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1)  carbon heating element
碳素发热元件
2)  silit heating element
碳硅发热元件
3)  heating element of silicon carbide
碳化硅发热元件
4)  heating element
发热元件
1.
Microstructure and properties of an MoSi_2 heating element modified by ceramic compound;
陶瓷矿物改性MoSi_2发热元件的组织结构和性能
2.
The content and microstructure of scale of Kanthal Super 1700 MoSi2 heating element were studied using scanning electron microscope(SEM) with energy dispersive spectrometer(EDS).
采用SEM和EDS技术研究了国外某MoSi2发热元件表面保护膜的成分和微观组织。
3.
Based on the X-ray diffraction analysis(XRD),scanning electron microscope(SEM) with energy dispersive spectrometer(EDS),the composition and microstructure of Riken MoSi2 heating element after high-temperature application was studied.
采用X射线衍射、扫描电镜和能谱分析技术研究了国外某MoSi2发热元件的组成和结构。
5)  PTC Heating element
PTC发热元件
6)  Silicon Carbide electro-heating Element
碳化硅电热元件
1.
Silicon carbide electro-heating element under conventional production technology have some disadvantages of big resistance discreteness, the low rate of finished products, low intensity, low usage temperature and bad density.
传统工艺条件下生产的碳化硅电热元件存在着电阻离散性大、成品率低、强度低、使用温度低、致密度差等问题。
补充资料:碳化
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性质:又称碳化。固体燃料的热化学加工方法。将煤、木材、油页岩等在隔绝空气下加热,使分解为气体(如煤气)、液体(如焦油)和固体(如焦炭)产物。干馏设备一般为工业炉窑,煤气由炉窑逸出,并带有焦油蒸气,可以回收。焦炭则残留在炉窑中。根据加热的最终温度,一般可分为高温干馏(约900~1100℃)、中温干馏(约660~750℃)和低温干馏(约500~580℃)。此外,还有成堆干馏或煤堆干馏等。

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