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Optimization of Infrared-microwave Post-processing Process for 3D Printed Raspberry Preserves Based on AHP-CRITIC Hybrid Weighting Combined with Response Surface Method
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作者 Zheng Xianzhe Song Ruonan +2 位作者 Cong Hongyue Zhang Yuhan Xue Liangliang 《Journal of Northeast Agricultural University(English Edition)》 2025年第1期27-44,共18页
In order to improve the quality of 3D printed raspberry preserves after post-processing,microwave ovens combining infrared and microwave methods were utilized.The effects of infrared heating temperature,infrared heati... In order to improve the quality of 3D printed raspberry preserves after post-processing,microwave ovens combining infrared and microwave methods were utilized.The effects of infrared heating temperature,infrared heating time,microwave power,microwave heating time on the center temperature,moisture content,the chroma(C*),the total color difference(ΔE*),shape fidelity,hardness,and the total anthocyanin content of 3D printed raspberry preserves were analyzed by response surface method(RSM).The results showed that under combining with the two methods,infrared heating improved the fidelity and quality degradation of printed products,while microwave heating enhanced the efficiency of infrared heating.Infrared-microwave combination cooking could maintain relatively stable color appearance and shape of 3D printed raspberry preserves.The AHP–CRITIC hybrid weighting method combined with the response surface test to determine the comprehensive weights of the evaluation indicators optimized the process parameters,and the optimal process parameters were obtained:infrared heating temperature of 190℃,infrared heating time of 10 min and 30 s,microwave power of 300 W,and microwave heating time of 2 min and 6 s.The 3D printed raspberry cooking methods obtained under the optimal conditions seldom had color variation,porous structure,uniform texture,and high shape fidelity,which retained the characteristics of personalized manufacturing by 3D printing.This study could provide a reference for the postprocessing and quality control of 3D cooking methods. 展开更多
关键词 3d printing RASPBERRY MICROWAVE infrared heating hybrid weighting response surface method
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3D printed hybrid rocket fuels with μAl core-shell particles coated with polyvinylidene fluoride and polydopamine: Enhanced combustion characteristics
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作者 Qihang Chen Xiaolong Fu +6 位作者 Weitao Yang Suhang Chen Zhiming Guo Rui Hu Huijie Zhang Lianpeng Cui Xu Xia 《Defence Technology(防务技术)》 2025年第4期59-70,共12页
3D printing technology enhances the combustion characteristics of hybrid rocket fuels by enabling complex geometries. However, improvements in regression rates and energy properties of monotonous 3D printed fuels have... 3D printing technology enhances the combustion characteristics of hybrid rocket fuels by enabling complex geometries. However, improvements in regression rates and energy properties of monotonous 3D printed fuels have been limited. This study explores the impact of poly(vinylidene fluoride) and polydopamine-coated aluminum particles on the thermal and combustion properties of 3D printed hybrid rocket fuels. Physical self-assembly and anti-solvent methods were employed for constructing composite μAl particles. Characterization using SEM, XRD, XPS, FTIR, and μCT revealed a core-shell structure and homogeneous elemental