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21.
将短切莫来石纤维、硅溶胶、B4C粉,经过1260℃烧结制备多孔骨架,以正硅酸乙酯、去离子水和乙醇配制SiO2溶胶,并将多孔骨架与SiO2溶胶浸渍,经过超临界干燥制备SiO2气凝胶复合的莫来石隔热瓦.通过热重和差热分析、X射线能谱分析,表明B4C在700℃~900℃时发生氧化,生成B2O3将短切纤维粘接到一起,莫来石多孔骨架在1500℃以下稳定存在.具有纳米级孔洞结构的SiO2气凝胶填充了多孔骨架的微米级孔洞,隔热瓦的热导率在200℃、500℃、800℃、1000℃分别下降了44.3%、33.8%、34.6%、29.5%.此外,SiO2气凝胶的复合使得抗弯和抗压强度分别提高了50%和40%.  相似文献   
22.
功能化离子液体的合成表征及其作为润滑剂的性质   总被引:3,自引:1,他引:2  
通过两步法合成了含酯基官能团的咪唑类离子液体1-乙酸乙酯基-3-甲基咪唑四氟硼酸盐,用核磁共振、红外光谱、元素分析对其进行了结构表征,证明了该合成方法的可靠性;对功能化离子液体的基本物化性质、熔点、热稳定性及其作为润滑剂的粘温性、蒸发损失、金属腐蚀性等进行了全面研究,并选择了含有相同烷基的1-丁基-3-甲基咪唑四氟硼酸盐传统离子液体进行对比,发现官能团的引入,使传统烷基咪唑类离子液体展现出不同的特性,同时发现两种离子液体均对金属表面有较强的腐蚀作用,为进一步开展功能化离子液体的摩擦学研究打下了基础。  相似文献   
23.
整体成型的固体火箭发动机复合材料连接裙有助于连接裙的减重及其使用性能的提高。本文采用RTM工艺制备出了全复合材料整体连接裙并对其进行了轴压承载性能考核。试验结果表明,RTM工艺整体成型的复合材料连接裙质量均匀,在设计载荷作用下,连接裙的轴向应变远小于0.5%的复合材料许用应变指标,连接裙的轴向表观结构刚度为40.9GPa。  相似文献   
24.
为揭示固体推进剂在长期贮存过程中的老化机理,解剖了自然贮存19年贴壁浇注的端羟基聚丁二烯橡胶推进剂装药发动机,沿着药柱径向不同位置进行了取样,并采用扫描电镜、能量色散X射线光谱仪、红外吸收光谱、交联密度等多种手段对这些样品进行了测试分析。研究发现:贴壁浇注发动机药柱不同位置推进剂的老化程度不尽相同,越靠近非金属壳体位置,推进剂的老化程度越严重。进一步深入分析表明:除了丁羟胶中双键的氧化断链和端羟基的缩合等影响推进剂老化,铝粉氧化产生的铝离子会催化丁羟胶双键与氯气或水发生加成反应生成■双键和仲醇,而铝离子迁移和分布的不均匀会引起药柱老化的不均匀性。研究结果对推进剂配方设计和防老化措施的研究具有重要意义。  相似文献   
25.
研究了一种由超高分子量聚乙烯(UHMWPE)纤维增强的新型纤维混凝土基本力学性能。针对C70等级高强混凝土,设计了四种体积掺量纤维混凝土,通过立方体抗压、劈裂抗拉和四点弯曲抗折试验,分析了纤维掺量对混凝土力学性能的影响。结果表明:UHMWPE纤维对混凝土的抗压强度增强作用不明显,但较大提高了混凝土的抗拉强度和抗折强度,且对混凝土有很好的阻裂、增韧效果。在纤维体积掺量为0.3%~0.5%时,劈裂抗拉强度提高25%以上;掺量0.5%时,弯曲抗折强度提高率超过23%。  相似文献   
26.
为合成耐海水与高耐候的丙烯酸树脂,选择甲基丙烯酸甲酯、甲基丙烯酸羟丁酯、丙烯酸异辛酯和丙烯酸已内酯,经引发剂作用,采用同步滴加法进行聚合反应,通过调节温度并测定酸价控制反应历程,并将合成的不同玻璃化温度的丙烯酸树脂配制成具有适当玻璃化温度梯度的耐海水面漆成膜树脂体系。选择HDT-90固化剂与丙烯酸成膜树脂作用,制备耐海水面漆涂层样品。性能测试结果表明,研制的耐海水面漆具有优良的耐候性和抗老化性。  相似文献   
27.
