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1)  Formation heat
形成热
1.
The calculation results of the formation heat and dissociation energy of H atoms show that high temperature Mg2NiH4 has a low structural stability and an enhanced dehydrogenation property, compared with low temperature phase.
合金形成热及氢原子解离能的计算结果表明:相对低温相而言,高温Mg2NiH4相具有较低的相结构稳定性及较高的解氢性能。
2)  heat of formation
形成热
1.
The theoretical values of heat of formation, mixing Gibbs free energy and lattice constant as a function of concentration .
确定了特征性质(势能和体积)的相互作用方程,各特征原子的电子结构及演变特点;计算了合金的形成热、混合Gibbs自由能和晶格常数随成分的变化。
3)  hot forming
热成形
1.
Research on Control of Hot Forming of Large Forgings;
大锻件热成形可控机制的研究
2.
The hot forming technique in the carbody manufacture;
轿车车身零件制造中的热成形技术
3.
It's reported in this thesis that during and after the hot forming,different heat treatment regimes are analysized and concluded to make effect on the microstructure,mechanic performance and anti-intergranular corrosion of stainless steel,and qualified in term of actual products.
研究了热成形和热成形后不同热处理制度对16MnR+00Cr17Ni14Mo2复合钢板组织结构、力学性能和不锈钢耐腐蚀性的影响,并结合实际产品进行了验证,认为适当温度的热成形可以代替正火,其组织结构和力学性能优于通常的正火。
4)  hot-forming
热成形
1.
According to the theory of hot extrusion forming,adopting combined extrusion technic in hot-forming,the process of extrusion has been simulated and analyzed by FEM software of DEFORM-3D for the structural characteristics of vehicle hub axles.
根据热挤压成形理论,针对汽车轮毂轴管零件自身的特点,采用复合挤压成形工艺进行热成形,借助DE-FORM-3D有限元软件对成形过程进行了模拟、分析。
5)  hot-embossing
热压成形
1.
The Temperature Control System of Hot-embossing Machines for Fabrication of Polymer Microstructures;
聚合物微结构热压成形设备的温度控制系统
2.
The principles of hot-embossing method, process parameters and process control were briefly introduced, and according to the process requirements, the basic functions of hot-embossing machine including temperature and press force control were determined.
简要介绍了聚合物微结构热压成形的基本原理以及工艺参数和成形过程,根据工艺要求,确定了热压成形设备所应具有的温度、压力控制等基本功能。
3.
For the needs of a new type of biodegradable implantable drug delivery,temperature control device and temperature control system of the hot-embossing equipment were designed and manufactured.
针对一种新型可降解植入式药物载体的高效制备需要,进行聚合物多腔体微结构热压成形设备的温度控制装置和温度控制系统研制。
6)  hot deformation
热成形
1.
Overview on numerical simulation of microstructure evolution during hot deformation;
热成形过程微观组织模拟研究进展
补充资料:负温度系数热敏电阻陶瓷(见热敏陶瓷)


负温度系数热敏电阻陶瓷(见热敏陶瓷)
thermo-sensitive ceramics with negative temperature coefficient

负温度系数热敏电阻陶瓷thermo一sensitiveeeramies with negative temperature eoeffieient在某一特定温度范围,电阻率随温度的升高而明显减小的热敏陶瓷。简称NTC陶瓷。
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