Corrosion-Resistant High-Strength Iron-Based Alloy Powder for Metal 3D Printing, SLM, DMLS and Additive Manufacturing
제품 개요
Corrosion-Resistant High-Strength Iron-Based Alloy Powder is engineered for metal additive manufacturing and advanced industrial applications requiring a combination of high strength, corrosion resistance, thermal stability, and reliable powder processing performance.
고급 기술을 사용하여 제작 Vacuum Induction Melting Gas Atomization (VIGA) or 전극 유도 용융 가스 분무(EIGA) technology, the powder features high sphericity, controlled particle size distribution, low oxygen content, and excellent flowability, supporting stable powder spreading and consistent layer formation during metal additive manufacturing.
The material is suitable for Selective Laser Melting (SLM), Direct Metal Laser Sintering (DMLS), Electron Beam Melting (EBM) and other compatible powder-based metal additive manufacturing processes. It can be used for high-strength structural components, complex precision parts, corrosion-resistant components, tooling, molds, energy equipment, and other demanding industrial applications.
With optimized powder morphology and controlled material quality, the alloy powder provides a reliable material solution from prototype development to industrial metal additive manufacturing.
High Strength and Mechanical Performance
After appropriate processing and heat treatment, manufactured components can achieve high hardness and tensile strength while maintaining the toughness required for demanding industrial applications. According to the supplied product information, typical hardness can reach approximately HRC 35–50, with tensile strength exceeding 1000 MPa의, depending on the final processing and heat-treatment conditions.
우수한 내식성
The iron-based alloy system is designed to provide strong corrosion resistance for components operating in demanding industrial environments. This makes the powder suitable for applications involving energy equipment, industrial tooling, molds, mechanical components, and other parts requiring both mechanical strength and environmental resistance.
Optimized for Metal Additive Manufacturing
High powder sphericity and controlled particle size distribution contribute to:
- Excellent powder flowability
- Uniform powder spreading
- Stable layer formation
- Consistent melting behavior
- Reduced risk of powder-related printing defects
- Improved repeatability during additive manufacturing
A typical particle size range of 15~53μm is suitable for common laser powder bed fusion applications, subject to the requirements of the specific machine and process.
VIGA / EIGA Gas-Atomized Powder
Advnaced VIGA and EIGA gas atomization technologies can be used to achieve highly spherical particles, controlled chemical composition, low impurity levels, and consistent batch quality.
The supplied technical information specifies oxygen content below 0.1% as a typical target.
품질 관리
Powder quality can be evaluated through internationally recognized testing methods, including:
Chemical Composition Analysis (OES)
Particle Size Distribution – Laser Diffraction
Hall Flow Rate Testing
체적 밀도 테스트
Production and quality control can follow applicable metal powder standards such as ASTM F3049, depending on the specific material grade and customer requirements.
광범위한 산업 응용 분야
This high-strength corrosion-resistant metal powder can be used for:
항공 우주 : Lightweight and high-strength structural components and heat-resistant parts.
에너지: Oil and gas components, corrosion-resistant parts and industrial energy equipment.
Tooling & Mold Manufacturing: Injection molds, die-casting molds, precision tooling and repair applications requiring high hardness and wear resistance.
Industrial Additive Manufacturing: Complex metal components, customized parts, prototypes and low-volume production.
Custom Powder Solutions
Particle size distribution, powder preparation route and material specifications can be selected or customized according to the customer’s additive manufacturing equipment, process requirements and final component performance targets.
| 매개 변수 | 스펙 |
|---|---|
| 제품 유형 | Corrosion-Resistant High-Strength Iron-Based Alloy Powder |
| 재료 카테고리 | Iron-Based Metal Alloy Powder |
| Powder Manufacturing Process | VIGA / EIGA Gas Atomization |
| 분말 형태 | Highly Spherical |
| 일반적인 입자 크기 | 15~53μm |
| 산소 함량 | <0.1의 % |
| Typical Hardness After Processing | HRC 35–50 |
| 전형적인 인장 강도 | > 1000MPa |
| 1차 프로세스 | SLM / DMLS / EBM / Metal Additive Manufacturing |
| 분말 특성 | High Sphericity, Good Flowability, Controlled Particle Size Distribution |
| 화학 분석 | OES |
| Particle Size Testing | Laser Diffraction |
| 유동성 테스트 | 홀 유량계 |
| 밀도 테스트 | 부피 밀도 |
| 참조 표준 | ASTM F3049 |
| 주요 속성 | High Strength, Corrosion Resistance, Thermal Stability |
| 전형적인 신청 | Metal 3D Printing, Industrial Components, Energy Components, Tooling and Mold Manufacturing |
| 입자 크기 맞춤 설정 | Available According to Process Requirements |
추천 첨단 제조 솔루션
레이저 클래딩, DED 적층 제조, 레이저 세척, 표면 엔지니어링, 정밀 자동화 및 첨단 소재 가공 등 제조 목표를 달성할 수 있도록 설계된 그린스톤의 고성능 산업 장비 포트폴리오를 살펴보십시오. 각 솔루션은 생산 능력 확장, 공정 효율성 향상 및 확장 가능한 산업 혁신을 지원하도록 전략적으로 설계되었습니다.
모듈형 레이저 시스템부터 완벽하게 통합된 지능형 제조 플랫폼에 이르기까지, 그린스톤은 고객에게 현대적인 글로벌 제조 환경에 필요한 유연성, 정밀도 및 운영 효율성을 향상시키는 상호 연결된 기술을 제공합니다.