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1.
以正硅酸乙酯(TEOS)为硅源,采用St?ber法制备了二氧化硅粉体,采用硅烷偶联剂对其表面修饰后得到纳米二氧化硅。采用机械搅拌辅助超声分散法制备了纳米二氧化硅-苯丙复合乳液涂层,分别考察了纳米二氧化硅质量分数为0,1%,2%,3%时涂层的微观形貌、显微硬度、附着力、抗磨性、抗划伤性和抗拉强度。结果表明,纳米二氧化硅的质量分数对苯丙乳液涂层的主要力学性能具有显著影响。纳米二氧化硅质量分数为2%时,涂层的主要力学性能相对较好,此时涂层的附着力和抗拉强度分别为8.45,15 MPa,与未添加纳米二氧化硅的苯丙乳液清漆涂层相比提高了12.82%和140.77%,而涂层1 000 r磨损质量损失率降低29%。  相似文献   

2.
研究了纳米Al2O3粒子对聚酰亚胺粘接材料性能的影响.结果表明,纳米Al2O3粒子能明显提升聚酰亚胺粘接堵漏材料的粘接性能.当纳米Al2O3粒子添加量为8%~12%时,聚酰亚胺粘接堵漏材料的剪切强度可提高37%;纳米Al2O3/聚酰亚胺粘接堵漏材料在高温固化过程中,纳米Al2O3产生向粘接界面偏析现象.  相似文献   

3.
将纳米Cu和纳米金刚石复配成Cu/C复合添加剂,对其在500SN基础油中的减摩抗磨性能进行了研究.结果表明,加入了Cu/C复合添加剂的试油能明显改善500SN基础油的摩擦学性能:当纳米Cu添加量为4%,纳米C添加量为2%时,加入了Cu/C复合添加剂的试油减摩性能最好,同500SN空白试油相比,摩擦因数可降低94.8%;...  相似文献   

4.
为了对环氧乙烯基酯树脂(EVER)进行增韧改性,采用KH570硅烷偶联剂对纳米SiO2进行表面处理,考察了纳米SiO2表面改性及其质量分数对EVER力学性能的影响。经过偶联剂处理的纳米SiO2复合材料在树脂基体中具备更好的分散性和相容性,力学性能明显优于纯EVER材料和未经偶联剂处理的复合材料。纳米SiO2质量分数为3%时,纳米SiO2复合材料的拉伸强度、断裂伸长率、冲击强度分别比纯EVER材料提高了42.10%,43.38%和91.91%;纳米SiO2质量分数为4%时,纳米SiO2复合材料的拉伸模量比纯EVER材料提高了34.57%。通过观察冲击断面的SEM照片,分析了纳米SiO2增韧改性的作用机理。结果表明:纳米SiO2增韧改性的关键在于诱发基体产生银纹,使其对裂纹扩展起到钝化、阻碍的作用。  相似文献   

5.
提升类金刚石(Diamond-Like Carbon, DLC)膜在被保护基底上的附着能力具有明显的实际应用价值。从微观机理上分析了前期设计的Cu基多层DLC膜有效性的原因。在此基础上,研究了DLC/SiC循环层中两者厚度比例对膜层的附着性能、纳米硬度和耐磨性的影响,以优化结构、进一步提升实际应用所需的膜层性能。纳米划痕和压痕测试结果表明:随着DLC层与SiC层厚度比例的增大,多层DLC膜在Cu基上附着性能逐渐降低,但当厚度比小于2.3时,仍接近厚度400 nm的单层DLC膜在Si基上的附着性能;Cu基多层DLC膜的纳米硬度逐渐提高,同时,耐磨性接近纯DLC膜。  相似文献   

6.
聚氨酯的水解稳定性较差,粘结强度偏低。将端羟基聚丁二烯与聚氨酯进行共混改性,提高了聚氨酯基体的表观交联度及推进剂的拉伸强度。采用示差扫描量热法和红外光谱法分析基体共混物的微观结构,表明这是提高聚氨酯基体粘结强度的一条有效途径。  相似文献   

