PV Curves and Modeling of Reaction Film Failure in Gear Lubrication

  • 齿轮润滑中PV曲线新特性及计算模型
  • 来源:互联网摘选更新时间:2026-07-13 16:42:16

  • 重点词汇
  • modelingn.造型(术);(图画等的)立体感;模特儿职业;
  • PVabbr.page view 页面浏览量;photovoltaic 光电(池)的;peak voltage 峰(值电)压;present value 现值;
  • filmn.影片;电影;胶片;薄层;
  • andconj. 和;与;而且;于是;然后
  • gearn.齿轮;(特定用途的)器械,装置;(做事的)速度,努力;(某种活动的)设备,用具,衣服;传动装置;挡;排挡;衣服;毒品;所有物
  • reactionn.反应(能力);不良反应;化学反应;抗拒,反对;
  • curvesn.曲线;弯曲;曲面;弧线;(投向击球员的)曲线球
  • ofprep. 关于;属于…的;由…制成;
  • 相关例句
1、

Study on surface reaction film of gear teeth

齿轮表面反应膜的研究

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2、

Simulation Photochemical Smog From Reaction Using Gear Algorithm

Gear方法模拟光化学烟雾形成反应

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3、

A Study of Reaction Degree for Isoprene-Maleic Anhydride Addition Reaction by Capillary Gas Chromatography

毛细管气相色谱法研究异戊二烯和马来酸酐的反应程度

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4、

A method for determining 3-Amino-1-Propanal in the reaction system by Gas Chromatography with capillary column ( SE-54) and FID detector was established.

采用气相色谱法,在SE-54石英毛细管色谱柱上,以氢火焰离子化检测器,分离测定了反应液中的3-氨基丙醇。

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5、

In this paper, the control from the chemical reaction and gas chromatography-mass spectrometry ( GC-MS) and high performance liquid chromatography/ diode array detector ( HPLC/ DAD) combined with two aspects of the 4-amino-azobenzene and detection methods.

该文从化学反应条件的控制和气相色谱-质谱(GC-MS)和高效液相色谱/二极管阵列检测器(HPLC/DAD)联用两方面,探讨了4–氨基偶氮苯的检测方法。

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6、

Influence of Cross Gas Reaction on Gas Detection Device

交叉气体反应对气体检查装备的影响

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7、

The simultaneous addition of H2O and SO2 to the mixed reaction gas caused a significant decrease of activity, which was attributed to the decrease in the chemisorption of NO on the catalyst in the presence of SO2 according to temperature-programmed desorption ( TPD) result.

将H2O和SO2同时加入反应混合气,引起NO还原活性较大幅度降低,结合程序升温脱附实验结果,认为可能是由于存在SO2时,Ag/Al2O3催化剂吸附NO的能力降低。

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9、

In the experiment, the mixture of N_2 and NH_3 is used as the reaction gas, then the sample by the methods of scanning electron microscope ( SEM), X-ray diffraction ( XRD) and Raman scanning is analyzed.

使用N2和NH3的混合气体进行反应,并对样品进行了电子显微镜扫描(SEM),X射线衍射(XRD)和Raman散射分析。

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10、

To raise the temperature, flow of the reaction gas and the film humidity can help to improve the battery performance, the influence on the battery performance from the cathodic oxygen flow is greater than the anode hydrogen flow. 3.

适当的提高温度、反应气体流量和膜湿度有助于提高电池性能,阴极氧气流量对电池性能的影响要大于阳极氢气流量的影响。

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11、

The effects of substrate temperature, reaction gas pressure, and RF power on the structural and optical properties of the prepared films are studied. Their optimal values are 700 ℃, 2 × 133Pa and 200W, respectively.

实验结果表明,衬底温度、反应气压及射频功率对金刚石膜的结晶习性、表面粗糙度及光透过率均有很大程度的影响,其最佳值分别为700℃,2×133Pa和200W。

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12、

The results show that the size of catalyst, which depends on the choice of carrier, the temperature of the catalyst preparation and the flux of the reaction gas, has great effect on the growth of carbon nanotubes.

实验表明:载体的选择、催化剂的制备温度和反应气体的流量对纳米碳管生长有较大的影响,而制备的催化剂粒度越小,越有利于纳米碳管的生长;

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13、

The layer number of the graphene films is controlled by modulating the experimental conditions of the CVD process, such as reaction gas, the thickness of Ni film, growth time, and etc..

通过对反应气氛、镍膜厚度及生长时间的调控,实现了对石墨烯薄膜层数及均匀性的调节。

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14、

The results show that the equilibrium conversion rate of CO2 decreases with increasing temperature, decreasing pressure and the ratio of n ( H2)/ n ( CO2) in the reaction gas.

结果表明,CO2平衡转化率随温度的升高而下降,增大反应体系的压力和采用高的氢碳比,对提高CO2平衡转化率有利。

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15、

Based upon above research, effects on the mass flow rate of powders of inventory of powders, fluidization gas velocity, reaction gas velocity and void of packed bed are discussed e.

讨论测量细颗粒质量流率的方法,以此为基础研究了细颗粒藏量、流化气速、反应气速及固定床的空隙率对细颗粒质量流率的影响。

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16、

The height computation model of fluidize-bed showed that the bed height is mainly influenced by catalyst filling amount, linear speed of reaction gas and particle size of catalyst.

流化床高度计算模型表明,床层高度主要受催化剂装填量、反应气体线速和催化剂粒度的影响。

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17、

The steady operation condition proton exchange membrane fuel cell studied, the results show that it improve the cell performance by increasing cell temperature, humidifying reaction gas and increasing operation pressure.

研究了电池的稳态操作,结果表明提高电池操作温度、反应气进行增湿、提高电池操作压力等可提高电池性能。

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18、

Fine fuel cell structures and scales are benefit to the uniform distribution of reaction gas, the discharging of production, the reduction of fuel cell internal resistances.

良好的电池结构和尺寸将有利于反应气体的均匀分配、产物的排出以及电池内阻的减小。

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19、

Through contrast tests, the best deposition process is obtained by setting deposition time as invariant, the reaction gas flow rate and deposition temperature as variables.

通过对比试验,以沉积时间作为不变因素,反应气体流量和沉积温度作为变量进行工艺研究,分析了工艺参数对成膜质量的影响。

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20、

The effects of the fuel cell operating temperature and reaction gas humidification temperature on the performance and power density of PEM fuel cells are analyzed.

分析了电池加热温度,氢气和空气的加湿温度对PEM燃料电池性能和功率密度的影响。

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