DE · Topics · Resources · Resources · Sponsored Content

Accelerate Powertrain Strength & Durability with Simulation

Simulation can overcome the challenges of designing a powertrain system that is fuel efficient, reliable, and cost-effective while delivering high performance.

As the connection between the engine and the wheels, the performance of the powertrain is crucial to the performance of the vehicle as a whole. Optimizing the powertrain maximises engine performance while enhancing fuel economy and reducing emissions.

The powertrain is a complex, heavy system with numerous components, and the demands of delivering power from the engine to the wheels of the car mean those components experience significant stress and wear. Engineers want to minimize weight and friction, while also ensuring the components can withstand the forces acting on it. Smaller and lighter designs are raising new structural challenges, while new technologies place new demands on the powertrain.

This whitepaper shows how structural simulation with SIMULIA software can be used to design, analyze and optimize powertrain components, both in isolation and as in integrated part of the vehicle system.

CHALLENGES IN POWERTRAIN STRENGTH & DURABILITY

Powertrain development can be a time consuming and expensive process. As a result, a lot of emphasis is placed on time-to-market and cost reduction, which in turn can limit how much of the design space the engineer can explore. New materials and manufacturing processes expand the design space further, potentially offering a competitive edge but also requiring new design paradigms.

The continual trend of engine downsizing and component mass reduction improves the performance of the vehicle as a whole, but it also means powertrain engineers are working within ever-tightening limits.

Changing driving styles, such as increased engine speed and start-stop city driving, put more strain on the powertrain components. The use of lower viscosity oils reduces friction and improves fuel economy and winter performance, but requires higher mechanical, structural design in order to maintain the film strength and oil pressure in the high temperature. Direct fuel injection which increases cylinder pressure, also require fundamental changes to powertrain design.

A good design of vehicle’s powertrain will ensure reliability, durability, efficiency, performance, and safety. Structural simulations are key enablers in achieving this objective in a shorter and more cost-effective time than with physical tests. However, the size and complexity of powertrains require software capable of handling such large models. With so many components, powertrain design also requires input from many different teams and departments.

Fill out the information below to download the resource.

By downloading this content, I agree to receive the DE 24/7 Newswire, a twice weekly free email newsletter (you may choose to opt-out in the newsletter).

Latest News

Power of Good Design
Applying emphasis on effective and innovative design processes in the design for additive manufacturing space can pay off and trim...

Leadership Profile: Marco Turchetto of ESTECO How Automation can Improve Simulation Workflows
Hyperautomation and services can help democratize the use of simulation.

NVIDIA RTX A400 and A1000 GPUs Enhance AI-Powered Design
Built on the NVIDIA Ampere architecture, the GPUs deliver real-time ray tracing and support for generative AI tools to every...

CGTech Collaborates with 3DCAD
VERICUT has been available for simulating CNC machining to detect errors, potential collisions or areas of inefficiency.

Autodesk Maya and 3ds Max 2025 Released
Updates offer support for open standards and improved modeling, animation, simulation, and rendering capabilities. 

Select Additive Partners with Stratasys on Polymer Solutions
Select Additive plans to use this partnership to offer its customer base a range of polymer 3D printing technology solutions...

All posts