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CRP  Windform

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CRP Technology Windform® P1 Polyamide for High Speed Sintering (HSS)
Categories: Polymer; 3D Printing/Additive Manufacturing Polymer; Thermoplastic; Nylon (Polyamide PA)

Material Notes: CRP Technology Windform® P1 polyamide is an isotropic material for HSS. The High Speed Sintering (HSS) process enables production of small 3D printed functional and design parts with quality and properties are similar to injection molding.

Windform® P1 is a PA material with superior mechanical properties, isotropic, from the Windform® P-LINE family of materials for high speed production-grade 3D printing

Windform® P1 is an isotropic material (X, Y, Z axis) with high flexibility; insulation (CTI rating of 600); full density; high recyclability.

It has been engineered for a faster production of small end-use parts in higher volumes at lower cost, with detailed surface resolution. The quality and properties are similar to injection molding.

Applications: Windform® P1 offers potential for applications in the automotive (interior design, ventilation flaps, steering wheel paddle shifters), electrical (connectors, enclosures, housing for electronics), consumer and household goods (packaging and design), industrial products (interior fittings, furniture parts, mock-up), and medical (orthesis, soles) industries.

Information provided by CRP Technology.

Vendors:   About CRP Technology
CRP Technology (Modena, Italy) develops, manufactures and sells its proprietary high performance composite materials Windform® for professional 3D Printing. It is also distinguished by its know-how in Selective Laser Sintering technology. It offers part production for short- and low-run production, and prototyping services with Windform®. Its specific application fields including but are not limited to: automotive and motorsports, design, aerospace, UAVs, marine, entertainment, defense, and packaging.

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Physical PropertiesOriginal ValueComments
Density 1.02 g/cc
 
Mechanical PropertiesOriginal ValueComments
Hardness, Shore D 77UNI EN ISO 868
Tensile Strength at Break 48.72 MPaX Axis; UNI EN ISO 527-1
 49.56 MPaY Axis; UNI EN ISO 527-1
 49.84 MPaZ Axis; UNI EN ISO 527-1
Elongation at Break 9.8 %Z Axis; UNI EN ISO 527-1
 13.64 %X Axis; UNI EN ISO 527-1
 17.66 %Y Axis; UNI EN ISO 527-1
Tensile Modulus 1.943 GPaY Axis; UNI EN ISO 527-1
 1.960 GPaX Axis; UNI EN ISO 527-1
 2.055 GPaZ Axis; UNI EN ISO 527-1
Flexural Strength 73.30 MPaUNI EN ISO 14125
Flexural Modulus 1.734 GPaUNI EN ISO 14125
Charpy Impact Unnotched 3.69 J/cm²
@Temperature 23.0 °C
UNI EN ISO 179-1
 3.78 J/cm²
@Temperature -40.0 °C
UNI EN ISO 179-1
Charpy Impact, Notched 0.660 J/cm²
@Temperature -40.0 °C
UNI EN ISO 179-1
 0.890 J/cm²
@Temperature 23.0 °C
UNI EN ISO 179-1
 
Electrical PropertiesOriginal ValueComments
Volume Resistivity 9.4e+14 ohm-cmASTM D257-14
Surface Resistance 2.4e+16 ohmASTM D257-14
Comparative Tracking Index 600 VIEC 60112 Solution A
 
Thermal PropertiesOriginal ValueComments
Melting Point 182 °CISO 11357
Deflection Temperature at 1.8 MPa (264 psi) 88.7 °CISO 75 Method A
Vicat Softening Point 177.2 °C10 N; ISO 306 Method A50
 
Descriptive Properties
ColorDark Grey
Specific Flexural Modulus1700 MPa/(g/cc)Flexural Modulus per density unit
Specific Flexural Strength71.86 MPa/(g/cc)Flexural Strength per density unit
Specific Tensile Modulus1922 MPa/(g/cc)Tensile Modulus per density unit
Specific Tensile Strength47.76 MPa/(g/cc)UTS per density unit
Surface Finish0.43 Ra µmAfter CNC machining
 1.89 Ra µmAfter Manual Finishing
 8.86 Ra µmAfter SLS Process

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