KEKERASAN DAN STRUKTUR MIKRO BAJA AISI 1040 SEBAGAI HASIL PROSES QUENCHING MENGGUNAKAN PENDINGIN AIR GARAM DAN ASAP CAIR

Authors

  • Dodi Tafrant Politeknik Negeri Sriwijaya
  • Hendradinata Hendradinata
  • Mulyadi Mulyadi
  • Rachmat Dwi Sampurno
  • Almadora A. Sani
  • Karmin Karmin
  • Randy Hidayat Politeknik Negeri Sriwjaya
  • M. Agil Muzafar Politeknik Negeri Sriwjaya
  • Devita Dinda Fitriani Politeknik Negeri Sriwjaya

DOI:

https://doi.org/10.5281/zenodo.6857629

Keywords:

Baja AISI 1040, Perlakuan Panas, Quenching, Kekerasan Baja, Struktur Mikro

Abstract

Steel with various uses has an important role in machining and construction processes. In its use, steel is chosen because of its strength, ductility, and hardness. One type of steel commonly used in the machining process is AISI 1040 steel. This is because AISI 1040 steel has tough, strong, and hard properties. However, in its use sometimes AISI 1040 steel must be hardened to be more capable in its use. In that endeavor, AISI 1040 steel can be subjected to heat treatment to change its microstructure from initially Ferrite and Pearlite, to Martensite. This change in microstructure has an effect on increasing the hardness value of AISI 1040 steel. This study was conducted to determine how much effect the increase in hardness value would have if AISI 1040 steel was subjected quenching using brine and liquid smoke as cooling media. The results obtained were an increase in the hardness value of AISI 1040 steel to 63.76 HRc, and 65.40 HRc for each cooling medium. The visible microstructure is the formation of a martensitic phase on AISI 1040 steel after heat treatment.

Downloads

Download data is not yet available.

References

AAyudiarti, D. L., dan Sari, R. N., 2010. Asap Cair Dan Aplikasinya Pada Produk Perikanan. Squalen Vol. 5, No. 3. Hal. 101 – 108

Azom.com (diakses 27 Juni 2022)

Callister, William D., Jr. David G. Rethwisch. 2007. Material Science and Engineering: An Introduction 7th Edition. John Wiley and Sons, Inc., USA

Haji, A. G. 2013. Komponen Kimia Asap Cair Hasil Pirolisis Limbah Padat Kelapa Sawit. Jurnal Rekayasa Kimia dan Lingkungan Vol. 9, No. 3. Hal. 109 – 116

Haryadi, G.D. 2006. Pengaruh Suhu Tempering Terhadap Kekerasan, Kekuatan Tarik Dan Struktur Mikro Pada Baja K-460. Rotasi Vol. 8, No. 2. Hal. 1 – 8

Herirowo, S. dan Adjiantoro, B. 2016. Pengaruh Perlakuan Panas terhadap Struktur Mikro dan Kekuatan Mekanik Baja Nikel Laterit. Widyariset Vol. 2. No. 2. Hal. 153 – 160

Isa, I., Musa, W. J A., dan Rahman, S., W. 2019. Pemanfaatan Asap Cair Tempurung Kelapa Sebagai Pestisida Organik Terhadap Mortalitas Ulat Grayak (Spodoptera Litura F.) Jamb. J. Chem., Vol. 1, No. 1. Hal. 15 – 20

Jordi, M., Yudo, H., Jokosisworo, S. 2017. Analisa Pengaruh Proses Quenching Dengan Media Berbeda Terhadap Kekuatan Tarik dan Kekerasan Baja St 36 Dengan Pengelasan SMAW. Jurnal Teknik Perkapalan Vol. 5. No. 1. Hal. 272 – 281

Kasim, F., Fitrah, A. N., dan Hambali, E., 2015. Aplikasi Asap Cair pada Lateks. Jurnal PASTI, Vol. 9, No. 1. Hal. 28 – 34

Kirono, Sasi. 2012. Pengaruh Proses Tempering Pada Baja Karbon Medium Setelah Quenching Dengan Media oli Dan Air Garam (Nacl) Terhadap Sifat Mekanis Dan Struktur Mikro. SINTEK. Vol. 5. No. 1. Hal 36 – 47

Mersilia, Anggun., Pulung Karo Karo, Yayat Iman Supriyatna. 2016. Pengaruh Heat Treatment Dengan Variasi Media Quenching Air Garam dan Oli Terhadap Struktur Mikro dan Nilai Kekerasan Baja Pegas Daun AISI 6135. Jurnal Teori dan Aplikasi Fisika, Vol. 4, No. 1, hal. 175-180

Rasyad, A., dan Arto, B. 2018. Analisis Pengaruh Temperatur, Waktu, Dan Kuat Arus Proses Elektroplating Terhadap Kuat Tarik, Kuat Tekuk Dan Kekerasan Pada Baja Karbon Rendah. Jurnal Reayasa Mesin Vol. 9. No. 3. Hal. 173 – 182

Mulyadi, Tafrant, D., Hendradinata, Zainuddin. 2021. The Effect of Quenching Media on the Hardness of AISI 1045 Steel. 5th FIRST T1 T2 2021 International Conference (FIRST-T1-T2 2021), Page 66 – 71

Totten, GE, Bates, CE, Clinton, NA,. 1993. Handbook of Quenchant and Quenching Technology, ASM International, USA

Published

2022-07-18

How to Cite

Tafrant, D., Hendradinata, H., Mulyadi, M., Sampurno, R. D., Sani, A. A., Karmin, K., … Fitriani, D. D. (2022). KEKERASAN DAN STRUKTUR MIKRO BAJA AISI 1040 SEBAGAI HASIL PROSES QUENCHING MENGGUNAKAN PENDINGIN AIR GARAM DAN ASAP CAIR. MACHINERY Jurnal Teknologi Terapan, 3(2), 62–68. https://doi.org/10.5281/zenodo.6857629

Most read articles by the same author(s)

Similar Articles

<< < 1 2 3 4 5 > >> 

You may also start an advanced similarity search for this article.