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Dynamic characteristics of multi-span spinning beams with elastic constraints under an axial compressive force
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作者 Xiaodong GUO Zhu SU Lifeng WANG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2024年第2期295-310,共16页
A theoretical model for the multi-span spinning beams with elastic constraints under an axial compressive force is proposed.The displacement and bending angle functions are represented through an improved Fourier seri... A theoretical model for the multi-span spinning beams with elastic constraints under an axial compressive force is proposed.The displacement and bending angle functions are represented through an improved Fourier series,which ensures the continuity of the derivative at the boundary and enhances the convergence.The exact characteristic equations of the multi-span spinning beams with elastic constraints under an axial compressive force are derived by the Lagrange equation.The efficiency and accuracy of the present method are validated in comparison with the finite element method(FEM)and other methods.The effects of the boundary spring stiffness,the number of spans,the spinning velocity,and the axial compressive force on the dynamic characteristics of the multi-span spinning beams are studied.The results show that the present method can freely simulate any boundary constraints without modifying the solution process.The elastic range of linear springs is larger than that of torsion springs,and it is not affected by the number of spans.With an increase in the axial compressive force,the attenuation rate of the natural frequency of a spinning beam with a large number of spans becomes larger,while the attenuation rate with an elastic boundary is lower than that under a classic simply supported boundary. 展开更多
关键词 multi-span spinning beam elastic constraint improved Fourier series free vibration semi-analytical solution
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Photocatalytic ozonation-based degradation of phenol by ZnO—TiO_(2)nanocomposites in spinning disk reactor
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作者 Xueqing Ren Jiahao Niu +5 位作者 Yan Li Lei Li Chao Zhang Qiang Guo Qiaoling Zhang Weizhou Jiao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第8期74-84,共11页
Spinning disk reactor(SDR)has emerged as a novel process intensification photocatalytic reactor,and it has higher mass transfer efficiency and photon utilization for the degradation of toxic organic pollutants by adva... Spinning disk reactor(SDR)has emerged as a novel process intensification photocatalytic reactor,and it has higher mass transfer efficiency and photon utilization for the degradation of toxic organic pollutants by advanced oxidation processes(AOPs).In this study,ZnO—TiO_(2)nanocomposites were prepared by solgel method,and coated on the disk of SDR by impregnation-pull-drying-calcination method.The performance of catalyst was characterized by X-ray diffraction,scanning electron microscope,X-ray photoelectron spectroscopy,photoluminescence and ultraviolet—visible diffuse reflectance spectroscopy.Photocatalytic ozonation in SDR was used to remove phenol,and various factors on degradation effect were studied in detail.The results showed that the rate of degradation and mineralization reached 100%and 83.4%under UV light irradiation after 50 min,compared with photocatalysis and ozonation,the removal rate increased by 69.3%and 34.7%,and mineralization rate increased by 56.7%and 62.9%,which indicated that the coupling of photocatalysis and ozonation had a synergistic effect.The radical capture experiments demonstrated that the active species such as photogenerated holes(h^(+)),hydroxyl radicals(·OH),superoxide radical(·O_(2)-)were responsible for phenol degradation,and·OH played a leading role in the degradation process,while h+and·O_(2)^(-)played a non-leading role. 展开更多
