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coefficient of the expansion相关的网络例句

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与 coefficient of the expansion 相关的网络例句 [注:此内容来源于网络,仅供参考]

The model prediction is also compared with other theoretical models, for example, the Hashin-Shtrikman model for elastic constants and Kerner and Schapery models for thermal expansion coefficient. The model proposed in the present study shows similar precision on the properties of composites as the elastic modulus ratio is lower than 10. However, the elastic modulus ratio is higher than 20, the model proposed in the present study shows improved prediction on the properties of two-phase composites.

并与文献上其他理论模式进行预测性质之比较,例如:用於预测弹性常数的Hashin-Shtrikman模式、以及用於预测热膨胀系数的Kerner 及 Schapery模式,经由比较结果显示,当弹性系数的比值小於10时,本研究所建立的模型之预测值与其他理论模式有相似的精确预测功能,但是当弹性系数的比值大於20时,对於双相复合材料之弹性及热膨胀性质预测,本研究所建立的模型具有较佳的预测结果。

It is well known that the large lattice mismatch (16%) and thermal expansion coefficient mismatch between GaN and sapphire substrate are the main origins of TDs. By new growing technique of LEO, we acquired high quality GaN films almost free of TDs. The stress characteristics in GaN films with MLTB growing technique is dependent on growing systems and conditions, and the changes of stress and dislocation density are rightabout; Combining buffer layers of high temperature and low temperature is first developed to growing GaN films with low dislocation density, and the mechanism of lowering TDs density is that the first buffer layer of high temperature can make nuclear in second buffer layer of low temperature bigger. This technique also can restrain yellow luminescence effectively.

众所周知,晶格失配和热应力失配是GaN异质外延中位错产生的主要原因;为此,我们对几种降低缺陷的MOCVD外延生长方法进行了新的尝试,其中尝试了侧向外延生长技术,得到了低位错密度(小于10〓/cm〓)、高质量的GaN外延层;尝试多低温缓冲层法,发现材料中的应力特性与生长系统和生长条件有关,材料中的应力与位错密度按相反方向变化;首次尝试高低温联合缓冲层法,材料中高温缓冲层可以使随后的低温缓冲层中成核颗粒增大,从而导致随后高温GaN外延膜中位错密度降低,并且能够有效地抑制黄光峰。

The sagger has small expansion coefficient, high thermal stability, good thermal shock resistance, suitable for the calcination of rare earth materials, battery materials and other materials.

堇青石结合锂辉石砂锅采用人工堇青石材料为主要原料,加入少量锂辉石作为熔剂性材料生产的日用耐热砂锅,膨胀系数小,抗热震性能好,使用寿命长,可生产高档次砂锅。

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。

The influence of strength and thermal expansion coefficient mis-matching between the weld metal and the parent metal on the distribution of welding residual stresses was simulated by using the method of thermal elasto-plastic finite element analysis in this paper.

摘要] 采用有限元法对相同温度场的焊缝与母材强度和线膨胀系数匹配影响焊接残余应力的规律进行了数值模拟。

Numerical simulations of welding transient stress and residual stress with yield strength and thermal expansion coefficient mismatching between the weld metal and the parent metal have been carried out for the first time.

相同焊接温度场的有限元计算结果表明,焊缝与母材强度和线膨胀系数等匹配时,焊缝中心纵向残余应力σ〓与母材屈服强度σ〓和线膨胀系数α〓有关。

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