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1Optimization of fused deposition modeling process parameters:a review of current research and future prospects显示文摘Fused deposition modeling(FDM) is one of the most popular additive manufacturing technologies for various engineering applications.FDM process has been introduced commercially in early 1990 s by Stratasys Inc.,USA.The quality of FDM processed parts mainly depends on careful selection of process variables.Thus,identification of the FDM process parameters that significantly affect the quality of FDM processed parts is important.In recent years,researchers have explored a number of ways to improve the mechanical properties and part quality using various experimental design techniques and concepts.This article aims to review the research carried out so far in determining and optimizing the process parameters of the FDM process.Several statistical designs of experiments and optimization techniques used for the determination of optimum process parameters have been examined.The trends for future FDM research in this area are described.Omar A.Mohamed Syed H.Masood Jahar L.Bhowmik 2015Advances in Manufacturing2015,3,1:38
2Digital twin-based sustainable intelligent manufacturing: a review显示文摘As the next-generation manufacturing system,intelligent manufacturing enables better quality,higher productivity,lower cost,and increased manufacturing flexibility.The concept of sustainability is receiving increasing attention,and sustainable manufacturing is evolving.The digital twin is an emerging technology used in intelligent manufacturing that can grasp the state of intelligent manufacturing systems in real-time and predict system failures.Sustainable intelligent manufacturing based on a digital twin has advantages in practical applications.To fully understand the intelligent manufacturing that provides the digital twin,this study reviews both technologies and discusses the sustainability of intelligent manufacturing.Firstly,the relevant content of intelligent manufacturing,including intelligent manufacturing equipment,systems,and services,is analyzed.In addition,thesustainability of intelligent manufacturing is discussed.Subsequently,a digital twin and its application are introduced along with the development of intelligent manufacturing based on the digital twin technology.Finally,combined with the current status,the future development direction of intelligent manufacturing is presented.Bin He Kai-Jian Bai 2021Advances in Manufacturing2021,9,1:24
3A comprehensive survey of augmented reality assembly research显示文摘X. Wang S. K. Ong A. Y. C. Nee 2016Advances in Manufacturing2016,4,1:23
4Dynamic characteristics of ultra-precision aerostatic bearings显示文摘With high acceleration and ultra-precision requirements,the design of aerostatic bearings has been gradually focused on their dynamic performances.In this paper,the dynamic stiffness and damping coefficients o aerostatic bearings are investigated.Due to compressibility of the gas,the dynamic characteristics of aerostatic bear ings show nonlinear frequency dependence.Particularly their nonlinear dynamic behaviors are quite remarkable fo ultra-precision aerostatic bearings with small air gap heights and high supply pressure.Xue-Dong Chen Jin-Cheng Zhu Han ChenState 2013Advances in Manufacturing2013,1,1:18
5Ultrasonic vibration-assisted machining:principle,design and application显示文摘Ultrasonic vibration-assisted(UVA) machining is a process which makes use of a micro-scale high frequency vibration applied to a cutting tool to improve the material removal effectiveness.Its principle is to make the tool-workpiece interaction a microscopically non-monotonic process to facilitate chip separation and to reduce machining forces.It can also reduce the deformation zone in a workpiece under machining,thereby improving the surface integrity of a component machined.There are several types of UVA machining processes,differentiated by the directions of the vibrations introduced relative to the cutting direction.Applications of UVA machining to a wide range of workpiece materials have shown that the process can considerably improve machining performance.This paper aims to provide a comprehensive discussion and review about some key aspects of UVA machining such as cutting kinematics and dynamics,effect of workpiece materials and wear of cutting tools,involving a wide range of workpiece materials including metal alloys,ceramics,amorphous and composite materials.Some aspects for further investigation are also outlined at the end.Wei-Xing Xu Liang-Chi Zhang 2015Advances in Manufacturing2015,3,3:18
