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IFUN: Dental Model Resin 3160 3D printing specs and HDT

IFUN Unknown
Overview
IFUN has announced a comprehensive range of dental 3D printing resins, highlighted by its high-precision photopolymer “Dental Model Resin 3160,” achieving a 120°C heat deflection temperature (HDT) and ultra-low shrinkage of less than 0.5%. Additionally, “Gingiva Mask Resin 3161,” a flexible elastomer with a Shore A hardness of 50-60A, was introduced to accurately simulate gingival compliance. These new materials are poised to significantly advance the precision and versatility of digital dentistry.
In Depth

Key Findings

IFUN has introduced a comprehensive lineup of specialized 3D printing resins tailored for the digital dentistry market. Among these, the high-precision photopolymer “Dental Model Resin 3160” stands out, achieving an impressive heat deflection temperature (HDT) of 120°C and an ultra-low shrinkage rate of less than 0.5%, demonstrating superior thermoforming capabilities and dimensional stability. Furthermore, the introduction of “Gingiva Mask Resin 3161,” a flexible elastomer with a Shore A hardness of 50-60A, now allows for accurate simulation of gingival compliance.

Technical/Clinical Details

The primary advantage of “Dental Model Resin 3160” lies in its exceptional precision and heat resistance. Unlike conventional dental model resins that risk distortion during thermoforming processes, its high HDT of 120°C minimizes model deformation during the production of thermoformed clear aligners or splints, ensuring a precise fit. The low shrinkage rate of less than 0.5% guarantees high fidelity with digital designs based on scan data, directly translating to improved accuracy of final restorations. Concurrently, “Gingiva Mask Resin 3161” was developed as an elastomeric photopolymer to replicate the tactile sensation and flexibility of natural gingiva. Its Shore A hardness of 50-60A enables accurate reproduction of subgingival margins and realistic simulation of gingival compression during prosthesis placement, allowing technicians to design and adjust prostheses in a clinically relevant manner. This significantly enhances the functionality, aesthetics, and fit of final prostheses.

Background & Context

Digital dentistry has rapidly gained traction, driven by advancements in intraoral scanners, CAD/CAM systems, and 3D printing technology. This evolution streamlines workflows from patient diagnosis to treatment and prosthesis fabrication, improving treatment predictability and accuracy. IFUN’s newly announced materials address specific challenges faced by dental laboratories and clinics, such as the need for high-precision model creation, stability during thermoforming, and realistic gingival simulation. In the competitive digital dental materials market, these characteristics serve as key differentiators, vital for establishing market leadership.

Strategic Significance & Outlook

The introduction of IFUN’s new dental resins significantly expands the possibilities of digital dentistry, opening doors for addressing more complex cases and advanced treatment planning. These high-performance materials are expected to contribute to enhanced accuracy in surgical guides for implantology, precise fine-tuning of final restorations in aesthetic dentistry, and increased efficiency in aligner production for orthodontics. The synergy of materials science and 3D printing technology promises a future where more comfortable and high-quality dental treatments are delivered to patients.

Source: https://ifun3d.com/dental-3d-resins

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