Binderless molding method for activated carbon - A novel molding method using discharge plasma sintering.
Molding technology for activated carbon using discharge plasma sintering! It is a technology for three-dimensional molding of activated carbon without a binder.
We would like to introduce our "Shaping Technology for Activated Carbon Using Discharge Plasma Sintering." This technology allows for the three-dimensional shaping of powdered activated carbon without the use of binders through the discharge plasma sintering method. It enables the mixed shaping of metal powders and the simultaneous shaping of heater wires, and can be applied to various applications such as controlling thermal conductivity and hardness, as well as heating the molded products. 【Features】 ■ Shaping of activated carbon without the use of binder resins ■ Mixed shaping of metal powders (such as copper) is possible ■ Integrated shaping with built-in components like heater wires is possible *For more details, please download the PDF or feel free to contact us.
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**Characteristics of Spark Plasma Sintering (SPS)** A processing method that involves applying pressure to materials while performing pulsed electric current and heating for sintering, bonding, and synthesis. It can be applied to various powder materials and has features such as the ability to sinter in a short time. Applications to activated carbon allow for: - Sintering without a binder (100% activated carbon) - Molding into various shapes (such as plates or blocks) - Simultaneous molding of metal powders (such as copper) and heating wires - Adjustment of porosity and pore size
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【Expected Application Developments】 ■ Adsorbents and conductive materials with high thermal conductivity and high strength using [activated carbon + metal] ■ Catalyst carriers and catalysts for adsorbing and decomposing exhaust gases and odor components using [activated carbon + catalyst] ■ Special applications utilizing molding methods: adsorbents with built-in heaters, surface modification by plasma ■ Applications to porous carbon materials (other than activated carbon) *For more details, please download the PDF or feel free to contact us.
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