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印工社张栋:AI驱动,让数智化为印刷赋能
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作者 马雪君 《中国印刷》 2026年第1期9-16,共8页
毋庸置疑,我们正身处以数据为关键生产要素、以数智化为核心驱动力的时代。张栋及其带领的印工社,持续聚焦客户生产经营痛点,从创意设计到印品交付,从认知提升到执行落地,由点及面构建互利高效的印刷数智化生态系统。
关键词 数智化 生产经营 客户痛点 印工 印刷
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论南宋版刻楷书书手、刻工与印工 被引量:1
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作者 刘元堂 《艺术百家》 CSSCI 北大核心 2018年第4期197-204,232,共9页
版刻书法的产生是书手、刻工与印工共同合作的结果,三者缺一不可。南宋版刻楷书书手大多由训练有素的社会下层知识分子组成,同一地域书手的书风较为接近。南宋版刻楷书刻工有集梓人与石工于一身者,日刻字数约百余个。版刻楷书逐渐走向... 版刻书法的产生是书手、刻工与印工共同合作的结果,三者缺一不可。南宋版刻楷书书手大多由训练有素的社会下层知识分子组成,同一地域书手的书风较为接近。南宋版刻楷书刻工有集梓人与石工于一身者,日刻字数约百余个。版刻楷书逐渐走向板结僵化,正是书手与刻工互动的产物。印工印刷技艺的高低,对版刻书法也有着重要影响。 展开更多
关键词 书法艺术 南宋版刻楷书 书手 刻工 印工
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准确把握增值税印工费的适用税率
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作者 罗志伟 《新疆税务》 2002年第11期34-34,共1页
关键词 增值税 税率 印工 中国 税收征管
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Research Progress on Process Optimization and Performance Control of Additive Manufacturing for Refractory Metals
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作者 Lu Durui Song Suocheng Lu Bingheng 《稀有金属材料与工程》 北大核心 2026年第2期345-364,共20页
Refractory metals,including tungsten(W),tantalum(Ta),molybdenum(Mo),and niobium(Nb),play a vital role in industries,such as nuclear energy and aerospace,owing to their exceptional melting temperatures,thermal durabili... Refractory metals,including tungsten(W),tantalum(Ta),molybdenum(Mo),and niobium(Nb),play a vital role in industries,such as nuclear energy and aerospace,owing to their exceptional melting temperatures,thermal durability,and corrosion resistance.These metals have body-centered cubic crystal structure,characterized by limited slip systems and impeded dislocation motion,resulting in significant low-temperature brittleness,which poses challenges for the conventional processing.Additive manufacturing technique provides an innovative approach,enabling the production of intricate parts without molds,which significantly improves the efficiency of material usage.This review provides a comprehensive overview of the advancements in additive manufacturing techniques for the production of refractory metals,such as W,Ta,Mo,and Nb,particularly the laser powder bed fusion.In this review,the influence mechanisms of key process parameters(laser power,scan strategy,and powder characteristics)on the evolution of material microstructure,the formation of metallurgical defects,and mechanical properties were discussed.Generally,optimizing powder characteristics,such as sphericity,implementing substrate preheating,and formulating alloying strategies can significantly improve the densification and crack resistance of manufactured parts.Meanwhile,strictly controlling the oxygen impurity content and optimizing the energy density input are also the key factors to achieve the simultaneous improvement in strength and ductility of refractory metals.Although additive manufacturing technique provides an innovative solution for processing refractory metals,critical issues,such as residual stress control,microstructure and performance anisotropy,and process stability,still need to be addressed.This review not only provides a theoretical basis for the additive manufacturing of high-performance refractory metals,but also proposes forward-looking directions for their industrial application. 展开更多
关键词 refractory metals additive manufacturing mechanical properties microstructure evolution optimization of printing process
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Artificial intelligence-enabled Bioprinting 5.0
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作者 Long Bai Yi Zhang +3 位作者 Sicheng Wang Jinlong Liu Yuanyuan Liu Jiacan Su 《Bio-Design and Manufacturing》 2026年第1期32-62,I0002,共32页
