[[getgrants 19]]

I highlighted the Knowledge Graph in orange, the local pack in green, additional search features in red, and the ad in yellow. Let's take a look at each element.

Support structure
The support structure is essential for creating overlays in FDM. Melted thermoplastic cannot be deposited on thin air. For this reason, some geometries require a supporting structure.

Surfaces printed on the media will generally be of lower surface quality than the rest of the workpiece. For this reason, it is recommended that the part be designed to minimize the need for support. 

The media is usually printed on the same material as the piece. Liquid-dissolving backing materials also exist, but are mostly used in desktops or industrial 3D FDM printers. Printing on soluble media significantly improves the quality of the workpiece surface, but increases the overall cost of printing because a specialized machine (with double extrusion) is required and because the cost of the soluble material is relatively high.


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Infill & Shell Thickness
FDM parts are not usually printed to reduce printing time and save material. Instead, the outer perimeter is drawn using several passes, called shells, and the inside is filled with a low-density internal structure called the filler.

The filling and the thickness of the coating greatly affect the strength of a part. For FDM desktop printers, the default setting is 25% fill density and 1mm shell thickness, which is a good compromise between strength and speed for fast printing.

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Common FDM materials
One of the strengths of FDM is the wide range of materials available. These can range from basic thermoplastics (such as PLA and ABS) to engineering materials (such as PA, TPU and PETG) and high performance thermoplastics (such as PEEK and PEI).

The material used will affect the mechanical properties and accuracy of the printed part, but also its price. The most common FDM materials are summarized in the table below. 
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