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| 1 | Development Trends in Additive Manufacturing and 3D Printing显示文摘Additive manufacturing and 3D printing tech-nology have been developing rapidly in the last 30 years, and indicate great potential for future development. The promising future of this technology makes its impact on traditional industry unpredictable. 3D printing will propel the revolution of fabrication modes forward, and bring in a new era for customized fabrication by realizing the five 'any's: use of almost any material to fabricate any part, in any quantity and any location, for any industrial field. Innovations in material, design, and fabrication processes will be inspired by the merging of 3D-printing technology and processes with traditional manufacturing processes. Finally, 3D printing will become as valuable for manufacturing industries as equivalent and subtractive manufacturing processes. | Bingheng Lu Dichen Li Xiaoyong Tian | 2015 | Engineering2015,1,1: | 48 |
| 2 | Fiber Traction Printing:A 3D Printing Method of Continuous Fiber Reinforced Metal Matrix Composite显示文摘A novel metal matrix composite freeform fabrication approach,fiber traction printing(FTP),is demonstrated through controlling the wetting behavior between fibers and the matrix.This process utilizes the fiber bundle to control the cross-sectional shape of the liquid metal,shaping it from circular to rectangular which is more precise.The FTP process could resolve manufacturing difficulties in the complex structure of continuous fiber reinforced metal matrix composites.The printing of the first layer monofilament is discussed in detail,and the effects of the fibrous coating thickness on the mechanical properties and microstructures of the composite are also investigated in this paper.The composite material prepared by the FTP process has a tensile strength of 235.2 MPa,which is close to that of composites fabricated by conventional processes.The complex structures are printed to demonstrate the advantages and innovations of this approach.Moreover,the FTP method is suited to other material systems with good wettability,such as modified carbon fiber,surfactants,and aluminum alloys. | Xin Wang Xiaoyong Tian Qin Lian Dichen Li | 2020 | Chinese Journal of Mechanical Engineering2020,33,2: | 5 |
| 3 | Biomechanical Optimization of Elastic Modulus Distribution in Porous Femoral Stem for Artificial Hip Joints显示文摘 | Changning Sun Ling Wang Jianfeng Kang Dichen Li Zhongmin Jin | 2018 | Journal of Bionic Engineering2018,15,4: | 5 |
| 4 | Study on the Microstructure of Human Articular Cartilage/Bone Interface显示文摘 | Yaxiong Liu Qin Lian Jiankang He Jinna Zhao Zhongmin Jin Dichen Li | 2011 | Journal of Bionic Engineering2011,8,3: | 3 |
| 5 | Characterization of Leaf-Inspired Microfluidic Chips for Pumpless Fluid Transport显示文摘 | Jiankang He Mao Mao Dichen Li Yaxiong Liu Zhongmin Jin | 2014 | Journal of Bionic Engineering2014,11,1: | 3 |
| 6 | Patient-Specific Design and Biomechanical Evaluation of a Novel Bipolar Femoral Hemi-Knee Prosthesis显示文摘 | Qin Lian Dichen Li Zhongmin Jin ZhenWang Yuhan Sun | 2014 | Journal of Bionic Engineering2014,11,2: | 3 |
| 7 | Integrative square-grid triboelectric nanogenerator as a vibrational energy harvester and impulsive force sensor显示文摘方形格子的摩擦电 nanogenerator (SG-TENG ) 为收获震动的精力并且察觉到冲动的力量被表明。每个广场三维(3D ) 打印了方形的格子充满铝(艾尔) 球。格子结构允许 SG-TENG 在宽广带宽上收获震动的精力并且在不同震动的角度操作。SG-TENG 的最惹人注目的特征是它被放大的能力并且综合。在在平行连接二 SG-TENGs 以后,开电路的电压和电线走火电流显著地在完整的震动的频率范围上被增加。与一个乒乓球球拍是综合的, SG-TENG 能从用球拍击一个砰恶臬球收获震动的精力,在由球拍的直接命中产生一般水准的地方,输出 10.9 | Chuan He Weijun Zhu Guang Qin Gu Tao Jiang Liang Xu Bao Dong Chen Chang Bao Han Dichen Li Zhong Lin Wang | 2018 | Nano Research2018,11,2: | 3 |
