SY B Tech Mechanical Sandwich (2025 pattern)
| Sem I | ||
|---|---|---|
| Course | Course Code | Course Outcomes |
| Solid Mechanics | 25MSPCC201 | Explain the fundamental concepts of stress, strain, and mechanical properties of materials |
| Determine strain energy, impact stresses, and stresses in thin cylinders. | ||
| Calculate and analyse internal forces and moments in structural members using free-body diagrams | ||
| Compute the bending stresses and shear stresses on a beam. | ||
| Analyze torsional stresses in shafts and determine critical buckling load of columns for different end conditions. | ||
| Thermal & Fluid Engineering | 25MEPCC202 | Explain thermodynamic concepts, laws, and processes, and apply the first and second laws of thermodynamics to analyze simple closed and open systems, heat engines, refrigerators, and irreversibilities. |
| Explain entropy and availability concepts and evaluate entropy changes of closed and open systems, including ideal gas processes. | ||
| Analyze steam properties, use steam tables and Mollier charts, determine dryness fraction, and evaluate boiler performance through efficiency, equivalent evaporation, and heat balance calculations. | ||
| Explain fluid properties and static laws and apply Bernoulli’s equation to solve numerical problems involving manometers, viscosity, and Venturimeter. | ||
| Analyze laminar internal flow and external boundary layer flow, and solve numerical problems related to boundary layer thickness, displacement thickness, momentum thickness, and energy thickness. | ||
| Manufacturing Engineering | 25MSPCC203 | DESIGN gating systems, risers, and ANALYZE casting defects for efficient metal casting processes. |
| COMPUTE forces, power, and deformation in rolling, forging, and sheet metal operations. | ||
| Understand Basic Plastic component manufacturing Process and its applications | ||
| COMPARE welding techniques, interpret weld symbols, and EVALUATE defects for quality joining. | ||
| SELECT appropriate grinding and finishing processes based on surface finish requirements | ||
| Multidisciplinary Minor-I (Fundamentals of Artificial Intelligence and Machine Learning ) | 25AIMDM201D | DEMONSTRATE fundamentals of artificial intelligence and machine learning. |
| APPLY feature extraction and selection techniques | ||
| APPLY machine learning algorithms for classification and regression problems | ||
| EXPLAIN concepts of unsupervised and reinforced learning. | ||
| ANALYZE the structure and learning mechanisms of artificial neural networks and interpret their applications in mechanical engineering systems. | ||
|
Open Elective I (25OEC201A) Principles of Management and Organizational Behaviour
|
25OEC201A | Explain core management functions and classical as well as modern management theories. |
| Analyze individual behaviour, personality, perception, and motivation in organizational settings. | ||
| Apply capital budgeting methods for evaluating engineering investment decisions. | ||
| Evaluate cost of capital and capital structure decisions. | ||
| Apply working capital and financial planning concepts for engineering projects. | ||
|
Open Elective I (25OEC201B) Circular Economy for Sustainable Development |
25OEC201B | Explain the fundamental principles of circular economy and sustainable development, and differentiate between linear and circular economic systems. |
| Analyse global environmental challenges and evaluate the role of Sustainable Development Goals (SDGs) in addressing sustainability issues. | ||
| Apply life cycle thinking, material flow analysis, and resource efficiency tools to assess environmental impacts of products and processes | ||
| Design and evaluate circular business models incorporating strategies such as reuse, recycling, remanufacturing, and extended producer responsibility. | ||
| Assess sustainability policies, governance mechanisms, and technological interventions to propose practical solutions for sustainable development. | ||
|
Open Elective I (25OEC201C) Start-up Management &Venture Creation |
25OEC201C | Explain concepts, types, and lifecycle stages of start-ups and new ventures. |
| Identify and analyze start up opportunities using market and customer discovery tools. | ||
