Javascript must be enabled to continue!
Target Driven Bushing Design for Wheel Suspension Concept Development
View through CrossRef
<div class="section abstract"><div class="htmlview paragraph">Bushing elasticity is one of the most important compliance factors that significantly influence driving behavior. The deformations of the bushings change the wheel orientations under external forces. Another important factor of bushing compliance is to provide a comfortable driving experience by isolating the vibrations from road irregularities. However, the driving comfort and driving dynamics are often in conflict and need to be balanced in terms of bushing compliance design. Specifically, lateral force steer and brake force steer are closely related to safety and stability and comprises must be minimized. The sensitivity analysis helps engineers to understand the critical bushing for certain compliance attributes, but optimal balancing is complicated to understand. The combination of individual bushing stiffness must be carefully set to achieve an acceptable level of all the attributes. Traditional bushing tuning method involves an optimization process in Adams Car or any other multi-body simulation software. Though they provide reliable results, it is a time-consuming process to build models for the complete Kinematic and Compliance analysis. Therefore, a method to set the bushing specifications automatically according to the compliance targets is proposed by the author. The method makes sure the instant motion of the wheel meets the targets. The bushing stiffness values are calculated according to force distribution and motion ratios between the wheel and each bushing. The method decouples the axial stiffness and radial stiffness. It provides a method to set up the radial stiffness automatically. The new method will reverse the traditional trial-and-error approach, to avoid extensive iterations and significantly reduce the development time.</div></div>
SAE International
Title: Target Driven Bushing Design for Wheel Suspension Concept Development
Description:
<div class="section abstract"><div class="htmlview paragraph">Bushing elasticity is one of the most important compliance factors that significantly influence driving behavior.
The deformations of the bushings change the wheel orientations under external forces.
Another important factor of bushing compliance is to provide a comfortable driving experience by isolating the vibrations from road irregularities.
However, the driving comfort and driving dynamics are often in conflict and need to be balanced in terms of bushing compliance design.
Specifically, lateral force steer and brake force steer are closely related to safety and stability and comprises must be minimized.
The sensitivity analysis helps engineers to understand the critical bushing for certain compliance attributes, but optimal balancing is complicated to understand.
The combination of individual bushing stiffness must be carefully set to achieve an acceptable level of all the attributes.
Traditional bushing tuning method involves an optimization process in Adams Car or any other multi-body simulation software.
Though they provide reliable results, it is a time-consuming process to build models for the complete Kinematic and Compliance analysis.
Therefore, a method to set the bushing specifications automatically according to the compliance targets is proposed by the author.
The method makes sure the instant motion of the wheel meets the targets.
The bushing stiffness values are calculated according to force distribution and motion ratios between the wheel and each bushing.
The method decouples the axial stiffness and radial stiffness.
It provides a method to set up the radial stiffness automatically.
The new method will reverse the traditional trial-and-error approach, to avoid extensive iterations and significantly reduce the development time.
</div></div>.
Related Results
Theoretical calculation model of insulation medium and eddy current heating under complex waveform of ±800kV convertor transformer RIP bushing used in valve side
Theoretical calculation model of insulation medium and eddy current heating under complex waveform of ±800kV convertor transformer RIP bushing used in valve side
Abstract
Electrical and thermal properties of the converter transformer valve side RIP DC bushing interact with each other, so electrical insulation failure in opera...
Analysis of Insulation Structure Design for High Altitude UHV Reactor Bushing
Analysis of Insulation Structure Design for High Altitude UHV Reactor Bushing
Abstract
The ultra high voltage reactor bushing is the important equipment to realize the electrical connection between the reactor and the valve tower. The high alt...
Data-Driven Nonlinear Iterative Inversion Suspension Control
Data-Driven Nonlinear Iterative Inversion Suspension Control
The commercial operation of the maglev train has strict requirements for the reliability and safety of the suspension control system. However, due to a large number of unmodeled dy...
Vibration analysis of running wheel for straddle monorail vehicles
Vibration analysis of running wheel for straddle monorail vehicles
Abstract
This article is based on the tire six component force test and wheel hub fatigue test of a certain type of straddle monorail vehicle, and analyzes the reasons for ...
Abnormal analysis of wheel hub of a straddle monorail vehicle
Abnormal analysis of wheel hub of a straddle monorail vehicle
Abstract
This article is based on the tire six component force test and wheel hub fatigue test of a certain type of straddle monorail vehicle, and analyzes the reasons for ...
Polishing Performance of a Recycled Grinding Wheel Using Grinding Wheel Scraps for the Wet Polishing of Stainless-Steel Sheets
Polishing Performance of a Recycled Grinding Wheel Using Grinding Wheel Scraps for the Wet Polishing of Stainless-Steel Sheets
The surfaces of large austenitic stainless-steel sheets, which have side lengths of at least 1 m a sheet thickness of at least 6 mm, used for food tanks and sliding plates in seism...
The effect of suspension parameters on the properties of the coating obtained by the slip method
The effect of suspension parameters on the properties of the coating obtained by the slip method
The development of modern gas turbine engineering imposes increasingly high requirements for the properties of the alloys used, associated with an increase in gas temperature befor...

