Carbon DLS Technology
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Ultracur3D® DMD 1005 is a cutting-edge dental resin that has emerged as a game-changer in modern dentistry. Designed to meet the demands of dental professionals, this photopolymer material offers exceptional quality, versatility, and efficiency specifically formulated for these purposes.
Ultracur3D® DMD 1005 represents a breakthrough in dental resins, providing exceptional accuracy and precision during the 3D printing process. This material is powered by Forward AM, enabling large-scale production of dental models with remarkable detail and resolution. The resin’s unique formulation and thermoforming ability ensures minimal shrinkage, allowing for the creation of highly accurate dental models and molds.
3D printed Ultracur3D® DMD 1005 parts are beige and manufactured using Liquid Crystal Display (LCD) technology, a 3D printing technique particularly adapted to mass-production. Please keep in mind that you will have to respect specific design guidelines to avoid any problems during the additive manufacturing process.
Be sure to check the material design guidelines while creating your 3D file and before you send it for 3D printing.
Easily create accurate dental models thanks to 3D visualization and the precision of additive manufacturing
Ultracur3D® DMD 1005’s thermoforming ability and high accuracy make it perfect to create dental aligners
Large production capacity
Additive manufacturing enables the large-scale production of individual dental models
The printing price of your design is calculated automatically the moment the 3D file is uploaded. As you modify your object (changing material, finishing, size, using our hollowing feature, etc.) you will note that the price changes automatically. The pricing is based on a series of factors, including total volume, object size, infill rate and bounding box – to name a few.
The estimated shipping time is also calculated automatically as the object is uploaded and each time you make a modification on it. Delivery time should be added to processing time.
For more information, please check our pricing page.
In DLP/LCD 3D printing, a digital model is sliced into layers. A vat of photosensitive resin is prepared. A projector displays each layer onto the resin surface, solidifying the exposed areas. The build plate is lowered, and the process repeats for each layer, stacking them together. Support structures may be added. After cleaning and curing, the printed object is ready. DLP 3D printing offers speed and detail.
Please note that some support scars and bumps will still be visible if your parts are left raw. This is due to the support directly contacting your parts during the printing process. The support structures are removed during the post-processing steps. Upon request, your parts can be sanded and finished by our technicians.
This means there are considerations you should keep in mind during the design of your part, to facilitate not only the successful construction of your part but also the removal of support structures and the finishing of your surfaces.
120 x 120 x 120 mm (X – Y – Z)
The maximum size of your models are limited by the physical size of our 3D printers – nothing can be printed larger than the printer bed.
Layer thickness : 100µm
Accuracy : ± 100µm (Over 90% of scanned data within +/- µm)*
* Data provided by Photocentric
|Minimum wall thickness||0.6 mm|
|Stemmed elements with support||0.6 mm|
|Stemmed elements without support||1 mm|
Angles under 45° require support structures.
Please keep in mind that surfaces that have connection with support won´t be as smooth as the surfaces without support.
Additional supports structure might be needed to prevent deformation during printing and post-processing.
Support structures on edges, holes and corners are difficult to remove and sometimes not possible.
Minimum height and width details
Embossed : 0.3 mm
|Ratio Depth / width||1/1|
|Enclosed parts ?||No|
|Interlocking parts ?||No|
Our material has the ability to print the most complex designs of our materials . An example of a complex design is a volume enclosed within another volume, like a chain or a ball joint connection. Our printers have the ability to print a fully interlocked chain, with no support structures to remove.
|Minimum spacing between fixed walls||0.4 mm|
Our online hollowing optimization tool has the ability to greatly reduce the price and the weight of a print by reducing the amount of material used.
Using the tool requires adding two holes to your model, which will serve as the drain for the excess powder material within the object. The minimum size of these holes is determined by our website. Otherwise, it is possible to hollow your object manually in your 3D modeling software.
It is not possible to print a 3D file containing several objects, that’s why we cannot accept files that contain clusters of multiple objects. However, don’t worry, this doesn’t mean you’ll pay more for your multiple objects: to reduce the 3D printing cost, we set up a different price calculation as soon as you order two or more objects with this technology.
You can also use our online tools and see our tricks and tips on how to reduce your 3D printing price.
To get more information on our additive manufacturing service, you can contact our qualified sales team.
With Sculpteo’s online 3D printing service you’re just a few clicks away from professional Ultracur3D® RG 3280 3D printing. Your 3D model is printed with the highest quality and delivered straight to your door.
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