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*Presentation of Case Studies* *New Material! PA6 Resin with Glass Fibers for 3D Printers*

Introducing the 3D printer spherical PA6 particles "Trepal® PA6 (glass fiber) resin," which excels in strength, heat resistance, and surface smoothness!

◆ Features ◆ - High surface smoothness after molding, allowing for reduced finishing time in post-processing. ◆ Molding Method ◆ - PBF method ◇ Recommended for customers with such challenges! ◇ - The 3D printer material "Nylon 12" used in SLS methods has low strength and heat resistance, making it unsuitable for evaluation prototypes. - Desire to shorten surface finishing time for powder sintering additive manufacturing, etc. * There are also increasing examples of adopting PPS resin molding using the same PBF method! ↓ The latest adoption examples of PPS resin molding can be found here. Insulating parts for transformers https://www.yasojima.co.jp/field-vehicle/insulating_parts/ Impellers https://www.yasojima.co.jp/field-vehicle/impeller/ Insulators https://www.yasojima.co.jp/field-vehicle/insulator/

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Attention those struggling with nylon shortages! Introduction of 3D printer utilization examples.

For those struggling with molded products due to the global nylon shortage, 3D printing is possible using nylon 12.

We have adopted a powdered type of "Nylon 12" as an alternative to Nylon 6 and Nylon 66, which can be shaped using a 3D printer. - Raw materials are difficult to obtain, and we are looking for alternative materials within the same nylon family. - We would like to obtain prototypes within 1 to 2 weeks. - For mass production quantities of 100 to 500 units per year, using molds is not cost-effective. - Due to the complexity of the shapes, machining costs would be high. If you are facing such challenges, we recommend Nylon 12 using the PBF method. 【Features of Nylon 12】 ■ Tough and resistant to cracking ■ Can be shaped without supports, allowing for complex shapes ■ Movable parts can be produced without assembly ■ Can be designed to match the shape, operation, and mounting mechanisms of the workpiece, allowing for small-scale production 【Solution Examples】 ■ Cost reduction for functional evaluation prototypes ■ Quick procurement of parts ■ Cost reduction for low-volume, high-variety final products ■ Supply of discontinued parts *For more details, please download the PDF materials or feel free to contact us.

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Rapid realization of product development through material selection and engineering.

Support from medical materials and design to prototype verification and mass production, all in one.

Our company is engaged in the manufacturing of medical devices and also handles medical materials primarily made from resin. We offer a wide range of biocompatible resins, including implant-grade, short-term contact grade, and other materials suitable for sterilization. As various conditions such as the class of medical devices, usage environment, and sterilization requirements overlap, the hurdles for obtaining materials increase. Consequently, we have seen a growing number of inquiries starting from material selection, and we can propose materials tailored to specific applications. Additionally, by being involved from the design and development stage, we support manufacturing that considers the production methods and costs of the final product. We utilize the latest technologies such as 3D printers and 3D/CT scanning for design, prototyping, and verification, providing services to realize product commercialization more quickly and reliably.

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