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  Surname Name Title Thesis status   Supervisors Reviewers Type of thesis Date of def. Title
Student Type of thesis - - - - - - - - - -
Item shown in detail Mohamed Kamel Mahmoud Lashin Includes the selected person into the timetable overlap calculation. Moataz Factors Affecting the Use of Additive Manufacturing in Production Factors Affecting the Use of Additive Manufacturing in Production Thesis submitted, discontinued after an unsuccessful defence (OPUNO).   Hrušecká Denisa Macurová Lucie Master's thesis 1655330400000 16.06.2022 Factors Affecting the Use of Additive Manufacturing in Production Thesis submitted, discontinued after an unsuccessful defence (OPUNO).
Moataz Mohamed Kamel Mahmoud Lashin Master's thesis 0XX 0XX 0XX 0XX 0XX 0XX 0XX 0XX 0XX 0XX

Thesis info Factors Affecting the Use of Additive Manufacturing in Production

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Name Mohamed Kamel Mahmoud Lashin Moataz Includes the selected person into the timetable overlap calculation.
Acad. Yr. 2021/2022
Assigning department MUPE
Date of defence Jun 16, 2022
Type of thesis Master's thesis
Thesis status Thesis submitted, discontinued after an unsuccessful defence (OPUNO). Thesis submitted, discontinued after an unsuccessful defence (OPUNO).
Completeness of mandatory entries - All mandatory fields for this Thesis are filled in.
Main topic Factors Affecting the Use of Additive Manufacturing in Production
Main topic in English Factors Affecting the Use of Additive Manufacturing in Production
Title according to student Factors Affecting the Use of Additive Manufacturing in Production
English title as given by the student Factors Affecting the Use of Additive Manufacturing in Production
Parallel name -
Subtitle -
Thesis supervisor Hrušecká Denisa, Ing. Ph.D.
External examiner Macurová Lucie, Ing. Ph.D.
Annotation Aditivní výroba je běžně používaná technologie při vývoji nových produktů. Je to nová technologie ve výrobních aplikacích v průmyslu. Cílem této diplomové práce je prozkoumat aplikaci AM ve výrobě v průmyslových oborech a analyzovat, zda je vhodná pro implementaci ve výrobě v jiných průmyslových odvětvích, zejména v hromadné výrobě spotřebního zboží. V práci bude uveden přehled technologie a provedeny faktory, které ovlivňují uplatnění AMT ve výrobě. V praktické části je uveden kompletní plán realizace. Probíhají rozhovory se společnostmi, které aplikují AM ve výrobě, abychom prozkoumali náš plán a získali zpětnou vazbu od odborné strany.
Annotation in English Additive Manufacturing is a commonly used technology in new product development. It is a new technology in production applications in industries. The objective of this thesis is to investigate the application of AM in production in industrial fields and analyze whether suitable for implementation in production in other industries, especially in the mass production of consumer goods. The thesis will overview the technology and carry out the factors which affect the application of AMT in production. The practical part gives a complete implementation plan. Interviews with companies that apply AM in production take place to examine our plan and get feedback from the professional side.
Keywords Additive Manufacturing, AM, 3DP, Rapid Prototype, RP
Keywords in English Additive Manufacturing, AM, 3DP, Rapid Prototype, RP
Length of the covering note 70
Language AN
Annotation
Aditivní výroba je běžně používaná technologie při vývoji nových produktů. Je to nová technologie ve výrobních aplikacích v průmyslu. Cílem této diplomové práce je prozkoumat aplikaci AM ve výrobě v průmyslových oborech a analyzovat, zda je vhodná pro implementaci ve výrobě v jiných průmyslových odvětvích, zejména v hromadné výrobě spotřebního zboží. V práci bude uveden přehled technologie a provedeny faktory, které ovlivňují uplatnění AMT ve výrobě. V praktické části je uveden kompletní plán realizace. Probíhají rozhovory se společnostmi, které aplikují AM ve výrobě, abychom prozkoumali náš plán a získali zpětnou vazbu od odborné strany.
Annotation in English
Additive Manufacturing is a commonly used technology in new product development. It is a new technology in production applications in industries. The objective of this thesis is to investigate the application of AM in production in industrial fields and analyze whether suitable for implementation in production in other industries, especially in the mass production of consumer goods. The thesis will overview the technology and carry out the factors which affect the application of AMT in production. The practical part gives a complete implementation plan. Interviews with companies that apply AM in production take place to examine our plan and get feedback from the professional side.
Keywords
Additive Manufacturing, AM, 3DP, Rapid Prototype, RP
Keywords in English
Additive Manufacturing, AM, 3DP, Rapid Prototype, RP
Research Plan

Introduction

Define the objectives and the application methods used in the Master Thesis.

I. Theoretical part

  • Compile literature review focused on types of AM (3D-Printing) and its application in production.

II. Practical part

  • Analyse the factors affecting the use of AM in production by benchmarking examples from different industries.
  • Propose a systematic methodology for applying AM instead of traditional production methods in new applications.
  • Verify the proposed methodology on real production.

Conclusion

Research Plan

Introduction

Define the objectives and the application methods used in the Master Thesis.

I. Theoretical part

  • Compile literature review focused on types of AM (3D-Printing) and its application in production.

II. Practical part

  • Analyse the factors affecting the use of AM in production by benchmarking examples from different industries.
  • Propose a systematic methodology for applying AM instead of traditional production methods in new applications.
  • Verify the proposed methodology on real production.

Conclusion

Recommended resources

GIBSON, Ian, David ROSEN a Brent STUCKER. Additive manufacturing technologies: 3D printing, rapid prototyping, and direct digital manufacturing. 2nd ed. New York: Springer, 2015, 498 s. ISBN 978-1-4939-2112-6.

JORDAN, John M. 3D printing. Cambridge: MIT Press, 2019, 240 s. ISBN 978-02-6235-241-3.

MILEWSKI, John O. Additive manufacturing of metals: from fundamental technology to rocket nozzles, medical implants and custom jewelry. Cham: Springer, 2017, 343 s. ISBN 978-33-195-8204-7.

NIAKI, Mojtaba Khorram a Fabio NONINO. The Management of additive manufacturing: enhancing business value. Cham: Springer, 2017, 257 s. ISBN 978-33-195-6309-1.

THURSBY, Marie. Technological innovation: generating economic results. 2nd ed. Bingley, U.K.: Emerald, 2016, 240 s. ISBN 978-1-7863-5237-8.

Recommended resources

GIBSON, Ian, David ROSEN a Brent STUCKER. Additive manufacturing technologies: 3D printing, rapid prototyping, and direct digital manufacturing. 2nd ed. New York: Springer, 2015, 498 s. ISBN 978-1-4939-2112-6.

JORDAN, John M. 3D printing. Cambridge: MIT Press, 2019, 240 s. ISBN 978-02-6235-241-3.

MILEWSKI, John O. Additive manufacturing of metals: from fundamental technology to rocket nozzles, medical implants and custom jewelry. Cham: Springer, 2017, 343 s. ISBN 978-33-195-8204-7.

NIAKI, Mojtaba Khorram a Fabio NONINO. The Management of additive manufacturing: enhancing business value. Cham: Springer, 2017, 257 s. ISBN 978-33-195-6309-1.

THURSBY, Marie. Technological innovation: generating economic results. 2nd ed. Bingley, U.K.: Emerald, 2016, 240 s. ISBN 978-1-7863-5237-8.

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