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Jet formation and penetration performance of a double-layer charge liner with chemically-deposited tungsten as the inner liner 被引量:3
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作者 Bihui Hong Wenbin Li +2 位作者 Yiming Li Zhiwei Guo Binyou Yan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期374-385,共12页
This paper proposes a type of double-layer charge liner fabricated using chemical vapor deposition(CVD)that has tungsten as its inner liner.The feasibility of this design was evaluated through penetration tests.Double... This paper proposes a type of double-layer charge liner fabricated using chemical vapor deposition(CVD)that has tungsten as its inner liner.The feasibility of this design was evaluated through penetration tests.Double-layer charge liners were fabricated by using CVD to deposit tungsten layers on the inner surfaces of pure T2 copper liners.The microstructures of the tungsten layers were analyzed using a scanning electron microscope(SEM).The feasibility analysis was carried out by pulsed X-rays,slug-retrieval test and static penetration tests.The shaped charge jet forming and penetration law of inner tungsten-coated double-layer liner were studied by numerical simulation method.The results showed that the double-layer liners could form well-shaped jets.The errors between the X-ray test results and the numerical results were within 11.07%.A slug-retrieval test was found that the retrieved slug was similar to a numerically simulated slug.Compared with the traditional pure copper shaped charge jet,the penetration depth of the double-layer shaped charge liner increased by 11.4% and>10.8% respectively.In summary,the test results are good,and the numerical simulation is in good agreement with the test,which verified the feasibility of using the CVD method to fabricate double-layer charge liners with a high-density and high-strength refractory metal as the inner liner. 展开更多
关键词 Shaped charge Chemical vapor deposition TUNGSTEN double-layer charge liner X-ray PENETRATION
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Mechanical analysis of double-layered circular graphene sheets as building material embedded in an elastic medium 被引量:1
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作者 WU Zheng-tian HU Fu-yuan +2 位作者 ZHANG Yang GAO Qing CHEN Zhen-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第11期2717-2724,共8页
Possessing the unique and highly valuable properties, graphene sheets(GSs) have attracted increasing attention including that from the building engineer due to the fact that Graphene can be utilized to reinforce concr... Possessing the unique and highly valuable properties, graphene sheets(GSs) have attracted increasing attention including that from the building engineer due to the fact that Graphene can be utilized to reinforce concrete and other building materials. In this work, the nonlocal elastic theory and classical plate theory(CLPT) are used to derive the governing equations. The element-free framework for analyzing the buckling behaviors of double layer circular graphene sheets(DLCGSs) relying on an elastic medium is proposed. Pasternak-type model is adopted to describe the elastic medium. Accordingly, the influences of boundary conditions, size of GSs and nonlocal parameters on the buckling behavior of DLCGSs are investigated. The results show that the OP buckling modes are only sensible to the van der Waals forces. 展开更多
