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Development of a Test Bench for Optimization of Servomotor Testing

Ostrogradskii, Daniil (2024)

 
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Ostrogradskii, Daniil
2024
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:amk-202501231857
Tiivistelmä
In the modern industrial environment, enterprises are under continual pressure to optimize processes, reduce expenses, and enhance efficiency while upholding sustainable practices. This thesis was commissioned by IK555, a firm specializing in the repair of industrial electrical equipment, to enhance the testing procedures for servomotors during repair. IK555 is dedicated to prolonging the operational lifespan of industrial components, significantly contributing to sustainable business practices by reducing waste and minimizing the need for premature equipment replacements.

This thesis aimed to professionally develop and implement a mechanical test bench to optimize the testing procedures for servomotors under load. The system was designed to improve the speed and precision of fault detection, enabling IK555 to efficiently test servomotors of varying sizes. A detailed investigation of prevalent servomotor flange dimensions guided the design, guaranteeing secure and universal attachment of motors to the test bench. It integrates advanced features to streamline operations and minimize testing duration, thereby enhancing the company's overall efficiency.

This thesis outlines the specifications for the test bench, articulates the technical design, and offers a comprehensive analysis of the development process. The project results indicate that the test bench is resilient, dependable, and user-oriented, adequately fulfilling the requirements of the firm while advancing their overarching objectives of sustainability and operational efficiency.

The constructed test bench satisfies IK555’s present requirements and strategically positions the company for future expansion by improving its capacity to deliver superior repair services. This project demonstrates the alignment of engineering solutions with practical innovation and environmental responsibility.
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