Mechanical Analysis

We validate design decisions with static and dynamic mechanical analysis, making risks visible before production.

We Back Every Design with Numerical Data

At MECRONIC, mechanical design goes beyond 3D modeling. We examine how parts and assemblies will behave under real operating conditions — considering loads, joints, materials, vibrations, and motion.

Static analyses verify strength and safety factors; dynamic analyses evaluate vibration, resonance, impact, and motion-induced behavior. Design revisions happen earlier, prototype cost is reduced, and production begins more confidently.

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Mechanical part and technical drawing analysis

Static Analysis

We examine stress, displacement, and safety status of parts and assemblies under load. Critical areas like joints, weld zones, bolted connections, supporting frames, and housings are modeled to verify structural integrity.

  • ? Stress, displacement, and safety factor calculation
  • ? Structural frames, brackets, and housing validation
  • ? Material selection and cross-section optimization
  • ? Overload, boundary condition, and joint zone evaluation

Dynamic Analysis

We study how systems behave under time-varying forces, vibrations, impact effects, and moving parts. By checking whether operating frequencies coincide with natural frequencies, we identify resonance risks and performance losses early.

  • ? Modal analysis and natural frequency detection
  • ? Vibration, resonance, and operating frequency control
  • ? Shock, impact, and variable load effect analysis
  • ? Dynamic compliance assessment of moving mechanisms

Scope of Analysis

We define the scope based on project needs. Sometimes a quick validation of a single critical part is enough; other times a full assembly must be analyzed under multiple load scenarios.

  • ? Part and full assembly analysis
  • ? Pre-prototype design validation
  • ? Post-revision comparative analysis
  • ? Manufacturability and weight optimization support

Our Analysis Process

  1. Operating conditions, loads, and boundary conditions are defined.
  2. CAD model is simplified for analysis and material data is assigned.
  3. FEA-based static or dynamic analysis scenarios are run.
  4. Critical regions are interpreted and improvement recommendations are prepared.
  5. Results are reported with visuals, tables, and engineering notes.

Deliverables

We don't just hand over result images — we interpret them so they drive design decisions. Which region carries risk, which revision will help, and what verification is needed before production are all clearly communicated.

  • ? Analysis report and engineering evaluation
  • ? Critical region visuals and result maps
  • ? Design revision recommendations
  • ? Technical validation notes for production readiness

We Ask the Right Questions Before Production

Will this part safely carry the load? Will the system vibrate at operating frequency? Is there excess weight? Are the joints strong enough? Our mechanical static and dynamic analyses deliver measurable answers.

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