Advantages Of Appyling Fea Thermal Analysis For Product Development

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One of the most critical issues arising during design and development of temperature-sensitive objects/products such as aircraft wings, defense equipments or even telecom towers radio telescope is their performance in adverse conditions. For this a detailed analysis of temperature, stress and vibrations is required before sending the product for manufacturing.

Solution to such and similar problems is to take into account various peculiarities of product behavior by means of Finite Element (FE) Modeling. Previously this kind of analysis work was carried out using experimental methods for predicting the behavior of the component under required conditions. This method did allow analysis of the behavior under application of different external factors, but was very costly, time-consuming and sometimes practically not feasible.

In today's competitive market of consumer products the development process at major engineering firms uses comprehensive FEA Modeling, Simulation and Analysis method replacing costly full-scale experimental method. FE modeling allows the developer to analyze behavior of the part under various external factors using virtual 3D models and simulations using Cad software such as Solidworks, HyperMesh, Nastran and ANSYS.

Better hardware and software infrastructure helps resolve complex spatial thermo-mechanical problems keeping in mind physical properties (such as temperature, radiation, vibration, etc.) and geometrical properties (such as large deformations, stress and kinematics) to get a solution in quick turnaround time. With the help of full-scale experimental method you can measure values in just hundreds of points whereas with FEA simulation you can consider thousands and millions of point for better precision and overall reliability.

FE Thermal modeling also helps you evaluate natural frequencies and related modes of the structure along with thermal stresses and temperature fields.

FEA Thermal analysis can be used for various loading types such as:

- Steady and transient thermal analysis
- Structural analysis under wind conditions
- Structural analysis under gravity conditions
- Structural analysis under seismic loading conditions
- Thermal Stress analysis
- Thermal Modal analysis
- Thermal Strain analysis
- Thermal Static/Dynamic analysis

Should you have any queries regarding FEA Thermal Analysis or FE Thermal Modeling services, please feel free to contact us. Our analyst will be pleased to answer your queries at info@caeoutsourcingservices.com. Find more at http://www.caeoutsourcingservices.com/thermal-analysis.php


About the Author:
Jeffrin Kaith is expert for FEA Analysis at CAE Outsourcing Services - a leading FEA consulting, CFD analysis and CAE modelling company providing cost-effective analysis services across the globe. Learn more at http://www.caeoutsourcingservices.com



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