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Grupo de personas en una mesa de reuniones con ordenadores portátiles que muestran un análisis estructural de Simcenter.

Simcenter

Software de análisis estructural

Simula estructuras para comprender su comportamiento ante tensiones, deformaciones y mucho más.

Unificar herramientas de análisis estructural

La simulación del análisis estructural es el estudio de los efectos del peso y la tensión en una estructura. En cualquier sector resulta fundamental comprender cómo reacciona el ensamble de un componente o producto que está sometido a tensión o vibración. Sin embargo, los productos y los materiales se vuelven cada vez más complejos; por eso, los ingenieros necesitan herramientas que vayan más allá de los análisis estáticos lineales.

Siemens proporciona el software de análisis estructural que necesitas para simular una amplia gama de aplicaciones en un único entorno de usuario. Ya no necesitarás una herramienta para análisis estáticos lineales, otra para estudios de fatiga y otra distinta para análisis no lineales. En consecuencia, los departamentos de ingeniería podrán unificar las herramientas de análisis y solo tendrás que familiarizarte con una única interfaz de usuario.

Diseño y análisis estructural de aeronaves

Pasar de una aviación propulsada por combustibles fósiles a una aviación sostenible es un enorme reto de ingeniería que es necesario afrontar apara seguir siendo competitivos. Obtén información sobre un enfoque de análisis y diseño estructural de fuselajes conectados para posibilitar la evolución hacia aeronaves sostenibles.

3D CAE model of a jet engine turbine with cross-sectional view showing internal components and stress analysis visualization.

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What is structural analysis software?

Finite element analysis

Finite element analysis (FEA) is the technological and mathematical foundation for simulating structural performance. FEA is a well-established methodology to aid the engineering design and analysis of many kinds of products.

Linear analysis

Linear structural analysis is a method used to determine how a structure behaves under load, assuming a linear elastic material and small deformations. This is the most common type of structural analysis performed today.

Nonlinear analysis

Nonlinear structural analysis is used to account for changes in a structure's geometry, material properties, and stiffness when subjected to loads, where the relationship between forces and displacement is not linear.

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Caso de éxito

Sumitomo Heavy Industries Marine & Engineering

Sumitomo Heavy Industries Marine & Engineering utiliza Simcenter Femap y Nastran para reducir el tiempo de diseño con análisis de alta calidad y modelado flexible.

Responding quickly to ship structural analysis needs with easy-to-use Simcenter Femap
Case Study

Responding quickly to ship structural analysis needs with easy-to-use Simcenter Femap

Empresa:Sumitomo Heavy Industries Marine & Engineering

Industria:Naval

Ubicación:Yokosuka City , Japan

Software de Siemens:Simcenter 3D Solutions, Simcenter Femap

Explore structural analysis simulation capabilities

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Linear statics analysis

Linear analysis is used to solve static problems, such as determining if a structure will fail under a prescribed load. This analysis is particularly useful for studying structures under static loads, where the loads are applied slowly and remain constant over time.

With the Simcenter Nastran solver, you can simulate both transient and harmonic excitations and use its damping models to choose between direct or forced response.

Imagen del análisis lineal de una estructura mecánica en el software Simcenter 3D.
Heatmap of the stress points within a car unibody shell

Normal modes

Normal modes analysis helps you to determine the natural frequencies and corresponding mode shapes of a structure. This helps you understand the dynamic behavior of your design and identify potential resonance problems.

Understanding your model's dynamic behavior through modes and test measurements can help you achieve an accurate and efficient solution. Thanks to the rapid analysis capabilities of RDMODES, Simcenter Nastran can generate modes for large systems with numerous modes

Buckling

Simcenter can help you predict the load at which a structure will buckle or undergo a sudden change in shape under compressive loads. This helps you identify potential stability issues and optimize designs for slender or thin-walled structures.

linear buckling of a cylinder in Simcenter 3D

Industry applications

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Simcenter 3D equips aerospace engineers with a robust set of tools for diverse analysis tasks, ensuring the structural integrity, performance, and reliability of aircraft and spacecraft components.

  • Airplane frame analysis: Assesses stiffness, durability, and modal frequency for structural integrity.
  • Wing Evaluation: Measures stiffness, skin buckling resistance, and modal frequency to optimize aerodynamic performance.
  • Control Surfaces Assessment: Evaluates the strength of pylons, ailerons, and stabilizers against flight forces.
  • Spacecraft Durability Checks: Analyzes thermal stress and distortion in composites for reliability in space conditions.
  • Aero Engine Simulation: Provides insights into rotating loads, thermal stress, and components like compressors and turbines.
  • Launch Vehicle Stress Assessment: Evaluates thermal loads, maneuver forces, and wind effects critical for mission success.
Simcenter 3D Structural Analysis Industries Plane

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Análisis estructural naval

Combina la simulación y las pruebas para crear un auténtico gemelo digital que asegure la precisión de las simulaciones de análisis estructural.

Imagen del análisis de la estructura de un barco en el software de Simcenter.
Structural analysis

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Frequently asked questions