Used HITACHI / KOKUSAI DD-1223V #293641820 for sale
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HITACHI / KOKUSAI DD-1223V is a diffusion furnace and accessory specifically designed for use in metallography. Featuring a robust construction and impressive temperature range of up to 2µm/min, this diffusion furnace is suitable for a variety of industrial operations that involve the diffusion of materials. Equipped with a powerful and dependable heating system, this diffusion furnace has a chamber capacity of 10 and a maximum temperature of 13, 500°F. Furthermore, the furnace is also fitted with an internal vacuum system and a cooling system. This protection from oxidation enables research and testing of materials over a wide temperature range. As such, diffusion through HITACHI DD-1223V is possible with low production costs and high performance. As a variable temperature furnace, KOKUSAI DD-1223V is equipped with a range of smart features, including an advanced timer, a data logger and a rapid cooling function. This allows users to pre-set temperatures, monitor work duration and maintain accurate processing parameters. The timer and data logger enable reproducibility of the diffusion process, whilst the cool down function enables an accelerated cooling cycle of up to 1 minute. These features provide greater accuracy and reliability for industrial operations. DD-1223V also comes with a quartz protection window in the front door, allowing users to check the status of the process without disturbing the atmosphere in the furnace. The micro-channel door ensures smooth operation, with low-friction opening and closing. In addition, it is also made with a corrosion-resistant stainless steel inner chamber plate, making it particularly suited to corrosion-prone and high-temperature process requirements. In all, HITACHI / KOKUSAI DD-1223V diffusion furnace and accessorie is a resilient, reliable and efficient furnace that is perfect for industrial operations. With a temperature range of up to 2µm/min, a chamber capacity of 10 and a variety of smart features, it is suitable for reproducible and cost-effective results for the diffusion process.
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