关键词 NONLOCAL ELASTICITY theory double layer CIRCULAR graphene sheetS (DLCGS) element-free method BUCKLING analysis Pasternak model
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Annealing temperature influence on forming limit curve and fracture toughness of aluminium/silver bilayer sheets 被引量:1
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作者 Mohammad Delshad GHOLAMI Mojtaba KHODAKARAMI +1 位作者 Mohammad ABADIAN Ramin HASHEMI 《Journal of Central South University》 2025年第1期34-48,共15页
This article examines the influence of annealing temperature on fracture toughness and forming limit curves of dissimilar aluminum/silver sheets.In the cold roll bonding process,after brushing and acid washing,the pre... This article examines the influence of annealing temperature on fracture toughness and forming limit curves of dissimilar aluminum/silver sheets.In the cold roll bonding process,after brushing and acid washing,the prepared surfaces are placed on top of each other and by rolling with reduction more than 50%,the bonding between layers is established.In this research,the roll bonding process was done at room temperature,without the use of lubricants and with a 70%thickness reduction.Then,the final thickness of the Ag/Al bilayer sheet reached 350μm by several stages of cold rolling.Before cold rolling,it should be noted that to decrease the hardness created due to plastic deformation,the roll-bonded samples were subjected to annealing heat treatment at 400℃for 90 min.Thus,the final samples were annealed at 200,300 and 400℃for 90 min and cooled in a furnace to examine the annealing temperature effects.The uniaxial tensile and microhardness tests measured mechanical properties.Also,to investigate the fracture mechanism,the fractography of the cross-section was examined by scanning electron microscope(SEM).To evaluate the formability of Ag/Al bilayer sheets,forming limit curves were obtained experimentally through the Nakazima test.The resistance of composites to failure due to cracking was also investigated by fracture toughness.The results showed that annealing increases the elongation and formability of the Ag/Al bilayer sheet while reduces the ultimate tensile strength and fracture toughness.However,the changing trend is not the same at different temperatures,and according to the results,the most significant effect is obtained at 300℃and aluminum layers.It was also determined that by increasing annealing temperature,the fracture mechanism from shear ductile with small and shallow dimples becomes ductile with deep cavities. 展开更多
关键词 cold roll bonding Ag/Al bilayer sheet mechanical properties forming limit curve fracture toughness
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Abnormal texture and sensitivity to strain rate during hot-tension of Mg alloy sheets
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作者 ZHANG Hong-yang NIE Hui-hui +1 位作者 XU Xiong LIANG Wei 《Journal of Central South University》 2025年第3期991-1007,共17页