6Industry 4.0: a way from mass customization to mass personalization production显示文摘Yi Wang Hai-Shu Ma Jing-Hui Yang Ke-Sheng Wang 2017Advances in Manufacturing2017,5,4:18
7Digitalization and intelligentization of manufacturing industry显示文摘1 Relying on innovation to realize the historical leap China has entered a new historical period in her development.In order to achieve scientific development and to accelerate transformation of economic development pattern,the most fundamental issue is to rely on the power of science and technology,and the most crucial element is to improve the capability of independent innovation.The key for promoting China’s economic and social developmentJi Zhou 2013Advances in Manufacturing2013,1,1:16
8Wind turbine fault detection based on SCADA data analysis using ANN显示文摘Zhen-You Zhang Ke-ShengWang 2014Advances in Manufacturing2014,2,1:15
9天然白桦种苗光合作用日进程显示文摘本研究采用最先进的光合作用测定系统LI-6400测定多功能树种白桦种苗的光合作用.天然白桦种苗光合速率日进程表现为单峰曲线,在下午14: 00时达到最高峰(10.53μmolCO2m-2s-1),.其光合作用不存在“午休现象”.在14:00时,白桦的气孔限制值(0.3172)和水分饱和亏缺(2.46kPa)分别达到最大值,此时其水分利用效率较高,在中午12:00时水分利用率达到最大值(2.97 umolCO2m-2s-1mmH2Om-2s-1).在早上8:00,白桦获得一天中最大的表观量子效率;其蒸腾速率在下午14: 00时最大(4.82mmH2Om-2s-1).在光合速率的日进程中,白桦高光合速率值持续至少 4个小时.这使得白桦的光合作用量得以有效累积,进而为其生长创造了有利条件.王爱民 刘志学 祖元刚 2000Advances in Manufacturing2000,,S1:13
103D bioprinting: an emerging technology full of opportunities and challenges显示文摘Bin Zhang Yichen Luo Liang Ma Lei Gao Yuting Li Qian Xue Huayong Yang Zhanfeng Cui 2018Bio-Design and Manufacturing2018,1,1:13
11Developments and perspectives on the precision forming processes for ultra-large size integrated components显示文摘In order to meet the requirements of high reliability,long-lifetime and lightweight in a new generation of aerospace,aviation,high-speed train,and energy power equipment,integrated components are urgently needed to replace traditional multi-piece,welded components.The applications of integrated components involve in a series of large-size,complex-shaped,highperformance components made of difficult-to-deform materials,which present a huge challenge for forming ultra-large size integrated components.In this paper,the developments and perspectives of several extreme forming technologies are reviewed,including the sheet hydroforming of ultra-large curved components,dieless hydroforming of ellipsoidal shells,radial-axial ring rolling of rings,in situ manufacturing process of flanges,and local isothermal forging of titanium alloy components.The principle and processes for controlling deformation are briefly illustrated.The forming of typical ultra-large size integrated components and industrial applications are introduced,such as the high strength aluminum alloy,3m in diameter,integrated tank dome first formed by using a sheet blank with a thickness the same as the final component,and a 16m diameter,integrated steel ring rolled by using a single billet.The trends for extreme forming of ultra-large size integrated components are discussed with a goal of providing ideas and fundamental guidance for the further development of new forming processes for extreme-size integrated components in the future.Shijian Yuan Xiaobo Fan 2019International Journal of Extreme Manufacturing2019,1,2:12
12Optimizing Real-Time Performance of 3D Virtual Mining Environment with MultiGen Creator显示文摘System optimization plays a crucial role in developing VR system after 3D modeling, affecting the system's Immersion and Interaction performance enormously. In this article, several key techniques of optimizing a virtual mining system were discussed: optimizing 3D models to keep the polygon number in VR system within target hardware's processing ability;optimizing texture database to save texture memory with perfect visual effect; optimizing database hierarchy structure to accelerate model retrieval; and optimizing LOD hierarchy structure to speed upWANGWei-chen JIANGXiao-hong HANKe-qi HANWen-ji 2004Computer Aided Drafting,Design and Manufacturing2004,14,1:12
