CD Skripsi
PERANCANGAN DAN ANALISIS SISTEM TRANSMISI PADA MOBIL LISTRIK PARAMESWARA
The development of electric cars as an alternative to fossil fuel vehicles is growing
rapidly, accompanied by new technological innovations. The increasing
consumption of fossil fuels and the energy crisis have encouraged universities to
conduct research on alternative energy. Electric energy, as one of the solutions,
has great potential to replace fossil energy in the future. Electric cars are a
necessary alternative to petroleum due to the unpredictable decline in oil resources.
the development of environmentally friendly and energy-efficient electric cars is
very important, including in Indonesia. Electric car innovation continues to grow
among students through competitions such as the Indonesian Electric Car
Competition. This final project aims to analyze and design the transmission system
on the Parameswara electric car with a focus on designing the main components
such as shafts, bearings, chains, and sprockets, as well as evaluating the speed and
power efficiency of the vehicle. The research method used is a design method that
involves the selection of materials and materials, analysis of loads and forces
received by the vehicle, and assessment of power output efficiency. The design
results show that the shaft was designed with a diameter of 25 mm and a normal
stress of 13 N/mm² using AISI 1035 steel material. The bearings selected are type
6205 with an inner diameter of 25 mm and an estimated life of 19.25 months. The
chain used is type 12 B with a maximum load of 1457.39 N and a speed of 7.98 m/s.
For the sprocket, the front sprocket has 36 teeth, while the rear sprocket has 50
teeth. The theoretical vehicle speed is 47.48 km/h, while the actual speed obtained
is 36 km/h. The thrust force generated on a track with a 15-degree slope is 694.75
N. The power efficiency shows potential energy of 4416 joules, potential power
released of 1.9 kW, and specific power uphill of 5450 watts/kg.
Keyword: Electric Cars, Alternative energy, Transmission System, Sprocket and
Chain, Power Efficiency
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