Abstract

Multi-Operational Machining and Controlling with the Help of Electro-Magnetic Clutch

Highlights

  • The fundamental reason behind the design of this machine is that to make a fully clutch controlled, less power consuming, multi-operational machine that could perform more than one operation simultaneously as well as individually. previously such types of machines has been designed[1] but those are not capable of performing single operation individually as clutch system was not present

  • In recent 15 years there has been increased advancement in the machine instrument industry as old models are persistently being supplanted by new ones. the joining of computerized controls innovation and PCs into machine apparatuses has influenced the business in these regions

  • Machine device advances are studied from the view purpose of fast and elite machine devices, consolidated multifunctional machine apparatuses, high exactness machine devices and progressed and smart control advances

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Summary

Introduction

The fundamental reason behind the design of this machine is that to make a fully clutch controlled, less power consuming, multi-operational machine that could perform more than one operation simultaneously as well as individually. previously such types of machines has been designed[1] but those are not capable of performing single operation individually as clutch system was not present. Previously such types of machines has been designed[1] but those are not capable of performing single operation individually as clutch system was not present. The fundamental reason behind the design of this machine is that to make a fully clutch controlled, less power consuming, multi-operational machine that could perform more than one operation simultaneously as well as individually. Due to this reason there was more power loss as we know that all the operations are not required simultaneously all the time. If any of the operations are not required there was no provision of stopping that operation

CONCLUSION
Design and fabrication
METHODOLOGY USED
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