Autoform R11 Jun 2026
: Modeling the gathering of excess metal or the creation of complex geometries.
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With the integration of the latest material database, R11 simulates the phase transformation of boron steel during the quench. It predicts where martensite will form based on cooling rate, allowing engineers to design cooling channels directly within the simulation environment. autoform r11
: To combat the common issue of tool deflection—which causes rejects and press downtime—R11 includes capabilities for "overcrowning." Engineers can compensate for deflection by using elastic tool deflection calculations to adjust milling data.
The primary focus of AutoForm R11 is to provide users with a "new level of accuracy". Key enhancements include: : Modeling the gathering of excess metal or
: This version aims to reach quality targets earlier in the design phase, potentially eliminating physical improvement loops entirely. Helpful Resources & Tutorials
Stamping high-strength steels (HSS) and aluminum alloys requires highly accurate yield criteria. The system integrates advanced kinematic hardening models and multi-axial yield functions (such as Barlat and Hill models). These features allow engineers to capture the directional properties (anisotropy) of thin sheet metals. 2. Key Engineering Applications If you share with third parties, their policies apply
Modern stamping often involves forming multiple, separate parts simultaneously on a single press. AutoForm Forming R11 enables the realistic modeling of such processes by taking into account both part separation (split parts) and multiple blank cases. The software allows for the efficient engineering of separated parts and facilitates various calculations. Crucially, for scenarios where several parts with individually assigned blanks (multiple blanks) are manufactured on the same press, engineers can now analyze how the parts influence each other. This allows them to make geometry modifications, position parts optimally, and determine appropriate cushion forces to optimize the overall forming behavior.
: A new feature that allows for the calculation of temperature effects in cold forming. This helps engineers understand how tool and part temperature rises affect production, leading to better prediction of failures.