distribution. Thermal analysis showed that PVDF coatings significantly increased the heat of combustion for aluminum particles, with maximum enhancement observed in μAl@PDA@PVDF(denoted as μAl@PF) at 6.20 k J/g. Subsequently, 3D printed fuels with varying pure and composite μAl particle contents were prepared using 3D printing. Combustion tests indicated higher regression rates for Al@PF/Resin composites compared to pure resin, positively correlating with particle content. The fluorocarbon-alumina reaction during the combustion stage intensified Al particle combustion, reducing residue size. A comprehensive model based on experiments provides insights into the combustion process of PDA and PVDF-coated droplets. This study advances the design of 3D-printed hybrid rocket fuels, offering strategies to improve regression rates and energy release, crucial for enhancing solid fuel performance for hybrid propulsion. 展开更多
关键词 Hybrid propulsion Regression rate 3d print fuels Micro aluminum CORE-SHELL mAl@PdA@PVdF
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Effect of fractures on mechanical behavior of sand powder 3D printing rock analogue under triaxial compression
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作者 LI Pi-mao JIANG Li-shuai +5 位作者 WEN Zhi-jie WU Chao-lei YANG Yi-ming PENG Xiao-han WU Quan-sen WU Quan-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2703-2716,共14页
In practical engineering applications,rock mass are often found to be subjected to a triaxial stress state.Concurrently,defects like joints and fractures have a notable impact on the mechanical behavior of rock mass.S... In practical engineering applications,rock mass are often found to be subjected to a triaxial stress state.Concurrently,defects like joints and fractures have a notable impact on the mechanical behavior of rock mass.Such defects are identified as crucial contributors to the failure and instability of the surrounding rock,subsequently impacting the engineering stability.The study aimed to investigate the impact of fracture geometry and confining pressure on the deformation,failure characteristics,and strength of specimens using sand powder 3D printing technology and conventional triaxial compression tests.The results indicate that the number of fractures present considerably influences the peak strength,axial peak strain and elastic modulus of the specimens.Confining pressure is an important factor affecting the failure pattern of the specimen,under which the specimen is more prone to shear failure,but the initiation,expansion and penetration processes of secondary cracks in different fracture specimens are different.This study confirmed the feasibility of using sand powder 3D printing specimens as soft rock analogs for triaxial compression research.The insights from this research are deemed essential for a deeper understanding of the mechanical behavior of fractured surrounding rocks when under triaxial stress state. 展开更多
关键词 sand powder 3d printing triaxial compression confining pressure fracture geometry mechanical behavior
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Cookie Baking Process Optimization and Quality Analysis Based on Food 3D Printing
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作者 Liu Chenghai Li Jingyi +2 位作者 Wu Chunsheng Zhao Xinglong Zheng Xianzhe 《Journal of Northeast Agricultural University(English Edition)》 CAS 2024年第1期61-73,共13页
