材料科学
选择性激光烧结
微观结构
选择性激光熔化
残余应力
热等静压
烧结
冶金
原材料
金属粉末
沉积(地质)
制作
极限抗拉强度
金属注射成型
3D打印
复合材料
激光器
热的
机械工程
材料性能
过程(计算)
碳纤维
各向异性
热稳定性
扫描电子显微镜
直接金属激光烧结
粉末冶金
表面工程
近净形状
金属
激光扫描
基质(水族馆)
工艺优化
工程物理
作者
K. Arunprasath,A.M. Shanawaz,S. Kavitha,Sunesh Narayanaperumal,S. Solaman Bobby,G. Velmurugan
标识
DOI:10.1016/j.jmrt.2026.03.143
摘要
The Metal Additive Manufacturing (AM) has become a revolutionary manufacturing paradigm which facilitates the production of complex, lightweight and high-performance parts which are more design flexible compared to the traditional subtractive manufacturing. The review discusses the leading metal 3D printing technologies and they include Selective Laser Melting (SLM), Direct Metal Laser Sintering (DMLS), Electron Beam Melting (EBM), Directed Energy Deposition (DED), and Binder Jetting. The experiment examines how the feedstock properties, especially powder morphology and wire based materials affect the process stability and quality of the part. Moreover, the most important process parameters, including laser power, scanning speed, and thermal conditions are addressed in connection with microstructure development, defect formation and residual stresses. Mechanical performance such as tensile strength, hardness, fatigue resistance, and anisotropy are measured and methods of post-processing are measured through heat treatment, hot isostatic pressing, and surface finishing. The review also shows new industrial uses and explains the existing issues in terms of cost, reproducibility, certification, and sustainability, as well as describes the future research opportunities in multi-material printing, in-situ monitoring, and AI-based optimization of processes.
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