Quenching shafts realized with unique high-frequency hardening technology.
The treated shafts achieve high strength and high toughness through tempering after being hardened by high-frequency heating, making them suitable for use in motor shafts, pipe shafts, and mold components. Tokai High Frequency Co., Ltd. can manufacture them with hardness ranging from HRC 26 to 45 according to specific applications, and the materials can include carbon steel for machine structures, alloy steel for machine structures, stainless steel, and bearing steel. 【Features】 - High strength and high toughness are achieved - Suitable for use in motor shafts, pipe shafts, and mold components - Can be manufactured with hardness ranging from HRC 26 to 45 according to specific applications - Materials can include carbon steel for machine structures, alloy steel for machine structures, stainless steel, and bearing steel For more details, please contact us or download the catalog.
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【Features】 ○ Shafts hardened by high-frequency heating → Tempering is performed according to the application, resulting in high strength and high toughness. ○ Used for motor shafts, pipe shafts, and mold components. ○ Hardness can be manufactured in the range of HRC 26 to 45 according to application. ○ Materials → Compatible with carbon steel for machine structures, alloy steel for machine structures, stainless steel, bearing steel, etc. ● For more details, please contact us or download the catalog.
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Tokai High Frequency Co., Ltd. has been a pioneer in high-frequency hardening for many years, primarily in the Tokai region, providing hardening processing for various parts and products. High-frequency hardening not only adds value to various components but is also applicable in a wide range of fields. In this context, our company has received significant recognition from various sectors. Moving forward, we will continue to specialize in high-frequency hardening and actively challenge ourselves to develop new technologies and improve cutting-edge heat treatment techniques to explore further new fields.