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ProArt CAD Transfer

IVO_686140
27.54 Excl. VAT (33.32 Incl. VAT)
Order collection in office. Same or next working day. At no cost.
Standard delivery in the Baltic (LV; LT; EE)
1-2 working days
:
EUR 5 on orders below EUR 65 (excl. VAT). Free on orders over EUR 65 (excl. VAT).
Standard delivery to all other EU states
4-5 working days
:
EUR 30 on orders below EUR 300 (excl. VAT). Free on orders over EUR 300 (excl. VAT).
Cyprus € 65 on orders below € 1000 (excl. VAT).
€ 40 on orders over € 1000 (excl. VAT).
Delivery to preferred Omniva or DPD Parcelshop in EE, LV, LT
1-2 working days
:
EUR 4 on orders below EUR 50 to LV (excl. VAT). Free on orders over EUR 50 (excl. VAT).
EUR 6 on orders below EUR 80 to EE and LT (excl. VAT). Free on orders over EUR 80 (excl. VAT).
Fast delivery
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Full product description

98.5-10mm/2


The process-supporting ProArt CAD discs serve to transform conventional working steps in the laboratory into entirely digital processes. The dimensionally stable polymer and wax discs are easy to mill. As CAD/CAM auxiliary materials, they cover a wide range of indications.

ProArt CAD Transfer
are discs made from polyoxymethylene (POM), which are suitable for the productions of transfer templates. They enable artificial, pre-fabricated teeth to be cemented into a CAD/CAM-produced denture base. This allows you to determine the ideal position of the teeth.


The benefits of ProArt CAD materials:

Precise preparation

The more precise the preparation, the better the result. As a CAD/CAM auxiliary material, ProArt CAD provides support during the different working steps that are necessary to achieve highly esthetic restorations.

A wide range of indications

The ProArt CAD polymer materials cover a wide range of applications. The advantage: The discs also remain dimensionally stable during complex processing, so that the object dimensions remain exactly the same.

Quick and clean

Due to simple material processing, you will receive precise results within a short space of time. And your CAM unit also benefits from good millability, because the even chip formation reduces the contamination of the machine.

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