The deformation behavior of hot-rolled AZ31 magnesium(Mg)alloy sheet was analyzed when subjected to uniaxial tension along its normal direction at temperatures ranging from 100 to 400℃and strain rates ranging from 0.... The deformation behavior of hot-rolled AZ31 magnesium(Mg)alloy sheet was analyzed when subjected to uniaxial tension along its normal direction at temperatures ranging from 100 to 400℃and strain rates ranging from 0.5 to 100 mm/min.Based on the stress−strain curves and the dynamic material model,the hot processing map was established,which demonstrates that the power dissipation factor(η)is the most sensitive to strain rate at 400℃via absorption of dislocations.At 400℃,sample at 0.5 mm/min possessesηof 0.89 because of its lower kernel average misorientation(KAM)value of 0.51,while sample at 100 mm/min possessesηof 0.46 with a higher KAM value of 1.147.In addition,the flow stress presents a slight decrease of 25.94 MPa at 10 mm/min compared to that at 100 mm/min and 100℃.The reasons are twofold:a special~34°texture component during 100℃-100 mm/min favoring the activation of basal slip,and dynamic recrystallization(DRX)also providing softening effect to some extent by absorbing dislocations.Difference in activation of basal slip among twin laminas during 100℃-100 mm/min results in deformation inhomogeneity within the grains,which generates stress that helps matrix grains tilt to a direction favorable to basal slip,forming the special~34°texture component. 展开更多
关键词 Mg alloy sheet hot deformation TWINNING abnormal texture strain rate
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One-dimensional consolidation of double-layered soil with non-Darcian flow described by exponent and threshold gradient 被引量:10
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作者 李传勋 谢康和 +1 位作者 胡安峰 胡白香 《Journal of Central South University》 SCIE EI CAS 2012年第2期562-571,共10页
Based on non-Darcian flow law described by exponent and threshold gradient within a double-layered soil, the classic theory of one-dimensional consolidation of double-layered soil was modified to consider the change o... Based on non-Darcian flow law described by exponent and threshold gradient within a double-layered soil, the classic theory of one-dimensional consolidation of double-layered soil was modified to consider the change of vertical total stress with depth and time together. Because of the complexity of governing equations, the numerical solutions were obtained in detail by finite difference method. Then, the numerical solutions were compared with the analytical solutions in condition that non-Darcian flow law was degenerated to Dary's law, and the comparison results show that numerical solutions are reliable. Finally, consolidation behavior of double-layered soil with different parameters was analyzed, and the results show that the consolidation rate of double-layered soil decreases with increasing the value of exponent and threshold of non-Darcian flow, and the exponent and threshold gradient of the first soil layer greatly influence the consolidation rate of double-layered soil. The larger the ratio of the equivalent water head of external load to the total thickness of double-layered soil, the larger the rate of the consolidation, and the similitude relationship in classical consolidation theory of double-layered soil is not satisfied. The other consolidation behavior of double-layered soil with non-Darcian flow is the same as that with Darcy's law. 展开更多
关键词 one-dimensional consolidation double-layered soil non-Darcian flow depth dependent vertical total stress timedependent loading
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Analysis of one-dimensional rheological consolidation of double-layered soil with fractional derivative Merchant model and non-Darcian flow described by non-Newtonian index 被引量:5