With the rapid advancements in biomedical engineering,bioprinting has emerged as a pivotal solution to address the shortage of organ transplants and advance disease model research.The evolution of bioprinting has prog... With the rapid advancements in biomedical engineering,bioprinting has emerged as a pivotal solution to address the shortage of organ transplants and advance disease model research.The evolution of bioprinting has progressed from the fabrication of simple models(1.0)to the fabrication of permanent implants(2.0),tissue engineering scaffolds(3.0),and complex biostructures utilizing living cells(4.0).Nevertheless,significant challenges remain,particularly in accurately replicating the structure and function of host tissues,selecting appropriate materials,and optimizing printing parameters.The integration of artificial intelligence(AI),especially machine learning,provides promising novel opportunities in bioprinting(5.0).This review systematically summarizes the current applications of AI in bioprinting,discussing both construction strategies and application scenarios.It also explores the potential of AI to improve bioprinting in the preparation of complex functional tissues and in situ tissue repair.Overall,the synergy between AI and bioprinting is poised to drive the development of personalized medicine,facilitate high-throughput preparation of in vitro models,and provide robust tools for regenerative medicine and precision healthcare. 展开更多
关键词 Artificial intelligence BIOPRINTING Tissue engineering Machine learning
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AI-assisted design of 3 D-printed prosthesis for integrated replacement of the hip,femur,and knee caused by osseous hydatidosis
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作者 Yanlong Han Haoyuan Lei +7 位作者 Ruozhen Jia Wei Zhao Habaxi Kaken Deli Wang Yongsheng Liu Zhen Tan Li Wang Changchun Zhou 《Bio-Design and Manufacturing》 2026年第1期94-99,I0017,共7页
Cases of widespread bone hydatid infection are relatively rare in clinical practice.In this study,we reported for the first time a validated integrated repair therapy for multiple bone tissues,including the hip,femur,... Cases of widespread bone hydatid infection are relatively rare in clinical practice.In this study,we reported for the first time a validated integrated repair therapy for multiple bone tissues,including the hip,femur,and knee,caused by echinococ cosis.Artificial intelligence(AI)was used to develop a targeted surgical plan and to design a personalized prosthesis.Finite element analysis(FEA)was used to optimize the mechanical effectiveness of a customized integrated replacement prosthesis and to model stress distribution in the surrounding bone.Three-dimensional(3 D)printing was used to fabricate a customized prosthesis.With the assistance of AI,FEA,and 3 D printing technology,a personalized surgical plan and customized prosthesis were successfully constructed based on the patient’s disease.This approach achieved a successful therapeutic effect,demonstrating that AI-assisted personalized medicine holds great promise for the future. 展开更多
关键词 develop targeted surgical plan optimize mechanical effectiveness AI assisted design D printed prosthesis design personalized prosthesisfinite element analysis fea bone tissuesincluding bone hydatid infection integrated repair therapy
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3D printing for tissue/organ regeneration in China 被引量:4
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作者 Chaofan He Jiankang He +52 位作者 Chengtie Wu Changshun Ruan Qi Gu Yongqiang Hao Yang Wu Shuo Bai Xiaoxiao Han Liliang Ouyang Jun Yin Hongzhao Zhou Zhuo Xiong Maobin Xie Lei Shao Jing Nie Liang Ma Cijun Shuai Changchun Zhou Xin Zhao Xuetao Shi Mengfei Yu Jiayin Fu Peng Wen Huixia Xuan Yuan Pang Yan’en Wang Yuan Sun Ziqi Gao Abdellah Aazmi Jingbo Zhang Tianhong Qiao Qixiang Yang Ke Yao Mao Mao Jianxin Hao Pinpin Wang Jirong Yang Huawei Qu Xinhuan Wang Xin Liu Shen Ji Shasha Liu Jingke Fu Bingxian Lu Mohan Wu Feng Chen Zihao Zheng Boqing Zhang Muyuan Chai Chaoying Zhang Mouyuan Sun Bo Peng Huayong Yang Yong He 《Bio-Design and Manufacturing》 2025年第2期169-242,I0001,I0002,共76页
