|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 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 | 3D printing of bone tissue engineering scaffolds显示文摘Tissue engineering is promising in realizing successful treatments of human body tissue loss that current methods cannot treat well or achieve satisfactory clinical outcomes.In scaffold-based bone tissue engineering,a high performance scaffold underpins the success of a bone tissue engineering strategy and a major direction in the field is to produce bone tissue engineering scaffolds with desirable shape,structural,physical,chemical and biological features for enhanced biological performance and for regenerating complex bone tissues.Three-dimensional(3D)printing can produce customized scaffolds that are highly desirable for bone tissue engineering.The enormous interest in 3D printing and 3D printed objects by the science,engineering and medical communities has led to various developments of the 3D printing technology and wide investigations of 3D printed products in many industries,including biomedical engineering,over the past decade.It is now possible to create novel bone tissue engineering scaffolds with customized shape,architecture,favorable macro-micro structure,wettability,mechanical strength and cellular responses.This article provides a concise review of recent advances in the R&D of 3D printing of bone tissue engineering scaffolds.It also presents our philosophy and research in the designing and fabrication of bone tissue engineering scaffolds through 3D printing. | Chong Wang Wei Huang Yu Zhou Libing He Zhi He Ziling Chen Xiao He Shuo Tian Jiaming Liao Bingheng Lu Yen Wei Min Wang | 2020 | Bioactive Materials2020,5,1: | 20 |
| 3 | Flow Behaviour Analysis and Experimental Investigation for Emitter Micro-channels显示文摘The existing research of the flow behavior in emitter micro-channels mainly focuses on the single-phase flow behavior.And the recent micro-particle image velocimetry(PIV) experimental research on the flow characteristics in various micro-channels mainly focuses on the single-phase fluid flow.However,using an original-size emitter prototype to perform the experiments on the two-phase flow characteristics of the labyrinth channels is seldom reported.In this paper,the practical flow of water,mixed with sand escaped from filtering,in the labyrinth channel,is investigated.And some research work on the clogging mechanism of the labyrinth channel's structure is conducted.Computational fluid dynamics(CFD) analysis has been performed on liquid-solid two-phase flow in labyrinth-channel emitters.Based on flow visualization technology-micro-PIV,the flow in labyrinth channel has been photographed and recorded.The path line graph and velocity vector graph are obtained through the post-treatment of experimental results.The graphs agree well with CFD analysis results,so CFD analysis can be used in optimal design of labyrinth-channel emitters.And the optimized anti-clogging structures of the rectangular channel and zigzag channel have been designed here.The CFD numerical simulation and the micro-PIV experiments analysis on labyrinth-channel emitter,make the 'black box' of the flow behavior in the emitter channel broken.Furthermore,the proposed research promotes an advanced method to evaluate the emitter's performance and can be used to conducting the optimal design of the labyrinth-channel emitters. | WEI Zhengying CAO Meng LIU Xia TANG Yiping LU Bingheng | 2012 | Chinese Journal of Mechanical Engineering2012,25,4: | 11 |
| 4 | Receptance Coupling for Tool Point Dynamics Prediction on Machine Tools显示文摘Chatter has been a primary obstacle to the successful implementation of high speed machining.The frequency response function(FRF) of the tool point is crucial for identification of chatter free cutting conditions.In order to quickly acquire the FRF of the different components combinations of machine tool,the assembly of machine tool was always decomposed into several parts,where the fluted portion of tool,however,was always treated as a uniform beam,and the associated discrepancy was ignored.This paper presents a new method to predict the dynamic response of the machine-spindle-holder-tool assembly using the receptance coupling substructure analysis technique,where the assembly is divided into three parts:machine-spindle,holder and tool shank,and tool's fluted portion.Impact testing is used to measure the receptance of machine-spindle,the Timoshenko beam model is employed to analyze the dynamics of holder and tool shank,and the finite element method(FEM) is used to calculate the receptance of the tool's fluted portion.The approximation of the fluted portion cross section using an equivalent diameter is also addressed.All the individual receptances are coupled by using substructure method.The predicted assembly receptance is experimentally verified for three different tool overhang lengths.The results also show that the equivalent diameter beam model reaches an acceptable accuracy.The proposed approach is helpful to predict the tool point dynamics rapidly in industry. | ZHANG Jun SCHMITZ Tony ZHAO Wanhua LU Bingheng | 2011 | Chinese Journal of Mechanical Engineering2011,24,3: | 9 |
