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1)  temperature field of laser heat treatment
激光热处理温度场
2)  laser heat treatment
激光热处理
1.
Technology and mechanism of laser heat treatment;
激光热处理活塞环工艺与机理研究
2.
Research and application of the laser heat treatment for cam-shafts of the rare earth magnesium nodular graphite cast iron;
稀土镁球墨铸铁凸轮轴激光热处理的研究与应用
3)  heat treatment temperature
热处理温度
1.
Effects of heat treatment temperature on the preparation of nanometer TiO_2 by melt-phase separation process;
热处理温度对熔融分相法制备纳米TiO_2影响的研究(英文)
2.
Study on heat treatment temperature of EMD used for Li-MnO_2 batteries;
Li-MnO_2电池用EMD热处理温度的研究
3.
Influence of heat treatment temperature after the pressure expansion on the electromechanical properties of cellular polypropylene electret;
压力膨化后的热处理温度对PP蜂窝膜驻极体机电性质的影响
4)  heating temperature
热处理温度
1.
The influences of precursor,oxygen pressure and heating temperature on the microstructure and properties of the thin films have been discussed.
综述了采用软化学方法制备VO2薄膜的工艺技术特点,以前驱物的划分为主线,着重探讨了前驱物的选择、氧分压和热处理温度等工艺条件对其物相结构与性能的影响,对反应热力学进行了初步的探讨。
5)  heat-treatment temperature
热处理温度
1.
Influence of heat-treatment temperature on the properties of YSZ electrolyte film prepared by magnetron sputtering;
热处理温度对磁控溅射法制备YSZ电解质薄膜性能的影响
2.
Study on heat-treatment temperature of ZnO nanoparticles synthesized by precipitation method
沉淀法合成ZnO纳米粒子热处理温度的研究
3.
The influence of heat-treatment temperature on the structure and mechanical properties of PAN-based carbonfiber has been investigated,which provides a theory basis for further raising of the mechanical properties ofcarbon fiber.
考察了热处理温度对PAN基碳纤维结构和力学性能的影响,为进一步提高碳纤维的力学性能提供了理论依据。
6)  Annealing temperature
热处理温度
1.
The Sn-doped In_2O_3 thin films were prepared on the glass substrates at different annealing temperatures by sol-gel method with InCl_3·4H_2O and SnCl_4·5H_2O as precursors.
采用溶胶-凝胶法以铟、锡氯化物为前驱物制备不同热处理温度下的ITO膜,对制备的ITO膜样品进行X射线衍射分析。
2.
The structural development, spectroscopic of these films with increasirlg annealing temperature have been investigated using XRD,FT - IR anti - reflection spectra, Raman scattering spectra and atomic force microscopy (AFM).
用XRD、FT-IR反射光谱、Raman光谱以及原子力显微镜(AFM)研究了薄膜随热处理温度的结构变化过程以及薄膜中有机物的挥发。
补充资料:激光热处理
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性质:利用激光束的光能转化为热能,加热材料使之产生相变、熔化、蒸发、等离子体等,从而使材料表面性能发生变化,或使反应物加热导致热化学反应的一种热处理工艺。激光热处理常用于材料的表面淬火和表面合金化。其特点:(1)对工件表面加热速度快,且可通过工件基体金属自身冷却,无需特殊的冷却设备;(2)对几何形状复杂的工件,可进行局部选择性淬火;(3)因其工艺过程短,加热区域小,被处理工作几乎没有变形;(4)对工件的易磨损部位,可进行局部合金化处理,以提高其耐磨性、耐热性。材料表面经激光热处理后,其硬度、耐磨性和疲劳寿命可有明显提高。

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