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101.
以氧化铝粉末为基体,添加具有粘结性和一定陶瓷产率的硅树脂粉末,通过干压成型和无压烧结制备出氧化铝基陶瓷型芯,重点研究了硅树脂添加量对氧化铝基陶瓷型芯性能的影响。结果表明:硅树脂在裂解过程中会形成二氧化硅,二氧化硅与氧化铝基体发生反应形成新相莫来石。由于硅树脂在交联和裂解过程中会释放大量气体,导致烧结体失重,且气体的逸出会抑制由烧结引起的收缩,因此,随着硅树脂添加量增加,产生的气体量增加,烧结体的失重率增加,收缩率降低。硅树脂含量的增加使得烧结体的气孔率变大和体积密度减小,烧结体的室温抗弯强度逐渐减小。硅树脂的添加虽然降低了其室温强度,但是保证了陶瓷型芯的尺寸精度。  相似文献   
102.
段琰楠 《四川建材》2020,(3):149-150
山区公路工程设计过程中,必须更加重视安全分项设计,尤其是在危险路段,应妥善调查各种潜在的交通安全风险源,并根据具体的风险源类型制定针对性的安全设计方案。本文以山区危险路段的线形特点为研究背景,选取平曲线半径和横坡率两个指标作为研究对象,定量分析了两种指标对线形安全的影响,并从曲率变化协调性和行车视距合理性角度对山区危险路段安全性进行分析,提出了相应的设计参考及控制措施。  相似文献   
103.
本文研究了完全氮化的(Sm1-yCey)2Fe17Nx(y = 0、0.20、0.33、0.40、0.45、0.50、0.67、0.80、1.00)粉末的磁性能和微观结构。当用33atomic%Ce代替Sm时,最大磁能积(BH)max从17.8 MGOe变为17.6 MGOe,几乎没有下降。相应的,性能/稀土价格比率提高了39.2%。 根据能量色散光谱(EDS)分析,Ce倾向于分布在REFe3 / REFe2晶界相中。XPS证实了(Sm1-yCey)2Fe17Nx中Ce离子的价态变化。  相似文献   
104.
针对现有随钻轨迹仪工作时间短、需人工同步、"数钻杆"记录钻孔深度不足等问题,采用深度实时测量技术、电源智能管理技术和数据自动同步与成图等关键技术,研制了新型随钻轨迹仪。该仪器由直线位移传感器、压力传感器、霍尔开关等组成,具有钻孔深度自动测量、电源智能管理、测量数据与深度自动匹配等功能。试验结果表明:新型钻孔轨迹仪工作稳定可靠、无需人工干预、工作时间长、生产效率高。  相似文献   
105.
Heterogeneous sensor networks (HSN) find a wide range of applications in the field of military and civilian environments, where sensor nodes are utilized to estimate the position of a target with both dynamics and control input being unknown for the purposes of tracking. In the HSN, nodes are considered active depending upon their ability to sense the target output while the others are taken passive. Accurate estimation requires local information exchange among the spatially located sensor nodes, so that the active nodes as well as the passive nodes converge simultaneously to the same value. The local information exchange among the nodes is dictated by a connected graph. By using the criterion of collective observability, a novel distributed adaptive estimation scheme is introduced via adaptive observer where the nodes are allowed to have different sensor modalities. Using the estimated information, a subset of active and passive nodes, referred to as mobile nodes, can track the moving target. By using a constant state feedback controller at each mobile node, the state and parameter estimation as well as the tracking errors are shown to be uniformly ultimately bounded. Simulation results verify theoretical claims.  相似文献   
106.
In this study, a series of full-scale high-pressure natural gas pipeline physical explosion experiments were performed, in which the overpressure of the shock waves was measured and analyzed. The concept of “physical explosion linear energy (PEXLE)” was proposed and a “PEXLE model” was established to evaluate shock waves in a cylindrical pipeline with high length–diameter ratio. Equations were fitted to describe the characteristics of peak overpressure, positive pressure duration and specific impulse. Results showed that peak overpressure of shock waves is not influenced by the length of pipeline. With the increase of the propagation distance, specific impulse first increases and then decreases. This indicates that the position of the maximum value of overpressure does not correspond with that of the specific impulse.  相似文献   
107.
