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Plastics and Resins for 3D Printing

Plastics & Resins for 3D Printing Technologies

Resins & Plastics
Different Use, Different Technologies

As 3D printing technology advances, a myriad of different plastic materials have been introduced to meet the varying needs of product design and manufacturing. There are lots of plastic materials for use in different areas, like part for aesthetic models, rapid prototyping, dentistry, and replacements directly applied to industry. Moreover, to achieve the specific needs you should also know about the different technologies of 3D printing, SLS, SLA, DLP, and FDM are the common used methods to build plastic models.

Selecting the right materials for plastic 3d printing is a complex task that requires considering various factors such as the properties of the material, the functionality of the printed part, the printer's capabilities, and the printing environment. But don't worry about that, you can always find proper solutions for these at LUSHI.

Available plastic materials

Selecting the right materials for 3D printed parts and rapid prototyping. LUSHI offers a broad wide choices of high-performance additive polymers and resins to meet your specific requirements.
We offer you strong support in choosing appropriate plastics or resins for 3D printing that comply with your design parameters and production requirements. Benefit from our vast expertise and high-quality 3D printing materials.

Thermoplastics

Thermoplastics are a popular and diverse group of materials for 3D printing due to their adjustable properties. They include materials such as PLA, ABS, PETG, and Nylon, each with their own unique benefits. For example, PLA is biodegradable, making it an eco-friendly choice, while ABS offers durability and resistance to high temperatures. Their versatility in terms of layer adhesion, tensile strength, and post-processing techniques make thermoplastics widely utilized in both personal and commercial 3D printing applications.

Thermosetting plastics

Thermosetting plastics represent a significant development in the field of 3D printing, providing robustness and heat resistance suitable for advanced manufacturing requirements. Unlike thermoplastics, thermosetting polymers cure and harden permanently under high temperature or specific curing conditions, leading to a 3D printed object with superior mechanical properties. This innovation opens avenues for broad applications, including automotive, aerospace, and telecommunications equipment, enabling the printing of structurally resilient and long-lasting components.

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