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作者 CUI Peng-lu LIU Zhong-yu +1 位作者 ZHANG Jia-chao FAN Zhi-cheng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第1期284-296,共13页
To further investigate the one-dimensional(1D)rheological consolidation mechanism of double-layered soil,the fractional derivative Merchant model(FDMM)and the non-Darcian flow model with the non-Newtonian index are re... To further investigate the one-dimensional(1D)rheological consolidation mechanism of double-layered soil,the fractional derivative Merchant model(FDMM)and the non-Darcian flow model with the non-Newtonian index are respectively introduced to describe the deformation of viscoelastic soil and the flow of pore water in the process of consolidation.Accordingly,an 1D rheological consolidation equation of double-layered soil is obtained,and its numerical analysis is performed by the implicit finite difference method.In order to verify its validity,the numerical solutions by the present method for some simplified cases are compared with the results in the related literature.Then,the influence of the revelent parameters on the rheological consolidation of double-layered soil are investigated.Numerical results indicate that the parameters of non-Darcian flow and FDMM of the first soil layer greatly influence the consolidation rate of double-layered soil.As the decrease of relative compressibility or the increase of relative permeability between the lower soil and the upper soil,the dissipation rate of excess pore water pressure and the settlement rate of the ground will be accelerated.Increasing the relative thickness of soil layer with high permeability or low compressibility will also accelerate the consolidation rate of double-layered soil. 展开更多
关键词 double-layered soil rheological consolidation fractional derivative non-Darcian flow non-Newtonian index finite difference method viscoelasticity
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Time-sequenced damage behavior of reactive projectile impacting double-layer plates 被引量:1
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作者 Ying Yuan Yi-qiang Cai +3 位作者 Huan-guo Guo Peng-wan Chen Rui Liu Hai-fu Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第9期263-272,共10页
The time-sequenced damage behavior of the reactive projectile impacting double-layer plates is discussed.The analytical model considering the combined effect of kinetic and chemical energy is developed to reveal the d... The time-sequenced damage behavior of the reactive projectile impacting double-layer plates is discussed.The analytical model considering the combined effect of kinetic and chemical energy is developed to reveal the damage mechanism.The influences of impact velocity and reactive projectile chemical characteristics on the damage effect are decoupled analyzed based on this model.These analyses indicate that the high energy releasing efficiency and fast reaction propagation velocity of the reactive projectile are conducive to enhancing the damage effect.The experiments with various reactive projectiles impact velocity increasing from 702 to 1385 m/s were conducted to verify this model.The experimental results presented that,the damage hole radius of the rear-plate increases with the increase of impact velocity.At the impact velocity of 1350 m/s,the radius of damage hole formed by PTFE/Al/Bi_(2)O_(3),PTFE/Al/MoO_(3),PTFE/Al/Fe_(2)O_(3)projectile on the rear-plate become smaller in sequence.These results are consistent with the analytical model prediction,demonstrating that this model can predict the damage effect quantitatively.This work is of constructive significance to the application of reactive projectiles. 展开更多