关键词 spinning disk reactor Photocatalytic ozonation ZnO-TiO_(2)nanocomposites Advanced oxidation processes
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Carrageenan Fiber Prepared by a New Process Route of Ba^(2+)Ion Pre-Crosslinking in the Spinning Solution
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作者 Liting Jia Xiao Han +3 位作者 Cuixia Qiao Gang Zhao Yanzhi Xia Zhixin Xue 《Journal of Renewable Materials》 EI CAS 2024年第3期427-441,共15页
Ba^(2+)pre-crosslinked carrageenan fiber(Ba/CAF)was prepared by adding a small amount of Ba^(2+) to the carrageenan(CA)solution as the spinning solution.Ba/CAF-n/A,Ba/CAF-n/B and Ba/CAF-n/C were prepared with ethanol ... Ba^(2+)pre-crosslinked carrageenan fiber(Ba/CAF)was prepared by adding a small amount of Ba^(2+) to the carrageenan(CA)solution as the spinning solution.Ba/CAF-n/A,Ba/CAF-n/B and Ba/CAF-n/C were prepared with ethanol solution(combine A),high concentration BaCl_(2)solution(combine B)and low concentration BaCl_(2)solution(combine C),as coagulation bath and stretch bath,respectively.The combination of coagulation bath and stretch bath suitable for Ba^(2+) pre-crosslinking wet spinning was screened.The results showed that Ba^(2+) can induce the birefringence of the CA molecular chain,and the Ba^(2+) pre-crosslinking effect is the best when the CA mass fraction is 8.0 wt%.From the perspective of production safety,fiber performance and spinning cost,the coagulation bath of 3.5 wt%BaCl_(2)solution and stretch bath of 1.7 wt%BaCl_(2)solution,that is,combination C with low concentration BaCl_(2)solution,is the best choice.Ba/CAF-8.0/C was obtained under the best conditions.The linear intensity,water absorption and flame retardancy study showed that the breaking strength of Ba/CAF-8.0/C is as high as 1.61 cN/dtex,the water absorption was 649.2%and 574.3%,in deionized water and normal saline,respectively,and the LOI value reached 32. 展开更多
关键词 Carrageenan fiber Ba^(2+)ion pre-crosslinking wet spinning flame retardancy
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Observer-based robust high-order fully actuated attitude autopilot design for spinning glide-guided projectiles
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作者 Wei Wang Yuchen Wang +2 位作者 Shiwei Chen Yongcang Guo Zhongjiao Shi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第4期282-294,共13页
This paper investigates the design of an attitude autopilot for a dual-channel controlled spinning glideguided projectile(SGGP),addressing model uncertainties and external disturbances.Based on fixed-time stable theor... This paper investigates the design of an attitude autopilot for a dual-channel controlled spinning glideguided projectile(SGGP),addressing model uncertainties and external disturbances.Based on fixed-time stable theory,a disturbance observer with integral sliding mode and adaptive techniques is proposed to mitigate total disturbance effects,irrespective of initial conditions.By introducing an error integral signal,the dynamics of the SGGP are transformed into two separate second-order fully actuated systems.Subsequently,employing the high-order fully actuated approach and a parametric approach,the nonlinear dynamics of the SGGP are recast into a constant linear closed-loop system,ensuring that the projectile's attitude asymptotically tracks the given goal with the desired eigenstructure.Under the proposed composite control framework,the ultimately uniformly bounded stability of the closed-loop system is rigorously demonstrated via the Lyapunov method.Validation of the effectiveness of the proposed attitude autopilot design is provided through extensive numerical simulations. 展开更多