In order to obtain better quality cookies, food 3D printing technology was employed to prepare cookies. The texture, color, deformation, moisture content, and temperature of the cookie as evaluation indicators, the in... In order to obtain better quality cookies, food 3D printing technology was employed to prepare cookies. The texture, color, deformation, moisture content, and temperature of the cookie as evaluation indicators, the influences of baking process parameters, such as baking time, surface heating temperature and bottom heating temperature, on the quality of the cookie were studied to optimize the baking process parameters. The results showed that the baking process parameters had obvious effects on the texture, color, deformation, moisture content, and temperature of the cookie. All of the roasting surface heating temperature, bottom heating temperature and baking time had positive influences on the hardness, crunchiness, crispiness, and the total color difference(ΔE) of the cookie. When the heating temperatures of the surfac and bottom increased, the diameter and thickness deformation rate of the cookie increased. However,with the extension of baking time, the diameter and thickness deformation rate of the cookie first increased and then decreased. With the surface heating temperature of 180 ℃, the bottom heating temperature of 150 ℃, and baking time of 15 min, the cookie was crisp and moderate with moderate deformation and uniform color. There was no burnt phenomenon with the desired quality. Research results provided a theoretical basis for cookie manufactory based on food 3D printing technology. 展开更多
关键词 food 3d printing baking process COOKIE quality analysis optimization of process parameter
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3D打印机喷头温度场分析及冷却系统优化
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作者 段梦珍 任东旭 《塑料》 北大核心 2025年第3期92-99,共8页
在熔融沉积型3D打印过程中,当温度太高时,耗材吐丝不均匀;当温度太低时,打印吐丝速变慢,喷头易堵塞,因此,通过对3D打印机喷头温度场进行分析,并对冷却系统进行优化。建立3D打印机喷头结构模型和3D打印机温度场热分析理论模型;然后,基于A... 在熔融沉积型3D打印过程中,当温度太高时,耗材吐丝不均匀;当温度太低时,打印吐丝速变慢,喷头易堵塞,因此,通过对3D打印机喷头温度场进行分析,并对冷却系统进行优化。建立3D打印机喷头结构模型和3D打印机温度场热分析理论模型;然后,基于Ansys Workbench建立3D打印机喷头温度场模型,对其整体及关键部件进行温度热分析;最后,基于温度场热分析结果,对喷头冷却系统进行优化和温度场热分析,并对优化后喷头进行打印实验。结果表明,当t=100、200、300 s时,与优化前相比,喷头整体最低温度分别降低了0.558、3.254、7.086℃,降低率分别为2.58%、13.4%、25.1%,喷头最高温度分别提高了20%和5%,喷头冷却效果和加热速度均得到了显著提升,提供了足够的打印热量,同时提高了散热效果。在打印实验过程中,喷头温度与仿真时温度基本一致,并且,没有发生耗材堵塞、成型件坍塌等问题,证明了优化后的结构具有较好的散热性能。 展开更多
关键词 3d打印 喷头 温度场分析 有限元分析 结构优化
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Enhanced engineering and biocidal polypropylene filaments enabling melt reduction of AgNO_(3) through PVP agent:A scalable process for the defense industry with MEX additive manufacturing
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作者 Markos Petousis Nikolaos Michailidis +7 位作者 Vassilis Papadakis Apostolos Argyros Mariza Spiridaki Nikolaos Mountakis John Valsamos Nektarios K.Nasikas Amalia Moutsopoulou Nectarios Vidakis 《Defence Technology(防务技术)》 2025年第2期52-66,共15页
This study focused on the production of polypropylene(PP)/silver(Ag)composites via additive manufacturing.This study aimed to enhance the quality of medical-grade PP in material extrusion(MEX)three-dimensional printin... This study focused on the production of polypropylene(PP)/silver(Ag)composites via additive manufacturing.This study aimed to enhance the quality of medical-grade PP in material extrusion(MEX)three-dimensional printing(3DP)by improving its mechanical properties while simultaneously adding antibacterial properties.The latter can find extremely important and versatile properties that are applicable in defense and security domains.PP/Ag nanocomposites were prepared using a novel method based on a reaction