Applications
MIM parts serve 3C electronics, automotive, power tools, medical, smart locks, 5G communications and more.

Consumer Electronics (3C)
MIM parts for phones, tablets and laptops — small, complex, high-volume components with excellent surface finish.
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Smart Wearables
Cosmetic-grade MIM parts for watches, bands and earphones.
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Automotive
High-strength iron base MIM parts with excellent comprehensive mechanical properties.
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Power Tools
High-density Fe-2Ni / Fe-8Ni gear and transmission parts.
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Medical Devices
MIM and PM stainless steel or titanium components provide high precision, biocompatibility and corrosion resistance for medical devices. Powder Metallurgy allows complex shapes and thin-walled parts that are difficult to machine, offering high-performance, cost-effective solutions for surgical instruments, implants and corrosion-resistant structural parts.
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Smart Locks & Hardware
MIM parts for smart locks, bags, shoes and decorative hardware.
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Bathroom Hardware
Larger MIM parts for bathroom hardware.
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5G & Optical Communications
Copper alloy MIM parts for optical modules and connectors — replacing machined parts in small, complex geometries.
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Sports & Counterweights
High density tungsten alloy products for sports and industrial counterweights.
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Sensors & Magnetic Parts
Sensor housings and magnetic accessory parts.
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Aerospace & Robotics
Tungsten and alloy PM components deliver high density and precise weight distribution for aerospace and robotic systems. PM produces complex geometries, tight tolerances and balanced components such as counterweights and precision robotic parts, with consistent material properties and scalable manufacturing.
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Electrical Conduction
PM and MIM components in high-density copper-based and tungsten-copper alloys provide excellent electrical conductivity and thermal management for efficient power transmission, with precise geometries and minimal machining across large volumes.
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Power Electronics
PM and MIM components are widely used in power electronics and LED systems for their exceptional heat dissipation and dimensional accuracy. Ultrafine metal powders enable high-performance thermal interfaces and structural parts that withstand repeated thermal cycles.
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Transmission Systems
High-density PM components offer durability, precision and high material utilization for automotive transmission and mechanical systems. PM technology produces geometrically complex gears, synchronizer hubs and bushings with consistent mechanical properties while reducing machining and material waste — cost-effective for both high-volume and specialized applications.
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Radiation Protection
PM technology manufactures radiation shielding and protective components with high density and stability. Tungsten and high-density alloys provide effective attenuation of X-rays and nuclear radiation, while PM allows customized shapes and uniform material distribution — ideal for medical imaging devices, CT scanners and nuclear protection applications.
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Mechanical Parts
High-density PM and MIM components offer exceptional mechanical strength and durability for demanding industrial applications. Powder Metallurgy produces geometrically complex, high-strength parts with consistent material properties while reducing machining time and material waste — ideal for high-strength gears, load-bearing structures and heavy-duty components.
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Industrial Machinery
High-strength PM parts support durable, load-bearing structures in automotive and industrial machinery. PM ensures consistent mechanical properties, high-density material and complex shapes that are difficult to produce via casting or machining alone — cost-effective, high-performance gears, bushings and structural elements.
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Motors & Inductors
Soft magnetic PM components enhance the efficiency, performance and miniaturization of motors, inductors and power electronics. PM technology enables precise control of magnetic properties, complex geometries and high-density compaction, producing rotors, stators and magnetic cores with excellent consistency and minimal losses.
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Lightweight Structures
Titanium and alloy MIM components provide lightweight yet high-strength solutions for medical and aerospace applications. PM and MIM processes allow complex geometries, precise tolerances and excellent surface finish, enabling implants, aerospace brackets and structural parts to be manufactured efficiently, with repeatable performance across large volumes.
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