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| 1 | Selective laser melting(SLM)of CX stainless steel:Theoretical calculation,process optimization and strengthening mechanism显示文摘In the present work,selective laser melting(SLM)technology was utilized for manufacturing CX stainless steel samples under a series of laser parameters.The effect of laser linear energy density on the microstructure characteristics,phase distribution,crystallographic orientation and mechanical properties of these CX stainless steel samples were investigated theoretically and experimentally via scanning electron microscope(SEM),X-ray diffraction(XRD),electron backscatter diffraction(EBSD)and transmission electron microscope(TEM).Based on the systematic study,the SLM CX stainless steel sample with best surface roughness(Ra=4.05±1.8μm)and relative density(Rd=99.72%±0.22%)under the optimal linear density(η=245 J/m)can be obtained.SLM CX stainless steel was primarily constituted by a large number of fine martensite(α’phase)structures(i.e.,cell structures,cellular dendrites and blocky grains)and a small quantity of austenite(γphase)structures.The pre ferred crystallographic orientation(i.e.,<111>direction)can be determined in the XZ plane of the SLM CX sample.Furthermore,under the optimal linear energy density,the good combinations with the highest ultimate tensile strength(UTS=1068.0%±5.9%)and the best total elongation(TE=15.70%±0.26%)of the SLM CX sample can be attained.Dislocation strengthening dominates the strengthening mechanism of the SLM CX sample in as-built state. | Dongdong Dong Cheng Chang Hao Wang Xingchen Yan Wenyou Ma Min Liu Sihao Deng Julien Gardan Rodolphe Bolot Hanlin Liao | 2021 | Journal of Materials Science & Technology2021,,14: | 11 |
| 2 | Additive manufacturing of steel–copper functionally graded material with ultrahigh bonding strength显示文摘Additive manufacturing enables processing of functionally graded materials(FGMs)with flexible spatial design and high bonding strength.A steel-copper FGM with high interfacial strength was developed using laser powder bed fusion(LPBF).The effect of laser process parameters on interfacial defects was evaluated by X-ray tomography,which indicates a low porosity level of 0.042%therein.Gradient/fine dendritic grains in the interface are incited by high cooling rates,which facilitates interface strengthening.Multiple mechanical tests evaluate the bonding reliability of interface;and the fatigue tests further substantiate the ultrahigh bonding strength in FGMs,which is superior to traditional manufacturing methods.Mechanisms of the high interfacial bond strength were also discussed. | Chaolin Tan Youxiang Chew Guijun Bi Di Wang Wenyou Ma Yongqiang Yang Kesong Zhou | 2021 | Journal of Materials Science & Technology2021,,13: | 7 |
| 3 | Acoustic emission monitoring of rockbursts during TBM-excavated headrace tunneling at Jinping Ⅱ hydropower station显示文摘To better understand the mechanical properties of marble at Jinping II hydropower station, this paper examines the changes of brittle rocks in excavation damaged zones(EDZs) before and after excavation of tunnel with the tunnel boring machine(TBM). The paper attempts to employ the acoustic emission(AE) to study the AE characteristics and distribution of rockburst before and after TBM-excavated tunnel. It is known that the headrace tunnel #2, excavated by the drill-and-blast(D&B) method, is ahead of the headrace tunnel #3 that is excavated by TBM method. The experimental sub-tunnel #2–1, about 2000 m in depth and 13 m in diameter, between the two tunnels is scheduled. In the experimental sub-tunnel #2–1, a large number of experimental boreholes are arranged, and AE sensors are installed within 10 m apart from the wall of the headrace tunnel #3. By tracking the microseismic signals in rocks, the location, frequency, quantity, scope and intensity of the microseismic signals are basically identifed. It is observed that the AE signals mainly occur within 5 m around the rock wall, basically lasting for one day before tunnel excavation and a week after excavation. Monitoring results indicate that the rockburst signals are closely related to rock stress adjustment. The rock structure has a rapid self-adjustment capacity before and after a certain period of time during tunneling. The variations of rock stresses would last for a long time before reaching a fnal steady state. Based on this, the site-specifc support parameters for the deep tunnels can be accordingly optimized. | Wuwei Cheng Wenyou Wang Shiqiang Huang Peng Ma | 2013 | Journal of Rock Mechanics and Geotechnical Engineering2013,5,6: | 6 |