| 8 | Finite Element Analysis of the Pelvis after Customized Prosthesis Reconstruction显示文摘 | Enchun Dong Ling Wang Taimoor Iqbal Dichen Li Yaxiong Liu Jiankang He Binghui Zhao Yuan Li | 2018 | Journal of Bionic Engineering2018,15,3: | 2 |
| 9 | Preparation,Mechanical and Biological Properties of Inkjet Printed Alginate/Gelatin Hydrogel显示文摘3D printing has made remarkable progress in soft tissue reconstruction enabling the custom design of complex material implants with patient specific geometry.The aim of this study was to inkjet print mechanically reinforced biocompatible hydrogels.Here,we developed a double crosslinked ink by optimizing the rheological properties of solutions of sodium alginate(NaAlg),NaAlg/transglutaminase(TG),CaCl_(2)and gelatin/CaCl_(2).The results showed that a two-component ink system comprising NaAlg(4%w/v)/TG(0.8%w/v)and gelatin(4%w/v)/CaCl_(2)(3%w/v)gave optimum printability.The mechanical and biological properties of printed alginate/gelatin hydrogels prepared from inks with different gelatin contents,and incorporated fibroblasts,were characterized by Scanning Electron Microscope(SEM),mechanical testing and laser confocal microscopy.The compressive moduli of alginate/gelatin hydrogels could be adjusted from 19.2 kPa±1.2 kPa to 65.9 kPa±3.3 kPa by increasing the content of gelatin.After incubation for 7 d,fibroblasts had permeated all printed hydrogels and the rate of proliferation increased with increasing gelatin content.The highest cell proliferation rate(497%)was obtained in a hydrogel containing 4.5%(w/v)gelatin.This study offers a new strategy for the fabrication of 3D structures used to mimic the function of native tissues. | Tian Jiao Qin Lian Tingze Zhao Huichao Wang Dichen Li | 2021 | Journal of Bionic Engineering2021,18,3: | 2 |
| 10 | In vivo evaluation of additively manufacturedmulti-layered scaffold for the repair of large osteochondral defects显示文摘The repair of osteochondral defects is one of the major clinical challenges in orthopaedics.Well-established osteochondral tissue engineering methods have shown promising results for the early treatment of small defects.However,less success has been achieved for the regeneration of large defects,which is mainly due to the mechanical environment of the joint and the heterogeneous nature of the tissue.In this study,we developed a multi-layered osteochondral scaffold to match the heterogeneous nature of osteochondral tissue by harnessing additive manufacturing technologies and combining the established art laser sintering and material extrusion techniques.The developed scaffold is based on a titanium and polylactic acid matrix-reinforced collagen“sandwich”composite system.The microstructure and mechanical properties of the scaffold were examined,and its safety and efficacy in the repair of large osteochondral defects were tested in an ovine condyle model.The 12-week in vivo evaluation period revealed extensive and significantly higher bone in-growth in the multi-layered scaffold compared with the collagen–HAp scaffold,and the achieved stable mechanical fixation provided strong support to the healing of the overlying cartilage,as demonstrated by hyaline-like cartilage formation.The histological examination showed that the regenerated cartilage in the multi-layer scaffold group was superior to that formed in the control group.Chondrogenic genes such as aggrecan and collagen-II were upregulated in the scaffold and were higher than those in the control group.The findings showed the safety and efficacy of the cell-free“translation-ready”osteochondral scaffold,which has the potential to be used in a one-step surgical procedure for the treatment of large osteochondral defects. | Maryam Tamaddon Gordon Blunn Rongwei Tan Pan Yang Xiaodan Sun Shen-Mao Chen Jiajun Luo Ziyu Liu Ling Wang Dichen Li Ricardo Donate Mario Monzón Chaozong Liu | 2022 | Bio-Design and Manufacturing2022,5,3: | 2 |