As surgical procedures transition from conventional resection to advanced tissue-regeneration technologies,human disease therapy has witnessed a great leap forward.In particular,three-dimensional(3D)bioprinting stands... As surgical procedures transition from conventional resection to advanced tissue-regeneration technologies,human disease therapy has witnessed a great leap forward.In particular,three-dimensional(3D)bioprinting stands as a landmark in this setting,by promising the precise integration of biomaterials,cells,and bioactive molecules,thus opening up a novel avenue for tissue/organ regeneration.Curated by the editorial board of Bio-Design and Manufacturing,this review brings together a cohort of leading young scientists in China to dissect the core functionalities and evolutionary trajectory of 3D bioprinting,by elucidating the intricate challenges encountered in the manufacturing of transplantable organs.We further delve into the translational pathway from scientific research to clinical application,emphasizing the imperativeness of establishing a regulatory framework and rigorously enforcing quality-control measures.Finally,this review outlines the strategic landscape and innovative achievements of China in this field and provides a comprehensive roadmap for researchers worldwide to propel this field collectively to even greater heights. 展开更多
关键词 3D printing BIOPRINTING Tissue engineering Regenerative medicine
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Chitosan:A Scaffold Biomaterial in 3D Bone Tissue Engineering and Its Biological Activities
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作者 Gurung Chetali Nawaz Aamir +1 位作者 Udduttulla Anjaneyulu REN Peigen 《集成技术》 2025年第2期86-108,共23页
The ability to replicate the microenvironment of the human body through the fabrication of scaffolds is a significant achievement in the biomedical field.However,the search for the ideal scaffold is still in its infan... The ability to replicate the microenvironment of the human body through the fabrication of scaffolds is a significant achievement in the biomedical field.However,the search for the ideal scaffold is still in its infancy and there are significant challenges to overcome.In the modern era,the scientific community is increasingly turned to natural substances due to their superior biological ability,lower cost,biodegradability,and lower toxicity than synthetic lab-made products.Chitosan is a well-known polysaccharide that has recently garnered a high amount of attention for its biological activities,especially in 3D bone tissue engineering.Chitosan closely matches the native tissues and thus stands out as a popular candidate for bioprinting.This review focuses on the potential of chitosan-based scaffolds for advancements and the drawbacks in bone treatment.Chitosan-based nanocomposites have exhibited strong mechanical strength,water-trapping ability,cellular interaction,and biodegradability.Chitosan derivatives have also encouraged and provided different routes for treatment and enhanced biological activities.3D tailored bioprinting has opened new doors for designing and manufacturing scaffolds with biological,mechanical,and topographical properties. 展开更多
关键词 CHITOSAN 3D bioprinting bone tissue engineering SCAFFOLD tissue regeneration chitosan derivative
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Integrating three-dimensional printing and bioprinting technologies to develop a stretchable in vitro model of the human airway
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作者 Junned Chan Julian Gonzalez Rubio +7 位作者 Oscar O’Dwyer Lancaster-Jones Yashasvi Verma Charlotte Büchter Stefan Jockenhoevel Laura De Laporte Mirko Trilling Anja Lena Thiebes Daniela Duarte Campos 《Bio-Design and Manufacturing》 2025年第4期595-608,I0033-I0041,共23页
The global demand for in vitro respiratory airway models has surged due to the coronavirus disease 2019(COVID-19)pandemic.Current state-of-the-art models use polymer membranes to separate epithelial cells from other c... The global demand for in vitro respiratory airway models has surged due to the coronavirus disease 2019(COVID-19)pandemic.Current state-of-the-art models use polymer membranes to separate epithelial cells from other cell types,creating a nonphysiological barrier.In this study,we applied three-dimensional(3D)printing and bioprinting to develop an in vitro model where endothelial and epithelial cells were in direct contact,mimicking their natural arrangement.This proof-ofconcept model includes a culture chamber,with an endothelial bioink printed and perfused through an epithelial channel.In silico simulations of the air velocity within the channel revealed shear