“Comparative Strength Analysis of Spur Gears Manufactured via CNC Machining and 3D Printing”

Abstract: The comparative strength study of spur gears made by CNC machining and 3D printing is investigated in this research. In order to evaluate the effects of both production processes on gear strength a crucial component that affects gear performance a 3D gear model has to be created. Tensile, geometrical error, surface roughness, hardness and […]

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Material Selection and Fatigue Analysis of Gas Turbine Blades for Enhanced Performance

ABSTRACT Gas turbines are essential for power generation and industrial applications, providing a reliable energy source. As global energy demands rise, improving turbine efficiency and power output becomes increasingly important. One of the critical components influencing turbine performance is the turbine blade, which operates under extreme thermal and mechanical conditions. Enhancing the durability and longevity

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“Rule-Based Power Management Optimization for Hybrid Electric Vehicles: A MATLAB-Based Real-Time Simulation Study”

Abstract: Hybrid Electric Vehicles or HEVs are a potentially effective way to reduce fuel consumption, improve vehicle efficiency, and maintain the safety requirements associated with standard automobiles. A Power Management Strategy (A PMS), a crucial element that directly affects both gasoline consumption and overall performance, is essential to their effectiveness. This study has included rule-based

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“Design and Fabrication of a Cost-Effective Vertical Axis Wind Turbine with PVC Blades for Small-Scale Power Generation”

ABSTRACT The fabrication of a Vertical Axis Wind Turbine (VAWT) with PVC Blades aims to develop a cost-effective and efficient renewable energy solution for powering an LED bulb. The turbine blades are made by cutting 4-inch PVC pipes in half, ensuring durability, lightweight construction, and easy fabrication. A vertical shaft is used to mount the

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“Clustering Analysis of EV Charging Patterns Using MATLAB: Insights for Infrastructure Optimization”

Abstract: The MATLAB-implemented K-means clustering algorithm is applied to a real-time public Electric Vehicle (EV) charging dataset in this study. The objective is to identify distinct patterns by locating centroids and creating four unique clusters. The analysis focuses on the distribution of data points and the identification of peak hours for each pattern, which are

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“Design and Implementation of an Electromagnetic Braking System for Precision Motion Control”

Abstract An electromagnetic braking system is a modern braking mechanism that utilizes electromagnetic forces to control the motion of a vehicle or mechanical system. Unlike conventional braking systems that rely on frictional contact, electromagnetic brakes operate by generating magnetic fields to create resistance, leading to smooth and efficient braking. These systems are widely used in

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“Design and Analysis of a UK-Compliant E-Bike Battery Pack: A CAD, FEA, and Thermal Study”

ABSTRACT: The methodical process of developing an E-bike battery pack that complies with UK laws is presented in this dissertation. The process begins with determining the energy requirements depending on the chosen route and the characteristics of the rider. This information then informs the selection and specifications of a suitable battery type. During the design

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Analytical And Numerical Analysis On The Electrical Vehicle Gear Box Using Ansys And Matlab

Abstract In the evolving landscape of electric vehicles (EVs), the gearbox plays a crucial role in efficiently transmitting power from the motor to the wheels, directly influencing vehicle performance, efficiency, and longevity. As the adoption of EVs continues to grow, optimizing gearbox design is essential to enhance durability and ensure reliable operation under varying load

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“Design and Aerodynamic Analysis of a Fixed-Wing UAV for Search and Rescue Operations”

Abstract: The design and analysis of a fixed-wing unmanned aerial vehicle (UAV) with a primary purpose of conducting search and rescue operations are the primary focus of this study. This project begins with a careful analysis of the necessary dimensions and weight constraints. According to accepted industry standards, these criteria form the basis for the

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“Design and CFD Analysis of a High-Speed Centrifugal Compressor for Hydrogen Refueling Applications”

Abstract: This research work aims on the design and examination of a compressor for use in hydrogen refilling stations, Hydrogen fueling in the context of fuel cell vehicles are complex task for design engineers. Present study planned for employing advanced tools such as CFD for 3D modeling and ANSYS for fluid-structural interface analysis and builds

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