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1.
《Ceramics International》2022,48(6):8155-8168
In the present study, the effect of oxy-acetylene flame angle on the erosion resistance of SiC/ZrB2–SiC/ZrB2 multilayer coatings with the gradient structure was investigated. To this aim, first, the SiC inner layer was applied by the reactive melt infiltration (RMI) technique; then ZrB2 and ZrB2–SiC layers with 10, 20 and 30%wt. SiC were applied on graphite by the plasma spraying technique. To prevent the oxidation of ZrB2 and SiC particles, the plasma spraying process was performed by a solid protective shield. To evaluate the performance of the coatings in erosive environments, the samples were exposed to oxy-acetylene flame at the angles of 30°, 60° and 90° for 360 s; the destruction mechanism of SiC/ZrB2–SiC/ZrB2 multilayer coatings appeared to be controlled mechanically and chemically. The results of the erosion test showed that at the low flame angles of about 30°, due to the shear forces of oxy-acetylene flame, mechanical erosion overcame the chemical one. With increasing the flame angle, due to raising the surface temperature, chemical erosion overcame the mechanical one; so, most chemical destruction occurred at the flame angle of 90°. Also, the results of the erosion test showed that the total chemical and mechanical destruction at the angle of 60° was greater than that in other angles. Also, among the coatings tested, SiC/ZrB2- 20% wt. SiC/ZrB2 coatings had the best erosion resistance; so, the weight changes under the oxy-acetylene flame at the angles of 30° and 60°, respectively, were about ?0.038%. and ?0.355%; meanwhile, at the angle of 90°, it was about +4.3%.  相似文献   
2.
In order to reveal the mechanism of water fog explosion suppression and research the combined effect of water fog and obstacle on hydrogen/air deflagration, multiple sets of experiments were set up. The results show that the instability of thermal diffusion under lean combustion conditions is the main influencing factor of hydrogen/air flame surface instability, and the existence of water fog will aggravate the hydrogen/air flame surface instability. When obstacle is not considered, 8 μm, 15 μm, 30 μm water fog can significantly reduce the flame velocity and explosion overpressure of hydrogen/air, 45 μm fine water fog plays the opposite role. When considering the relative position of the water fog release position and the obstacle, the 8 μm, 15 μm, 30 μm water fog has almost no suppression effect when released near the obstacle, but a significant suppression effect occur, when using the 45 μm water fog. In the field of theoretical research, the research results not only provide an experimental basis for the fine water fog to reduce the consequences of hydrogen explosion accidents, and the optimal diameter range used by the water fog, but also provide experimental reference for the numerical simulation of hydrogen/air explosion suppression in semi-open space, and promote the development of hydrogen explosion suppression theory. In terms of engineering applications, this study can provide a theoretical basis for the layout of fire fighting equipment in the engine room of nuclear power plants or hydrogen-powered ships.  相似文献   
3.
The plasma spray technique was well proven in producing metal oxide based gas sensors in the last two decades using different powder feedstocks. However, limited research was made to fabricate hydrogen gas sensor from tin oxide layer coated over tungsten oxide layer. This paper attempts to interpret the hydrogen gas sensing performances of plasma sprayed coating derived by depositing tin oxide layer over tungsten oxide (SnO2/WO3) layer. Plasma sprayed SnO2/WO3 sensor showed maximum response of 90% at 150 °C in contrast to stand-alone WO3 (89% at 350 °C) and stand-alone SnO2 (89% at 250 °C). The lower operating temperature of SnO2/WO3 sensor without compromising gas response was attributed to the WO3–SnO2 hetero-junction. SnO2/WO3 sensor showed selective sensing towards hydrogen with respect to carbon monoxide and methane gases. This sensor also possessed repeatable characteristics after 39 days from the initial measurement. In a nut-shell, plasma spayed SnO2/WO3 sensor showed stability of base resistance, repeatability after successive response and recovery cycles, selective sensing towards 500 ppm H2 with significant magnitude of gas response of 90%, response time of 35 s and recovery time of 269 s at a temperature of 150 °C.  相似文献   
4.
《Ceramics International》2022,48(20):29601-29613
Sliding wear behaviors of atmospheric plasma-sprayed Yttria Stabilized Zirconia (YSZ) coating mated with four metallic or ceramic counterparts (Si3N4, Al2O3, GCr15 and ZrO2) were investigated. It has been found that YSZ coatings in contact with Si3N4 and GCr15 show better tribological performances than the other cases, which is due to the formation of the tribolayer mainly consisting of Si3N4 and Fe2O3 respectively on the worn surfaces. In the case of YSZ coating-Al2O3 and YSZ coating-ZrO2 tribopairs, the wear debris are more irregular and larger in size, resulting in severe abrasive wear and brittle fracture of debris particles. In particular, the specific wear rate of YSZ coating sliding against GCr15 is negative due to the significant material transfer of the tribo-oxide layer, while that of YSZ coating sliding against ZrO2 is the highest. Amorphization of the wear particles appears in the four cases due to the repeated mechanical action. It has been demonstrated that the wear of YSZ coating deteriorates with the increased flash temperature between the contact surfaces during rubbing process.  相似文献   
5.
