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1.
高体分SiC_p/Al复合材料螺纹性能的测试   总被引:1,自引:0,他引:1  
从SiCp/Al复合材料性能分析着手,讨论了预置件法、焊接法和粘接法等在空间遥感器研制中常用的联接方法的优缺点,提出了在高体积分数(体分)SiCp/Al复合材料上直接加工螺纹,并加装钢丝螺套的方法来改善螺纹联接性能。对在某高体分SiCp/Al复合材料上加工的M4、M5螺纹进行了拉伸测试,结果表明:加装钢丝螺套前,复合材料螺纹有被拉脱现象;加装钢丝螺套后,M4螺纹、螺杆在3 000~4 000 N被拉断;M5螺纹、螺杆在8 000~9 000 N被拉断,测试后两种规格的螺纹状态良好,可以满足实际应用对该材料拉伸强度的要求,其已应用于工程项目中。  相似文献   

2.
用粉末冶金方法制备了6066Al合金和不同SiCp含量的6066Al/SiCp复合材料,用多功能内耗仪在200~600 K温度区间内测试了所研究材料在升温过程中的内耗变化趋势,探讨了6066 Al/SiCp复合材料在不同温度区间的内耗机制。结果表明6066Al/SiCp的内耗值比6066Al合金内耗值高,特别是在高温阶段比6066Al合金内耗值高得多;6066Al/SiCp和6066Al合金在300~470 K时的内耗主要是位错与第二相颗粒交互作用引起的位错内耗,在高温下内耗主要由Al/Al、Al/SiC的界面微滑移引起。  相似文献   

3.
用粉末冶金方法制备了6066Al合金和不同SiCp含量的6066Al/SiCp复合材料,用多功能内耗仪在200~600 K温度区间内测试了所研究材料在升温过程中的内耗变化趋势,探讨了6066 Al /SiCp复合材料在不同温度区间的内耗机制.结果表明6066Al/SiCp的内耗值比6066Al合金内耗值高,特别是在高温阶段比6066Al合金内耗值高得多;6066Al/SiCp和6066Al合金在300~470 K时的内耗主要是位错与第二相颗粒交互作用引起的位错内耗,在高温下内耗主要由Al/Al、Al/SiC的界面微滑移引起.  相似文献   

4.
采用模压成型法制备了不同类型的C/C复合材料,测试了其法向光谱发射率的变化.结果表明,短切碳纤维增强的C/C复合材料,其法向光谱发射率在整个2 500~13 000 nm的测试波段内普遍要高于碳布增强复合材料样品.短切碳纤维结构的相对松散,单位体积内物质的粒子数相对较少,这增加了电磁波的穿透深度,从而使得样品的法向光谱发射率较高,热辐射特性较好.纤维预制体和C/C复合材料样品的法向光谱发射率测试对比可知,两种不同碳材料的微结构差异使得树脂碳的法向光谱发射率优于纤维碳.利用Raman光谱对不同碳物质进行物相分析表明,树脂碳以sp3和sp2杂化态碳原子的混合结构使其内部产生的局域振动模式较多,这也是样品法向光谱发射率较高,热辐射特性较好的原因.  相似文献   

5.
戴春娟  刘希琴  刘子利  刘伯路 《物理学报》2013,62(15):152801-152801
采用蒙特卡罗方法, 运用MCNP4C程序研究了碳化硼含量20%–40%、中子能量200 eV–15 keV、材料厚度0.3–2 cm对B4C/Al复合材料中子屏蔽性能的影响. 结果表明: 碳化硼含量与中子透射系数呈一次线性下降关系; 同含量的碳化硼, B4C/Al材料的中子屏蔽效果要大大优于聚乙烯碳化硼材料; 在等厚度条件下, 模拟试样B20等的中子屏蔽效果要优于水、铜、混凝土等常规屏蔽材料; 材料厚度与中子透射系数呈指数下降关系, 且单位厚度的增加对中子透射系数改变很大; 含硼量对热中子透射系数影响很大; 在热中子能区, 中子每单位能量的变化对中子透射系数改变较大; 在慢中子能区, 中子每单位能量的变化对中子透射系数改变很小. 关键词: 中子透射系数 蒙特卡罗 铝基复合材料 碳化硼  相似文献   