occurring while mixing appropriate quantities of the starting polymers and additives,namely polyvinylpyrrolidone(PVP)as the matrix material and silver nitrate(AgNO_(3))as the filler.This process produced three-dimensional(3D)printed filaments,which were then used to create specimens for a series of standardized tests.It was found that the mechanical properties of the nanocomposites were enhanced in relation to pristine PP,especially for the PP matrix with various loadings of AgNO_(3)and PVP,such as 5.0 wt%and 2.5 wt%,respectively.The voids,inclusions,and actual-to-nominal dimensions also showed improved results.The 3DP specimens exhibited a more effective biocidal performance against Staphylococcus aureus than Escherichia coli,which developed an inhibition zone only in the case of PP with filler loading percentages of AgNO_(3)and PVP at 10.0 wt%and 5.0 wt%,respectively Compounds possessing such properties can be beneficial for various applications requiring increased mechanical properties and biocidal capabilities,such as in the Defence or medical industries. 展开更多
关键词 Polypropylene(PP) Polyvinyl pyrrolidone(PVP) Silver nitride(AgNO_(3)) In-situ reactive melt mixing process Material extrusion(MEX)3d printing Biocidal performance
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Experimental study of 3D printed carbon fibre sandwich structures for lightweight applications
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作者 Solaiprakash Vellaisamy Raguraman Munusamy 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第6期71-77,共7页
Honeycomb sandwich structures are widely used in lightweight applications.Usually,these structures are subjected to extreme loading conditions,leading to potential failures due to delamination and debonding between th... Honeycomb sandwich structures are widely used in lightweight applications.Usually,these structures are subjected to extreme loading conditions,leading to potential failures due to delamination and debonding between the face sheet and the honeycomb core.Therefore,the present study is focused on the mechanical characterisation of honeycomb sandwich structures fabricated using advanced 3D printing technology.The continuous carbon fibres and ONYX-FR matrix materials have been used as raw materials for 3D printing of the specimens needed for various mechanical characterization testing;ONYX-FR is a commercial trade name for flame retardant short carbon fibre filled nylon filaments,used as a reinforcing material in Morkforged 3D printer.Edgewise and flatwise compression tests have been conducted for different configurations of honeycomb sandwich structures,fabricated by varying the face sheet thickness and core cell size,while keeping the core cell thickness and core height constant.Based on these tests,the proposed structure with face sheet thickness of 3.2 mm and a core cell size of 12.7 mm exhibited the highest energy absorption and prevented delamination and debonding failures.Therefore,3D printing technology can also be considered as an alternative method for sandwich structure fabrication.However,detailed parametric studies still need to be conducted to meet various other structural integrity criteria related to the lightweight applications. 展开更多
关键词 3d printed composite Honeycomb sandwich Edgewise compression Flatwise compression LIGHTWEIGHT
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Acoustical properties of a 3D printed honeycomb structure filled with nanofillers:Experimental analysis and optimization for emerging applications
