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I tried creating a 3D model creation tool for syringes.

Just select a shape or enter a number! Creating and modifying models is easy.

As an example of parts suitable for tooling, I would like to introduce a tool developed for creating syringes, which are familiar in the medical field. Syringes come in various variations due to differences in container size, material, color, tip shape, and needle type. In this tool, you can select the container size, tip shape, and type of needle from these options. This kind of tooling can significantly reduce the man-hours required for model creation compared to manual work. Additionally, by creating models with the tool, you can standardize the creation method, making it smoother to make modifications as well. 【Features】 ■ Options to select container size, tip shape, and type of needle ■ Easy model creation and modification ■ Significant reduction in man-hours for model creation compared to manual work ■ Standardization of the model creation method *For more details, please refer to the PDF document or feel free to contact us.

  • Drawing, tracing, CAD

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Supports medical products such as syringes and drug containers, as well as automobiles! "DLC Coating"

We apply hard DLC (diamond-like carbon) through sputtering, suitable for medical supplies and automotive parts! *Demo tests are currently being conducted.

The RAM CATHODE dramatically improves the ionization rate by using a four-sided opposing target, enabling the formation of DLC (ta-C) with a DC pulse power supply without the need for HIPIMS power. 【Conventional Sputtering Method】 Due to the low ionization rate of carbon, it was necessary to use HIPIMS power to forcibly increase the ionization rate in order to obtain a hard ta-C region. 【RAM Cathode Developed by Our Company】 By arranging targets that face each other on four sides, the magnetic field between the targets enhances plasma confinement, allowing for the formation of high-density plasma. Within the confined plasma, electrons, rebounding argon, and Cflux repeatedly collide, promoting the ionization of Ar ions and Cflux, which facilitates the easy formation of C-C bonds in the DLC film. As a result, we have achieved the formation of high-hardness and high-smoothness DLC without using HIPIMS power. Additionally, since surface treatment is unnecessary, quality is improved, and time and labor costs can be reduced. *For more details, please refer to the PDF document or feel free to contact us.

  • others

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