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Introduction to the Program
Learn to design, evaluate and manage Mechanical Engineering projects, incorporating the most relevant and interesting innovations in the sector"
The incursion of new technologies in Mechanical Engineering demands professionals with extensive digital skills"
TECH's Master's Degree in Mechanical Engineering is a program specifically designed for professionals who need to strengthen their knowledge, both in the conventional aspects of their professional activity, as well as in the most innovative aspects.Â
It has an international focus, with content based on that of the most prestigious universities in the world and is aligned with the recommendations of professional associations such as ASME (American Society of Mechanical Engineers) and IMechE (Institution of Mechanical Engineers).Â
The use of the case method facilitates the learning of concepts, avoiding systematic memorization and repetitive performance of complex calculations.Â
The content of the program combines the traditional but necessary aspects of the profession with the most innovative aspects that are renewed in each edition.Â
We can highlight the aspects related to innovation management and Soft Skills, which accompany the different modules of the program, as well as the study of Industry 4.0 solutions, applied to Mechanical Engineering and the development of optimized processes of total quality, applied to all steps of mechanical design; without forgetting the use of simulation tools, freely available, which facilitate the performance of calculations, and allow to analyze solutions much solutions in much greater detail.
It should be noted that, as it is a 100% online program, the student is not conditioned by fixed schedules or the need to move to another physical location, but can access the contents at any time of the day, balancing their work or personal life with their academic life.Â
This Master's Degree may be the best investment you can make in the selection of a refresher program for two reasons: in addition to updating your knowledge in Mechanical Engineering, you will obtain a certificate from TECH Global University"
This Master's Degree in Mechanical Engineering contains the most complete and updated educational program on the market. The most important features of the program include:Â
- The development of case studies presented by experts in Mechanical Engineering
- The graphic, schematic and eminently practical contents with which they are conceived, gather scientific and practical information on those disciplines that are essential for professional practiceÂ
- Practical exercises where the self-assessment process can be carried out to improve learningÂ
- Its special emphasis on innovative methodologies in Mechanical Engineering
- Theoretical lessons, questions to the expert, debate forums on controversial topics, and individual reflection assignmentsÂ
- Content that is accessible from any fixed or portable device with an Internet connectionÂ
It includes, in its teaching staff, professionals belonging to the field of Mechanical Engineering, who pour into this training the experience of their work, in addition to recognized specialists, reference societies and prestigious universities.
The multimedia content, developed with the latest educational technology, will provide the professional with situated and contextual learning, i.e., a simulated environment that will provide immersive training , programmed to train in real situations.Â
This program is designed around Problem Based Learning, whereby the professional must try to solve the different professional practice situations, that arise during the academic year. For this purpose, the professional will be assisted by an innovative interactive video system created by renowned and experienced experts in Mechanical Engineering, adding their extensive valued experience.Â
