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歡迎來(lái)到江南輕合金新材料產(chǎn)業(yè)研究院,!

王珊

姓    名

王珊

  

  

  

職    稱

副研究員

政治面貌

中共黨員

郵    箱

[email protected]

個(gè)人基本情況

 

中南大學(xué)材料物理與化學(xué)專業(yè)博士,2015年7月進(jìn)入合肥工業(yè)大學(xué)任教,,碩士生導(dǎo)師,。

主要研究方向

 

主要研究方向?yàn)椋航饘俨牧纤苄宰冃魏屯嘶鹦袨椋恍滦秃瞬牧系脑O(shè)計(jì)與制備,;稀有難熔金屬新材料的制備和加工,;金屬材料塑性加工力學(xué)性能模擬等。

參與科研項(xiàng)目情況

主持縱向科研項(xiàng)目5項(xiàng),,主持橫向科研項(xiàng)目0項(xiàng),;參與縱向科研項(xiàng)目若干項(xiàng),參與橫向科研項(xiàng)目0項(xiàng),。具體如下:

 

主持國(guó)家自然基金青年科學(xué)基金,,安徽省自然科學(xué)基金青年項(xiàng)目,中央高?;究蒲袠I(yè)務(wù)費(fèi)專項(xiàng)資金資助學(xué)術(shù)新人計(jì)劃2項(xiàng),,中國(guó)博士后基金面上資助;參與科技部國(guó)家重大基礎(chǔ)研究ITER專項(xiàng),,參與國(guó)家自然科學(xué)基金面上項(xiàng)目和青年項(xiàng)目等,。

發(fā)表論文情況

 

    第一作者或通訊作者發(fā)表論文18篇,SCI收錄18篇,,論文被引用總次數(shù)次,,論文影響因子,參與出版專著(譯著)0部,。具體如下:

  1. S. Wang, M.P. Wang, C. Chen, Z. Xiao, Y.L. Jia, Z. Li, Z.X. Wang. Orientation Dependence of the Dislocation Microstructure in Compressed Body-Centered Cubic Molybdenum. Materials Characterization, 2014,,91(2): 10-18.  (SCI、EI)

  2. Shan Wang, Chang Chen, Yanlin Jia, Mingpu Wang. The Banded Structure and Its Effects on the Transverse Elongation and Textures of Mo Bars. Advanced Engineering Materials, 2014,,16(9): 1119-1126.  (SCI,、EI)

  3. Shan Wang, Chang Chen, Yanlin Jia, Mingpu Wang, Fuzhong Xia, Zhou Li, Zhixing Wang. The Reciprocal Relationship of Orientation Dependence of the Dislocation Boundaries in Body-Centered Cubic Metals and Face-Centered Cubic Metals. Materials Science & Engineering A, 2014,619: 107–111.(SCI,、EI)

  4. Shan Wang, Chang Chen*, YanLin Jia, Mingpu Wang. Evolution of texture and deformation microstructure in Ta-2.5W alloy during cold rolling. Journal of Materials Research, 30(2015)2792-2803.  (SCI,、EI)

  5. S. Wang, C. Chen*, Y.L. Jia, M.P. Wang, Z. Li, Y.C. Wu. Evolution of deformation microstructures of cold-rolled Ta–2.5W alloy with coarse grains at low to medium strains. Int. Journal of Refractory Metals and Hard Materials, 54 (2016) 104–115.  (SCI、EI)

  6. S. Wang, C. Chen*, Y.L. Jia, Z. Xiao, M.P. Wang, Z. Li, Y.C. Wu. Effects of grain size on the microstructure and texture of cold-rolled Ta-2.5W alloy. Int. Journal of Refractory Metals and Hard Materials, 58 (2016) 125–136.  (SCI,、EI)

  7. S. Wang, L. Niu, C. Chen*, Y.L. Jia, M.P. Wang, Z. Li, Z.H. Zhong, P. Lu, P. Li, Y.C. Wu. The orientation spreading in γ-fiber of electron beam melted Ta-2.5W alloy during cold rolling. Journal of Alloys and Compounds, 699 (2017) 57-67.  (SCI,、EI)

  8. S. Wang, S.K. Feng, C. Chen*, Y.L. Jia, M.P. Wang, Z. Li, Z.H. Zhong, P. Lu, P. Li, L.F. Cao*, Y.C. Wu, A twin orientation relationship between {001}〈210〉and {111}〈110〉 obtained in Ta-2.5W alloy during heavily cold rolling. Materials Characterization,,125 (2017) 108–113

  9. S. Wang, L. Niu, C. Chen*, Y.L. Jia, M.P. Wang, Z. Li, Z.H. Zhong, P. Lu, P. Li, Y.C. Wu, The evolution of deformation microstructure in electron beam melted Ta-2.5W alloy during cold rolling. Fusion Engineering and Design,,125 (2017) 510–514 

