Design and analysis of double wishbone suspension system

  • How does the double wishbone suspension system work?

    Double wishbone suspension allows each wheel to act and react independently from the others.
    It achieves this thanks to two wishbone-shaped arms (also known as control arms or double A-arms) that are located between the knuckle on the wheel assembly and the car's chassis..

  • How is suspension designed?

    Typically a vehicle designer is operating within a set of constraints.
    The suspension architecture selected for each end of the vehicle will have to obey those constraints.
    For both ends of the car this would include the type of spring, location of the spring, and location of the shock absorbers..

  • What are the dimensions of the double wishbone suspension?

    The specifications of wishbones are as: Upper arm length= 174 mm Upper arm outer diameters =12.7mm (0.5 inch) inner diameter =9.5mm (0.374 inch) Upper arm angle with horizontal = 23 degree Lower arm length= 225 mm (axial) Lower arm outer diameter =12.7mm (0.5 inch) inner diameter =9.5mm (0.374 inch) Angle between two .

  • What are the points of a double wishbone suspension?

    A double wishbone suspension is an independent suspension design for automobiles using two (occasionally parallel) wishbone-shaped arms to locate the wheel.
    Each wishbone or arm has two mounting points to the chassis and one joint at the knuckle..

  • What is the construction and working of wishbone suspension?

    It consists of two (occasionally parallel) wishbone-shaped arms to locate the wheel.
    Each wishbone or arm has two mounting points to the chassis and one joint at the knuckle.
    The shock absorber and coil spring mount to the wishbones to control vertical movement..

  • What is the double wishbone suspension?

    Double wishbone suspension allows each wheel to act and react independently from the others.
    It achieves this thanks to two wishbone-shaped arms (also known as control arms or double A-arms) that are located between the knuckle on the wheel assembly and the car's chassis..

  • What is the mechanism of wishbone?

    The wishbone type is the most popular independent suspension system.
    It consists of two (occasionally parallel) wishbone-shaped arms to locate the wheel.
    Each wishbone or arm has two mounting points to the chassis and one joint at the knuckle..

  • What is the working principle of double wishbone suspension system?

    Double wishbone suspension allows each wheel to act and react independently from the others.
    It achieves this thanks to two wishbone-shaped arms (also known as control arms or double A-arms) that are located between the knuckle on the wheel assembly and the car's chassis..

  • A double wishbone suspension is an independent suspension design for automobiles using two (occasionally parallel) wishbone-shaped arms to locate the wheel.
    Each wishbone or arm has two mounting points to the chassis and one joint at the knuckle.
  • As per comparing Qj values (Qj minimum=top ranked material) and conditions satisfactions, we found S550 MCis the best material and to be used for the wishbone.
    By using S500 MC material properties, we performed the analysis in the Ansys software and determined that this material can sustain the design load.
Theoretical analysis is conducted using Lotus and Solid works to design double wishbone suspension system. The analysis is done for tadpole geometry car with 

What is a multilink & double wishbone mechanism?

The multilink and double wishbone mechanism, as examples of the wishbone-type mechanisms, provide a better motion control at the cost of a relatively complex structure, and more importantly, the lateral space requirement to generate the desired suspension stroke does not fit in the limited lateral footprint of narrow vehicles

Why is a suspension system important?

With the invent and help of numerous mechatronic systems there is technological advancements in various automobile sectors and thus gave better performance output A suspension system has responsibility of safety of both the vehicle and occupants by providing stability and comfort ride during its maneuvers

Why is double wishbone suspension system important?

Recent trends in suspension system have focused on improving innovations in ride quality and handling of vehicles

It maintains a viable spectrum of economic growth by reducing costs and increasing efficiency simultaneously

Theoretical analysis is conducted using Lotus and Solid works to design double wishbone suspension system


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