纳米二氧化硅增强硬质聚氨酯泡沫塑料的制备   总被引:8,自引:0,他引:8       下载免费PDF全文
采用功率超声,将纳米二氧化硅颗粒分散到多次甲基多苯基多异氰酸酯体系内,然后与聚醚多元醇聚合制得了纳米二氧化硅增强的硬质聚氨酯泡沫塑料。SEM分析表明,纳米二氧化硅均匀分散在聚氨酯泡沫中。在较低添加量时,纳米二氧化硅使压缩强度和冲击强度有一定提高,但会引起多次甲基多苯基多异氰酸酯粘度迅速增加,从而导致发泡反应困难,当添加量为7wt%时,压缩强度和冲击强度开始下降。  相似文献   
28.
Polyurea is an elastomeric material that can be applied to enhance the protection ability of structures under blast and impact loading.In order to study the compressive mechanical properties of SiC/polyurea nanocomposites under quasi-static and dynamic loading,a universal testing machine and split Hop-kinson pressure bar(SHPB)apparatus were used respectively.The stress-strain curves were obtained on polyurea and its composites at strain rates of 0.001-8000 s-1.The results of the experiment suggested that increase in the strain rates led to the rise of the flow stress,compressive strength,strain rate sensitivity and strain energy.This indicates that all of the presented materials were dependent on strain rate.Moreover,these mechanical characters were enhanced by incorporating a small amount of SiC into polyurea matrix.The relation between yield stress and strain rates were established using the power law functions.Finally,in order to investigate the fracture surfaces and inside information of failed specimens,scanning electron microscopy(SEM)and micro X-ray computed tomography(micro-CT)were used respectively.Multiple voids,crazes,micro-cracks and cracking were observed in fracture surfaces.On the other hand,the cracking propagation was found in the micro-CT slice images.It is essential to understand the deformation and failure mechanisms in all the polyurea materials.  相似文献   
29.
In order to accurately describe the transverse relaxation characteristic and stress relaxation modulus of HTPB coating during pre-strain thermal aging process, a one month thermal aging test was carried out at 70 C with pre-strain of 0%, 3%, 6% and 9%, respectively. The low-field 1H NMR and stress relaxation modulus tests were carried out for HTPB coating at different aging stages. The stress relaxation model considering the molecular chains was proposed according to the changes of crosslinking chain and dangling chain of HTPB coating during pre-strain aging. The results showed that with the increase of aging time, the decay rate of transverse relaxation curve became faster, the transverse relaxation time decreased, the value of combined parameter qMrl increased, the proportion of crosslinking chain decreased, while the proportion of dangling chain increased. Moreover, the stress relaxation modulus increased, the crosslinking network structure of HTPB coating became denser and the degree of cross-linking increased. At the initial aging stage, the pre-strain will destroy the crosslinking network structure of HTPB coating to a certain extent. With the increase of aging time, the effect of pre-strain will gradually weaken and the influence of aging on materials will gradually increase. The correlations between the stress relaxation model considering the molecular chains and the test results were more than 0.9950, which can accurately describe the stress relaxation modulus of HTPB coating during the pre-strain thermal aging process.  相似文献   
30.
The assessment of the real in-service-time(RIST)and the equivalent in-service-time(EIST)of double base rocket propellants(DBRPs)is of utmost importance for the safe storage and use of weapon systems as well as the efficiency of the accelerated aging plans.In this work,four DBRPs with similar chemical composition and different natural aging have been artificially aged at T = 338.65 K for 4 months with sampling every 30 days.The unaged and artificially aged samples have been investigated by vacuum stability test(VST)at five isothermal temperatures(T = 333.15 K,343.15 K,353.15 K,363.15 K,and 373.15 K).The volume of the evolved gases in VST was found to decrease with natural/artificial aging.Furthermore,the VST data were treated and subjected to principal component analysis(PCA).The results showed excellent discrimination of the DBRP samples according to their stability thermal properties.Most of the variance was described by the first principal component(PC1)whose scores were linearly correlated with the natural aging durations when PCA is applied on VST data obtained at T = 363.15 K.In light of the obtained results,a new experimental way for the estimation of the real/equivalent IST was proposed,which takes into account the impact of the natural aging of the sample.The approach predicts successfully the RIST of two similar DBRPs with a relative deviation of less than 2%.At the specific heating temperature T = 338.65 K,the developed model provides more conceivable EIST values,with asymptotic behavior against artificial aging duration evolution,thus overcoming some shortcomings of the common generalized van't Hoff formula(GvH).  相似文献   
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