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1)  heating resistance
加热电阻
1.
This paper defines the structure and zone of heating resistance in electric hot machining,and proposes an accurate detection method of heating resistance according to the characteristics of heating circuit,by which the influences of circuit inductance and cable resistance can be effectively eliminated.
定义了导电加热切削中加热电阻的结构及所在区域,根据加热回路的特点,提出了一种精确检测加热电阻的方法,有效排除了回路电感和电缆电阻等因素的影响。
2)  resistance heating
电阻加热
1.
To determine the parameters such as input power,heating current,samples' temperature distribution,and their variations the resistance heating process of cold-rolled strip samples was investigated on the electric and thermal theories in combination with FEM.
为了确定薄板试样电阻加热系统的参数,掌握加热过程中电功率和电流的变化规律以及试样温度场的分布,利用电、热学理论,并结合有限元软件对薄板试样电阻加热过程进行了分析。
2.
Having compared with the heating principles of the existing hyperthermic cancer therapy,the method of resistance heating is a better heating scheme and be adopted as the heating principle of the thermal needle medical.
通过与现有的癌症温热疗法所采用的加热方法相比较,作者选用了电阻加热方法作为温针的加热方法。
3)  resistance heating
电阻加热[法],电阻加热
4)  electro-heat conductor
加热电阻体
5)  resistance heater
电阻加热器
1.
Application of resistance heater in supersonic combustion facility;
电阻加热器在超声速燃烧研究中的应用
2.
73 kg/s to the scramjet combustor using resistance heaters.
超音速燃烧室试验设备需要加热空气达到所模拟的飞行状态的总焓,采用电阻加热器可以提供纯净的来流空气。
3.
In this paper,type of explosion-proof heater resistance mechanism,thermodynamics and electrical control theory and parameter selection are analyzed,combined with the structure characteristics of different types of explosion-proof and technical requirements,introduced the basic principles of design and test of explosion-proof resistance heater.
通过对防爆型电阻加热器的防爆机理、热力学和电气控制原理的分析和参数选择,结合不同的防爆型式的结构特点和技术要求,介绍了防爆型电阻加热器的设计和检验的基本原则。
6)  resistance stove
电阻加热炉
1.
We design a resistance stove for simulating temperature field.
本系统设计了电阻加热炉来模拟实现检测温场 ,并通过较长时间的预热和在试验腔的检测段放置孔板显著提高了温度均匀性 ,采用模糊算法按照设定的控温曲线对温场温度进行控制。
补充资料:加热
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性质:热源将热能传给较冷物体而使其变热的过程。根据热能的获得,可分为直接的和间接的两类。直接热源加热是将热能直接加于物料,如烟道气加热、电流加热和太阳辐射能加热等。间接热源加热是将上述直接热源的热能加热能加于一中间载热体,然后由中间载热体将热能再传给物料,如蒸汽加热、热水加热、矿物油加热等。

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