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1.
近年来,激光剥蚀技术与单接收或多接收电感耦合等离子体质谱法联用(LA-(MC)-ICP-MS)得到了广泛应用,实现了由激光剥蚀系统对固体岩矿样品微区采样后产生的气溶胶输送至电感耦合等离子体质谱的同位素分析,具有原位、实时、快速的分析优势及高空间分辨率、高灵敏度、多元素及其同位素比值同时测定的优点。本文介绍了本实验室近年来开展和建立的基于LA-(MC)-ICP-MS的一系列矿物微区原位同位素分析方法,主要有含硼矿物(如电气石、白云母)的硼同位素组成、碳酸盐矿物的碳同位素组成、硫化物和硫酸盐矿物的硫同位素组成、含锶矿物(如磷灰石)的锶同位素组成、锆石的铪同位素组成,以及锡石、黑钨矿、独居石、榍石和石榴子石等矿物的U-Pb定年分析方法。  相似文献   
2.
Fully dense ceramics with retarded grain growth can be attained effectively at relatively low temperatures using a high-pressure sintering method. However, there is a paucity of in-depth research on the densification mechanism, grain growth process, grain boundary characterization, and residual stress. Using a strong, reliable die made from a carbon-fiber-reinforced carbon (Cf/C) composite for spark plasma sintering, two kinds of commercially pure α-Al2O3 powders, with average particle sizes of 220 nm and 3 μm, were sintered at relatively low temperatures and under high pressures of up to 200 MPa. The sintering densification temperature and the starting threshold temperature of grain growth (Tsg) were determined by the applied pressure and the surface energy relative to grain size, as they were both observed to increase with grain size and to decrease with applied pressure. Densification with limited grain coarsening occurred under an applied pressure of 200 MPa at 1050 °C for the 220 nm Al2O3 powder and 1400 °C for the 3 μm Al2O3 powder. The grain boundary energy, residual stress, and dislocation density of the ceramics sintered under high pressure and low temperature were higher than those of the samples sintered without additional pressure. Plastic deformation occurring at the contact area of the adjacent particles was proved to be the dominant mechanism for sintering under high pressure, and a mathematical model based on the plasticity mechanics and close packing of equal spheres was established. Based on the mathematical model, the predicted relative density of an Al2O3 compact can reach ~80 % via the plastic deformation mechanism, which fits well with experimental observations. The densification kinetics were investigated from the sintering parameters, i.e., the holding temperature, dwell time, and applied pressure. Diffusion, grain boundary sliding, and dislocation motion were assistant mechanisms in the final stage of sintering, as indicated by the stress exponent and the microstructural evolution. During the sintering of the 220 nm alumina at 1125 °C and 100 MPa, the deformation tends to increase defects and vacancies generation, both of which accelerate lattice diffusion and thus enhance grain growth.  相似文献   
3.
Bulk micromachining of single-crystal SiC has been challenging due to its extreme stability both mechanically and chemically. To address this issue, a novel tool-based electrolytic plasma etching method is proposed, with which micropatterns and micro-holes are fabricated in SiC in a hydrofluoric acid-free aqueous solution with no need for masks. The material removal is the result of the combined effects of electrolytic plasma chemistry and physics. The chemistry refers to the reaction of Si with hydroxyl radical to form various SiOx and with H to form silanes, and the reactions of C to form volatile carbon oxides or hydrocarbons, all of which are accomplished and enhanced under the electrolytic plasma atmosphere. Besides, the local high temperature of plasma thermally promotes the evaporation or dissolution of SiO2 in NaOH solution. The tool-based electrolytic plasma etching method provides alternative approaches for the fabrication of SiC-based MEMS and devices.  相似文献   
4.