关键词 spinning glide-guided projectile Attitude control Sliding mode disturbance observer Fixed-time stable theory High-order fully actuated approach
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Preparation of Regenerated Silk Fibroin Hybrid Fibers with Hydrogen Peroxide Sensing Properties by Wet Spinning
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作者 Song Lu Jianjun Guo +3 位作者 Richard Ansah Herman Xinyi Wu Lin Ma Guohua Wu 《Journal of Renewable Materials》 EI CAS 2024年第6期1043-1055,共13页
Silk is widely used in the production of high-quality textiles.At the same time,the amount of silk textiles no longer in use and discarded is increasing,resulting in significant waste and pollution.This issue is of gr... Silk is widely used in the production of high-quality textiles.At the same time,the amount of silk textiles no longer in use and discarded is increasing,resulting in significant waste and pollution.This issue is of great concern in many countries where silk is used.Hydrogen peroxide as a naturally occurring compound is an important indicator of detection in both biology and the environment.This study aims to develop a composite fiber with hydrogen peroxide-sensing properties using discarded silk materials.To achieve this goal,firstly,polydopamine(PDA)was used to encapsulate the ZnFe_(2)O_(4) NPs to achieve the improvement of dispersion,and then regenerated silk fibroin(RSF)and PDA@ZnFe_(2)O_(4)/RSF hybrid fibers are prepared by wet spinning.Research has shown that PDA@ZnFe_(2)O_(4)/RSF demonstrates exceptional sensitivity,selectivity,and stability in detecting hydrogen peroxide,while maintaining high mechanical strength.Furthermore,the complete hybridization of PDA@ZnFe_(2)O_(4) with silk fibroin not only results in the combination of the durability of silk fibroin and PDA@ZnFe_(2)O_(4)’s rigidity,ensuring a reliable service life,but also makes PDA@ZnFe_(2)O_(4)/RSF exhibit excellent catalytic activity and biocompatibility.Therefore,the composite fiber exhibits exceptional mechanical properties and reliable hydrogen peroxide sensing capabilities,making it a promising material for biological and medical applications. 展开更多
关键词 Regenerated silk fibroin modified zinc ferrite nanoparticles composite fiber hydrogen peroxide sensor wet spinning
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Reduce waste and boost profits in spinning:Uster presents FiberQ and RSO 3D
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《China Textile》 2024年第3期42-43,共2页
Coinciding with World Water Day celebrations and unSpinners seeking profitable investments for sustainable mill operations would do well to check out Uster FiberQ and RSO 3D.Both these systems offer attractive ROI.The... Coinciding with World Water Day celebrations and unSpinners seeking profitable investments for sustainable mill operations would do well to check out Uster FiberQ and RSO 3D.Both these systems offer attractive ROI.They also help spinners control the most expensive stages in the mill process,cutting waste and boosting profits. 展开更多
关键词 spinning USTER BOOST
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Research on the Development of Fibroin and Nano-Fiber from Silk Cocoons for Regenerated Tissue Engineering Applications by Electro-Spinning