| 5 | Cryogenic 3D printing of dual-delivery scaffolds for improved bone regeneration with enhanced vascularization显示文摘Three-dimensional(3D)printing has been increasingly employed to produce advanced bone tissue engineering scaffolds with biomimetic structures and matched mechanical strengths,in order to induce improved bone regeneration in defects with a critical size.Given that the successful bone regeneration requires both excellent osteogenesis and vascularization,endowing scaffolds with both strong bone forming ability and favorable angiogenic potential would be highly desirable to induce improved bone regeneration with required vascularization.In this investigation,customized bone tissue engineering scaffolds with balanced osteoconductivity/osteoinductivity were produced via cryogenic 3D printing ofβ-tricalcium phosphate and osteogenic peptide(OP)containing water/poly(lactic-co-glycolic acid)/dichloromethane emulsion inks.The fabricated scaffolds had a hierarchically porous structure and were mechanically comparable to human cancellous bone.Angiogenic peptide(AP)containing collagen I hydrogel was then coated on scaffold surface to further provide scaffolds with angiogenic capability.A sequential release with a quick AP release and a slow but sustained OP release was obtained for the scaffolds.Both rat endothelial cells(ECs)and rat bone marrow derived mesenchymal stem cells(MSCs)showed high viability on scaffolds.Improved in vitro migration and angiogenesis of ECs were obtained for scaffolds delivered with AP while enhanced osteogenic differentiation was observed in scaffolds containing OP.The in vivo results showed that,toward scaffolds containing both AP and OP,the quick release of AP induced obvious angiogenesis in vivo,while the sustained OP release significantly improved the new bone formation.This study provides a facile method to produce dual-delivery scaffolds to achieve multiple functions. | Chong Wang Jiahui Lai Kai Li Shaokui Zhu Bingheng Lu Jia Liu Yujin Tang Yen Wei | 2021 | Bioactive Materials2021,6,1: | 7 |
| 6 | Nanoimprint lithography for the manufacturing of flexible electronics显示文摘Flexible electronics have received considerable attention in academies and industries for their promising applications in enormous fields, such as flexible displays, wearable sensors, artificial skins, and flexible energy devices. Challenges remain in developing a flexible and scalable manufacturing method to facilitate the fabrication of multi-functional structures in a flexible electronic system. Nanoimprint lithography is a high resolution and low-cost approach to fabricate nanostructures over a large area. This paper reviews recent progress of nanoimprint lithography and its applications in flexible electronics. The basic principles, classification, research focus, and critical issues of nanoimprint lithography are elaborated. Then, the advantages of nanoimprint lithography are demonstrated in several typical applications related to flexible electronics, including conductive films, optoelectronic devices, flexible sensors, energy harvesting and storage devices, and bioinspired electronic devices. Finally,the challenges and perspectives of nanoimprint lithography in flexible electronic systems are discussed. | SHAO JinYou CHEN XiaoLiang LI XiangMing TIAN HongMiao WANG ChunHui LU BingHeng | 2019 | Science China(Technological Sciences)2019,62,2: | 6 |
| 7 | Additive manufacturing frontier: 3D printing electronics显示文摘3D printing is disrupting the design and manufacture of electronic products. 3D printing electronics offers great potentialto build complex object with multiple functionalities. Particularly, it has shown the unique ability to make embedded electronics,3D structural electronics, conformal electronics, stretchable electronics, etc. 3D printing electronics has beenconsidered as the next frontier in additive manufacturing and printed electronics. Over the past five years, a large numberof studies and efforts regarding 3D printing electronics have been carried out by both academia and industries. In thispaper, a comprehensive review of recent advances and significant achievements in 3D printing electronics is provided.Furthermore, the prospects, challenges and trends of 3D printing electronics are discussed. Finally, some promising solutionsfor producing electronics with 3D printing are presented. | Bingheng Lu Hongbo Lan Hongzhong Liu | 2018 | Opto-Electronic Advances2018,1,1: | 3 |
