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Hastelloy B2 plates are made of nickel-molybdenum alloy that is extremely resistant to hydrochloric acid in various concentrations and at various temperatures. The Hastelloy B2 plates provide viability where excellence in corrosion resistance is mandatory for long-term duration and reliable functioning.
The composition of Hastelloy X plates is crucial for understanding its properties and performance in various industrial applications.
Hastelloy B2 | C | Ni | Mn | Mo | Fe | Si | S | Cr | P | Co |
0.02 maximum | Balance | 1.0 maximum | 26.0-30.0 | 2.0 maximum | 0.10 maximum | 0.030 maximum | 1.0 maximum | 0.040 maximum | 1.0 maximum |
Thus, this table provides valuable insights into the chemical composition of these platess, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of Hastelloy B2 plates in demanding environments.
Density | Elongation | Yield Strength (0.2%Offset) | Melting Point | Tensile Strength |
9.2 g/cm3 | 40 % | Psi – 51,000, MPa – 350 | 1370 °C (2500 °F) | Psi -1,10,000, MPa -760 |
Thus, this valuable data on the strength, flexibility, and resilience of Hastelloy X plates is crucial for ensuring reliability and longevity.
Hastelloy B2 plates are widely used in industries as they are resistant to corrosion and have good mechanical properties.
Thus, Hastelloy B2 plates are highly versatile with a multitude of advantages that make them essential to fields and operations that involve critical corrosive environments.
Hastelloy B2 plates are valued for their characteristics that make them very useful in different industries.
Therefore, Hastelloy B2 plates are used in various industries where there is a need to overcome the problems associated with corrosion resistance in addition to mechanical strength and reliability.
Hastelloy B2 plates are made of nickel-molybdenum alloy that is extremely resistant to hydrochloric acid in various concentrations and at various temperatures. The Hastelloy B2 plates provide viability where excellence in corrosion resistance is mandatory for long-term duration and reliable functioning.
The composition of Hastelloy X plates is crucial for understanding its properties and performance in various industrial applications.
Hastelloy B2 | C | Ni | Mn | Mo | Fe | Si | S | Cr | P | Co |
0.02 maximum | Balance | 1.0 maximum | 26.0-30.0 | 2.0 maximum | 0.10 maximum | 0.030 maximum | 1.0 maximum | 0.040 maximum | 1.0 maximum |
Thus, this table provides valuable insights into the chemical composition of these platess, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of Hastelloy B2 plates in demanding environments.
Density | Elongation | Yield Strength (0.2%Offset) | Melting Point | Tensile Strength |
9.2 g/cm3 | 40 % | Psi – 51,000, MPa – 350 | 1370 °C (2500 °F) | Psi -1,10,000, MPa -760 |
Thus, this valuable data on the strength, flexibility, and resilience of Hastelloy X plates is crucial for ensuring reliability and longevity.
Hastelloy B2 plates are widely used in industries as they are resistant to corrosion and have good mechanical properties.
Thus, Hastelloy B2 plates are highly versatile with a multitude of advantages that make them essential to fields and operations that involve critical corrosive environments.
Hastelloy B2 plates are valued for their characteristics that make them very useful in different industries.
Therefore, Hastelloy B2 plates are used in various industries where there is a need to overcome the problems associated with corrosion resistance in addition to mechanical strength and reliability.
jai hind metal
mumbai - maharashtra - india
2 Year
nirvaan overseas
mumbai - maharashtra - india
1 Year
manifest alloys
mumbai - maharashtra - india
0 Year
Price of Hastelloy B2 Plates start from Rs. 250/Kilogram To Rs. 300/Kilogram
No, Hastelloy B2 is not magnetic. It is a nickel-molybdenum alloy with excellent corrosion resistance and high-temperature strength.
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