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作者 Md Kamrul Hasan Xinbo Ding 《Advances in Nanoparticles》 CAS 2024年第1期1-9,共9页
In this paper, the main goal is to prepare silk fibroin nano-fiber, which is used for regenerated tissue applications. Silk scaffold nano-fibers made by electro-spinning technology can be used in regenerated tissue ap... In this paper, the main goal is to prepare silk fibroin nano-fiber, which is used for regenerated tissue applications. Silk scaffold nano-fibers made by electro-spinning technology can be used in regenerated tissue applications. The purpose of the research is to prepare a silk-fibroin nano-fiber solution for potential applications in tissue engineering. Using a degumming process, pure silk fibroin protein is extracted from silk cocoons. The protein solution for fibroin is purified, and the protein content is determined. The precise chemical composition, exact temperature, time, voltage, distance, ratio, and humidity all have a huge impact on degumming, solubility, and electro-spinning nano-fibers. The SEM investigates the morphology of silk fibroin nano-fibres at different magnifications. It also reveals the surface condition, fiber orientation, and fiber thickness of the silk fibroin nano-fiber. The results show that regenerated silk fibroin and nano-fiber can be used in silk fibroin scaffolds for various tissue engineering applications. 展开更多
关键词 Silk fibroin SCAFFOLD electro-spinning nano-fiber Tissue Engineering
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Analyzing Thermal Stratification and Nanoparticle Shapes Influence on an EMHD Ternary Nanofluid Flow amidst Two Spinning Disks
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作者 Muhammad Ramzan Saima Riasat 《Journal of Applied Mathematics and Physics》 2024年第8期3017-3025,共9页
The present study examines the thermal distribution of ternary nanofluid flow amid two spinning disks influenced by electric and magnetic fields. Keeping in view the shape of the particles, the electrically conducting... The present study examines the thermal distribution of ternary nanofluid flow amid two spinning disks influenced by electric and magnetic fields. Keeping in view the shape of the particles, the electrically conducting ternary nanofluid is analyzed with variable thermophysical features. Three types of nanoparticles namely Copper, Aluminum Oxide, and Graphene with spherical, cylindrical, and platelet shapes are taken respectively and are immersed in a (50-50)% ratio of water and ethylene glycol mixture which acts as a base fluid. The anticipated problem is addressed by employing a reliable and user-friendly numerical bvp4c built-in collocation scheme. This solution is then showcased through illustrations and tables. Strengthening the radiation results in an enhanced heat transfer rate. Radial and azimuthal velocities once rotation of disks is enhanced. The key findings provide a strong theoretical background in photovoltaic cells, solar collectors, radiators, solar water heaters, and many other applications. 展开更多
关键词 Trihybrid Nanofluid Flow Thermal Stratification Particle Shapes Spin-ning Disks
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Study on Licker-In and Flat Speeds of Carding Machine and Its Effects on Quality of Cotton Spinning Process 被引量:1
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作者 Md. Mominul Motin Ayub Nabi Khan Md. Obaidur Rahman 《Journal of Textile Science and Technology》 2023年第3期198-214,共17页
