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The Aim of this project is to design a frame and a cover for a prototype Formula Student car. Following the championship rules, all the parameters that influence on the design will be controlled trying to get the lighter, toughness and economic car design, but keeping an eye on the execution time. It is necessary to know when it is possible to validate the design of a frame. Then it is very interesting to know the criteria that the car designers use on different competitions. Knowing the aim to achieve, choosing a suitable design tool is very important. The tool chosen will be the Finite Elements Theory. We will use design software, Solid Works. It is a very useful tool because let us to design and check the designs. Currently there is no a specific rules or regulations for a tubular frame design. While for the building construction we can find a lot of regulations, designing the frame that we are studying there is only specific competitions that give preliminary ways of design, just to guarantee minimums of safety. In our case we will follow the FORMULA SAE rules.
In the full design of a Race Car, there are many important aspects to study and analyze. There is no book in the World that analyzes the design process of a Race Car, step by step, from conception to circuit testing. This book offers this knowledge: to be able to design a competition vehicle, knowing and analyzing all its phases. Ideal for Students in FSAE, Formula Student, Vehicle Companies, Universities Engineering Students, Engineering Professors, Racing Engineering Formation, etc....In the full design of a Race Car, there are many important aspects to study and analyze. There is no book in the World that analyzes the design process of a Race Car, step by step, from conception to circuit testing: Suspension, Tires, Mass transfer, Max speed, Power Train, Post Rig and Aero Post Rig Analysis, Lap Time, Acceleration, Braking, Aerodynamic design, Refrigeration, Dynamic and Static behaviour, Optimization, etc....This book offers this knowledge: to be able to design a competition vehicle, knowing and analyzing all its phases
These proceedings gather outstanding papers presented at the China SAE Congress 2020, held on Oct. 27-29, Shanghai, China. Featuring contributions mainly from China, the biggest carmaker as well as most dynamic car market in the world, the book covers a wide range of automotive-related topics and the latest technical advances in the industry. Many of the approaches in the book will help technicians to solve practical problems that affect their daily work. In addition, the book offers valuable technical support to engineers, researchers and postgraduate students in the field of automotive engineering.
In most forms of racing, cornering speed is the key to winning. On the street, precise and predictable handling is the key to high performance driving. However, the art and science of engineering a chassis can be difficult to comprehend, let alone apply. Chassis Engineering explains the complex principles of suspension geometry and chassis design in terms the novice can easily understand and apply to any project. Hundreds of photos and illustrations illustrate what it takes to design, build, and tune the ultimate chassis for maximum cornering power on and off the track.