DEMI-Series
The PostProcess DEMI-Series (DEMI 400™, DEMI X 520, DEMI 800™, and DEMI 4000™) due to its automated, software-driven IPA-free resin and support removal for various 3D printing technologies is perfect match for medical and dental professionals, labs, and medical device companies. It reduces manual labor, and maintains compliance with healthcare industry standards.
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Submersed Vortex Cavitation (Resin Removal) Post-Processing Technology
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355 x 355 x 355 mm - 890 x 890 x 635 mm Chamber Dimension
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64 liters - 984 liters Consumable Capacity
Advanced and Automated
Advanced automated post-processing designed especially for the demanding needs of dentistry and medical applications is where the PostProcess DEMI-Series shines.These systems make use of software-driven procedures and unique Submersed Vortex Cavitation (SVC) technology which combines proprietary detergents, a vortex pumping scheme, variable ultrasonics, and AUTOMAT3D software to create a controlled environment where parts are uniformly exposed to cleaning agents and cavitation, ensuring efficient and consistent removal of supports and excess resin without damaging the parts. With the newest addition to the DEMI-Series, the DEMI X 520 is the only one that comes with an Axial Flow Technology™ where flow can actually be adjusted for added controlled and uniform exposure to cleaning agents.
The DEMI-Series systems' automated features drastically cut down on manual work, lowering the possibility of human error and guaranteeing consistent outcomes between batches. Maintaining this uniformity is crucial to fulfilling the strict regulations and industry standards of the healthcare field. Process intricate medical implants, surgical guides, detailed dental models and many more without compromising their structural integrity.
Biocompatible Detergents
In dentistry and medical situations where chemical safety is critical, the DEMI-Series offers safer, IPA-free resin removal solutions. By using unique, biocompatible detergents that meet ISO criteria for medical applications, these systems make sure that the end product is free of pollutants and hazardous residues from post-processing chemicals. This characteristic guarantees that the final products fulfill the stringent requirements for usage in medical and dental operations, while also improving worker safety by lowering exposure to potentially hazardous solvents.
These systems are adaptable for a variety of medical and dental applications due to their capacity to process a broad range of materials, such as ordinary resins, ceramic-filled resins, and high-temperature resins.
Comes in all Sizes
The DEMI-Series responds to the increasing need for fast dental appliance production and personalized medical solutions. Small clinics, major hospitals, and industrial-scale medical device manufacturers can all benefit from these systems' processing capacities, which range from the small-scale DEMI 400 to the large-scale DEMI 4000. The dimensions on the DEMI’s envelope workspace and footprint are as follows:
- DEMI 400™ - 355 x 355 x 355 mm / 736 x 914 x 109.2 mm
- DEMI X 520 - 360 x 360 x 380 mm / 820 x 640 x 1,700 mm
- DEMI 800™ - 460 x 460 x 460 mm / 880 x 1,100 x 1,520 mm
- DEMI 800™ - 890 x 890 x 635 mm / 2,262 x 1,266 x 2,228 mm
A future-proof solution for changing medical manufacturing needs, the DEMI-Series' scalability also allows medical facilities to begin with smaller units and increase their post-processing capabilities as their production needs increase.
Precise Control
Intelligent software features that optimize the post-processing workflow are incorporated into the DEMI-Series. Processing parameters can be precisely controlled with the AUTOMAT3D software platform. Maintaining the integrity of intricate geometries frequently seen in medical and dental models, such as patient-specific implants or intricate anatomical representations used in surgical planning, requires this degree of control.
Healthcare practitioners can attain the best outcomes for every application by using the software's ability to adjust settings based on part geometry, material attributes, and desired finish quality.
Furthermore, the systems' ability to deliver repeatable production and data-driven precision is a perfect fit with the need for documentation and traceability in medical manufacturing. By making FDA clearances and quality assurance procedures easier, this feature aids with regulatory compliance initiatives. The extensive data logging and reporting features also support efforts for continuous improvement and process validation, both of which are essential in the rapidly changing medical technology sector.
Applications
Dental Prosthetics and Orthodontics
Post-process 3D printed dental models, aligners, dentures, and other orthodontic appliances to ensure consistent, high-quality finishing of these delicate dental parts.
Custom Medical Implants and Devices
Support and resin remove intricate geometries often found in patient-specific designs and ensure optimal finishing for a wide range of materials used in custom medical applications.
Surgical Guides and Anatomical Models
Post-process 3D printed surgical guides and anatomical models used in preoperative planning to produce accurate, sterilizable guides and models.
Medical Research and Prototyping
Post-process prototypes and research models using an automated workflow and data logging to support the stringent documentation requirements in medical research and development.
Compatible Materials
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