Pengaruh Perlakuan Shot Peening dan Sputtering TiN Terhadap Sifat Mekanik Stainless Steel 316L

Muhammad Hafidh Rasyadi, Priyo Tri Iswanto

Abstract


Sedikit dari material dalam kelompok metal yang dapat digunakan sebagai perangkat biomaterial implant untuk aplikasi medis. Salah satu material baja tahan karat yang dipertimbangkan untuk penggunaan medis sebagai material implant yaitu Stainless steel 316L. Keunggulan stainless steel 316L yaitu mempunyai sifat tahan terhadap korosi, mudah untuk difabrikasi, dan harganya yang lebih murah dibandingkan dengan biomaterial kelompok metal lainnya. Karakter dari stainless steel 316L tidak dapat diberikan perlakuan panas, sehingga perlu adanya metode lain dalam meningkatkan sifat-sifat mekanisnya. Salah satunya yaitu dengan perlakuan permukaan shot peening dan sputtering. Pada penelitian ini membahas mengenai pengaruh variasi durasi waktu shot peening 10 dan 20 menit menggunakan tekanan konstan 8 bar serta perlakuan sputtering terhadap struktur mikro, kekasaran permukaan dan kekerasan permukaan stainless steel 316L. Kekasaran permukaan stainless steel 316L meningkat akibat perlakuan shot peening, sedangkan perlakuan sputtering menurunkan nilai kekasaran permukaan spesimen yang telah diberi perlakuan shot peening. Nilai kekerasan permukaan meningkat akibat perlakuan shot peening dan sputtering. Peningkatan tertinggi sebesar 661,36 HV pada variasi shot peening 20 menit dan sputtering. Peningkatan nilai kekerasan optimum pada durasi shot peening 10 menit sebesar 148%. Pengamatan struktur mikro diperoleh bahwa semakin lama durasi shot peening yang diberikan, maka semakin kecil dan semakin halus struktur butir pada bagian permukaan spesimen.
Kata kunci: shot peening, sputtering, Stainless Steel 316L


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References


Ahmed, Aymen A., Mansour Mhaede, Manfred Wollmann, dan Lothar Wagner. 2014. “Effect of surface and bulk plastic deformations on the corrosion resistance and corrosion fatigue performance of AISI 316L.” Surface and Coatings Technology 259:448–55. doi: 10.1016/j.surfcoat.2014.10.052.

ASM International. Handbook Volume 5. 1994. ASM Handbook Vol.5.

ASM International. Handbook Volume 23. 2012. ASM Handbook Vol.23.

ASM International. Stainless Stell. 2008. Stainless Steels for Design Engineers. ASM International.

Callister, William D., dan David G. Rethwisch. 2018. Materials Science and Engineering. Hachette Livre - Département Pratique.

Carrasco, C., L. Segers, B. Benavente, dan V. Vergara. 2004. “Titanium nitride coatings on copper alloy prepared by dc reactive magnetron sputtering.” Journal of Materials Processing Technology 145(3):371–76. doi: 10.1016/j.jmatprotec.2003.09.001

Edward, Aghogho Bright. 2015. “Researching Advances in the Use of Shot Peening for Corrosion Fatigue Mitigation in Steam Turbine Blades.” Mechanical and Aeronautical Engineering, EDEM, University of Pretoria, South Africa.

Hashemi, B., M. Rezaee Yazdi, dan V. Azar. 2011. “The wear and corrosion resistance of shot peened–nitrided 316L austenitic stainless steel.” Materials & Design 32(6):3287–92. doi: 10.1016/j.matdes.2011.02.037.

Iswanto, Priyo Tri, H. Akhyar, dan A. Faqihudin. 2018. “Effect of Shot Peening on Microstructure, Hardness, and Corrosion Resistance of AISI 316L.” Journal of Achievements in Materials and Manufacturing Engineering 89(1).

Lee, Si-Hyung, Ki Hyun Yoon, Deok-Soo Cheong, dan Jeon-Kook Lee. 2003. “Relationship between residual stress and structural properties of AlN films deposited by r.f. reactive sputtering.” Thin Solid Films 435(1–2):193–98. doi: 10.1016/S0040-6090(03)00353-5.

Liu, Y. G., M. Q. Li, dan H. J. Liu. 2017. “Nanostructure and surface roughness in the processed surface layer of Ti-6Al-4V via shot peening.” Materials Characterization 123:83–90. doi: 10.1016/j.matchar.2016.11.020.

Luan, Weizhi, Chuanhai Jiang, dan Vincent Ji. 2009. “Residual Stress Relaxation in Shot Peened Surface Layer on TiB<SUB>2</SUB>/Al Composite under Applied Loading.” MATERIALS TRANSACTIONS 50(1):158–60. doi: 10.2320/matertrans.MRA2008272.

Mahieu, S., D. Depla, dan R. De Gryse. 2008. “Characterization of the hardness and the substrate fluxes during reactive magnetron sputtering of TiN.” Surface and Coatings Technology 202(11):2314–18. doi: 10.1016/j.surfcoat.2007.09.002.

Priyambodo, Bambang Hari, Viktor Malau, Priyo Tri Iswanto, Tjipto Sujitno, dan Suprapto. 2017. “The Influence of TiN-Sputtering on Hardness and Corrosion Rate of AISI 304 for Biomaterials Application.” The Journal of Corrosion Science and Engineering 20(101).

Subramanian, B., R. Ananthakumar, V. S. Vidhya, dan M. Jayachandran. 2011. “Influence of Substrate Temperature on The Materials Properties of Reactive DC Magnetron Sputtered Ti/TiN Multilayered Thin Films.” Materials Science and Engineering: B 176(1):1–7. doi: 10.1016/j.mseb.2010.08.004.

Sujita. 2011. Pengaruh Perlakuan Shot Peening Terhadap Korosi Retak Tegang Baja Karbon Rendah Pada Lingkungan Korosif. Vol. 1.

Yang, Shun, Wu Zeng, dan Jishen Yang. 2020. “Characterization of shot peening properties and modelling on the fatigue performance of 304 austenitic stainless steel.” International Journal of Fatigue 137. doi: 10.1016/j.ijfatigue.2020.105621


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