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AN INTEGRATED DEM-FEM MODEL FOR SHOT PEENING APPLICATIONS

机译:面向射孔应用的集成DEM有限元模型

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Shot peening is a commonly used technique for improving the fatigue life of machine components by inducing compressive residual stresses in the surface layers. This process involves plastically deforming the surface layers by impacting with spherical particles at high speeds. The induced residual compressive stresses resist crack propagation and thus increase the fatigue life. The intensity of shot peening, measured using the Almen test, is an essential quantity for ensuring shot peening effectiveness and repeatability. It depends on various process parameters such as the shot speed, shot size, shot material, impact direction, and flow rate. In this study, a novel computational model is developed to simulate the Almen intensity tests on a Type-C strip accurately. The model uses a coupled technique based on the discrete element method (DEM) and the conventional finite element method (FEM). The predicted Almen intensity values agree with analytically calculated values. Results from the parametric studies conducted to analyze the influence of various parameters on the Almen intensity indicate that many different combinations of these parameters can obtain a given Almen intensity although the residual stress fields may vary.
机译:喷丸处理是通过在表面层中引起压缩残余应力来改善机械部件疲劳寿命的常用技术。该过程涉及通过高速撞击球形颗粒使表面层塑性变形。所产生的残余压应力可抵抗裂纹扩展,从而延长疲劳寿命。使用Almen测试测量的喷丸强度是确保喷丸有效性和可重复性的必要量。它取决于各种工艺参数,例如注射速度,注射尺寸,注射材料,冲击方向和流速。在这项研究中,开发了一种新型的计算模型来精确模拟C型钢带上的Almen强度测试。该模型使用基于离散元素方法(DEM)和常规有限元方法(FEM)的耦合技术。预测的阿尔门强度值与分析计算的值一致。通过分析各种参数对Almen强度影响的参数研究结果表明,尽管残余应力场可能会变化,但这些参数的许多不同组合都可以获得给定的Almen强度。

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