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INTEGRATED UNIT ON MS PIPE, ROD, SARIYA, PLATES, CHANNELS AND GIRDERS
[EIRI/EDPR/4465]
The pre-determined cooling of the bar periphery transforms the peripheral structure to martensite and then annealed through the heat available at the core. The peripheral and core temperature difference finally equalizes at around 600 degree C and the resultant bar structure is of tempered martensite at the periphery and of fine-grained ferritepearlite at the core. Generally speaking, the resultant soft core forms about 65-75 per cent of the area (depending upon the desired minimum yield strength) and the rest is the hardened periphery. The equalizing temperature together with the final rolling temperature is the most important parameter to achieve the required mechanical properties. Finally, when the bar is discharged on to the Cooling Beds, the remaining austenite transforms into a very fine-grained pearlite structure.
After this process of thermo mechanical treatment, a dark etched peripheral rim of tempered martensite and a grey core of ferrite pearlite get formed. The tempered martensite surface layer is very hard while the microstructure of the core is a very fine-grained ferrite and pearlite which is quite soft. The result is a structure withigh yield strength combined with high ductility.
Hence from the above data it is seen that the sudden quenching is the key role in hardening the steel bars. The pressure of the water jets on the hot molten bars determines the thickness of the martensite structure and is controlled for the required hardness.
COST ESTIMATION
Plant Capacity 200 MT/Day
Land & Building (20,000 sq.mt.) Rs. 17.52 Cr
Plant & Machinery Rs. 19.29 Cr
Working Capital for 2 Months Rs. 49.30 Cr
Total Capital Investment Rs. 88.36 Cr
Rate of Return 50%
Break Even Point 47%
CONTENTS
INTRODUCTION
(A) STEEL BARS
ROLLED STEEL BARS
TMT STEEL BARS
FEATURES OF TMT BARS
ADVANTAGES OF TMT BARS:
PROPERTIES OF TMT BARS
PHYSCIAL PROPERTY
CHEMICAL PROPERTY
SIZE OF TMT BAR
SPECIFICATION OF ROUND BAR
SPECIFICATION OF HEXAGONAL BAR
SPECIFICATION OF SQUIRE BAR
SPECIFICATION OF REACTANGULAR BAR
RECTANGULAR BAR SIZES
USES AND APPLICATIONS
(B) STEEL SECTIONS
TYPES OF ROLLED STRUCTURAL STEEL SECTIONS
1. ROLLED I-SECTION (BEAM)
HERE ARE SOME COMMON STEEL BEAM SHAPES LISTED BELOW:
I-BEAM:
W-BEAM:
H-BEAM:
2. ROLLED CHANNEL SECTIONS
3. ROLLED T- SECTIONS
4. ROLLED ANGLE SECTIONS
HOT ROLLING
HOT ROLLING
ADVANTAGES:
DISADVANTAGES:
PROPERTIES
USES AND APPLICATION
STRUCTURAL STEEL
ISMB (INDIAN STANDARD MEDIUM WEIGHT BEAMS):
ISMC (INDIAN STANDARD MEDIUM CHANNEL):
ISA (INDIAN STANDARD ANGLE):
B.I.S. SPECIFICATION
PROCESS FLOW CHART
(A) FOR BILLET
(B) FOR TMT BARS
FOR STEEL SECTIONS
MANUFACTURING PROCESS
PRODUCTION OF BILLET
(A) SCRAP MELTING PROCESS
1. PREPARATIOON OF SCRAP
PROCESSES FOR SORTING AND PREPARATION OF STEEL SCRAP
MECHANICAL PROCESSES
BALING:
BRIQUETTING:
SHEARING:
SHREDDING:
FIG 1 PROCESSES FOR PREPARATION OF STEEL SCRAP
MAGNETIC SEPARATION PROCESS
EDDY CURRENT SEPARATION PROCESS
HEAVY MEDIA SEPARATION PROCESS
SEPARATION BY PHYSICAL AND CHEMICAL CHARACTERISTICS
DECOATING PROCESSES
DEZINCING PROCESS FOR STEEL SCRAP
DETINNING PROCESS FOR STEEL SCRAP
DECOPPERIZATION PROCESS FOR STEEL SCRAP
INCINERATION
RECENT STEEL SCRAP SORTING TECHNOLOGIES
PORTABLE OPTICAL EMISSION SPECTROMETERS
COLOUR SORTING PROCESS
PROCESS UTILIZING LASER INDUCED BREAKDOWN SPECTROSCOPY
2. MELTING
OPERATION OF INDUCTION FURNACE
INDUCTION CHANNEL FURNACE:
INDUCTION CRUCIBLE FURNACE:
FIG 1: SCHEMATICS OF AN INDUCTION FURNACE
FIG 2: A CORELESS INDUCTION FURNACE
BATH AGITATION MECHANISM
FIG 3: POWER DISTRIBUTION (LEFT) AND FLOW PATTERN (RIGHT)
REFRACTORY LINING
PRODUCTION OF MILD STEEL BY INDUCTION FURNACE
COMPARISON WITH ELECTRIC ARC FURNACE STEEL MAKING PROCESS
THE DISADVANTAGES ARE
KEY ADVANTAGES OF INDUCTION HEATING
IMPORTANT ASPECTS OF OPERATION
OTHER ASPECTS OF INDUCTION FURNACE STEEL MAKING
FIG 1: TYPICAL HEAT BALANCE DIAGRAM OF CRUCIBLE
INDUCTION FURNACE
ENVIRONMENTAL EMISSIONS
SAFETY AND INDUCTION FURNACES
(B) CASTING PROCESS
CONTINUOUS CASTING OF STEEL BILLETS
FIG 1: SINGLE STRAND BILLET CASTER
FIG 2: EIGHT STRAND BILLET CASTING MACHINES
THE PROCESS OF THE CONTINUOUS CASTING OF STEEL BILLETS
IS DESCRIBED BELOW
STEEL LADLE
TUNDISH
MOULD
THE IMPORTANT ASPECTS WITH RESPECT TO THE MOULD OF A
BILLET CASTING MACHINE IS AS FOLLOWS.