stress values ranging from 0.13 to 0.39 Pa,aligning with the desired in vivo shear stress observed in the bronchi regions(0.1–0.4 Pa).Biomechanical movements during resting breathing were mimicked by incorporating a textile mesh positioned away from the cell–cell interface.The epithelial channel demonstrated a capacity for compression and expansion of up to−14.7%and+6.4%,respectively.Microscopic images showed that the epithelial cells formed a uniform monolayer within the lumen of the channel close to the bioprinted endothelial cells.Our novel model offers a valuable tool for future research into respiratory diseases and potential treatments under conditions closely mimicking those in the lung. 展开更多
关键词 Airway-on-a-chip In vitro model BIOPRINTING HYDROGEL Tissue engineering Lung
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Complexities and challenges associated with articular cartilage tissue defect reconstruction:an overview of bioprinting therapeutics
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作者 Parichita Mishra Vidhi Manish Badiyani +4 位作者 Abhishek Kumar Singh Vivek Pandey Manash Kumar Paul Kanive Parashiva Guruprasad Bhisham Narayan Singh 《Bio-Design and Manufacturing》 2025年第5期877-908,I0070-I0079,共42页
Osteoarthritis is a common aging-related disorder that is confined mostly to the chondral layer of joints(e.g., the knee) but can spread to bony layers over time. In its early stages, osteoarthritis has minimal sympto... Osteoarthritis is a common aging-related disorder that is confined mostly to the chondral layer of joints(e.g., the knee) but can spread to bony layers over time. In its early stages, osteoarthritis has minimal symptoms;however, these gradually worsen over time and include joint pain, stiffness, loss of mobility, and inflammation. The exposed subchondral bone of a Grade 4 osteoarthritic knee is highly prone to erosion if left untreated due to persistent rubbing between the bones, which can lead to painful bone spurs. However, treating osteoarthritis is especially challenging due to the poor mitotic potential and low metabolic activity of chondrocytes. Although currently available tissue-engineered products(e.g., BST-CarGel■, TruFit■, and Atelocollagen■) can achieve structural reconstruction and tissue regeneration, final clinical outcomes can still be improved. Major challenges faced during clinical studies of tissue-engineered constructs include chondrocyte hypertrophy and the development of mechanically inferior fibrous tissue, among others. These issues can be addressed by selecting suitable biomaterial combinations, mimicking the three-dimensional(3D) architecture of the tissue matrix, and better controlling inflammation. Furthermore, it is crucial to generate essential signaling molecules within the articular cartilage ecosystem. This approach must also account for the microarchitecture of the affected joint and support the chondrogenic differentiation of mesenchymal stem cells. The use of tissue-engineered constructs has the potential to overcome each of these challenges, since materials can be modified for drug/biomolecule delivery while simultaneously facilitating the regeneration of robust articular cartilage. Three-dimensional printing has been successfully used in tissue engineering to achieve bioprinting. By manipulating conventional 3D printing techniques and the types of bioink used, many different types of bioprinting have emerged. Overall, these bioprinting techniques can be used to address various challenges associated with osteoarthritis treatment. 展开更多
关键词 Articular cartilage BIOMATERIALS BIOPRINTING OSTEOARTHRITIS Tissue engineering
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Evaluation of the 3 D printable temperature-responsive shape-memory PLTG terpolymers for minimally invasive surgery
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作者 Xulin Hu Jun Wang +11 位作者 Shuhao Yang Jun Deng Wanyue Feng Haoming Wu Dongdong Han Leilei Qin Jianye Yang Zhengguang Pu Xin Yong Yanlin Li Shuai Li Ning Hu 《Bio-Design and Manufacturing》 2025年第5期709-723,I0001-I0013,共28页
