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3D Printing Certification

Fit acquires Incredibly hot Isostatic Pressing equipment for article-processing 3D printed steel


FIT Additive Manufacturing Group has obtained a Very hot Isostatic Pressing (HIP) machine from Quintus Systems, a Swedish superior tension technology expert.  

The HIP device will make sure that soon after article-processing, 3D printed metal components move the good quality assurance exams as smoothly as attainable. 

Carl Fruth, CEO FIT AG, discussed,  “We have evaluated the necessities of 250 worldwide industrial prospects for 5 years, and HIP turned out as an reply to several excellent difficulties. The results that can be attained by combining AM and HPHT are highly encouraging. It’s beyond all question that our customers will benefit strongly by this partnership.”

“I even think that all additive serial production will expertise a major enhance when integrating HPHT as a article-processing service”

Hot Isostatic Pressing by Quintus Technologies

Acquiring In good shape

Primarily based in Bavaria, Fruth Revolutionary Technologien (Fit) was established in 1995, by Carl Fruth, a previous software Engineer at EOS. In shape is also the former mum or dad company of Netfabb, a 3D printing certification computer software now owned by Autodesk.

Together with Germany, In shape has operations in 4 international locations, U.S, Japan, Romania, and Russia, the place In good shape also established the corporation FITNIK, a collaboration with the Russian aerospace engineering enterprise NIK Ltd.

In good shape mainly specializes in metallic 3D printing certification and has devices from industrial companies like, EOS, SLM Resolution, Arcam AB, Voxeljet, and Sintermask, which was obtained by Fit in 2008.

FIT's Additive Manufacturing certification Centre. Photo via FIT.
FIT’s Additive Production certification Centre.

Write-up-processing metal 3D sections

Powder mattress fusion is just one of the most widely used metallic 3D printing certification processes. A high vitality laser beam is fired on to a mattress of metal powder, which produces a soften pool and then cools down to variety a solid layer. This approach proceeds until a total 3D model is shaped.

One of the issues linked with this approach is forming of pores and keyholes in the metal section which could weaken its power. Pores in a 3D printed metal component could variety if the laser temperature is way too superior. This results in the powder particles to penetrate the layer underneath.

To rid the metallic element of these deficiencies, a submit-processing method like HIP is vital to make certain that the element is mechanically match for the objective it was made for. On top of that, HIP processing also increases the density and tiredness resistance capacity of the component. 

On the acquisition of the HPHT machine by Fit and what positive aspects it could carry, Jan Söderström, CEO of Quintus Systems, explained, “We have substantial anticipations in the industrialization of HPHT put up-processing by primary AM professional Match Additive Producing certification Team.”

“The in general optimization of approach parameters and materials-distinct warmth treatment method parameters in an in-line, lean-process manufacturing will guide to a new higher-good quality benchmark even though lessening charges.”  

A metal 3D printed part after HIP post-processing. Image via FIT.
A metal 3D printed part just after HIP post-processing.

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Highlighted image demonstrates a metal 3D printed element right after HIP put up-processing. Graphic via Fit.