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Titlebook: Electron Beam Wire Deposition Technology and Its Application; Shuili Gong,Jianrong Liu,Haiying Xu Book 2022 National Defense Industry Pres

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楼主: 反抗日本
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Electron Beam Wire Deposition Equipment,and abroad has been done. The homemade equipment has been introduced in detailed such as Inverter Power Supply, Electron Beam Gun, Vacuum System and Its Control, Wire Feeding System and Its Control, Three-Dimensional Workbench, Image Monitoring and Acquisition System, Electrical Control System and D
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Fundamentals of Electron Beam Wire Deposition Technology,ocess, numerical simulation of the EBWD process, temperature field characteristics of the molten pool under the wire-free technology and impact of wire deposition on the temperature field of the molten pool, etc. The fundamentals of the process technique of the EBWD, such as prototyping process cont
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Non-destructive Inspection of EBWD-Fabricated Parts,tic characteristics and defect characteristics of TC4 Titanium Alloy and A100 steel Fabricated by EBWD have studied. At the same time, the different methods such as the ultrasonic inspection, the magnetic particle testing and X-ray inspection have been used for non-destructive inspection of A100 ste
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Fundamentals of Electron Beam Wire Deposition Technology for A-100 Steel,e and heat-treated state, properties control, typical defects and control methods. At the same time, typical mechanical properties such as the static property, fatigue property, etc. have been introduced in this chapter.
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Fundamentals of Electron Beam Wire Deposition Hybrid Prototyping Technology, alloy fabricated by electron beam wire deposition hybrid prototyping have been studied in this chapter. At the same time, the mechanical properties of hybrid-fabricated titanium alloy components and the defect control of fording-EBWD structures have been investigated.
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Typical Materials for Electron Beam Wire Deposition,V deposits are introduced and discussed. Based on which, methods for tailoring of mechanical properties of EBWD products similar to Ti–6Al–4V alloy are proposed. Near the end of this chapter, new findings on fracture modes and deformation mechanism in tensile tests of EBWD Ti–6Al–4V are illustrated.
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