关键词 Reactive projectile Damage behaviors Impact double-layer plates
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Preparation of spiro-type quaternary ammonium salt via economical and efficient synthetic route as electrolyte for electric double-layer capacitor 被引量:4
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作者 周宏明 孙文佼 李荐 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2435-2439,共5页
A spiro-type quaternary ammonium salt, spiro-(1,1′)-bipyrrolidinium tetrafluoroborate(SBP-BF4) was successfully prepared by an economical and efficient three-step process comprising the cyclization reaction of 1,4-di... A spiro-type quaternary ammonium salt, spiro-(1,1′)-bipyrrolidinium tetrafluoroborate(SBP-BF4) was successfully prepared by an economical and efficient three-step process comprising the cyclization reaction of 1,4-dibromobutane and pyrrolidine, and subsequent ion exchange pathway with KOH followed by neutralization reaction via HBF4 in the system of ethanol solution. 1H NMR, 13 C NMR, FI-IR and XPS analyses showed the structure of SBP-BF4. The as-obtained SBP-BF4 was dissolved in AN and used as the electrolyte for supercapacitor. Electrochemical measurements demonstrate that, compared with commercial electrolyte TEMA-BF4/AN, SBP-BF4/AN exhibits high ionic conductivity, lower resistance and improved cycling performance, which is due to its smaller ion size and stable symmetry structure. 展开更多
关键词 spiro-type quaternary ammonium salt synthesis electrolyte electric double-layer capacitor
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Novel technology on preparation of double-layered pellets for sulfur and arsenic-bearing gold concentrates 被引量:1
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作者 杨永斌 崔丽娜 +3 位作者 李希山 李骞 姜涛 戈捷 《Journal of Central South University》 SCIE EI CAS 2013年第11期2967-2973,共7页
Double-layered pellet (DLP) roasting is a novel pretreatment method for sulfur and arsenic-bearing gold concentrates. In this process, preparation of DLPs is a fundamental step which is required to produce DLPs with... Double-layered pellet (DLP) roasting is a novel pretreatment method for sulfur and arsenic-bearing gold concentrates. In this process, preparation of DLPs is a fundamental step which is required to produce DLPs with favorable mechanical strength and thermal stability. Studies were carried out to investigate the affecting factors and conditions on the preparation and properties of DLPs. The results show that moisture content has significant influence on DLPs preparation. With the increase of moisture content in the range of no more than 9.8%, drop resistance and compressive strength of green DLPs are raised and the pelletizing dynamics is improved accordingly. The optimum conditions are determined as moisture content of 9.8%, coating time of 14-16 min, drying temperature 〈80 ℃and drying gas velocity 〈1.2 m/s. When DLPs prepared under these conditions are roasted at 600 ℃ for 1 h, favorable removal and solidifying rates can be obtained, in which the removal rates of arsenic and sulfur are 94.38% and 82.55%, and the solidifying rates of arsenic and sulfur reach 99.62% and 99.79%, respectively. These results promise industrial application of DLP roasting. 展开更多
