Materials Science and Applied Machanics

Major: Chemical Technology and Engineering
Code of subject: 6.161.00.O.009
Credits: 5.00
Department: Chemical Technology of Silicate Materials
Lecturer: Associate Professor, Ph.D. Semegen R.I., аssociate рrofessor, Ph.D. Geletiy V.M.
Semester: 2 семестр
Mode of study: денна
Мета вивчення дисципліни: The purpose of studying the educational discipline by the students is to master the theoretical foundations and practical skills of determining the characteristics of materials, their properties and features of application in the field of chemical technologies; application of modern calculation models of technical objects, analysis of their power load, kinematic and energy parameters; familiarization with the design, basics of calculations and design of typical elements of technical objects of general purpose and chemical industry.
Завдання: ability to abstract thinking, analysis and synthesis (K01); ability to apply knowledge in practical situations (K02); knowledge and understanding of the subject area and understanding of professional activity (K03); ability to search and analyze information from various sources and use information and communication technologies;
Learning outcomes: Learning outcomes know: - list and criteria for assessing the performance properties of technical support materials and forecasting the reliability of use in the conditions of chemical processes; - list of main types of materials; - basic properties of materials; - nomenclature and features of application of materials, unified parts, assemblies and mechanisms; be able: - to carry out strength calculations; - to evaluate the qualitative and quantitative indicators of the properties of materials and to assess the level of factors influencing the degree of reliability in the conditions of chemical-technological processes.
Required prior and related subjects: Inorganic chemistry; Organic chemistry; Processes and devices of chemical technologies.
Summary of the subject: Classification of properties, methodology of evaluation and determination of quantitative indicators. General information and properties of metals and alloys, cast irons, steels, alloy steels. Non-ferrous metals and alloys. Assortment of rolled metal. . Ceramic materials and products - wall materials and products, materials based on porcelain and earthenware, acid and alkali-resistant materials, refractories, insulation materials.Materials and products from glass, sieves, enamels, heat-insulating materials. Concretes, classification, their compositions, special concretes. Polymeric materials and products, properties and varieties of polymeric materials. Fundamentals of statics, kinematics and dynamics. Types and structure of parts, assemblies and mechanisms. Calculation of strength characteristics.
Опис: Chapter 1. Materials science 1. The purpose and tasks of materials science The specifics of the conditions for conducting chemical production and the list of the main factors affecting equipment, buildings and personnel. 2. Basic properties of materials for technological support of chemical technologies Classification of properties, methodology of assessment and determination of quantitative indicators, change of properties during the course of physical and chemical processes. 3. Complex of materials for technical support of chemical technologies General classification of materials. Materials of natural and artificial origin. 4. The structure of matter Amorphous and crystalline states, influence on properties. 5. Metal materials and products. 6. Ceramic materials and products. 7. Materials and products from mineral melts. 8. Concretes. 9. Polymer materials and products. Chapter 2. Applied mechanics 1. Mechanical quantities and their units. Basics of statics, kinematics and dynamics. Energy dependence of mechanics. 2. Basics of calculations of technical objects for strength and stiffness. Geometric characteristics of plane sections. 3. The strength and stiffness of the rods during stretching, twisting and bending. Stability of compressed rods. 4. Calculation of thin-walled shells. Fatigue strength. Types, structure and principles of functioning of mechanisms. 5. Design and construction. Technical documentation. Tolerances, roughness and hardness. Mechanical characteristics of structural materials 6. Design and calculation of connections of machine parts. Threaded and welded joints 7. Mechanical transmissions of rotary motion. Shafts, bearings, couplings.