A complete didactic material, totally accessible, that will allow you to study with comfort, expanding your knowledge in the most stimulating way"
This program, 100% online, will allow you to combine your studies with your professional work. You choose where and when to train"
Syllabus
The structure of the contents has been designed by the best professionals in the Mechanical Engineering sector, with extensive experience and recognized prestige in the profession, and aware of the benefits that the latest educational technology can bring to higher education.   Â
We have the most complete and up-to-date program on the market. We strive for excellence and for you to achieve it too" 
Module 1. Project Management in Mechanical EngineeringÂ
1.1. Design ProcessÂ
1.2. Research and InnovationÂ
1.2.1. Technological CreativityÂ
1.2.2. Fundamentals of Design ThinkingÂ
1.3. Modeling and SimulationÂ
1.3.1. 3D DesignÂ
1.3.2. BIM MethodologyÂ
1.3.3. Finite ElementsÂ
1.3.4. 3D PrintingÂ
1.4. Project ManagementÂ
1.4.1. StartÂ
1.4.2. PlanningÂ
1.4.3. ImplementationÂ
1.4.4. ControlÂ
1.4.5. ClosureÂ
1.5. Problem SolvingÂ
1.5.1. 8D MethodologyÂ
1.6. Leadership and Conflict ResolutionÂ
1.7. Organization and CommunicationÂ
1.8. Project DraftingÂ
1.9. RegulationsÂ
1.10. Intellectual PropertyÂ
1.10.1. PatentsÂ
1.10.2. Utility ModelsÂ
1.10.3. Industrial DesignÂ
Module 2. Mechanical Component DesignÂ
2.1. Failure TheoriesÂ
2.1.1. Static Failure TheoriesÂ
2.1.2. Dynamic Failure TheoriesÂ
2.1.3. FatigueÂ
2.2. Tribology and LubricationÂ
2.2.1. FrictionÂ
2.2.2. WearÂ
2.2.3. LubricantsÂ
2.3. Design of Shafts and AxlesÂ
2.3.1. Shafts and AxlesÂ
2.3.2. Keys and Spline ShaftsÂ
2.3.3. FlywheelsÂ
2.4. Design of Rigid TransmissionsÂ
2.4.1. CamshaftsÂ
2.4.2. Spur GearsÂ
2.4.3. Bevel GearsÂ
2.4.4. Helical GearsÂ
2.4.5. Worm ScrewsÂ
2.5. Design of Flexible TransmissionsÂ
2.5.1. Chain DrivesÂ
2.5.2. Belt DrivesÂ
2.6. Design of Bearings and BushingsÂ
2.6.1. Friction BearingsÂ
2.6.2. Rolling BearingsÂ
2.7. Design of Brakes, Clutches and CouplingsÂ
2.7.1. BrakesÂ
2.7.2. ClutchesÂ
2.7.3. CouplingsÂ
2.8. Design of Mechanical SpringsÂ
2.9. Design of Non-Permanent JointsÂ
2.9.1. Bolted JointsÂ
2.9.2. Riveted JointsÂ
2.10. Design of Permanent JointsÂ
2.10.1. Welded JointsÂ
2.10.2. Adhesive JointsÂ
Module 3. Thermal, Hydraulic and Pneumatic MachinesÂ
3.1. Principles of ThermodynamicsÂ
3.2. Heat TransferÂ
3.3. Thermodynamic CyclesÂ
3.3.1. Steam CyclesÂ
3.3.2. Air CyclesÂ
3.3.3. Refrigeration CyclesÂ
3.4. Combustion ProcessesÂ
3.5. Thermal MachinesÂ
3.5.1. Steam TurbineÂ
3.5.2. Combustion EnginesÂ
3.5.3. Gas TurbinesÂ
3.5.4. Stirling EngineÂ
3.6. Fluid MechanicsÂ
3.6.1. Multidimensional Fluid MechanicsÂ
3.6.2. Laminar FlowÂ
3.6.3. Turbulent FlowÂ
3.7. Hydraulic Systems and HydrostaticsÂ
3.7.1. Distribution NetworksÂ
3.7.2. Hydraulic System ElementsÂ
3.7.3. Cavitation and Water HammerÂ
3.8. Hydraulic MachinesÂ
3.8.1. Positive Displacement PumpsÂ
3.8.2. Rotary PumpsÂ
3.8.3. CavitationÂ
3.8.4. Coupling of Hydraulic InstallationsÂ
3.9. TurbomachinesÂ
3.9.1. Action TurbinesÂ
3.9.2. Reaction TurbinesÂ
3.10. PneumaticsÂ
3.10.1. Compressed Air ProductionÂ
3.10.2. Compressed Air PreparationÂ
3.10.3. Elements of a Pneumatic SystemÂ
3.10.4. Vacuum GeneratorsÂ
3.10.5. ActuatorsÂ
Module 4. Structures and InstallationsÂ
4.1. Structural CalculationsÂ
4.1.1. Beam CalculationsÂ
4.1.2. Column CalculationsÂ
4.1.3. Frame CalculationÂ
4.1.4. FoundationsÂ
4.1.5. Preloaded StructuresÂ
4.2. Low Voltage Electrical InstallationsÂ
4.3. Heating, Ventilation, and Air Conditioning InstallationsÂ
4.3.1. Heating InstallationsÂ
4.3.2. Air Conditioning InstallationsÂ