关键词 sulfur and arsenic-bearing gold ores double-layered pellets PELLETIZING gold ores pretreatment ROASTING
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Limit variation analysis of shallow rectangular tunnels collapsing with double-layer rock mass based on a three-dimensional failure mechanism 被引量:1
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作者 ZHAO Lian-heng HU Shi-hong +2 位作者 YANG Xin-ping HUANG Fu ZUO Shi 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第7期1794-1806,共13页
In the framework of upper bound theorem of limit analysis, the progressive collapse of shallow rectangular tunnels with double-layer rock mass has been theoretically analyzed based on the three-dimensional (3D) veloci... In the framework of upper bound theorem of limit analysis, the progressive collapse of shallow rectangular tunnels with double-layer rock mass has been theoretically analyzed based on the three-dimensional (3D) velocity discontinuity surfaces. According to the virtual work principle, the difference theorem and the variation method, the collapse surface of double-layer rock mass is determined based on the Hoek-Brown failure criterion. The formula can be degenerated to a single-layer rock collapsing problem when the rock mass is homogeneous. To estimate the validity of the result, the numerical simulation software PLAXIS 3D is used to simulate the collapse of shallow tunnels with double-layer rock mass, and the comparative analysis shows that numerical results are in good agreement with upper-bound solutions. According to the results of parametric analysis, the potential range of collapse of a double-layer rock mass above a shallow cavity decreases with a decrease in A1/A2,σci1/σci2 and σtm1/σtm2 and an increase in B1/B2,γ1/γ2. The range will decrease with a decrease in support pressure q and increase with a decrease in surface overload σs. Therefore, reinforced supporting is beneficial to improve the stability of the cavity during actual construction. 展开更多
关键词 shallow tunnels three-dimensional collapse double-layer rock mass Hoek-Brown failure criterion variation analysis upper bound limit analysis
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Influence of polyethylene glycol on pore structure and electric double-layer capacitance of carbon xerogel
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作者 侯朝辉 李新海 +2 位作者 何则强 刘恩辉 邓凌峰 《Journal of Central South University of Technology》 2004年第3期255-260,共6页
Mesoporous polyethylene glycol-resorcinol and formaldehyde(PEG-RF) carbon xerogels were prepared by a new polymer blend method in which PEG-RF mixed organic xerogels were synthesized by blending thermally unstable p... Mesoporous polyethylene glycol-resorcinol and formaldehyde(PEG-RF) carbon xerogels were prepared by a new polymer blend method in which PEG-RF mixed organic xerogels were synthesized by blending thermally unstable polyethylene glycol with organic monomers, resorcinol and formaldehyde and then subjected to pyrolization at 1 000 ℃. The influences of mass ratio of PEG to the theoretical yield of RF xerogel, m(PEG)/m(RF) and the (relative) molecular mass of PEG on the pore structure and electric double layer