英语人>网络例句>coefficient of the expansion 相关的网络例句
coefficient of the expansion相关的网络例句

查询词典 coefficient of the expansion

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]

It is demonstrated that the error of thermal deformation with mean coefficient of linear thermal expansion is more high, so that it is certain trend to use immediate thermal expansivity instead of mean coefficient of linear thermal expansion to improve the instruments accuracy in precision engineering.

理论上建立了平均线膨胀系数同瞬间线膨胀系数计算热变形的误差数学模型,并通过实验论述了精密工程应用中使用平均线膨胀系数计算的工件热变形误差较大,提出广泛使用瞬间热膨胀系数替代平均线膨胀系数是提高机器设备精度的发展趋势。

Diopside crystals in fluosilicate glass-ceramics tend to lower thermal expansion coefficient, while richterite crystals in fluosilicate glass-ceramics tend to increase thermal expansion coefficient.The lowest thermal edpansion coefficient of K2O-MgO-SiO2-CaF2 fluosilicate glass-ceramics is 78.4×10-7(20-300℃), while the highest thermal expansion coefficient of this glass-ceramics is 85.6×

透辉石结晶相的含量增加使微晶玻璃的热膨胀系数降低,与此相反碱镁闪石结晶相的含量增加却使微晶玻璃的膨胀系数增加。K2O-MgO-SiO2-CaF2系统氟硅酸盐微晶玻璃的最小热膨胀系数为:78.4×10-7(20~300℃);最大热膨胀系数为:85.6×10-7(20~300℃)。

AlPO4 was synthesized by a Sol-Gel method. Its coefficient of thermal expansion was measured by dilatometer. Its corrosion behavior was tested in an environment of 50vol%H2O/50vol%O2 with a flow rate of 0.085cm/s at 1350℃. The phases and composition of the samples were analyzed by X-ray diffraction and Energy Dispersive Spectroscope. The microstructures of AlPO4 were characterized by Scanning Electron Microscope.

采用溶胶凝胶法合成了一种AlPO4环境障碍涂层材料,测定了其热膨胀系数,在1350℃、50vol% H2O/50vol%O2、1.013×105 Pa、气体流速0.085cm/s的水氧耦合环境中研究了其抗水氧腐蚀性能,并利用X射线衍射仪、能谱分析仪和扫描电子显微镜分析了材料组成和微观结构。

The results show that glass ceramics with thermal expansion coefficient of 5.11×10^(-6)℃, major phase of α-cordierite and ε=5.5, tan σ=2.1×10^(-4) can be prepared by the addition of 3.6% alkalis (Li2O+Na2O), and Li2O occupies 1.8%. With Li2O substitution for Na2O, spontaneous crystallization is obviously enhanced, and temperature of the first crystallization peak decreases from 950℃ to nearly 900℃, but the crystallization temperature of the second peak was not varied. With the increase of Li2O content, mixed alkali effect can be observed from the thermal expansion coefficient and dielectric loss curve which decreases first and then increases. Dielectric constant decreases monotonously with the increase of Li2O content.

研究结果表明:Li2O和Na2O总含量为3.6%,其中Li2O含量为1.8%时,微晶玻璃以α-堇青石为主晶相,热膨胀系数为5.11×10^(-6)℃,微波频率下介电常数ε为5.5,介电损耗tanσ为2.1×10^(-4);随着Li对Na的取代,玻璃的析晶能力增强,初始析晶峰温度从950℃降至900℃左右,但没有降低第二析晶峰温度;随着Li2O含量增加,热膨胀系数及介电损耗都出现明显的混合碱效应,曲线呈现先降低后升高的变化趋势;样品的介电常数随Li2O含量增加单调降低。

The results show that glass ceramics with thermal expansion coefficient of 5.11×106 ℃, major phase of α-cordierite and εr=5.5, tan σ=2.1×104 can be prepared by the addition of 3.6% alkalis(Li2O+Na2O), and Li2O occupies 1.8%. With Li2O substitution for Na2O, spontaneous crystallization is obviously enhanced, and temperature of the first crystallization peak decreases from 950 ℃ to nearly 900 ℃, but the crystallization temperature of the second peak was not varied. With the increase of Li2O content, mixed alkali effect can be observed from the thermal expansion coefficient and dielectric loss curve which decreases first and then increases. Dielectric constant decreases monotonously with the increase of Li2O content.

