Study Program Master (S2)

Study Program Master (S2)

Realize Your Dreams Here

“The world is changing and changing rapidly. We are now in the midst of Era 4.0, marked by digitalization, online activities, and social media interactions that shape our daily lives. While today’s society reaps numerous benefits from this transformation, it also faces significant challenges brought about by these developments. Meanwhile, Era 5.0 is on the horizon. In this evolving landscape, the DTMM Graduate Program offers education and research capable of keeping pace with these advancements and addressing their challenges through deep understanding of the world of ‘materials/substance’ a realm awaiting exploration by your creative minds, for the benefit of industry, society, and the welfare of all humankind. So do not hesitate to begin your journey and commitment toward a brighter future by joining us here.”

(Head of the Graduate Program, DTMM ITS – Azzah Dyah Pramata, S.T., M.T., M.Eng., Ph.D)

An innovative study program with global excellence and competence in materials engineering and technology, designed to support industry advancement and foster a global network.

Conducting education, research, and community engagement to produce graduates of the highest quality and highly competent and professional in the field of materials engineering and technology, while continuously enhancing capabilities and developing global networks to support the competitiveness of the national industry.

The core values instilled by the Department of Materials Engineering and Metallurgy are:
  1. Ethics and Integrity: Upholding societal, national, and religious norms and regulations in all aspects of life—whether in community engagement, citizenship, or professional practice.
  2. Creativity and Innovation: Continuously seeking new ideas to generate innovations that enhance the quality and impact of one’s roles and responsibilities.
  3. Excellence: Striving relentlessly to achieve optimal results and uphold the highest standards in all endeavors.
  4. Strong Leadership: Demonstrating visionary, creative, and innovative behavior; working diligently; courageously driving positive change; and taking full responsibility for actions and outcomes.
  5. Synergy: Collaborating effectively to maximize the potential of individuals and teams toward shared goals.
  6. Social Cohesion and Social Responsibility: Fostering harmony within communities and actively caring for the well-being of society at large.

A. Teaching and Academic Affairs

  1. Produce graduates who are competitive, globally competent, professional, and ethical.
  2. Implement research-based and technology-driven learning with industry and international collaboration.
  3. Develop programs that enhance international reputation and visibility.

B. Research

  1. Generate leading-edge research with tangible impact on industry and society.
  2. Promote research outputs and patents with commercialization potential and revenue generation.
  3. Increase international scientific publications and faculty h-index.
  4. Expand national and international research collaborations.

C. Community Service

  1. Apply science and technology to improve community economic development and welfare.
  2. Foster collaboration with industry and government stakeholders.
  3. Encourage empowerment initiatives based on materials and metallurgical engineering technologies.

D. Facilities and Infrastructure

  1. Provide adequate facilities and infrastructure to support education, research, and community service.
  2. Ensure a safe, inclusive, and conducive academic environment.

E. Human Resources

  1. Maintain a competent workforce capable of fulfilling the three pillars of higher education (tri dharma perguruan tinggi): education, research, and community service.

F. Organization and Management

  1. Establish comprehensive Organizational Structure and Work Procedures (OTK) and Standard Operating Procedures (SOP).
  2. Strengthen data-driven quality management systems with continuous evaluation at the departmental level.
  3. Cultivate a collaborative and accountable work culture.

Objectives of the Department of Materials Engineering and Metallurgy:

  1. Enhance the quality of graduates to be excellent, professional, and globally competitive.
  2. Develop competencies in the fields of metallurgical engineering, manufacturing, corrosion, failure analysis, and research-based innovative materials.
  3. Establish and maintain a conducive academic atmosphere that supports the implementation of the three pillars of higher education (*tridharma perguruan tinggi*) within the study program.
  4. Continuously improve the quality of students, faculty, staff, and educational facilities.
  5. Develop, implement, and sustain partnerships with domestic and international institutions in the areas of education, research, and community service.
  6. Produce graduates of high integrity, strong ethics, and exemplary academic morality.

Curriculum in Master of Materials Engineering and Metallurgy Study Program 

No Course Code Course Name Credits Total Credits / Semester
Semester -1
1 TL255101   Advanced Materials Characterization 3
2 TL255104   Research Methodology 3
3 TL255103   Materials Processing Modeling 3
4 TL255102   Materials Thermodynamics and Kinetics 3
Total 12
Semester -2
1 TL255201   Corrosion Control System Design 3
2 TL255202   Structure and Mechanical Properties of Materials 3
3 TL255203   Thesis Proposal Seminar 2
4 TL2552xx   Elective Course 1 3
Total 11
Semester -3
1 TL255301   Casting and Welding Metallurgy 3
2 TL255302   Heat Treatment and Surface Engineering 3
3 TL2552xx   Elective Course 2 3
9
Semester – 4
1 TL255401   Dissertation 4 10
Grand Total Credits 36
Elective Courses

 

No Kode Nama Mata Kuliah
1 TL255204 Korosi Temperatur Tinggi
2 TL255205 Material Keramik Lanjut
3 TL255206 Material Polimer dan Komposit Lanjut
4 TL255207 Mekanika Material Komposit
5 TL255208 Metalurgi Ekstraksi
6 TL255209 Teknologi Material Nano
7 TL255307 Magang
8 TL255210 Material Bio
9 TL255211 Material Elektronik
10 TL255212 Material Energi
11 TL255213 Material Maju
12 TL255305 Paten
13 TL255304 Review Paper
14 TL255306 Sertifikasi Kompetensi
15 TL255214 Topik Khusus: Kecerdasan Buatan Untuk Rekayasa Material dan Metalurgi

