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Model and simulate driveline components and study the dynamic behavior of the entire driveline during different operating conditions Explore the interaction between driveline and chassis components, such as suspensions, steering system, brakes, and the vehicle body Apply a specific torque to your driveline model Define a different friction coefficient for different wheels in your model Define a slope of your road to study the performance of your driveline model Alter the driveline geometry and analyze the driveline again to evaluate the effects of the alterations.

Bring a vehicle to its dynamic limits or near targets you define Improve handling, durability, or ride performance of the vehicle model based on predicted performance Adams SmartDriver computes Investigate system-level dynamics of the vehicle model, while requiring minimal setup Calculate a limit maximum performance speed profile over the reference path Check the speed profile using a fast, simplified vehicle model Perform an analysis of vehicle states over the trajectory, searching for path locations that cannot be traveled with the current target speed during the full dynamic simulation Calculate four additional limits using the parameters specified and theoretical limits of the vehicle Creates a speed profile that brings the vehicle to both vehicle limits and user-defined ones.

Simulate full vehicle events such as steady state drift, throttle off in turn, and constant radius Simulate half vehicle events including dynamic load case and static vehicle characteristics Use with Adams Insight to perform systematic experiments on vehicle model Study the effect of multiple design variations Optimize the design Address the robustness issue.

Request a Quote. Request More Info. Simulating fatigue cracking in heavy-duty trailers. Newman Haas Racing. Company Overview Brochure. Adams Car Brochure. Academic Software Motion Bundle Datasheet. Adams Machinery Bearing Module. Adams is the most widely used multibody dynamics and motion analysis software in the world. Adams helps engineers to study the dynamics of moving parts, how loads and forces are distributed throughout mechanical systems, and to improve and optimize the performance of their products.

Adams multibody dynamics software enables engineers to easily create and test virtual prototypes of mechanical systems in a fraction of the time and cost required for physical build and test. Unlike most CAD embedded tools, Adams incorporates real physics by simultaneously solving equations for kinematics, statics, quasi-statics, and dynamics. Utilizing multibody dynamics solution technology, Adams also runs nonlinear dynamics in a tiny fraction of the time required by FEA solutions.

Loads and forces computed by Adams simulations improve the accuracy of FEA by providing better assessment of how they vary throughout a full range of motion and operating environments.



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