Skip to main content

MANUFACTURING PROCESS - METAL CASTING


METAL CASTING

INTRODUCTION
VIRTUALLY NOTHING MOVES, TURNS, ROLLS, OR FLIES WITHOUT THE BENEFIT OF CAST METAL PRODUCTS. THE METAL CASTING INDUSTRY PLAYS A KEY ROLE IN ALL THE MAJOR SECTORS OF OUR ECONOMY. THERE ARE CASTINGS IN LOCOMOTIVES, CARS TRUCKS, AIRCRAFT, OFFICE BUILDINGS, FACTORIES, SCHOOLS, AND HOMES. FIGURE SOME METAL CAST PARTS.

METAL CASTING IS ONE OF THE OLDEST MATERIALS SHAPING METHODS KNOWN. CASTING MEANS POURING MOLTEN METAL INTO A MOLD WITH A CAVITY OF THE SHAPE TO BE MADE, AND ALLOWING IT TO SOLIDIFY. WHEN SOLIDIFIED, THE DESIRED METAL OBJECT IS TAKEN OUT FROM THE MOLD EITHER BY BREAKING THE MOLD OR TAKING THE MOLD APART. THE SOLIDIFIED OBJECT IS CALLED THE CASTING. BY THIS PROCESS, INTRICATE PARTS CAN BE GIVEN STRENGTH AND RIGIDITY FREQUENTLY NOT OBTAINABLE BY ANY OTHER MANUFACTURING PROCESS.  THE MOLD, INTO WHICH THE METAL IS POURED, IS MADE OF SOME HEAT RESISTING MATERIAL. SAND IS MOST OFTEN USED AS IT RESISTS THE HIGH TEMPERATURE OF THE MOLTEN METAL. PERMANENT MOLDS OF METAL CAN ALSO BE USED TO CAST PRODUCTS. 

ADVANTAGES
THE METAL CASTING PROCESS IS EXTENSIVELY USED IN MANUFACTURING BECAUSE OF ITS MANY ADVANTAGES.
  1. MOLTEN MATERIAL CAN FLOW INTO VERY SMALL SECTIONS SO THAT INTRICATE SHAPES CAN BE MADE BY THIS PROCESS. AS A RESULT, MANY OTHER OPERATIONS, SUCH AS MACHINING, FORGING, AND WELDING, CAN BE MINIMIZED OR ELIMINATED.
  2. IT IS POSSIBLE TO CAST PRACTICALLY ANY MATERIAL THAT IS FERROUS OR NON-FERROUS.
  3. AS THE METAL CAN BE PLACED EXACTLY WHERE IT IS REQUIRED, LARGE SAVING IN WEIGHT CAN BE ACHIEVED.
  4. THE NECESSARY TOOLS REQUIRED FOR CASTING MOLDS ARE VERY SIMPLE AND INEXPENSIVE. AS A RESULT, FOR PRODUCTION OF A SMALL LOT, IT IS THE IDEAL PROCESS.
  5. THERE ARE CERTAIN PARTS MADE FROM METALS AND ALLOYS THAT CAN ONLY BE PROCESSED THIS WAY.
  6. SIZE AND WEIGHT OF THE PRODUCT IS NOT A LIMITATION FOR THE CASTING PROCESS.
LIMITATIONS
  1. DIMENSIONAL ACCURACY AND SURFACE FINISH OF THE CASTINGS MADE BY SAND CASTING PROCESSES ARE A LIMITATION TO THIS TECHNIQUE. MANY NEW CASTING PROCESSES HAVE BEEN DEVELOPED WHICH CAN TAKE INTO CONSIDERATION THE ASPECTS OF DIMENSIONAL ACCURACY AND SURFACE FINISH. SOME OF THESE PROCESSES ARE DIE CASTING PROCESS, INVESTMENT CASTING PROCESS, VACUUM-SEALED MOLDING PROCESS, AND SHELL MOLDING PROCESS.
  2. THE METAL CASTING PROCESS IS A LABOR INTENSIVE PROCESS
HISTORY
CASTING TECHNOLOGY, ACCORDING TO BIBLICAL RECORDS, REACHES BACK ALMOST 5,000 YEARS BC. GOLD, PURE IN NATURE, MOST LIKELY CAUGHT PREHISTORIC MAN'S FANCY…AS HE PROBABLY HAMMERED GOLD ORNAMENTS OUT OF THE GOLD NUGGETS HE FOUND. SILVER WOULD HAVE BEEN TREATED SIMILARLY. MANKIND NEXT FOUND COPPER, BECAUSE IT APPEARED IN THE ASH OF HIS CAMP FIRES FROM COPPER-BEARING ORE THAT HE LINED HIS FIRE PITS WITH. MAN SOON FOUND THAT COPPER WAS HARDER THAN GOLD OR SILVER. COPPER DID NOT BEND UP WHEN USED. SO COPPER, FOUND A ‘NITCH' IN MAN'S EARLY TOOLS, AND THEN MARCHED IT'S WAY INTO WEAPONRY. BUT, LONG BEFORE ALL THIS…MAN FOUND CLAY. SO HE MADE POTTERY – SOMETHING TO EAT FROM. THEN HE THOUGHT, "NOW…WHAT ELSE CAN I DO WITH THIS MUD…" . EARLY MAN THOUGHT ABOUT IT, "THEY USED THIS POTTERY STUFF, ( THE FIRST PATTERNS ), TO SHAPE METAL INTO BOWLS ".

