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Additive Technologies in Foundry Production

Major: Metallurgy
Code of Subject: 7.136.01.E.20
Credits: 5
Department: Applied Materials Science and Materials Engineering
Lecturer: Аndriy M. Trostianchyn, Аssociate professor, Ph.D.
Semester: 2 семестр
Mode of Study: денна
Learning outcomes:
1. Knowledge of the classification of additive technologies, general information about their main types and development prospects.
2. Understanding the advantages and disadvantages of various types of additive technologies, as well as the possibilities of their use in foundry.
3. Knowledge of modern software for computer simulation of processes in the field of foundry.
4. Knowledge of the features of obtaining metal products using rapid prototyping technologies.
5. Knowledge of materials used in additive technologies, and methods for their preparation.
6. The ability to create a digital model of foundry equipment for its manufacture by 3D printing.
Required prior and related subjects:
Previous disciplines:
Descriptive Geometry and Engineering Graphics
Computer Aided Design Basics
Theoretical Foundations
Mold technology
Computer technology in foundry

Related disciplines:
Organization of an experiment in modeling and optimization of technical systems in metallurgy
Damage and destruction of cast alloys
Summary of the subject:
The discipline “Additive technologies in foundry” introduces students to modern non-waste technologies for producing products according to the digital model (3D-, CAD-model) by the methods of layer-by-layer addition of material, their classification, application features, development trends and possibilities of use in foundry. Studying the discipline, students acquire practical skills in creating digital models for rapid prototyping (3D printing) using specialized software, familiarize themselves with the features of using additive technologies to create foundry tools for dental, jewelry and orthopedic castings.
Recommended Books:
1. Зленко М.А. Аддитивные технологии в машиностроении / М.В. Нагайцев, В.М. Довбыш // пособие для инженеров. М.: ГНЦ РФ ФГУП «НАМИ» 2015. 220 с.
2. Кунву Ли. Основы САПР (CAD/CAM/CAE). – СПб.: Питер. – 2004. – 560 с.
3. Пустюльга С.І., Гандзюк М.О., Булік Ю.В. Основи проектування в Рrо/ENGINEER: Навчальний посібник. – Луцьк: Редакційно видавничий відділ ЛНТУ, 2012. – 281с.
4. Creo Parametric. Базовый курс обучения: Конспект лекций. К., Инженерная компания технополис. – 2013. – 109 с.
5. Michael F. Ashby. Materials Selection in Mechanical Design (Fourth Edition). – Elsevier Science & Technology. 2011. – 646 p.
6. Проектування та виробництво заготовок деталей машин. Литі заготовки: навчальний посібник. / [Дусанюк Ж. П.,Шиліна О. П., Репінський С. В. та ін.] – Вінниця: ВНТУ, 2009. –199 с.
7. Інженерна графіка. Комп’ютерна графіка. Михайленко В.Є. - Київ, Каравела, 2002. – 330 с.
Assessment methods and criteria:
Running control: oral and written surveys, laboratory works (50%);
Examination control: written-oral form (50%).