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Experimental study of partially-cured Z-pins reinforced foam core composites:K-Cor sandwich structures 被引量:13
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作者 Zheng Yingying Xiao Jun +1 位作者 Duan Mufeng Li Yong 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2014年第1期153-159,共7页
This paper presents an experimental study of a novel K-Cor sandwich structure rein- forced with partially-cured Z-pins. The influence of pultrusion processing parameters on Z-pins characteristics was studied and the e... This paper presents an experimental study of a novel K-Cor sandwich structure rein- forced with partially-cured Z-pins. The influence of pultrusion processing parameters on Z-pins characteristics was studied and the effect of Z-pins on mechanical properties was disclosed. Differential scanning calorimetry (DSC) and optical microscopy (OM) methods were employed to determine the curing degree of as-prepared Z-pins and observe the implanted Z-pins in the K-Cor structure. These partially-cured Z-pins were treated with a stronger bonding link between face sheets and the foam core by means of a hot-press process, thereby decreasing burrs and cracking defects when the Z-pins were implanted into the Rohacell foam core. The results of the out-of-plane tensile tests and the climbing drum peel (CDP) tests showed that K-Cor structures exhibited superior mechanical performance as compared to X-Cor and blank foam core. The observed results of failure modes revealed that an effective bonding link between the foam core and face sheets that was provided from partially-cured Z-pins contributed to the enhanced mechan- ical performances of K-Cor sandwich structures. 展开更多
关键词 Composite materials K-Cor sandwich structuresMechanical performance Partially-cured Z-pins foam core composites
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Fabrication of Open-cell Al Foam Core Sandwich by Vibration Aided Liquid Phase Bonding Method and Its Mechanical Properties 被引量:4
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作者 Hui Wang Donghui Yang +1 位作者 Siyuan He Deping He 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2010年第5期423-428,共6页
The open-cell Al foam core sandwiches(AFCSs) were successfully fabricated by using a specially designed Zn-Al-Cu based filler alloy via vibration aided liquid phase bonding method.The effects of the vibration on the... The open-cell Al foam core sandwiches(AFCSs) were successfully fabricated by using a specially designed Zn-Al-Cu based filler alloy via vibration aided liquid phase bonding method.The effects of the vibration on the bonding seam were investigated and the bonding strength between Al foam core and solid Al alloy face sheet was tested by shearing tests.The results show that vibration can significantly improve the quality of the bonding and the shearing strength of the bonding seam,which implies that this joining method has a good potential in practical applications. 展开更多
关键词 Open-cell Al foam core sandwich Liquid phase bonding VIBRATION
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Impact damage behavior of sandwich composite with aluminum foam core 被引量:4
