Prediction of the penetration depth of particle-loaded inks in binder jetting

Progress in Additive Manufacturing(2024)

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摘要
Particle-loaded inks in binder jetting have proven to increase the packing density of the powder bed, to improve the sintering properties, and to selectively change the material composition in the part. However, particles also change the rheological properties and thus the penetration behavior of the ink in the powder bed. The penetration behavior influences the reliability of the binder jetting process. To ensure adequate accuracy and sufficient strength of the green part, an effective connection between the layers is crucial. Insufficient penetration leads to a weak bonding of the layers, while excessive penetration reduces the geometrical accuracy. The prediction of the penetration behavior can be beneficial to set the process parameters for new material systems and to control the distribution of particles in the green part. This study presents a modeling approach for the determination of the penetration depth of particle-loaded inks in the binder jetting process on the basis of the sessile drop method. An additional process model was established that allowed the integration of the process parameters of the binder jetting procedure. The validation was performed by measuring the penetration depth of three inks with particle loads of 1 m
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关键词
Additive manufacturing,Functional ink,Penetration behavior,Powder-ink interaction,Process model
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