| Develop suitable business models and assess technical and financial feasibility of ventures. | ||
| Apply knowledge of funding, legal, IPR, and government policies for startup creation. | ||
| Prepare and present a startup business plan demonstrating teamwork, communication, ethics, and lifelong learning. | ||
|
Open Elective I (25OEC201D) Health and Nutrition for Professionals |
25OEC201D | Explain the basic concepts of health and nutrition. |
| Understand nutritional requirements and balanced diet. | ||
| Identify lifestyle diseases and preventive measures. | ||
| Apply principles of healthy living and stress management. | ||
| Analyze the role of nutrition in improving professional productivity | ||
|
Open Elective I (25OEC201E) French Language Module-I |
25OEC201E | Identify basic French vocabulary and pronunciation. |
| Use simple French expressions for self-introduction and basic interactions. | ||
| Read and write simple French sentences. | ||
| Communicate in familiar everyday situations using basic French. | ||
| Demonstrate awareness of French culture and etiquette. | ||
|
Open Elective I (25OEC201F) German Language Module-I |
25OEC201F | Identify basic German vocabulary and pronunciation. |
| Use simple German expressions for basic communication. | ||
| Read and write elementary German sentences. | ||
| Apply common German phrases in everyday situations. | ||
| Demonstrate awareness of German culture and traditions. | ||
|
Open Elective I (25OEC201G) Japanese Language Module-I |
25OEC201G | Identify basic Japanese pronunciation, scripts, and vocabulary. |
| Use simple Japanese expressions for basic communication. | ||
| Read and write basic Japanese characters and sentences. | ||
| Participate in elementary conversations using simple Japanese expressions. | ||
| Demonstrate awareness of Japanese culture and etiquette. | ||
| Solid Mechanics Laboratory | 25MSPCC201L | Conduct tensile, compression, torsion, shear, and bending tests and interpret the stress–strain behavior of materials. |
| Determine mechanical properties such as Young’s modulus, shear modulus, yield strength, and spring stiffness from experimental data. | ||
| Apply IS and ASTM standards while performing material testing experiments. | ||
| Measure strain using strain gauges and compare experimental results with theoretical values. | ||
| Correlate laboratory results with real-life engineering components such as beams, shafts, columns, and springs. | ||
| Thermal & Fluid Engineering Laboratory | 25MEPCC202L | Explain and apply the principles of Joule’s experiment, heat transfer, and steam properties in thermal engineering applications. |
| Identify and use various temperature sensors, viscometers, calorimeters, and flow measurement devices used in thermal and fluid systems. | ||
| Evaluate boiler performance parameters such as boiler efficiency, equivalent evaporation, dryness fraction, and heat balance. | ||
| Analyze fluid flow systems by determining major and minor losses in pipelines and verifying modified Bernoulli’s equation. | ||
| Correlate laboratory experiments with industrial practices in boilers, food processing plants, and automobile service stations, enhancing professional and practical competence | ||
| Intelligent Mechanical Systems Laboratory | 25MEPCC203L | Acquire and analyze engineering datasets using exploratory analysis techniques |
| Extract and select relevant features from engineering datasets to form effective training data for machine learning models. | ||
| Develop and evaluate classification and regression models for solving mechanical engineering problems. | ||
| Apply reinforcement learning and evolutionary optimization concepts to engineering system optimization | ||
| Apply artificial neural networks for parameter estimation, system identification, and tuning of control algorithms in mechanical engineering applications. | ||
| Workshop practices | 25MEVSE201 | IDENTIFY and ANALYZE safety standards and safety measures applicable to various sections of mechanical workshops and effectively communicate these through the preparation of informative posters or reports. |
| READ, INTERPRET Casting Process and its stages. | ||
| READ, INTERPRET, and ANALYZE industrial drawings by applying standard industrial practices to effectively communicate design and manufacturing intent. | ||
