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꧁Free samples & free shipping from 45€

BVOH Natural - Water Soluble Support Filament

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Original price 76,58 €
Original price 76,58 € - Original price 76,58 €
Original price 76,58 €
Current price 67,51 €
67,51 € - 67,51 €
Current price 67,51 €
500.0g | 13,50 € / 100g

inkl. gesetzl. MwSt. zzgl. Versandkosten

Versandzeit: 2-3 business days

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BVOH Natural is a water-soluble support filament for Dual Extruder 3D printers. The water-soluble support filament (BVOH Natural) is an excellent plastic for objects with complex structures or moving parts.

Fiberlogy BVOH filament is a butene diol vinyl alcohol copolymer. Fiberlogy BVOH filament is easy to process and, due to its high processing temperature of up to 230 °C, is ideal as a carrier material for materials such as PLA, ABS, PET-G, ASA, nylon and elastomers.

Contents: 500g
Diameter: 1.75mm
Product Types: PVA & support material
Color: Nature
net weight: 500g
Recommended printing temperature: 190 - 220 ° C
Recommended heating bed temperature: 50 - 70 ° C

complex structures

Fiberlogy BVOH filament is a butene diol vinyl alcohol copolymer. This allows perfect prototypes, complex structures and moving mechanisms to be printed. It is particularly useful when traditional support materials are difficult to remove or are insufficient to achieve a satisfactory final print result. With BVOH, printing highly complex 3D objects is extremely easy.

Support structures made with BVOH filaments are very easy to remove. After you've printed a 3D model, simply place it in warm water. The carrier filament then dissolves completely. This results in the actual model being of significantly better quality than supports that have to be broken out.

The BVOH filament can be used with printers with a dual extruder. It is characterized by high adhesion to various materials. It can be combined with common materials like PLA, ABS, PET-G, ASA, Nylon, elastic filaments (e.g. TPU), etc.

Note: The filament should be stored in a dry place, e.g. in a sealed bag, to avoid wetting the material and the consequent deterioration of its properties.