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作者 Moon Sik HAN Jae Ung CHO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第S1期42-46,共5页
Impact property of the sandwich composite with aluminum foam core was investigated by experiment and simulation analysis. Impact energies of 50, 70 and 100 J were applied to the specimens in impact tests. The results ... Impact property of the sandwich composite with aluminum foam core was investigated by experiment and simulation analysis. Impact energies of 50, 70 and 100 J were applied to the specimens in impact tests. The results show that the striker penetrates the upper face sheet, causing the core to be damaged at 50 J test but the lower face sheet remains intact with no damage. At 70 J test, the striker penetrates the upper face sheet and the core,and causes the lower face sheet to be damaged. Finally at 100 J test, the striker penetrates both the upper face sheet and the core, and even the lower face sheet. The experimental and simulation results agree with each other. By the confirmation with the experimental results, all these simulation results can be applied on structure study of real sandwich composite with aluminum foam core effectively. 展开更多
关键词 sandwich composite aluminum foam core impact energy maximum load
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Vibration and Buckling Analyses of Sandwich Plates Containing Functionally Graded Metal Foam Core 被引量:3
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作者 A.Garg H.D.Chalak +3 位作者 L.Li M.-O.Belarbi R.Sahoo T.Mukhopadhyay 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2022年第4期587-602,共16页
In the present work,free vibration and buckling analyses of sandwich plates with various functionally graded foam cores are carried out.Foam cores are assumed to be made of metal,and three different configurations of ... In the present work,free vibration and buckling analyses of sandwich plates with various functionally graded foam cores are carried out.Foam cores are assumed to be made of metal,and three different configurations of the porous distribution in the core layer are taken into consideration.To carry out a comparative study between the distributions of pores in the core foam,the mass of foam in all three cases is kept the same.The vibration and buckling behaviors of skew plates are also analyzed as a part of the current investigation.The principle of minimization of potential energy and Hamilton’s principle are used for the derivation of the governing equations,while a C-0 finite element-based higher-order zigzag formulation is developed to solve the free vibration and buckling problems.The influences of gradation laws,boundary conditions,skew angle and geometry of plates are studied in detail for the dynamic and stability characteristics.It is found that both the non-dimensional natural frequency and buckling load decrease with the increase in the thickness of the metal foam cores,while they show an increasing trend as the skew angle of the plate increases. 展开更多
关键词 Sandwich plate Metal foam core Functionally graded core Finite element Skew plate