| UNDERSTAND and APPLY the principles of GD&T as well as INTERPRET surface finish and welding symbols to enhance design accuracy and manufacturability. | ||
| PLAN and EXECUTE the production of an assembly job by performing a sequence of machining operations while selecting appropriate materials and processes to meet functional and assembly requirements. | ||
| Entrepreneurship/Economics/ Management Course-I | 25HSM201 | Explain the fundamental concepts of entrepreneurship, economics, and management, and their role in industrial and business development. |
| Apply principles of economics and management to analyse business environments, resource utilisation, and organisational decision-making. | ||
| Analyse entrepreneurial opportunities by conducting market surveys, feasibility studies, and SWOT analysis for new business ventures. | ||
| Prepare a basic business plan incorporating marketing, finance, production, human resources, and legal aspects for a startup or small enterprise. | ||
| Demonstrate entrepreneurial competencies, ethical business practices, leadership, innovation, and effective communication for sustainable enterprise development. | ||
| Universal Human Values | 25VEC201 | Explain the concept of human values and self-exploration, and recognize their importance in personal life, professional life, and the role of engineers in society. |
| Understand the importance of sustainable development, environmental responsibility, and ecological balance, and evaluate the impact of technology on society and nature. | ||
| Apply values such as trust, respect, empathy, and responsibility to maintain harmony in family and society and practice ethical behavior in social interactions. | ||
| Demonstrate professional ethics, value-based decision making, leadership, and teamwork in engineering practice for the welfare of society. | ||
| Understand the relationship between self and body, differentiate their needs, and develop self-awareness and balanced lifestyle practices for personal well-being. | ||
| Community Engagement Project | 25ELC201 | Identify and analyze societal and community-based problems using systematic approaches. |
| Apply appropriate engineering or technological solutions to address community needs. | ||
| Demonstrate ethical behaviour, inclusiveness, and sustainability in community interventions. | ||
| Work effectively in multidisciplinary teams and communicate outcomes to stakeholders. | ||
| Reflect on learning experiences to develop self-learning and lifelong learning capabilities. | ||
| Sem II | ||
|---|---|---|
| Course | Course Code | Course Outcomes |
| Mathematical Foundation for Mechanical Engineering | 25MEPCC204 | SOLVE higher order linear differential equations and its applications to model and analyze mass spring systems. |
| APPLY Integral transform techniques such as Laplace transform and Fourier transform to solve differential equations involved in vibration theory, heat transfer and related mechanical engineering applications. | ||
| APPLY Statistical methods like correlation, regression in analyzing and interpreting experimental data applicable to reliability engineering. | ||
| APPLY Probability theory in testing and quality control. | ||
| PERFORM Vector differentiation & integration, ANALYZE the vector fields and APPLY to fluid flow problems. | ||
| IC Engines & Electric Vehicles | 25MEPCC205 | Explain the fundamentals of IC engines, engine components, valve timing, intake and exhaust systems, and analyze air-standard, fuel-air, and actual cycles. |
| Describe combustion in SI & CI engines, fuel injection systems, knocking, and alternative fuels | ||
| Analyze engine performance parameters, testing methods, emission formation, and control technologies | ||
| Explain engine subsystems and discuss recent trends such as EMS, HCCI, AI-based diagnostics | ||
| Explain EV architecture, motors, batteries, power electronics, charging systems, and safety | ||
| Engineering Materials and Metallurgy | 25MEPCC206 | Explain crystal structures, imperfections, and diffusion mechanisms in materials |
| Apply phase diagrams to analyze alloy behaviour and transformations | ||
| Evaluate mechanical properties using destructive and non-destructive testing methods | ||
