Metal
Materion Brush Performance Alloys’ BrushForm® 158 Strip is a high-performance, heat treatable spinodal copper nickel tin alloy designed to provide optimal formability and strength characteristics in conductive spring applications such as electronic connectors, switches, and sensors. The higher stren
Materion Brush Performance Alloys’ BrushForm® 158 Strip is a high-performance, heat treatable spinodal copper nickel tin alloy designed to provide optimal formability and strength characteristics in conductive spring applications such as electronic connectors, switches, and sensors. The higher stren
Materion Brush Performance Alloys’ BrushForm® 158 Strip is a high-performance, heat treatable spinodal copper nickel tin alloy designed to provide optimal formability and strength characteristics in conductive spring applications such as electronic connectors, switches, and sensors. The higher stren
ToughMet 3 AT alloy is a wrought, spinodally hardened copper alloy engineered for high strength and hardness. It resists mechanical wear, galling, stress relaxation, corrosion and erosion. ToughMet 3 alloy retains its strength at elevated temperature. It is non-magnetic and easy to machine into comp
ToughMet Alloy is Materion Performance Alloys’ solution to your severe service material problems. By application of our proprietary process to implement the EquaCast® Microstructure, tailored alloying additions and spinodal hardening technology, we have engineered ToughMet alloy to provide attribute
ToughMet 3 AT alloy is a wrought, spinodally hardened copper alloy engineered for high strength and hardness. It resists mechanical wear, galling, stress relaxation, corrosion and erosion. ToughMet 3 alloy retains its strength at elevated temperature. It is non-magnetic and easy to machine into comp
ToughMet 3 AT alloy is a wrought, spinodally hardened copper alloy engineered for high strength and hardness. It resists mechanical wear, galling, stress relaxation, corrosion and erosion. ToughMet 3 alloy retains its strength at elevated temperature. It is non-magnetic and easy to machine into comp
ToughMet 3 AT alloy is a wrought, spinodally hardened copper alloy engineered for high strength and hardness. It resists mechanical wear, galling, stress relaxation, corrosion and erosion. ToughMet 3 alloy retains its strength at elevated temperature. It is non-magnetic and easy to machine into comp
ToughMet 3 AT alloy is a wrought, spinodally hardened copper alloy engineered for high strength and hardness. It resists mechanical wear, galling, stress relaxation, corrosion and erosion. ToughMet 3 alloy retains its strength at elevated temperature. It is non-magnetic and easy to machine into comp
The material 1.4571 is an austenitic chromium-nickel steel with very good corrosion resistance.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C8 g/cm³MechanicalPropertyTemperatureValueCommentElastic modulus23.0 °C200 GPaElongation A523.0 °C28 %min.Hardness, Brinell23.0 °C215 [-]max.Tensile st
The material 1.4526 is a ferritic chrome-molybdenum steel with very good resistance to pitting corrosion. Due to its good mechanical properties, this material is mainly used in the automotive industry.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C7.7 g/cm³MechanicalPropertyTemperatureValueC
Good formability.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.71 g/cm³DimensionPropertyValueThickness0.18 - 0.35 mmMechanicalPropertyTemperatureValueCommentElastic modulus23.0 °C68.6 GPaElongation A5023.0 °C2 %according to EN 485-2Shear modulus23.0 °C25.73 GPaTensile strength23.0 °C120 -
High strength when compared to 1xxx in foil app. Alloy 8006 can be welded, adhesive bonded, and formed easily. It offers a useful combination of strength and ductility at room temperature while retaining its strength at elevated temperatures.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.7
High strength when compared to 1xxx in foil app. Alloy 8006 can be welded, adhesive bonded, and formed easily. It offers a useful combination of strength and ductility at room temperature while retaining its strength at elevated temperatures.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.7
Universal work hardening alloy offering medium strength, very good formability, and very good corrosion resistance. Good durability properties.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.69 g/cm³DimensionPropertyValueThickness0.2 - 3 mmMechanicalPropertyTemperatureValueBending angle 180
Universal work hardening alloy offering medium strength, very good formability, and very good corrosion resistance. Good durability properties.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.69 g/cm³DimensionPropertyValueThickness0.2 - 3 mmMechanicalPropertyTemperatureValueBending angle 180
Universal work hardening alloy offering medium strength, very good formability, and very good corrosion resistance. Good durability properties.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.69 g/cm³DimensionPropertyValueThickness0.2 - 3 mmMechanicalPropertyTemperatureValueBending angle 180
A low to medium strength alloy with good corrosion resistance.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.71 g/cm³DimensionPropertyValueThickness0.18 - 0.3 mmMechanicalPropertyTemperatureValueElastic modulus23.0 °C69 GPaShear modulus23.0 °C26 GPaTensile strength23.0 °C150 - 240 MPaYield
Excellent electrical conductivity.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.69 g/cm³DimensionPropertyValueThickness0.2 - 3 mmMechanicalPropertyTemperatureValueBending angle 180°23.0 °C0 °/tBending angle 90°23.0 °C0 °/tElastic modulus23.0 °C70 GPaShear modulus23.0 °C26.5 GPaThermalProp
Excellent electrical conductivity.PropertiesGeneralPropertyTemperatureValueDensity23.0 °C2.69 g/cm³DimensionPropertyValueThickness0.2 - 3 mmMechanicalPropertyTemperatureValueBending angle 180°23.0 °C0 °/tBending angle 90°23.0 °C0 °/tElastic modulus23.0 °C70 GPaShear modulus23.0 °C26.5 GPaThermalProp
Metal
Precision High‑Speed Machining of Aluminum Milling Parts
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High‑Efficiency All‑Dielectric Phase‑Gradient Metasurface for Near‑Infrared Anomalous Transmission
HIPS Filament vs PLA, PETG, ABS: Which Is Best for 3D Printing?