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thermal conductivity相关的网络例句

查询词典 thermal conductivity

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

Magnesia alumina spinel brick is based on high-purity magnesia and synthetic magnesia alumina spinel with major crystal phase of periclase and spinel. By intensively mixed, double-face pressed and fired at high temperature. Being completely chrome free, it is the ideal refractory for the transitional zone of cement kiln characterized by superior thermal shock resistance, good anti-erosion capacity, and lower thermal conductivity.

此次展会为您展出的水泥回转窑用镁铝尖晶石砖以高纯镁砂和合成镁铝尖晶石砂为主要原料,主晶相为方镁石和尖晶石,经过强力混练,双面加压,高温烧成等工艺制成,是水泥窑过渡带的标准耐火材料,具有无铬污染,热震稳定性好,耐磨损,抗侵蚀性强,热导率低等特点。

And research shows that high thermal conductivity composite can decrease the temperature difference of underfill between chip and substrate, so that it can improve the temperature distribution of the flip chip, decrease the thermal stress of underfill and increase packaging reliability.

表明高导热系数的底充胶可明显降低在芯片和基板之间的温度差,降低底充胶的热应力,进而提高电子封装的可靠性。

Tungsten wire is made by the process of sintered bar, swaging and drawing. Besides its high temperature stability, sagging free, shock resistance and corrosion resistance, it has an excellent electrical and thermal conductivity, a very low thermal expansion up to the highest temperature.

钨丝是由钨坯条经过旋锻及拉伸的方法加工而成的,具有很好的耐高温性能和不下垂性,导电导热性能极好,热膨胀率低,成型性好、稳定性高、耐震性及抗腐蚀性强,具有较好的机械加工性能。

Thermal probe ; adsorption refrigeration ; zeolite ; compound adsorbent ; thermal conductivity

热探针;吸附制冷;沸石分子筛;复合吸附剂;导热系数

In order to optimize the design of hot blast stove, a model of heat transfer in chamber of hot blast stove was developed and the software based on the model was established. The effect of the checker thermal characteristics such as thermal conductivity, heat capacity, density etc on the temperature of blast and checkers,the heat accumulation and heat release of checkers was determined.

为优化热风炉设计,建立了热风炉蓄热室内传热过程的数学模型,制作了应用程序软件,探讨了不同的格子砖物性参数,如导热系数、比热容和密度等对格子砖温度场分布、气体温度分布以及格子砖蓄热量和放热量的影响。

The calculation results show that the temperature of the valve cone changes periodically, leading to thermal stress changes periodically, which is the main reason of the valve cone pit corrosion; the operating temperature of the valve can be reduced by using the higher thermal conductivity materials; at the Same time, 3-D FEM provides a good theoretical basis in the process of the design and improvement for the parts of ICE.

计算结果表明:气门锥面处周期性的温度变化,会导致周期性变化的热应力,是导致气门锥面疲劳点蚀的主要原因;采用较高导热系数的材料可降低气门的工作温度;同时,三维有限元法能为内燃机零部件的进一步设计改进提供很好的理论依据。

The results show that the best sintering process for SiC preform is 1100℃, 8 h in vacuum, by which the open porosity is 99.6% and the preform strength reaches 0.57MPa. The thermo-physical characteristics of 57% SiC/Al composites produced by this technique are as follows: the relative density is 98.7%; the thermal expansion coefficient is 7.5×10^(-6)℃^(-1) which almost matches those of GaAs and BeO; the thermal conductivity is 1.65×10^5W/K, which corresponds to that of Cu(15%)/W and decuples that of Kovar alloy; the density is close to that of aluminum and less than that of one fifth of Cu/W.

结果表明:经1100℃真空烧结8h的SiC预成形坯开孔率可以达到99.6%,抗压强度为0.57MPa;所制备的57%SiC/Al复合材料相对密度为98.7%,热膨胀系数为7.5×10^(-6)℃^(-1),与GaAs、BeO的接近,热导率为1.65×10^5W/K,与传统Cu(l5%)/W相当,是柯伐合金的10倍,在密度上接近Al,不到Cu/W的1/5。

The results show that the best sintering process for SiC preform is 1100℃, 8 h in vacuum, by which the open porosity is 99.6% and the preform strength reaches 0.57 MPa. The thermo-physical characteristics of 57% SiCp/Al composites produced by this technique are as follows: the relative density is 98.7%; the thermal expansion coefficient is 7.5×10-6 ℃-1 which almost matches those of GaAs and BeO; the thermal conductivity is 1.65×105 W/K, which corresponds to that of Cu(15%)/W and decuples that of Kovar alloy; the density is close to that of aluminum and less than that of one fifth of Cu/W.

结果表明:经1 100 ℃真空烧结8 h的SiC预成形坯开孔率可以达到99.6%,抗压强度为0.57 MPa;所制备的57%SiCp/Al复合材料相对密度为98.7%,热膨胀系数为7.5×10-6 ℃-1,与GaAs、 BeO的接近,热导率为1.65×105 W/K,与传统Cu(15%)/W相当,是柯伐合金的10倍,在密度上接近Al,不到Cu/W的1/5。

Thermal conductivity A of mass and single pellet is successively measured by an efficient and steady heating system, of which the heat source is infrared ray. The milli-volt instrument and thermocouple is a way to measure temperature and its of higher precision and has fewer errors. Thermal diffusivity a is researched based on the study of C and. In this thesis, the volume convective heat-transfer coefficient, is measured on the thin-bed drying plat in terms of the principle of cooling machine and the Boyce drying theory, focusing on the air velocity v or mass flux G affecting on h.

导热系数λ的测定采用红外线纵向热流法,热源稳定、效率高;温度采用毫伏表加热偶温度传感器测量,精度高,误差小,并对成堆物料和单个颗粒均作了研究;基于C和λ的测量结果,导温系数α采用公式法计算而得;对流换热系数h_y为体积对流换热系数,其测定是模拟颗粒饲料的冷却干燥过程,依照冷却器的工作原理,构建颗粒薄层干燥试验台,并在Boyce干燥理论的指导下,重点测试了冷却风速对对流换热系数的影响。

In light of the thermal conductivity equation,we have studied refractive indexchange resulted from thermal effect induced by linear and nonlinear absorption inZ-scan measurement with pulse laser.

从热传导方程出发,对在脉冲激光作用下由于样品线性吸收和非线性吸收产生热效应引起的折射变化进行了研究。

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