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1.
采用高能球磨方法制备AgSnO_2复合粉末,将球磨粉末冷喷涂到铜基板上,能够获得几毫米厚度的较致密的AgSnO_2触点涂层。850℃退火后涂层发生进一步致密化并且在原始粉末颗粒边界形成富银区,涂层材料硬度略为降低。电弧侵蚀和电接触试验表明,冷喷涂的AgSnO_2涂层材料具有低而稳定的接触电阻,能够满足触点的基本性能要求。  相似文献   

2.
本文以BaCO3、MgO、Ta2O5为原料,采用固相反应法合成了Ba(Mg1/3Ta2/3)O3(简称BMT)陶瓷粉末,利用大气等离子喷涂技术制备了BMT/YSZ双层陶瓷涂层。利用XRD、SEM和金相显微镜检测了BMT粉体及涂层的物相组成和显微结构。采用水淬法考核了涂层的抗热震性能。结果表明:1450℃下煅烧4h可合成出具有复合钙钛矿结构的BMT粉末,粉末具有良好的高温相结构稳定性。等离子喷涂制备的BMT/YSZ涂层组织致密,涂层系统中各界面结合紧密。涂层在室温至1150℃间热震9次后发生片状剥落,剥落位置位于BMT层间,BMT材料低的断裂韧性和第二相Ba3Ta5O15的存在是导致涂层失效的主要原因。  相似文献   

3.
纳米结构稀土硅酸盐涂层被认为是未来新型环境障涂层的发展方向,其中 Yb2 SiO5 由于与中间层莫来石的热物性能匹配良好、优异的抗水氧腐蚀能力成为非常有发展前景的环境障涂层面层候选材料。 从材料制备的角度出发, 探索纳米结构 Yb2 SiO5 喂料制备工艺并对喂料进行物相、组织结构和性能表征。 采用喷雾造粒加固相烧结的方法制备了纳米结构 Yb2 SiO5 喷涂粉体喂料,探索了制备高纯度 Yb2 SiO5 的固相烧结工艺,后续通过等离子处理改善粉体喂料的喷涂性能。 借助 X 射线衍射仪研究了粉体喂料的物相,采用扫描电镜、透射电镜研究了粉体喂料的形貌与微观结构。 结果显示,固相烧结工艺采用在 1500 ℃下保温 4 h,再将得到的粉体喂料等离子处理可得到高纯度的 Yb2 SiO5 喷涂粉体喂料,等离子处理之后的喂料为纳米结构,喂料粒度分布均符合等离子喷涂要求,喂料具有良好的流动性和致密性。  相似文献   

4.
航空发动机的效率与转动叶片和机匣之间的间隙密切相关。为了控制转子和静子之间的间隙,需要在机匣表面制备可磨耗的封严涂层。在发动机的高温端,ZrO2-8wt% Y2O3涂层是经常采用的封严涂层基体。涂层中的孔隙可以增加涂层的可磨耗性。本文利用聚苯酯(PHB)增加等离子喷涂的ZrO2-8 wt% Y2O3涂层的孔隙率。为了避免聚苯酯在等离子喷涂过程中的烧损,利用溶胶-凝胶法在聚苯酯颗粒表面沉积一层TiO2层。文中将讨论采用此方法制成的涂层的形态、孔隙率、硬度和可磨耗性。结果表明,在喷涂粉末中混合包覆型的聚苯酯后,涂层的孔隙率将会得到提升,涂层硬度将会下降。磨耗试验的结果表明涂层的磨耗深度随着涂层孔隙率的增加而增加。  相似文献   

