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Concrete Technology
Other university all, Civil Engineering , Concrete Technology Syllabus
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Unit - 1 Introduction to Concrete and Ingredients of Concrete
1.1 A CEMENTED AGGREGATE MANUFACTURING
1.2 CHEMICAL COMPOSITION
1.3 HYDRATION
1.4 PHYSICAL AND MECHANICAL PROPERTIES
1.5 CLASSIFICATION TYPE AND APPLICATION OF CEMENT
1.6 TESTS ON CEMENT
1.7 CLASSIFICATION OF AGGREGATE PHYSICAL AND MECHANICAL PROPERTIES OF AGGREGATE
1.8 DELETERIOUS MATERIAL IN AGGREGATE
1.9 ALKALI AGGREGATE REACTION
1.10 FINENESS AND GRADATION OF AGGREGATE USING SEIVE ANALYSIS
1.11 TESTS ON AGGREGATE
1.12 B WATER AND ADMIXTURE QUALITY OF WATER USE IN CONCRETE
1.13 ROLE OF ADMIXTURE
1.14 CLASSIFICATION AND TYPE OF ADMIXTURE LIKE ACCELERATORS RETARDERS PLASTICIZERS SUPER PLASTICISER
1.15 MINERAL ADMIXTURE FLY ASH SILICA FUME GROUND GRANULATED BLAST BLAST FURNACE SLAG
Unit - 2 Production Properties and Testing of Fresh Concrete
2.1 A PRODUCTION AND PROPERTIES OF FRESH CONCRETE
2.2 WATER CEMENT RATIO
2.3 PROCESS OF MANUFACTURING FRESH CONCRETE BATCHING MIXING TRANSPORTATION COMPACTION CURING OF CONCRETE CURING METHOD
2.4 INFLUENCE OF TEMPERATURE
2.5 MATURITY RULE
2.6 WORKABILITY AND FACTOR AFFECTING WORKABILITY
2.7 COHESION AND SEGREGATION
2.8 B TEST ON FRESH CONCRETE WORKABILITY BY SLUME CONE
2.9 COMPACTION FACTOR
2.10 VEE BEE CONSISTOMETER AND FLOW TABLE APPARATUS
2.11 EFFECT OF ADMIXTURE ON WORKABILITY OF CONCRETE AND OPTIMUM DOSAGE OF ADMIXTURE BY MARSH CONE TEST
Unit - 3 Properties and Testing of Hardened Concrete
3.1 A HARDENED CONCRETE STRENGTH OF CONCRETE
3.2 FACTOR AFFECTING STRENGTH
3.3 MICRO CRACKING
3.4 STRESS STRAIN RELATIONSHIP RELATION BETWEEN TENSILE AND COMPRESSIVE STRENGTH
3.5 ABRASION RESISTANCE
3.6 CREEP AND SHRINKAGE
3.7 B TESTING OF HARDENED CONCRETE DESTRUCTIVE TESTS COMPRESSION STRENGTH
3.8 FLEXURAL STRENGTH
3.9 INDIRECT TENSILE STRENGTH
3.10 CORE TEST
3.11 NONDESTRUCTIVE TEST REBOUND HAMMER
3.12 ULTRASONIC PULSE VELOCITY
3.13 PULLOUT TEST AND IMPACT ECHO TEST
Unit - 4 Concrete Mix Design and Methods of Mix Design
4.1 A CONCRETE MIX DESIGN CONCEPT AND OBJECTIVE OF CONCRETE MIX DESIGN
4.2 FACTORS AFFECTING THE MIX DESIGN
4.3 QUALITY CONTROL
4.4 VARIABILITY OF LABORATORY TESTS RESULTS
4.5 ACCEPTANCE CRITERIA
4.6 GRADE DESIGNATION AND IS REQUIREMENT AS PER IS 456 EXPOSURE CONDITIONS MINIMUM AND MAXIMUM CEMENT CONTENT AND MAXIMUM WC RATIO
4.7 B METHODS OF MIX DESIGN IS CODE METHOD AND DOE METHODS WITH AND WITHOUT MINERAL ADMIXTURE
4.8 USE OF SPREAD SHEET PROGRAMMING SOFTWARE FOR CONCRETE MIX DESIGN.
Unit - 5 Concreting Equipment Techniques
5.1 A CONCRETING EQUIPMENT AND TECHNIQUES BATCHING PLANT CONCRETE MIXER HAULING PUMP CONCRETE VIBRATORS AND COMPACTION EQUIPMENT
5.2 SPECIAL CONCRETING TECHNIQUES READY MIX CONCRETE
5.3 UNDER WATER CONCRETING
5.4 ROLLER COMPACTED CONCRETE
5.5 COLD AND HOT WEATHER CONCRETING
5.6 B SPECIAL CONCRETE LIGHT WEIGHT CONCRETE AND ITS TYPE
5.7 FOAM CONCRETE
5.8 NO FINES CONCRETE
5.9 SELF COMPACTING CONCRETE
5.10 HIGH DENSITY CONCRETE
5.11 FIBRE REINFORCED CONCRETE GEO POLYMER CONCRETE AND FERROCEMENT TECHNIQUE
Unit - 6 Deterioration
6.1 DETERIORATION DURABILITY
6.2 FACTOR AFFECTING THE DURABILITY OF CONCRETE
6.3 PERMEABILITY
6.4 SULPHATE ATTACK
6.5 ACID ATTACK
6.6 CHLORIDE ATTACK
6.7 CORROSION OF REINFORCEMENT CARBONATION OF CONCRETE
6.8 B REPAIR SYMPTOMS AND DIAGNOSIS OF DISTRESS
6.9 EVALUATION OF CRACK
6.10 SELECTION OF REPAIR PROCEDURE
6.11 REPAIR OF DEFECTS USING VARIOUS TYPE AND TECHNIQUES SHORTCRETE AND GROUTING
6.12 INTRODUCTION OF RETROFITTING OF CONCRETE STRUCTURE BY FIBER REINFORCED POLYMER FPP POLYMER IMPREGNATED CONCRETE
6.13 CORROSION MONITORING AND PREVENTIVE MEASURES
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Other Subjects of level-2
Mathematics-3
Fluid mechanics
Basic electronics
Engineering geology
Surveying and geomatics
Building design and drawing
Introduction to solid mechanics
Materials, testing & evaluation
Introduction to civil engineering
Hydraulic engineering and machines
Computer-aided civil engineering drawing
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