Vision

OUR VISION

GODTECH / MATERIALS & ENGINEERING

Connecting advanced materials with additive manufacturing. Creating new possibilities for high-value components.

GODTECH provides manufacturing and MRO solutions for high-value industrial components, built on advanced alloy design and metal additive manufacturing. We are advancing research in AI-driven alloy design and hybrid additive manufacturing while developing precision repair and resource circulation technologies toward a more sustainable manufacturing system.

  • Advanced alloy design
  • Metal AM
  • Precision MRO
  • Resource circulation

WHY THIS MATTERS

GODTECH / MATERIAL PERSPECTIVE

Material development, manufacturing and restoration are not separate processes. We connect them as one continuous material lifecycle.

01MATERIAL

Materials and manufacturing processes must be designed together.

High-value industrial components require materials and manufacturing methods suited to their operating conditions and performance requirements. GODTECH develops technologies that integrate alloy design with additive manufacturing to achieve the required properties and manufacturing efficiency.

02LIFECYCLE

The value of a component extends beyond manufacturing.

Replacing high-value components in industries such as aerospace and power generation can involve significant costs and downtime. Through precision LP-DED repair and material recycling technologies, GODTECH aims to extend component service life and recover more value from resources.

DIRECTION

Technologieswe focus on

GODTECH turbine blade prototype repaired using LP-DED
Precision LP-DED repair of a turbine bladeCMSX-4 / GODTECH
  1. ADVANCED ALLOY DESIGN

    AI-driven advanced alloy design

    We research alloys optimized for additive manufacturing through thermodynamic calculations, microstructure prediction and AI-driven design. By developing high-temperature nickel-based alloys such as GT230 and GT939, we aim to strengthen material capabilities for high-performance component manufacturing and repair.

  2. ADDITIVE MANUFACTURING

    End-to-end metal AM solutions

    Using metal additive manufacturing technologies including L-PBF, LP-DED and WAAM, we produce components with complex geometries. Our integrated capabilities cover design, manufacturing, post-processing, testing, analysis and quality validation to meet industrial requirements.

  3. ADVANCED MRO & REPAIR

    Precision restoration of high-value components

    Based on damage analysis and repair engineering, we perform precision repair using LP-DED technologies and dedicated alloys. Local reinforcement, geometry restoration, post-processing and quality validation help expand the reuse potential of high-value components.

  4. RESOURCE CIRCULATION

    Returning resource value to manufacturing

    We assess the reuse potential of end-of-life high-value metal components and research metal recovery, re-alloying and AM powder production for materials that cannot be directly reused. Our goal is to establish a circular system connecting repair and remanufacturing.

LONG-TERM VISION

  1. MATERIAL

    Building domestic advanced alloy capabilities

    Through AI-driven alloy design and the development of AM-specific materials, we aim to strengthen advanced alloy capabilities for high-temperature and high-strength applications and expand Korea’s domestic material supply base.

    AM ALLOY · METAL POWDER

  2. LIFE EXTENSION

    Extending the life of high-value components

    Using precision LP-DED repair technologies and dedicated alloys, we work to restore damaged component geometry and functionality, expanding the options for repair and reuse beyond conventional replacement.

    INSPECTION · LP-DED · VALIDATION

  3. CIRCULATION

    Establishing a sustainable resource cycle

    We aim to establish a circular manufacturing system by repairing reusable components and developing technologies to recover and process end-of-life metals into materials for manufacturing.

    RECOVERY · REMELTING · REUSE