SECONDARY COOLING
TUNDISH AND ITS ROLE IN CONTINUOUS CASTING
FIG 1: A TUNDISH IN A CONTINUOUS CASTING MACHINE
TUNDISH-A METALLURGICAL VESSEL
TUNDISH REFRACTORY LINING
BRICK LINING:
GUNNABLE LINING PRACTICE:
TUNDISH BOARD LINING:
SPRAYABLE LINING:
TUNDISH DRY LINING:
BILLET INSPECTION AND CONDITIONING FACILITIES
INSPECTION TECHNIQUES
FIG 1: BILLET INSPECTION TECHNIQUES
EDDY CURRENT TECHNIQUES
FLUX LEAKAGE TECHNIQUES
MICROWAVE TECHNIQUES
OPTICAL TECHNIQUES
THERMAL TECHNIQUES
ULTRASONIC TECHNIQUES
SELECTION OF INSPECTION TECHNIQUES
BILLET CONDITIONING FACILITIES
PRODUCTION OF STEEL BARS
INSPECTION OF RAW MATERIALS:-
REHEATING FURNACE
THE FURNACE HAS THREE PROCESSES:-
FEEDING:-
HEATING CHAMBER:-
FURNACE EXIT:-
ROUGHING MILL:
CUTTERS:
INTERMEDIATE MILL:
FINISHING MILL:
TMT QUENCHING BOX:
QUALITY CONTROL
CHEMICAL COMPOSITION AND MECHANICAL PROPERTIES OF STEEL (INDIAN STANDARD)
THINK!- MARYLAND METRICS - THE ONE-STOP SOURCE F
QUALITY CONTROL
CHEMICAL COMPOSITION
MECHANICAL PROPERTIES
BEND TEST
REBEND TEST
WEIGHT DETAILS
FIG-8: THE ROUGHING MILL
FIG-9: THE FINISH MILL
(5) COOLING PROCESS
AIR COOLING BED
(6) SHEARING PROCESS
END SHEARING:
FIG-10: AIR COOLED BED
FIG-11: THE SHEARING MACHINE
(7) STRAIGHTENING PROCESS
STRAIGHTENING:
(8) BUNDLING PROCESS
BUNDLING:
FIG-12: THE STRAIGHTNEER
FIG-13: THE BUNDLE OF STRUCTURE
(11) TESTING PROCESS
FINAL TESTING:
MECHANICAL TEST:
UNIVERSAL TESTING MACHINE:
SPECTROMETER ANALYSIS:
FIG-14: THE UNIVERSAL TESTING MACHINE
FIG-15: THE SPECTROMETER
DESCRIPTION OF HOT ROOLING MILL
UNIVERSAL BEAMS AND ITS ROLLING
FIG 1: COMPARISON OF THE CROSS SECTIONS OF DIFFERENT
TYPE OF BEAMS
ROLLING OF UNIVERSAL BEAMS
CONVENTIONAL UNIVERSAL BEAM MILL
FIG 2: ROLLING OF UNIVERSAL BEAM IN UNIVERSAL STANDAND TYPICAL MILL LAY OUT
MODERN UNIVERSAL BEAM MILL
MAJOR PARAMETERS IN THE THREE STAGES OF MILL PROCESSING
ARE AS FOLLOWS:
REHEATING:
ROLLING:
COOLING:
TAB 1: TYPICAL PARAMETERS AT ROLLING STAGES
FIG 1: MACROSCOPIC & MICROSCOPIC PHENOMENA DURING ROLLING
ROLLS AND ROLL PASS DESIGN
STAND AND ROLL GUIDE SET-UP
TENSION CONTROL
MILL UTILIZATION
YIELD
COBBLE RATE
TECHNOLOGICAL EQUIPMENTS FOR ROLLING MILLS
FIG 1: COMPONENTS OF A ROLL STAND
HOUSING:
ROLLS:
FIG 2: ROLLING MILL ROLLS
CHOCKS AND BEARINGS:
ADJUSTING AND BALANCING EQUIPMENT:
FIG 3: METHODS OF ADJUSTING AND BALANCING OF ROLLS
PINION STAND:
REDUCERS:
COUPLINGS:
MILL MOTORS AND AUXILIARY DRIVES:
SPINDLES AND WOBBLERS:
GUIDE EQUIPMENTS FOR ROLLING
GUIDES:
REPEATERS AND LOOPING CHANNELS:
AUXILIARY EQUIPMENT OF ROLLING MILLS
DESCALING EQUIPMENT:
DEVICES FOR LONGITUDINAL TRANSPORT/HANDLING:
TILTING OR LIFTING TABLES:
