Product verification of 3D printers: Materials science enters the 3D era! Fully automating the tissue observation process.
It is a 3D microscope that can be applied to various materials. With computer control, it can automatically perform tissue observation, polishing, cleaning, and etching repeatedly, allowing for high-efficiency acquisition of 3D tissue images. By fully automating the mechanical polishing and optical microscope observation that were traditionally done manually, tasks that used to take several months can now be completed in one day.
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basic information
【Features】 ● 3D images of metal structures can be obtained in <2-3 months → 1 day> The acquisition of 3D images, which previously took several months manually, is now fully automated. Tissue observation, polishing, cleaning, and etching are all performed automatically. ● Beautiful tissue images can be obtained using wet polishing methods Unlike dry polishing methods, this minimizes strain on the material structure. ● Additionally, it is packed with features that allow for highly efficient 3D tissue imaging A new mechanism utilizing high-precision stepping motors has been adopted, and laser technology enables highly accurate measurement of polishing amounts. Compatible with various materials such as iron, stainless steel, aluminum, copper, solder, glass, resin, tungsten, etc. ◎ For more details, please contact us directly or download the catalog for confirmation.
Price information
Prices may vary depending on the options, so please feel free to contact us.
Price range
P7
Delivery Time
※Typically 3 months; delivery time may vary depending on options, so please feel free to contact us.
Applications/Examples of results
It can be used for ensuring material reliability and development, such as elucidating the causes of issues in material structure research, coatings, electronic components, vehicles, and power plant facilities. It is also applicable for material reliability evaluation and the development of multiphase structured materials influenced by organizational morphology. YOUTUBE Nakayamadenki Channel https://www.youtube.com/@nakayamadenkico.ltd.1980
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Using advanced electronic, mechanical, and software technologies along with extensive knowledge across various fields, we design and manufacture in-house. By leveraging the strengths of each component and compensating for their weaknesses, we are able to produce excellent products with new possibilities across multiple fields. With rich experience and knowledge utilized by numerous companies, research institutions, and universities, we bridge the gaps in technology. We are a technical consulting office! For projects that cannot be done elsewhere, please reach out to us! Customer Feedback: - I was told by XX University that it was impossible, but it's amazing that you can do it! - It's a difficult project, but I believed you would surely make it happen.