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Stress and buckling analysis of a thick-walled micro sandwich panel with a flexible foam core and carbon nanotube reinforced composite (CNTRC) face sheets 被引量:2
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作者 A.AMIRI M.MOHAMMADIMEHR M.ANVARI 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2020年第7期1027-1038,共12页
In this paper,the stresses and buckling behaviors of a thick-walled mi-cro sandwich panel with a flexible foam core and carbon nanotube reinforced composite(CNTRC)face sheets are considered based on the high-order she... In this paper,the stresses and buckling behaviors of a thick-walled mi-cro sandwich panel with a flexible foam core and carbon nanotube reinforced composite(CNTRC)face sheets are considered based on the high-order shear deformation theory(HSDT)and the modified couple stress theory(MCST).The governing equations of equi-librium are obtained based on the total potential energy principle.The effects of various parameters such as the aspect ratio,elastic foundation,temperature changes,and volume fraction of the canbon nanotubes(CNTs)on the critical buckling loads,normal stress,shear stress,and deflection of the thick-walled micro cylindrical sandwich panel consider-ing different distributions of CNTs are examined.The results are compared and validated with other studies,and showing an excellent compatibility.CNTs have become very use-ful and common candidates in sandwich structures,and they have been extensively used in many applications including nanotechnology,aerospace,and micro-structures.This paper also extends further applications of reinforced sandwich panels by providing the modified equations and formulae. 展开更多
关键词 stress and buckling analysis thick-walled micro cylindrical sandwich panel flexible foam core carbon nanotube reinforced composite(CNTRC)face sheet high-order shear deformation theory(HSDT)
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Experiment on Mode Ⅰ/Ⅱ Mixed Interfacial Fracture Characterization of Foam Core Sandwich Materials at Elevated Temperatures 被引量:1
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作者 WANG Lu YIN Chunxiang SI Qinan 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第1期83-87,共5页
Foam-cored sandwich materials have been widely used in the civil engineering due to their advantages such as lightweight,high strength,and excellent anti-corrosion ability. However,the interfacial bonding strength of ... Foam-cored sandwich materials have been widely used in the civil engineering due to their advantages such as lightweight,high strength,and excellent anti-corrosion ability. However,the interfacial bonding strength of foamcored sandwich materials is weakened at elevated temperatures. In practice,the effect of high temperature cannot be ignored,because the composites and foams are sensitive to the change of temperature in the environment. In this study,a series of single-leg bending beams were tested at different temperatures to evaluate the influences of high temperatures on Mode Ⅰ/Ⅱ mixed interfacial fracture of foam core sandwich materials. The temperature was from29 ℃ to 90 ℃,covered the glass transition temperature of composites and foam core,respectively. The Mode Ⅰ/Ⅱ mixed interfacial crack prorogation and its corresponding interfacial strain energy release rate were summarized. 展开更多
