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Our company's gear-ground worm gears combine high precision and high efficiency. The combination of the worm gear and wheel achieves maximum reduction power and enables efficient power transmission. Our precise gear grinding technology minimizes slip contact and reduces energy loss. This gear delivers reliability that exceeds industry standards and meets customer needs. Backed by reliability, our worm gears demonstrate excellent performance across a wide range of applications, including magazine parts for machine tools, index components, and measuring instrument parts such as rotating stages, resulting in improved productivity and cost reduction. *For more details, please feel free to contact us.*
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Free membership registrationGear skiving processing is a reevaluated gear machining method that benefits from improvements in tool materials, coating technologies, machine rigidity, and NC technology. Below, we explain the advantages of skiving processing in detail. 1. Capability to machine stop-shaped gears - Skiving processing can machine stepped shaft-shaped gears without tool interference. - It enables more complex gear designs, enhancing the functionality of the product. 2. Finishing processing after heat treatment is possible - Skiving processing allows for high-precision finishing on gears even after heat treatment. - This enables the realization of high-quality gears without being affected by heat treatment distortion. 3. Shorter processing time - Skiving processing has the advantage of shorter processing times compared to other methods such as gear grinding. - This can improve productivity and shorten product delivery times. *For more details, please feel free to contact us.
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Free membership registrationNo-backlash gears minimize backlash, allowing for the precise reproduction of specified angles and positions repeatedly. This characteristic ensures high consistency even in repetitive tasks and continuous operations. Specifically, by fine-tuning the meshing of gear A and gear B, the backlash is reduced, enabling accurate movements. This high reproducibility is crucial in systems such as automated assembly lines and robotic arms. It leads to improved work quality, allowing for precise assembly and processing of products. Additionally, it contributes to increased productivity. With high reproducibility, the speed of operations improves, enhancing the overall throughput of the production line. The high reproducibility characteristic of no-backlash gears demonstrates excellent performance in fields requiring precise movements, such as semiconductor manufacturing, industrial robotics, and automotive manufacturing. In situations where accurate positioning and synchronous control are necessary, no-backlash gears provide a highly reliable solution. *For more details, please feel free to contact us.*
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