3D PRINT METAL WITH 

METHOD Logo large

3D PRINT METAL WITH 

METHOD Logo large

Metal 3D Printing on the METHOD Platform

Method X 3D Printer for metal

MAKERBOT METHOD

Industrial 3D Printing, Desktop Accessibility

Print metals, polymers, and composites all on one machine leveraging the most advanced features available on a desktop 3D printer.

LABS Gen2 Experimental Extruder for METHOD

LABS GEN 2

Experimental Extruder

The LABS GEN 2 Experimental Extruder allows you to print more abrasive 3rd-party composites and metals for longer thanks to hardened-steel components.

BASF 3D Printing fillament for METHOD

MATERIAL

BASF ULTRAFUSE 316L | Stainless Steel

BASF Ultrafuse 316L Stainless Steel parts combine the next level strength, rigidity, and durability needed for end-use parts and manufacturing tools.

Metal 3D Printing on the METHOD Platform

Method X 3D Printer for metal

Makerbot METHOD

Industrial 3D Printing, Desktop Accessibility

Print metals, polymers, and composites all on one machine leveraging the most advanced features available on a desktop 3D printer.

BASF 3D Printing fillament for METHOD

MATERIAL

BASF ULTRAFUSE 316L | Stainless Steel

BASF Ultrafuse 316L Stainless Steel parts combine the next level strength, rigidity, and durability needed for end-use parts and manufacturing tools.

LABS Gen2 Experimental Extruder for METHOD

LABS GEN 2

Experimental Extruder

The LABS GEN 2 Experimental Extruder allows you to print more abrasive 3rd-party composites and metals for longer thanks to hardened-steel components.

METAL 3D PRINTING PROCESS

Print

Launch your print from anywhere via MakerBot CloudPrint to your personal or team-shared METHOD 3D printer equipped with a LABS GEN 2 Extruder and BASF Ultrafuse 316L material.

Chamber Icon

60°C Circulating Heated Build Chamber
ensures maximum part density

Send in your green part

Once your “Green” part is complete, send it in to your sintering service provider such as Matterhackers where parts are debinded and sintered in a high heat, pure hydrogen atmosphere resulting in pure 316L Stainless Steel.

Temperature icon

1380°C sintering temperatures
result in parts that can withstand 550°C

Receive solid metal part

You receive the solid steel part in as little as 5 days - up to half the time and ⅕ the cost of a typical 3D printing service bureau. Install the part as needed or incorporate with other printed parts in MakerBot composites and polymers for a more dynamic assembly.

ROI Icon

Up to ½ the time and ⅕ the cost
of a leading metal 3D printing service

3D Printing processing tower - short

METAL 3D PRINTING PROCESS

Processing - Green part

Print

Launch your print from anywhere via MakerBot CloudPrint to your personal or team-shared METHOD 3D printer equipped with a LABS GEN 2 Extruder and BASF Ultrafuse 316L material.

60°C Circulating Heated Build Chamber
ensures maximum part density

Processing - Sintering

Send in your green part

Once your “Green” part is complete, send it in to your sintering service provider such as Matterhackers where parts are debinded and sintered in a high heat, pure hydrogen atmosphere resulting in pure 316L Stainless Steel.

1380°C sintering temperatures
result in parts that can withstand 550°C

Processing - Finished part

Receive solid metal part

You receive the solid steel part in as little as 5 days - up to half the time and ⅕ the cost of a typical 3D printing service bureau. Install the part as needed or incorporate with other printed parts in MakerBot composites and polymers for a more dynamic assembly.

Up to ½ the time and ⅕ the cost
of a leading metal 3D printing service

BASF-logo-grey 1

ULTRAFUSE® 316L STAINLESS STEEL

Print solid metal parts on METHOD

BASF Ultrafuse 316L Stainless Steel parts combine the next level strength, rigidity, and durability needed for end-use parts and manufacturing tools.

550° C

Max Temperature

561 Mpa

Tensile Strength

128 HV10

Hardness

BASF-logo-grey 1

ULTRAFUSE® 316L STAINLESS STEEL

Print solid metal parts on METHOD

BASF Ultrafuse 316L Stainless Steel parts combine the next level strength, rigidity, and durability needed for end-use parts and manufacturing tools.

550° C 561 Mpa 128 HV10
Max Temperature Tensile Strength Hardness
METHOD PLATFORM LOGO

Print Metals, Composites, and Polymers all on one machine.

METHOD Carbon Fiber Edition
Method logo

Print Carbon Fiber and a selection of polymers with the aid of a 60°C heated chamber

METHOD X Carbon Fiber Edition
MakerBot Method X logo

Print the Full catalog of MakerBot metals, composites and polymers with superior accuracy and strength in a 110°C heated chamber.

METHOD X Carbon Fiber Edition
METHOD Carbon Fiber Logo - black transparent

Print Carbon Fiber + the full range of engineering composites and polymers with a 110°C heated chamber

METHOD X Carbon Fiber Edition
Method logo

Print Carbon Fiber and a selection of polymers with the aid of a 60°C heated chamber

Method X logo

Print Carbon Fiber and a selection of polymers with the aid of a 60°C heated chamber

METHOD Carbon Fiber Logo - black transparent

Print Carbon Fiber + the full range of engineering composites and polymers with a 110°C heated chamber

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