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作者 Jeyanthi Subramanian Vinoth kumar Selvaraj +3 位作者 Rohan Singh Ilangovan S Naresh Kakur Ruban Whenish 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第5期248-258,共11页
The novelty of this research lies in the successful fabrication of a 3D-printed honeycomb structure filled with nanofillers for acoustic properties,utilizing an impedance tube setup in accordance with ASTM standard E ... The novelty of this research lies in the successful fabrication of a 3D-printed honeycomb structure filled with nanofillers for acoustic properties,utilizing an impedance tube setup in accordance with ASTM standard E 1050-12.The Creality Ender-3,a 3D printer,was used for printing the honeycomb structures,and polylactic acid(PLA)material was employed for their construction.The organic,inorganic,and polymeric compounds within the composites were identified using fourier transformation infrared(FTIR)spectroscopy.The structure and homogeneity of the samples were examined using a field emission scanning electron microscope(FESEM).To determine the sound absorption coefficient of the 3D printed honeycomb structure,numerous samples were systematically developed using central composite design(CCD)and analysed using response surface methodology(RSM).The RSM mathematical model was established to predict the optimum values of each factor and noise reduction coefficient(NRC).The optimum values for an NRC of 0.377 were found to be 1.116 wt% carbon black,1.025 wt% aluminium powder,and 3.151 mm distance between parallel edges.Overall,the results demonstrate that a 3Dprinted honeycomb structure filled with nanofillers is an excellent material that can be utilized in various fields,including defence and aviation,where lightweight and acoustic properties are of great importance. 展开更多
关键词 3d printing Honeycomb structure ACOUSTICS Field emission scanning electron microscope Response surface methodology
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3D gel printing of VC reinforced high vanadium high-speed steel 被引量:1
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作者 CHEN Cun-guang SUN Hai-xia +3 位作者 YANG Fang QIN Qian HE Xin-bo GUO Zhi-meng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1144-1154,共11页
Due to their high hardness and high strength,VC reinforced hard materials such as high vanadium high-speed steel(HVHSS)are not suitable for machining to obtain complex shape with low cost.Therefore,3D gel printing(3DG... Due to their high hardness and high strength,VC reinforced hard materials such as high vanadium high-speed steel(HVHSS)are not suitable for machining to obtain complex shape with low cost.Therefore,3D gel printing(3DGP)was employed to print HVHSS parts,using highly loaded slurry with 60%solid content as printing slurry.After printing parameters optimization,the printing sample had good surface quality,and obvious printing lines were observed.The extruded filament was in-situ cured,thus enough to maintain the designed shape.Uniform sintering shrinkage with a shrinkage rate of about 15%was obtained in the as-sintered sample with relative density of 99%.The surface roughness decreased from 6.5μm to 3.8μm.Fine carbides(<1μm)and dense microstructure were achieved.Besides,the as-sintered sample had comprehensive performance of HRC60 in hardness,3000 MPa in bend strength,and 20−26 J in impact energy.This study proposed one promising method to directly manufacture complex-shaped hard materials without subsequent machining. 展开更多
关键词 3d gel printing complex shape rheological behavior printing appearance mechanical performance
