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Best In Class & the only Regenerative and Associative Formability & Cost Reduction Solution in today's market |
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COSTOPTIMIZER utilizes the FASTBLANK® module to produce the most accurate
blank shapes possible. It also uses the BLANKNEST® module to determine
how much scrap will be produced during the blanking operation.
Its unique optimization capabilities help identify product changes
that will reduce overall material cost.
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COSTOPTIMIZER utilizes the FASTFORM® Advanced module to produce the most
accurate blank shapes possible. It also uses the BLANKNEST® module
to determine how much scrap will be produced during the blanking
operation. Its unique optimization capabilities help identify product
changes that will reduce overall material cost.
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PROGNEST is powerful nesting software specifically designed for nesting sheet metal blanks on progressive die strips. It automatically calculates the best nesting layout to optimize material utilization based on coil width and pitch constraints.
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BLANKNEST®
is powerful nesting software specifically designed for nesting
sheet metal blanks on coils. It automatically calculates the best
nesting layout to optimize material utilization based on
coil width
and pitch constraints.
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FASTBLANK®
provides users with a fast and accurate method for developing optimal
blank shapes. FASTBLANK® accounts for material stretch and deformation.
It is specifically designed for estimators, engineers, account
managers, and tool and die designers.
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FASTFORM®
provides product and die designers with fast formability analysis
for evaluation and validation of stamped components. Try-out simulations
are based on either the component
geometry for early feasibility
or on the full tool, taking blank holder force, drawbeads, and
pressure pads into account for improved reliability. It accurately
determines if a component can be stamped consistently with minimum
cost, while fulfilling all product performance requirements.
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FASTFORM®
Advanced provides product and die designers with realistic formability
analysis for virtual prove-out of complex draw dies. Modeling and
analysis can be completed in minutes,
ensuring the optimal solution.
Analysis is based on either the component geometry for early feasibility
or on the full tool. Simulation takes into account engineering
behavior, friction, binder surface, die addendum, blankholder force,
pad pressure, drawbeads, and tailor-welded blanks to produce accurate
results.
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