3200 B.C. A COPPER FROG, THE OLDEST KNOWN CASTING IN EXISTENCE, IS CAST IN MESOPOTAMIA.

233 B.C. CAST IRON PLOWSHARES ARE POURED IN CHINA.

500 A.D. CAST CRUCIBLE STEEL IS FIRST PRODUCED IN INDIA, BUT THE PROCESS IS LOST UNTIL 1750, WHEN BENJAMIN HUNTSMAN REINVENTS IT IN ENGLAND.

1455 DILLENBURG CASTLE IN GERMANY IS THE FIRST TO USE CAST IRON PIPE TO TRANSPORT WATER.

1480 BIRTH OF VANNOCCIO BIRINGUCCIO (1480-1539), THE "FATHER OF THE FOUNDRY INDUSTRY," IN ITALY. HE IS THE FIRST MAN TO DOCUMENT THE FOUNDRY            PROCESS IN WRITING.

1709 ENGLISHMAN ABRAHAM DARBY CREATES THE FIRST TRUE FOUNDRY FLASK FOR SAND AND LOAM MOLDING.

1750 BENJAMIN HUNTSMAN REINVENTS THE PROCESS OF CAST CRUCIBLE STEEL IN ENGLAND. THIS PROCESS IS THE FIRST IN WHICH THE STEEL IS COMPLETELY           MELTED, PRODUCING A UNIFORM COMPOSITION WITHIN THE MELT. SINCE THE METAL IS COMPLETELY MOLTEN, IT ALSO ALLOWS FOR ALLOY STEEL PRODUCTION,           AS THE ADDITIONAL ELEMENTS IN THE ALLOY CAN BE ADDED TO THE CRUCIBLE DURING MELTING. PRIOR STEEL PRODUCTION WAS ACCOMPLISHED BY A COMBINATION OF FORGING AND TEMPERING, AND THE METAL NEVER REACHED A MOLTEN STATE.

1809 CENTRIFUGAL CASTING IS DEVELOPED BY A. G. ECKHARDT OF SOHO, ENGLAND.

1896 AMERICAN FOUNDRYMEN'S ASSOCIATION (RENAMED AMERICAN FOUNDRYMEN'S SOCIETY IN 1948 AND NOW CALLED THE AMERICAN FOUNDRY SOCIETY) IS FORMED.

1897 INVESTMENT CASTING IS REDISCOVERED BY B.F. PHILBROOK OF IOWA. HE USES IT TO CAST DENTAL INLAYS.

1947 THE SHELL PROCESS, INVENTED BY J. CRONING OF GERMANY DURING WWII, IS DISCOVERED BY U.S. OFFICIALS AND MADE PUBLIC.

1953 THE HOTBOX SYSTEM OF MAKING AND CURING CORES IN ONE OPERATION IS DEVELOPED, ELIMINATING THE NEED FOR DIELECTRIC DRYING OVENS.

1958 H.F. SHROYER IS GRANTED A PATENT FOR THE FULL MOLD PROCESS, THE FORERUNNER OF THE EXPENDABLE PATTERN (LOST FOAM) CASTING PROCESS.

1968 THE COLDBOX PROCESS IS INTRODUCED BY L. TORIELLO AND J. ROBINS FOR HIGH PRODUCTION CORE MAKING.

1971 THE JAPANESE DEVELOP V-PROCESS MOLDING. THIS METHOD USES UNBONDED SAND AND A VACUUM.

1971 RHEOCASTING IS DEVELOPED AT MASSACHUSETTS INSTITUTE OF TECHNOLOGY.

1996 CAST METAL MATRIX COMPOSITES ARE FIRST USED IN A PRODUCTION MODEL AUTOMOBILE IN THE BRAKE ROTORS FOR THE LOTUS ELISE.


METAL CASTING HISTORY (INDIA)

3000 BC EARLIEST CASTINGS INCLUDE THE 11 CM HIGH BRONZE DANCING GIRL FOUND AT MOHEN-JO-DARO.

2000 BC IRON PILLARS, ARROWS, HOOKS, NAILS, BOWLS AND DAGGERS OR EARLIER HAVE BEEN FOUND IN DELHI, ROOPAR, NASHIK AND OTHER PLACES.