7.
不同分散剂对纳米SiO_2水中分散的影响   总被引:1,自引:0,他引:1  
选取六偏磷酸钠(SHMP)、十二烷基苯磺酸钠(SDBS)及KCl作分散剂,并采用超声分散方法,制备纳米SiO2悬浮液,对纳米SiO2的水中分散性能进行研究。测试分散体系中纳米SiO2粒子的粒径及分布、Zeta电位及透光率,探讨了不同分散剂对纳米SiO2分散性能的影响。结果表明:不同分散剂对纳米SiO2的粒径都有明显影响,但粒径分布宽度差别较大;同在分散粒径较小的条件下,分别添加3种分散剂的悬浮液体系具有不同的稳定性,其中含SDBS的分散体系因静电和空间位阻的作用而表现出良好的分散稳定性。  相似文献   

8.
依据Herrmann状态方程和斜冲击波关系估算了多孔材料药型罩压垮之前的冲击温升,求解了经过冲击压缩卸载后材料的声速。给出了多孔材料药型罩聚能射流的形成条件。初始冲击温升会使材料的声速和强度降低,从而使多孔材料聚能射流形成射流的高速和低速条件降低。  相似文献   

9.
本文讨论了影响硬段在聚氨酯中分布的因素及其对聚氨酯的形态结构和阻尼性能的影响,指出:软段或硬段交联、固化温度及合成方法都对聚氨酯的形态结构和阻尼性能有影响。在相分离较严重的聚氨酯体系中,增加硬段在软相中的分散程度,有利于提高聚氨酯的阻尼性能。  相似文献   

10.
金属/SiO2复合气凝胶催化剂对一氧化碳氧化的催化   总被引:3,自引:0,他引:3  
采用溶胶-凝胶法和超临界干燥法制备了Cu/SiO2 和Co/SiO2 气凝胶催化剂, 对其结构和形貌进行了XRD、TEM 和比表面分析, 并考察了其对CO氧化的催化性能。实验结果表明, 制得的Cu/SiO2 和Co/SiO2 气凝胶催化剂均保留了气凝胶的纳米网络和高比表面积, 活性组份均匀地分散在纳米级二氧化硅气凝胶载体中, 对CO的氧化均表现出高的催化活性。  相似文献   

11.
《防务技术》2014,10(4):375-383
The influence of three factors, such as volume percentage of reinforcement particles (i.e. Al2O3), tool tilt angle and concave angle of shoulder, on the mechanical properties of Cu–Al2O3 surface composites fabricated via friction stir processing was studied. Taguchi method was used to optimize these factors for maximizing the mechanical properties of surface composites. The fabricated surface composites were examined by optical microscope for dispersion of reinforcement particles. It was found that Al2O3 particles are uniformly dispersed in the stir zone. The tensile properties of the surface composites increased with the increase in the volume percentage of the Al2O3 reinforcement particles. This is due to the addition of the reinforcement particles which increases the temperature of recrystallization by pinning the grain boundaries of the copper matrix and blocking the movement of the dislocations. The observed mechanical properties are correlated with microstructure and fracture features.  相似文献   

12.
机场道面抢修用聚氨酯稳定集料的试验研究   总被引:1,自引:0,他引:1  
以机场道面意外损毁的抢修为目的,进行了聚氨酯发泡快速稳定道面基层回填料的试验研究。试验结果表明,常温下用聚氨酯发泡稳定碎石集料,2 h无侧限抗压强度达到2.05 MPa,对道面结构的有限元分析表明,试验所用材料可满足道面基层的力学性能要求。  相似文献   

