This design demonstrates improved material removal efficiency with a pulley system, suggesting ways to optimize grinding performance.
The design and development of a pulley-driven horizontal belt grinding machine is presented in this work with the goal of enhancing surface finish excellence and material removal efficiency in manufacturing processes. The equipment combines an abrasive belt, a 775 model DC motor, and a wooden frame to offer a stable and affordable way to grind a variety of materials. The design approach entailed a thorough examination of operating performance, robustness, and product selection. The motor, pulley system, and abrasive belt make up the core procedure, which is tuned for optimal grinding performance and little vibration. With customizable polishing frequencies to suit various material kinds, experimental testing proved the device's efficacy in achieving precise finishes on surfaces. The pulley-driven method may cause vibration problems, and the current design has comparatively slower grinding rates than more sophisticated variants. Future developments will concentrate on increasing the system's precision and speed.
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Hrittik Mural (2025) studied this question.
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