energy-parts-wind-power

High Precision Energy Parts Prototyping and Manufacturing

(4967 Customer Review)

  • Tolerance Accuracy: Up to ±0.01 mm for CNC, ±0.05 mm for casting
  • Supported Materials: Aluminum, Stainless Steel, Inconel, Titanium, Brass
  • Testing Capabilities: CMM, X-ray, Ultrasonic, 3D Scanning, Pressure Test
  • Lead Time: 5–7 working days for rapid prototypes
  • Volume Range: From 1 to 10,000+ units (prototyping to scaled production)

Langhe Casting provides specialized solutions for high precision energy parts prototyping and manufacturing. Our expertise covers new energy, traditional power generation, oil and gas, and advanced battery technologies, offering reliable, certified, and scalable production services.

energy-parts-electrical-power

energy-parts-electrical-power

Why Precision Matters in Energy Components

Energy applications operate under extreme thermal, chemical, and mechanical loads. Prototyping high-precision parts ensures minimal failure and smooth testing before full-scale production.

Key Challenges in Energy Parts:

  • High-temperature and high-pressure endurance
  • Corrosion resistance in harsh environments
  • Geometric and dimensional consistency
  • Regulatory compliance and traceability
wind-turbine-main-shaft

wind-turbine-main-shaft

Langhe Casting Capabilities

We offer rapid prototyping and small-batch production of high-performance components using advanced casting and CNC technologies.

Service Description Energy Applications
Precision Investment Casting Accurate, complex geometry parts with tight tolerances Turbine blades, pump housings
Rapid CNC Machining Fast-turnaround machining in alloys and exotic metals Battery cases, cooling plates
Hybrid Prototyping Combines casting with final machining for high precision Transmission hubs, heat sinks
Non-Destructive Testing X-ray, pressure, ultrasonic, and 3D scanning Nuclear-grade and offshore components

Key Technical Parameters

  • Tolerance: ±0.01 mm (CNC)
  • Supported Materials: Aluminum, Stainless Steel, Inconel, Titanium, Brass
  • Wall Thickness: Minimum 1.2 mm (casting), 0.5 mm (machining)
  • Max Part Weight: Up to 100 kg per unit
  • Testing Capabilities: CMM, pressure testing, surface roughness, ultrasonic
  • Accepted CAD Formats: STEP, IGES, STL, DWG
photovoltaic-support-structure-parts-768x768

photovoltaic-support-structure-parts-768×768

Sector-Specific Applications

Energy Sector Parts We Produce Functional Requirements
Wind Energy Gear housings, rotor hubs Vibration resistance, fatigue strength
Solar Power Inverter frames, cooling structures Thermal conductivity, lightweight
Oil & Gas Valves, couplings, pump shafts Pressure sealing, corrosion resistance
Nuclear Power Radiation shields, actuator brackets Material integrity under radiation
Battery & EV Battery enclosures, cooling plates Precision fit, thermal management

Our Process

We ensure a smooth and transparent workflow from concept to final delivery.

1. Engineering Review: Evaluate drawings for manufacturability and materials

2. Prototyping: Create physical parts via casting, machining, or both

3. Validation: Perform dimensional, structural, and functional tests

4. Scaled Production: Manufacture in volumes with certified QA/QC

photovoltaic-inverter-cooling-module

photovoltaic-inverter-cooling-module

Why Langhe Casting?

  • Industry Experience: 15+ years in energy casting and machining
  • Speed: Prototypes delivered in as fast as 5 business days
  • Quality Assurance: Certified inspection, NDT, and ISO-compliant systems
  • Engineering Support: DFM, tolerance optimization, material selection
lithium-battery-pole-piece-mold

lithium-battery-pole-piece-mold

Contact Us for a Free Quote

Need high-performance components for your next energy project? Whether it’s wind turbine brackets or EV battery cooling plates, Langhe Casting delivers the speed, precision, and support your team needs.

Contact us today for a personalized quote and consultation.

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