13.
《防务技术》2020,16(2):425-431
This work describes the preparation and study of the properties of composite nanoparticles prepared by the sol-gel method which consists of two materials (Al2O3-CaO), and study the effect of these nanoparticles on the mechanical behavior of a polymer blend (EP 4% + 96% UPE). The powder was evaluated by X-ray diffraction analysis, scanning electron microscopy analysis (SEM), particle size analysis, and energy dispersive X-ray analysis (EDX). The mechanical behavior of the composite material was assessed by tensile test, bending test and hardness test. The evaluation results of the composite nanoparticles showed good distribution of the chemical composition between aluminum oxide and calcium oxide, smoothness in particles' size at calcination in high and low temperatures, formation of different shapes of nanoparticles and different (kappa and gamma) phases of the Al2O3 particles. The results of mechanical behavior tests showed marked improvement in the mechanical properties of the resulted composite material, especially at 1.5%, compared with polymer blend material without nano powder addition. The tensile properties improved about (24 and 14.9) % and bending resistance about (23.5 and 16.8) % and hardness by (25 and 22) % when adding particles of size (63.8 and 68.6) respectively. Therefore, this reflects the efficiency of the proposed method to manufacture the nanocomposite powder and the possibility of using this powder as a strengthening material for the composite materials and using these composite materials in bio applications, especially in the fabrication of artificial limbs.  相似文献   

14.
《防务技术》2014,10(3):285-293
According to the dimensionless formulae of DOP (depth of penetration) of a rigid projectile into different targets, the resistive force which a target exerts on the projectile during the penetration of rigid projectile is theoretically analyzed. In particular, the threshold Vc of impact velocity applicable for the assumption of constant resistive force is formulated through impulse analysis. The various values of Vc corresponding to different pairs of projectile-target are calculated, and the consistency of the relative test data and numerical results is observed.  相似文献   

15.
《防务技术》2019,15(3):319-325
Nanothermites (metal oxide/metal) can offer tremendously exothermic self sustained reactions. CuO is one of the most effective oxidizers for naonothermite applications. This study reports on two prospectives for the manufacture of CuO nanoparticles. Colloidal CuO particles of 15 nm particle size were developed using hydrothermal synthesis technique. Multiwalled carbon nanotubes (MWCNTs) with surface are 700 m2/g was employed as a substrate for synthesis of CuO-coated MWCNTs using electroless plating. On the other hand, aluminium particles with combustion heat of 32000 J/g is of interest as high energy density material. The impact of stoichiometric nanothermite particles (CuO/Al & Cuo-coated MWCNTs/Al) on shock wave strength of Al/TNT nanocomposite was evaluated using ballistic mortar test. While CuO-coated MWCNTs decreased the shock wave strength by 15%; colloidal CuO enhanced the shock wave strength by 30%. The superior performance of colloidal CuO particles was correlated to their steric stabilization with employed organic solvent. This is the first time ever to report on fabrication, isolation, and integration of stablilized colloidal nanothermite particles into energetic matrix where intimate mixing between oxidizer and metal fuel could be achieved.  相似文献   

16.
《防务技术》2020,16(3):627-634
The Al3Ti compound has potential application in the high temperature structure materials due to its low density, high strength and stiffness. The mechanical behaviors of the material under different loading rates were studied using compression tests. The results indicate that Al3Ti is a typical brittle material and its compressive strength is dependent on the strain rate. Therefore, a series of rate-dependent constitutive equations are needed to describe its mechanical behaviors accurately. However, it is still short of professional research on the material model for Al3Ti. In this study, the material model was developed on the basis of JH-2 constitutive equations using the experimental data. The model was then applied in simulating the impact process of Ti/Al3Ti metal-intermetallic laminate composites so as to validate the established model. Good agreement between simulation and experiment results shows the constitutive model predict the material responses under high rate and large deformation accurately. This work provides more support for the theoretical and numerical research on the intermetallic.  相似文献   

