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作 者:杨凯亮 李怀学 Yang Kailiang;Li Huaixue(National Key Laboratory of Power Beam Processing Technology,AVIC Manufacturing Technology Institute,Beijing100024,China)
机构地区:[1]中国航空制造技术研究院高能束流加工技术国家级重点实验室,北京100024
出 处:《中国激光》2024年第16期178-190,共13页Chinese Journal of Lasers
摘 要:对残余应力和变形的有效预测能够保证金属增材制造过程中的零件质量。基于网格的传统有限元法已经能够为许多增材制造过程建立相应的高保真度模型,但其在复杂的边界条件、大变形和裂纹扩展、界面运动和相变等问题的求解方面仍存在不足。提出了一个三维近场动力学模型,用于模拟激光增材制造过程中材料的温度场和变形。首先,模型主要考虑了激光增材制造的基本热物理过程,基于近场动力学方法对选区激光熔化过程中的热力耦合模型、粉末材料模型、热源模型等进行了建模;随后,通过多个单独的物理过程对模型进行验证,结果表明该模型稳定、准确,有望用于模拟激光增材制造过程;最后,将近场动力学模型用于模拟选区激光熔化单层制造过程并进行了分析。Objective Effective prediction of residual stresses and deformations can ensure the quality of metal additive-manufactured parts.The traditional mesh-based finite element method(FEM)has been able to model many additive manufacturing processes with a correspondingly high fidelity.However,it is still deficient in other areas such as the simulation of complex boundary conditions,large deformations and crack extensions,interfacial motions,and phase transitions.Peridynamic,a nonlocal continuum theory whose governing equations are in the form of integral-differential equations,has the advantage of addressing the phenomenon of discontinuities.Numerous reports have been published on the evolution and application of the peridynamic theory after years of development.In this study,a three-dimensional peridynamic model is introduced to simulate the temperature field and deformation during laser additive manufacturing.Methods The basic thermophysical processes of laser additive manufacturing are considered in the peridynamic model.These include the coupling of thermal,material,and heat source models.First,the bond-based peridynamic governing equations are provided,including the coupled thermo-elasticity equation of motion and thermal diffusion.The time integration of the peridynamic motion and thermal diffusion equation is obtained by employing explicit forward and backward differences and forward difference techniques to obtain the velocity,displacement,and temperature,respectively.The simulation program is then created using the simulator generation system DELAB,which is used for calculating and analyzing the physical system of the particles.The Gaussian heat source and phase-change models in the heat transfer scenarios are used for the laser additive manufacturing process.In addition,a peridynamic volume correction procedure is considered.Finally,the model is validated for several individual physical processes,including the heat transfer model of the block and heating sphere model.The results indicate that the model is sta
关 键 词:激光制造 近场动力学 热力学分析 选区激光熔化 高斯移动热源
分 类 号:TG14[一般工业技术—材料科学与工程] TP391.73[金属学及工艺—金属材料]
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