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GH4169 (Inconel 718) High Temperature

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Updated on: 2025-12-29 22:05
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3rd Floor, Building B, Hongding Zhihuigu,No.32 Taihu West Road,Xinbei District, Changzhou City,Jiangsu, 213022, Chin

 

Description of GH4169 (Inconel 718) High Temperature

HIGH TEMPERATURE ALLOY WIRE

GH4169 (Inconel 718) High Temperature is a kind of precipitation-hardening nickel-chromium alloy renowned for its outstanding high-temperature strength and oxidation resistance. GH4169 (Inconel 718) maintains exceptional mechanical properties and structural stability at elevated temperatures, making it a premier choice for demanding applications. This alloy wire also exhibits good resistance to corrosion in oxidizing atmospheres and certain aqueous environments.

GH4169 (Inconel 718) High Temperature is particularly valued for its high creep strength and resistance to thermal fatigue. An important characteristic of this alloy is its excellent hot workability and forgeability, facilitating the production of complex high-temperature components.

HIGH TEMPERATURE ALLOY WIREHIGH TEMPERATURE ALLOY WIRE

Feature of GH4169 Inconel 718 High Temperature

 

 

1. High-Temperature Strength

GH4169 (Inconel 718) High Temperature is designed to maintain superior tensile and yield strength at temperatures up to 815°C (1500°F), delivering reliable mechanical performance under sustained stress in extreme thermal environments.

 

2. Oxidation Resistance

The alloy's high chromium content forms a stable protective oxide layer, providing critical resistance to oxidation and scaling in aggressive high-temperature atmospheres, essential for long-term component integrity.

 

3. Thermal Stability

GH4169 (Inconel 718) High Temperature exhibits exceptional microstructural stability under repeated thermal cycling, resisting embrittlement and phase degradation in aerospace applications with rapid temperature fluctuations.

 

4. Creep Resistance

GH4169 (Inconel 718) High Temperature achieves outstanding resistance to creep deformation, ensuring dimensional stability and longevity under continuous mechanical loads at elevated temperatures.

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