6.
解决铜基触点材料因易氧化而生成不导电物质导致触点失效的关键在于提高材料的导电性能,基于导电陶瓷La2NiO4因其具有导电性能,论文采用溶胶凝胶法制备获得了导电陶瓷La2NiO4粉体,用粉末冶金法制备出致密Cu/La2NiO4复合材料并进行微观形貌观察和物相分析。经过电弧烧蚀后,观察表面烧蚀形貌,探讨氧化层的微观组织,并进行温升测试。研究结果表明,电弧烧蚀后的Cu/La2NiO4复合材料表面有裂纹并且触点表面有多种侵蚀形貌特征并存,氧化层可能因接触力的作用而脱落以提高导电性能。本论文的研究工作表明,采用铜掺杂导电陶瓷La2NiO4的方法,可以有效提高电触点材料电弧烧蚀后的导电性。  相似文献   

7.
采用水热法和化学共沉淀法分两步合成了ZnO/CoFe2O4复合体.吸波性能测试结果表明,ZnO/CoFe2O4复合体吸波性能有所提高.这主要归因于CoFe2O4和ZnO的复合,实现了阻抗匹配,充分利用了CoFe2O4铁氧体的磁损耗和ZnO材料的介电损耗,从而获得性能优越的吸波剂材料.  相似文献   

8.
采用半固态搅拌铸造法制备Al Si7-Si C复合材料,并利用真空压铸工艺实现了其近净成形,结合第一性原理计算方法研究了共晶Si对Si C颗粒和基体界面结合强度的影响.结果显示,在Al Si7-Si C复合材料中,发现较为严重的共晶Si偏析现象,当Si C颗粒同时处于共晶Si和α-Al边界时,形成了少量的共晶Si夹杂、被大量共晶Si包裹、完全被共晶Si包裹三种典型的界面.第一性原理计算结果显示,在C端和Si端的Si/Si C界面中,弛豫后top Si1配位方式具有最大的粘附功,与Al/Si C界面相比,Si/Si C界面具有更高的结合强度.Si偏析相提高了界面处的电荷密度,因而具有更好的界面结构稳定性.  相似文献   

9.
对ITER高性能氦气密复合材料轴向绝缘子的性能作了全面的试验测试研究分析,并简单的介绍了一下绝缘子的结构和工艺设计。试验测试结果表明:绝缘子能够承受室温到液氮温度50次冷热循环冲击,耐电压等级56kV、耐气压4MPa、耐拉压2000N、耐弯矩100Nm、耐扭矩100Nm的参数要求。绝缘子在电绝缘性能、机械性能、热冲击性能和气密性方面都能满足ITER磁体系统的技术要求。  相似文献   

10.
模拟了0.7Pb(Mg1/3Nb2/3)O3-0.3PbTiO3(PMN-0.3PT)单晶1-3型压电复合材料的性能与单晶体积分数的关系,得出性能最优时压电相的体积分数为64%, 在这一体积分数下,采用切割-填充法,并使用了不同类型的环氧树脂填充制备复合材料.系统地研究了聚合物相对复合材料性能的影响,研究表明,减小聚合物相的刚度系数c和密度ρ有利于提高复合材料的性能,且聚合物相与压电相的结合强度对性能的影响非常明显,制备的PMN-0.3 PT单晶1-3型复合材料的厚度伸缩机电耦合系数kt高达90.1%,压电系数d33大于1000pC/N,机械品质因数Qm为10.39,声阻抗Z也大大降低,性能明显优于传统的Pb(ZrxTi1-x)O3(PZT)陶瓷及其1-3复合材料,在压电换能器和传感器中显示出广阔的前景. 关键词: PMN-PT单晶 压电复合材料 压电相 聚合物相  相似文献   

