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Polymer Additive

ABSi

ABSi is a durable and versatile thermoplastic used in FDM (Fused Deposition Modeling) 3D printing.

Material Overview

Its unique translucent properties make it ideal for applications requiring light transmission and visibility, such as functional prototypes and automotive lighting lenses. ABSi combines strength and clarity, making it an excellent choice for creating parts that need to be both visually transparent and mechanically robust.

Key Features:

  • Translucent Properties: Allows for visibility of internal components or light transmission, making it perfect for applications where monitoring material flow or light diffusion is critical.
  • Strong and Durable: Maintains the toughness and mechanical strength expected from ABS materials, ensuring long-lasting, reliable parts.
  • Versatile Material: Suitable for a variety of industries, from automotive to consumer products, where both functionality and aesthetics are important.

Color Options: Transulcent, Transulcent Red, Transulcent Amber and Transulcent Natural

PropertyASTMMetric Units
Tensile StrengthD638M37 MPa
Modulus of Elasticity, Youngs ModulusD638M1,920 MPa
Elongation at Break (%)D638M4.4%
Flexural StrengthD790M62 MPa
Flexural ModulusD790M1,920 MPa
IZOD Impact (notched)D256A96.4 J/m
Heat Deflection Temperature at .45 MPa/66 psi (°C)D64886 °C
Technology:

FDM

Fused Deposition Modeling (FDM) uses a heated filament, like ABS or PLA, which is extruded through a nozzle that follows a programmed path to deposit material layer by layer on a build platform. The thermoplastics used in FDM create strong, durable parts that can endure mechanical stress. Its use of standard materials makes it a cost-effective choice for prototyping and low-volume production.

Applications:

Translucent Thermoplastic

  • Functional Prototypes: Develop durable, translucent prototypes for testing form, fit, and function, particularly for applications requiring visibility of internal components.
  • Automotive Lighting Lenses: Ideal for producing lenses that require light transmission, such as those used in automotive lighting systems.

Advantages of ABSi:

  • Translucency: ABSi’s translucent properties allow for visibility of internal components and light transmission, making it ideal for applications like automotive lighting lenses and other parts where monitoring material flow or light diffusion is important.
  • Durability: Like standard ABS, ABSi is strong and durable, offering reliable mechanical performance for functional prototypes and end-use parts that need to withstand stress and wear.
  • Versatility: Suitable for a wide range of applications across industries, including automotive, consumer goods, and industrial sectors, especially for parts where transparency and durability are essential.
  • Impact Resistance: ABSi maintains the impact resistance typically associated with ABS materials, making it ideal for parts that must endure physical stress without compromising strength.
  • Smooth Surface Finish: ABSi produces parts with a smooth finish, reducing the need for post-processing and giving the final part a professional appearance.

Disadvantages of ABSi:

  • Limited Color Options: ABSi is only available in translucent colors (Translucent, Translucent Red, Translucent Amber, Translucent Natural), which may limit its use in applications requiring a wider range of color choices.
  • Printability: Like other ABS materials, ABSi can be prone to warping and may require a heated bed or enclosed chamber for optimal printing results. It also requires more precise temperature control during printing.
  • Moisture Sensitivity: ABSi, like most ABS-based materials, is hygroscopic and can absorb moisture from the air, potentially affecting print quality if not stored properly in a dry environment.
  • Limited Heat Resistance: Although durable, ABSi does not offer the same level of heat resistance as more specialized thermoplastics like polycarbonate, which may limit its use in high-temperature environments.

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