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Sintering properties of in situ Ti-TiB microlattices created by 3D extrusion printing of TiH_(2)+TiB_(2) inks
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作者 SONG Bin-na CAO Jian 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1078-1088,共11页
A direct 3D extrusion printing technique was used to produce Ti-TiB filaments and microlattices.The sintering properties of 3D ink extrusion and sintering of in situ Ti-TiB composite structures made from TiH_(2)+TiB_(... A direct 3D extrusion printing technique was used to produce Ti-TiB filaments and microlattices.The sintering properties of 3D ink extrusion and sintering of in situ Ti-TiB composite structures made from TiH_(2)+TiB_(2) ink were investigated.The sintering kinetics of TiH2+TiB2 inks was studied during densification by pressureless sintering at 1050−1200℃ for 4−24 h in Ar.The linear shrinkage,grain size,microhardness,X-ray diffraction(XRD)patterns,and microstructural evolution of the Ti-TiB composite were studied.The sintering temperature had a more pronounced influence than the sintering time on the density of the Ti-TiB composite.There were two kinds of pores,irregular and spherical,caused by the Kirkendall effect and indiffusable gases.The TiB formed by in situ synthesis existed as either separated TiB whiskers(needle-like shapes)or clusters of TiB whiskers.The results of this work could be useful for controlling microporosity through incomplete sintering within filaments,especially for the production of in situ Ti-TiB with high volume fractions of TiB or other composites. 展开更多
关键词 pressureless sintering Ti-TiB composites MICROPOROSITY 3d extrusion printing
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Indirect 3D printed ceramic:A literature review 被引量:4
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作者 CAI Jia-wei ZHANG Bai-cheng +2 位作者 ZHANG Mao-hang WEN Yao-jie QU Xuan-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期983-1002,共20页
Additive manufacturing(AM),also known as 3D-printing(3DP)technology,is an advanced manufacturing technology that has developed rapidly in the past 40 years.However,the ceramic material printing is still challenging be... Additive manufacturing(AM),also known as 3D-printing(3DP)technology,is an advanced manufacturing technology that has developed rapidly in the past 40 years.However,the ceramic material printing is still challenging because of the issue of cracking.Indirect 3D printing has been designed and drawn attention because of its high manufacturing speed and low cost.Indirect 3D printing separates the one-step forming process of direct 3D printing into binding and material sintering,avoiding the internal stress caused by rapid cooling,making it possible to realize the highquality ceramic component with complex shape.This paper presents the research progress of leading indirect 3D printing technologies,including binder jetting(BJ),stereolithography(SLA),and fused deposition modeling(FDM).At present,the additive manufacturing of ceramic materials is mainly achieved through indirect 3D printing technology,and these materials include silicon nitride,hydroxyapatite functional ceramics,silicon carbide structural ceramics. 展开更多
关键词 indirect 3d printing CERAMIC binder jetting STEREOLITHOGRAPHY fused deposition modeling
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气体辅助条件下GF/PP的3D打印
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作者 杨茹 肖建华 +1 位作者 刘英兰 胥世康 《塑料》 CAS CSCD 北大核心 2024年第6期93-96,134,共5页
