We offer state-of-the-art furnace cycles custom tailored to achieve the microstructural phase configurations required by your engineering drawings.
Creates a high wear-resistant outer shell while retaining a tough, shock-resistant core. Used for gears, pinions, and shafts.
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Diffuses carbon into the surface layers of low carbon steels to increase surface hardness upon subsequent hardening and quenching.
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Alters metal microstructures to reduce hardness, relieve internal stress, refine grain size, and improve machining machinability.
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Heats steel parts to a high-temp austenitic phase followed by still-air cooling to refine grains and uniformize the crystal structure.
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Reduces structural stresses in steel components accumulated from heavy grinding, welding, casting, or cold forging operations.
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Combines martensitic hardening with subsequent tempering to give medium and high carbon steels high strength and structural toughness.
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Custom thermal processing designed to improve overall fracture resistance, impact strength, and structural fatigue life of steel alloys.
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Specifically designed for stainless steel grades and high-alloy castings to dissolve carbide precipitates and restore corrosion resistance.
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Sub-critical surface-hardening using ammonia or nitrogen plasma to achieve extreme hardness and wear resistance with minimal distortion.
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Deep cryogenic treatment at -196°C to eliminate retained austenite and precipitate fine eta-carbides, maximizing wear life and stability.
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Age-hardening heat treatment cycles for stainless steel (17-4 PH), aluminum, and superalloys to develop ultra-high yield strength.
View Process ParametersWe don't guess. We verify. Our testing lab features hardness testers (Rockwell, Brinell), metallurgical microscopes, and micro-hardness testing, certifying the microstructures of your critical parts.
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