Show simple item record

dc.contributor.authorHaikal, H
dc.contributor.authorMargono, Bambang
dc.contributor.authorAlfayed, Ahmad
dc.contributor.authorRananto, Rahmad Faisal
dc.date.accessioned2020-04-21T06:27:00Z
dc.date.available2020-04-21T06:27:00Z
dc.date.issued2020
dc.identifier.citationCALIGULU, U. & ACIK, M. 2015. Interface characterization of friction welded low carbon steel and copper alloys. Materials Testing, 57, 29-36. CALIGULU, U., ACIK, M., BALALAN, Z. & KATI, N. 2015. "The effects of process parameters for joining of AISI 1010-Cu alloys by friction welded". International Journal of Steel Structures, 15, 923-931. CELIK, S. & ERSOZLU, I. 2009. Investigation of the mechanical properties and microstructure of friction welded joints between AISI 4140 and AISI 1050 steels. Materials & Design, 30, 970- 976. CHEEPU, M., MUTHUPANDI, V. & CHE, W. S. Improving mechanical properties of dissimilar material friction welds. Applied Mechanics and Materials, 2018. Trans Tech Publ, 157-162. MA, H., QIN, G., GENG, P., LI, F., FU, B. & MENG, X. 2015. Microstructure characterization and properties of carbon steel to stainless steel dissimilar metal joint made by friction welding. Materials & Design, 86, 587-597. MERCAN, S., AYDIN, S. & ÖZDEMIR, N. 2015. "Effect of welding parameters on the fatigue properties of dissimilar AISI 2205–AISI 1020 joined by friction welding". International Journal of Fatigue, 81, 78-90. ÖZDEMIR, N. 2002. Investigation of weldability of fine-grained low alloyed high carbon steels by friction welding. PhD. Tehsis, Fırat Üniversity, Institute of Science, Elazığ, Turkey. ÖZDEMIR, N. 2005. Investigation of the mechanical properties of friction-welded joints between AISI 304L and AISI 4340 steel as a function rotational speed. Materials letters, 59, 2504- 2509. PAVENTHAN, R., LAKSHMINARAYANAN, P. & BALASUBRAMANIAN, V. 2012. "Optimization of friction welding process parameters for joining carbon steel and stainless steel". Journal of Iron and Steel Research International, 19, 66-71. SAHIN, A. Z., YIBAŞ, B. S., AHMED, M. & NICKEL, J. 1998. "Analysis of the friction welding process in relation to the welding of copper and steel bars". Journal of Materials Processing Technology, 82, 127-136. SARSILMAZ, F., KIRIK, I. & BATı, S. 2017. "Microstructure and mechanical properties of armor 500/AISI2205 steel joint by friction welding". Journal of Manufacturing Processes, 28, 131- 136. SELVAMANI, S. & PALANIKUMAR, K. 2014. Optimizing the friction welding parameters to attain maximum tensile strength in AISI 1035 grade carbon steel rods. Measurement, 53, 10- 21. SHIOYA, T., YAMADA, S. & KUZUYA, Y. 1965. "Study on welding conditions for steel by friction welding". Journal of Japanese Welding Society, 34, 794-800. WU, W., HU, S. & SHEN, J. 2015. Microstructure, mechanical properties and corrosion behavior of laser welded dissimilar joints between ferritic stainless steel and carbon steel. Materials & Design (1980-2015), 65, 855-861.id_ID
dc.identifier.issn2621-0789
dc.identifier.urihttp://hdl.handle.net/11617/11945
dc.description.abstractPengelasan gesek merupakan salah satu metode penyambungan material yang disebabkan gesekan antara dua meterial yang memanfatkan panas gesekan antara kedua material yang sama maupun berbeda. Penelitian ini bertujuan untuk mengindentifikasi pengaruh tekanan dan waktu pengelasan terhadap sifat fisik dan mekanik sambungan friction welding logam tak sejenis AISI 316 dan AISI 4340. Variasi tekanan gesek yang digunakan 50 kg/cm², 70 kg/cm² dan 90 kg/cm², sedangkan variasi waktu yang digunakan adalah 35 detik, 50 detik, dan 65 detik. Hasil penelitian ini menunjukkan bahwa nilai optimal kekuatan tarik yang dihasilkan terdapat pada variasi 70 kg/cm² dengan waktu 35 detik dengan rata-rata nilai sebesar 571.26 N/mm2. Semakin besar variasi tekanan gesek yang diberikan dengan variasi waktu gesek konstan nilai kekerasan nya semakin menurun. Terbukti bahwa nilai kekerasan pada variasi tekanan gesek tertinggi 90 kg/cm2 waktu 65 detik sebesar 486 HVN dan variasi tekanan gesek terendah 50 kg/cm2 dengan waktu gesek 65 detik sebesar 614.4 HVN. Daerah HAZ terjadi transformasi fasa yang mengakibatkan ukuran butiran berbeda dengan daerah logam induk.id_ID
dc.language.isootherid_ID
dc.publisherIENACO (Industrial Engineering National Conference) 8 2020id_ID
dc.titleInvestigasi Sifat Fisik dan Mekanik Sambungan Las Logam Tak Sejenis antara Baja Tahan Karat AISI 316 dengan Baja Paduan AISI 4340 menggunakan Rotary Friction Weldingid_ID
dc.typeArticleid_ID


Files in this item

Thumbnail

This item appears in the following Collection(s)

Show simple item record