关键词 foam core sandwich materials Mode I/II mixed interfacial fracture elevated temperature single-leg bending strain energy release rate
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Facile fabrication of core-shell Ni3Se2/Ni nanofoams composites for lithium ion battery anodes 被引量:4
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作者 Zhongren Wang Quanbin Gao +3 位作者 Peng Lv Xiuwan Li Xinghui Wang Baihua Qu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第3期119-124,共6页
Due to the highly porous structure,large specific surface area,and 3 D interconnected metal conductive network,nanoporous metal foams have attracted a lot of attention in the field of energy conversion and storage,esp... Due to the highly porous structure,large specific surface area,and 3 D interconnected metal conductive network,nanoporous metal foams have attracted a lot of attention in the field of energy conversion and storage,especially lithium-ion batteries,which are ideal for current collectors.In this work,we develop a facile approach to fabricate core-shell Ni3Se2/Ni nanofoams composites.The Ni3Se2/Ni composites make full use of both the advantages of metal conductive network and core-shell structure,resulting in a high capacity and superior rate performance.In addition,the composites can be directly converted into electrode by a simple mechanical compression,which is more convenient than traditional casting method.What’s more,this material and its structure can be extended to other devices in the field of energy conversion and storage. 展开更多
关键词 Metal foamS Ni3Se2 core-SHELL Structure COMPOSITES LITHIUM ion BATTERY
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Porous Cobalt Oxide@Layered Double Hydroxide Core-Shell Architectures on Nickel Foam as Electrode for Supercapacitor
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作者 Zhang Luojiang Hui Kwan San 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2018年第4期603-610,共8页
The high performance of an electrode relies largely on a scrupulous design of nanoarchitectures and smart hybridization of electroactive materials.A porous core-shell architecture in which one-dimensional cobalt oxide... The high performance of an electrode relies largely on a scrupulous design of nanoarchitectures and smart hybridization of electroactive materials.A porous core-shell architecture in which one-dimensional cobalt oxide(Co_3O_4)nanowire cores are grown on nickel foam prior to the growth of layered double hydroxide(LDH)shells is fabricated.Hydrothermal precipitation and thermal treatment result in homogeneous forests of 70-nm diameter Co_3O_4 nanowire,which are wrapped in LDH-nanosheet-built porous covers through a liquid phase deposition method.Due to the unique core-shell architecture and the synergetic effects of Co_3O_4and NiAl-LDH,the obtained Co_3O_4@LDH electrode exhibits a capacitance of 1 133.3F/g at a current density of 2A/g and 688.8F/g at 20A/g(5.3F/cm^(2 )at 9.4mA/cm^(2 )and 3.2F/cm^(2 )at 94mA/cm^2),which are better than those of the individual Co_3O_4nanowire.Moreover,the electrode shows excellent cycling performance with a retention rate of 90.4%after 3 000cycles at a current density of 20A/g. 展开更多
