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郝亮

领域:新材料产业 学校:中国地质大学(武汉)职称:教授

先进制造、材料科学、机械工程...

具体了解该专家信息,请致电:027-87555799 邮箱 haizhi@uipplus.com

教育背景

学士 (Bechalor)
1991.9
-
1995.7
中国
华中理工大学
工程学

硕士(Master)
1998.9
-
2000.7
中国
华中理工大学
经济学

博士(PhD)
2002.8
-
2005.5
新加坡
南洋理工大学
工程学

工作经历

工程师 1995.7 - 2002.2 中国 华中电力集团公司(Central China Electric Power Group Co.) 博士后 2004.2 - 2006.6 英国 英国拉夫堡大学(Loughborough University) 博导、高级讲师 2006.7 - 2015.10 英国 埃克塞特大学(University of Exeter) 董事长、创办人 2012.4 - 至今 英国 英国巧克公司(Choc Edge Ltd)  客座教授(兼职) 2011.7 - 至今 中国 重庆大学(Chongqing University) 特聘教授 2013.9 - 至今 中国 中国地质大学(China University of Geosciences) 董事长、法人代表 2012.12 - 至今 中国 武汉巧意科技有限公司(Wuhan Qiaoyi Technology Co., Ltd.)

项目课题经历

主持国家自然科学基金面上项目(2016):喷射增材成形滑坡模型材料与结构双梯度滑带层基础研究,金额62万

合作主持自然科学基金面上项目(2016):增材制造多孔Cu-Ni合金于CVD法制备三维石墨烯基础研究,金额21.67万

3、主持提高高附加值制造业竞争力项目(2012):英国科技发展局授予ChocEdge公司金额£33,000 项目编号1209-FS1-HVM-FS-176191

4、主持纳米生物复合材料制备和客户化的快速成型项目(2012):英国皇家工程协会中英交流协会出资£22,210

5、主持产品和价值共创的规模化应用项目(2010年9月): 英国工程和物力科学研究院出资 £365,236

6、主持产品设计和三维打印制造工艺优化技术项目(2009年5月):英国科技发展局总出资£1,456,211,其中英国埃克赛特大学获项目经费£284,088,项目编号 TP11/HVM/6/I/AB183A

7、主持激光叠加制造高附加值的航空产品项目(2008年4月):英国科技发展局共出资£1,718,000,其中英国埃克赛特大学项目拨款为£108,988,项目编号TP11/HVM/6/I/AB183A

8、主持复杂材料结构的加工和机械性能优化项目(2008年2月):英国西部研究所和EAD共同出资 £62,400

9、主持先进空状材料构件和混合物材料的优化技术项目(2007年11月):英国工程和物力科学研究院和Simpleware公司共出资£83,689,编号CASE/CAN/07/86EPSRC

论文、成果、著作等

1.L. Hao, X. Lin, Y.S. Shi (2011) “Preparation, characterisation and processing of carbon fibre/polyamide-12 composites for selective laser sintering”, Composites Sci. & Tech., 71,1834-1941

2.L.Hao, S. Dadbakhsh“Materials and Process Aspects of Selective Laser Melting of Metals and Metal Matrix Composites: A Review” (Invited Paper), Chinese Journal of Lasers, 2009,36(12), 3192-3203.EI

3.Hao, L. , Mellor, S. , Seaman, O. , Henderson, J. , Sewell, N. and Sloan, M. 'Material characterisation and process development for chocolate additive layer manufacturing', Virtual and Physical Prototyping, 5:2, 57 - 64.

4.L. Hao, M. M. Savalani, Y. Zhang, K.E. Tanner and R. A. Harris“Rapid, manufacturing of bioceramic/polymer composite implants by selective laser sintering”, International Journal of Computer Application in Technology,2009, 36(1), 97-103

5.L.Hao, S. Dadbakhsh, O. Seaman, M. Felstead “Selective Laser Melting of a Stainless Steel and Hydroxyapatite Composite for Load-Bearing Implant Development”, Journal of Materials Processing Technology, 2009,209(17), 5793-5801.SCI

6.L. Hao, M. M. Savalani, Y. Zhang, K.E. Tanner, R.J. Heath and R. A. Harris,“Characterisation of selective laser sintered hydroxyapatite based biocomposite structures for bone replacement”, Proceedings of the Royal Society of London,2007, Series A, 463, 1857-1869

7.L. Hao and J. Lawrence “Wettability modification and the subsequent manipulation of protein adsorption on a Ti6Al4V alloy by means of CO2 laser surface treatment” Journal of Materials Science: Materials in Medicine, 2007,18 (11),807-817

