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AMIE Syllabus 2018 pdf Download Section A & B, Diploma Stream Syllabus

AMIE Syllabus

Students who are going to appear in Associate Member of Institution of Engineers Exam should take help from AMIE Syllabus. On this web page, you will get AMIE Section A & B, Diploma Stream syllabus and you can download the AMIE Syllabus PDF by hitting the link.

Central Government conducts this exam for admission in B.E and B.Tech courses. AMIE Section A exam is conducted for Non-Diploma Stream of students. AMIE Section B exam is conducted for Diploma Stream of students.

AMIE Exam:

Only those students who qualified the polytechnic diploma are eligible to apply for this exam. Individuals who will able to crack this AMIE Entrance exam will get admission in best engineering college of India.

The complete AMIE Syllabus 2018 and other essential details about topics/ subjects are mentioned below by the team of www.recruitmentinboxx.com, take a look:

AMIE Syllabus

AMIE Section A and B, Diploma and Non-Diploma Stream

Section A Examination (Non- Diploma) –Code-2

  • Fundamentals of Design and Manufacturing
  • Computing and Informatics
  • Material Science and Engineering
  • Society and Environment
  • Mechanical Science
  • Engineering Physics and Chemistry
  • Engineering Drawing and Physics
  • Engineering Mathematics
  • Electronics and Instrumentation and
  • Electrical Science

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Section A Examination (Diploma) –Code-3

  • Fundamentals of Design and Manufacturing
  • Material Science and Engineering
  • Computing and Informatics and
  • Society and Environment

Section B Examination –Code-4

  • Computer Science And Engineering
  • Electronics And Communication Engineering
  • Mechanical Engineering
  • Chemical Engineering
  • Electrical Engineering
  • Civil Engineering
  • Materials And Metallurgical Engineering
  • Mining Engineering
  • Production Engineering
  • Textile Engineering

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AMIE Section A Syllabus

Fundamentals of Design and Manufacturing

Group A

  • Engineering design process and its structure, Identification and analysis of need, product design specifications, standards of performance and constraints,
  • Searching for design concepts; morphological analysis, brainstorming. Evaluation of design concepts for physical reliability, economic feasibility and utility
  • Detailed design; design for manufacture, assembly, shipping, maintenance, use, and recyclability. Design checks for clarity, simplicity, modularity and safety.
  • Standardization and size ranges. Reliability and robust design, Design organisation and communication, technical reports, drawings, presentations and models
  • Concept of manufacturing; classification of manufacturing processes, Fundamentals of casting, Basic understanding of commonly used casting processes (sand casting, investment casting and permanent mould casting processes),
  • Fundamentals of metal forming; hot and cold working; basic understanding of primary metal forming processes (rolling, forging, extrusion and drawing processes, punching and blanking)

Group B

  • Fundamentals of metal cutting; tool-work interaction for production of machined surfaces, Classification of machining processes, Basic machining operations (turning, shaping, planning, drilling and milling processes)
  • Fundamentals of grinding and finishing; overview of unconventional machining processes; fundamentals of welding processes; introduction to primary welding and allied processes; selection of manufacturing processes.
  • Design for manufacturability. Need for integration-commercial, economic and technological perspective; basic tools of integration; concept of a system.
  • Introduction to information technology and its elements, Introduction to group technology; introduction to simulation and database management systems, Elements of integration:-controllers, sensors, robots, automated machines; AGVs, AS, RS, etc.
  • Product and process design- for integration; design for economic manufacturing; design for manufacturing integration. Introduction to computer aided process planning; selection of machine tools

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Material Science and Engineering

Group A

  • Introduction to materials, Metal and alloys, ceramics, polymers and semi conducting materials-introduction and application as engineering material, Defects in solids.
  • Point, line and surface defects, Diffusion in solids, Phase diagrams. Mono-component and binary systems, non-equilibrium system, phase diagram and. application in crystalline and non-crystalline solids.
  • Mechanical properties, Tensile strength, yield strength, elastic and viscoelastic properties, creep, stress relaxation and impact. Fracture behaviour. Ductile fracture, Griffith theory, effect of heat treatment and temperature on properties of metals
  • Deformation of metals, Elastic and plastic deformation, slip, twin, dislocation theory, critical resolved shear stress, deformation in polycrystalline materials
  • Season cracking, Baschinger’s effect, strengthening mechanics; work hardening recovery, crystallization and grain growth, cold and hot working