Assessment methods and criteria: Current control, protection of laboratory and calculation-graphic works, Knowledge assessment methods: selective oral survey, test control
Критерії оцінювання результатів навчання: • written reports on laboratory work, oral examination, control work, test results 40%) • final control 60% control measure,exam), written-oral form (60%)
Recommended books: 1. Будівельні матеріали / Під ред. П.В. Кривенка. – К.: Вища школа, 1993. – 389 с. 2. Будівельне матеріалознавство /П.В. Кривенко, К.К. Пушкарьова, В.Б. Барановський, М.О. Кочевих, Ю.Г. Гасан, Б.Я. Константинівський, В.О. Ракша. – К., 2004 3. Будівельне матеріалознавство. Курс лекцій і практикум / Під ред. Л.Й. Дворкіна. – Рівне: УДУВГП, 2002. – 366 с.. Большаков В.І., Береза О.Ю., Харченко В.І. Прикладне матеріалознавство: Підручник для студентів вищих технічних навчальних закладів -2-е видання . доповнене і перероблене/Під редакцією В.І.Большакова. –РВА «Дніпро-VAL»: Дніпропетровськ.:, 2000. – 290 4. Куровець М.І. Кристалографія і мінералогія. Львів, вид-во «Світ», 1996, ч.І 235с. 5. Будівельне матеріалознавство / [П. В. Кривенко, К. К. Пушкарьова, В. Б. Барановський та ін.]. – К. : ТОВ УВПК “ЕксОб”, 2004. – 704 с. 6. Павлище В.Т., Харченко Є.В. Барвінський А.Ф., Гаршнєв Ю.Г. Прикладна механіка. Навч. посібник. – Львів: «Інтелект-Захід». 2004. – 368 с. 7. Ansel C. Ugural Mechanical Design of Machine Components. 2015. International Standard Book Number-13: 978-1-4398-8781-3 (eBook - PDF). 1010p. 8. D. Gross et al., Engineering Mechanics 2, DOI 10.1007/978-3-642-12886-8, © Springer-Verlag Berlin Heidelberg 2011 1. Будівельні матеріали / Під ред. П.В. Кривенка. – К.: Вища школа, 1993. – 389 с. 2. Будівельне матеріалознавство /П.В. Кривенко, К.К. Пушкарьова, В.Б. Барановський, М.О. Кочевих, Ю.Г. Гасан, Б.Я. Константинівський, В.О. Ракша. – К., 2004 3. Будівельне матеріалознавство. Курс лекцій і практикум / Під ред. Л.Й. Дворкіна. – Рівне: УДУВГП, 2002. – 366 с.. Большаков В.І., Береза О.Ю., Харченко В.І. Прикладне матеріалознавство: Підручник для студентів вищих технічних навчальних закладів -2-е видання . доповнене і перероблене/Під редакцією В.І.Большакова. –РВА «Дніпро-VAL»: Дніпропетровськ.:, 2000. – 290 4. Куровець М.І. Кристалографія і мінералогія. Львів, вид-во «Світ», 1996, ч.І 235с. 5. Будівельне матеріалознавство / [П. В. Кривенко, К. К. Пушкарьова, В. Б. Барановський та ін.]. – К. : ТОВ УВПК “ЕксОб”, 2004. – 704 с. 6. Павлище В.Т., Харченко Є.В. Барвінський А.Ф., Гаршнєв Ю.Г. Прикладна механіка. Навч. посібник. – Львів: «Інтелект-Захід». 2004. – 368 с. 7. Ansel C. Ugural Mechanical Design of Machine Components. 2015. International Standard Book Number-13: 978-1-4398-8781-3 (eBook - PDF). 1010p. 8. D. Gross et al., Engineering Mechanics 2, DOI 10.1007/978-3-642-12886-8, © Springer-Verlag Berlin Heidelberg 2011

Materials Science and Applied Machanics

Major: Chemical Technology and Engineering
Code of subject: 6.161.00.O.008
Credits: 5.00
Department: Department of Technical Mechanics and Engineering Graphics
Lecturer: V. Heletiy. R. Semehen
Semester: 2 семестр
Mode of study: денна
Мета вивчення дисципліни: The purpose of studying the educational discipline by the students is to master the theoretical foundations and practical skills of determining the characteristics of materials, their properties and features of application in the field of chemical technologies; application of modern calculation models of technical objects, analysis of their power load, kinematic and energy parameters; familiarization with the design, basics of calculations and design of typical elements of technical objects of general purpose and chemical industry.