| Understand heat treatment processes and their effects on microstructure and properties | ||
| Analyze and apply appropriate engineering materials for specific applications | ||
| Multidisciplinary Minor-II (Artificial Intellgence in Quality Control) | 25AIMDM202D | To understand the fundamentals of metrology and measurement system. |
| Apply statistical quality control tools such as control charts and process capability indices for process monitoring. | ||
| Analyze measurement and quality data using AI tools. | ||
| Apply machine learning models for error prediction and correction. | ||
| Implement AI-based solutions in smart manufacturing environments. | ||
|
Open Elective II (25OEC202A) Leadership and Team Dynamics |
(25OEC202A) | Explain leadership theories, organizational behaviour, and group dynamics concepts. |
| Apply communication and interpersonal skills in team environments. | ||
| Analyze leadership styles, group processes, and motivational approaches. | ||
| Evaluate team effectiveness, conflict management, ethics, and leadership challenges. | ||
| Develop leadership strategies for professional and global organizational environments. | ||
|
Open Elective II (25OEC202B) Green Practices & ESG Frameworks |
(25OEC202B) | Explain the concepts of sustainability, green practices, and ESG frameworks. |
| Analyse environmental impacts and adopt green technologies for sustainable development. | ||
| Evaluate social responsibility and stakeholder engagement practices in organizations. | ||
| Understand governance principles, ethical leadership, and regulatory frameworks. | ||
| Apply ESG reporting standards and sustainability assessment methods in industries. | ||
|
Open Elective II (25OEC202C) Innovation and Business Strategy |
(25OEC202C) | Explain concepts of innovation, creativity, and business strategy. |
|
Apply innovation management and strategic thinking tools for business problem-solving. Analyze business models, technology innovation, and entrepreneurial strategies. |
||
| Evaluate sustainability, intellectual property, and innovation management practices. | ||
| Develop innovative business solutions and strategic growth approaches. | ||
|
Open Elective II (25OEC202D) Stress Management and Mental Well Being |
(25OEC202D) | Explain the concepts of stress, mental health, and wellbeing |
| Identify sources of stress and analyse their impact | ||
| Apply stress management techniques | ||
| Demonstrate emotional intelligence and coping strategies | ||
| Design a personal wellbeing and stress management plan | ||
|
Open Elective II (25OEC202E) French Language Module-II |
(25OEC202E) | Use basic French expressions confidently. |
| Understand simple dialogues and instructions. | ||
| Read and write short paragraphs. | ||
| Participate in guided conversations. | ||
| Apply French in practical situations. | ||
|
Open Elective II (25OEC202F) French Language Module-II |
(25OEC202F) | Use beginner-level German expressions confidently. |
| Understand simple dialogues and instructions. | ||
| Read and write short passages. | ||
| Participate in practical conversations. | ||
| Apply German in everyday situations. | ||
|
Open Elective II (25OEC202G) Japanese Language Module-II |
(25OEC202G) | Communicate using beginner-level Japanese expressions. |
| Understand short dialogues and passages. | ||
| Read and write basic Japanese sentences | ||
| Participate in practical conversations. | ||
| Apply Japanese in everyday situations. | ||
| Metrology & Quality Control Laboratory | 25MEPCC204L | Identify various linear, angular, and surface measurement instruments and explain their working principles. |
| Demonstrate the use of precision instruments like micrometer, venire calipers, dial gauge, sine bar, slip gauges, and profile projector for dimensional inspection. | ||
| Perform calibration of instruments and machines to ensure accuracy and repeatability in measurements. | ||
| Apply statistical quality control tools (e.g., control charts, histograms, Cp/Cpk) for process evaluation. | ||
| Analyze measurement data, identify deviations, and suggest quality improvement strategies based on inspection outcomes. | ||
| IC Engines Laboratory | 25MEPCC205L | Conduct IC engine experiments to determine friction power, performance parameters, and thermal efficiencies using standard testing methods. |