Three-dimensional(3 D)printing has revolutionized the design and production of customized scaffolds,but the minimally invasive implantation of 3 D-printed structures into the human body remains challenging.This has pr... Three-dimensional(3 D)printing has revolutionized the design and production of customized scaffolds,but the minimally invasive implantation of 3 D-printed structures into the human body remains challenging.This has prompted the exploration of innovative materials and technical solutions.Shape-memory polymers,as advanced intelligent materials,exhibit considerable potential in minimally invasive surgical applications.Herein,we developed a novel thermosetting shape-memory polymer,poly(L-lactic acid)-trimethylene carbonate-glycolic acid(PLLA-TMC-GA),for the fabrication of bioengineered scaffolds with body temperature-activated shape-memory functionality.We comprehensively evaluated the mechanical properties,thermal stability,shape-memory capabilities,biocompatibility,biodegradability,and 3 D printing performance of PLLA-TMC-GA terpolymers with various compositions.The results indicate that PLLA-TMC-GA exhibits exceptional shape-memory performance,adjustable material properties,favorable biocompatibility,and the potential for controlled biodegradation and reabsorption.The use of PLLA-TMC-GA as a biodegradable shape-memory polymer allows the reduction of implant volume,simplifies implantation,and enables on-demand activation at body temperature.These characteristics present new opportunities for the advancement of minimally invasive surgical techniques. 展开更多
关键词 Biodegradable polymers Shape-memory polymers 3 D printing technology BIOCOMPATIBILITY Tissue engineering applications
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合理界定编、印、发利润结构是我国出版事业健康发展的关键
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作者 李生达 《中国印刷》 1997年第1期15-18,共4页
众所周知,我国出版系统(包括编、印、发,下同)现行的分配方法是我国几十年计划经济的产物,出版社的印张定价权、印刷厂的印工定价权、发行上的发货折扣分配权各自成体系,'三大家'互不照应,这种分配方法在计划经济的年代对当时... 众所周知,我国出版系统(包括编、印、发,下同)现行的分配方法是我国几十年计划经济的产物,出版社的印张定价权、印刷厂的印工定价权、发行上的发货折扣分配权各自成体系,'三大家'互不照应,这种分配方法在计划经济的年代对当时的经济核算起到了一定的作用。国家对出版系统统收统支,编、印、发三家利益关系矛盾不突出。 展开更多
关键词 出版系统 印张定价权 印工定价权 发货折扣权
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Kinetics of aerobically activated sludge on terylene artificial silk printing and dyeing wastewater treatment 被引量:3
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作者 官宝红 吴忠标 徐根良 《Journal of Zhejiang University Science》 EI CSCD 2004年第4期441-449,共9页
Aerobically activated sludge processing was carried out to treat terylene artificial silk printing and dyeing wastewater (TPD wastewater) in a lab-scale experiment, focusing on the kinetics of the COD removal. The kin... Aerobically activated sludge processing was carried out to treat terylene artificial silk printing and dyeing wastewater (TPD wastewater) in a lab-scale experiment, focusing on the kinetics of the COD removal. The kinetics pa-rameters determined from experiment were applied to evaluate the biological treatability of wastewater. Experiments showed that COD removal could be divided into two stages, in which the ratio BOD/COD (B/C) was the key factor for stage division. At the rapid-removal stage with B/C>0.1, COD removal could be described by a zero order reaction. At the mod-erate-removal stage with B/C<0.1, COD removal could be described by a first order reaction. Then Monod equation was introduced to indicate COD removal. The reaction rate constant (K) and half saturation constant (KS) were 0.0208-0.0642 L/(gMLSS)h and 0.44-0.59 (gCOD)/L respectively at 20 C-35 C. Activation energy (Ea) was 6.05104 J/mol. By comparison of kinetic parameters, the biological treatability of TPD wastewater was superior to that of traditional textile wastewater. But COD removal from TPD-wastewater was much more difficult than that from domestic and industrial wastewater, such as papermaking, beer, phenol wastewater, etc. The expected effluent quality strongly related to un-biodegradable COD and kinetics rather than total COD. The results provide useful basis for further scaling up and efficient operation of TPD wastewater treatment. 展开更多
关键词 Process kinetics Aerobically activated sludge COD (chemical oxygen demand) Biological treatability Prin- ting and dyeing wastewater
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A High-Accuracy Technique for Re-outputting Scratched Paintings 被引量:1