Spinning has a significant influence on all textile processes. Combinations of all the capital equipment display the process’ critical condition. By transforming unprocessed fibers into carded sliver and yarn, the ca... Spinning has a significant influence on all textile processes. Combinations of all the capital equipment display the process’ critical condition. By transforming unprocessed fibers into carded sliver and yarn, the carding machine serves a critical role in the textile industry. The carding machine’s licker-in and flat speeds are crucial operational factors that have a big influence on the finished goods’ quality. The purpose of this study is to examine the link between licker-in and flat speeds and how they affect the yarn and carded sliver quality. A thorough experimental examination on a carding machine was carried out to accomplish this. The carded sliver and yarn produced after experimenting with different licker-in and flat speed combinations were assessed for important quality factors including evenness, strength, and flaws. To account for changes in material qualities and machine settings, the study also took into consideration the impact of various fiber kinds and processing circumstances. The findings of the investigation showed a direct relationship between the quality of the carded sliver and yarn and the licker-in and flat speeds. Within a limited range, greater licker-in speeds were shown to increase carding efficiency and decrease fiber tangling. On the other hand, extremely high speeds led to more fiber breakage and neps. Higher flat speeds, on the other hand, helped to enhance fiber alignment, which increased the evenness and strength of the carded sliver and yarn. Additionally, it was discovered that the ideal blend of licker-in and flat rates varied based on the fiber type and processing circumstances. When being carded, various fibers displayed distinctive behaviors that necessitated adjusting the operating settings in order to provide the necessary quality results. The study also determined the crucial speed ratios between the licker-in and flat speeds that reduced fiber breakage and increased the caliber of the finished goods. The results of this study offer useful information for textile producers and process engineers to improve the quality of carded sliver and yarn while maximizing the performance of carding machines. Operators may choose machine settings and parameter adjustments wisely by knowing the impacts of licker-in and flat speeds, which will increase textile industry efficiency, productivity, and product quality. 展开更多
关键词 spinning Process Carding Machine Yarn Count FLAT Licker-In Sliver Hank
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Effects of Spinning Process on Intergranular Corrosion Behavior of 5A06 Aluminum Alloy 被引量:1
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作者 张谦君 付永康 +4 位作者 ZHAO Wenlong 李青 ZHANG Rulin GUO Yong LI Rongbin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第1期231-236,共6页
Aluminum alloy tubes were prepared by tube spinning.The intergranular and electrochemical corrosion tests were used to investigate the intergranular corrosion behavior of the 5A06 aluminum alloy blank sample and the s... Aluminum alloy tubes were prepared by tube spinning.The intergranular and electrochemical corrosion tests were used to investigate the intergranular corrosion behavior of the 5A06 aluminum alloy blank sample and the spinning sample.Results showed that the intergranular corrosion resistance of the spinning sample was higher than that of the blank sample.In addition,the electrochemical corrosion resistance of the spinning sample was higher than that of the blank sample.The EDS maps indicated a uniform element distribution pattern of aluminum and magnesium.Moreover,the phase composition and lattice constant of the samples were obtained by XRD analysis.The differences in microstructure between the aluminum alloy subjected to the spinning process and the untreated aluminum alloy were determined by EBSD.The differences were mainly attributed to the complex interactions among grain size,dislocations and grain boundaries. 展开更多