| Prepare and analyze the heat balance sheet of an IC engine and evaluate various heat losses under different load conditions. | ||
| Identify and explain the construction and working of IC engine subsystems, including fuel injection, ignition, cooling, and lubrication systems. | ||
| Measure and interpret exhaust emissions (CO, HC, NOx, CO₂) and smoke density, and relate results to engine operating conditions and emission norms. | ||
| Explain the basic architecture and powertrain components of electric vehicles and relate laboratory knowledge to real-world automotive practices through industry exposure. | ||
| Material & Metallurgical Testing Laboratory | 25MEPCC206L | Apply appropriate destructive testing methods to evaluate hardness and impact strength of engineering materials. |
| Perform and interpret results of non-destructive testing techniques for defect detection in materials. | ||
| Prepare metallographic specimens and analyze microstructures of steels, cast irons, and non-ferrous metals | ||
| Correlate heat treatment processes with changes in microstructure and hardness of steels. | ||
| Demonstrate understanding of industrial material testing practices through industrial visits and technical reporting. | ||
| Solid Modeling & Drafting Laboratory | 25MEVSE202 | Demonstrate proficiency in Creo Parametric for sketching, part modeling, and assembly creation. |
| Create parametric and advanced machine components with accurate mass properties and material assignment. | ||
| Design sheet metal components and generate flat patterns for production. | ||
| Simulate mechanisms and motions, and perform basic structural, thermal, and modal analyses. | ||
| Prepare professional engineering drawings for parts and assemblies, including tolerances, GD&T, and BOMs. | ||
| Modern Indian Language | 25AEC201A | मराठी भाषेतील प्रगत भाषिक कौशल्यांचा प्रभावीपणे वापर करून संवाद साधू शकतील. |
| प्रसारमाध्यमांतील संज्ञापनाचे विविध प्रकार, स्वरूप व समाजातील त्यांचे स्थान स्पष्ट करू शकतील. | ||
| व्यक्तिमत्त्व विकासामध्ये भाषेचे महत्त्व ओळखून प्रभावी संवादकौशल्य विकसित करू शकतील. | ||
| लोकशाहीतील जीवनव्यवहार आणि प्रसारमाध्यमे यांतील परस्परसंबंधांचे विश्लेषण करू शकतील. | ||
| प्रसारमाध्यमांसाठी विविध प्रकारचे लेखन कौशल्य आत्मसात करून प्रभावी लेखन करू शकतील. | ||
| Modern Indian Language (Sanskrit) | 25AEC201B | Understand the basic structure, phonetics, and grammar of the sanskrit language. |
| Construct simple Sanskrit sentences using basic grammatical rules. | ||
| Interpret selected Sanskrit verses related to science, mathematics, and philosophy. | ||
| Recognize the contributions of ancient Indian scholars to science and engineering. | ||
| Appreciate the relevance of Sanskrit in modern fields such as computational linguistics, knowledge | ||
| Entrepreneurship/Economics/ Management Course-II | 25HSM202 | Explain the fundamental concepts of entrepreneurship, economics, and management, and their role in industrial and business development. |
| Apply principles of economics and management to analyse business environments, resource utilisation, and organisational decision-making. | ||
| Analyse entrepreneurial opportunities by conducting market surveys, feasibility studies, and SWOT analysis for new business ventures. | ||
| Prepare a basic business plan incorporating marketing, finance, production, human resources, and legal aspects for a startup or small enterprise. | ||
| Demonstrate entrepreneurial competencies, ethical business practices, leadership, innovation, and effective communication for sustainable enterprise development. | ||
|
Value Education Course (Indian Constitution and Governance) |
25VEC202 |
Explain the historical background, features, and structure of the Indian Constitution. |
| Describe Fundamental Rights, Directive Principles, and Fundamental Duties and their significance | ||
| Apply constitutional provisions to analyze the functioning of Union and State governments. | ||
| Analyze the role of constitutional and statutory bodies in Indian governance | ||
| Evaluate contemporary governance issues with reference to constitutional values and ethics. | ||
T.E Mechanical Sandwich (2024 pattern)
| Sem I | ||
|---|---|---|
| Course | Course Code | Course Outcomes |