  10. L. Niu, S. Wang*, C. Chen*, S.F. Qian, R. Liu, H. Li, B. Liao, Z.H. Zhong, P. Lu, M.P. Wang, P. Li, Y.C. Wu, L.F. Cao, Mechanical Behavior and Deformation Mechanism of Commercial Pure Titanium Foils. Materials Science & Engineering A, 707 (2017) 435-442

  11. Chang Chen*, Sanfeng Qian, Shan Wang**, Long Niu, Rui Liu, Bin Liao, Zhihong Zhong, Pin Lu, Ping Li, Lingfei Cao, Yucheng Wu. The microstructure and formation mechanism of face-centered cubic Ti in commercial pure Ti foils during tensile deformation at room temperature. Materials Characterization, 136 (2018) 257-263

  12. S. Wang, Z.H. Wu, C. Chen*, S.K. Feng, R. Liu, B. Liao, Z.H. Zhong, P. Lu, M.P. Wang, P. Li, Jan W. Coenen, L.F. Cao, Y.C. Wu. The evolution of shear bands in Ta-2.5W alloy during cold rolling. Materials Science & Engineering A, 726(2018) 259-273

  13. S. Wang, L. Niu, C. Chen*, Y. Pang, B. Liao, Z.H. Zhong, P. Lu, P. Li, X.D. Wu, Jan W. Coenen, L.F. Cao*, Y.C. Wu*. Size Effects on the Tensile Properties and Deformation Mechanism of Commercial Pure Titanium Foils. Materials Science & Engineering A, 730 (2018) 244–261 

  14. Chang Chen*, Sanfeng Qian, Shan Wang*, Rui Liu, Bin Liao, Long Niu, Zhihong Zhong, Pin Lu, Ping Li, Lingfei Cao, Jan W. Coenen, Yucheng Wu*. The microstructure and property of W/Ti multilayer composites prepared by spark plasma sintering. International Journal of Refractory Metals & Hard Materials, 79 (2019) 138–144

  15. Chang Chen*, Sanfeng Qian, Rui Liu, Shan Wang*, Bin Liao , Zhihong Zhong, Lingfei Cao, Jan W. Coenen, Yucheng Wu*. The microstructure and tensile properties of W/Ti multilayer composites prepared by spark plasma sintering. Journal of Alloys and Compounds, 780 (2019) 116-130

  16. S. Wang, S.K. Feng, C. Chen?, B. Liao, Z.H. Zhong, P. Li, L.F. Caoc??. Size effects on tensile properties and deformation mechanism of commercial pure tantalum foils. International Journal of Refractory Metals & Hard Materials, 80(2019) 161-173

  17. S. Wang, Z.H. Wu, M.Y. Xie, D.H. Si, L.Y. Li, C. Chen, Z. Zhang*, Y.C. Wu. The effect of tungsten content on the rolling texture and microstructure of Ta-W alloys. Materials Characterization, 159 (2020) 110067

  18. R. Liu, X. Xia, M.Y. Xie, C. Chen*, S. Wang**, Z.H. Zhong, L.F. Cao, Y.C. Wu. Effect of interlayers on the tensile behaviors of tungsten multilayered composites. Journal of Alloys and Compounds,  827 (2020) 154286

 

 

專利情況

 

 

  1. 一種超薄Ta-W合金箔材的制備方法

  2. 一種軋制純鉭箔的退火強(qiáng)化工藝方法

  3. 一種鉭及鉭鎢合金金相樣品的制備方法

  4. 一種耐高溫的層狀增韌鎢基復(fù)合材料及其制備方法

  5. 一種層狀增韌鎢基復(fù)合材料及其制備方法

  6. 一種層狀梯度結(jié)構(gòu)鎢基復(fù)合材料及其制備方法

  7. 一種梯度結(jié)構(gòu)鈦鉭層狀復(fù)合材料及其制備方法

  8. 一種高硬度脆性材料用拉伸夾具

 

獲獎(jiǎng)情況

2019年,第五屆中國(guó)大學(xué)生材料熱處理創(chuàng)新創(chuàng)業(yè)大賽,,三等獎(jiǎng),,指導(dǎo)教師

2019年,“TESCAN & Thermo Fisher Scientific 杯”全國(guó)大學(xué)生微結(jié)構(gòu)攝影大賽,優(yōu)秀指導(dǎo)老師

2019年,,合肥工業(yè)大學(xué)第五屆互聯(lián)網(wǎng)+創(chuàng)新創(chuàng)業(yè)大賽,,創(chuàng)意組銀獎(jiǎng),指導(dǎo)老師

2020年,,合肥工業(yè)大學(xué)第五屆互聯(lián)網(wǎng)+創(chuàng)新創(chuàng)業(yè)大賽,,創(chuàng)意組銅獎(jiǎng),指導(dǎo)老師