Description
Hexagonal Nut M16 is a critical component of the V94.2 gas turbine used in various industrial applications. It is made of high-quality 1.7225 grade material with hard temper heat treatment, ensuring its durability and strength.
Material Standard and Grade The nut is made of 1.7225 material standard with GR 10 grade, making it suitable for use in high-temperature and high-pressure environments. The material’s high tensile strength and toughness make it ideal for use in gas turbines.
Heat Treatment and Hardness The hard temper heat treatment used in the manufacturing process provides the nut with excellent mechanical properties, including high hardness of 31 HRC. This enables the nut to withstand extreme conditions without losing its shape or breaking.
DIN Specification and Proofing Load The Hexagonal Nut M16 conforms to the DIN 934 specification, which ensures its compatibility with various mating bolts. It has a proofing load of 164900 N, making it capable of withstanding high loads and stresses.
Distribution of The Hexagonal Nut M16 is widely distributed in the industrial sector, specifically in the V94.2 gas turbine. It is used in various applications, including power generation, oil and gas, and manufacturing.
the Hexagonal Nut M16 is a vital component of the V94.2 gas turbine, known for its durability, strength, and high-quality material. Its ability to withstand high loads and stresses makes it ideal for use in various industrial applications, ensuring smooth and efficient operations.
Conclusion In summary, M16 is a vital component of the V94.2 gas turbine, made of high-quality material with hard temper heat treatment. Its high hardness, proofing load, and DIN specification ensure its durability, strength, and compatibility with various mating bolts. Using Hexagonal Nut M16 in the V94.2 gas turbine offers various benefits, such as increased reliability, efficiency, and reduced maintenance costs. Therefore, it is crucial to source the nut from reputable manufacturers and suppliers to ensure the quality of the nut is not compromised.