在气辅3D打印中,高温气流对聚合物丝材形态产生显著影响,因此,需要深入研究其内部机理。优化设计了气辅3D打印喷嘴,采用含量为10%的玻璃纤维增强聚丙烯(GF/PP),对比研究了传统3D打印与气辅3D打印制品的表观性能和力学性能,结果表明,引... 在气辅3D打印中,高温气流对聚合物丝材形态产生显著影响,因此,需要深入研究其内部机理。优化设计了气辅3D打印喷嘴,采用含量为10%的玻璃纤维增强聚丙烯(GF/PP),对比研究了传统3D打印与气辅3D打印制品的表观性能和力学性能,结果表明,引入气体辅助后,减小了打印过程中的收缩变形,将3D打印制品在水平和垂直2个方向上的尺寸精度分别提高了4.3、1.7倍,形状尺寸更接近原始模型尺寸;气流的引入使高分子丝材变为滑移挤出,表面粗糙度降低至传统3D打印材料的46%,表面更加光滑平整;拉伸强度和断裂伸长率分别提高了8.24%、50.71%。在以上因素共同作用下,打印制品的表观质量和力学性能更佳。 展开更多
关键词 玻璃纤维增强聚丙烯 气体辅助 3d打印 尺寸精度 表面粗糙度
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Multifunctional characteristics of 3D printed polymer nanocomposites under monotonic and cyclic compression
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作者 Pawan Verma Jabir Ubaid +2 位作者 Fahad Alam Suleyman Deveci S.Kumar 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第12期13-22,共10页
This study presents the multifunctional characteristics of multi-walled carbon nanotube(MWCNT)/polypropylene random copolymer(PPR) composites enabled via fused filament fabrication(FFF) under monotonic and quasi-stati... This study presents the multifunctional characteristics of multi-walled carbon nanotube(MWCNT)/polypropylene random copolymer(PPR) composites enabled via fused filament fabrication(FFF) under monotonic and quasi-static cyclic compression. Utilizing in-house MWCNT-engineered PPR filament feedstocks, both bulk and cellular composites were realized. The morphological features of nanocomposites were examined via scanning electron microscopy, which reveals that MWCNTs are uniformly dispersed. The uniformly dispersed MWCNTs forms an electrically conductive network within the PPR matrix, and the resulting nanocomposite shows good electrical conductivity(~10^(-1)S/cm), improved mechanical performance(modulus increases by 125% and compressive strength increases by 25% for 8 wt% MWCNT loading) and pronounced piezoresistive response(gauge factor of 27.9-8.5 for bulk samples)under compression. The influence of strain rate on the piezoresistive response of bulk samples(4 wt% of MWCNT) under compression was also measured. Under repeated cyclic compression(2% constant strain amplitude), the nanocomposite exhibited stable piezoresistive performance up to 100 cycles. The piezoresistive response under repeated cyclic loading with increasing strain amplitude of was also assessed.The gauge factor of BCC and FCC cellular composites(4 wt% of MWCNT) with a relative density of 30%was observed to be 46.4 and 30.2 respectively, under compression. The higher sensitivity of the BCC plate-lattice could be attributed to its higher degree of stretching-dominated deformation behavior than the FCC plate-lattice, which exhibits bending-dominated behavior. The 3D printed cellular PPR/MWCNT composites structures were found to show excellent piezoresistive self-sensing characteristics and open new avenues for in situ structural health monitoring in various applications. 展开更多
关键词 Carbon nanotubes Nanoengineered polymer composites 3d printing Piezoresistive self-sensing Lattice structures
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3D打印技术中的数据文件格式 被引量:12
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作者 李彦生 尚奕彤 +5 位作者 袁艳萍 陈继民 李东方 王颖 刘春春 窦阳 《北京工业大学学报》 CAS CSCD 北大核心 2016年第7期1009-1016,共8页
3D打印是一种快速成型技术,以数字化模型文件为基础进行建模,并通过逐层打印的方式来实现实体的制造,不同的数据文件格式直接影响加工过程和加工效果.介绍了3D打印的工艺流程与三维模型数据的获取技术,从三维数据文件格式、二维层片文... 3D打印是一种快速成型技术,以数字化模型文件为基础进行建模,并通过逐层打印的方式来实现实体的制造,不同的数据文件格式直接影响加工过程和加工效果.介绍了3D打印的工艺流程与三维模型数据的获取技术,从三维数据文件格式、二维层片文件格式、新型的数据文件格式3个方面系统阐述了3D打印技术中的数据文件格式,并分析了各种数据文件格式的内涵与优缺点.最后,根据目前3D打印的发展给出了未来数据文件格式的发展方向. 展开更多
关键词 3d打印 建模 数据文件格式
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3D打印混凝土材料及混凝土建筑技术进展 被引量:88