Salvia miltiorrhiza Bunge has been widely used in the treatment of cardiovascular and cerebrovascular diseases, due to the pharmacological action of its active components such as the tanshinones. Plasma membrane (PM) H+-ATPase plays key roles in numerous physiological processes in plants. However, little is known about the PM H+-ATPase gene family in S. miltiorrhiza (Sm). Here, nine PM H+-ATPase isoforms were identified and named SmPHA1–SmPHA9. Phylogenetic tree analysis showed that the genetic distance of SmPHAs was relatively far in the S. miltiorrhiza PM H+-ATPase family. Moreover, the transmembrane structures were rich in SmPHA protein. In addition, SmPHA4 was found to be highly expressed in roots and flowers. HPLC revealed that accumulation of dihydrotanshinone (DT), cryptotanshinone (CT), and tanshinone I (TI) was significantly reduced in the SmPHA4-OE lines but was increased in the SmPHA4-RNAi lines, ranging from 2.54 to 3.52, 3.77 to 6.33, and 0.35 to 0.74 mg/g, respectively, suggesting that SmPHA4 is a candidate regulator of tanshinone metabolites. Moreover, qRT-PCR confirmed that the expression of tanshinone biosynthetic-related key enzymes was also upregulated in the SmPHA4-RNAi lines. In summary, this study highlighted PM H+-ATPase function and provided new insights into regulatory candidate genes for modulating secondary metabolism biosynthesis in S. miltiorrhiza.  相似文献   
5.
目的 在保证膜层耐蚀性能的前提下,降低镁锂合金等离子电解氧化过程中的能量消耗.方法 分别使用常规NaOH-Na2SiO3电解体系与自研的NaOH-Na2SiO3-Na2B4O7-Na3C6H5O7·2H2O(柠檬酸钠)低能耗电解体系,对LA91型镁锂合金进行等离子电解氧化,并探究其放电过程.采用扫描电子显微镜(SEM)、能谱仪(EDS)、掠入射X射线衍射仪(GIXRD),表征等离子电解氧化膜层的表面形貌、元素组成、物相组成.通过电化学极化曲线、盐雾试验,测试膜层的耐蚀性.结果 使用低能耗体系对镁锂合金进行等离子电解氧化处理,可将膜层的单位体积能耗降低至12.87 kJ/(dm2·μm),节约能耗约50.34%.在两个体系中制备的膜层表面均产生等离子电解氧化的特征性孔洞.低能耗体系膜层孔洞数量较少,但孔洞直径差异较大,孔隙率为14.21%;常规体系膜层孔洞大小均匀,但数量较多,孔隙率为13.93%.两个膜层表面的主要元素均为O、Mg、Na和Si.在低能耗体系中制备的膜层,主要物相为方镁石型MgO,而在常规体系中制备的膜层,物相组成较为复杂.盐雾试验和电化学极化曲线结果显示,在两种体系中进行等离子电解氧化,均能提升镁锂合金的耐蚀性.低能耗等离子氧化处理后,镁锂合金的腐蚀电流密度降低约3个数量级,腐蚀速率降低约2个数量级,自腐蚀电位正移0.261 V,有效地提升了镁锂合金的耐蚀性,并且耐蚀性的提升程度要优于常规体系.结论 使用低能耗体系电解液进行等离子电解氧化,能够形成孔洞特征不同于常规体系的等离子电解氧化膜层.与常规体系下制备的膜层相比,其厚度、孔隙率并无较大差异,但能够在节约较多能耗的情况下制备出耐蚀性能更好的等离子电解氧化膜层.  相似文献   
6.
The turbulent boundary layer control on NACA 0012 airfoil with Mach number ranging from 0.3 to 0.5 by a spanwise array of dielectric barrier discharge(DBD)plasma actuators by hot-film sensor technology is investigated.Due to temperature change mainly caused through heat produced along with plasma will lead to measurement error of shear stress measured by hot-film sensor,the correction method that takes account of the change measured by another sensor is used and works well.In order to achieve the value of shear stress change,we combine computational fluid dynamics computation with experiment to calibrate the hot-film sensor.To test the stability of the hot-film sensor,seven repeated measurements of shear stress at Ma = 0.3 are conducted and show that confidence interval of hot-film sensor measurement is from-0.18 to 0.18 Pa and the root mean square is 0.11 Pa giving a relative error 0.5%over all Mach numbers in this experiment.The research on the turbulent boundary layer control with DBD plasma actuators demonstrates that the control makes shear stress increase by about 6%over the three Mach numbers,which is thought to be reliable through comparing it with the relative error 0.5%,and the value is hardly affected by burst frequency and excitation voltage.  相似文献   
7.
