Finite Element Analysis Consulting

  • LAB3 Engineering offers professional structural finite element analysis (FEA), allowing an optimized and cost-effective design to be achieved efficiently and accurately. Our experience in simulation engineering consists of having successfully analyzed and validated hundreds of finite element analysis (FEA) projects in naval and marine applications. We know how to optimize your design and to ensure that it will meet your service requirements whether in Marine, Energy, Automotive, Medical or in Consumer Products.

Marine & Naval Applications

  • FEA may be used in all phases of design of industrial products, from conceptual design phases to detail function design, where problems are difficult to solve by classical methods. An FEA analysis report, covering all aspects of the analysis, can be issued on request of the client and/or submitted to Classification Societies for approval. Whether working with you directly onsite at your location, or working remotely at our own location via internet conferences with your team, we'll quickly and easily help solve your structural engineering and analysis problems.

Industrial Applications

  • We have significant experience designing elastomeric components (natural rubber, NBR), as vibration isolators or seals. We developed an innovative procedure based on nonlinear finite element analysis for the prediction of the load vs. deflection curve of the elastomeric component. We also perform First–Ply Failure (FPF) and stability analyses of FRP laminated composite components with unlimited number of layers.

Elastomers & Composites

Vibration & Shock Isolation

  • At LAB3 Engineering we are specialized in the design of elastic suspensions for vibration and shock isolation. Our twenty-year experience in this field allows us to design and optimize single, double and triple elastic suspensions for a variety of applications in the Naval, Military and Industrial fields.

Design of Elastic Suspensions

  • We have developed an in-house software for a fast and reliable stability and shock analysis which allows the accurate calculation of sea movements, residual accelerations and shock deflections undergone by an elastically suspended 3-D rigid body. The shock pulse can be defined consistently with a large variety of military and industrial specifications.

Stability and Shock Analysis