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作者 张大旺 王栋民 《硅酸盐通报》 CAS CSCD 北大核心 2015年第6期1583-1588,共6页
3D打印是近年来发展起来的高新技术,已在机械制造等行业取得很大成功,在材料和建筑等领域也有所发展。本文在介绍通用3D打印技术进展的基础上,着重阐述了混凝土材料的传统施工工艺、国内外3D打印混凝土技术与其材料和施工工艺的发展现状... 3D打印是近年来发展起来的高新技术,已在机械制造等行业取得很大成功,在材料和建筑等领域也有所发展。本文在介绍通用3D打印技术进展的基础上,着重阐述了混凝土材料的传统施工工艺、国内外3D打印混凝土技术与其材料和施工工艺的发展现状,讨论了3D打印混凝土当前所面临的问题,并对3D打印混凝土提出了未来展望。 展开更多
关键词 3d打印 3d打印混凝土 3d打印干混砂浆 施工工艺
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利用3D打印技术制备太赫兹器件 被引量:10
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作者 杨晶 龚诚 +5 位作者 赵佳宇 田浩琳 孙陆 陈平 林列 刘伟伟 《中国光学》 EI CAS CSCD 2017年第1期77-85,共9页
高性能的太赫兹器件在控制太赫兹波方面起到重要的作用,因此寻求一种简单有效的太赫兹器件加工方案非常必要。本文以太赫兹波导和太赫兹滤波器为例,分别选用Kagome型光子晶体结构的波导和一维光子晶体结构的滤波器,运用商用的3D打印机... 高性能的太赫兹器件在控制太赫兹波方面起到重要的作用,因此寻求一种简单有效的太赫兹器件加工方案非常必要。本文以太赫兹波导和太赫兹滤波器为例,分别选用Kagome型光子晶体结构的波导和一维光子晶体结构的滤波器,运用商用的3D打印机加工样品,并采用透射式太赫兹时域光谱系统对样品的参数进行测量。实验结果表明:加工的波导在0.2~1.0 THz范围内传输损耗平均值约为0.02 cm^(-1),最小值可达到0.002 cm^(-1),且可运用机械拼接的方式将多个波导进行简单的连接从而获得更长的波导而不引起严重的损耗;滤波器的透射谱在0.1~0.5 THz之间有两个明显高损耗带;这两组实验结果均与理论预计非常接近。本文运用太赫兹波导和滤波器的实例证实了3D打印技术加工太赫兹器件的可行性,将会成为获取性能可控、价格低廉的太赫兹器件的有效途径。 展开更多
关键词 3d打印 太赫兹波导 太赫兹滤波器 太赫兹光谱
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面向3D打印的三维模型处理技术研究综述 被引量:20
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作者 贺强 程涵 杨晓强 《制造技术与机床》 北大核心 2016年第6期54-57,61,共5页
作为一种变革性的技术,3D打印将推动三维智能数字化制造,而面向3D打印的三维模型数据处理则是实现这一过程的基础和前提。针对面向3D打印的三维模型处理技术,首先给出了3D模型数据处理的技术体系;然后分析总结了3D模型数据处理各个关键... 作为一种变革性的技术,3D打印将推动三维智能数字化制造,而面向3D打印的三维模型数据处理则是实现这一过程的基础和前提。针对面向3D打印的三维模型处理技术,首先给出了3D模型数据处理的技术体系;然后分析总结了3D模型数据处理各个关键技术环节的研究现状;最后对面向3D打印的3D数据处理技术存在的问题及未来发展方向进行了展望。3D模型数据处理技术为3D打印贯穿产品全生命周期提供技术支持,可有效推动3D打印技术的发展和完善。 展开更多
关键词 3d打印 三维模型处理 STL模型 分层切片
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骨科个体化治疗与3D打印技术 被引量:114
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作者 王燎 戴尅戎 《医用生物力学》 EI CAS CSCD 北大核心 2014年第3期193-199,共7页
个体化治疗是骨科发展的一个重要方向,无论是个体化假体的应用还是常规假体的个体化植入,理论上均可改善骨关节假体与邻近骨性结构的匹配,从而改善病患功能状态。个体化治疗理论上的优越性无法代偿其在术前规划、设计、制造等方面程序... 个体化治疗是骨科发展的一个重要方向,无论是个体化假体的应用还是常规假体的个体化植入,理论上均可改善骨关节假体与邻近骨性结构的匹配,从而改善病患功能状态。个体化治疗理论上的优越性无法代偿其在术前规划、设计、制造等方面程序上复杂及时限上滞后的缺陷,因而,个体化治疗常常停留在一种曲高和寡的概念。伴随图像技术的发展及3D打印技术的成熟,个体化设计及制造的生产效率有望显著提高,从而弥补传统个体化治疗效率上的不足,将个体化从概念落地为治疗理念。 展开更多
关键词 骨科 个体化治疗 3d打印 假体
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3-D颞骨模型的制作与应用 被引量:9
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作者 杨静雅 田广永 +3 位作者 黄文华 许靖 吴章林 张芳 《中华耳科学杂志》 CSCD 北大核心 2015年第2期369-372,共4页
目的探讨利用粉末堆积打印技术制作的高仿真3-D颞骨模型在解剖技能训练及模拟手术中的应用。方法利用高分辨率CT获取活体颞骨断层图像(正常人2例,慢性中耳炎患者2例),数据导入Mimics软件行图像分割及颞骨三维重建,以石膏粉末为原料,利... 目的探讨利用粉末堆积打印技术制作的高仿真3-D颞骨模型在解剖技能训练及模拟手术中的应用。方法利用高分辨率CT获取活体颞骨断层图像(正常人2例,慢性中耳炎患者2例),数据导入Mimics软件行图像分割及颞骨三维重建,以石膏粉末为原料,利用粉末堆积快速成型技术打印出颞骨模型,重要解剖结构与组织(听骨链、面神经、位听器、炎性渗出及胆脂瘤等)以不同颜色打印,并在显微镜下进行手术演练。结果颞骨模型的硬度与人骨相近,模型表面及内部骨性标志明显,解剖精确度高,钻磨触感接近真实,满足颞骨解剖技能训练及模拟手术的要求。结论利用粉末堆积打印技术能制作出仿真度更高、更接近实际人体解剖结构的颞骨模型,帮助临床医生在术前全面了解患者的颞骨及周围组织解剖结构与病变情况,制定和优化手术方案,减少并发症。 展开更多
关键词 颞骨 3-d打印 快速成型 个体化
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面向3D打印的复杂产品设计综述 被引量:11
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作者 杨慧香 宋国亚 +3 位作者 姜大伟 尹晓静 赵俊鹏 宁腾飞 《现代制造工程》 CSCD 北大核心 2016年第11期152-157,共6页
3D打印能够在不牺牲产品性能的情况下打印出复杂的产品。相对于传统的制造技术,3D打印为设计者提供了宽阔的设计空间。设计者可以设计具有复杂形状、复杂功能和复杂材料的产品。复杂产品设计目标在于根据3D打印的特点,通过综合产品形状... 3D打印能够在不牺牲产品性能的情况下打印出复杂的产品。相对于传统的制造技术,3D打印为设计者提供了宽阔的设计空间。设计者可以设计具有复杂形状、复杂功能和复杂材料的产品。复杂产品设计目标在于根据3D打印的特点,通过综合产品形状、大小、层次结构以及材质组成实现产品性能的最优化。从设计复杂度角度,将面向3D打印的复杂产品设计分为三类:材料复杂型设计、形状复杂型设计和功能复杂型设计,并对其进行综述和总结。最后对目前的热点问题进行了探讨,并预测了未来的一些发展趋势。 展开更多
关键词 3d打印 复杂产品设计 材料设计 形体设计 结构设计
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