| 8 | FEATURE EXTRACTION OF BONES AND SKIN BASED ON ULTRASONIC SCANNING显示文摘In the prosthetic socket design, aimed at the high cost and radiation deficiency caused by CT scanning which is a routine technique to obtain the cross-sectional image of the residual limb, a new ultrasonic scanning method is developed to acquire the bones and skin contours of the residual limb. Using a pig fore-leg as the scanning object, an overlapping algorithm is designed to reconstruct the 2D cross-sectional image, the contours of the bone and skin are extracted using edge detection algorithm and the 3D model of the pig fore-leg is reconstructed by using reverse engineering technology. The results of checking the accuracy of the image by scanning a cylinder work pieces show that the extracted contours of the cylinder are quite close to the standard circumference. So it is feasible to get the contours of bones and skin by ultrasonic scanning. The ultrasonic scanning system featuring no radiation and low cost is a kind of new means of cross section scanning for medical images. | Zheng Shuxian Zhao Wanhua Lu Bingheng Zhao Zhao | 2005 | Chinese Journal of Mechanical Engineering2005,18,4: | 3 |
| 9 | Roll-to-roll imprint for high precision grating manufacturing显示文摘In this paper,a novel roll-to-roll imprint process is proposed to fabricate gratings in large area. The key challenges in roll-to-roll imprint process,such as the roller mold preparation,imprint system,misalignment of imprint roller and backup roller,and also the imprint pressure,are investigated. Various gratings with different periods and profiles are obtained by the roll-to-roll process. To calibrate the measuring ability of the self-made grating by imprint,a calibration system is built with a dual-frequency laser interferometer. By the calibration,the self-made gratings can achieve ±4μm accuracy in 45mm measuring distance. | Liu Hongzhong Shi Yongsheng Yin Lei Jiang Weitao Lu Bingheng | 2013 | Engineering Sciences2013,11,1: | 3 |
| 10 | BODY PRESSURE DISTRIBUTION OF AUTOMOBILE DRIVING HUMAN MACHINE CONTACT INTERFACE显示文摘在汽车开车并且基于生理、解剖的原则瞄准疲劳和人机器的接触接口的舒适问题,在疲劳的形成和开发的肌肉和神经的生理、生物化学的进程系统地被分析。引起疲劳的生理的典型索引被印射到象肌肉压力紧张,血容器的压缩变形和神经 etc.from 一样的 biomechanicalindexes 形成机制的观点。骨骼和实质的几何模型被使用扫描 CT 的身体数据和 MRI 图象建立。舒适身体压力分发的一般规则通过屁股和大腿骨的区域的解剖结构的分析被获得。为容纳可调节的接触连接的 3D 的舒适的全面测试平台被构造。主观评估的人机器的接触接口和它的比较的身体压力分发的测试显示汽车驱使人机器的机械索引联系的简历连接,学习的身体压力分发统治有效地装评估人机器的接触的疲劳和舒适问题为最佳的设计连接并且提供理论基础人机器接触接口。 | CHEN Juan HONG Jun ZHANG E LIANG Jian LU Bingheng | 2007 | Chinese Journal of Mechanical Engineering2007,20,4: | 1 |
| 11 | A novel arc-spraying robot for rapid tooling显示文摘 | He Zhongyun Lu Bingheng Hong Jun | 2007 | International Journal of Advanced Manufacturing Technology2007,31,910: | 1 |
| 12 | 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 |
| 13 | Error compensation of indoor GPS measurement 显示文摘 | Liu Zhongzheng Liu Zhigang Lu Bingheng | 2008 | Intelligent Robotics and Applications2008,5315,: | 1 |
| 14 | A novel arcspraying robot for rapid tooling显示文摘 | He Zhongyun Lu Bingheng Hong Jun | 2006 | Int J Adv Manuf Techn2006,,7: | 1 |
| 15 | An automated arc spray tooling system for rapid die-making of large-sized automobile body panels显示文摘 | He Zhongyun Lu Bingheng Wang Yiqing | 2006 | Front Mech Eng China2006,2,: | 1 |
| 16 | Fabri- cation of osteo-structure analogous scaffolds via fused de- position modeling 显示文摘 | Chert Zhongzhong Li Dichen Lu Bingheng | 2005 | Scripta Materialia2005,52,2: | 1 |
| 17 | Design and fabrication of custom mandible titanium tray based on rapid prototyping显示文摘 | Sekou Singare Li Dichen Lu Bingheng Liu Yanpu Gong Zhenyu Liu Yaxiong | 2004 | Medical Engineering and Physics2004,,8: | 1 |
| 18 | Design and fabrication of custom mandible titanium tray based on rapid prototyping显示文摘 | Sekou Singare Li Dichen Lu Bingheng | 2004 | Medical Engineering&Physics2004,,26: | 1 |
| 19 | Heterogeneousobject modeling based on multi-color distance field 显示文摘 | Zhou Hongmei Liu Zhigang Lu Bingheng | 2009 | Materials and Design2009,30,: | 1 |
| 20 | Design and fabrication of custom mandible titanium tray based on rapid prototyping显示文摘 | SINGARE Sekou LI Dihen LU Bingheng | 2004 | Medical Engineering & Physics2004,,26: | 1 |