SAFE TECHNOLOGY FE-SAFE V6.2.01-MAGNiTUDE | 578 Mb
Many companies practice advanced finite element analysis to count design stresses, but the fatigue analysis is often still done by manually picking violence points for spread-sheet analysis. This is time consuming and unreliable because it’s easy to miss failure locations. Component validation through fatigue testing a prototype design in the experiment lab is time-consuming. If the model fails prematurely, a costly, open-ended cycle of design-test-redesign is required. Project time-scales slip and confinement is late.
In the automotive habitual devotion to labor some 40% of the total disentanglement cost is spent making prototype faculties. In the medical industry an sudden failure can mean the loss of distinct months lead-time over competitors.
fe-protected™ is a highly effective tool as being fatigue analysis of Finite Element models.
With fe-place of ~ty™ as an integrated part of your design projection, you have the ability to optimise designs and ordeal programs, reduce prototype test times effect recalls and warranty costs – entirely with increased confidence that your performance designs pass their test schedules like “right first time”.
calculates fatigue lives at every epigram on a model, producing contour plots to show fatigue lives and crack sites. Critical points necessity not be missed.
determines how abundant the stresses must be changed in method to achieve a target design life showing clearly in what place the component is under strength, or whither material and weight can be saved
estimates pledge claim curves based on probabilities of failure
calculates that parts of the service duty are greatest in quantity damaging and which could be omitted from a toil test
identifies non-critical loads at eminently expressive points on a model. In prototype testing this could mean tests using fewer loads and then fewer actuators
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