13Projection micro stereolithography based 3D printing and its applications显示文摘Projection micro stereolithography(PμSL)is a high-resolution(up to 0.6μm)3D printing technology based on area projection triggered photopolymerization,and capable of fabricating complex 3D architectures covering multiple scales and with multiple materials.This paper reviews the recent development of the PμSL based 3D printing technologies,together with the related applications.It introduces the working principle,the commercialized products,and the recent multiscale,multimaterial printing capability of PμSL as well as some functional photopolymers that are suitable to PμSL.This review paper also summarizes a few typical applications of PμSL including mechanical metamaterials,optical components,4D printing,bioinspired materials and biomedical applications,and offers perspectives on the directions of the further development of PμSL based 3D printing technology.Qi Ge Zhiqin Li Zhaolong Wang Kavin Kowsari Wang Zhang Xiangnan He Jianlin Zhou Nicholas X Fang 2020International Journal of Extreme Manufacturing2020,2,2:11
14Incentive regulation of banks on third party logistics enterprises in principal-agent-based inventory financing显示文摘In inventory financing,asymmetric information between banks and the third party logistics enterprises may incur moral risks,often causing economic losses of banks.To effectively solve this problem,a pure incentive scheme and a regulatory incentive scheme are designed with the principal-agent theory.By comparison,it is found that the pure incentive model is not applicable to practical conditions,and regulatory incentive model can not only solve practical problems substantially but also outbalance pure incentive model under certain conditions.The research results from example analysis given in this paper offer theoretical instruction and a practical method for effective regulation of banks.Xue-Hua Sun Xue-Jian Chu Zhong-Dai Wu 2014Advances in Manufacturing2014,2,2:11
15The‘skin effect’of subsurface damage distribution in materials subjected to high-speed machining显示文摘This paper proposes the‘skin effect’of the machining-induced damage at high strain rates.The paper first reviews the published research work on machining-induced damage and then identifies the governing factors that dominate damage formation mechanisms.Among many influential factors,such as stress-strain field,temperature field,material responses to loading and loading rate,and crack initiation and propagation,strain rate is recognized as a dominant factor that can directly lead to the‘skin effect’of material damage in a loading process.The paper elucidates that material deformation at high strain rates(>103 s−1)leads to the embrittlement,which in turn contributes to the‘skin effect’of subsurface damage.The paper discusses the‘skin effect’based on the principles of dislocation kinetics and crack initiation and propagation.It provides guidance to predicting the material deformation and damage at a high strain-rate for applications ranging from the armor protection,quarrying,petroleum drilling,and high-speed machining of engineering materials(e.g.ceramics and SiC reinforced aluminum alloys).Bi Zhang Jingfei Yin 2019International Journal of Extreme Manufacturing2019,1,1:11
16Intelligent and integrated RFID (Ⅱ-RFID) system for improving traceability in manufacturing显示文摘In the wake of globalization,many modern manufacturing companies in Norway have come under intense pressure caused by increased competition,stricter government regulation,and customer demand for higher value at low cost in a short time.Manufacturing companies need traceability,which means a real-time view into thenproduction processes and operations.Radio frequency identification(RFID) technology enables manufacturing companies to gain instant traceability and visibility because it handles manufactured goods,materials and processes transparently.RFID has become an important driver in manufacturing and supply chain activities.However,there is still a challenge in effectively deploying RFID in manufacturing.This paper describes the importance for Norwegian manufacturing companies to implement RFID technology,and shows how the intelligent and integrated RFID(n-RFID) system,which has been developed in the Knowledge Discovery Laboratory of Norwegian University of Science and Technology,provides instant traceability and visibility into manufacturing processes.It supports the Norwegian manufacturing industries survive and thrive in global competition.The future research work will focus on the field of RFID data mining to support decision-making process in manufacturing.Ke-Sheng Wang 2014Advances in Manufacturing2014,2,2:11
