For further information how we process your personal data, please follow this link Privacy Policy. It will not be passed on to third parties. When downloading the PDF, please leave your contact data (you will receive the download link by e-mail) and thus agree to the processing and storage of it by MAGMA casting technology GmbH in Aachen. Cost savings by minimizing design loops, tool rework and lead times through systematic core print development.Availability by supporting major binder and sand systems.Robustness due to stabilized core production through pre-shaping of core print layouts.Effectivity by optimizing shrinkage factors for core pattern layout through calculation of local thermal expansion coefficients.2.2 Fig.3.3h: Sections through casting WAC 3.4 Magmasoft simulations The permanent mould in figure 2.1 was recreated in a CAD software after which. Increased safety by avoiding core failure during casting through quantitative prediction of core stresses Fig.3.3c: Machining stock 50X (FFA, Fox) Fig.3.3d: Impeller scrap 50X (FFN, Fox) Fig.3.3e: Cast sleeve using mould in fig.2.1 Fig.3.3f: Section through cast HFC Fig.3.3g: Castings using mould in Fig.MAGMAstress quantitatively predicts core stresses and distortion offering: Time and temperature dependent mechanical data. Pressure dependent description of the bonded porous sand material.Consideration of core print layout and positioning.Thermal loading including buoyancy during filling and early stage solidification.Mechanical behavior of different sand and binder systems.Prediction of core deformation as a function of
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