Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Moch. Syaiful Anwar is active.

Publication


Featured researches published by Moch. Syaiful Anwar.


THE 3RD INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS SCIENCE AND TECHNOLOGY (ICAMST 2015) | 2016

Tensile properties of the modified 13Cr martensitic stainless steels

Efendi Mabruri; Moch. Syaiful Anwar; Siska Prifiharni; Toni B. Romijarso; Bintang Adjiantoro

This paper reports the influence of Mo and Ni on the tensile properties of the modified 13Cr martensitic stainless steels in tempered condition. Four steels with different content of Mo and Ni were prepared by induction melting followed by hot forging, quenching and tempering. The experimental results showed that the addition of about 1% and 3% Mo has a beneficial effect to increase both the tensile strength and the elongation of the steels. On the contrary, the addition of about 3% Ni into the martensitic stainless steel results in decreasing of both the tensile strength and the elongation. Among the alloys investigated the 13Cr3Mo type steel exhibited largest tensile strength of 1348 MPa and largest elongation of 12%. The observation on the tensile fractured surfaces by using scanning electron microscope supported these findings.


THE 3RD INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS SCIENCE AND TECHNOLOGY (ICAMST 2015) | 2016

The effect of tempering temperature on pitting corrosion resistance of 420 stainless steels

Moch. Syaiful Anwar; Siska Prifiharni; Efendi Mabruri

The AISI Type 420 stainless steels are commonly used to steam generators, mixer blades, etc. These stainless steels are most prone to pitting in dissolved Cl− containing environments. In this paper, the effect of tempering temperature on pitting corrosion resistance of AISI Type 420 stainless steels was studied. The AISI Type 420 stainless steels specimens were heat treated at the temperature of 1050°C for 1 hour to reach austenite stabilization and then quench in the oil. After that, the specimens were tempered at the temperature of 150, 250, 350 and 450°C for 30 minutes and then air cooled to the room temperature. The electrochemical potentiodynamic polarization test was conducted at 3.5% sodium chloride solution to evaluate corrosion rate and pitting corrosion behaviour. The Scanning Electron Microscope (SEM), Energy Dispersive X-Ray Spectroscopy (EDS) were used to evaluate the pitting corrosion product. The result have shown that highest pitting potential was found in the sample tempered at 250°C and ...


Archive | 2018

The hardness, microstructure, and pitting resistance of austenitic stainless steel Fe25Ni15Cr with the addition of tungsten, niobium, and vanadium

Siska Prifiharni; Moch. Syaiful Anwar; Arini Nikitasari; Efendi Mabruri

In this work, the effect of 2% W, 1%Nb, and 1% V addition on the hardness, microstructure, and pitting resistance to austenitic stainless steel Fe25Ni15Cr was investigated. The specimens were prepared in induction melting furnace, followed by homogenizing at 1100⁰C for 24 h. Then, the specimens were solution treated at 975⁰C for 2 h followed by water quenching and aging at 725⁰C for 15 h. The hardness was measured by using Rockwell hardness B, and metallographic observation was conducted using optical microscope and SEM-EDS. The results show that the increament of W, Nb, and V in the austenitic stainless steel Fe25Ni15Crby increased the hardness. The metal carbide precipitation occurred at grain boundaries in niobium free alloy. The addition of Nb in the alloy promotes the Laves phase transformation, and addition of V increase Nb content in the Laves phase. Laves phase formation in alloys containing niobium during aging heat treatments lead to an increase in hardness. Addition of W, Nb, and V also increase pitting resistance of the Fe25Ni15Cr austenitic stainless steel. This can be attributed to an increasing level of niobium in the matrix.In this work, the effect of 2% W, 1%Nb, and 1% V addition on the hardness, microstructure, and pitting resistance to austenitic stainless steel Fe25Ni15Cr was investigated. The specimens were prepared in induction melting furnace, followed by homogenizing at 1100⁰C for 24 h. Then, the specimens were solution treated at 975⁰C for 2 h followed by water quenching and aging at 725⁰C for 15 h. The hardness was measured by using Rockwell hardness B, and metallographic observation was conducted using optical microscope and SEM-EDS. The results show that the increament of W, Nb, and V in the austenitic stainless steel Fe25Ni15Crby increased the hardness. The metal carbide precipitation occurred at grain boundaries in niobium free alloy. The addition of Nb in the alloy promotes the Laves phase transformation, and addition of V increase Nb content in the Laves phase. Laves phase formation in alloys containing niobium during aging heat treatments lead to an increase in hardness. Addition of W, Nb, and V also increas...