4.3.3. Ventilation InstallationsÂ
4.4. Sanitary Water and Sewerage SystemsÂ
4.4.1. Water InstallationsÂ
4.4.2. Domestic Hot Water Systems - DHWÂ
4.4.3. Sewer NetworksÂ
4.5. Fire Safety InstallationsÂ
4.5.1. Portable Extinguishing SystemsÂ
4.5.2. Detection and Alarm SystemsÂ
4.5.3. Automatic Extinguishing SystemsÂ
4.5.4. Fire Hydrants, Dry Columns, and BIEsÂ
4.6. Communication, Home Automation and Security InstallationsÂ
4.7. Thermal and Acoustic InsulationÂ
4.8. Steam, Compressed Air and Medical Gases InstallationsÂ
4.8.1. Steam InstallationsÂ
4.8.2. Compressed Air InstallationsÂ
4.8.3. Medical Gas InstallationsÂ
4.9. Gas and Liquid Fuels InstallationsÂ
4.9.1. Natural Gas InstallationsÂ
4.9.2. Liquefied Petroleum Gas InstallationsÂ
4.9.3. Liquid Hydrocarbon FacilitiesÂ
4.10. Energy CertificationsÂ
4.10.1. Energy Demand ControlÂ
4.10.2. Renewable Energy ContributionÂ
4.10.3. Energy AuditsÂ
4.10.4. ISO 50001 Energy CertificationÂ
Module 5. Advanced DynamicsÂ
5.1. Advanced Machine DynamicsÂ
5.2. Vibrations and ResonanceÂ
5.3. Longitudinal Vehicle DynamicsÂ
5.3.1. Vehicle PerformanceÂ
5.3.2. Vehicle BrakingÂ
5.4. Transverse Vehicle DynamicsÂ
5.4.1. Steering GeometryÂ
5.4.2. Circulation in CurvesÂ
5.5. Railroad DynamicsÂ
5.5.1. Traction EffortsÂ
5.5.2. Braking EffortsÂ
5.6. Dynamics of Mechanical MicrosystemsÂ
5.7. Robot KinematicsÂ
5.7.1. Direct Kinematic ProblemÂ
5.7.2. Inverse Kinematic ProblemÂ
5.8. Robot DynamicsÂ
5.9. BiomimicryÂ
5.10. Dynamics of Human MovementÂ
Module 6. Design for ManufacturingÂ
6.1. Design for Manufacturing and AssemblyÂ
6.2. Forming by MoldingÂ
6.2.1. CastingÂ
6.2.2. Injection MoldingÂ
6.3. Forming by DeformationÂ
6.3.1. Plastic DeformationÂ
6.3.2. StampingÂ
6.3.3. ForgingÂ
6.3.4. ExtrusionÂ
6.4. Forming by Material RemovalÂ
6.4.1. Abrasive LossÂ
6.4.2. Chip RemovalÂ
6.5. Heat TreatmentÂ
6.5.1. HardeningÂ
6.5.2. TemperingÂ
6.5.3. AnnealingÂ
6.5.4. NormalizingÂ
6.5.5. Thermochemical TreatmentsÂ
6.6. Application of Paints and CoatingsÂ
6.6.1. Electrochemical TreatmentsÂ
6.6.2. Electrolytic TreatmentsÂ
6.6.3. Paints, Lacquers and VarnishesÂ
6.7. Polymer and Ceramic Material FormingÂ
6.8. Composite Material Part ManufacturingÂ
6.9. Additive ManufacturingÂ
6.9.1. Powder Bed FusionÂ
6.9.2. Direct Energy DepositionÂ
6.9.3. Binder JettingÂ
6.9.4. Bound Extrusion Power
6.10. Robust EngineeringÂ
6.10.1. Taguchi MethodÂ
6.10.2. Design of ExperimentsÂ
6.10.3. Statistical Process ControlÂ
Module 7. MaterialsÂ
7.1. Material PropertiesÂ
7.1.1. Mechanical PropertiesÂ
7.1.2. Electrical PropertiesÂ
7.1.3. Optical PropertiesÂ
7.1.4. Magnetic PropertiesÂ
7.2. Metallic Materials I - FerrousÂ
7.3. Metallic Materials II - Non-ferrousÂ
7.4. Polymeric MaterialsÂ
7.4.1. ThermoplasticsÂ
7.4.2. Thermosetting PlasticsÂ
7.5. Ceramic MaterialsÂ
7.6. Composite MaterialsÂ
7.7. BiomaterialsÂ
7.8. NanomaterialsÂ
7.9. Corrosion and Degradation of MaterialsÂ
7.9.1. Types of CorrosionÂ
7.9.2. Oxidation of MetalsÂ
7.9.3. Corrosion ControlÂ
7.10. Non-Destructive TestingÂ
7.10.1. Visual Inspections and EndoscopiesÂ
7.10.2. UltrasoundÂ
7.10.3. X-RaysÂ
7.10.4. Eddy Currents (Eddy)Â
7.10.5. Magnetic ParticlesÂ
7.10.6. Penetrating LiquidsÂ
7.10.7. Infrared ThermographyÂ
Module 8. Mechanics 4.0Â
8.1. Introduction to Industry 4.0Â
8.2. Principles of MechatronicsÂ
8.3. Sensorization and DetectionÂ
8.3.1. Range DetectionÂ
8.3.2. Proximity DetectionÂ
8.3.3. Contact SensorsÂ
8.3.4. Force DetectionÂ
8.4. ActuatorsÂ
8.5. Control SystemsÂ
8.6. Computer VisionÂ
8.6.1. Vision SensorsÂ
8.6.2. Integrated Vision SystemsÂ
8.6.3. Advanced Vision SystemsÂ
8.7. Digital TwinsÂ
8.8. The Internet of ThingsÂ
8.8.1. HardwareÂ
8.8.2. Software and ConnectivityÂ
8.8.3. RulesÂ
8.8.4. ServicesÂ
8.9. Cloud Computing and Big DataÂ
8.9.1. Storage TechnologyÂ