| 11 | Biomaterial Scaffolds with Biomimetic Fluidic Channels for Hepatocyte Culture显示文摘 | Xiao Li Jiankang He Yaxiong Liu Qian Zhao WanquanWu Dichen Li Zhongmin Jin | 2013 | Journal of Bionic Engineering2013,10,1: | 2 |
| 12 | Preparation of chitosan-gelatinhybrid scaffolds with well-organized microstructures for hepatic tissue engineering显示文摘 | He Jiankang Li Dichen Liu Yaxiong | 2009 | Acta Biomaterialia2009,5,: | 1 |
| 13 | Medical Additive Manufacturing: From a Frontier Technology to the Research and Development of Products显示文摘1.Research and development(R&D)and the challenges of raw materials for medical additive manufacturing Raw materials for medical additive manufacturing have a wide range of commonalities that are also seen in many other fields,making them an important basis in the field of three-dimensional(3D)printing.Problems and challenges related to material types,powder properties,formability,viscoelasticity,and so forth also share common features.For example,many metal materials are used in the field of aviation,while metals,polymers,and inorganic materials are used in the field of biomedicine.The most widely used materials in biomedicine are biocompatible.Various homogeneous and non-homogeneous composites are also available for 3D printing,and impose an additional challenge in additive manufacturing;the use of heterogeneous composites in 3D printing is particularly challenging. | Guixing Qiu Wenjiang Ding Wei Tian Ling Qin Yu Zhao Lianmeng Zhang Jian Lu Daijie Chen Guangyi Yuan Chengtie Wu Bingheng Lu Ruxu Du Jimin Chen Mo Elbestawi Zhongwei Gu Dichen Li Wei Sun Yuanjin Zhao Jie He Dadi Jin Bin Liu Kai Zhang Jianmo Li Kam WLeong Dewei Zhao Dingjun Hao Yingfang Ao Xuliang Deng Huilin Yang ShaoKeh Hsu Yingqi Chen Long Li Jianping Fan Guohui Nie Yun Chen Hui Zeng Wei Chen Yuxiao Lai | 2020 | Engineering2020,6,11: | 1 |
| 14 | A low cost cutter-based paper lamination rapid prototyping system显示文摘 | Yu Guoxing Ding Yucheng Li Dichen | 2003 | International Journal of Machine Tools and Manufacture2003,43,11: | 1 |
| 15 | Thermally degradeing polyethylene studied by means of factor-jump thermogravimetry 显示文摘 | Dichens B | 1982 | J Polym Sci Polym Chem1982,20,: | 1 |
| 16 | Thermally degradation study of isotactic polyethylene using factor-jump thermogravimetry 显示文摘 | Dichens B | 1982 | J Polym Sci Polym Chem1982,20,: | 1 |
| 17 | Design and fabrication of custom mandible titanium tray based on rapid prototyping 显示文摘 | Singare S Dichen L Bingheng L | 2004 | Med Eng Phys2004,26,8: | 1 |
| 18 | Rapid fab- rication of alumina-based ceramic cores for gas turbine blades by stereolithography and gelcasting显示文摘 | WU Haihua LI Dichen TANG Yiping | 2009 | Journal of Materials Processing Technology2009,,209: | 1 |
| 19 | High Voltage Subnanosecond Breakdown显示文摘 | Mankowski J Dichens J Kristiansen M | 1998 | IEEE Transactions on Plasma Science1998,26,3: | 1 |
| 20 | The value of repeat hysteroscopic evaluation in patients with failed in vitro fertilization transfer cycles显示文摘 | Dichen D Fanhi J Ashkenazi J | 1992 | Fertil Steril1992,58,4: | 1 |