8.L. Hao, M. M. Savalani, Y. Zhang, K.E. Tanner and R. A. Harris“The effect of material and processing conditions on characteristics of hydroxyapatite and high density polyethylene bio-composite by selective laser sintering”, Proceedings of the IMechE Part L, Journal of Materials: Design & Application, 2006,220, 125-137

9.L. Hao, M. M. Savalani, Y. Zhang, K.E. Tanner and R. A. Harris “Selective laser sintering of hydroxyapatite reinforced polyethylene composites for bioactive implants and tissue scaffold development”, Proceedings of the IMechE Part H, Journal of Engineering in Medicine, 2006,220 (H4),521-531

10.L. Hao and J. Lawrence“The effects of Nd:YAG laser treatment on the wettability characteristics of a zirconia-based bioceramic”, Optics and Lasers in Engineering,2006, 44 (8),803-814

11.L. Hao and J. Lawrence“Albumin and fibronectin protein adsorption on CO2 laser modified bio-grade stainless steel”, Proceedings of the IMechE Part H, Journal of Engineering in Medicine, 2006,220 (H1),47-55

12.L. Hao and J. Lawrence “Melt depth prediction for laser irradiated magnesia partially stabilised zirconia”, Journal of Materials Processing Technology,2006, 180 (1-3),110-116

13.L. Hao and J. Lawrence “Numerical modelling of the laser surface processing of magnesia partially stabilised zirconia by the means of three-dimensional transient finite element analysis”, Proceedings of the Royal Society of London, 2006,Series A, 462 (2065),43-57

14.L. Hao and J. Lawrence, “The improved adsorption of human plasma fibronectin on magnesia partially stabilised zirconia (MgO-PSZ) bioceramic resulting from CO2 laser irradiation”, Journal of Laser Applications,2005, 17 (2), 127-133

15.L. Hao, J. Lawrence, K.S. Chian, “Osteoblast cell adhesion on laser modified zirconia based bioceramic”, Journal of Materials Science: Materials in Medicine,2005,16 (8),719-726

16.L. Hao, D.R. Ma, J. Lawrence, X. Zhu, “Enhancing osteoblast functions on a magnesia partially stabilised zirconia bioceramic by means of laser irradiation”, Materials Science & Engineering C: Biomimetic and Supramolecular Systems, 2005,25, 496-502

17.L. Hao, J. Lawrence, Y.F. Phua, K.S. Chian, G.C. Lim, H.Y. Zheng,“Enhanced human Osteoblast cell adhesion and proliferation on 316 LS stainless steel by means of CO2 laser surface treatment”, Journal of Biomedical Materials Research B, Applied Biomaterials, 2005,73B (1),148-156

18.L. Hao, J. Lawrence and L. Li, “The wettability modification of bio-grade stainless steel in contact with simulated physiological liquids by the means of laser irradiation” Applied Surface Science, 2005,247 (1-4),453-457.

19.L. Hao, J. Lawrence and L. Li, (2005), “The manipulation of the osteoblast cell response to the Ti-6Al-4V titanium alloy using high power diode laser (HPDL)” Applied Surface Science, 2005,247 (1-4),602-606.

2. 通讯作者论文

Chunze Yang*,Liang Hao*,Ahmed Hussein,Philippe Young,Ti–6Al–4V triply periodic minimal surface structures for bone implants fabricated via selective laser melting,Journal of the Mechanical Behavior of Biomedical Materials, Volume 51, Pages 61-73,November 2015

Chunze Yang,Liang Hao*,Ahmed Hussein,PhilippeYoung,Juntong Huang,Wei Zhu,Microstructure and mechanical properties of aluminium alloy cellular lattice structures manufactured by direct metal laser sintering,Materials Science and Engineering: A, Volume 628, Pages 238-246, 25 March 2015

Chunze Yan, Liang Hao*,Ahmed Hussein,Simon Lawrence Bubb, Philippe Young, David Raymont, Evaluation of light-weight AlSi10Mg periodic cellular lattice structures fabricated via direct metal laser sintering,Journal of Materials Processing Technology, Volume 214, Issue 4, Pages 856-864, April 2014

Stephen Mellor,Liang Hao*,David Zhang, Additive manufacturing:A framework for implementation,International Journal of Production Economics, Volume 149, Pages 194-201, March 2014.;SCI,T2,IF1.943.

