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The following experimental results are obtained:(1) Through the dissociation and ionization of sodium amide in a shock tube with a magic hole to provide sodium ions and electrons, the three-body recombination rate coefficient of sodium ion with electron is determined under the condition of argon atoms acting as the third body in the collision process:〓. The experimental temperature range is from 1400 to 2700K, extending the limitation of the flame method.

实验获得了如下结果:(1)在魔洞型单脉冲激波管上以氨基钠粉的高温分解和电离提供钠离子和电子,测定了以氩原子为碰撞第三体时钠离子与电子的三体复合速率系数〓,实验测量温度范围1400~2700K,拓宽了火焰方法测量结果的局限。

At first,the limitation of the general heat conduction equation is discussed and then,nonlinear heat conduction equations are derived,when we consider that thermal conductivity,specific heat capacity and density are dependent of temperature.

研究了线性情形中热传导方程的局限性,在此基础上考虑到热传导方程中导热系数、比热容、密度与温度的关系,导出了非线性热传导方程,并求出了几类非线性热传导方程的孤波解。

Due to the difference of heat conduction coefficient, specific heat capacity and expansion coefficient between concrete and rock, under cyclic variation of temperature, the junction plane is liable to crack in the slope supported by shotcrete.

由于混凝土材料与岩土材料的热传导系数、比热容与热膨胀系数的差异,在温度的循环变化下使得喷射混凝土边坡容易于喷层与岩土层的结合面处产生应力集中而开裂。

The effect of H2SO4 concentration and reaction time on the xylose yield and the selectivity of hemicellulose hydrolysis in corn stover under 121 ℃ was studied by response surface methodology.

通过响应曲面法,研究了反应温度为121℃时,不同硫酸浓度和反应时间对玉米秸秆中半纤维素水解为木糖的产率以及选择性系数的影响。

How to calculate the sum of P-series by Fourier series ;2. Fourier series was utilized to fit the stress and strain of tire in a rolling cycle by means of mechanic-field analytic result.

利用轮胎力学场的数值分析结果,采用傅立叶级数拟合单元在轮胎滚动一周内的应力-应变变化,并根据拟合后的傅立叶系数计算轮胎单元损耗应变能和生热率,分析了轮胎在不同速度时的温度场。

Heat treatment is generally performed by heating to a temperature below 482/538°C (900/1000°F) to obtain a zero temperature coefficient of resistance.

通常的热处理是加热到482/538°C (900/1000°F)以下以得到温度电阻系数为零的指标。

Obtained material temperature field and thermal coupling coefficient and so on.

本文利用有限元的理论,对连续激光对金属材料的热传导过程进行了数值模拟,得到了金属材料的温度场分布和热耦合系数等结果。

This is another procedure, solving heat transfer coefficient of the same basic idea, but the detection of temperature difference.

这是另一个相关程序,求解传热系数的基本思想相同,只是温度的检测点不同。

The result of thermal stress analysis indicates that the thermal stress is closely relevant to the temperature gradient.

探讨了材料的热传导系数、比热等因素对热分析结果的影响,以及温度场梯度的变化对热应力的影响。

Finite element analysis is used to compare temperature differences between low and high thermal conductivity of composites.

利用有限元方法对电子封装倒装焊中不同导热系数的底充胶材料对温度场的影响进行了分析比较。

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