capacitance(EDLC) performance of PEG-RF carbon xerogels were investigated. The results show that PEG under different conditions leads to the difference of phase separation structure of the polymer blend and thus the change of pore structure of PEG-RF carbon xerogels. Specific surface area and capacity of PEG-RF carbon xerogels in 30% H2SO4 solution can reach (755 m2/g) and 150 F/g, respectively. Their surface can be fully utilized to form electric double layer. However, the pore structure differences of PEG-RF carbon xerogels result in their different EDLC performances. The distributed capacitance effect increases with decreasing the pore size of PEG-RF carbon xerogels. 展开更多
关键词 polymer blend method polyethylene glycol carbon xerogel electric double-layer capacitance
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The optimized design of a double-layer flow chamber
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作者 Ye ZENG,Yi LAI,Bing MAO,Ting GAO,Xiaoheng LIU(Institute of Biomedical Engineering,West China Medical Center,Sichuan University,Chengdu,610041) 《医用生物力学》 EI CAS CSCD 2009年第S1期115-115,共1页
Introduction Blood flow provides a mechanical condition for blood cells and vessels,especially for endothelial cells.It is important to understand the mechanical characteristics of
关键词 FLOW The optimized design of a double-layer flow chamber
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经营同质化背景下表外业务对银行系统性风险的影响 被引量:1
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作者 张晓明 任紫薇 《经济问题》 北大核心 2025年第3期92-100,共9页
在利率市场化改革和金融脱媒等因素的影响下,我国商业银行表外业务规模不断扩张,可能催生新的系统性风险。选取我国16家上市商业银行2010—2023年的统计数据,基于当前银行业经营同质化的背景,实证检验了表外业务对银行系统性风险的影响... 在利率市场化改革和金融脱媒等因素的影响下,我国商业银行表外业务规模不断扩张,可能催生新的系统性风险。选取我国16家上市商业银行2010—2023年的统计数据,基于当前银行业经营同质化的背景,实证检验了表外业务对银行系统性风险的影响。研究采用动态面板系统广义矩估计方法,分别利用GARCH-CoVaR模型和欧氏距离模型测度银行系统性风险和经营同质化指数。结果表明,商业银行表外业务会提高银行系统性风险,经营同质化现象会对该影响产生调节效应,与表外业务共同作用于银行系统性风险,不同所有制商业银行表外业务对银行系统性风险的溢出效应不同,不同类型表外业务的影响效果也存在差异。因此,应改善商业银行表外业务的规模和内部结构,实行差异化竞争策略,从而有效规避银行系统性风险。 展开更多
关键词 系统性风险 表外业务 经营同质化
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基于热氧老化的热塑性聚烯烃防水卷材的耐久性研究 被引量:1
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作者 丁红梅 海梦帆 葛洋洋 《化工新型材料》 北大核心 2025年第6期247-252,264,共7页
随着《建筑和市政工程防水通用规范》的颁布,防水材料耐久年限获得了越来越多的而关注。作为广泛外露应用于屋面的热塑性聚烯烃(TPO)防水卷材,其耐久性研究是业内关注的热点。通过有温度梯度的热氧老化,对两种典型TPO防水卷材进行了长... 随着《建筑和市政工程防水通用规范》的颁布,防水材料耐久年限获得了越来越多的而关注。作为广泛外露应用于屋面的热塑性聚烯烃(TPO)防水卷材,其耐久性研究是业内关注的热点。通过有温度梯度的热氧老化,对两种典型TPO防水卷材进行了长期的耐久性研究,利用宏观和微观表征手段,多角度分析材料老化后性能的变化,获得了TPO防水卷材的关键性能劣化规律。根据失效标准,增强型TPO在135℃下热老化63周后出现功能失效情况;均质型TPO截至70周功能未失效,但力学性能劣化严重。因此,对于存在严苛应力条件的服役环境,应当评估卷材的可靠性。同时,两种型号TPO均出现了一定程度的黄变现象,所以对于外观有要求的建筑,需要考量黄变程度是否可以接受。 展开更多
关键词 耐久性 热塑性聚烯烃 防水卷材 热氧老化
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造纸法烟草薄片天然多糖助留剂研究进展
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作者 姚建武 李盼 +7 位作者 王晚霞 高颂 童宇星 魏烁果 李丹 王凯悦 黄民慧 杨楠 《中国造纸学报》 北大核心 2025年第2期131-140,共10页
造纸法烟草薄片原料中含有大量的细小纤维、碎片和矿物填料,其易在加工过程中流失,使得原材料消耗和水处理负荷增加,影响烟草薄片品质。天然多糖化学性质稳定、无毒、可生物降解,可以用作烟草薄片的助留剂。本文综述了天然多糖助留剂在... 造纸法烟草薄片原料中含有大量的细小纤维、碎片和矿物填料,其易在加工过程中流失,使得原材料消耗和水处理负荷增加,影响烟草薄片品质。天然多糖化学性质稳定、无毒、可生物降解,可以用作烟草薄片的助留剂。本文综述了天然多糖助留剂在烟草薄片中的应用情况,包括单元、双元及多元助留体系,并从微观结构出发,总结了天然多糖助留剂发挥作用的机理和效果。 展开更多
关键词 烟草薄片 造纸法 助留剂 天然多糖
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一种PETN基超薄片炸药的爆轰性能及比冲量特性
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作者 郭志昀 卢强 +2 位作者 丁洋 张亮永 李进 《爆炸与冲击》 北大核心 2025年第4期48-56,共9页