5.
采用喷涂工艺在烧结钕铁硼磁体表面制备了不同纳米 CeO2 掺杂量的 CeO2 / Zn-Al 复合涂层。 利用扫描电子显微镜、显微硬度仪、盐雾试验箱和电化学工作站对 CeO2 / Zn-Al 复合涂层的微观结构、力学性能及耐腐蚀性能进行表征分析。 结果表明:CeO2 纳米颗粒较均匀弥散分布于 Zn-Al 涂层中,不仅能够增加 Zn-Al 涂层的硬度,而且可以提高 Zn-Al 涂层的屏蔽性能,CeO2 / Zn-Al 复合涂层耐中性盐雾试验能力高达 720 h。 添加的 CeO2 颗粒能够隔绝 Zn-Al 涂层中的锌铝薄片之间的直接接触,起到绝缘作用,延长了腐蚀介质渗入钕铁硼基体的腐蚀通道。  相似文献   

6.
本研究以AgSnO2电接触材料为研究对象,借助高速摄像技术并与电接触试验机组成电接触-高速摄像试验体系,观测电触头对在不同负载条件下熔桥行为的基本特征和规律,并进行定量测量研究,同时通过扫描电镜(SEM)和能谱分析(EDS)对熔桥行为后触头表面的微观结构和元素分布进行分析。结果表明,AgSnO2触头熔桥演化行为可分为接触区域熔化、熔桥稳定存在和熔桥失稳及断开三个阶段,熔桥和电弧现象可以同时存在,并且存在一定的协同和竞争关系,AgSnO2触头材料的熔桥尺寸为微米级(0.027-0.295 mm),熔桥直径随电流的增大而增大,熔桥长度随电流的增大而减小,熔桥演化行为过程中熔桥形状依次表现为墩粗型、圆柱型和哑铃型,熔桥行为会改变触头的表面形貌和元素分布。  相似文献   

7.
高温耐磨涂层是航空发动机关键摩擦副可靠使用的重要保障,鉴于其服役环境日益严苛复杂,进一步提高涂层的高温耐磨性能是十分必要的。利用激光辅助热喷涂技术制备 NiCoCrAlYTa / ZrO2 / BaF2·CaF2 高温耐磨涂层,利用 SEM、EDS 分析高温耐磨涂层的横截面微观组织及化学成分,研究 ZrO2 / BaF2·CaF2质量分数、激光功率及扫描速度对耐磨涂层微观组织、力学性能及高温耐磨性能的影响。结果表明:激光辅助处理可以诱导耐磨涂层表面形成具有树枝状结构的 ZrO2陶瓷层; 当激光功率为 80 W,扫描速度为 8 mm / s,喷涂粉末为 75 wt.% NiCoCrAlYTa+25 wt.% ZrO2 / BaF2·CaF2时,制备涂层的微观组织、综合力学性能及高温耐磨性能达到最好;在此工艺参数下,涂层顶部的 ZrO2 陶瓷层最为致密均匀,其平均纳米硬度为 13.6 GPa,平均弹性模量为 182.5 GPa,800 ℃时的磨损率为 2.7×10?5 mm3 ·N?1 ·m?1 。将高温耐磨涂层的组分设计与激光辅助热喷涂工艺相结合,可为提高涂层综合性能的提供解决途径。  相似文献   

8.
采用超音速大气等离子喷涂制备全包覆TiB2-SiC涂层,研究了TiB2-SiC涂层在400和800 ℃的氧化性能,并探究其氧化机理。对TiB2-SiC涂层在900 ℃下的抗铝熔盐腐蚀性能进行研究,并探讨其耐熔盐腐蚀机理。结果表明,超音速大气等离子喷涂制备的TiB2-SiC涂层具有良好的抗氧化性,在400 ℃的氧化速率常数为1.92×10-5 mg2·cm-4·s-1,在800 ℃的氧化速率常数为1.82×10-4 mg2·cm-4·s-1。超音速大气等离子喷涂制备的TiB2-SiC涂层在900 ℃下具有良好的抗熔盐腐蚀性能,熔盐腐蚀后TiB2-SiC涂层都保持致密结构,未发生涂层的开裂及剥落。  相似文献   