17Underwater persistent bubble-assisted femtosecond laser ablation for hierarchical micro/nanostructuring显示文摘In this study,we demonstrate a technique termed underwater persistent bubble assisted femtosecond laser ablation in liquids(UPB-fs-LAL)that can greatly expand the boundaries of surface micro/nanostructuring through laser ablation because of its capability to create concentric circular macrostructures with millimeter-scale tails on silicon substrates.Long-tailed macrostructures are composed of layered fan-shaped(central angles of 45°–141°)hierarchical micro/nanostructures,which are produced by fan-shaped beams refracted at the mobile bubble interface(.50°light tilt,referred to as the vertical incident direction)during UPB-fs-LAL line-by-line scanning.Marangoni flow generated during UPB-fs-LAL induces bubble movements.Fast scanning(e.g.1mms−1)allows a long bubble movement(as long as 2mm),while slow scanning(e.g.0.1mms−1)prevents bubble movements.When persistent bubbles grow considerably(e.g.hundreds of microns in diameter)due to incubation effects,they become sticky and can cause both gas-phase and liquidphase laser ablation in the central and peripheral regions of the persistent bubbles.This generates low/high/ultrahigh spatial frequency laser-induced periodic surface structures(LSFLs/HSFLs/UHSFLs)with periods of 550–900,100–200,40–100 nm,which produce complex hierarchical surface structures.A period of 40 nm,less than 1/25th of the laser wavelength(1030 nm),is the finest laser-induced periodic surface structures(LIPSS)ever created on silicon.The NIR-MIR reflectance/transmittance of fan-shaped hierarchical structures obtained by UPB-fs-LAL at a small line interval(5μm versus 10μm)is extremely low,due to both their extremely high light trapping capacity and absorbance characteristics,which are results of the structures’additional layers and much finer HSFLs.In the absence of persistent bubbles,only grooves covered with HSFLs with periods larger than 100 nm are produced,illustrating the unique attenuation abilities of laser properties(e.g.repetition rate,energy,incident angle,etc)by persistent bubbles with different curvatures.This research represents a straightforward and cost-effective approach to diversifying the achievable hierarchical micro/nanostructures for a multitude of applications.Dongshi Zhang Bikas Ranjan Takuo Tanaka Koji Sugioka 2020International Journal of Extreme Manufacturing2020,2,1:11
18Watermarking Based on Principal Component Analysis显示文摘A new watermarking scheme using principal component analysis (PCA) is described.The proposed method inserts highly robust watermarks into still images without degrading their visual quality. Experimental results are presented, showing that the PCA based watermarks can resist malicious attacks including lowpass filtering, re scaling, and compression coding.WANG Shuo zhong School of Communication and Information Engineering, Shanghai University, Shanghai 200072, China 2000Advances in Manufacturing2000,,1:10
19Shape Modification and Deformation of Parametric Surfaces显示文摘A new method for shape modification or deformation of all kinds of parametric surfaces is presented. Instead of using any control mesh and designing any auxiliary tools for modification or deformation, this method only needs to multiply the equation of the original surface by several shape operator matrixes so that deformation effects are achieved. Due to introducing interactive control parameters with different properties those parameters can be changed to get more ideal effects of deformation or shape modification. The core of the method is that so-called cosine extension function is proposed by which the shape operator matrix can be created. Experiment shows that the method is simple, intuitive and easy to control, and diversified local deformations or shape modifications can easily be made via small and random variations of interactive control parameters.Wang Xiaoping1 Ye Zhenglin1 Hu Xiaomin2 1. Department of Mathematics and Information Science, Northwestern Polytechnical University, Xian 710072, China 2. School of Science, Hangzhou institute of Electronic Engineering, Hangzhou 310037, China 2002Computer Aided Drafting,Design and Manufacturing2002,12,1:10
20Influence of pulse magneto-oscillation on the efficiency of grain refiner显示文摘Tian-Yu Liu Jie Sun Cheng Sheng Qi-Xin Wang Yun-Hu Zhang Li-Juan Li Hong-Gang Zhong Qi-Jie Zhai 2017Advances in Manufacturing2017,5,2:10
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