Eferka Technologies FEM simulation

Structural simulation

Find the load path before the hardware does.

We use finite-element analysis to make strength, stiffness, vibration, fatigue and thermal risks visible—then connect the result to a practical design decision.

ANONYMIZED MODELStructural load-path assessment
LOAD CASECONSTRAINTSHOTSPOT RELATIVE RESPONSE
Strength Stiffness Durability
DisciplineFinite-element analysis
Model typesLinear & nonlinear
QuestionsStatic, dynamic & thermal
OutputDecision-ready evidence

FEM capabilities

Use the model that matches the failure mode.

We select the idealization, solver strategy and result checks around the engineering decision—not around a preferred contour plot.

01

Static linear & nonlinear

Strength, displacement, contacts, bolt loading, local plasticity and stiffness under representative load cases.

LOAD PATH
02

Modal & vibration

Natural frequencies, mode shapes, excitation risk and structural changes that move the response away from critical ranges.

DYNAMICS
03

Fatigue & durability

Load-history screening, stress extraction, hot-spot interpretation and comparison of geometry or material variants.

LIFE
04

Thermo-mechanical

Temperature-dependent deformation and stress for housings, covers, brackets and assemblies exposed to thermal gradients.

COUPLED LOAD
05

Kinematics & system loads

Translate mechanism motion and interface loads into structural load cases for the components that carry them.

BOUNDARY INPUT

Analysis method

Confidence comes from the setup, not the colour scale.

  1. 01

    Define the decision

    Clarify the component, load cases, interfaces, acceptance criteria and design choices the study must support.

  2. 02

    Idealize & mesh

    Select solids, shells, beams, contacts and mesh refinement that preserve the behaviour relevant to the question.

  3. 03

    Solve & check

    Review reactions, energy balance, sensitivity, convergence and local result quality before interpreting stresses.

  4. 04

    Compare & recommend

    Translate the response into a ranked design comparison, assumptions register and clear next action.

Representative applications

From rotating parts to complete load-carrying structures.

The public examples describe analysis structures only. Client geometries and numerical results remain confidential.

01

Powertrain structures

Brackets, housings, covers, oil pans and cylinder structures under mechanical and thermal loads.

02

Rotating components

Shafts, connecting elements and inertia-loaded parts assessed for strength, dynamics and fatigue.

03

Frames & chassis

Global stiffness, mount-load transfer, severe-duty load cases and fatigue-critical structural regions.

04

Thermal assemblies

Expansion, distortion, interface loading and stress caused by non-uniform operating temperatures.

Your structural question

Bring us the load case, interface or failure risk.

We will scope the model fidelity, inputs, checks and comparison plan around the decision your team must make.

Discuss an FEM study