薄片炸药加载技术是实验室考核X射线辐照下空间结构动态响应的重要手段。为实现新型空间飞行器结构考核所需的超低比冲量化爆加载载荷,研制了以PETN为主炸药、高聚物橡胶为黏结剂的超薄片炸药。薄片炸药中PETN的质量分数为90%~92%,厚度... 薄片炸药加载技术是实验室考核X射线辐照下空间结构动态响应的重要手段。为实现新型空间飞行器结构考核所需的超低比冲量化爆加载载荷,研制了以PETN为主炸药、高聚物橡胶为黏结剂的超薄片炸药。薄片炸药中PETN的质量分数为90%~92%,厚度范围为0.15~0.50 mm,密度范围为1.63~1.68 g/cm3,爆速范围为7.44~7.71 km/s。基于炸痕法的爆轰性能实验结果表明:厚度为0.15~0.50 mm的薄片炸药可由装药线密度为0.2 g/m的柔爆索可靠引爆,厚度为0.20~0.50 mm的炸药条均能可靠传爆。利用冲击摆测量装置对不同直径、不同厚度薄片炸药的比冲量特性进行了测试,结合理论分析,得出薄片炸药的比冲量与厚度成正比,比例系数为3418.56 Pa·s/mm,成功实现了厚度为0.20 mm、比冲量约为680 Pa·s超薄片炸药的研制。 展开更多
关键词 超薄片炸药 PETN 柔爆索 爆轰性能 比冲量
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光伏单晶硅片冲洗过程中应力分布的研究
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作者 李涛 吕国强 +2 位作者 李遇贤 钱益超 张杰 《材料导报》 北大核心 2025年第7期39-45,共7页
在光伏单晶硅片冲洗过程中,产生的最大应力可能导致硅片损伤,硅片上应力的分布及硅片上最大应力位置的确定对于降低硅片的损伤程度有重要意义。首先基于矩形板的Levy解模型,计算冲洗过程中不同尺寸硅片上的挠度和应力值;然后,运用ABAQU... 在光伏单晶硅片冲洗过程中,产生的最大应力可能导致硅片损伤,硅片上应力的分布及硅片上最大应力位置的确定对于降低硅片的损伤程度有重要意义。首先基于矩形板的Levy解模型,计算冲洗过程中不同尺寸硅片上的挠度和应力值;然后,运用ABAQUS有限元软件对硅片冲洗过程中产生的应力进行仿真。结果表明,运用矩形板Levy解模型计算时,特定比值下,当硅片的长宽比b/a=2、1、0.5时,最大应力值出现在自由边上(y=b)或固支边上(y=0)。当硅片宽度a固定、长度b逐渐增加时,在固支边上长宽比b/a=0.5时应力值最大,在自由边上长宽比b/a=0.9时应力值最大;当硅片的长宽比b/a=0.1~1.5时,硅片的最大应力分布在固支边上;当硅片的长宽比b/a=1.5~2时,硅片的最大应力分布在自由边上。通过最大挠度确定最大应力位置,虽然能减少大量计算,但是不够全面和准确。运用ABAQUS有限元分析得出的结果与矩形板Levy解模型计算得出的应力分布规律一致,但是应力值存在一定的误差。将矩形板Levy解模型得出的结果与莫尔理论结合,推导出硅片上冲洗压力与硅片厚度的关系公式。利用该公式,当硅片厚度确定时,能计算出硅片上承受的最大冲洗压力;当冲洗压力确定时,能得出硅片冲洗时不被破坏的最小厚度。 展开更多
关键词 光伏单晶硅 矩形板Levy解 单晶硅片冲洗 应力
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一种混合式极化-频率选择吸波体设计
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作者 刘佳琪 宋杭 张生俊 《导弹与航天运载技术(中英文)》 北大核心 2025年第1期91-97,共7页
针对卫星等飞行通信平台的低可探测性需求问题,提出了一种混合式极化-频率选择吸波体(Polarization-Frequency Selective Rasorber,PFSR)解决方案。首先,基于传输线理论的等效电路分析方法,探究了吸透波兼容实现机理;然后,通过损耗层双... 针对卫星等飞行通信平台的低可探测性需求问题,提出了一种混合式极化-频率选择吸波体(Polarization-Frequency Selective Rasorber,PFSR)解决方案。首先,基于传输线理论的等效电路分析方法,探究了吸透波兼容实现机理;然后,通过损耗层双边不对称加载的方式,实现了透波窗口的极化选择功能;最后,采用损耗层混合式设计,解决了宽频带吸透波兼容难的问题。仿真结果表明,该结构在TE波入射时具有6.8~7.8 GHz频段透波、2.2~18.0 GHz频段低散射的吸透一体化功能,在TM波入射时具有3.2~18.0 GHz频段低散射的吸波功能。该结构可为卫星等飞行通信平台的宽频带低可探测性设计提供解决方案。 展开更多
关键词 极化选择 频率选择 吸波体 透波窗口 混合式损耗层
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无机填料对稠浆法烟草薄片吸湿性能影响研究
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作者 李朝建 杨扬 +5 位作者 尤晓娟 王鹏飞 刘洋 何红梅 朝鲁门 高鑫 《中国造纸》 北大核心 2025年第5期145-150,共6页
研究稠浆法烟草薄片含水率与环境相对湿度及平衡时间的相关性,探讨稠浆中膨润土和滑石粉等无机填料质量分数对烟草薄片吸湿性能及物理指标的影响。结果表明,烟草薄片初始含水率越高,在后续更高相对湿度下平衡2 h的含水率越高,烟草薄片平... 研究稠浆法烟草薄片含水率与环境相对湿度及平衡时间的相关性,探讨稠浆中膨润土和滑石粉等无机填料质量分数对烟草薄片吸湿性能及物理指标的影响。结果表明,烟草薄片初始含水率越高,在后续更高相对湿度下平衡2 h的含水率越高,烟草薄片平衡2 h的含水率一定程度上可以反映烟草薄片的吸湿率。烟草薄片中添加膨润土或滑石粉均有利于降低烟草薄片的吸湿性,适宜无机填料质量分数均为2.0%,烟草薄片的紧度(膨润土烟草薄片0.711 g/cm^(3)、滑石粉烟草薄片0.706 g/cm^(3))和抗张强度(膨润土烟草薄片0.492 kN/m、滑石粉烟草薄片0.392 kN/m)均满足后续加工需求。从感官质量评价结果来看,滑石粉是一种较理想的填料。 展开更多
关键词 无机填料 加热卷烟 吸湿特性 烟草薄片 稠浆法
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烟梗蒸汽爆破处理对烟草薄片基片物理性能和感官品质的影响
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作者 王帆 李嘉豪 +7 位作者 李宇晗 邱嘉骏 罗冲 王茹楠 李锦 陈顺辉 陈丽卿 温洋兵 《中国造纸》 北大核心 2025年第5期54-62,共9页
利用蒸汽爆破技术对烟梗进行预处理,研究不同蒸汽爆破预处理条件下烟梗的微观结构、化学成分以及抄造基片的物理性能和感官品质。结果表明,蒸汽爆破维压压力对烟梗微观结构及烟草薄片基片物理性能影响较大,随着蒸汽爆破维压压力的增加,... 利用蒸汽爆破技术对烟梗进行预处理,研究不同蒸汽爆破预处理条件下烟梗的微观结构、化学成分以及抄造基片的物理性能和感官品质。结果表明,蒸汽爆破维压压力对烟梗微观结构及烟草薄片基片物理性能影响较大,随着蒸汽爆破维压压力的增加,烟梗的微观结构膨胀,空洞间隙扩大增多,磨浆后烟梗浆打浆度增加,相比于未处理样品,烟草薄片基片的抗张指数最高可提升至1.65倍,匀度提升60%,柔软度提升22%,但对松厚度影响较小。当蒸汽爆破维压压力为0.6 MPa时,烟梗微观结构破坏不明显,水溶性总糖含量相比原料提升11.6%,能够显著改善烟草薄片感官质量。适当的蒸汽爆破处理烟梗能显著改善基片物理性能和烟草薄片感官质量,工业应用时蒸汽爆破维压压力应低于0.6 MPa。 展开更多
关键词 蒸汽爆破 烟草薄片基片 感官品质 物理性能
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