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Preparing Future Professionals with Industrial 3D Printing

Industrial 3D printing together with career-oriented learning. Provide students with a smooth transition into the rapidly evolving workplace.

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METHOD Logo large

Preparing Future Professionals with
Industrial 3D Printing

Industrial 3D printing together with career-oriented learning. Provide students with a smooth transition into the rapidly evolving workplace.

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Pillar Professional 3D Printing

Professional 3D Printing within Student Reach.

Train Students on Professional Grade Equipment

-A professional-grade, tinker free, industrial 3D printer that provides professionals with instant feedback to go from concept to product.

-Uncompromised performance right out of the box for prototyping, concept models, end-use parts and multi-industry capabilities.

-Consistent dimensional accuracy combines with complex geometric printing capabilities that push past traditional manufacturing practices.

Pillar Carreer Readyness

Forward-Looking Career Readiness.

Paving Career Pathways with Real World Exposure

- Increase student career readiness with a 3D printer used increasingly in evolving professional settings today across multiple industries.

- Develop career skills with printer features that provide exposure to industry practices and redefine the way traditional prototyping is done.

- Advance your students’ understanding of 3D printing and test the ways they can use METHOD in learning, research and manufacturing settings.

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Pillar Open Materials

Open Materials Platform

More Materials. More Possibilities.

-Access unlimited materials with an Open Materials Platform enabled by MakerBot LABS

-Expand research development in any field with a diverse offering of advanced polymers and composites from the world’s leading materials manufacturers

-METHOD's Heated Chamber produces stronger parts than a heated build plate and expands your material capabilities

METHOD Tech Specs

TEch-specs-1

1 Based on internal testing of injection molded specimens of METHOD X ABS compared to ABS from a leading desktop 3D printer competitor. Tensile strength testing was performed according to ASTM D638 and HDT B testing according to ASTM D648.
2 ± 0.2 mm or ± 0.002 mm per mm of travel (whichever is greater). Based on internal testing of selected geometries.
3 Compared to popular desktop 3D printers when using the same layer height and infill density settings. Speed advantage dependent upon object geometry.
4 Expected total amount of testing to be completed prior to shipping.
5 Part Size: 13.7 x 15.2 x 10.2 cm  |  based on 52 parts per year average  |  prices shown in USD.
6 Cost of material plus the cost per print of the printers depreciated over a period of 3 years

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