17.
《防务技术》2019,15(3):450-456
The aim of this research study was to determine optimal resistance spot brazing parameters for joining between AHSS and AISI 304 stainless steel by using filler metal. The key parameters investigated in this study consist of the brazing current, electrode pressure and brazing time. The Taguchi method was applied to the design of experiments. Signal-to-Noise ratio was introduced in the study to identify optimal levels from the process where input parameters yield increased shear strength. Brazing was thus implemented with 5,000A brazing current, 0.70 MPa electrode pressure, and 1.50s brazing time. The maximum shear strength obtained was 54.31 N·mm−2 in accordance with input parameter settings. In addition, Cu-rich phase and Ag0.4Fe0.6 intermetallic phases were found at the interface zone.  相似文献   

18.
《防务技术》2019,15(3):363-368
The present work aims to enhance the ballistic resistance of AA7005 alloy by incorporating the TiB2 and B4C ceramic reinforcement particles. Surface composites with different weight fractions of TiB2 and B4C particles were processed by friction stir processing. Micro-hardness and depth of penetration tests were carried out to evaluate the ballistic properties of the surface composites. The surface hardness of the composite was found to be nearly 70 HV higher than base alloy. The depth of penetration of the steel projectile was 20–26 mm in the composites as compared to 37 mm in the base alloy. Ballistic mass efficiency factor of the surface composite was found to be 1.6 times higher than base alloy. This is mainly attributed to the dispersion strengthening from the reinforcement particles.  相似文献   

19.
Force chains based mesoscale simulation is conducted to investigate the response behavior of aluminum-polytetrafluoroethylene (Al-PTFE) granular composites under a low-velocity impact. A two-dimensional model followed the randomly normal distribution of real Al particles size is developed. The dynamic compressive process of Al-PTFE composites with varied Al mass fraction is simulated and validated against the experiments. The results indicate that, force chains behavior governed by the number and the size of agglomerated Al particles, significantly affects the impact response of the material. The failure mode of the material evolves from shear failure of matrix to debonding failure of particles with increasing density. A high crack area of the material is critical mechanism to arouse the initiation re-action. The damage maintained by force chains during large plastic strain builds up more local stresses concentration to enhance a possible reaction performance. In addition, simulation is performed with identical mass fraction but various Al size distribution to explore the effects of size centralization and dispersion on the mechanical properties of materials. It is found that smaller sized Al particle of com-posites are more preferred than its bulky material in ultimate strength. Increasing dispersed degree is facilitated to create stable force chains in samples with comparable particle number. The simulation studies provide further insights into the plastic deformation, failure mechanism, and possible energy release capacity for Al-PTFE composites, which is helpful for further design and application of reactive materials.  相似文献   

20.
《防务技术》2019,15(4):526-532
The effect of ZnSi3N4 deposition prepared via direct electrolytic co-deposition on mild steel was studied as a result its inherent vulnerability to corrosion in an aggressive environment and failure on the application of load. The experiment was conducted varying the mass concentration of silicon nitride (Si3N4) between 7 and 13 g at cell voltage of 0.3 and 0.5 V, at constant temperature of 45 °C. The morphologies of the coated surfaces were characterized using high resolution Nikon Optical Microscope and Scanning Electron Microscope (SEM) revealing that the particles of the ZnSi3N4 were homogeneously dispersed. The corrosion behaviour was studied using potentiodynamic polarization technique in 3.65% NaCl solution and the microhardness was examined using Brinell hardness testing technique. The result of the corrosion experiment confirmed an improved corrosion resistance with a reduction in corrosion rate from 9.7425 mm/year to 0.10847 mm/year, maximum coating efficiency of 98.9%, maximum polarization resistance of 1555.3 Ω and a very low current density of 9.33 × 10−6 A/cm2. The negative shift in the Ecorr revealed the cathodic protective nature of the coating. The microhardness was also found to have increased from 137.9 HBN for the unmodified steel to a maximum value of 263.3 HBN for the 0.5Zn13Si3N4 coated steel representing 90.9% increment in hardness as a result of the matrix grain refining and dispersion-strengthening ability of the incorporated Si3N4 particles.  相似文献   

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