Akreditasi BAIK SEKALI (2023 - 2028)

S22328 - LAMTeknik Baik Sekali

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Graduate Profile

Engineer, Graduates of the Master’s Program in Materials Engineering and Metallurgy who serve as engineers possess distinctive characteristics and qualifications that enable them to contribute effectively to industry and technology. They are capable of driving product development, providing leadership in project management, and solving complex technical problems in the field of materials and metallurgical engineering. These engineers work collaboratively using multidisciplinary approaches to address real-world challenges and advance innovation in their respective domains.

Practitioner in Government/Institutions, Graduates of the Master’s Program in Materials Engineering and Metallurgy who serve as practitioners in government agencies or non-profit institutions within the context of materials and metallurgy possess distinctive characteristics and capabilities in product and technology development, formulation of innovative policy ideas, and solving challenges related to materials and metallurgy. They are equipped to assist the government in managing material resources, promoting sustainability, and overseeing policies relevant to materials and metallurgy to ensure they meet societal and environmental needs.

Industrial Professional, Graduates of the Master’s Program in Materials Engineering and Metallurgy who serve as industrial professionals possess distinctive characteristics and qualifications that enable them to drive industrial transformation through process optimization, production efficiency, and strategic decision-making grounded in materials and metallurgical science. These graduates contribute to industrial policy development, technology commercialization, and strengthening the competitiveness of the industrial sector by integrating scientific knowledge, technology, and entrepreneurship.

Scientist/Academician, Graduates of the Master’s Program in Materials Engineering and Metallurgy who serve as academicians or scientists possess distinctive characteristics and qualifications focused on advancing scientific knowledge, conducting research, and disseminating scholarly expertise to support technological and industrial progress in Indonesia.

Technopreneur, Graduates of the Master’s Program in Materials Engineering and Metallurgy who serve as technopreneurs (technology entrepreneurs) possess distinctive characteristics and qualifications enabling them to initiate research-based product development, formulate business strategies grounded in market and regulatory analysis, and manage innovative projects in the fields of materials and metallurgy. These graduates are expected to create applicable technological solutions, identify market opportunities, and contribute to economic growth and the downstreaming of research outcomes through intradisciplinary, interdisciplinary, and multidisciplinary approaches.

Program Learning Objectives

  1. Lulusan yang mampu untuk mengembangkan dan menerapkan pengetahuannya secara mandiri untuk menyelesaikan masalah-masalah dalam lingkup praktik profesionalnya menggunakan prinsip-prinsip dari sains dan teknik material dan metalurgi.
  2. Lulusan yang memiliki moral, kepribadian dan kepemimpinan yang baik diiringi kemampuan komunikasi dan kerja yang efektif dalam lingkup nasional dan internasional, serta senantiasa meningkatkan kemampuan diri.
  3. Lulusan yang mampu untuk melakukan penyelidikan dengan alat-alat analisis, pemodelan dan eksperimen, termasuk dalam hal evaluasi projek dengan mempertimbangkan implikasi-implikasi sosial, etik, ekologi dan ekonomi maupun keperluan dasar dari projek tersebut.
No Profil Lulusan (PL) Tujuan Pendidikan Prodi (TPP)
TPP-1 TPP-2 TPP-3
1 PL-1
2 PL-2
3 PL-3
4 PL-4
5 PL-5

Capaian Pembelajaran Lulusan (CPL)

Graduates of the Master’s Program in Materials Engineering and Metallurgy are expected to:

  1. Demonstrate attitudes and character reflecting devotion to the Almighty God, noble morals, sensitivity and concern for social and environmental issues, respect for cultural diversity and pluralism, upholding the rule of law, and prioritizing the interests of the nation and broader society through innovation, creativity, and other inherent potentials.
  2. Develop and solve scientific and technological problems in the field of materials engineering and metallurgy through research employing inter- or multidisciplinary approaches, resulting in innovative and validated works in the form of a thesis and a paper accepted in an accredited national scientific journal or presented at a reputable international conference.
  3. Manage self-directed learning and develop themselves as lifelong learners to compete at national and international levels, contributing meaningfully to problem-solving while adhering to sustainability principles.
  4. Solve complex problems in materials engineering and metallurgy by applying deep knowledge and understanding of science, technology, and mathematics.
  5. Design complex and integrated components, systems, and processes related to the application of materials engineering and metallurgy.
  6. Conduct systematic research and investigation in the fields of materials and metallurgy by utilizing available literature and research resources.
  7. Comprehend the current state of knowledge in materials engineering and technology, including advanced applications.
  8. Formulate decisions based on robust data and in-depth information analysis, while critically evaluating the impact and risks associated with those decisions.
  9. Collaborate effectively in groups or teams comprising individuals with diverse disciplinary backgrounds and cultural perspectives.
Kode TPP-1 TPP-2 TPP-3
CPL-1
CPL-2
CPL-3
CPL-4
CPL-5
CPL-6
CPL-7
CPL-8
CPL-9
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