11.
Aluminum (Al) is one of the environmental stressors that induces formation of reactive oxygen species (ROS) in plants. Hydrogen peroxide (H2O2) and H2O2-generated apoplast diamine oxidase (DAO) activity were detected cytochemically via transmission electron microscopy (TEM), in pea (Pisum sativum L.) root nodules exposed to high (50 μM AlCl3, for 2 and 24 h) Al stress.The nodules were shown to respond to Al stress by disturbances in infection thread (IT) growth, bacteria endocytosis, premature degeneration of bacteroidal tissue and generation of H2O2 in nodule apoplast. Large amounts of peroxide were found at the same sites as high DAO activity under Al stress, suggesting that DAO is a major source of Al-induced peroxide accumulation in the nodules. Peroxide distribution and DAO activity in the nodules of both control plants and Al-treated ones were typically found in the plant cell walls, intercellular spaces and infection threads. However, 2 h Al treatment increased DAO activity and peroxide accumulation in the nodule apoplast and bacteria within threads. A prolonged Al treatment (24 h) increased the H2O2 content and DAO activity in the nodule apoplast, especially in the thread walls, matrix and bacteria within infection threads. In addition to ITs, prematurely degenerated bacteroids, which occurred in response to Al, were associated with intense staining for H2O2 and DAO activity.These results suggest the involvement of DAO in the production of a large amount of H2O2 in the nodule apoplast under Al stress. The role of reactive oxygen species in pea-Rhizobium symbiosis under Al stress is discussed.  相似文献   

12.
Cell wall components such as hydroxyproline-rich glycoproteins (HRGPs, extensins) have been proposed to be involved in aluminum (Al) resistance mechanisms in plants. We have characterized the distribution of extensin in pea (Pisum sativum L.) root nodules apoplast under short (for 2 and 24 h) Al stress. Monoclonal antibodie LM1 have been used to locate extensin protein epitope by immunofluorescence and immunogold labeling.The nodules were shown to respond to Al stress by thickening of plant and infection thread (IT) walls and disturbances in threads growth and bacteria endocytosis. Immunoblot results indicated the presence of a 17-kDa band specific for LM1. Irrespective of the time of Al stress, extensin content increased in root nodules. Further observation utilizing fluorescence and transmission electron microscope showed that LM1 epitope was localized in walls and intercellular spaces of nodule cortex tissues and in the infection threads matrix. Al stress in nodules appears to be associated with higher extensin accumulation in matrix of enlarged thick-walled ITs. In addition to ITs, thickened walls and intercellular spaces of nodule cortex were also associated with intense extensin accumulation.These data suggest that Al-induced extensin accumulation in plant cell walls and ITs matrix may have influence on the process of IT growth and tissue and cell colonization by Rhizobium bacteria.  相似文献   

13.
《Composite Interfaces》2013,20(2):107-117
In this work, oxidation of silicon carbide particles (SiCp) at elevated temperature and its influence on the interface layer and thermal conductivity of SiCp/ZL101 composites prepared using pressure infiltration process were investigated respectively. It is found that initial temperature for the oxidation of SiCp is about 850?°C, and that the oxidation increment of SiCp and the thickness of SiO2 layer increase with the increase in pre-oxidation temperature and time, when the oxidized temperature exceeds 1100?°C, or the duration time exceeds 2?h at 1100?°C, a small amount of ablation will take place on the SiCp, as well as the oxidized layer has some loss. The formation of SiO2 layer can provide certain interface reactions with interface layers (3.1–6.36?μm), and the higher the thickness of SiO2 layer, the thicker the interface layer in SiCp/Al composites. However, the thickness of SiO2 layer is more than 5.9?μm, which is not benefit for the formation of interface layer. With the increase in the thickness of interface layer, thermal conductivity declines, but is not linear.  相似文献   

14.
Kim KS  Lee KI  Kim HY  Yoon SW  Hong SH 《Ultrasonics》2007,46(2):177-183
The sound velocity and the attenuation coefficient of EPDM (Ethylene-propylene Diene Monomer) composites incorporated with Silicon Carbide particles (SiCp’s) of various volume fractions (0-40%) were experimentally and theoretically investigated. For the experiment a through-transmission technique was used. For the theoretical prediction, some mechanical property models such as Reuss model and Coherent Potential Approximation (CPA) model etc. were employed. The experimental results showed that the sound velocity decreased with the increase of the SiCp volume fraction up to 30% and then increased with the 40 vol% specimen. The attenuation coefficient was increased with the increasing SiCp volume fractions. The modified Reuss model with a longitudinal elastic modulus predicted most well the experimental sound velocity and elastic modulus results.  相似文献   