| 4 | Effect of Bionic Unit Shapes on Solid Particle Erosion Resistance of ZrO2-7wt%Y2O3 Thermal Barrier Coatings Processed by Laser显示文摘 | Panpan Zhang Fuhai Li Xiaofeng Zhang Zhihui Zhang Chaolin Tan Luquan Ren Yueliang Wang Wenyou Ma Min Liu | 2018 | Journal of Bionic Engineering2018,15,3: | 4 |
| 5 | Experimental Research on 32Cr3Mo1V Substrate AntiMolten Aluminum Corrosion by Laser Treatment显示文摘Two types of layers were prepared by means of laser surface alloying process using High-power Transverse Flow CO2 laser beam with different additions,which were pure Cr powder and Co alloy powder on the 32Cr3Mo1V substrate.The unique characters of laser treatments,such as microstructure,distribution of elements,and micro-hardness were studies in thorough;furthermore,the abilities anti-molten aluminum's corroding of the layers were tested in 700 centigrade molten aluminum.The results indicate that both laser treated layers can enforce the ability anti-corroding of the molten aluminum on 32Cr3Mo1V substrate,while the laser alloying layer with Cr powder shows the most advantage of anti-aluminum corrosion character,i.e.the layer does not be corroded at all in the corrosion experiment.And the diffused thickness of aluminum in the layers by laser alloying process with Co powder is half below that of in the 32Cr3Mo1V substrate. | Li Fuhai Tong Xin Min Liu Ma Wenyou Chen Xingchi | 2012 | 稀有金属材料与工程2012,41,S1: | 1 |
| 6 | Study of Orthogonal Test of the Tribological Properties of the Surface Texturing Coating显示文摘 | Yuncai Zhao GaoJie Hao Chunming Deng Wenyou Ma | 2011 | Procedia Engineering2011,,: | 1 |
| 7 | Microstructure and Wear Resistance of Laser Cladded Co-based Superalloy Coating显示文摘Co-based superalloy coating was prepared on the stainless steel surface by laser cladding.The microstructure,phase constitutes and worn surface morphology of the coating were characterized by optical microscope,scanning electron microscope(SEM)with energy dispersive spectrum(EDS)and X-ray diffraction(XRD).The ambient temperature sliding friction and wear property of the coating was also tested.The experiments results showed that:the microstructures of the Co-based superalloy coating are'cellular crystal-coarse dendrite-tiny dendrite'in turn from bottom to surface,which consists ofγ-Co solid solution,Fe2Mo and Co7Mo6.The average micro-hardness of the laser cladding is 632 HV,which is 2 times higher than that of 304 stainless steel matrix.The ambient temperature sliding friction and wear property of the laser cladding is about 1~1.5 times in contrast to that of 304 stainless steel matrix.The better wear resistance of the coating is contributed to solution strengthening of Mo,as well as dispersion strengthening of Fe2Mo and Co7Mo6 hard phases.The failure mechanisms of the coating are pitting fatigue abrasion and grain-abrasion. | Ma Wenyou Lu Cheng Liu Min Chen Xingchi Tong Xin Lu Cheng Li Fuhai | 2012 | 稀有金属材料与工程2012,41,S1: | 0 |
| 8 | Integrating thin wall into block:A new scanning strategy for laser powder bed fusion of dense tungsten显示文摘Due to a combination of outstanding properties including high melting point,high density,low thermal expansion coefficient,low saturated vapor pressure and excellent thermal conductivity,tungsten(W)parts have been widely used as electrodes,heating elements,anti-scatter grids for Computed Tomography(CT)equipment,rocket nozzles and divertor materials for nuclear fusion[1]. | Zhengang Xiong Ji Zou Zhaoyang Deng Jinhan Chen Wei Liu Yuchi Fan Minshi Wang Xiaoqing Zhao Chunfeng Yu Dongdong Dong Wenyou Ma Weimin Wang Zhengyi Fu | 2022 | Journal of Materials Science & Technology2022,,25: | 0 |