For the Casting of a Bright Future

The Present Needs To Be Prepared

Piping Materials

Low Carbon Steel :- Steel with carbon content between 0.05 - 0.25%, easy to shape and suitable for low strength fasteners

Medium Carbon Steel :-Steel with carbon content between 0.29 - 0.54%, ductile and strong with low wearing properties.

High Carbon Steel :- Steel with carbon content between 0.55 - 0.95%, strong and ideal for high strength fasteners.

Very High Carbon Steel :- Steel with carbon content between 0.96 - 2.10%, extremely strong and brittle.

Chromium :- Chromium alloyed steel with increased corrosion resistance among other alloy steel material.

Chrome Vanadium:-Hardenable alloy steel with resistance to abrasion, oxidation and corrosion.

Molybdenum:-Molybdenum bearing steels are generally employed for heat resistance application.

Cr-Mo :- Low alloy steel with high tensile strength and corrosion resistance, suitable for high-temperature / pressure applications.

Ni-Cr-Mo :- Low alloy steel with addition of nickel, chromium and molybdenum with high strength and impact properties.

 

Ni-Mo :-Steel containing 0.2-0.3% molybdenum and 1.65-3.75% nickel as alloying elements with case hardening properties.

 

Ni-Mo :-Steel containing 0.2-0.3% molybdenum and 1.65-3.75% nickel as alloying elements with case hardening properties.

 

Nickel Chromium  :- Nickel and chromium added alloy steel with toughness, resistance to oxidation and corrosion.

Austenic Stainless Steel :- Range of low cost corrosion resistant nickel chromium alloys with low carbon content.

Ferritic Steel :- High chromium magnetic stainless steel with good ductility, resistance to corrosion and stress corrosion cracking.

Martensitic Stainless Steel :- Heat-treatable magnetic stainless steel with resistance to erosion and wearing due to high core hardness.

Precipitation Hardening :- Group of age-hardened stainless steel alloys, capable of achieving high tensile strength through heat-treatment.

Titanium :- Metal with low density and high strength offering high strength to weight ratio with wide range of applications.

Titanium Alloy :- Family of alloys with titanium and other elements providing range of strength and toughness.

Copper :- Non ferrous ductile metal with high thermal and electrical conductivity.

Copper Alloys :- Family of copper alloys with addition of various alloying elements like tin, zinc, manganese, silicon and aluminium.

Inconel :- A high nickel based super alloy with addition of chromoum and iron, resistant to corrosion at high temperatures.

Monel :- Nickel copper alloy with high tensile strength and resistance to sea water corrosion.

Hastelloy :- Nickel chromium molybdenum superalloy with primary resistance to chemical attacks, crevice and pitting.

Incoloy :- Nickel based high performance alloy with exceptional resistance to many aggressive corrosion environments.

Chromium Copper :- Heat treatable, corrosion resistant copper alloy which combines high electrical conductivity with high strength.

Copper Nickel :- Alloy of copper and nickel exhibiting high resistance to sea-water and marine biofouling.

Beryllium Copper :- Also known as copper beryllium having highest strength among any copper alloy.

Brass :- Widely used alloy of copper and zinc that can be varied to achieve varying mechanical and electrical properties.

Stellite :-  Non magnetic Cobalt Chromium alloys, designed for wear resistance and high corrosion resistance.

Waspalloy :- Age hardening high nickel based alloy, designed for use in high temperature applications like gas turbines.

Maraging :- Carbon free iron alloys and upto 25% nickel, known for superior strength gained by slow cooling and age hardening.

Invar Alloys :- Nickel iron alloy with uniquely low coefficient of thermal expansion, also known by generic name FeNi36.

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