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The influence of thermal treatment on the microstructure and hardness in electroless Ni–P–W deposit

机译:热处理对化学烧矿沉积物微观结构和硬度的影响

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Ni–P–W alloy deposit on the mild steel substrate was obtained by the electroless process. Various thermal heat-treatment temperatures from 350 to 600 8C for 4 h were performed on the coating to evaluate the effect of crystallization behavior and grain size on the mechanical properties. The microstructure at as-deposited and heat-treatment states were investigated by the X-ray diffraction (XRD) and transmission electron microscope (TEM). The hardness at all depths of the coating on the substrate could be acquired by the nanoindentation. The Ni–P– W coating showed an amorphous structure in the as-deposited state and exhibited a relatively low hardness of approximately 6.8 GPa. As temperature was raised to 380 8C, the hardness was slightly increased to 8.7 GPa due to the partial precipitation of Ni and Ni3P in the amorphous matrix. On heating to 500 8C for 4 h, the hardness reached the maximum value of 12.3 GPa with a grain size of 33.1 nm and followed by gradual degradation above 500 8C. The Young modulus of the amorphous Ni–P–W coating showed a relatively low value of 195 GPa. However, for increasing the heat-treatment temperature accompanied with the grain growth, the Young modulus was enhanced to the maximum of 233 GPa and then decreased gradually with temperature.
机译:通过无电过程获得温和钢基板上的Ni-P-W合金沉积物。在涂层上进行350至600℃的各种热处理温度为4小时,评价结晶行为和晶粒尺寸对机械性能的影响。通过X射线衍射(XRD)和透射电子显微镜(TEM)研究了沉积的沉积和热处理状态的微观结构。可以通过纳米狭窄来获取衬底上涂层的所有深度的硬度。 Ni-P-W涂层在沉积状态下显示了无定形结构,并且表现出约6.8GPa的相对较低的硬度。随着温度升至380 8℃,由于Ni和Ni3P中的非晶基质中的部分沉淀,硬度略微增加到8.7GPa。在加热至500 8℃下4小时,硬度达到最大值12.3GPa,晶粒尺寸为33.1nm,然后高于500 8℃的逐渐降解。无定形Ni-P-W涂层的杨氏模量显示出相对较低的195GPa值。然而,为了增加随着晶粒生长的伴随的热处理温度,杨氏模量增强至最大233GPa,然后用温度逐渐降低。

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