15.
本文通过研究喷射沉积6061Al/SiCp复合材料的超声衰减系数分析材料的阻尼性能。实验结果表明:随着超声频率逐渐增大,该材料对超声吸收和散射增强;在一定范围内,SiC体积分数的增大使吸收衰减系数增大,复合材料阻尼性能增强。  相似文献   

16.
Magnetostrictive properties have relationship with the applied orientation field during the preparation of giant magnetostrictive composites. To understand the dependence of the optimal orientation field on particle volume fraction, composites with 20%, 30% and 50% particles by volume were fabricated by distributing Terfenol-D particles in an unsaturated polyester resin under various orientation fields. Their magnetostrictive properties were tested without pre-stress at room temperature. The results indicate that as the particle volume fraction increases, the optimal orientation field increases. The main reason for this phenomenon is the packing density for the composites with higher particle volume fraction is larger than that for those with lower particle content.  相似文献   

17.
为解决低照度微弱信号探测的微光光学系统杂散光问题,研究了杂散光的原理和特性。利用光学系统建模软件LightTools对微光光学系统进行仿真建模,并开展杂散光分析。为减少杂散光,在物镜筒的筒壁加工消光螺纹,并针对不同形式的消光螺纹,开展了能量仿真模拟。仿真结果表明,采用螺距0.35 mm的消光螺纹,能够将杂散光系数从7%降低到4%。仿真分析结果与实验结果一致,为其他微弱信号探测光学系统在设计阶段对杂散光进行消除提供了指导。  相似文献   

18.
We present a simple way to synthesize FePt and ZnO (wide-band-gap semiconductor) nanoparticle composites. The FePt nanoparticles were fabricated using the method reported by Sun et al. By controlling the heating rate, 3 nm FePt nanoparticles were synthesized. Well-dispersed FePt and ZnO nanoparticle composites were prepared by further adding zinc acetate and oleyl amine into the 3 nm FePt nanoparticle dispersion. By controlling the molar ratio of the FePt and zinc acetate, FePt and ZnO nanoparticle composites with different FePt particle fractions were obtained. The intensity of photo luminescence spectra of the nanoparticle composites increases very much with decreasing FePt particle fraction, whereas the peak position shifts a little. After annealing at 550 °C for half an hour, the nanoparticle composites become magnetically hard or semi-hard with coercivity much dependent on the FePt particle volume fraction. The coercivity of the composites increases with annealing temperature. The composites hold the promise of applications in new generation recording and/or optical devices.  相似文献   

19.
A hybrid, Al?+?Al3Ni metallic foam was synthesized in situ via laser engineered net shaping (LENS®) of Ni-coated 6061 Al powder in the absence of a foaming agent. During LENS® processing, the Ni coating reacted with the Al matrix, resulting in the simultaneous formation of a fine dispersion of Al3Ni, and a high volume fraction of porosity. As a reinforcement phase, the intermetallic compound formed particles with a size range of 1–5?µm and a volume fraction of 63%, with accompanying 35–300?µm pores with a 60% volume fraction. The microstructure of the as-deposited Al?+?Al3Ni composite foams was characterized using SEM, EDS, XRD and TEM/HRTEM techniques. The evolution of the microstructure was analyzed on the basis of the thermal field present during deposition, paying particular attention to the thermodynamics of the Al3Ni intermetallic compound formation as well as discussing the mechanisms that may be responsible for the observed porosity. The mechanical behavior of the as-deposited material was characterized using compression and microhardness testing, indicating that the yield strength and hardness are 190?MPa and 320 HV, respectively, which represents an increase of over three times higher than that of annealed Al6061, or similar to heat-treated Al6061 fully dense matrix, and much higher than those of traditional Al alloy foams, and with a low density of 1.64?g/m3.  相似文献   

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