1、

Experimental results show that the MRR increases with the increase of peak discharge voltage, discharge pulse-on time, discharge peak current and gas pressure, but decreases with the increase of pulse-off time and thickness of pipe wall.

材料去除率随峰值电压、峰值电流、脉冲宽度、气体介质压力的增大而增大,随脉间宽度、工具电极壁厚的增大而减小。

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2、

The method for proper determination of the time step and space interval is studied. Calculation of the gas emission rate according to gas pressure distribution is analyzed when finite difference method is applied to simulate the gas flow in coal seams.

对应用有限差分法解算煤层瓦斯流动时,如何选取合适的时间步长和空间步长、如何根据煤层瓦斯压力分布计算煤壁瓦斯涌出量等问题进行了分析和探讨。

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3、

When cooling gas pressure exceeds 1 MPa, internal cooling effect is a little bit better than external cooling.

当冷气压力达到1MPa时,内冷却效果略优于外冷却。

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4、

Methods of Improving the Thickness Distribution of Super-plastic Gas Pressure Bulging Parts

改善超塑性气压胀形零件壁厚分布的工艺方法

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5、

In plane cathode micro-hollow anode sustained discharge, the peak value of EEDF will move toward right when the third electrode voltage increases with constant current and gas pressure, but it will reach a saturated value.

在平板阴极微空阳极放电维持的辉光放电中,当电流与气压恒定时,随着第三电极电压的升高,电子能量分布的峰值右移,放电趋向高能化,但都会达到一个饱和值。

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6、

The way to determine the suitable time and space interval is put forward by investigating the variation of gas pressure gradient on wall with several time and space intervals.

通过考察选取不同时间步长和空间步长时煤壁瓦斯压力梯度的变化,提出了选取合适的时间步长和空间步长的方法。

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7、

It is found that the gas temperature in a dielectric barrier discharge increases with the increase of gas pressure.

结果表明,气体温度随气体压强的增大而增大。

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8、

The article analyses influence factors and deviation of LPG metering, including liquid volume, liquid density correcting coefficient, gas temperature and gas pressure reading etc.

分析了影响LPG卸船计量的因素及其偏差,其中包括液相容积、液相密度修正系数、气相温度和气相压力读数等。

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10、

Oxygen plasma to modify the fine-PET. The law of effects of plasma treatment time, gas pressure, discharge power on wettability, crystallinity, surface thermodynamic potential and dye up-take was discussed.

探讨氧等离子体放电时间、放电气压和放电功率对细旦涤纶润湿性、结晶度、表面热力学电位(Ψ电位)以及上染率的影响规律。

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11、

Influence of various factors, including microwave power, target voltage and gas pressure, on the plasma properties in diamond-like carbon ( DLC) film growth was also discussed.

研究结果表明,微波功率、靶电压和真空度等参数对等离子体特性具有重要的影响。

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12、

Identification of Noise Sources of the Woodworking Thicknesser by Using the Test of Gas Pressure

气体压力实验在木工压刨床噪声源识别中的应用

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13、

Effect of Nebulizer Gas Pressure on the Emission Intensity of ICP

ICP光源中载气压力对等离子体辐射强度的影响

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14、

In influence of the treatment temperature, residual gas pressure and vacuum treatment time on separation effects were completely investigated.

主要研究了蒸发温度、真空度和蒸发时间等因素对阳极泥蒸发率的影响,并对冷凝物的形态控制及贵铅的后续处理进行了探讨。

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15、

During the stage of a rapidly increasing temperature, four main factors ( MC, the temperature of hot-plates, target density and thickness) affect temperature and gas changes, and gas pressure of core is ascending;

快速升温段:四个主要因素(热压温度、含水率、目标密度和目标厚度)对温度和气压的变化有着一定的影响,中心气压是上升的;

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16、

The main parameters such as air-gas ratio, gas amount, gas pressure and operating period etc. were optimized so as to increase hot blast temperature by average 50 ℃.

重点优化了空煤比、煤气量、煤气压力和热风炉合理工作周期等关键参数,研究结果使风温平均提高50℃。

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17、

Two correlations for the number of theoretical plate ( Nmin) and gas pressure drop(? p) were established with least square method based on the experimental data.

在实验基础上应用最小二乘法建立了旋转填料床的传质、压降实验关联式。

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18、

Based on the characteristics of pulse combustion and actual situation that air gas flow can not be measured accurately, pulse combustion furnace temperature discrete optimization model and air gas pressure control model.

基于脉冲式燃烧的特点和空煤气流量无法准确测得的现实情况给出了脉冲燃烧炉温控制离散化优化模型和空煤压力控制模型。

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19、

The experiments proved that external cooling effect is better than internal cooling, when cooling gas pressure is less than 1 MPa.

实验表明,在冷气压力不大于1MPa实验条件下,外冷却的效果优于内冷却。

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20、

In the test, titanium, steel and glass will used as the test workpiece, The processing parameters including gas pressure, abrasive particle size, processing time, complex processing and so on.

试验中将钛、钢和玻璃作为试验工件,加工参数主要包括气体压强、磨料粒度、加工时间、复合加工等。

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