| Heat & Mass Transfer | PCC301-MSW | Explain fundamental heat transfer mechanisms and analyze heat conduction in engineering systems. |
| Analyze fins, insulation systems, and transient heat conduction problems. | ||
| Apply convection heat transfer principles and empirical correlations to determine heat transfer rates. | ||
| Analyze radiation heat exchange between surfaces and thermal systems. | ||
| Evaluate the performance of heat exchangers using LMTD and NTU methods | ||
| Kinematics of Machinery | PCC302-MSW | APPLY kinematic concepts to analyze mechanisms used in engineering applications |
| ANALYZE displacement, velocity, and acceleration of mechanisms using analytical and graphical methods. | ||
| DESIGN and SYNTHESIZE mechanisms for specified motion and path generation problems | ||
| ANALYZE gear systems and APPLY kinematic principles in power transmission applications | ||
| DESIGN cam profiles for required follower motion considering practical constraints | ||
| Machine Design | PCC303-MSW | DESIGN levers and components subjected to eccentric loading by selecting appropriate material. |
| DESIGN shafts, keys and couplings under different loading conditions. | ||
| EVALUATE the stresses developed in the different type of welded and threaded joints. | ||
| APPLY the design procedure for different types of springs and EVALUATE dimensions of machine components under fluctuating loads. | ||
| ANALYZE different stresses developed in power screws and APPLY those in the procedure to design screw jack. | ||
| Manufacturing Engineering-II | PCC304-MSW | DEFINE metal cutting principles and mechanics of metal cutting and tool life. |
| DESCRIBE features of gear and thread manufacturing processes. | ||
| SELECT appropriate grinding wheel and demonstrate the various surface finishing processes. | ||
| GENERATE CNC program for Turning / Milling processes and generate tool path using CAM software. | ||
| SELECT appropriate jigs/fixtures and to draw the process plan for a given component. | ||
| Machine Design Lab | PCC305-MSW | ANALYZE mechanisms using graphical methods. |
| APPLY kinematic principles for motion analysis and synthesis. | ||
| DESIGN machine elements based on strength and functional requirements. | ||
| INTEGRATE analysis and design concepts for real-world applications. | ||
| DEMONSTRATE working models or simulations of mechanical systems. | ||
| Digital Manufacturing & MQC Lab | PCC306-MSW | DEMONSTRATE the use of conventional and digital measuring instruments for linear and angular measurements and evaluate component dimensions. |
| ANALYZE and DETERMINE the geometry and dimensions of components using advanced measurement systems such as optical projectors and Coordinate Measuring Machine | ||
| APPLY statistical process control techniques by constructing and interpreting control charts using suitable software tools | ||
| DEVELOP and VALIDATE CNC part programs using G and M codes and APPLY CNC simulation tools for machining operations. | ||
| IDENTIFY surface patterns/ flatness of given specimens by using optical flat. | ||
| COMPILE the information of opportunities of entrepreneurships/business in various sectors of metrology like calibrations, testing, coordinate and laser metrology etc in an industry visit report. | ||
| Smart Mechatronics Systems | MDM 331 -MSW | DEFINE key elements of mechatronics, principle of sensor and its characteristics. |
|
UTILIZE concept of signal processing and MAKE use of interfacing systems such as ADC, DAC, Digital I/O. |
||
| DETERMINE the transfer function by using block diagram reduction technique. | ||
| APPLY the concept of different controller modes to an industrial application. | ||
| DEVELOP the ladder programming for industrial application. | ||
| Engineering Simulation and Analysis | MDM 332-MSW | Analyze stress analysis problems of 1D bar and truss elements using FEA software. |
| Evaluate stress concentration factors, stresses, and deflections in machine components with geometric discontinuities and complex 3D geometries using FEA software. | ||
| Interpret results from modal analysis—understanding natural frequencies, mode shapes, and their physical significance—to make informed vibration-related design decisions. | ||
