
Add to Cart
Power Scissor Tool Parts MIM Part Powder Metal Parts Metal Injection Molding
Metal Injection Molding
Alloy Group | Specific Alloys | Description |
Stainless steel | 316, 316L, 17-4 PH, 303, 304, 440C, and 420P | Great heat and corrosion resistance due to high nickel and chromium content, used for surgical tools |
Low-alloy steel | Fe-Ni (iron-nickel), FN02, FN08, 4140, 8620, and 100Cr6 | Cost-effective due to low carbon and alloying elements, moderately machinable |
Tool steel | M2 | High carbon gives it excellent hardness and abrasion resistance and is used to make mold and cutting tools after going through rigorous testing and quality checks |
Soft magnetic steel | Fe-Ni50, Fe3Si, FeCo50, and FeCoV | Good magnetic reaction used a lot in solenoids, electric motors, and relays |
Tungsten heavy alloy | W-Ni-Fe (tungsten nickel iron) and W-Ni-Cu (tungsten nickel copper) | Composed of tungsten and other alloying elements, has a very high density, making it ideal for electromagnetic shielding |
Tungsten carbide-cobalt | WC-Co | A hard and wear-resistant metal used for cutting and mining tools and machine parts |
Manufactured using advanced metal injection moulding (MIM) technology, this product is designed to meet the needs of power shear tools for high strength, high precision and complex geometries.MIM technology combines the advantages of powder metallurgy and plastic injection moulding to produce complex parts that would be difficult to achieve with traditional machining methods, making it ideal for power shear tool parts.
Product Features:
Complex Geometry: MIM technology can produce complex shapes and fine features that are difficult to achieve with traditional machining methods, meeting the specific requirements of power shear tool part design.
High precision and consistency: The MIM process enables near-net-shape, high dimensional accuracy and consistency of parts, ensuring the stability and reliability of power shear tools.
Excellent mechanical properties: the use of high-quality metal powder, sintered parts with high strength, high hardness and good wear resistance, to meet the demanding requirements of power shear tools on the performance of parts.
Wide choice of materials: different metal powder materials can be selected according to different application requirements, such as low alloy steel, stainless steel, tool steel and so on.
Cost-effective: For high-volume production of complex parts, the MIM process is more cost-effective than traditional machining methods.
Areas of application:
Critical parts such as blades, gears, connecting rods, housings, etc. for power shears.
Other mechanical parts requiring high strength, high precision and complex shapes, for example:
Automotive parts
Medical devices
Electronic products
Lock hardware
Why Choose Polestar?
Durability: Components are designed to withstand harsh conditions and heavy usage.
Customization: Polestar can produce components tailored to specific industry requirements.
Quality Assurance: Rigorous testing ensures that each component meets high standards of quality.
Sustainability: Polestar is committed to environmentally friendly manufacturing practices.