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MakerBot 900-0064A Composite Extruder for METHOD and METHOD X 3D Printers
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MakerBot 900-0064A Composite Extruder for METHOD and METHOD X 3D Printers

MakerBot 900-0064A Composite Extruder for METHOD and METHOD X 3D Printers

The Composite Extruder for METHOD brings all the benefits of printing nylon carbon fiber parts to the MakerBot METHOD 3D printer. It is ideal for structural applications and metal replacement parts.

Strong, Heat-Resistant Metal Replacement Parts

The carbon fiber reinforced nylon is optimized for high strength, stiffness, and heat resistance making it ideal for structural applications and metal replacements. It has excellent strength to weight ratio - 110 MPa TS - for light weighting applications such as robotic end effectors. The engineering-grade stiffness - 7600 MPa Tensile Modulus is ideal for structural applications such as vehicular brackets and inspection gauges. Additionally, the high heat resistance under load – 184 degree C HDT - for optimal under-hood and tooling applications.

Superior Nylon Carbon Fiber Parts with METHOD

METHOD’s unique industrial feature set produces carbon fiber parts with superior three-dimensional strength and accuracy. METHOD’s Heated Chamber delivers parts that are strong and accurate. It has outstanding surface finish that hides layer lines thanks to METHOD’s Ultra-Rigid Metal Frame. You can print the most complex geometries including internal cavities with soluble support, or use breakaway support for faster print times. Additionally, the METHOD’s sealed filament bays help keep the material dry, resulting in better print quality and reliability, and METHOD’s pre-print spool drying feature allows for the recovery of oversaturated filament.

$129.50

Original: $369.99

-65%
MakerBot 900-0064A Composite Extruder for METHOD and METHOD X 3D Printers

$369.99

$129.50

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MakerBot 900-0064A Composite Extruder for METHOD and METHOD X 3D Printers

The Composite Extruder for METHOD brings all the benefits of printing nylon carbon fiber parts to the MakerBot METHOD 3D printer. It is ideal for structural applications and metal replacement parts.

Strong, Heat-Resistant Metal Replacement Parts

The carbon fiber reinforced nylon is optimized for high strength, stiffness, and heat resistance making it ideal for structural applications and metal replacements. It has excellent strength to weight ratio - 110 MPa TS - for light weighting applications such as robotic end effectors. The engineering-grade stiffness - 7600 MPa Tensile Modulus is ideal for structural applications such as vehicular brackets and inspection gauges. Additionally, the high heat resistance under load – 184 degree C HDT - for optimal under-hood and tooling applications.

Superior Nylon Carbon Fiber Parts with METHOD

METHOD’s unique industrial feature set produces carbon fiber parts with superior three-dimensional strength and accuracy. METHOD’s Heated Chamber delivers parts that are strong and accurate. It has outstanding surface finish that hides layer lines thanks to METHOD’s Ultra-Rigid Metal Frame. You can print the most complex geometries including internal cavities with soluble support, or use breakaway support for faster print times. Additionally, the METHOD’s sealed filament bays help keep the material dry, resulting in better print quality and reliability, and METHOD’s pre-print spool drying feature allows for the recovery of oversaturated filament.

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The Composite Extruder for METHOD brings all the benefits of printing nylon carbon fiber parts to the MakerBot METHOD 3D printer. It is ideal for structural applications and metal replacement parts.

Strong, Heat-Resistant Metal Replacement Parts

The carbon fiber reinforced nylon is optimized for high strength, stiffness, and heat resistance making it ideal for structural applications and metal replacements. It has excellent strength to weight ratio - 110 MPa TS - for light weighting applications such as robotic end effectors. The engineering-grade stiffness - 7600 MPa Tensile Modulus is ideal for structural applications such as vehicular brackets and inspection gauges. Additionally, the high heat resistance under load – 184 degree C HDT - for optimal under-hood and tooling applications.

Superior Nylon Carbon Fiber Parts with METHOD

METHOD’s unique industrial feature set produces carbon fiber parts with superior three-dimensional strength and accuracy. METHOD’s Heated Chamber delivers parts that are strong and accurate. It has outstanding surface finish that hides layer lines thanks to METHOD’s Ultra-Rigid Metal Frame. You can print the most complex geometries including internal cavities with soluble support, or use breakaway support for faster print times. Additionally, the METHOD’s sealed filament bays help keep the material dry, resulting in better print quality and reliability, and METHOD’s pre-print spool drying feature allows for the recovery of oversaturated filament.

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