500 BC LARGE SCALE STATE-OWNED MINTS AND JEWELRY UNITS, AND PROCESSES OF METAL EXTRACTION AND ALLOYING HAVE BEEN MENTIONED IN KAUTILYA'S “ ARTHASHASTRA”.

500 A.D. CAST CRUCIBLE STEEL IS FIRST PRODUCED IN INDIA, BUT THE PROCESS IS LOST UNTIL 1750, WHEN BENJAMIN HUNTSMAN REINVENTS IT IN ENGLAND.

Reference :- www.nptel.iitm.ac.in






Comments

  1. Knowing the present casting process and the technology improvement from older to present casting techniques
    regards,
    gray iron casting

    ReplyDelete
  2. You have shared really such a nice information in this blog which is helped me so much and I think it will help to many other people.

    Castings India

    ReplyDelete
  3. Small bits of content which are explained in details, helps me understand the topic, thank you!

    Metal castings

    ReplyDelete
  4. The benefits brought by the prosperous valve industry seem to be generally greater. Certainly, many trials have been done to improve the manufacturing process in order to make the valve serve the industrial process or daily life better. And the characteristics of the manufacturing process are different from those of other processes.Thanks for such an interesting article here. I was searching for something like that for quite a long time and at last I have found it here.

    ReplyDelete
  5. You have shared really such a nice information in this blog which is helped me so much and I think it will help to many other people.
    Bronze Castings Manufacturers India

    ReplyDelete
  6. Really,,i am very much happy after reading your post.Your post provide important information about Casted Metal Machining. Your all points are very true. Thank You

    ReplyDelete
  7. This comment has been removed by the author.

    ReplyDelete
  8. Thanks for sharing useful and creative information, we are Heat Treatment Furnace , Electric Furnaces, Industrial Ovens Manufacturer in India | AFECO Heating System

    ReplyDelete
  9. Arnold

    The article which you have posted is great. Thanks for sharing this information.

    ReplyDelete

Post a Comment

Popular posts from this blog

APRON MECHANISM IN LATHE

APRON MECHANISM IN LATHE Apron Mechanism: Apron is attached to the carriage and hangs over the front side of the lathe bed. It is useful in providing power and hand feed to both carriage and cross-slide. It is also used to provide power feed to the carriage during thread cutting through two half nuts. The construction of apron is shown in Fig. Fig - Apron Mechanism Construction Power is transmitted from the spindle to the lead screw and feed rod through the spindle gear and tumbler gear arrangement. A worm is mounted on the feed rod by a sliding key. The worm meshes with a worm gear on whose axis another gear G1 is attached. Gear G1 is attached to a small gear G2 by a bracket as shown in the diagram. Gear G4 is positioned to be in mesh with the rack gear always. Another gear G3 is mounted on the same axis of gear G4. The carriage hand wheel meant for longitudinal feed is attached to the gear G5 on the same axis. The gears G3 and G5 are always in mesh. The gear G...

DOM MANUAL / B-TECH / MECHANICAL / KUK - TO FIND THE SPEED AND TORQUE OF DIFFERENT GEARS IN AN EPICYCLIC GEAR TRAIN.

OBJECTIVE: TO FIND THE SPEED AND TORQUE OF DIFFERENT GEARS IN AN EPICYCLIC GEAR TRAIN. SPECIFICATIONS : 1.       GEAR TRAIN : SUN GEAR : 14 TEETH 2.       PLANT GEAR: 21 TEETH (2 NOS.) 3.       INTERNAL GEAR WITH : 56 TEETH TORQUE MEASUREMENT ·          INPUT TORQUE – MOTOR CURRENT CALIBRATED FOR MOTOR TORQUE. ·          PLANT CARRIER - PULLEY OF 50 MM DIA AND SPRING BALANCE. ·          INTERNAL GEAR - PULLEY, 120 MM DIA AND SPRING BALANCES. Ø   BOTH PULLEYS ARE PROVIDED WITH ROPE OF 12 Ø   MM DIA Ø   DRIVE MOTOR - 1HP DC MOTOR RPM MOTOR OPERATING ON 220 VOLTS Ø   50 HZ SUPLLY, DRIVING THE SUN GEAR. CURRENT(AMPS) TORQUE 1.00 0.5 1.20 1.5 1.40 2.5 ...

Boiler Mounting - Water Level Indicator

WATER LEVEL INDICATOR Function:   It is indicates the water level inside the boiler to an observer. Working:  The water of the boiler comes into the glass tube through the lower tube and the steam through the upper tube. The water then stands in the glass tube at the same level as in the boiler. Two cocks are used to control the passage of between the boiler and the glass tube while the third cock is in used to discharge some of the water from inside the boiler to see whether the gauge is in proper order or not. The glass tube is protected by means of a cover, made of specially toughened glass, which will prevent any accident that may happen due to breaking of glass tube. It is used for ordinary boilers. Image - Water Level Indicator Figure - Water Level Indicator