关键词 spinning process 5A06 aluminum alloy intergranular corrosion EBSD
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Study on Licker-In and Flat Speeds of Carding Machine and Its Effects on Quality of Cotton Spinning Process
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作者 Md. Mominul Motin Ayub Nabi Khan Md. Obaidur Rahman 《Journal of Flow Control, Measurement & Visualization》 2023年第3期198-214,共17页
Spinning has a significant influence on all textile processes. Combinations of all the capital equipment display the process’ critical condition. By transforming unprocessed fibers into carded sliver and yarn, the ca... Spinning has a significant influence on all textile processes. Combinations of all the capital equipment display the process’ critical condition. By transforming unprocessed fibers into carded sliver and yarn, the carding machine serves a critical role in the textile industry. The carding machine’s licker-in and flat speeds are crucial operational factors that have a big influence on the finished goods’ quality. The purpose of this study is to examine the link between licker-in and flat speeds and how they affect the yarn and carded sliver quality. A thorough experimental examination on a carding machine was carried out to accomplish this. The carded sliver and yarn produced after experimenting with different licker-in and flat speed combinations were assessed for important quality factors including evenness, strength, and flaws. To account for changes in material qualities and machine settings, the study also took into consideration the impact of various fiber kinds and processing circumstances. The findings of the investigation showed a direct relationship between the quality of the carded sliver and yarn and the licker-in and flat speeds. Within a limited range, greater licker-in speeds were shown to increase carding efficiency and decrease fiber tangling. On the other hand, extremely high speeds led to more fiber breakage and neps. Higher flat speeds, on the other hand, helped to enhance fiber alignment, which increased the evenness and strength of the carded sliver and yarn. Additionally, it was discovered that the ideal blend of licker-in and flat rates varied based on the fiber type and processing circumstances. When being carded, various fibers displayed distinctive behaviors that necessitated adjusting the operating settings in order to provide the necessary quality results. The study also determined the crucial speed ratios between the licker-in and flat speeds that reduced fiber breakage and increased the caliber of the finished goods. The results of this study offer useful information for textile producers and process engineers to improve the quality of carded sliver and yarn while maximizing the performance of carding machines. Operators may choose machine settings and parameter adjustments wisely by knowing the impacts of licker-in and flat speeds, which will increase textile industry efficiency, productivity, and product quality. 展开更多
关键词 spinning Process Carding Machine Yarn Count FLAT Licker-In Sliver Hank
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Microstructure Distribution Characteristics of High-Strength Aluminum Alloy Thin-Walled Tubes during Multi-Passes Hot Power Backward Spinning Process