关键词 core-SHELL cobalt oxide layered double hydroxide(LDH) nickel foam supercapacitor(SC)
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Mathematical modeling for dynamic stability of sandwich beam with variable mechanical properties of core 被引量:3
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作者 M.GRYGOROWICZ E.MAGNUCKA-BLANDZI 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2016年第10期1361-1374,共14页
The paper is devoted to mathematical modelling of static and dynamic stability of a simply supported three-layered beam with a metal foam core. Mechanical properties of the core vary along the vertical direction. The ... The paper is devoted to mathematical modelling of static and dynamic stability of a simply supported three-layered beam with a metal foam core. Mechanical properties of the core vary along the vertical direction. The field of displacements is for- mulated using the classical broken line hypothesis and the proposed nonlinear hypothesis that generalizes the classical one. Using both hypotheses, the strains are determined as well as the stresses of each layer. The kinetic energy, the elastic strain energy, and the work of load are also determined. The system of equations of motion is derived using Hamilton's principle. Finally, the system of three equations is reduced to one equation of motion, in particular, the Mathieu equation. The Bubnov-Galerkin method is used to solve the system of equations of motion, and the Runge-Kutta method is used to solve the second-order differential equation. Numerical calculations are done for the chosen family of beams. The critical loads, unstable regions, angular frequencies of the beam, and the static and dynamic equilibrium paths are calculated analytically and verified numerically. The results of this study are presented in the forms of figures and tables. 展开更多
关键词 mathematical modelling dynamic stability metal foam core with variable mechanical property static and dynamic equilibrium path angular frequency
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环类铸钢件模具成型方法
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作者 杨伟 王文宝 郭小利 《中国铸造装备与技术》 2026年第1期56-59,共4页
本文介绍一种回转体环类铸钢件的模具成型方法,将砂型等分若干个砂芯,通过一个芯盒制作多个相同砂芯以节约成型成本,根据不同的砂量和流砂重力挤压情况,采用不同的成型方法,以减少芯盒变形,提高尺寸精度和表面强度,确保芯盒能够多次使用... 本文介绍一种回转体环类铸钢件的模具成型方法,将砂型等分若干个砂芯,通过一个芯盒制作多个相同砂芯以节约成型成本,根据不同的砂量和流砂重力挤压情况,采用不同的成型方法,以减少芯盒变形,提高尺寸精度和表面强度,确保芯盒能够多次使用,从而达到降低模型制作成本、减少维护量、缩短生产周期的目的。 展开更多
关键词 消失模 芯盒 模块 表面强度 变形
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聚丙烯在建筑模板中的应用研究进展
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作者 陈红军 《中外能源》 2026年第1期79-83,共5页
聚丙烯(PP)基建筑模板因其轻量化、高周转率、易加工及环保可回收等优势,正逐步替代传统竹木与钢模板,成为绿色建筑施工的理想选择。当前研究通过结构设计优化、阻燃体系创新及纤维增强技术,显著提升了模板的综合性能。夹心模板通过多... 聚丙烯(PP)基建筑模板因其轻量化、高周转率、易加工及环保可回收等优势,正逐步替代传统竹木与钢模板,成为绿色建筑施工的理想选择。当前研究通过结构设计优化、阻燃体系创新及纤维增强技术,显著提升了模板的综合性能。夹心模板通过多层结构设计(如面层-芯层-面层复合)和孔洞结构优化,显著提升抗弯刚度和材料利用率;阻燃模板采用磷-氮系膨胀无卤阻燃剂、溴系阻燃剂及阻燃协效剂,实现V-0级阻燃等级的同时保持力学性能;高强模板通过纤维增强(如玻璃纤维、碳纤维)和自增强技术,突破传统模板的强度瓶颈。研究表明,PP基模板在轻量化、阻燃性及循环利用方面具有显著优势,但熔体强度不足、界面结合弱等问题仍需进一步解决。未来应聚焦纳米改性、生物基填料多元复合与标准化体系建设,以推动PP模板在装配式与低碳建筑中的规模化应用。 展开更多