Завдання: The study of the academic discipline involves the formation and development of the following competencies in the students of education: general competences: ability to abstract thinking, analysis and synthesis (K01); ability to apply knowledge in practical situations (K02); knowledge and understanding of the subject area and understanding of professional activity (K03); ability to search and analyze information from various sources and use information and communication technologies; professional competences: the ability to use the provisions and methods of fundamental sciences to solve professional problems (K09) the ability to use computer information technologies to solve applied problems (K14); the ability to present technical documentation in compliance with generally accepted norms and standards
Learning outcomes: As a result of studying this discipline, the student must be able to demonstrate the following learning outcomes: the ability to apply basic knowledge of chemistry and chemical technologies to understand the essence of processes occurring in technological installations during their operation. mastering the skills of working with the necessary equipment and measuring equipment, knowledge of the safe operating conditions of technological installations knowledge of chemical, mineralogical composition and basic properties of types of materials. Mastery of basic techniques for determining its properties. the ability to establish mechanical performance criteria of typical elements of technical objects, draw up calculation schemes and perform the necessary calculations; knowledge of the constructions of general-purpose parts, the ability to evaluate constructive solutions according to the criteria of economy and metal consumption while simultaneously ensuring the necessary reliability of the technical object; the ability to correctly use regulatory terminology, current regulatory and reference materials; The ability to design elements of technical systems and structures taking into account the technology of their manufacture, adjustment, conditions of operation and maintenance;
Required prior and related subjects: Previous disciplines: mathematics, engineering graphics, physics Related disciplines: Processes and devices of chemical industries
Summary of the subject: The discipline "Materials science and applied mechanics" is an educational discipline in which students study the chemical and mineralogical composition and basic properties of materials and methods of determining their properties. Calculation models of technical objects, analysis of their power load, kinematic and energy parameters are considered; basics of calculations for strength, stiffness, stability of the main schematic elements of technical objects: rods and thin-walled shells; basic concepts regarding mechanisms and machines; the basic principles of design (stages of creating new products, types and completeness of design documents; design and calculation of typical elements of technical objects of general purpose (connections, mechanical gears, shafts, bearings, etc.)
Опис: Section Applied mechanics 1. Mechanical quantities and their units; Basics of statics, kinematics and dynamics; Energy dependence of mechanics. Mechanisms 2. Basics of calculations of technical objects for strength and stiffness. Geometric characteristics of flat sections 3. The strength and stiffness of the rods during stretching, twisting and bending; Stability of compressed rods; Calculation of thin-walled shells. Fatigue strength 4. Design and construction; Technical documentation; Tolerances, roughness and hardness; Design and calculation of connections of machine parts. Threaded and welded joints 5. Mechanical transmissions of rotary motion. Shafts, bearings, couplings
Assessment methods and criteria: Control of preparedness for laboratory classes Evaluation of laboratory work reports Control of knowledge in practical classes Control of the performance of tasks of independent work Test control of knowledge by means of the emergency services (incoming, current) Differentiated assessment
Критерії оцінювання результатів навчання: 100–88 points – (“excellent”) awarded for a high level of knowledge of the educational material, the ability to apply theoretical provisions when solving practical problems; 87–71 points – (“good”) is given for a generally correct understanding of the educational material and for the ability to solve practical problems; 70 - 50 points - ("satisfactory") is given for weak knowledge of the educational material, inaccurate or poorly reasoned answers, for weak skills in solving practical problems; 49-26 points - ("not certified" with the possibility of retaking the semester control) is awarded for ignorance of a significant part of the educational material and inability to solve practical problems; 25-00 points - ("unsatisfactory" with mandatory re-study) is awarded for ignorance of a significant part of the educational material, ignorance of the main fundamental provisions.
Порядок та критерії виставляння балів та оцінок: Maximum score in points Laboratory, practical, together by СC (СC - current control) Differentiated assessment, written component of the exam, its oral component, together by discipline: 30 10 40 45 15 100
Recommended books: 1. Павлище В.Т., Харченко Є.В. Барвінський А.Ф., Гаршнєв Ю.Г. Прикладна механіка. Навч. посібник. – Львів: «Інтелект-Захід». 2004. – 368 с. 2. Ansel C. Ugural Mechanical Design of Machine Components. 2015. International Standard Book Number-13: 978-1-4398-8781-3 (eBook - PDF). 1010p. 3. D. Gross et al., Engineering Mechanics 2, DOI 10.1007/978-3-642-12886-8, © Springer-Verlag Berlin Heidelberg 2011
Уніфікований додаток: Lviv Polytechnic National University ensures the realization of the rights of persons with special educational needs to obtain higher education. Inclusive educational services are provided by the "Without Limits" accessibility to learning opportunities service, the purpose of which is to provide permanent individual support for the educational process of students with disabilities and chronic diseases. An important tool for the implementation of the inclusive educational policy at the University is the Program for improving the qualifications of scientific and pedagogical workers and educational and support staff in the field of social inclusion and inclusive education.
Академічна доброчесність: The policy regarding the academic integrity of participants in the educational process is formed on the basis of compliance with the principles of academic integrity, taking into account the norms "Regulations on academic integrity at the Lviv Polytechnic National University" (approved by the academic council of the university on June 20, 2017, protocol No. 35)