Description

EnvisionTEC�s Press-E-Cast is a wax-filled photopolymer material designed. Press-E-Cast produces highly detailed anatomy with crisp features. Its stiffness allows for the production of copings with extremely thin margins as well as full anatomical crowns. It is also possible to produce a perfectly fitting multiple unit bridge up to 16 units. Press-E-Cast has a very low thermal expansion during burnout and produces a high quality surface finish on cast or pressed parts. It is the only photopolymer-based material that actually melts during the burnout cycle, allowing for the material to melt out of the investment without leaving any ash residue which is a common problem associated with the burning of photopolymers used in competing technologies. Low material expansion allows the dental lab to rapid burnout and cast with any dental alloy avoiding flash due to micro-cracking in the investment. Pressing or casting in any material works well with conventional spruing techniques and investments. Average build times are under 2.5 hours for a full platform which allows the lab to produce several builds in an 8 hour shift. Unattended production means the machine can work while you are away. It will even turn itself off after completing a build.

Additional information

Specification: Press-E-Cast

Header

Press-E-Cast

Brand

EnvisionTec

Material name

Press-E-Cast

Technology

SLA / DLP

How it comes

Resin

Properties

3D Printer Resins

General material type

Resin

Material group specific material type

Castable Resin

Colour

Orange

Datasheet

https://dl.airtable.com/bebtI0SZSIOsOftlVQug_MK-MTS-PressECast-V01-FN-EN.pdf

Elongation at break xy

4

Flexural strength xy in mpa

115

Flexural modulus xy in mpa

3350

Legal disclaimer

3DC LTD is not liable for the accuracy of the information contained within this database. Please consult directly with the relevant machine and/or material manufacturers before determining fitness for a particular use.

Legal Disclaimer

3DC LTD is not liable for the accuracy of the information contained within this database. Please consult directly with the relevant machine and/or material manufacturers before determining fitness for a particular use.
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