关键词 聚丙烯 建筑模板 阻燃改性 纤维增强 发泡芯层 绿色建材
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PET泡沫芯材表面多级网络开槽结构设计及优化
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作者 李金林 曹敏华 +1 位作者 陈小伟 林高建 《工程塑料应用》 北大核心 2025年第6期87-95,共9页
聚对苯二甲酸乙二酯(PET)泡沫芯材广泛应用于制造三明治夹芯结构。针对风力发电机叶片领域PET泡沫芯材力学性能不足,导致其无法替代进口轻木芯材的现象,提出基于两种次级槽(十字交叉槽和对角线斜交叉槽)的主次槽多级网络开槽结构的优化... 聚对苯二甲酸乙二酯(PET)泡沫芯材广泛应用于制造三明治夹芯结构。针对风力发电机叶片领域PET泡沫芯材力学性能不足,导致其无法替代进口轻木芯材的现象,提出基于两种次级槽(十字交叉槽和对角线斜交叉槽)的主次槽多级网络开槽结构的优化设计方法。使用Abaqus软件建立包含主槽形态特征的PET泡沫芯材三维有限元模型,通过剪切加载模拟分析,结合实验数据验证了仿真模型的可靠性(相对误差为0.47%)。在确保总注胶量恒定的约束条件下,以芯材的剪切模量为优化目标,采用多岛遗传算法对十字交叉槽与对角线斜交叉槽结构的几何参数进行优化,重点考察槽宽(0.9~2 mm)和槽深(12.357~23.5 mm)对芯材力学性能的影响规律。结果表明,采用十字交叉槽,槽宽为1 mm、主次槽深度均为23.5 mm的结构剪切性能最优,其剪切模量达到了137.14 MPa,相比原始设计提升了9.2%。进一步对优化后的结构进行压缩和拉伸测试,模拟结果显示比压缩模量提升了10.2%,比拉伸弹性模量提升了10.3%。上述结果表明,通过多级网络开槽结构优化设计的PET泡沫芯材承载能力得到显著提升,为该类芯材在航空航天、能源和军事领域的更广泛应用提供了支持。 展开更多
关键词 聚对苯二甲酸乙二酯泡沫芯材 表面开槽 优化设计 多岛遗传算法 剪切模量
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化学发泡注塑工艺对热塑性聚氨酯发泡性能的影响 被引量:2
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作者 幸锦福 蒋团辉 《塑料工业》 北大核心 2025年第1期70-76,共7页
利用化学发泡二次开模方法制备了热塑性聚氨酯(TPU)微发泡材料,研究了工艺参数和发泡剂母粒含量对发泡TPU泡孔形态及其制品密度的影响。结果表明,当发泡剂母粒质量分数为2%时,可获得泡孔直径较小的发泡制品,制品密度减小了16%。注塑温... 利用化学发泡二次开模方法制备了热塑性聚氨酯(TPU)微发泡材料,研究了工艺参数和发泡剂母粒含量对发泡TPU泡孔形态及其制品密度的影响。结果表明,当发泡剂母粒质量分数为2%时,可获得泡孔直径较小的发泡制品,制品密度减小了16%。注塑温度应控制在210℃,过高或过低的温度易获得较差的泡孔形态和较高的制品密度。开模距离为0.6 mm时,可获得孔结构均匀的发泡材料,其泡孔密度和直径分别为1.67×105个/cm3和111.66μm,而较高开模距离对制品减重影响不大。高的注射速度和压力有利于提高孔的形核密度和孔结构的均匀性,但提高注射速度对制品减重效果不显著。DSC结果表明发泡有利于降低TPU的熔融峰和结晶峰温度,提高了结晶度。力学性能结果表明TPU泡沫具有良好抵抗弯曲变形的能力,其弯曲强度从8.49 MPa提高到了12.01 MPa。 展开更多
关键词 热塑性聚氨酯 化学发泡 二次开模 注塑工艺 泡孔结构
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矩形冲头碰撞下泡沫夹芯板塑性动力响应研究
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作者 王琪 肖雯 +1 位作者 李应刚 李晓彬 《振动与冲击》 北大核心 2025年第14期114-119,共6页
基于理想刚塑性材料假设,采用功率守恒原理建立了矩形冲头碰撞下泡沫夹芯板塑性动力响应理论模型,并通过有限元模型验证了理论模型的准确性。在此基础上,分析了冲头宽度和泡沫芯层厚度对结构塑性动力响应的影响机理。结果表明,矩形冲头... 基于理想刚塑性材料假设,采用功率守恒原理建立了矩形冲头碰撞下泡沫夹芯板塑性动力响应理论模型,并通过有限元模型验证了理论模型的准确性。在此基础上,分析了冲头宽度和泡沫芯层厚度对结构塑性动力响应的影响机理。结果表明,矩形冲头碰撞下泡沫夹芯板塑性动力响应理论模型预测结果与数值计算结果吻合良好。冲头宽度减小会导致夹芯结构塑性变形增大,增加泡沫芯层厚度可以提高夹芯结构抗冲击性能。 展开更多
关键词 矩形碰撞载荷 泡沫夹芯板 理想刚塑性理论 塑性动力响应 仿真验证
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PET芯层减材工艺处理对三明治结构力学性能的影响
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作者 耿向明 羊森林 +3 位作者 钟贤和 王锋 张豪 罗俊杰 《机械强度》 北大核心 2025年第4期96-104,共9页
以聚对苯二甲酸乙二醇酯(Polyethylene Terephthalate,PET)泡沫芯层和铝合金面板制成的三明治结构为研究对象。首先,在制备三明治结构过程中,使用4类芯层,分别为未处理PET泡沫芯层,以及进行减材工艺处理(单向开槽、双向开槽、打孔)的PE... 以聚对苯二甲酸乙二醇酯(Polyethylene Terephthalate,PET)泡沫芯层和铝合金面板制成的三明治结构为研究对象。首先,在制备三明治结构过程中,使用4类芯层,分别为未处理PET泡沫芯层,以及进行减材工艺处理(单向开槽、双向开槽、打孔)的PET泡沫芯层;然后,通过滚筒剥离试验测试铝合金面板与PET泡沫芯层的抗剥离性能,通过纯剪切试验测试减材工艺处理对三明治结构剪切性能的影响;最后,分析结构的剥离及剪切失效模式、载荷-位移响应、剥离及剪切强度。结果表明,双向开槽、单向开槽、打孔工艺使得三明治结构面板与PET泡沫芯层的剥离强度相对未处理试样分别提升了48.31%、32.29%、16.67%;虽然双向开槽、单向开槽、打孔工艺对PET泡沫芯层有损伤,但3种芯层处理工艺反而使得三明治结构的剪切屈服强度相对未处理试样分别提升了3.12%、3.90%、2.92%。 展开更多
关键词 PET泡沫三明治 芯层减材处理 滚筒剥离 剥离性能 剪切试验 剪切性能
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复杂结构泡沫夹层复合材料制件成型工艺研究
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作者 顾雪琳 马秘辉 +2 位作者 赵莉莉 周开锋 郑振超 《纤维复合材料》 2025年第5期33-37,共5页
