Achieving precision machining with flatness of 2μm or less at 650mm! Lightweight and easy to carry compared to metal!
The precision flatness of the New East V Ceramics utilizes the properties of ceramics to achieve precision machining with a flatness of less than 2μm at 650mm! It excels in wear resistance and corrosion resistance, has minimal dimensional changes due to temperature variations, and is lightweight and easy to transport compared to metal precision plates. It is ideal for measuring precision machining parts such as molds and precision components of machine tools. 【Features】 ■ High precision measurement ■ Achieves flatness of less than 2μm at 650mm. ■ Lightweight and easy to transport compared to metal. *For more details, please contact us or download the catalog to view.
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【Specifications】 Structure: Flat plate Flatness: 2μm or less Material/Color: Al2O3 99.5% or more, light yellow *For more details, please contact us or download the catalog for review.
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※Delivery times may vary depending on stock availability. Please contact us.
Applications/Examples of results
Measurement of precision machined parts such as molds Measurement of precision parts for machine tools
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Model number | overview |
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650×650×45mm | Flat plate, flatness below 2μm, alumina 99.5% or higher, light yellow, weight 90kg |
600×450×45mm | Flat plate, flatness below 2μm, alumina 99.5% or higher, light yellow, weight 90kg |
450×300×45mm | Flat plate, flatness below 2μm, alumina 99.5% or higher, light yellow, weight 90kg |
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At Shin-East V Ceramics, we leverage the properties of ceramics to provide new added value through our unique technology. We have achieved significant results and high trust across various fields, from components for manufacturing and inspection equipment, including semiconductors, LCDs, and electronic components, to ultra-precision measuring instruments such as straight edges and right-angle masters, as well as ceramics application products like XY stages. Additionally, with the sale of ceramics 3D printers, it has become easier to commercialize complex shapes that were previously difficult to handle, as well as hollow structures for weight reduction and enhanced functionality. This has led to adoption in a wider range of fields and industries, from aerospace to biomedical sectors.