it can be validated that the vibrations that occur in the engine are safe and do not interfere with engine performance. Next, the prototype construction of the ASTM G65 engine was carried out and continued with validation and calibration to conform to the ASTM G65 specifications. Then a wear test is carried out on a material to find out that the machine is working according to the test scheme.


Verification of the test results is carried out by comparing the test results with the tests that have been carried out on other scientific studies to ensure authentic test results.

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How to Cite
Kurniawan, K., & Elka Institan, Y. (2022). Rancang Bangun Mesin Uji Aus Berbasis ASTM G65. JTRM (Jurnal Teknologi Dan Rekayasa Manufaktur), 4(2), 117-124. https://doi.org/10.48182/jtrm.v4i2.99
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Articles

References

[1] Drive, Barr Harbor.2010. Standard Test Method for Conducting Dry Sand/Rubber Wheel Abrasion Tests. United States: ASTM International.
[2] "The Physics of Resonance". Intuitor.
[3] K. Yusuf Billah and Robert H. Scanlan (1991). "Resonance, Tacoma Narrows Bridge Failure and Undergraduate Physics". American Journal of Physics.
[4] Institan, Yogi Elka. 2020. Rancang Bangun Mesin Uji Aus Berbasis Astm G65. Tugas Akhir. Teknik Rekayasa Perancangan Manufaktur POLMAN. Bandung.
[5] Nyakgam, Maliki. 2017. Perancangan Konstruksi Mesin Penguji Keausan Berbasis Astm G65 Dan Astm G105. Proyek Akhir. Teknik Perancangan Mekanik Umum POLMAN. Bandung.
[6] E. Zdravecká, J. Tkáčová dan M. Ondáč. 2014. “Effect of microstructure factors on abrasion resistance of high-strength steels”, Faculty of Mechanical Engineering, Technical University in Košice, Slovak Republic.