本文针对复杂结构泡沫夹层复合材料制件芯材的尺寸稳定性、胶接缺陷以及制件的外形尺寸控制进行了研究。细致分析了该制件的结构特性,开展了系列泡沫芯材稳定化实验,探索出可有效提高泡沫芯材抗变形能力的稳定化方案。通过多次预组合-... 本文针对复杂结构泡沫夹层复合材料制件芯材的尺寸稳定性、胶接缺陷以及制件的外形尺寸控制进行了研究。细致分析了该制件的结构特性,开展了系列泡沫芯材稳定化实验,探索出可有效提高泡沫芯材抗变形能力的稳定化方案。通过多次预组合-校验的工艺优化措施,校验了各胶接零件之间的配合状态。通过对胶接面的研修和补偿,保证了制件在组合固化时的胶接配合状态。自制了辅助盖板,用于胶接固化过程中对制件型面的保护。本文对比分析了不同固化压力参数对胶接质量和制件外形的影响,通过试验优化了固化压力参数。本文研究形成了复杂结构泡沫夹层复合材料制件的成型工艺方法,制备出胶接质量和外形尺寸均优异的泡沫夹层复合材料制件。 展开更多
关键词 复杂结构 泡沫夹芯复合材料 泡沫收缩 胶接缺陷 尺寸稳定性
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带加劲GFRP保温夹芯板的力学性能研究
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作者 童雪 方明霁 《上海师范大学学报(自然科学版中英文)》 2025年第5期588-596,共9页
通过试验方法、理论推导及有限元模拟方法,研究了带加劲玻璃纤维增强塑料(GFRP)保温夹芯板的单向抗弯力学性能.保温夹芯板由GFRP面板、泡沫芯板和GFRP加劲板构成.研究参数包括GFRP面板层厚度、板厚和加劲板间距位置等.试验结果表明,带加... 通过试验方法、理论推导及有限元模拟方法,研究了带加劲玻璃纤维增强塑料(GFRP)保温夹芯板的单向抗弯力学性能.保温夹芯板由GFRP面板、泡沫芯板和GFRP加劲板构成.研究参数包括GFRP面板层厚度、板厚和加劲板间距位置等.试验结果表明,带加劲GFRP保温夹芯板的极限承载力约为普通泡沫保温夹芯板的230%.此外,其面板的抗弯刚度也较之提升150%以上.理论分析模型准确预测了板材在四点弯曲下的极限承载力及挠度,误差约为7%.此外,在有限元模拟分析中,考虑了面板和泡沫芯层的粘结性能,分析结果准确地模拟了保温夹芯板块的力学性能,平均误差约为5%. 展开更多
关键词 玻璃纤维增强塑料(GFRP)保温夹芯板 加劲板 泡沫芯层 抗弯性能 有限元分析
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内爆炸载荷下夹芯管设计与动态响应分析
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作者 栗弘烨 李子豪 +1 位作者 秦晓峰 李世强 《机械强度》 北大核心 2025年第9期213-220,共8页
夹芯结构因轻质、吸能特性,在航空航天、国防等领域应用广泛,提升其在内爆炸载荷下的抗爆性能具有重要意义。设计了圆环夹芯管(R)、聚氨酯泡沫夹芯管(F)、圆环-聚氨酯泡沫混合夹芯管(RF)3种结构,并以无填充夹芯管(A)为对照组,通过内爆... 夹芯结构因轻质、吸能特性,在航空航天、国防等领域应用广泛,提升其在内爆炸载荷下的抗爆性能具有重要意义。设计了圆环夹芯管(R)、聚氨酯泡沫夹芯管(F)、圆环-聚氨酯泡沫混合夹芯管(RF)3种结构,并以无填充夹芯管(A)为对照组,通过内爆炸载荷试验与有限元模拟,对比分析了4种结构在不同炸药量下的变形模态与能量吸收能力,同时探究了泡沫填充方式对夹芯管力学性能的影响。与对照组相比,在TNT当量为24、36、48 g时,F、R、RF结构的无量纲化挠度均有不同程度的降低;TNT当量48 g时,RF结构比吸能较R结构提高5%,其抗爆性能最优。此外,当TNT当量大于37.39 g时,圆环内填充泡沫(FR结构)抗变形能力最强;小于该值时,圆环与管壁空隙填充泡沫(RF结构)抗爆性能最佳。 展开更多
关键词 夹芯圆管 圆环芯层 聚氨酯泡沫 内爆炸载荷 抗爆性能
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木质素基阻燃剂改性聚氨酯保温材料的制备及性能 被引量:4
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作者 吴玉涛 王冰冰 +3 位作者 田飞宇 陈秀兰 朱春锋 徐信武 《复合材料学报》 北大核心 2025年第1期221-234,共14页
建筑保温材料的阻燃抑烟性能事关消防安全。本文基于聚磷酸铵(APP),针对其界面相容性和抑烟性能差的问题,利用碱木素(AL)、双(4-异氰酸酯基苯基)甲烷(MDI),制备了核壳结构的膨胀型阻燃剂APP@AL(APP∶MDI∶AL质量比为9∶2∶1),并应用于... 建筑保温材料的阻燃抑烟性能事关消防安全。本文基于聚磷酸铵(APP),针对其界面相容性和抑烟性能差的问题,利用碱木素(AL)、双(4-异氰酸酯基苯基)甲烷(MDI),制备了核壳结构的膨胀型阻燃剂APP@AL(APP∶MDI∶AL质量比为9∶2∶1),并应用于硬质聚氨酯(RPU)泡沫保温材料的阻燃处理(添加量25wt%)。通过SEM-EDS、XPS、FTIR等方法分析APP@AL的结构及组成,采用锥形量热仪(CONE)、热重(TG)等仪器分析了阻燃抑烟性能。结果表明,APP@AL与RPU泡沫基体具有良好的界面相容性。与添加APP的RPU泡沫复合材料相比,APP@AL改性RPU泡沫复合材料的抗压强度显著提高(达31.8%),导热系数降低(7.0%);此外,CONE测试表明,平均放热速率和总放热量分别降低27.2%和24.4%,同时抑烟性能显著增强(总产烟量减少47.6%,总CO产量降低57.0%)。TG分析表明,APP@AL阻燃剂的热稳定性明显高于APP,且更有助于构建稳定的残炭层。综上,木质素基膨胀型阻燃剂对RPU泡沫保温材料具备优异的阻燃抑烟作用。 展开更多
关键词 保温材料 硬质聚氨酯泡沫 木质素基阻燃剂 核壳结构 抑烟性能 协同阻燃
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国产PMI泡沫芯固化收缩率及夹层结构的力学性能
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作者 邓飞飞 刘训新 +3 位作者 张梦雨 张凤 林雨辰 李红安 《合成纤维》 2025年第8期79-83,108,共6页
以国产三种密度PMI泡沫芯作为研究对象,开展泡沫芯加压试验,探索了泡沫芯密度、泡沫芯厚度及固化压力对PMI泡沫芯固化收缩率的影响。通过力学性能试验,研究了泡沫芯密度、胶接面胶膜层数及成型工艺对PMI泡沫夹层试样胶接性能的影响。试... 以国产三种密度PMI泡沫芯作为研究对象,开展泡沫芯加压试验,探索了泡沫芯密度、泡沫芯厚度及固化压力对PMI泡沫芯固化收缩率的影响。通过力学性能试验,研究了泡沫芯密度、胶接面胶膜层数及成型工艺对PMI泡沫夹层试样胶接性能的影响。试验结果表明,泡沫芯密度和厚度越大,固化压力越小,固化收缩率越小,并建立了固化收缩率与泡沫芯密度、厚度及固化压力三者间的回归方程。力学性能试验表明泡沫芯密度增加能显著提升面板与芯材之间的胶接强度,75 kg/m^(3)和110 kg/m^(3)泡沫夹芯试样的胶接强度最高比52 kg/m^(3)泡沫夹芯试样的胶接强度分别提升约166%和260%;而胶膜层数由单层增加至两层时,泡沫夹芯试样的胶接强度最高仅提升约40%,对胶接强度贡献不明显。 展开更多
关键词 PMI泡沫 固化收缩率 力学性能 回归方程 泡沫芯密度
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