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Xu Xiang

Researcher at Jiangsu University

Publications -  10
Citations -  266

Xu Xiang is an academic researcher from Jiangsu University. The author has contributed to research in topics: Peening & Laser. The author has an hindex of 2, co-authored 9 publications receiving 78 citations.

Papers
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Journal ArticleDOI

High-performance integrated additive manufacturing with laser shock peening –induced microstructural evolution and improvement in mechanical properties of Ti6Al4V alloy components

TL;DR: In this article, the impact of the angle between LSW and the deposited plane on tensile properties of both SLM-LSPed specimens was analyzed, and two kinds of LSW-induced atomic diffusion processes at the interfaces between both adjacent deposited layers were presented.
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Effects of laser shock peening on the hot corrosion behaviour of the selective laser melted Ti6Al4V titanium alloy

TL;DR: In this article, the effects of laser shock peening on the hot corrosion behavior of the selective laser melted (SLMed) Ti6Al4V titanium alloy were investigated and the results indicated that the SLMed specimen exhibited a significantly lower hot corrosion resistance in comparison to the SLM-LSPed specimen.
Journal ArticleDOI

Comparing corrosion behavior of additively manufactured Cr-rich stainless steel coating between conventional and extreme high-speed laser metal deposition

TL;DR: In this paper, a detailed comparison of corrosion behavior and microstructural features of the Cr-rich stainless steel coatings manufactured by conventional laser metal deposition (CLMD) and extreme high-speed laser metal fabrication (EHLMD) was firstly investigated.
Journal ArticleDOI

Comparison of Tensile Properties and Knot Security of Surgical Sutures: An In Vitro Mechanical Study.

TL;DR: In this paper , the authors measured the tensile properties and knot security of 5-0 sized sutures in both straight-pull and knot-pull according to the procedures outlined by the United States Pharmacopeia.
Patent

Method for preparing ultra-high-speed laser cladding layer by assisting of magnetic preheating and stirring

TL;DR: In this paper, an electromagnetic auxiliary system is combined with an ultra-high-speed laser manufacturing system, the force effect and the heating effect of a pulsed magnetic field are used for providing a composite energy field in the UL manufacturing process, the material surface is subjected to thermal synergy, and a pre-heating layer with controllable depth is arranged on a metal workpiece substrate by a high-frequency magnetic field.