What is GH3536 Superalloy (Hastelloy X alloy)

The U.S. and its allies plan to impose sanctions on more Russian industries and supply chains.

The US government representatives recently visited Europe to consult with allies on strengthening and enforcing sanctions to punish Russia. They also plan to take action to disrupt their critical supply chains.

The US government claims that the sanctions imposed on Russia since the invasion began on February 24 have proved extremely effective, plunging Russia into a financial crisis. The sanctions include a freeze on the Russian central bank's foreign exchange assets, a ban on hard currency transactions by major Russian banks and wealthy individuals, and export restrictions on advanced semiconductors and other technologies. The sanctions have weakened the Russian economy and left the Kremlin with fewer resources.

The volatile international political situations will continue to affect the markets and prices of many commodities like the Hastelloy X alloy.


What is GH3536 superalloy (Hastelloy X alloy)

GH3536 (Hastelloy X alloy) is a nickel-based superalloy with high iron content mainly solid solution strengthened by chromium and molybdenum. It has good oxidation resistance and corrosion resistance, and has moderate durability and creep below 900 ℃. Strength, cold and hot workability and good weldability. Used in the manufacture of combustion chamber parts and other high-temperature parts of aero-engines, long-term use below 900 °C, and short-term operating temperature can reach 1080 °C. The main varieties supplied are plates, strips, pipes, bars, forgings, rings and precision castings.


GH3536 (Hastelloy X alloy) process performance and requirements

GH3536 (Hastelloy X alloy) formability alloy has good cold and hot forming properties. Forging heating temperature 1170℃±10℃, final forging temperature not lower than 950℃; slab hot rolling heating temperature 1150℃±10℃, final rolling temperature not lower than 850℃; ring hot rolling heating temperature 1170℃±10℃ .


GH3536 (Hastelloy X alloy) welding performance This alloy has good welding process performance, and can be welded by argon arc welding, seam welding and spot welding. HGH3536 or HGH3113 wire is recommended for argon arc welding.


The microstructure of the alloy in the solid solution state is an austenite matrix with a small amount of TiN and M6C carbides. After long-term aging at 700~900℃, the main precipitation phases are M12C and M3B2, accompanied by trace μ phase and L phase. After aging at 700℃ for 200h, a small amount of σ phase appeared, but after aging at 800℃, the σ phase did not exist, and a small amount of M23C6 was precipitated, and sometimes a small amount of L phase appeared. Therefore, the alloy exhibits a certain degree of age hardening after long-term aging, which reduces the plasticity and the high temperature strength.


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Due to the limited total amount of traditional energy, people have a huge demand for cleaner and greener new energy alternatives. Now, the emergence of graphene is unlocking the possibility of its application in the energy field, which can create a greener, more efficient, and sustainable future. Here Francesco Bonaccorso, Deputy Director of Innovation at the Graphene Flagship Program, explains how his researchers have developed a series of initiatives to bring graphene from the lab to the commercial market. Graphene has become a research hotspot for new materials in the 21st century. Graphene has been adopted by many industries, the most notable of which are healthcare and key material applications.

The development of graphene has brought huge fluctuations in the demand for Hastelloy X alloy, and the demand for Hastelloy X alloy will continue to grow in the future. You can contact us for the latest news on Hastelloy X alloy.

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