Chunze Yan , Liang Hao *, Ahmed Hussein, Philippe Young, David Raymont,Advanced lightweight 316L stainless steel cellular lattice structures fabricated via selective laser melting,Materials & Design, Volume 55, Pages 533-541, March 2014

Ahmed Hussein , Liang Hao*,Chunze Yang, Richard Everson, Materials and Design, volume 52, pages 638-647.;SCI,T2,IF2.27.

Giovanni Strano,Liang Hao*,Richard Everson,Kenneth E. Evans,Surface roughness analysis, modelling and prediction in selective laser melting,Journal of Materials Processing Technology, volume 213, no. 4, pages 589-597. ;SCI,T2,IF1.769.

Ahmed Hussein , Liang Hao* , Chunze Yan, Richard Everson, Philippe Young,Advanced lattice support structures for metal additive manufacturing,Journal of Materials Processing Technology, volume 213, no. 7, pages 1019-1026. ;SCI,T2,IF1.769.

3. 既非第一作者又非通讯作者论文

G. Strano* , L. Hao, R. M. Everson, K. E. Evans.A new approach to the design and optimisation of support structures in additive manufacturing,International Journal of Advanced Manufacturing Technology, volume 66, no. 9-12, pages 1247-1254. ;SCI,T2,IF1.126.

Dadbakhsh, Sasan , Hao. Liang and Kong, Choon Yen 'Surface finish improvement of LMD samples using laser polishing', Virtual and Physical Prototyping, 5:4, 215 - 221

P. Jerrard, L. Hao and K.E. Evans“Experimental Investigation into Selective Laser Melting of Austenitic and Martensitic Stainless Steel Powder Mixtures”, Proceedings of the IMechE Part B, Journal of Engineering Manufacture, 2009,223(11), 1409-1416

Y. Zhang, L. Hao, M. M. Savalani, R. A. Harris and K.E. Tanner “In vitro biocompatibility of hydroxyapatite reinforced polymeric composites manufactured by selective laser sintering”, Journal of Biomedical Materials Research: Part A,2009, 91, 1018-1027

Y. Zhang, L. Hao, M. M. Savalani, R. A. Harris and K.E. Tanner . “Characterization and dynamic mechanical analysis of selective laser sintered hydroxyapatite filled polymeric composites”, Journal of Biomedical Materials Research:Part A, 2007,16, 312-318

M. M. Savalani, L. Hao, Y. Zhang, K.E. Tanner and R. A. Harris.“Fabrication of porous bioactive structures using the selective laser sintering technique”, Proceeding of the IMechE Part H, 2007,221(8), 873-886

M.M. Savalani, L. Hao and R.A. Harris. “Evaluation of CO2 and Nd: YAG lasers for the selective laser sintering of HAPEX®” Proceedings of the IMechE Part B, Journal of Engineering Manufacture, 2006,220 (B2) 171-182.

J. Lawrence, L. Hao and H.R. Chew. "On the correlation between Nd:YAG laser-induced wettability characteristics modification and Osteoblast cell bioactivity on a titanium alloy", Surface and Coating Technology, 2005,200 (18-19) 5581-5589

J. Lawrence, H.R. Chew, L. Hao and C.K. Chong,"Laser modification of the wettability characteristics of a 316L stainless steel bio-metal and the effects thereof on human fibroblast cell response", Lasers in Engineering, 2005,15 (1-2),75-90.

二、会议论文

1. 第一作者论文

L.Hao, O. Seaman, S. Mellor, J. Henderson, N.Sewell, M. Sloan “Extrusion behavior of chocolate for additive layer manufacturing” The 4nd International Conference on Advance Research in Virtual and Rapid Prototyping, Leiria, Portugal, 5th – 10th October 2009.(Best Conference Paper Award).

L. Hao, M.M. Savalani, Y. Zhang, K.E. Tanner and R. A. Harris, “Characterization of HA/polymer Bio-composite Structure Fabricated by SelectiveLaser Sintering” The 3nd International Conference on Advance Research in Virtual and Rapid Prototyping, Leiria, Portugal, 25th - 28th September 2007.

L. Hao and J. Lawrence, "CO2 laser irradiation of a magnesia partially stabilized zirconia (MgO-PSZ) bioceramic and the subsequent improvements in human osteoblast cell adhesion", The 25th International Congress on Applications of Lasers and Electro-Optics: Laser Materials Processing, 30 October - 2 November 2006, Scottsdale, AZ., USA.

L. Hao, M.M. Savalani and R. A. Harris, (2005), “Layer manufacturing of polymer/bioceramic implants for bone replacement and tissue growth” The 2nd International Conference on Advance Research in Virtual and Rapid Prototyping, Leiria, Portugal, 28th September – 1st October 2005.