| Implement submodeling techniques to perform refined localized analysis of critical regions within a mechanical system and justify the choice of boundary conditions. | ||
| Analyze steady-state heat transfer analysis through composite structures and coupled thermal structural Analysis to assess thermomechanical behavior of engineering components. | ||
| Heat and Mass Transfer Lab | MDM 333-MSW | Explain fundamental heat transfer mechanisms and analyze heat conduction in engineering systems. |
| Analyze fins, insulation systems, and transient heat conduction problems. | ||
| Apply convection heat transfer principles and empirical correlations to determine heat transfer rates. | ||
| Analyze radiation heat exchange between surfaces and thermal systems. | ||
| Evaluate the performance of heat exchangers using LMTD and NTU methods | ||
| Product Costing for Mechanical Engineering | OLE341 | Understand product costing fundamentals,classify different cost elements and interpret engineering drawings and BOM for cost estimation |
| Estimate material and manufacturing process costs for various processes such as machining, Sheet Metal, Casting , welding and Plastics. | ||
| Apply Process planning, Labour costing, overhead allocation, and calculate machine hour rate for accurate cost evaluation. | ||
| Analyze and optimize product cost using advanced costing techniques, design to cost Principles and industrial practices including quotation and cost reduction. | ||
|
Materials and Logistics
|
OLE341 | Explain the functions and importance of materials management in manufacturing systems |
| Apply inventory control and purchasing techniques for efficient metal management. | ||
| Analyse logistics operations including warehousing, transportation and distribution. | ||
| Developed strategies for efficient material flow and integrated supply chain management. | ||
| Industrial In-plant Training-I | PCC307MSW | To UNDERSTAND industrial practices and technical details followed in industry. |
| To ANALYZE and SOLVE engineering problems by applying engineering knowledge with teamwork and multidisciplinary approach. | ||
| Industrial Mini-Project | PCC308MSW | To IDENTIFY specific areas for improvement in industry with better understanding |
| To DEVELOP and IMPLEMENT systematic approach to solve specific industrial problem. | ||
| To DEVELOP methodology for providing solution to industrial problems with teamwork and multidisciplinary approach | ||
| To UNDERSTAND and IMPLEMENT basic principles of project management. | ||
| To SOLVE and ANALYZE industrial problems. | ||
| To PRESENT outcome and details of project work with effective presentation skills. | ||
| Seminar | PCC309MSW | Read and UNDERSTAND recent trends and technologies in the area of mechanical engineering. |
| RECOGNIZE problems after doing research literature survey using various resources. | ||
| PREPARE concise, COMPREHEND and conclude selective topic in area of mechanical engineering | ||
| MAKE use of new and recent technology (e.g. Latex) for creating technical reports | ||
| Process Planning & Tool Selection | PCC310MSW | INTERPRET and ANALYSE Part print of an industrial component. |
| ILLUSTRATE the meaning of geometric dimensions and understand the tolerance chart. | ||
| UNDERSTAND Principles of location and clamping and ESTABLISH suitable manufacture sequence. | ||
| SELECT appropriate equipment and tooling requirements. | ||
| ESTIMATE the total unit time per piece for a component in mass production. | ||
| DESIGN of Process picture sheet and operation route sheet on GPM for batch production or a special purpose machine for mass production | ||
| Advanced Materials & Manufacturing | PCC311MSW | DEFINE & COMPARE composites with traditional materials. |
| IDENTIFY & ESTIMATE different parameters of the Polymer Matrix Composite | ||
| CATEGORISE and APPLY Metal Matrix Process from possessions landscape. | ||
| ASSESS the parameters for special forming operation and SELECT appropriate special forming operation for particular applications. | ||
| CLASSIFY various advanced welding processes and SELECT suitable welding processes for particular applications. | ||
| COMPREHEND various non-conventional machining processes and SELECT suitable processes for particular applications. | ||