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Mech Zone Casting Process Part 2 (SSC JE Mechanical/ GATE/ONGC/SAIL BHEL/HPCL/IOCL)

Sand Casting cope: top half drag: bottom half core: for internal cavities funnel sprue runners gate cavity {risers, vents}

Shell Mould Casting - metal, 2-piece pattern, 175 C-370 C - coated with a lubricant (silicone) - mixture of sand, thermoset resin/epoxy - cure (baking) - remove patterns, join half-shells mold - pour metal - solidify (cooling) - break shell part

Investment casting (lost wax casting) (a) Wax pattern (injection molding) (b) Multiple patterns assembled to wax sprue (d) dry ceramic melt out the wax fire ceramic (burn wax) (c) Shell built immerse into ceramic slurry immerse into fine sand (few layers) (e) Pour molten metal (gravity) cool, solidify [Hollow casting: pouring excess metal before solidification (f) Break ceramic shell (vibration or water blasting) (g) Cut off parts (high-speed friction saw) finishing (polish)

Plaster-Mould, Ceramic-mould Casting Plaster-mold slurry: plaster of paris (CaSO 4 ), talc, silica flour Ceramic-mold slurry: silica, powdered Zircon (ZrSiO 4) - The slurry forms a shell over the pattern - Dried in a low temperature oven - Remove pattern - Backed by clay (strength), baked (burn-off volatiles) - cast the metal - break mold part Plaster-mold: good finish (Why?) plaster: low conductivity => low warpage, residual stress low mp metal (Zn, Al, Cu, Mg) Ceramic-mold: good finish high mp metals (steel, ) => impeller blades, turbines,

Vacuum Casting Similar to investment casting, except: fill mold by reverse gravity Easier to make hollow casting: early pour out

Permanent Mould Casting MOLD: made of metal (cast iron, steel, refractory alloys) CORE: (hollow parts) - metal: core can be extracted from the part - sand-bonded: core must be destroyed to remove Mold-surface: coated with refractory material - Spray with lubricant (graphite, silica) - improve flow, increase life - good tolerance, good surface finish - low mp metals (Cu, Bronze, Al, Mg)

Centrifugal Casting - permanent mold - rotated about its axis at 300 ~ 3000 rpm - molten metal is poured - Surface finish: better along outer diameter than inner, - Impurities, inclusions, closer to the inner diameter

Die Casting - a type of permanent mold casting - common uses: components for rice cookers, stoves, fans, washing-, drying machines, fridges, motors, toys, hand-tools, car wheels, HOT CHAMBER: (low mp e.g. Zn, Pb; non-alloying) (i) die is closed, gooseneck cylinder is filled with molten metal (ii) plunger pushes molten metal through gooseneck into cavity (iii) metal is held under pressure until it solidifies (iv) die opens, cores retracted; plunger returns (v) ejector pins push casting out of ejector die COLD CHAMBER: (high mp e.g. Cu, Al) (i) die closed, molten metal is ladled into cylinder (ii) plunger pushes molten metal into die cavity (iii) metal is held under high pressure until it solidifies (iv) die opens, plunger pushes solidified slug from the cylinder (v) cores retracted (iv) ejector pins push casting off ejector die

Casting Defects A. Metallic Projections B. Cavities C. Discontinuities D. Defective surface E. Incomplete Casting F. Incorrect dimensions or shape G. Inclusions

Casting Defects Porosity : May be caused by shrinkage and/or gases. Thin sections solidify faster than thick sections; therefore the molten metal cannot be supplied to thick regions that are solidifying. Gases become less soluble in a metal as it cools and solidifies, causing it to be expelled and sometimes form or expand porosity. Chills: Pieces of material placed in the mold to speed up heat transfer in thicker areas of the part to prevent shrinkage porosity. Internal chills are left within the cast part; external chills are removed. Chills: Pieces of material placed in the mold to speed up heat transfer in thicker areas of the part to prevent shrinkage porosity

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