2) melting entropy

熔化焓
1.
Firstly, we report the data of some physical actions including melting enthalpy(ΔH) and melting entropy(ΔS) of benzoic acid 4 trans (4′ n alkylcyclohexyl) n alkylphenol esters(nmAEAH or nCEAH).
首次报道了 4 (4′烷基环己基 )苯甲酸烷基酚酯 (nmAEAH ,nCEAH)系列化合物的部分物理行为参数包括熔化焓 (ΔH)、熔化熵 (ΔS)。
3) enthalpy
[英][en'θælpi] [美][ɛn'θælpɪ]

熔化焓
1.
The enthalpy and entropy of the phase transition derived from the heat capacity data were to be 13.
2 79K ,摩尔熔化焓和摩尔熔化熵分别为 1 3 。
2.
And their effects which made on the determinations of metal melting point, enthalpy and DSC′s thermal resistance (R 0) were suggested.
对瑞士梅特勒 -托利多公司生产的 DSC82 2 e差示扫描量热仪 (differential scanning calorimetry)的测量精密度进行了探讨 ,考查了样品质量、样品种类、扫描速率、样品盘对熔点和熔化焓的测定以及仪器热阻 R0 影响 。
4) melting enthalpy

熔化热焓
1.
In this paper,the melting temperature and melting enthalpy of selected CaO-Al_2O_3-MgO slag system with lowmelting -point zone were investigated by a melting point testing instrument and DSC thermal analyzer to explore a reasonable slag system for the requirement of unpolluted deoxidization between molten steel and slag.
为了探索可满足渣金间外加电场脱氧的合理基础渣系,通过半球点测试仪、DSC对CaO-Al_2O_3-MgO渣系低熔点区的熔化温度和熔化热焓进行了研究。
2.
In this paper,the melting temperature and melting enthalpy of CaO-SiO_2-Al_2O_3-MgO slag were investigated by the DSC thermal analyzer to explore the influence of CaO and SiO_2 content on melting properties for slag.
通过测定熔渣升温过程中的DSC曲线,观察其升温过程中发生的熔化相变温度以及熔化热焓,研究CaO和SiO_2含量对CaO-SiO_2-Al_2O_3-MgO熔渣熔化性能的影响。
5) droplet entropy

熔滴热焓
1.
A novel three dimensional temperature analytical model for gas metal arc welding(GMAW) was presented,in which the effect of droplet entropy on welding penetration during welding was considered.
提出了一种新型GMAW(gas metal arc welding)三维温度场解析模型,将焊接过程中熔滴热焓对熔透成形的影响考虑在内。
6) droplet heat content

熔滴热焓量
1.
The distribution model of droplet heat content inside the surface deformed weldpools wasestablished through analyzing energy and momentum in metal transfer processes.
通过对熔滴过渡过程的能量和动量分析,建立了熔滴热焓量在表面变形熔池内部的分布模式,以此为基础采用数值模拟技术研究了熔滴过渡类型和表面活性元素对MIG焊接熔池流场的影响,揭示了溶液过渡类型和表面活性元素与HIG焊接熔池流场的相互影响规律,并对计算模型的可靠性进行了实验验
补充资料:熔化焓
分子式:
分子量:
CAS号:
性质:见熔化热。
分子量:
CAS号:
性质:见熔化热。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条