DEVICES FOR CROSS TRANSPORT:
MANIPULATORS:
PINCH ROLLS:
SHEARS:
COOLING BED:
STRAIGHTENERS:
COILING MACHINES:
STACKING AND BUNDLING MACHINES:
TYING AND STRAPPING MACHINES:
TRANSPORT OF BUNDLES/PACKS AND COILS:
MILL ELECTRIC SYSTEM:
SAFETY IN ROLLING MILLS
COMMON SAFETY RELATED DEFINITIONS
SAFETY DESIGN PROCEDURE
FIG 1: FUNDAMENTAL APPROACH TO CONTROL HAZARD
DETERMINATION OF THE LIMITS OF THE EQUIPMENT OR SYSTEM
IDENTIFICATION OF THE HAZARDS/RISK ESTIMATION
RISK ESTIMATION
RISK ANALYSIS METHODS
RISK EVALUATION
RISK REDUCTION BY DESIGN
TYPES OF PROTECTIVE DEVICES
SELECTION OF GUARDS AND PROTECTIVE DEVICES
REQUIRED CHARACTERISTICS OF GUARDS AND PROTECTION DEVICES
SIGNALS AND WARNING DEVICES
PERSONAL PROTECTIVE EQUIPMENT (PPE)
MARKET POSITION
KEY POINTS OF STEEL SECTOR
OPPORTUNITY:
STEEL BILLET INDUSTRY OVERVIEWS
INDUSTRY STUDY
SUPPLIERS OF TMT BAR
SUPPLIERS OF MILD STEEL ROUND, HEX AND SQUARE BAR
SUPPLIERS OF STEEL MS ANGLE AND CHANNEL
SUPPLIERS OF RAW MATERIALS
SUPPLIERS OF STEEL SCRAP
SUPPLIERS OF FERRO ALLOY
SUPPLIERS OF FLUX
SUPPLIERS OF CARBON ELECTRODE
SUPPLIERS OF GRAPHITE ELECTRODES
SUPPLIERS OF REFRACTORIES
SUPPLIERS OF DEGREASING CHEMICAL
SUPPLIERS OF PICKLING CHEMICALS
SUPPLIERS OF PLANT AND MACHINERY
SUPPLIERS OF SCRAP BAILING MACHINE
SUPPLIERS OF EAF
SUPPLIERS OF CONTINIOUS BILLET CASTING COMPELETE PLANT
SUPPLIERS OF ROD ROLLING COMPELETE PLANT
SUPPLIERS OF COOLING BED
SUPPLIERS OF DRILLING MACHINE
SUPPLIERS OF MILLING MACHINE
SUPPLIERS OF BOARING MACHINE
SUPPLIERS OF POWER HACKSAW
SUPPLIERS OF GRINDING MACHINE
SUPPLIERS OF POWER PRESS
SUPPLIERS OF WELDING MACHINE
SUPPLIERS OF EOT CRANES
SUPPLIERS OF POWER TRANSFORMERS
SUPPLIERS OF ELECTRICAL PANEL
SUPPLIERS OF COOLING TOWER
SUPPLIERS OF EFFLUENT TREATMENT PLANT (ETP PLANT)
SUPPLIERS OF AIR POLLUTION CONTROL EQUIPMENTS
SUPPLIERS OF AIR CONDITIONING EQUIPMENTS
SUPPLIERS OF AIR COMPRESSORS
SUPPLIERS OF PLATFORM WEIGHING MACHINE
SUPPLIERS OF MATERIAL HANDLING EQUIPMENTS
SUPPLIERS OF FIRE FIGHTING EQUIPMENTS
SUPPLIERS OF SHOT BLASTING MACHINE
SUPPLIERS OF JIGS AND FIXTURE
SUPPLIERS OF SUBMERSIBLE WATER PUMP
APPENDIX – A:
01. PLANT ECONOMICS
02. LAND & BUILDING
03. PLANT AND MACHINERY
04. OTHER FIXED ASSESTS
05. FIXED CAPITAL
06. RAW MATERIAL
07. SALARY AND WAGES
08. UTILITIES AND OVERHEADS
09. TOTAL WORKING CAPITAL
10. TOTAL CAPITAL INVESTMENT
11. COST OF PRODUCTION
12. TURN OVER/ANNUM
13. BREAK EVEN POINT
14. RESOURCES FOR FINANCE
15. INSTALMENT PAYABLE IN 5 YEARS
16. DEPRECIATION CHART FOR 5 YEARS
17. PROFIT ANALYSIS FOR 5 YEARS
18. PROJECTED BALANCE SHEET FOR (5 YEARS)
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