International journal of engineering and technology | 2016

Effect of Tempering Temperature on Hardness and Impact Resistance of the 410-1Mo Martensitic Stainless Steels for Steam Turbine Blades

Efendi Mabruri; Zefri Ahmad Syahlan; Sahlan; Moch. Syaiful Anwar; Toni B. Romijarso; Bintang Adjiantoro


Materials Today: Proceedings | 2018

Mechanical properties optimization of the modified 410 martensitic stainless steel by heat treatment process

Efendi Mabruri; Siska Prifiharni; Moch. Syaiful Anwar; Toni B. Romijarso; Bintang Adjiantoro


Jurnal Sains Materi Indonesia | 2018

KETAHANANIMPAK,KEKERASAN DAN STRUKTUR MIKRO PADA BAJA TAHAN KARAT MARTENSITIK13 Cr3MO3Ni DENGAN VARIASI SUHU PERLAKUAN PANAS

Franco Dwiky Praguna; Moch. Syaiful Anwar; Sunardi Sunardi; Efendi Mabruri


Jurnal Sains Materi Indonesia | 2018

EVALUASI INHIBITOR SODIUM NITRIT DI DALAM LARUTAN BETON SINTETIS

Arini Nikitasari; Moch. Syaiful Anwar; Efendi Mabruri; Sundjono Sundjono


Procedia Engineering | 2017

Study of Pitting Resistance of Rebar Steels in Jakarta Coastal Using Simulated Concrete Pore Solution

Moch. Syaiful Anwar; Bobby Fadillah; Arini Nikitasari; Soesaptri Oediyani; Efendi Mabruri


Metalurgija | 2017

Peningkatan Ketahanan Aus pada Baja Tahan Karat Martensitik 13Cr AISI 410 setelah Proses Austenisasi dan Tempering [Improvement of Wear Resistance of 13Cr AISI 410 Martensitic Stainless Steel after Austenitizing and Tempering Process]

Annisa Siti Apriani; Moch. Syaiful Anwar; Rusnaldy Rusnaldy; Efendi Mabruri


Metalurgija | 2017

Pengaruh Suhu dan Waktu Tempering Terhadap Kekerasan, Struktur Mikro, dan Laju Korosi Baja Tahan Karat Martensitik 13Cr3Mo3Ni [The Influence of Time and Temperature Tempering on Hardness, Microstructure and Corrosion Rate of 13Cr3Mo3Ni Stainless Steel]

Hadi Perdana; Moch. Syaiful Anwar; Andinnie Juniarsih; Efendi Mabruri

Collaboration


Dive into the Moch. Syaiful Anwar's collaboration.

Top Co-Authors

Avatar

Efendi Mabruri

Indonesian Institute of Sciences

View shared research outputs
Top Co-Authors

Avatar

Siska Prifiharni

Indonesian Institute of Sciences

View shared research outputs
Top Co-Authors

Avatar

Arini Nikitasari

Indonesian Institute of Sciences

View shared research outputs
Top Co-Authors

Avatar

Bintang Adjiantoro

Indonesian Institute of Sciences

View shared research outputs
Top Co-Authors

Avatar

Toni B. Romijarso

Indonesian Institute of Sciences

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Sundjono Sundjono

Indonesian Institute of Sciences

View shared research outputs
Researchain Logo
Decentralizing Knowledge