Call it business
process automation meets engineering. Dassault
Systemes' Isight simulation process automation and design
has been upgraded with new methods and capabilities to exploit
processing along with a new licensing model designed to reduce cost.
SIMULIA brand, gives designers, engineers and researchers an open system
integrate design and simulation models created with diverse CAD, CAE and
design tool applications. The software is designed to help automate the
execution of hundreds or thousands of simulations, saving time and
improve designs by optimizing against performance or cost variables
methods such as Design of Experiments or Design for Six Sigma.
The new Isight 4.5
upgrade provides new scalable parallel algorithms for leveraging
computing resources, enhanced approximation and reliability methods to
product performance across a range of real-world operating variables,
improvements to multi-objective optimization and data mining which
deeper insight into performance attribute tradeoffs. Dassault also
SIMULIA Execution Engine (formerly Fiper) 4.5 for executing Isight
process flows across computing resources.
Customers will now
be able to leverage the new parallel algorithm and optimization features
Isight combined with the distributed computing capabilities of
Engine to evaluate more design alternatives in less time, according to
Crowley, director of product management, SIMULIA, Dassault Systemes.
result in developing better products at a lower cost, he said.
In a related move, users of SIMULIA's Abaqus
Unified FEA will benefit from a new licensing policy that dramatically
the cost for using SIMULIA's Abaqus Unified FEA in automated design
with Isight. Using the combination of these products allows customers to
their Abaqus token usage as much as 60 percent.
Producing high-quality end-production metal parts with additive manufacturing for applications like aerospace and medical requires very tightly controlled processes and materials. New standards and guidelines for machines and processes, materials, and printed parts are underway from bodies such as ASTM International.
Engineers at the University of San Diego’s Jacobs School of Engineering have designed biobatteries on commercial tattoo paper, with an anode and cathode screen-printed on and modified to harvest energy from lactate in a person’s sweat.
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