Our high-precision Pump Wheels are engineered using advanced Powder Metallurgy technology, specifically designed to meet the rigorous demands of the automotive and industrial sectors. By utilizing premium sintered materials, these components offer an exceptional balance of structural integrity and dimensional accuracy, ensuring optimal fluid dynamics and long-term operational reliability in high-pressure environments.
Designed for versatility and durability, our pump wheels are compatible with a wide range of applications, from automotive engine systems to industrial power tools. We provide comprehensive OEM/ODM services, allowing clients to provide CAD, 3D, or PDF drawings—or physical samples—to create customized solutions that adhere to strict international standards such as MPIF and DIN.
Detailed Parameters
| Manufacturing Technology | Powder Metallurgy | Material Standards | MPF series, MPIF 35, DIN 30910, JIS Z2550 |
|---|---|---|---|
| Material Density | 6.2 - 7.1 g/cm3 | Macro Hardness | 45-80 HRA |
| Ultimate Tensile Strength | 1650 Mpa | Yield Strength (0.2%) | 1270 Mpa |
| Available Materials | Iron, Copper, Brass, or Customized | Surface Treatment | Quenching, Polishing, Oil Impregnation, Black Oxide, Full Hardening |
| Production Lead Time | 10-30 days (depending on quantity) | Customization Support | OEM/ODM (CAD, 3D, PDF, or Samples) |
Key Advantages
Superior Strength
Featuring a tensile strength of 1650 Mpa, our wheels withstand extreme mechanical stress and wear.
Rapid Production
Efficient mass production cycles between 10 to 30 days ensure your supply chain remains uninterrupted.
Precision Engineering
Strict adherence to MPIF and DIN standards guarantees high-tolerance parts for seamless integration.
Material Versatility
Available in iron, copper, and brass to match specific conductivity or corrosion resistance needs.
Customized Finishes
From oil impregnation to black oxide, we offer surface treatments to enhance part longevity.
Full ODM Support
Transform your concepts into reality via 3D drawings or physical samples with our expert team.
Product Gallery
Management Platforms
Quality Control
Rigorous testing of density and hardness to ensure every batch meets MPIF standards.
OEM Integration
Seamlessly converting CAD/3D designs into precision-molded sintered components.
Lead Time Tracking
Real-time monitoring of the 10-30 day production cycle for timely delivery.
Material Sourcing
Strategic sourcing of high-purity iron, copper, and brass powders.
Logistics Hub
Optimized packaging and shipping for automotive and industrial parts globally.
Post-Processing
Advanced management of quenching and polishing stages for surface perfection.
Investment Return Comparison
| Performance Metric | Traditional Casting | Sintered Powder Metal | |
|---|---|---|---|
| Material Waste | High (Scrap) | Ultra Low (Near-Net Shape) | Eco-Friendly |
| Dimensional Stability | Moderate | High Precision | Consistent |
| Production Speed | Slow/Manual | Rapid Mass Production | Efficient |
| Tooling Cost | High Setup | Optimized for Volume | Cost-Effective |
| Hardness Control | Variable | Precisely Tuned (45-80 HRA) | Reliable |
Frequently Asked Questions
Powder metallurgy allows for near-net shape production, reducing waste and providing superior control over material density and hardness, which is critical for automotive pump efficiency.
Yes, we can provide reverse engineering services. You can send us your sample, and our team will create the necessary CAD drawings for production.
We adhere to globally recognized standards including MPIF 35, DIN 30910, and JIS Z2550 to ensure maximum compatibility and quality.
We offer a variety of treatments including quenching, polishing, oil impregnation, black oxide, and full hardening to meet specific durability needs.
Mass production typically takes between 10 to 30 days, depending on the order quantity and complexity, starting from the receipt of the deposit.
Absolutely. Our components are widely used in textile machinery, industrial sewing machines, power tools, electrical equipment, and general engineering machinery.

