8.9.2. Analysis TechniquesÂ
8.10. Machine Learning and Artificial IntelligenceÂ
Module 9. Design for Reliability, Safety and EnvironmentÂ
9.1. RAMS Engineering FundamentalsÂ
9.1.1. Reliability, Maintainability and Availability FunctionsÂ
9.1.2. Failure CurvesÂ
9.1.3. Statistical DistributionsÂ
9.2. Reliability of ElementsÂ
9.3. System ReliabilityÂ
9.3.1. Reliability Block Diagrams-RBDÂ
9.4. Reliability Analysis I-Qualitative MethodsÂ
9.4.1. Failure Mode and Effects Analysis-FMEAÂ
9.5. Reliability Analysis II- Quantitative MethodsÂ
9.5.1. Fault Tree Analysis-FTAÂ
9.6. Improved Reliability and Accelerated Life TestingÂ
9.6.1. Reliability Improvement PlansÂ
9.6.2. Accelerated Life Assays-HASS/HALTÂ
9.7. Machine SafetyÂ
9.7.1. Security Management ProgramsÂ
9.8. Risk AnalysisÂ
9.8.1. Risk MatrixÂ
9.8.2. ALARPÂ
9.8.3. Operational Hazard Studies-HAZOPÂ
9.8.4. Safety Level-SILÂ
9.8.5. Event Tree Analysis-ETAÂ
9.8.6. Root Cause Analysis-RCAÂ
9.9. Environment and Circular EconomyÂ
9.9.1. Environmental ManagementÂ
9.9.2. Fundamentals of Circular EconomyÂ
9.10. Reliability Centered Maintenance-RCMÂ
9.10.1. SAE Standard JA1011Â
9.10.2. Failure Management PoliciesÂ
Module 10. Continuous Improvement of OperationsÂ
10.1. Development of Continuous Improvement ProcessesÂ
10.1.1. Overall Equipment Efficiency (OEE)Â
10.1.2. The 7 WastesÂ
10.1.3. Value Stream Mapping (VSM)Â
10.1.4. Kaizen EventsÂ
10.2. Standardization of ProcessesÂ
10.3. Visual ManagementÂ
10.3.1. KanbanÂ
10.3.2. AndonÂ
10.4. Leveled Production - HeijunkaÂ
10.4.1. Takt-TimeÂ
10.5. Just-in-Time (JIT)Â
10.5.1. 5SÂ
10.5.2. Single-Minute Exchange of Dies (SMED)Â
10.6. Quality at the Source - JidokaÂ
10.6.1. Poka-YokesÂ
10.7. Total Productive Maintenance (TPM)Â
10.7.1. The 16 Major LossesÂ
10.7.2. TPM PillarsÂ
10.8. Development of Excellent PeopleÂ
10.8.1. Theory X and Theory YÂ
10.8.2. Teal OrganizationsÂ
10.8.3. Spotify ModelÂ
10.9. Other Continuous Improvement TheoriesÂ
10.9.1. Six SigmaÂ
10.9.2. World Class Manufacturing (WCM)Â
10.9.3. Theory of Constraints (ToC)Â
10.10. Change ManagementÂ
This training will allow you to advance in your career comfortably"
Master's Degree in Mechanical Engineering
The constant innovation and modernization in the technological and methodological aspects of mechanical engineering demand continuous training from specialized professionals. This training must be grounded in the relevant theoretical and practical updates on the latest fundamental advances to ensure optimal performance in the field. Acknowledging the need for educational processes that meet the current demands of the sector, TECH Global University has developed our Master's Degree in Mechanical Engineering, aimed at qualifying professionals in the current trends of the industry. This postgraduate program also emphasizes engineering project management and the new technological and procedural possibilities under the concept of Mechanics 4.0.
Study a Master's Degree in Mechanical Engineering Completely Online
Given its wide range of applications, there is currently a high demand for professionals specialized in mechanical engineering. In our Master's Degree, you will undergo a modular educational process designed to meet the sector's current requirements. You will acquire all the tools, knowledge, and skills necessary for a successful career in mechanical engineering. This program ensures that the professional’s knowledge stays current with concepts such as: new methodological alternatives for planning and developing thermal, hydraulic, and pneumatic machines; the specific considerations for designing with safety, reliability, and environmental care in mind; and the importance of understanding the potential applications of biomaterials and nanomaterials in manufacturing processes.