9.
为了探究MnCo2O4尖晶石涂层作为固体氧化物燃料电池的金属连接体表面涂层的性能,使用溶胶-凝胶法制备出纯净的前驱体粉末,再使用电泳沉积方法制备出致密的MnCo2O4尖晶石涂层,利用SEM、EDS和XRD等表征手段观察分析MnCo2O4尖晶石涂层的相结构和微观组织形貌。采用“四探针法”测量MnCo2O4尖晶石涂层800℃氧化200h前后的面比电阻使用拉拔法完成不同界面粗糙度下的涂层结合强度测试,并用有限元仿真加以验证。结果显示,MnCo2O4尖晶石涂层结构均匀,致密度较好。相较于AISI430不锈钢基体来说,在800℃空气中氧化200h,抗氧化性提高了接近3倍。且中温面比电阻小于SOFC金属连接体规定的极限值。此外,基体表面粗糙度可以有效的增加涂层与基体的机械咬合作用,但同时也会导致应力集中,出现缺陷,从而降低了结合强度。  相似文献   

10.
选用TiO2作为触头材料的添加剂,采用粉末冶金法制备了6种不同第二相(SnO2)粒度的AgSnO2和AgSnO2/TiO2触头材料。研究了2种触头材料的润湿性和电接触性能。用座滴法测量了Ag与SnO2之间的润湿角,并表征了材料的湿润性,使用JF04C电接触触头材料测试系统对材料电接触性能进行了测试,分析了不同第二相粒度的触头材料的润湿性和电接触性能的变化规律。结果表明,当第二相粒度为100~300 nm时,2种触头材料的性能均优于其它粒度的触头材料。  相似文献   

11.
本文采用一种改进型镁扩散法成功制备出密度达到1.95g/cm3的MgB2超导块材。论文研究了不同的热处理条件对MgB2块材的超导转变温度(Tc)和临界电流密度(Jc)性能的影响。采用最佳热处理条件制备的MgB2超导体Tc和Jc分别达到了38.1K和0.53MA/cm2(10K,自场)。为了改进镁扩散法MgB2超导体中弱的高场磁通钉扎性能,本文还研究了nano-Pr6O11和C掺杂对MgB2超导体的临界电流密度和不可逆场(Hirr)的影响。结果表明C掺杂的MgB2超导体临界电流密度在10K,6T下达到了104A/cm2,该结果比未掺杂MgB2超导体在同样条件下性能提高了两个量级,甚至比固态反应法制备的nano-C掺杂MgB2超导体性能更好。利用该方法制备的nano-Pr6O11掺杂的MgB2超导体在10K,2T下也比未掺杂样品Jc提高达9.4倍。根据大量的实验结果和理论分析我们提出基于改进型镁扩散法和化学掺杂,包括纳米粒子和C掺杂,很有可能是一种制备高性能MgB2超导体非常有效的途径。  相似文献   

12.
由于LiFePO_4和Li_3V_2(PO_4)_3材料的特征相近,制备方法类似,提供了一种从废旧LiFePO_4和Li_3V_2(PO_4)_3混合电池中回收Li、Fe和V,再制备xLiFePO_4-yLi_3V_2(PO_4)_3的方法。在空气气氛中600℃热处理1h后,去除粘结剂PVDF使活性物质与集流体分离。调节Li、Fe、V和P摩尔比,球磨、锻烧,配制不同比例的xLiFePO_4-yLi_3V_2(PO_4)_3(x:y=5:1,7:1,9:1)复合电极材料。表征了其形貌、结构和电化学性能,结果表明,回收制备的复合材料将同时具备LiFePO_4和Li_3V_2(PO_4)_3两种材料的电化学性能,能显著改善LiFePO_4的倍率性能。  相似文献   

