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ZCMIM provides professional metal injection molding technology resources to optimize MIM design and manufacturing process.
MIM Technology
Sintering Effect of P.A.N.A.C.E.A.
P.A.N.A.C.E.A has unique non-magnetic property in consumer electronic industry with metal injection molding technology.
Soft Magnetic Materials
Soft magnetic materials are easily magnetized and demagnetized. These materials have intrinsic coercivity less than 1000 A/m.
Nickel-Free Stainless Steel
Metal injection molding (MIM) has the growing demand for nickel-free stainless steel in complex components.
MIM 316
MIM 316L is an austenitic grade and food grade stainless steel, it is suitable for applications with extremely high corrosion resistance.
MIM 17-4
MIM 17-4 PH is a precipitation hardening grade of stainless steel with necessary high strength and hardness.
MIM 304
MIM 304 is another austenitic grade stainless steel, it has high-temperature resistance, oxidation resistance and corrosion resistance.
MIM 420 Stainless Steel
Stainless steel MIM 420 is a martensitic heat-treatable stainless steel, it has high strength and hardness, as well as corrosion resistance.
Stainless Steel 430L MIM
Stainless steel 430L is a low-carbon ferritic stainless steel with similar corrosion resistance as stainless steel in mildly environments.
Stainless Steel 440C
MIM 440C is a martensitic stainless steel, this stainless steel have excellent strength, hardness, and wear resistance.
MIM F75 Sintering
MIM F75, as the most popular cobalt-base alloys, has been applied for implantable medical devices for decades.
MIM HK30
HK30 is a niobium-stabilized austenitic chromium-nickel steel, it has excellent resistance to carburization, sulphidation, oxidation.
FeNi36
FeNi36 is also known as Invar 36, or Invar alloy. It has the uniquely low CTE, this makes Invar alloy used in many precision instruments.
MIM 4340
4340 Steel is a nickel-chromium-molybdenum steel with high hardenability and tensile. It is an ultra-high strength steel.
MIM 4140
4140 steel is a low alloy steel with chromium, molybdenum, and manganese. It has wide application in numerous industries.
MIM 4605
MIM 4605 is a low alloy steel with element of carbon, nickel and molybdenum. It can achieve high hardness and strength by heat-treatment.
MIM Titanium
MIM titanium normally refers to Ti-6Al-4V. It is an alpha-beta titanium alloy with high specific strength and excellent corrosion resistance.
MIM Copper
Copper MIM and its alloys have excellent thermal and electrical conductivity, these properties are suitable for application in electrical and electronic industry.
Tungsten MIM
Tungsten MIM (Tungsten Metal Injection Molding) is a sophisticated process for custom tungsten fabrication.
Cobalt MIM
Co-MIM combines cobalt alloy powders with conventional MIM process, in order to create functional parts with high toughness and wear resistance.
F15 (Kovar) MIM
Kovar (MIM F15) is a nickel-cobalt ferrous alloy with specific properties, it has low coefficient of thermal expansion (CTE).
IN718 MIM
Inconel 718 (IN718) is a nickel-based supper-alloy with high strength, oxidation resistance and heat corrosion resistance.
IN713C MIM
In713C is a nickel base super-alloy in the most demanding environments of aerospace and powder generation applications.