A program that efficiently simulates using a coupled analysis method of DEM and SPH.
"SPHinx-POWDER" is a powder compression molding and mixing analysis program that enables the simulation of the behavior of the entire compression molding process of powders through a coupled analysis method using DEM and SPH particle methods. Since it does not require element connectivity data like FEM, data can be generated extremely easily even for complex-shaped models. This program is a dedicated analysis solver for powder compression molding and mixing, suitable for analyzing various molding problems, including the molding of machinery and precision machine parts. 【Features】 ■ Meshless solution method ■ Introduction of coupled analysis method using DEM-SPH particle method ■ Consideration of the effects of heat treatment ■ Capable of analyzing the mixing of flowing powders ■ Equipped with a user-friendly dedicated pre- and post-processor *For more details, please refer to the catalog or feel free to contact us.
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basic information
【Analysis Functions】 ■ Compression Molding Analysis ■ Powder Heat Transfer Analysis ■ Powder Deformation Analysis ■ Powder Fracture Analysis ■ Mixing Analysis 【Operating Environment】 ■ Windows XP and later ■ Red Hat Linux ■ GPU (GeForce, Tesla series) *For more details, please refer to the catalog or feel free to contact us.
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【Applicable Fields】 ■ Molding of machinery and precision machine parts ■ Molding of plastic and resin materials ■ Molding of automotive parts ■ Others *For more details, please refer to the catalog or feel free to contact us.
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SPH Research Institute Co., Ltd. was established with the aim of providing innovative simulation software to many companies, as well as universities and research institutions that are challenging new manufacturing methods. We offer a comprehensive general-purpose analysis tool consisting of software based on the particle method with SPH theory as its core, along with related GUI, viewers, particle generators, and more. This product is being developed with a wide range of applications in mind, including casting analysis, solid analysis, powder analysis, fluid analysis, electromagnetic field analysis, biological analysis, and physical chemistry analysis, and is constructed using entirely new methods from analysis theory to data design and visualization of analysis results. We consider it our mission at SPH Research Institute to provide future-oriented simulation technology that flexibly and appropriately responds to the rapidly evolving manufacturing technologies of the 21st century, and we are committed to continuous improvement and development.