Inconel 738LC (Low Carbon) Nickel-Based Superalloyhigh-Strength Precipitation-Hardened Alloy for Gas Turbine and High-Temperature Applications
10 kg (MOQ)
Product Description INCONEL 738LC (Low Carbon) is a precipitation-hardened nickel-based superalloy developed for excellent creep resistance, high-temperature strength, and oxidation resistance at elevated temperatures. Compared with standard INCONEL 738, the low-carbon (LC) version offers improved weldability, structural stability, and resistance to cracking, making it especially suitable for complex cast components exposed to severe thermal and mechanical stresses. INCONEL 738LC maintains outstanding mechanical properties at temperatures up to 980-1050°C, and is widely used in aerospace and industrial gas turbines, particularly for hot-section components. Technical Specifications Item Description Alloy Name INCONEL® 738LC Alloy Type Nickel-Based Precipitation-Hardened Superalloy Carbon Content Low Carbon (LC grade) Product Forms Investment Castings / Bars / Custom Components Strengthening Mechanism Gamma Prime (γ′) Precipitation Maximum Service Temperature Up to approx. 980-1050°C Heat Treatment Solution Treated + Aged Applicable Standards AMS 5391 / AMS 5410 (typical) Typical Applications Gas Turbine Hot-Section Components Key Advantages Excellent creep and rupture strength at high temperatures Outstanding oxidation and hot corrosion resistance Improved weldability compared with standard IN738 Excellent microstructural stability in long-term service Typical Applications Gas turbine blades and vanes Turbine wheels and nozzles Aerospace hot-section components Industrial gas turbine and power generation parts Detailed Photos Company Profile Shandong Titanium Nickel Special Steel Co., Ltd., registered funds (one thousand yuan for 10,000 yuan), the company is mainly committed to high -tech enterprises that are integrated with special alloy materials, specializing in the research and sales of special alloys such as nickel -based and iron -based. Products include corrosion-resistant alloys, superalloys, precision alloys, Hastelloy, Monel, INCONEL, INCOLOY, copper-nickel alloys, titanium and titanium alloys, zirconium and zirconium alloys, nickel and nickel-based alloys, nickel-cobalt-based heat-resistant alloys , Hafnium alloy, etc., more than 60 kinds of alloy materials such as special stainless steel. On the basis of stabilizing the quality of the original products, according to the market demand, it solves the quality problems existing in the traditional metallurgical process, and ensures the low miscellaneous and low deflection of the alloy material products, which has won an excellent reputation in the industry. Factory workshop Product application Packaging & Shipping FAQ 1. What is Hastelloy? Hastelloy is a high-performance corrosion-resistant alloy widely used in industries such as chemical processing, aerospace, marine, and energy, especially in extreme temperature and corrosive environments. Its main components include nickel, molybdenum, chromium, and other metal elements. 2. What types of Hastelloy alloys do you sell? We sell a variety of Hastelloy alloys, including but not limited to: Hastelloy C-276 Hastelloy C-22 Hastelloy B-2 Hastelloy X Hastelloy G-30 Each alloy has different corrosion resistance properties and high-temperature characteristics, suitable for various industrial applications. 3. How do I choose the right Hastelloy material for my needs? When selecting Hastelloy materials, consider the following factors: Operating Environment: Including temperature, corrosive media, oxidation conditions, etc. Corrosion Resistance: Different Hastelloy alloys have varying resistance to different types of corrosion (acidic, chlorides, oxidation, etc.). Mechanical Properties: Including tensile strength, hardness, etc., dep
- Shandong Titanium Nickel Special Steel Co., ...
- Shandong, China
- Contact Now
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What are the key advantages of using an alloy over pure metals?
Alloys offer superior mechanical properties, including increased strength, durability, and resistance to corrosion, compared to pure metals. They are engineered to deliver enhanced performance in various applications, including construction, transportation, and energy solutions, optimizing industrial processes and environmental sustainability.
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How do different alloy compositions impact energy industry applications?
Alloy compositions tailor properties like electrical resistance and thermal conductivity, crucial for energy savings. In energy production, they optimize heat exchanges and support structural integrity in high-temperature applications. Alloys lower maintenance costs, boost reliability, and increase the longevity of energy systems.
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Are there specific alloys crucial for sustainable mineraland metallurgy advancements?
Sustainable metallurgy relies on unique alloys enhanced for low energy production and recyclability, such as lightweight aluminum or corrosion-resistant stainless steel. Innovations like lead-free copper alloys or biocompatible titanium facilitate eco-friendlier resource management and drive advancements in sustainable manufacturing.