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作者 孙帮勇 周世生 +1 位作者 曹从军 郑元林 《Journal of Donghua University(English Edition)》 EI CAS 2010年第5期660-664,共5页
A method of restoring scratches on old paintings is proposed,and the corresponding high-accuracy output workflow is also developed.Firstly the scanner is selected as an input device to get the RGB(red,green,blue)image... A method of restoring scratches on old paintings is proposed,and the corresponding high-accuracy output workflow is also developed.Firstly the scanner is selected as an input device to get the RGB(red,green,blue)image of the painting,and for the purpose of capturing high-quality image,scanner characterization is done by using neural network.And then the scratches on the RGB image are restored with the technology of digital inpainting,while the inpainting algorithm is mainly based on gradient vector and fast marching method.Finally the restored image is output with a printer,which is calibrated by using the high order polynomial regression method.In experiment the new replicated painting is well restored in the scratched areas,as well as keeps high resemblance with the original painting. 展开更多
关键词 digital inpainting fast marching method scanner characterization printer calibration
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Development Trends in Additive Manufacturing and 3D Printing 被引量:64
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作者 Bingheng Lu Dichen Li Xiaoyong Tian 《Engineering》 SCIE EI 2015年第1期85-89,共5页
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 tr... 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. 展开更多
关键词 additive manufacturing 3D printing fabricationmodes customized fabrication innovative design
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The test device for heat friction coefficient of high strength steel 被引量:1
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作者 Sun Zhifu Ma Mingtu +3 位作者 Ma Fangwu Guo Yihui Song Leifeng Yao Zaiqi 《Engineering Sciences》 EI 2012年第6期75-78,共4页
Using high strength steel and ultra-high strength steel in hot stamping and automobile parts is one of the most important ways of the automobile lightweight,which is the development trend of automobiles currently.In t... Using high strength steel and ultra-high strength steel in hot stamping and automobile parts is one of the most important ways of the automobile lightweight,which is the development trend of automobiles currently.In this paper, the development of test device for heat friction coefficient by high strength steel can provide important technical parameters for hot stamping process,making the right selection of equipment types,mold design,technology optimization,and research and development of lubrication medium of press forming.At the same time,the experiments indicate that the instrument has not only accurate test result but also good repeatability. 展开更多
关键词 automobile lightweight modern automobile heat friction coefficient
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Design and 3D Printing of Scaffolds and Tissues 被引量:28
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作者 Jia An Joanne Ee Mei Teoh +1 位作者 Ratima Suntornnond Chee Kai Chua 《Engineering》 SCIE EI 2015年第2期261-268,共8页
A growing number of three-dimensional(3D)-print- ing processes have been applied to tissue engineering. This paper presents a state-of-the-art study of 3D-printing technologies for tissue-engineering applications, wit... A growing number of three-dimensional(3D)-print- ing processes have been applied to tissue engineering. This paper presents a state-of-the-art study of 3D-printing technologies for tissue-engineering applications, with particular focus on the development of a computer-aided scaffold design system; the direct 3D printing of functionally graded scaffolds; the modeling of selective laser sintering(SLS) and fused deposition modeling(FDM) processes; the indirect additive manufacturing of scaffolds, with both micro and macro features; the development of a bioreactor; and 3D/4D bioprinting. Technological limitations will be discussed so as to highlight the possibility of future improvements for new 3D-printing methodologies for tissue engineering. 展开更多
关键词 rapid prototyping 3D printing additive manufacturing tissue engineering BIOPRINTING