Group B

  • Heat treatment, Iron-carbon system, Annealing, normalising, hardening, critical cooling rate, hardenability, age hardening, surface hardening, tempering. Thermal properties, High temperature materials; materials for cryogenic application, thermally insulating materials
  • (Specific heat, thermal conductivity, thermal expansion) Ceramic materials and polymers, Silicon structures, polymerism in glass, electrical properties of ceramic phases, rocks, building stones, refractories
  • Polymerisation mechanism, structural properties of polymer, thermoplastics, thermosets, elastomer, resins, composites, particles and fibre reinforced composite. Composite material, including nano material
  • Electronic properties, Magnetism, diamagnetism, paramagnetism, ferromagnetism, magnetic energy, zone theory of solids, zones in conductors and insulators

Press Here To Download AMIE Section A Syllabus PDF

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AMIE Section B Syllabus

Mechanical Engineering

Mechanics of Solids

Group A

  • Review of free body diagrams; Analysis of deformation unde-!” axial loading, Simple shear and pressure
  • Statically determinate and indeterminate cases, Forces and moments transmitted by simple beams.
  • Mechanics of deformable solids, stress and strain, transformation of stress and, strain, Mohr circle diagram, equilibrium equations and compatibility conditions
  • Material properties and their testing: Elastic, inelastic, plastic and viscoelastic material behaviour. Fatigue and creep. Concepts of ductility, hardness, toughness and their quantification, Tensile and impact tests

Group B

  • Stress-strain-temperature relations, Generalized Hooke’s law and thermal strains
  • Equations of elasticity, Solutions of thin and thick cylinders and rotating disks
  • Stresses in beams, Torsion of circular shafts and thin walled sections, Deflection of helical springs
  • Yield criteria, energy methods, basic elasticity equations.

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Mechanics of Fluids

Group A

  • Properties and classifications of fluids, Fluids statics, buoyancy
  • Scalar and vector fields, Reynolds transport theorem.
  • Continuity and momentum equations, momentum theorem, Bernoulli’s equation and their applications
  • Constitutive relation for a Newtonian fluid, Navier Stokes equations, exact solutions for flow between parallel plates, rotating cylinders, Couette flow and Poiseuille flow
  • Application of viscous flows through pipes, Correlation of friction factor
  • Laminar boundary layer, boundary layer equations Blasius solution over a flat plate, wall shear stress, boundary layer thickness, boundary layer control

Group B

  • Separation; momentum integral method
  • Turbulent flow; mixing length models; Skin friction coefficient in a turbulent boundary layer
  • Compressibility flow; Nozzles and diffusers; Shocks; Effect of friction and heat transfer
  • Potential flows
  • Experimental methods for flow and velocity measurements

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Thermal Science & Engineering

Group A

  • System, property, work and heat interactions, zeroth law, first law of thermodynamics, application of first law to closed systems and flow processes
  • Thermodynamic properties of fluids
  • Second law of thermodynamics, Carnot cycle, temperature scale, Clausius inequality, entropy increase, availability
  • Thermodynamic property relations. Clapeyron’s equation
  • Power and refrigeration cycles, Operating principles and essential components of vapour power cycles, IC engines and gas turbines
  • Thermodynamics of mixtures, psychrometry

Group B

  • System, property, work and heat interactions, zeroth law, first law of thermodynamics, application of first law to closed systems and flow processes
  • Thermodynamic properties of fluids
  • Second law of thermodynamics, Carnot cycle, temperature scale, Clausius inequality, entropy increase, availability.
  • Thermodynamic property relations, Clapeyron’s equation
  • Power and refrigeration cycles, Operating principles and essential components of vapour power cycles, IC engines and gas turbines
  • Thermodynamics of mixtures, psychrometry

Press Here to Download AMIE Section B Mechanical Engineering Syllabus PDF

Press Here for AMIE Section B Elec. and Comm. Engg. Syllabus PDF

Press Here for AMIE Section B Civil Engineering Syllabus PDF

Press Here to Download AMIE Electrical Engineering Syllabus PDF

AMIE syllabus for mechanical engineering and the PDF of AMIE Complete syllabus is available at above section. Willing individuals can easily download the AMIE Syllabus in PDF form by pressing the links.

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