Eata Energy delivers a comprehensive portfolio of high-purity alloys engineered to perform in the most challenging environments. From superalloys that withstand extreme temperatures in gas turbines to ultrafine-grained alloys with exceptional strength-to-weight ratios, our materials are trusted by industry leaders across aerospace, energy, chemical processing, and advanced manufacturing sectors.
Each alloy grade undergoes rigorous chemical analysis, mechanical testing, and non-destructive evaluation to ensure compliance with international standards including ASTM, AMS, ISO, and customer-specific specifications. Our integrated supply chain and global logistics network enable reliable delivery with full traceability from melt to finished product.
The following table summarizes the key properties of each alloy category:
| Alloy Category | Density (g/cm3) | Tensile Strength (MPa) | Max Service Temp (C) | Key Feature | Standard |
| Nickel-Based | 8.2-8.4 | 1240-1540 | 980-1150 | Creep/Oxidation Resistance | AMS 5662 |
| Titanium-Based | 4.4-4.5 | 950-1100 | 315-400 | High Strength-to-Weight | AMS 4928 |
| Cobalt-Based | 8.3-9.1 | 1000-1400 | 980-1150 | Wear/Hot Corrosion Resist | AMS 5537 |
| Copper-Nickel | 8.9-8.95 | 300-400 | 300-400 | Seawater Corrosion Resist | ASTM B466 |
| Aluminum-Lithium | 2.6-2.7 | 500-600 | 200-260 | Lightweight/High Stiffness | AMS 4336 |
| Stainless Steel | 7.9-8.0 | 515-860 | 400-870 | General Corrosion Resistance | ASTM A240 |
| Ultrafine-Grained | Varies | 1200-2000 | Varies | Exceptional Strength | Custom |
Eata Energy supplies high-purity alloys in a wide range of standard and custom forms to meet diverse application requirements:
High-purity alloys from Eata Energy serve critical applications across multiple industries where material performance directly impacts operational safety and efficiency.
Figure 1: Premium alloy products from Eata Energy
Nickel-based superalloys (Inconel 718, Hastelloy X) and titanium alloys (Ti-6Al-4V) form the backbone of modern aerospace propulsion and airframe systems. These materials deliver exceptional creep resistance, fatigue strength, and oxidation protection at temperatures exceeding 1000 C in turbine engines, combustion chambers, and exhaust nozzles. Aluminum-lithium alloys provide 8-10% weight reduction compared to conventional aluminum alloys for structural components, fuel tanks, and cryogenic systems.
Figure 2: Titanium alloy turbine blade for aerospace applications
Cobalt-based alloys (Haynes 25, Stellite 6) and advanced nickel superalloys withstand the extreme thermal and mechanical stresses in gas turbines, nuclear reactors, and concentrated solar power systems. Copper-nickel alloys (CuNi 90/10, CuNi 70/30) offer superior seawater corrosion resistance for offshore platforms, heat exchangers, and desalination plants. Stainless steel foils serve as precision components in fuel cells, batteries, and solar thermal absorbers.
Hastelloy C-276 and C-22 alloys provide unmatched resistance to localized corrosion, stress corrosion cracking, and oxidizing acids in chemical reactors, distillation columns, and acid handling systems. Copper-nickel alloys excel in marine environments where biofouling resistance and seawater durability are critical for piping, valves, heat exchangers, and offshore structural components.
Figure 3: Copper-nickel pipe flange for marine applications
Ultrafine-grained (UFG) alloys, with grain sizes below 1 micrometer, exhibit extraordinary strength, wear resistance, and superplastic forming behavior. These advanced materials enable next-generation components in medical implants, micro-electromechanical systems (MEMS), precision tooling, and high-performance sporting equipment. UFG alloys processed by severe plastic deformation (SPD) techniques including equal-channel angular pressing (ECAP) and high-pressure torsion (HPT) achieve strength levels 2-3x higher than conventional counterparts.
Figure 4: Microstructure of ultrafine-grained alloy showing sub-micrometer grain size
Eata Energy offers multiple specification levels for each alloy category. The following table provides detailed purity and specification information:
| Alloy Grade | Specification | Purity/Quality Level | Available Forms | Typical Lead Time |
| Inconel 718 | AMS 5662/5663 | Aerospace Grade | Bar, sheet, wire, powder | 2-4 weeks |
| Hastelloy C-276 | ASTM B575 | Corrosion Resistant | Sheet, plate, tube, bar | 1-3 weeks |
| Ti-6Al-4V Grade 5 | ASTM B265 | Aerospace/Medical | Sheet, bar, wire, powder | 2-6 weeks |
| Haynes 25 | AMS 5537 | Ultra-High Temp | Sheet, bar, wire | 3-5 weeks |
| CuNi 90/10 | ASTM B466 | Marine Grade | Pipe, tube, sheet, bar | 1-2 weeks |
| Al-Li 2195 | AMS 4336 | Aerospace Grade | Sheet, plate, extrusion | 4-8 weeks |
| 316L Stainless | ASTM A240 | Food/Medical Grade | Foil, sheet, plate, tube | 1-2 weeks |
| UFG Ti Alloy | Custom Spec | Research/Advanced | Bulk, sheet, wire | 6-12 weeks |
Every alloy product from Eata Energy is backed by comprehensive quality documentation and testing protocols. Our quality management system is certified to ISO 9001:2015, AS9100D (aerospace), and NADCAP requirements.
Figure 5: Precision stainless steel foil for energy and electronics applications
Beyond our standard alloy portfolio, Eata Energy offers custom alloy development and optimization services for specialized applications. Our metallurgical engineering team works directly with customers to design alloy compositions, thermomechanical processing routes, and heat treatment schedules that meet unique performance requirements.
Custom capabilities include vacuum induction melting (VIM), vacuum arc remelting (VAR), electroslag remelting (ESR), and plasma cold hearth melting (PAM/CHM) for reactive and refractory alloys. We also provide mechanical alloying, spark plasma sintering (SPS), and additive manufacturing process development for next-generation material solutions.
| Catalog Number | Product Name | Order | Quantity |
|---|---|---|---|
| HPA-0001 | 3j1/Ni36CrTiAl | Inquiry | |
| HPA-0002 | 4J29/Kovar/29IK18A | Inquiry | |
| HPA-0003 | 4J36/Invar36/W.Nr 1.3912/K93600 | Inquiry | |
| HPA-0004 | 4j32/32NK/FeNi32Co20/Super-Invar | Inquiry | |
| HPA-0005 | 4J33/Ni33Co14/Co 257/38NK | Inquiry | |
| HPA-0006 | 99.9% Aluminum–Zirconium–Yttrium Thermal-Barrier Sputtering Target (Al-Zr-Y) | Inquiry | |
| HPA-0007 | CuCrSiTi High-Strength Alloy Strip | Inquiry | |
| HPA-0008 | CuSn0.15 Tin Bronze Alloy Strip | Inquiry | |
| HPA-0009 | CuCr1Zr High-Conductivity Alloy Strip | Inquiry | |
| HPA-0010 | CuCrZr Precipitation-Hardened Alloy Strip | Inquiry |
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