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temperature difference相关的网络例句

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与 temperature difference 相关的网络例句 [注:此内容来源于网络,仅供参考]

The conversions of ice temperature and ice velocity occur from bridge to trough of terrain on the eastern Nyainqentanglha Range. The ice temperature at bridge is lower. The ice at bridge starts to move due to the larger gravitational driving stress. During the course from bridge to trough of terrain, basal ice temperature rises because of the friction. While reaching the pressure melting point of ice, basal decollement occurs, and higher velocities can still be produced at trough.

而位于念青唐古拉山东部地区的冰川,冰温和冰速从地形脊到地形槽处发生了较大的转化过程,在地形脊处冰温较低,受重力加速度的影响,冰川开始产生滑动,从地形脊到地形槽滑动的过程中,其底部受摩擦加热的影响,底部冰温升高,达到融化点,底部产生变形,到地形槽处仍会产生较大速度的滑动,因此冰川的运动从地形脊到地形槽处发生了转化,即地形脊处的滑动属动力过程引起的滑动,而地形槽处的滑动属热力过程产生的滑动。

Heat transfer model was analyzed for polishing with ice fixed abrasives in this paper. With ANSYS finite element, the value of temperature fields for polishing was simulated. The temperature contour map of temperature field and the melting thickness values of working area of ice fixed abrasive tool were obtained. Polishing experiments were conducted with the same technological parameters.

本文分析了低温固结磨料抛光硅片的传热模型,并借助有限元软件ANSYS对热传导过程进行了仿真,获得了冰冻磨具在不同抛光时刻的温度场等温图及工作区域的融化厚度值。

When the current goes through the bimetal component with impedance, if the current increases or the environment temperature rises and the temperature reaches the preset value, the bimetal component will work and release the contact to shut off the circuit; and by contrast, if the device cools down to the safe temperature, the contact point will reset automatically.

电流通过有阻抗的双金属元件,遇非正常工作时,随电流增大或周围温度升高至设定温度值时,双金属元件迅速动作,打开触点,切断电路。当装置冷却到安全工作温度时,触点自动闭合,恢复正常工作状态。

When the current goes through the bimetal component with impedance, if the current increases or the environment temperature rises and the temperature reaches the preset value, the bimetal component will work and release the contact to shut off the circuit; and by contrast, if the device cools down to the temperature, the contact point will reset automatically.

电流通过有阻抗的双金属元件,遇非正常工作时,随电流增大或周围温度升高至设定温度值时,双金属元件迅速动作,打开触点,切断电路。当装置冷却到安全工作温度时,触点自动闭合,恢复正常工作状态。

Regression analysis indicates, the major factors ingrowing season are: radiation, soil moisture, relative humidity, air temperature and surface temperature; the factors in non-growing season are: radiation, surface temperature and wind speed.

回归分析表明影响生长季主要因素有:净辐射、土壤含水量、相对湿度、气温和地表温度;影响非生长季主要有:净辐射、地表温度和风速。

The result indicates that the potential-pH equilibrium diagram, solution's practical pH and metal corrosion's measured potential at corresponding temperature must be used when potential-pH equilibrium diagram is used. And also the potential-pH equilibrium diagram in Fe—H〓O system at different temperature is gathered and classified. According to thermodynamics data, the relation equation of water ionization equilibrium constant K〓 and of ammoniac equilibrium constant K〓 to temperature T is respectively derived.

二、高温电位-pH平衡图的应用与高温溶液实际pH值的计算对高温电位-pH平衡图的应用方法和溶液的高温实际pH值进行了分析和计算,指出在用电位—pH图进行分析时,必须使用相应温度下的电位—pH图、该温度下溶液的实际pH值和金属腐蚀电位测量值,并对各种温度下Fe—H〓O体系的电位-pH图进行了收集归类。

The results show that the rate of heating decreases due to the growth of oxidation layer in soaking process when the thermal resistance between gas and slab increases. The quantity of loss of iron scale increases with the increase of the coefficient of air consumption under the condition of certain soaking temperature. When the coefficient of air consumption is certain, the quantity of loss of iron scale increases with the increase of soaking temperature rapidly. The results of numerical simulation is consistent with experimental ones, and the error is very small within the range of soaking temperature in CSP line.

研究结果表明:在加热过程中生成的氧化层增大了换热热阻,使钢坯的加热速度减小;钢坯氧化烧损量随加热速度的增大而减小;当达到同一特定的均热温度时,钢坯氧化烧损量随空气消耗系数的增大近似呈线性递增;当空气消耗系数一定时,钢坯氧化烧损量随均热温度的提高而急剧增加;数值计算结果与实验结果变化趋势一致,并在CSP均热温度范围内较吻合。

The results show that the spreading area of series Ni-P filler metal increases with the increase of brazing temperature, and the spreading areas of Ni-P filler metal is larger than that of Ni-Cr-P filler metal; the shear strength of the brazed joint at room temperature increases with the increase of temperature from 925℃ to 1000℃, and the shear strength of the stainless steel joint brazed with Ni-P filler metal is superior to that with Ni-Cr-P filler metal by 30~40 MPa in the same brazing technology.

结果表明,Ni-P系钎料铺展面积随钎焊温度的升高而增大,并且相同温度下不含Cr的Ni-P钎料铺展面积大于Ni-Cr-P的铺展面积;钎焊温度从925 ℃升高到1000 ℃过程中,Ni-P、Ni-Cr-P钎料钎焊不锈钢接头的室温剪切强度均增大,并且在相同钎焊工艺下,不含Cr的Ni-P钎料钎焊不锈钢接头室温剪切强度优于Ni-Cr-P钎焊接头强度30~40 MPa;Ni-P系钎料钎焊接头高温强度随温度升高而下降,测试温度超过500 ℃时,相同温度下含Cr的钎料能够提高钎焊接头强度0~30 MPa。

The weld parameters and other process variables (joint mismatch, root gap, thickness of parts, and part composition) effect the pool shape (determined from temperature distribution), the absolute temperature near the pool, and the temperature distribution symmetry around the pool.

焊接参数和其他工艺变量(焊缝的错位、焊根的缝隙、零件的厚度和零件的成份)都会影响熔池形状,熔池附近的绝对温度和熔池周围温度分布的对称情况。

Under the condition of organic chlorine content 0.25-0.53% of the input refuse and the furnace temperature range of 939-1,033℃, rise with furnace temperature, the proportion of lead transferred into gaseous is increased, and the lead content of fly ash and reaction ash increases obviously. It can be expressed as y1 =11.051x-9824.9 and y2 =26.729x-23680, where x is the furnace temperature, y1 and y2 are the content of lead in fly ash and reaction ash.

基於进料综合垃圾有机氯含量0.250.53%之条件下,在9391,033℃之炉温范围内,随著炉温升高,重金属铅由固相转移至气相的比例增加,飞灰及反应生成灰之铅全含量皆有明显上升之趋势,可以回归式表示为y1 = 11.051x – 9824.9以及y2 = 26.729x – 23680,其中x为炉温,y1、y2则分别为飞灰及反应生成灰之铅全含量。

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