既非第一作者又非通讯作者论文

G. Strano, L. Hao, K.E. Evans, R.M. Everson, C.W. Smith, J. Meyer, D. Johns, G, Vanard, F. Scarpa “Multi-objective optimization for additive layer manufacturing” 10th National Conference on Rapid Design, Prototyping & Manufacturing, United Kingdom,12th June 2009.

S. Dadbakhsh, L. Hao, N. Sewell “test procedure for mechanical qualification of additive layer manufacturing parts” 10th National Conference on Rapid Design,Prototyping & Manufacturing, United Kingdom, 12th June 2009

P. Jerrard, L. Hao, K.E. Evans “Selective laser melting of pure aluminium powder – A preliminary study” 10th National Conference on Rapid Design, Prototyping & Manufacturing, United Kingdom, 12th June 2009

S. Dadbakhsh, L. Hao, N. Sewell, P.Jerrard “Direct fabrication of an in-situ Al composite using selective laser melting process”, The 4nd International Conference on Advance Research in Virtual and Rapid Prototyping, Leiria, Portugal, 5th – 10th October 2009

David, Raymond, L.Hao, P.Young , “Topological Optimisation of Scaffold Architectures: Implementation of Smooth Surface BESO algorithm” 8th International Symposium on Computer Methods in Biomechanics and Biomedical Engineering, 27th February – 1st March 2008

P. Jerrard, L. Hao, N. Sewell, K.E. Evans, M. Felstead,“Consolidation of Austenitic and Martensitic powder mixtures via selective laser melting”, 9th National Conference on Rapid Design, Prototyping & Manufacturing, Lancaster, United Kingdom, 13th June 2008

G.E. Hatwell, L. Hao, N. Sewell, K.E. Evans.“Simulation of energy absorption in nylon 12 powders during selective laser sintering”, 9th National Conference on Rapid Design, Prototyping & Manufacturing, Lancaster, United Kingdom, 13th June 2008

Y. Zhang, M.M. Savalani, L. Hao, R.A. Harris, K.E. Tanner , “Dynamic Mechanical Behavior of Selective Laser Sintered Hydroxyapatite-Polyamide Composite”, 20th European Conference on Biomaterials, Nantes, France, 27th September – 1st October 2006

M.M. Savalani, R.D. Goodrige, L.Hao, R.A. Harris, “Selective Laser Sintering of Bioactive Structures for Bone Replacement ”, 7th Solid Freeform Fabrication, Texas, USA, 14th -16th Aug. 2006

J. Lawrence and L. Hao, "Laser-induced wettability characteristics modification and the effect thereof on cell response on a titanium alloy", The 25th International Congress on applications of Lasers and Electro-Optics: Materials Processing, 30 October - 2 November 2006, Scottsdale, AZ., USA, pp. xx-xx. Orlando, FL: Laser Institute of America .

专著

L. Hao and R. A. Harris,客户量身定做的生物植入物开发(Customised Implanted for bone replacement and growth),Springer,17.1万,2008

L. Hao and J. Lawrence,提高生物材料生物相容性的激光表面处理技术,Wiley,18.9万,2006

L.W. Zheng, L. Hao, Y.K. Liang, Q.S. Liu and H.L. Liu, Guideline of maintenance of Boiler for Thermal Power Plant (Part 3): valve and steam-water pipes system reparation,China Electric & Power Publication,4300,2001

专利、著作版权等

一种保温喷射管式三维巧克力打印设备 (专利号:ZL 2014 2 0216630.8)

一种食品打印机的打印喷头 (专利申请号:201620477367.7)

一种浆料3D打印机打印头的加热系统 (专利申请号:201620785979.2)

一种浆料3D打印机的螺杆挤出式打印头 (专利申请号:201620792608.7)

一种浆料3D打印机的冷却系统 (专利申请号:201620789345.4)

一种浆料3D打印机的自动上料机构 (专利申请号:201620785977.3)

《Choc Draw》计算机软件著作权

《3D打印控制软件》计算机软著作权

《一种3D打印的控制主板》 集成电路布图设专有权申请

一种3D打印机(专利号:CN201520629374.X);

三维打印机打印头(专利号:CN201520907624.1);

3D打印金属复杂结构的支撑浆料、金属浆料及打印方法(专利申请号:CN201610800736.6);

一种3D打印机、3D打印方法及金属浆料的制备方法(专利申请号:CN201510512664.0);

一种珐琅制作方法(专利申请号:CN201610079401.X)

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