研究结果表明:Li2O和Na2O总含量为3.6%,其中Li2O含量为1.8%时,微晶玻璃以α-堇青石为主晶相,热膨胀系数为5.11×106 ℃,微波频率下介电常数ε r为5.5,介电损耗tan σ为2.1×104;随着Li+对Na+的取代,玻璃的析晶能力增强,初始析晶峰温度从950 ℃降至900 ℃左右,但没有降低第二析晶峰温度;随着Li2O含量增加,热膨胀系数及介电损耗都出现明显的混合碱效应,曲线呈现先降低后升高的变化趋势;样品的介电常数随Li2O含量增加单调降低。

This article introduces the traditional metrical measure of coefficient of linear expansion for showing the importance of this experimental measure.

你上面那句话中的by 是不是应改为to 或for,来表示介绍……来表示实验的重要性。

In order to fabricate high–silicon aluminum alloy electronic packaging materials, the oxidating processes in high temperature oxygenation was applied to the Al-30Si and Al-40Si high-silicon aluminum alloys which were prepared through extrusion process. Scanning electron microscope, optical microscopy, thermal physical tester and universal material testing machine were used to study the microstructure, density, hermeticity, coefficient of thermal expansion, thermal conductivity and compressive strength.

摘 要:针对应用广泛的高硅铝合金电子封装材料,采用高温充氧氧化工艺,对已挤压成形的Al-30Si及Al-40Si高硅铝合金材料进行后续处理,通过扫描电镜、金相显微镜、热物性测试仪及电子万能拉伸试验机等,对材料显微组织、密度、气密性、热膨胀系数、热导率及抗压强度进行了分析比较。

The results show that the composite is dense and silicon particles are distributed uniformly. Transmission electron microscope observations show that stacking faults with high density, twins and dislocations are found in silicon particles. The Si-Al interfaces are well-bonded and no interface reactants are found. The dislocations and eutectic silicon precipitates are observed in LD11 matrix. Sip/LD11 composite has low density of 2.4 g/cm3, low coefficient of thermal expansion of 8.1×10-6/K, high thermal conductivity of 161.3 W/, and the annealing treatment can reduce the CTE and improve the thermal conductivity.

研究结果表明:复合材料组织致密,颗粒分布均匀;透射电镜观察发现,在Si颗粒内部存在高密度的层错,同时还存在孪晶和位错; Si-Al界面结合状况良好,无界面反应物; LD11铝合金中存在位错和析出的共晶Si;复合材料具有低密度(2.4 g/cm3),低热膨胀系数(8.1×10-6/K),高热导率161.3 W/(m·K的特性,可以通过退火处理进一步降低其热膨胀系数,提高热导率。

The project for passenger cars with engine piston aluminum alloy, alloy components through optimal design, rare earth - Modification of phosphorus salt air and bottom melting slabs, metal-cast aluminum piston at the end of riser feeding process, heat treatment process parameters of choice , Nano-Detroit surface coating materials, such as key technology research and development with a density of small, light weight, thermal conductivity, and coefficient of thermal expansion of small, high temperature and have sufficient strength, wear and corrosion resistance , Aluminum piston size and good stability, its integrated technical indicators have reached the leading domestic level.

项目介绍(简介、技术特点、应用范围、市场前景、效益分析及对投资者要求。500字以内)本项目针对乘用车发动机用铝合金活塞,通过合金成分优化设计、稀土-磷盐复合变质处理与炉底透气砖熔炼技术、铝活塞金属型铸造底冒口补缩工艺、热处理工艺参数的选择、纳米级活塞表面涂层材料等关键技术的研究,开发出具有密度小、质量轻、热传导性好、热膨胀系数小,并具有足够的高温强度、耐磨和耐蚀性能、尺寸稳定性好的铝合金活塞,其综合技术指标达到国内领先水平。

A homogeneous dielectric structures due to internal heating is different from the thermal deformation can not be freedom it will produce heat stress; a heated uniformly inhomogeneous media due to the different coefficient of thermal expansion will produce thermal stress; and thermal structure is more subject to external constraints is to generate thermal stress causes.

一个均匀介质结构由于内部受热不同,其热变形不能自由进行时,将会产生热应力;一个受热均匀的非均匀介质结构,由于热膨胀系数不同,也会产生热应力;而热结构受到外部约束更是产生热应力的原因。

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