13.
Pure Li4Ti5O12, modified Li4Ti5O12/C, Li4Ru0.01Ti4.99O12 and Li4Ru0.01Ti4.99O12/C were successfully prepared by a modified solid-state method and its electrochemical properties were investigated. From the XRD patterns, the added sugar or doped Ru did not affect the spinel structure. The results of electrochemical properties revealed that Li4Ru0.01Ti4.99O12/C showed 120 and 110 mAh/g at 5 and 10 C rate after 100 charge/discharge cycles. Li4Ru0.01Ti4.99O12/C exhibited the best rate capability and the highest capacity at 5 and 10 C charge/discharge rate owing to the increase of electronic conductivity and the reduction of interface resistance between particles of Li4Ti5O12.It is expected that the Li4Ru0.01Ti4.99O12/C will be a promising anode material to be used in high-rate lithium ion battery.  相似文献   

14.
Spherical Li3V2(PO4)3 was synthesized by using N2H4 as reducer. The products were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results show that single-phase, spherical and well-dispersed Li3V2(PO4)3 has been successfully synthesized in our experimental process. Electrochemical behaviors have been characterized by charge/discharge measurements. The initial discharge capacities of Li3V2(PO4)3 were 123 mAh g−1 in the voltage range of 3.0–4.3 V and 132 mAh g−1 in the voltage range of 3.0–4.8 V.  相似文献   

15.
It has been shown that W–Co–C phases could dissolve a substantial amount of metals such as V, Cr and Ta, which are known to positively influence the microstructure of hardmetals with respect to uniform grain size distribution and fine grain size. This offers a tool to circumvent the conventional doping of hardmetals with individual carbides. In the present study we used double- and triple-alloyed κ-W9Co3C4 (i.e. κ-(W,V,Cr)9Co3C4 and κ-(W,V,Cr,Ta)9Co3C4) and applied a variety of sintering experiments to obtain WC–Co, WC–(Ti,Ta,Nb)C–Co and WC–(Ti,Ta,Nb)(C,N)–Co hardmetals. We also prepared κ-W9Fe3C4, alloyed κ-W9Ni3C4, and κ-W9(Fe/Ni)3C4, and used the latter for sintering.  相似文献   

16.
Kai  W.  Leu  C. J.  Wu  Y. J. 《Oxidation of Metals》1998,50(1-2):89-122
The high-temperature sulfidation behavior of 310stainless steel (310SS) with Mo and Al additions (up to10 at.%) was studied over the temperature range700-900°C in pure-sulfur vapor over the range of 10-3 to 10-1 atm. Thecorrosion kinetics followed the parabolic rate law inall cases and the sulfidation rates increased withincreasing temperature and sulfur pressure. Thesulfidation rates decreased with increasing Mo and Al contents and it wasfound that the addition of 10 at.% Mo resulted in themost pronounced reduction among the alloys studied. Thescales formed on 310SS with Mo additions were complex, consisting of an outer layer of ironsulfide (with dissolved Cr), (Fe,Ni)9S8, andCr2S3/Cr3S4(with dissolved Fe), and an inner heterophasic layer ofFe1-xS,Cr2S3/Cr3S4,NiCr2S4,Fe1.25Mo6S7.7, FeMo2S4, andMoS2. The scales formed on 310SS with Mo andAl additions had a similar mixture as above, except thatAl0.55Mo2S4 was alsoobserved in the inner layer. The formation ofMoS2 andAl0.55Mo2S4 partly blocked the transport of cations throughthe inner scale, resulting in the reduction of thesulfidation rates compared to 310SS.  相似文献   