This paper presents new results of studying the influence of parameters of microplasma spraying (MPS) of Ti wire on the structure and properties of Ti coatings. Based on the design of the experiment and the results of the SEM study, certain spraying modes were chosen to form the desired composition and structure of the Ti coating.  The dense sublayer (up to 300 µm thick) provides good adhesion to the substrate, and a porous top layer can accelerate the coated implant ingrowth with the bone.  This technology is developed for the manufacture of coated endoprosthesis implants.  相似文献   
6.
臭氧氧化-循环喷淋法处理钨钼选矿废水   总被引:4,自引:0,他引:4  
采用臭氧氧化-循环喷淋法去除钨钼选矿废水中COD,研究了pH值、臭氧流量、循环频率对COD去除效果的影响。结果表明: 废水COD去除率随pH值、臭氧流量、循环频率增大而增加,在pH值为10、臭氧流量3.0 L/min、循环频率4.0次/min条件下,氧化120 min后废水COD含量由131 mg/L降至11.5 mg/L,COD去除率达91.2%,满足《污水综合排放标准》(GB 8978-1996)一级标准。与O2、NaClO处理废水COD的对比试验结果表明,循环喷淋法结合O3表现出较好的COD去除效果。  相似文献   
7.
设计开发一种具有高通量、低流阻特征的空心锥喷嘴,并通过理论与实验方法研究空心锥喷嘴的喷淋性能,基于准自由涡理论建立空心锥喷嘴内部流体流动的数学模型,阐明流量系数、喷淋锥角、喷嘴流量与喷嘴结构参数之间的定量关系,并利用多效蒸馏海水淡化喷淋实验台对理论计算结果进行实验测试和验证。研究结果表明:正常工作状态下喷嘴流量系数、喷淋锥角、喷淋流量等参数理论值与测量值之间的误差小于5%,验证了设计模型的准确性。同时根据实验测试数据,拟合得到该类型空心锥喷嘴喷淋锥角与雷诺数之间的经验公式,可为蒸馏海水淡化用大流量空心锥喷嘴的结构设计、工艺选型提供理论指导和数据支持。  相似文献   
8.
在气相色谱-氢火焰检测器的基础上建立了同时测定腌制鱼干中9种N-亚硝胺类化合物的方法。采用碱液加热处理结合二氯甲烷萃取的方法提取腌制鱼干的N-亚硝胺,经棷壳活性炭净化,C18固相萃取(SPE,Solid Phase extraction)小柱富集,样液用DB-WAXETR极性柱(30 m×0.25 mm,0.25 μm)进行色谱分离,柱温采用程序升温。结果显示:该方法下的9种N-亚硝胺类化合物在0.05~5 μg/mL浓度范围内线性良好(R2>0. 999);检出限和定量限范围分别为0.05~0.29 μg/mL和0.18~0.95 μg/mL;回收率和RSD分别为76.8%~129.5%和2.29%~15.5%。对市售的50种腌制鱼干进行检测,N-亚硝基二乙胺(NDEA,N-nitrosodiethylamine)、N-亚硝基哌啶(NDIP,N-Nitrosopiperidine)N-亚硝基吡咯烷(NPYR,N-Nitrosopyrrolidine)检出率分别达到20%、20%、24%,只有一种样品的N-亚硝基二甲胺(NDMA,N-nitrosodimethylamine)超过国标限量规定(4 μg/kg)。  相似文献   
9.
衣康酸改性苯丙胶乳及其在阻燃性空气滤纸中的应用   总被引:1,自引:1,他引:0  
本研究采用衣康酸作为功能性单体对苯丙胶乳进行改性,并将改性苯丙胶乳与阻燃剂复配,以浸渍施胶的方式对阻燃性空气滤纸的性能进行改善。研究表明,经衣康酸改性后的苯丙胶乳颗粒平均粒径为0. 0868μm,比改性前降低34. 7%,机械稳定性、稀释稳定性及固含量均表现良好;当衣康酸用量为2%(占单体总质量)时,浸渍改性苯丙胶乳使纸张透气度降低约2. 27%,挺度及耐破度达最优值,分别为3. 40 mN?m和290 kPa,比浸渍改性前的苯丙胶乳分别提高了27. 8%及18. 4%。将阻燃剂与改性苯丙胶乳按质量比1:1.4进行复配后对空气滤纸原纸浸渍后发现,纸张的挺度、耐破度及极限氧指数达4. 07 mN?m、301 kPa和30. 9%,满足我国有关阻燃性空气滤纸行业标准的性能要求。  相似文献   
10.
为提高Lyocell织物的阻燃效果,对天然磷化物植酸进行铵化改性,并以双氰胺为催化剂应用于Lyocell织物的阻燃整理。利用傅里叶红外光谱仪、扫描电子显微镜、热重分析仪,测定了阻燃整理Lyocell织物的特征红外吸收、表面形貌以及热稳定性能。对阻燃织物进行了垂直燃烧实验,测定了织物的燃烧性能,并对整理织物的耐洗性进行了测试。结果表明:与未整理Lyocell织物相比,阻燃整理后织物的吸热降解质量损失率下降了20.11%,800 ℃ 时热解残炭量提高了27.98%,垂直燃烧的损毁长度下降至3.4 cm;极限氧指数高达36.6%,达到难燃的级别;且阻燃织物经20次标准洗涤后,仍能达到国家B2标准。  相似文献   
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