Iron rigidity with about 1/3 the weight! Metal ceramic composite material 'MMC'
Metal-ceramic composite materials that achieve rigidity equivalent to steel at about one-third the weight also have good vibration damping properties, making them ideal for movable parts in devices. The performance of the device will change.
Composite materials 'MMC (Metal Matrix Composites)' have achieved better physical properties by combining base metals and ceramic-based reinforcement materials. These materials can meet various customer demands, such as wanting to increase rigidity without changing shape or weight, wanting to reduce weight while maintaining rigidity, or needing materials with excellent heat dissipation. 【Features】 ■ Equivalent to aluminum, about 1/3 the weight of iron ■ Has rigidity comparable to iron and steel, and is resistant to bending ■ Good vibration damping properties ☞ Please refer to the video ■ Excellent thermal conductivity and heat dissipation ■ Minimal expansion and contraction due to temperature changes *For more details, please request materials or view the PDF data from the download.
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<Series Lineup> ■SA Series Casting (SA301, SA401) A composite material containing 30-40 vol% SiC ceramic particles within an aluminum alloy. ■SA Series Impregnation (SA701) A composite material with aluminum impregnated into a SiC ceramic porous body (70 vol%). ■SS Series Impregnation (SS501, SS701) A composite material with metallic silicon impregnated into a SiC ceramic porous body (50-70 vol%).
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As a member of JGC Group, JFC challenges the possibilities of the material of fine ceramics with our own technologies. We actively engage in fundamental and applied research on ceramics, product application development, as well as manufacturing and sales. We respond to the diverse needs of various advanced industries with our unique technologies and products, including high-frequency ceramic substrates and circuit components, ceramic parts for industrial machinery, and the prototyping and development of metal-ceramic composite materials (MMC).