17.
The corrosion behavior of pure Nb and three Nb Al alloys containing 12.5, 25, and 75 at.% Al was studied over the temperature range of 800–1000°C in a H2/H2S/H2O gas mixture. Except for the Nb-12.5Al alloy consisting of a two phase structure of -Nb and Nb3Al, other alloys studied were single phase. The corrosion kinetics followed the parabolic rate law in all cases, regardless of temperature and alloy composition. The parabolic rate constants increased with increasing temperature, but fluctuated with increasing Al content. The Nb-75Al alloy exhibited the best corrosion resistance among all alloys studied, whose corrosion rates are 1.6–2.2 orders of magnitude lower than those of pure-Nb (depending on temperature). An exclusive NbO2 layer was formed on pure Nb, while heterophasic scales were observed on Nb-Al alloys whose compositions and amounts strongly depended on Al content and temperature. The scales formed on Nb-12.5Al consisted of mostly NbO2 and minor amounts of Nb2O5, NbS2, and -Al2O3, while the scales formed on Nb-25Al consisted of mostly Nb2O5 and some -Al2O3. The scales formed on Nb-75Al consisted of mostly -Al2O3 and Nb3S4 atT 900°C, and mostly -Al2O3 , Nb3S4 and some AlNbO4 at 1000°C. The formation of -Al2O3 and Nb3S4 resulted in a significant reduction of the corrosion rates.  相似文献   

18.
The effects of K2O and Li2O-doping (0.5, 0.75 and 1.5 mol%) of Fe2O3/Cr2O3 system on its surface and the catalytic properties were investigated. Pure and differently doped solids were calcined in air at 400-600 °C. The formula of the un-doped calcined solid was 0.85Fe2O3:0.15Cr2O3. The techniques employed were TGA, DTA, XRD, N2 adsorption at −196 °C and catalytic oxidation of CO oxidation by O2 at 200-300 °C. The results revealed that DTA curves of pure mixed solids consisted of one endothermic peak and two exothermic peaks. Pure and doped mixed solids calcined at 400 °C are amorphous in nature and turned to α-Fe2O3 upon heating at 500 and 600 °C. K2O and Li2O doping conducted at 500 or 600 °C modified the degree of crystallinity and crystallite size of all phases present which consisted of a mixture of nanocrystalline α- and γ-Fe2O3 together with K2FeO4 and LiFe5O8 phases. However, the heavily Li2O-doped sample consisted only of LiFe5O8 phase. The specific surface area of the system investigated decreased to an extent proportional to the amount of K2O and Li2O added. On the other hand, the catalytic activity was found to increase by increasing the amount of K2O and Li2O added. The maximum increase in the catalytic activity, expressed as the reaction rate constant (k) measured at 200 °C, attained 30.8% and 26.5% for K2O and Li2O doping, respectively. The doping process did not modify the activation energy of the catalyzed reaction but rather increased the concentration of the active sites without changing their energetic nature.  相似文献   

19.
分别采用固相-水热法和球磨法制备磷酸亚铁锂-磷酸钒锂复合正极材料(LiFePO4-Li3V2(PO4)3)。电化学性能测试表明,LiFePO4-Li3V2(PO4)3复合正极材料的电化学性能远远高于 LiFePO4和 Li3V2(PO4)3单独作为正极材料的性能,并且以固相-水热法制备的复合材料性能优于以球磨法制得的复合材料。研究发现 LiFePO4-Li3V2(PO4)3复合材料有 4 个氧化还原峰,相当于 LiFePO4 和 Li3V2(PO4)3 氧化还原峰的叠加。采用固相-水热法制备的LiFePO4-Li3V2(PO4)3 复合材料形貌较为规则,且有新相物质产生,这是导致其电化学性能较好的原因。  相似文献   

20.
Lanthanum carbonate nanoparticles were synthesized from the reaction of lanthanum acetate and Na2CO3 under sonication via sonochemical method. Lanthanum hydroxide nanoparticles were prepared by facial hydrothermal processing from the resulted product at 110 °C for 24 h. The role of surfactant, calcination temperature and sonication time were investigated on the morphology and particle size of the products. Products were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray photoelectron spectrum (XPS), and Fourier transform infrared (FT-IR) spectra. La2O3 nanoparticles were obtained by calcinations of the nanoparticles of lanthanum carbonate at 600 °C.  相似文献   

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