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作者 Yuan Tian Ranyang Zhang +1 位作者 Gangyao Zhao Zhenghua Guo 《Journal of Materials Science and Chemical Engineering》 2023年第7期114-121,共8页
The microstructure of the thin-walled tubes with high-strength aluminum alloy determines their final forming quality and performance. This type of tube can be manufactured by multi-pass hot power backward spinning pro... The microstructure of the thin-walled tubes with high-strength aluminum alloy determines their final forming quality and performance. This type of tube can be manufactured by multi-pass hot power backward spinning process as it can eliminate casting defects, refine microstructure and improve the plasticity of the tube. To analyze the microstructure distribution characteristics of the tube during the spinning process, a 3D coupled thermo-mechanical FE model coupled with the microstructure evolution model of the process was established under the ABAQUS environment. The microstructure evolution characteristics and laws of the tube for the whole spinning process were analyzed. The results show that the dynamic recrystallization is mainly produced in the spinning deformation zone and root area of the tube. In the first pass, the dynamic recrystallization phenomenon is not obvious in the tube. With the pass increasing, the trend of dynamic recrystallization volume percentage gradually increases and extends from the outer surface of the tube to the inner surface. The fine-grained area shows the states of concentration, dispersion, and re-concentration as the pass number increases. . 展开更多
关键词 Cast High-Strength Aluminum Alloy Tube Multi-Pass Hot Power Backward spinning FE Simulation Microstructure Evolution
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基于改进DBNet和SVTR算法的连铸板坯号检测与识别
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作者 刘乐 张晓松 +1 位作者 黄锋 方一鸣 《电子测量与仪器学报》 CSCD 北大核心 2024年第2期67-75,共9页
针对钢铁连铸产线板坯号识别字符区域小、光照变化复杂、板坯号图像质量差等问题,提出了一种基于深度学习的连铸板坯号检测与识别两阶段算法。首先,基于采集的连铸产线板坯图像,制备用于板坯号检测与识别的数据集;其次,在板坯号检测阶段... 针对钢铁连铸产线板坯号识别字符区域小、光照变化复杂、板坯号图像质量差等问题,提出了一种基于深度学习的连铸板坯号检测与识别两阶段算法。首先,基于采集的连铸产线板坯图像,制备用于板坯号检测与识别的数据集;其次,在板坯号检测阶段,基于DBNet算法设计一种AD-PAN特征融合结构,以增强检测算法的多尺度特征融合能力和扩大感受野,提高板坯号定位精度;再次,在板坯号识别阶段,引入SPIN矫正网络和SVTR板坯号识别网络进行端到端训练,使其能够主动转换输入亮度,并改善字符间以及字符与背景间色彩失真的问题。最后,在自制的板坯号检测与识别数据集上进行了对比实验。实验结果表明,本研究提出的算法能够有效定位辊道上不同位置的板坯,并且在复杂背景下对板坯号进行鲁棒识别。其中,板坯号检测Hmean数值为97.92%,板坯号识别的准确率为97.33%,验证了本文所提算法具有较高的板坯号检测与识别精度。 展开更多
关键词 板坯号识别 DBNet 特征金字塔融合 端到端网络 SPIN矫正 SVTR
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溶液气喷纺丝技术在食品领域中的应用进展 被引量:1
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作者 宁芊 郭震 +1 位作者 吴先辉 庞杰 《食品工业科技》 CAS 北大核心 2024年第12期379-385,共7页
纳米纤维材料不仅在医药、能源和电子等领域得到广泛应用,近年来还在食品相关领域展现出巨大的潜力。在众多的纳米纤维材料制备方法中,溶液喷射纺丝技术以其安全性、低成本和高生产速率等优势逐渐崭露头角,成为研究的焦点。本文深入探... 纳米纤维材料不仅在医药、能源和电子等领域得到广泛应用,近年来还在食品相关领域展现出巨大的潜力。在众多的纳米纤维材料制备方法中,溶液喷射纺丝技术以其安全性、低成本和高生产速率等优势逐渐崭露头角,成为研究的焦点。本文深入探讨溶液喷射纺丝技术的工作原理和分类,以及对纤维结构产生显著影响的纺丝工艺参数的选择。重点总结了溶液喷射纺丝在食品包装、缓释系统、过滤材料和酶固定化等多个食品相关领域的研究进展和应用优势,旨在为溶液喷射纺丝技术的优化、拓展应用领域和商业化提供参考。 展开更多
关键词 溶液气喷纺丝 纳米纤维 高分子 食品应用
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铁锰铈-PA6基静电纺吸附剂的制备及其对水中铅和铬的吸附性能 被引量:2
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作者 张洛红 刘彩琴 +4 位作者 赵鑫 刘建宇 杨巧巧 王乐力 李庆 《化工新型材料》 CAS CSCD 北大核心 2024年第1期207-213,219,共8页
将铁锰铈(Fe-Mn-Ce)负载于PA6静电纺丝上制备抗团聚性强、吸附效果好且易分离回收的新型吸附剂Fe-Mn-Ce-PA6。扫描电子显微镜(SEM)、X射线衍射(XRD)和傅里叶变换红外光谱(FT-IR)分析均显示Fe-Mn-Ce颗粒已成功负载到PA6静电纺丝上。吸附... 将铁锰铈(Fe-Mn-Ce)负载于PA6静电纺丝上制备抗团聚性强、吸附效果好且易分离回收的新型吸附剂Fe-Mn-Ce-PA6。扫描电子显微镜(SEM)、X射线衍射(XRD)和傅里叶变换红外光谱(FT-IR)分析均显示Fe-Mn-Ce颗粒已成功负载到PA6静电纺丝上。吸附实验研究结果表明,Fe-Mn-Ce含量为25%时制备的吸附剂对水中Pb(Ⅱ)和Cr(Ⅵ)具有良好的吸附效果,且其在Pb(Ⅱ)初始浓度为10mg/L,吸附剂投加量为0.2g/L,pH为6的条件下对Pb(Ⅱ)的去除率为98%;在Cr(Ⅵ)初始浓度为20mg/L,吸附剂投加量为0.2g/L,pH为6的条件下对Cr(Ⅵ)的去除率为98.5%。该吸附剂对Pb(Ⅱ)和Cr(Ⅵ)的吸附等温模型均符合Freundlich模型,而吸附动力学行为分别符合准一级动力学模型和准二级动力学模型。循环再生实验表明,该吸附剂经五次循环后对Pb(Ⅱ)和Cr(Ⅵ)依然可以保持良好的去除率。 展开更多