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Correlation between Ozone and Total VOCs in Printing Environment 被引量:3
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作者 Kiurski Jelena Adamovie Dragan Oros Ivana Krstie Jelena Adamovie Savka Vojinovie Miloradov Mirjana Kovacevic Ilija 《Journal of Chemistry and Chemical Engineering》 2011年第5期423-428,共6页
In this study, indoor air quality (IAQ) assessments were carried out in a screen printing facility. The air sampling was conducted in press department, including two different types of screen printing machines: sem... In this study, indoor air quality (IAQ) assessments were carried out in a screen printing facility. The air sampling was conducted in press department, including two different types of screen printing machines: semi-automatic and automatic. Air samples were collected and analyzed in situ for 4 times, once per 2 hours, during working time of 8 hours. Analysis of the experimental data showed that ambient ozone concentrations slowly increases with the increasing of TVOCs concentration and intensive use of UV lamps during automatic screen printing process. Therefore, the detected concentration levels of ozone and VOCs were compared with the Occupational Safety and Health Administration (OSHA) and Serbian Regulation. Comparison of the two mentioned standard regulations, the ozone concentrations in indoor printing air were from 0.83 to 8.1 and 2.4 to 16.2 times higher in the relation to the prescribed PEL and maximum allowed concentration (MAC) values, respectively, while the concentrations of particular VOCs were much below the PEL prescribed by the OSHA. 展开更多
关键词 OZONE total volatile organic compounds (TVOCs) screen printing process printing environment.
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A Personal Desktop Liquid-Metal Printer as a Pervasive Electronics Manufacturing Tool for Society in the Near Future 被引量:1
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作者 Jun Yang Yang Yang +2 位作者 Zhizhu He Bowei Chen Jing Liu 《Engineering》 SCIE EI 2015年第4期506-512,共7页
It has long been a dream in the electronics industry to be able to write out electronics directly, as simply as printing a picture onto paper with an offi ce printer. The fi rstever prototype of a liquid-metal printer... It has long been a dream in the electronics industry to be able to write out electronics directly, as simply as printing a picture onto paper with an offi ce printer. The fi rstever prototype of a liquid-metal printer has been invented and demonstrated by our lab, bringing this goal a key step closer. As part of a continuous endeavor, this work is dedicated to significantly extending such technology to the consumer level by making a very practical desktop liquid-metal printer for society in the near future. Through the industrial design and technical optimization of a series of key technical issues such as working reliability, printing resolution, automatic control, human-machine interface design, software, hardware, and integration between software and hardware, a high-quality personal desktop liquid-metal printer that is ready for mass production in industry was fabricated. Its basic features and important technical mechanisms are explained in this paper, along with demonstrations of several possible consumer end-uses for making functional devices such as li ght-emitting diode(LED) displays. This liquid-metal printer is an automatic, easyto-use, and low-cost personal electronics manufacturing tool with many possible applications. This paper discusses important roles that the new machine may play for a group of emerging needs. The prospective future of this cuttingedge technology is outlined, along with a comparative interpretation of several historical printing methods. This desktop liquid-metal printer is expected to become a basic electronics manufacturing tool for a wide variety of emerging practices in the academic realm, in industry, and in education as well as for individual end-users in the near future. 展开更多
关键词 liquid-metal printer printed electronics additive manufacturing MAKER do-it-yourself (DIY) electronics pervasive technology
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