1)  Exo-MeltTM
放热熔炼
2)  Exo-MeltTM
大气感应放热熔炼
1.
Ni, Al and Fe reaction by Exo-MeltTM process, NiAl—Fe intermetallic alloy was obtained.
本文采用大气感应放热熔炼方法制备NiAl-Fe合金,分析了NiAl-Fe合金微观组织结构,测试了在不同铁含量(wt%)条件下NiAl-Fe合金的室温塑性、压缩性能、硬度、高温抗氧化与室温抗腐蚀性能,初步阐明了组织结构与宏观性能之间的关系。
3)  heat release
放热
1.
One of the technical barriers of HCCI was controlling combustion timing,the HCCI two phases of combustion companied with two phases of heat release.
分析了均质充量压燃(HCCI)的一个技术难点,即燃烧始点的控制,指出其燃烧两阶段性对应着放热的两阶段性。
2.
Combustion and heat release of diesel engine operating on both No.
研究了柴油机燃用0号柴油和生物柴油的燃烧放热规律。
3.
The heat release calculation by external condensation of horizontal multitube, vibration check while media transversely flow over tube bundle, ensemble rigidity pipe bundle and connecting technology of tube and tube plate ware presented in this paper.
介绍了大型加热器的水平式多管排管外冷凝放热计算、介质横向流经管束时的振动校核、整体刚性管束以及管子与管板的连接工艺。
4)  heat discharge
放热
1.
Experimental studies on the process of its heat discharge on the 10kW electric heat solid heat storage device are made and temperature distribution regulations in heat retaining mass under the different heating methods and control temperatures are obtained.
在10 kW的电热固体蓄热装置上对其放热过程进行实验研究,得到不同加热方式、不同控制温度下蓄热体内温度分布规律。
2.
Experiments of heat discharge on the industrial simulation bedstand are conduced to study the performance of solidification process.
比较了光管换热器和肋管换热器的区别 ,总结出放热性能变化规律曲线 ,得出了满足工程精度的实验准则式 。
5)  losing heat
放热
1.
Simple method for determining gaining heat or losing heat in a thermodynamic process;
判断热力学过程吸热和放热的一种简捷方法
2.
In this paper, we developed a handy way for determining gaining or losing heat in a thermodynamic process.
本文给出判断热力过程吸热与放热的一种简便方法 ,并作些有意义的讨
3.
In this article two methods for determining gaining heat or losing heat in a thermodynamic process are given.
本文给出了判断热力学过程吸热与放热的两种方
6)  exothermic
放热
1.
This article has discussed comprehensively straight line process in the p V graph of ideal gas with negative slope, and the endothermic and exothermic variations so as to understand the process completely and clearly.
本文通过对理想气体 p V图中负斜率直线过程温度及吸、放热变化的综合讨论 ,使我们对该过程有一个全面、清晰的认识 ,以开拓我们对热学过程讨论的方法及思
参考词条
补充资料:放热峰
分子式:
CAS号:

性质:在差热分析曲线中试样温度高于参比物质温度的峰,即△T为正值。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。