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New 3D Printer Makes Fully Isotropic Parts, Virtually Eliminates Post-Processing

One of the “dirty secrets” of 3D printing is the universal need to take additional steps to render the output usable, including removing the part from its support, curing the part, or improving the surface. Aside from additional cycle time and cost, these steps often require or emit toxic chemicals, necessitating special ventilation and making them unsuitable for a standard office environment. For example, parts built with fused deposition modeling (FDM) must spend about four to eight hours in a heated, agitated sodium hydroxide bath.

GE Now a User and a Major Seller of AM Technology

General Electric Co. (Boston) has been very public about its use of additive manufacturing (AM) technology to build critical jet engine components, starting with the fuel nozzle for its LEAP engine.

SLM Solutions Group signs long-term cooperation pact with multi-machine order

LUBECK, GERMANY, June 19, 2017 – SLM Solutions Group AG, a leading supplier of metal-based additive manufacturing technology, signed a long-term cooperation agreement with BeamIT S.p.a., which is based in Fornovo di Taro, Italy. The cooperation concerns the joint development and testing of various parameters for setting the machines when using various metal powders.

New 3D Printing Methods Can Create Shape-Shifting Objects

Researchers from the Georgia Institute of Technology (Atlanta) and two other institutions have developed a new 3D printing method to create objects that can permanently transform into a range of different shapes in response to heat.

Additive Grows and Has Growing Pains

Additive manufacturing is both growing and coping with growing pains. Companies “have to find ways to streamline” polishing and other finishing processes of 3D printed parts, industry consultant Terry Wohlers said today during a speech at RAPID + TCT.

First Plastics, Then Metals and Now Composites

Impossible Objects LLC, a Chicago-based company, has brought to market a new composites material manufacturing technology known as Composite-Based Additive Manufacturing (CBAM) 3D technology which produces Carbon Fiber Reinforced Plastic (CFRP) or Polymer Matrix Composite (PMC) parts.