Iron/ceria catalysts promoted by copper or nickel, were studied in medium temperature shift (MTS) reaction for hydrogen production and purification. Samples were characterized by X-Ray Diffraction (XRD), N2 adsorption-desorption (BET), temperature programmed reduction (TPR), scanning electron microscopy (SEM) with energy dispersive spectrometry (EDS), and transmission electron microscope (TEM) analysis. Among xFe/CeO2 (x = 2, 5, 8, 10 wt%) samples, 8Fe/CeO2 showed the best performance, due to appropriate amount and good dispersion of active phase on the support (45% CO conversion at 390 °C). Then, to enhance the CO conversion, 2% of Ni or Cu were added to the catalyst. However CO conversion using Cu promoter was lower than Ni containing one, (25 and 45%, at 300 °C, respectively.), but due to better reducibility and lack of methane production, copper was selected as promoter. Eventually, the effect of Cu loading (2, 4, 8, 12 wt %) was also investigated, and 8Fe–8Cu/CeO2, with >80% CO conversion at 390 °C, showed the best performance with appropriate stability.  相似文献   
108.
In this paper the control mechanism of solenoid valve is analyzed, which shows the solenoid valve control is actually the control of coil current. The response characteristic of coil current is related to coil inductance and resistance. The coil resistance is influenced greatly by the ambient temperature and the self-heating of coil, which affects the control precision of coil current. First, considering the heat dissipation mode of coil, the coil temperature model is established from the perspective of heat conduction, and a temperature compensation algorithm for hydraulic system pressure control is put forward. Then the hardware-in-the-loop testbed is set up by using the dSPACE platform, carrying out wheel cylinder pressurization tests with inlet valve fully opened at -40℃ and 20℃, and testing the actual pressure of wheel cylinder with the target pressures at -40℃ and 6.000 kPa/s (pressurization rate). The results show that the pressure control temperature compensation algorithm proposed in this paper accurately corrects the influence of resistance temperature drift on the response accuracy of wheel cylinder pressure. After the correction, the pressure difference is less than 500 kPa, which can meet the control accuracy requirements of solenoid valve, enriching the linear control characteristic of solenoid valve.  相似文献   
109.
In the cyber-physical environment, the clock synchronization algorithm is required to have better expansion for network scale. In this paper, a new measurement model of observability under the equivalent transformation of minimum mean square error (MMSE) is constructed based on basic measurement unit (BMU), which can realize the scaled expansion of MMSE measurement. Based on the state updating equation of absolute clock and the decoupled measurement model of MMSE-like equivalence, which is proposed to calculate the positive definite invariant set by using the theoretical-practical Luenberger observer as the synthetical observer, the local noncooperative optimal control problem is built, and the clock synchronization system driven by the ideal state of local clock can reach the exponential convergence for synchronization performance. Different from the problem of general linear system regulators, the state estimation error and state control error are analyzed in the established affine system based on the set-theory-in-control to achieve the quantification of state deviation caused by noise interference. Based on the BMU for isomorphic state map, the synchronization performance of clock states between multiple sets of representative nodes is evaluated, and the scale of evaluated system can be still expanded. After the synchronization is completed, the state of perturbation system remains in the maximum range of measurement accuracy, and the state of nominal system can be stabilized at the ideal state for local clock and realizes the exponential convergence of the clock synchronization system.   相似文献   
110.
为分析高速列车转向架构架损伤、等效应力及寿命分布特性,对构架疲劳关键测点进行动应力线路实测并对测点实测时域数据波形进行解析;基于实测应力时间历程及雨流计数法编制二维应力谱,利用Goodman等寿命方程将二维应力谱等效转换为一维应力谱;阐述线性累积损伤及非线性累积损伤模型的建立方法并对实测数据的线性累积损伤及非线性累积损伤进行了计算及对比分析;分别基于线性累积损伤理论及非线性累积损伤理论推导出各理论下的等效应力,基于实测数据对两种等效应力进行了计算及对比分析;通过结合非线性累积损伤及线性累积损伤理论计算的等效应力及不同可靠度下的材料S-N曲线计算并对比分析构架结构的疲劳寿命。研究结果表明,与非线性疲劳分析理论相比,线性疲劳分析理论对高速列车转向架构架的疲劳特性评估偏于保守。  相似文献   
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