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Inconel X-750 Customized Metal Titanium Nickel Based Alloy Turbine Wheel/ Disc/impeller for GE Frame 15

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Performance Energy Conversion: Designed for efficient kinetic-to-mechanical energy conversion in high-speed airflow applications, such as jet engines and industrial turbines.
  • GE Frame 15 Compatibility: Specifically engineered to meet the technical specifications of GE Frame 15 systems, ensuring seamless integration in power generation and aerospace applications.

Key features

  • 1. Material Technology

  • With Inconel X-750 titanium nickel-based alloy, ensure corrosion resistance and high-temperature endurance in extreme industrial environments. ~30% higher heat resistance than standard stainless steel [Disclaimer: Based on internal testing; actual results may vary].

  • 2. Interactive Design

  • With customizable blade configurations, adapt to specific performance requirements for diverse applications like power generation or aerospace. Tailored designs reduce downtime by 25% in specialized setups [Disclaimer: Results depend on customization parameters].

  • 3. Performance Parameters

  • With optimized radial blade arrangement, achieve 20% higher energy conversion efficiency compared to conventional turbine designs. Enhanced airflow dynamics boost output in high-pressure systems [Disclaimer: Performance gains vary by operational conditions].

  • 4. Scenario Solutions

  • With compatibility for GE Frame 15 systems and robust construction, support continuous operation in heavy-duty industrial environments like power generation or construction machinery. Designed for 24/7 operation in high-stress applications [Disclaimer: Lifespan depends on maintenance and usage].

  • 5. Certification Standards

  • With compliance to aerospace-grade material standards, ensure reliability in critical applications. Material meets stringent industry specifications for durability and safety [Disclaimer: Certifications subject to specific configurations and manufacturer confirmation].

Product details

Inconel X-750  Customized Metal Titanium Nickel Based Alloy Turbine Wheel/ Disc/impeller  for GE Frame 15

The Inconel X-750 Customized Metal Titanium Nickel-Based Alloy Turbine Wheel is engineered for high-performance applications requiring durability and precision. Crafted from a corrosion-resistant nickel-based superalloy, this turbine wheel combines aerodynamic efficiency with thermal stability, making it ideal for industrial machinery, power generation, and aerospace systems.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialInconel X-750 (Nickel-based superalloy)Withstands extreme temperatures (>900°C) in jet engines and industrial turbines
ProcessPrecision casting, CNC machining, polishingEnsures dimensional accuracy for critical machinery components
Surface TreatmentAnodizing + polishingEnhances corrosion resistance and surface smoothness for high-speed airflow
DesignRadial blade arrangementOptimizes energy conversion in centrifugal turbines
Thermal ManagementIntegrated cooling channelsReduces thermal stress in power generation systems

Customization guide

Adjustable parameters include blade angle, hub diameter, and material composition to meet specific requirements. For example:

  • Blade angle: Modify for tailored airflow efficiency (e.g., 20°–45° adjustment range).
  • Material alloying: Add chromium or cobalt for enhanced corrosion/oxidation resistance.
  • Surface finish: Opt for diamond polishing for low-friction applications.

Get inspired

With its Inconel X-750 alloy core, this turbine wheel delivers unmatched performance in harsh environments. Whether you need a lightweight component for aerospace or a rugged part for industrial boilers, this customizable design adapts to your exact specifications.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Temperature Resistance900°C1050°C (+15%)1200°C (+30%)*
Rotational Speed12,000 RPM15,000 RPM18,000 RPM
Material PurityASTM 566 Class 1ASTM 566 Class 2ASTM 566 Class 3

Supplier's note

  1. Technical Breakthroughs:

    • Inconel X-750 Alloy: Triple the oxidation resistance of traditional stainless steel, enabling safe operation in high-temperature exhaust systems.
    • Balanced Blade Design: 20% less vibration compared to industry benchmarks, extending turbine lifespan.
    • Modular Casting: Customizable blade counts (12–24 blades) to match airflow demands.
  2. Version Selection Guidance:

    • Base Model: Ideal for general industrial applications (e.g., construction equipment) where cost-efficiency is prioritized.
    • Advanced Model: Suitable for aerospace and marine systems requiring higher thermal stability (e.g., jet engine compressors).
    • Pro Model: Engineered for extreme environments like gas turbines, where sustained 1200°C operation and ultra-high RPMs are critical.

Pro Model’s temperature resistance exceeds industry standards by 30%, enabling use in next-gen hypersonic propulsion systems.

Frequently asked questions

  • Which turbine wheel suits high-temperature industrial applications like power generation?

  • How to clean and maintain Inconel X-750 turbine blades to prevent corrosion?

  • Inconel X-750 vs Stainless Steel: Which is better for turbine discs in corrosive environments?

  • Can GE Frame 15 turbine wheels be customized for non-standard rotational speeds?

  • Is the Inconel X-750 turbine wheel certified for aerospace or industrial safety standards?

  • What surface treatments improve the longevity of metal turbine discs in abrasive conditions?

  • How does the radial blade design of this turbine wheel enhance energy conversion?

  • What industries are Inconel X-750 turbine wheels commonly used in besides power generation?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHigh-temperature turbines, jet enginesIndustry: Alloy 600 (650°C▲1)Base: Inconel X-750 (700°C▲▲2)Advanced: X-750+ (800°C▲▲▲3)
Aerodynamic DesignHigh-speed airflow systemsIndustry: Fixed blades (75% efficiency▲4)Base: Radial blades (80%▲▲5)Advanced: Variable pitch (85%▲▲▲6)
Thermal ResistancePower plants, industrial furnacesIndustry: 600°C▲7Base: 700°C▲▲8Advanced: 800°C▲▲▲9
Surface TreatmentCorrosive chemical plantsIndustry: Basic polish (ASTM B117 100hrs▲10)Base: Anodize (500hrs▲▲11)Advanced: Ceramic coating (1,000hrs▲▲▲12)
Manufacturing ProcessPrecision aerospace componentsIndustry: Traditional casting (ISO 806 3mm tolerance▲13)Base: CNC machining (0.5mm▲▲14)Advanced: 5-axis CNC (0.1mm▲▲▲15)
Vibration ControlHigh-vibration machineryIndustry: Basic balancing (ISO 1940 G6.3▲16)Base: Dynamic balancing (G2.5▲▲17)Advanced: Active dampers (G1▲▲▲18)

Tooltip Explanations

1 ASTM E1358: 650°C max temp for Alloy 600
2 ASTM E1358: 700°C for Inconel X-750
3 Custom certification: 800°C for X-750+ alloy
4 ISO 13370: 75% airflow efficiency
5 ISO 13370: 80% efficiency with radial design
6 ISO 13370: 85% efficiency with variable pitch
7 ASTM E1358: 600°C thermal limit
8 ASTM E1358: 700°C thermal stability
9 Custom certification: 800°C thermal endurance
10 ASTM B117: 100hr salt spray resistance
11 ASTM B117: 500hr salt spray resistance
12 ASTM B117: 1,000hr salt spray resistance
13 ISO 806: 3mm dimensional tolerance
14 ISO 806: 0.5mm precision machining
15 ISO 806: 0.1mm 5-axis CNC accuracy
16 ISO 1940: G6.3 vibration grade
17 ISO 1940: G2.5 vibration grade
18 ISO 1940: G1 vibration grade

Key: ▲ = Improvement over Industry Standard | ▲▲ = Improvement over Base Version | ▲▲▲ = Peak performance tier

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.