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Numerical Simulation on Stress Distribution of High Pressure Water Jet Impacting Solid Material

机译:高压水射流撞击固体材料应力分布的数值模拟

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It is important to make sure the stress distribution in the media under high pressure water jet as to improve jets utilities. A numerical analyzing model of stress distribution about interaction of high pressure water jets impinging solid material is established according to fluid-structure interaction theory. Standard k-ε equations model and controlled volume method for the water jets, and elastic orthotropic continuum and finite element method for the solid are adopted. The stress distributions in the fluid field and inside solid material with different water jetting velocities were computed using the model and method. Numerical results show that the stress distributes obviously on the part solid material under water jets impingement. The impinging area is subjected to compression stress, and the maximum tensile stress is located on impacting surface and the maximum shear stress being under impacting center about half nozzle diameter away. It concludes that by controlling the jet velocity and distance, jet cutting, breaking, decoating, surface processing efficiencies could be improved.
机译:在高压水射流下确保介质中的压力分布至关重要,以改善喷气机公用事业。根据流体 - 结构相互作用理论建立了抗撞击固体材料的高压水射流相互作用的数值分析模型。采用标准K-ε等式模型和控制体积法,采用了水喷射的水射流和弹性正交连续体和固体有限元方法。使用模型和方法计算流体场和具有不同水射流速度的内固体材料的应力分布。数值结果表明,压力在水喷射冲击下的部件固体材料上显而易见。撞击区域经受压缩应力,最大拉伸应力位于撞击表面上,并且最大剪切应力在撞击中心下方距离的冲击中心。它结论,通过控制喷射速度和距离,喷射切割,断裂,欺诈,可以提高表面处理效率。

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