关键词 铁锰铈金属氧化物 静电纺丝 吸附剂 重金属
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复合式训练对飞行学员肌力及旋梯旋转耐受的影响 被引量:1
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作者 李波 唐璐 +3 位作者 成静 杨鸣亮 李子目 郭延东 《空军军医大学学报》 CAS 2024年第2期146-151,共6页
目的针对有运动训练基础的飞行学员肌力和旋梯旋转耐受提高训练效果差问题,研究不同体能训练方案对促进肌力和旋梯旋转耐受的影响。方法216名男性飞行学员作为被试,随机分为实验组(n=108)和对照组(n=108),采用为期12周的复合式体能训练... 目的针对有运动训练基础的飞行学员肌力和旋梯旋转耐受提高训练效果差问题,研究不同体能训练方案对促进肌力和旋梯旋转耐受的影响。方法216名男性飞行学员作为被试,随机分为实验组(n=108)和对照组(n=108),采用为期12周的复合式体能训练(实验组)和传统体能训练(对照组),在干预实验前、中期(4、8周)以及后期(12周)进行肌力测试和旋梯旋转耐受测试。结果干预训练后,实验组和对照组上肢后拉、前推,左、右下肢最大肌力平均最大增长幅度分别为19.9%、18.0%,32.8%、33.2%和3.8%、2.1%,11.8%、12.1%,两组增长幅度差异显著(P<0.01);实验组和对照组上、下肢爆发力平均最大提高幅度为29.4%、12.7%和17.4%、2.9%,两组提高幅度显著差异(P<0.05);两组躯干前屈、后展最大肌力平均最大提高幅度无显著差异;实验组、对照组旋梯旋转速度平均最大提高幅度分别为29%、15%,两组提升幅度差异显著(P<0.01);实验组、对照组旋梯推算过载耐受平均最大提高幅度分别为82%、36%,两组提升幅度差异非常显著(P<0.01);各项测试数据均在8周训练结束后趋近于最大值。结论复合式训练方案对提高有训练基础飞行学员上、下肢最大肌力和爆发力、旋梯旋转耐受能力显著优于传统训练方案。 展开更多
关键词 复合式训练 飞行学员 旋梯旋转耐受
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喷气涡流纺纱机及其关键技术的应用与研究进展
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作者 邵英海 赵业平 +3 位作者 韩贤国 曹继鹏 张明光 陈文 《纺织学报》 EI CAS CSCD 北大核心 2024年第3期209-218,共10页
针对国内外纺纱企业在喷气涡流纺纱机的应用与相关技术的研发情况及其所存在的问题,综述了喷气涡流纺纱机及其关键技术的研究进展,介绍了喷气涡流纺纱机的历史发展及其纺纱系统关键技术,详细分析了喷气涡流纺纱机的导棉喂入、牵伸和输... 针对国内外纺纱企业在喷气涡流纺纱机的应用与相关技术的研发情况及其所存在的问题,综述了喷气涡流纺纱机及其关键技术的研究进展,介绍了喷气涡流纺纱机的历史发展及其纺纱系统关键技术,详细分析了喷气涡流纺纱机的导棉喂入、牵伸和输送机构,成纱器,纱线卷绕(横动)、卷装机构等零部件的特征与发展趋势。分析认为:喷气涡流纺纱技术的研究多集中在对现有规模化生产机器的喷气涡流成纱器的结构改进、工作机制探讨上,成果较多且较为成熟,但创新技术不突出;在构建新型成纱器的内部型腔结构和产生更理想的涡流形态上有望进一步突破,以提高喷气涡流纺纱的性能,满足多功能纱线的生产和扩大纺纱应用范围;同时科技进步也使更多智能控制系统的电子清纱器、异纤控制、短线诊断、可视化等技术在纺纱工序中有了应用和发展。 展开更多
关键词 喷气涡流纺 成纱器 涡流管 导棉机构 卷绕机构
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莱赛尔赛络集聚纺纱过程温湿度控制
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作者 王聪民 王海霞 +2 位作者 刘艳杰 周义德 吴涛 《棉纺织技术》 CAS 2024年第3期86-88,共3页
探讨莱赛尔纤维赛络集聚纺纱过程中的温湿度控制问题。分析了莱赛尔纤维性能,得出莱赛尔纤维在纺纱各工序中的主要加工性能特点和环境温湿度要求。以纺制中高档赛络集聚纺纱线为例,介绍了纺纱主要工序空调控制方法和温湿度参数及各工序... 探讨莱赛尔纤维赛络集聚纺纱过程中的温湿度控制问题。分析了莱赛尔纤维性能,得出莱赛尔纤维在纺纱各工序中的主要加工性能特点和环境温湿度要求。以纺制中高档赛络集聚纺纱线为例,介绍了纺纱主要工序空调控制方法和温湿度参数及各工序半成品回潮率控制范围。认为:莱赛尔纤维纺纱过程应增加预处理工序,需要采用偏大的相对湿度环境,并保证各工序纤维吸湿和放湿过程稳定,以减少静电,保证纤维开松、梳理顺利,减少纺纱断头。 展开更多
关键词 莱赛尔纤维 赛络集聚纺 纺纱 温湿度 回潮率
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多楔轮毂缘多道次旋压成形工艺研究
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作者 薛克敏 孙风成 +2 位作者 许海峰 王荣胜 李萍 《塑性工程学报》 CAS CSCD 北大核心 2024年第5期23-30,共8页
针对传统锻后切削工艺生产多楔轮存在材料利用率低、切断齿形金属流线等问题,以某多楔轮零件为研究对象,基于旋压近净成形原理,对多楔轮毂缘制定了多道次旋压工艺方案。基于SIMUFACT软件平台建立了多道次旋压成形全流程三维有限元模型,... 针对传统锻后切削工艺生产多楔轮存在材料利用率低、切断齿形金属流线等问题,以某多楔轮零件为研究对象,基于旋压近净成形原理,对多楔轮毂缘制定了多道次旋压工艺方案。基于SIMUFACT软件平台建立了多道次旋压成形全流程三维有限元模型,通过数值模拟研究了各道次旋压成形过程中的毂缘区材料流动规律及增厚情况。模拟结果表明,旋压预制坯外缘在第1道次旋弯轮弧挤压作用下发生明显的弯曲和增厚,板坯整体呈“半弧形”结构,后经过第2道次旋平轮镦挤推平,板坯整体发生二次增厚并成形出满足旋齿厚度要求的毂缘筒壁;通过第3道次和第4道次旋齿工艺使毂缘筒壁金属发生转移,形成满足尺寸要求的齿形结构。根据模拟结果进行试验研究,成功试制出质量合格的多楔轮零件,验证了该成形方案的可行性。 展开更多
关键词 多楔轮毂缘 多道次旋压 旋弯聚料 旋平镦挤 旋齿成形
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纯亚麻短麻色纺纱的生产及成纱性能
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作者 张毅 高金霞 郁崇文 《棉纺织技术》 CAS 2024年第2期69-72,共4页
针对当前亚麻短麻色纺纱少且短麻利用率不高等问题,采用梳棉试样机对化学脱胶后的亚麻短麻纤维进行2次梳理开松,再经染色处理、给油加湿焖包处理,最后在棉纺设备上进行试纺。通过优化纺纱各工序的工艺参数配置,成功纺制出41.7 tex纯亚... 针对当前亚麻短麻色纺纱少且短麻利用率不高等问题,采用梳棉试样机对化学脱胶后的亚麻短麻纤维进行2次梳理开松,再经染色处理、给油加湿焖包处理,最后在棉纺设备上进行试纺。通过优化纺纱各工序的工艺参数配置,成功纺制出41.7 tex纯亚麻短麻色纺纱,测试了其成纱质量指标,并与41.7 tex亚麻湿纺染色纱、41.7 tex纯亚麻纱线染色纱进行性能对比。结果表明:在棉纺设备上所纺制的41.7 tex纯亚麻短麻色纺纱的主要成纱指标达到了T/CNTAC60—2020《干纺环锭纺纯亚麻本色纱》优等纱质量标准;其断裂强度、强力CV值、断裂伸长率等均介于同线密度的纯亚麻湿纺染色纱和纯亚麻纱线染色纱之间,可部分替代纯亚麻湿纺染色纱用于后续织造工艺。 展开更多
关键词 亚麻 棉纺 色纺 精细化 给油 成纱质量
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