345-0306/05 – Surface Treatment (PÚ)

Gurantor departmentDepartment of Mechanical TechnologyCredits5
Subject guarantorIng. Kristýna Sternadelová, Ph.D.Subject version guarantorIng. Kristýna Sternadelová, Ph.D.
Study levelundergraduate or graduateRequirementCompulsory
Year3Semesterwinter
Study languageCzech
Year of introduction2013/2014Year of cancellation
Intended for the facultiesFSIntended for study typesBachelor
Instruction secured by
LoginNameTuitorTeacher giving lectures
KON0226 Ing. Hana Krupová
FOL178 Ing. Kristýna Sternadelová, Ph.D.
Extent of instruction for forms of study
Form of studyWay of compl.Extent
Full-time Credit and Examination 2+2

Subject aims expressed by acquired skills and competences

Obtaining of knowledges about anticorrosive prevention of materials.

Teaching methods

Lectures
Tutorials
Experimental work in labs

Summary

In the frame of study student obtain deeper and more detailed knowledges in the field: Characteristic of surface of mechanical materials, physics of phase boundaries, optical properties of surfaces, treatment of surface before application of protective coatings, special methods of application coatings in vacuum, special coatings, thermal spray application, implantation, using of laser, ionic nitration, organic coatings, vitreous and vitreous enamel coats, biomaterials, nanostructured materials in surface finishes, verification / inspection / of surface finish and treatment systems. ISO 12 944.

Compulsory literature:

KOLASINSKI, K. W.: Surface Science. Queen Mary, University of London, UK, JOHN WILEY & SONS, LTD, 2001 OHRING, M.: Materials Science of Thin Films. USA, Academic Press 2002 BROCK, T., GROTEKLAES, M., MISCHE, P.: Europan Coatings Handbook. Hannover, 2000

Recommended literature:

KOLASINSKI, K. W.: Surface Science. Queen Mary, University of London, UK, JOHN WILEY & SONS, LTD, 2001 OHRING, M.: Materials Science of Thin Films. USA, Academic Press 2002 BROCK, T., GROTEKLAES, M., MISCHE, P.: Europan Coatings Handbook. Hannover, 2000

Way of continuous check of knowledge in the course of semester

1. Performance of attendance on exercising at least 80%. 2. Processing of all programs and passing the tests. 3. Exam - combined

E-learning

Other requirements

1. Performance of attendance on exercising at least 80%. 2. Processing of all programs and passing the tests.

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.

Subject syllabus:

Lecture: 1. Surface properties of material, rust material, corrosion prevention. 2. Surface adjustment foundation material, mechanical before application coatings. 3. Surface adjustment foundation material, chemical before application coatings. 4. Oxidizing processes, technology of phosphate layer. 5. Electrochemical surface adjustment - philosophy of electrolytic secretion metals. 6. Chemical de - energized metal plating. 7. Galvanic metal plating. 8. Heat surface adjustment. 9. Vacual metal plating, heat - chemical adjustment surface. 10. Thermic spray metals and non-metals. 11. Organic coatings and their characteristics. 12. Technology of spreading organic coatings. 13. Glassy coatings and their characteristics. 14. Technology of spreading glassy coatings.

Conditions for subject completion

Full-time form (validity from: 2013/2014 Winter semester)
Task nameType of taskMax. number of points
(act. for subtasks)
Min. number of pointsMax. počet pokusů
Exercises evaluation and Examination Credit and Examination 100 (100) 51
        Exercises evaluation Credit 35 (35) 18
                Projekt Project 20  10
                Písemka Written test 15  8
        Examination Examination 65 (65) 33 3
                Písemná zkouška Written examination 24  12
                Ústní zkouška Oral examination 41  21
Mandatory attendence participation: Active attendance at exercises at least 80%. Students must successfully complete the following to qualify for credit: 1. Project 2. Credit test On the basis of successful completion of the credit, students may take an exam, which will consist of a written and oral part.

Show history

Conditions for subject completion and attendance at the exercises within ISP: At least 1 consultation with the teacher of the seminars and 1 consultation with the teacher of the lectures. Students must successfully complete the following to qualify for credit: 1. Project 2. Credit test On the basis of successful completion of the credit, students may take an exam, which will consist of a written and oral part.

Show history

Occurrence in study plans

Academic yearProgrammeBranch/spec.Spec.ZaměřeníFormStudy language Tut. centreYearWSType of duty
2024/2025 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Ostrava 3 Compulsory study plan
2024/2025 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Šumperk 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Ostrava 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Šumperk 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Ostrava 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Šumperk 3 Compulsory study plan
2022/2023 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2021/2022 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Ostrava 3 Compulsory study plan
2021/2022 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Šumperk 3 Compulsory study plan
2021/2022 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2021/2022 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2020/2021 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Šumperk 3 Compulsory study plan
2020/2021 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Ostrava 3 Compulsory study plan
2020/2021 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2020/2021 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2019/2020 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2019/2020 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2019/2020 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Ostrava 3 Compulsory study plan
2019/2020 (B0715A270011) Engineering (S09) Engineering technology MET P Czech Šumperk 3 Compulsory study plan
2018/2019 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2018/2019 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2017/2018 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2017/2018 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2016/2017 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2016/2017 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2015/2016 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2015/2016 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2014/2015 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2014/2015 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan
2013/2014 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Ostrava 3 Compulsory study plan
2013/2014 (B2341) Engineering (2303R002) Mechanical Engineering Technology P Czech Šumperk 3 Compulsory study plan

Occurrence in special blocks

Block nameAcademic yearForm of studyStudy language YearWSType of blockBlock owner
ECTS - MechEng - Bachelor Studies 2015/2016 Full-time English Choice-compulsory 301 - Study and International Office stu. block
ECTS - MechEng 2014/2015 Full-time Czech Choice-compulsory 301 - Study and International Office stu. block

Assessment of instruction



2023/2024 Winter
2022/2023 Winter
2021/2022 Winter
2020/2021 Winter
2019/2020 Winter
2018/2019 Winter
2017/2018 Winter
2016/2017 Winter
2015/2016 Winter
2014/2015 Winter
2013/2014 Winter