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Best Power-train mounting Design for ICE Vehicles and EVs

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AutomotiveMechanical
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Best Power-train mounting Design for ICE Vehicles and EVs

  • Trainers feedback

    ( reviews)

  • Course type

    Watch to learn anytime

  • Course duration

    240 Min

  • Course start date

    Access anytime

  • Language

    English

Why enroll

People join this course to gain in-depth knowledge of powertrain mounting systems for ICE and EV vehicles, enhancing their skills in design, analysis, and optimization. By mastering these concepts, professionals can improve vehicle performance, reduce vibration, and stay competitive in the evolving automotive industry.

Opportunities that awaits you!

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Course details

The best powertrain mounting design for ICE vehicles and EVs differs due to distinct vibration sources and frequencies. For ICE vehicles, a traditional 3-point mounting system is commonly used, focusing on low-frequency dynamic stiffness to reduce vibration. In contrast, EVs benefit from a double isolation mounting system, which connects the powertrain to an auxiliary mass (subframe/cradle) via mounts, and then suspends it to the vehicle body via subframe bushes. This design addresses high-frequency resonance issues (600-1000 Hz) due to motor excitation frequency. Proper selection of mount stiffness, modal alignment, and material selection are crucial to avoid resonance and improve vibration isolation. Simulation-based design, transfer path analysis, and parametric studies can help optimize the powertrain mounting system for both ICE and EV applications.

Course suitable for

  • Automotive
  • Mechanical

Key topics covered

- Optimal Design of Powertrain Mounting for the Best Vehicle NVH

- Modal Separation principle, transfer paths, Optimization,

- Transient Event Control, Rubber mount material property

- Electric motor-train mounting special considerations, Advanced Hydra-mounts

Course content

The course is readily available, allowing learners to start and complete it at their own pace.

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Best Power-train mounting Design for ICE Vehicles and EVs

4 Lectures

240 min

  • Lesson icon

    Lecture 01

    Preview icon

    Preview

    60 min

  • Lesson icon

    Lecture 02

    60 min

  • Lesson icon

    Lecture 03

    60 min

  • Lesson icon

    Lecture 04

    60 min

Why people choose EveryEng

Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities—all in a flexible and supportive environment.

MILIND AMBARDEKAR

MILIND AMBARDEKAR

Consultant

Questions and Answers