This paper investigates the influence of suspension characteristics on microstructure and performance of suspensions plasma sprayed (SPS) thermal barrier coatings (TBCs). Five suspensions were produced using various suspension characteristics, namely, type of solvent and solid load content, and the resultant suspensions were utilized to deposit five different TBCs under identical processing conditions. The produced TBCs were evaluated for their performance i.e. thermal conductivity, thermal cyclic fatigue (TCF) and thermal shock (TS) lifetime. This experimental study revealed that the differences in the microstructure of SPS TBCs produced using varied suspensions resulted in a wide-ranging overall TBC performance. All TBCs exhibited thermal conductivity lower than 1 W/(m. K) except water-ethanol mixed suspension produced TBC. The TS lifetime was also affected to a large extent where 10 wt % solid loaded ethanol and 25 wt % solid loaded water suspensions produced TBCs exhibited the highest and the lowest lifetime, respectively. On the contrary, TCF lifetime was not as significantly affected as thermal conductivity and TS lifetime, and all ethanol suspensions showed marginally better TCF lifetime than water and ethanol-water mixed suspensions deposited TBCs.  相似文献   
8.
为了实现对液力耦合器机组的多点实时监控、组网传输并及时报警,设计了一种基于射频通信的液力耦合器多点温度、压力监测系统.该方案可实现现场单台接收设备同时采集并上传多台液力耦合器的状态参数,利用 LoRa 通信实现局域组网,配合相关通信协议实现高效组网、便捷监测的效果.并针对传感器设计与厂区局域网建立方面涉及到的射频传输、天线设计、组网建立、实时监控等难点重点进行方案分析,并进行必要的实验测试.测试结果表明:传感器信号质量高,传输数据稳定;LoRa 通信组网传输信号稳定、范围广,基本可满足现场使用需求.  相似文献   
9.
The effect of an external electric field on laser-generated plasma has been studied. It is observed that the laser-generated plasma can be used for the ignition of a spark in the presence of a low voltage external electric field. An eight-fold emission intensity enhancement in Cu Ⅰ spectral lines are measured as compared to the signal intensity in the absence of an external electric field.The plasma parameters remain the same initially, up to a few microseconds after the generation of plasma, and this feature makes it more interesting for the quantitative analysis of any sample using laser induced breakdown spectroscopy(LIBS). In the presence of an external electric field,fluctuations(contraction and expansion) in the laser-generated plasma are observed which increase the plasma decay time and consequently result in enhanced signal intensity.  相似文献   
10.
目的 降低TC4钛合金微小零件的铣削难度,提高表面加工质量和加工效率.方法 采用以NaAlO2为主要成分的电解液,借助等离子体电解氧化(Plasma Electrolysis Oxidation,PEO)作用,在TC4钛合金表面原位生长厚度约为20μm的疏松多孔氧化膜层.分别使用扫描电子显微镜、X射线能谱仪对氧化膜层的结构和组成进行表征,采用测力仪、白光干涉仪对氧化膜层微细铣削时的切削力和表面粗糙度进行测量.结果 氧化膜层为TC4钛合金原位生长所得,厚度较为均匀,约为20μm.结构疏松多孔,孔隙率高,孔洞分布较为均匀,与基体结合力差.与TC4钛合金相比,氧化膜层的弹性模量和硬度分别降低了79.8%和75.0%;相同切削参数下,三向铣削力分别降低了91.90%、78.13%和42.62%,表面粗糙度Ra值减小了52.6%.结论 该氧化膜层较传统膜层而言,有更加疏松多孔的结构,强度更低,可明显降低微细铣削的三向力,加工表面粗糙度明显降低,且无明显的顶部毛刺.该方法显著降低了TC4钛合金微细铣削的加工难度,有效改善了加工表面质量,验证了等离子体电解氧化的方法用于辅助铣削TC4钛合金的可行性.  相似文献   
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