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W—Ni—Fe納米晶粉末的流變特性
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TF124.39 TF125.241

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Rheological Behavior of W-Ni-Fe Nanostructured Powder
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    摘要:

    研究了W-Ni-Fe納米晶粉末的注射成形(MIM)。納米晶粉末采用機(jī)械合金化(MA)的方法制備,然后將這種納米晶粉末與蠟基粘劑混合以制備出喂料。討論了MA球磨時間、納米粉末的體積裝載量和實驗溫度以喂流料流變行為的影響。結(jié)果表明,隨球磨時間增加,喂料粘度降低,粘度對剪切速率的敏感性也降低,因此,隨球磨時間增加,喂料的流動性和成形性變好,隨粉末裝載量增加,喂料粘度呈非線性增加,喂料粘度與粉末裝載量的關(guān)系為:η=η0A[1-(ΦΦm)]∧-n,其中n=0.68,粉末經(jīng)球磨后,粘度變化隨溫度和剪切速率的變化不大。因此,注射溫度和注射速度的變化對MTM產(chǎn)品的質(zhì)量影響不大。

    Abstract:

    The nanocrystalline powder of W-Ni-Fe alloy used for Metal injection Molding(MIM) has been studied. The nanopowder prepared by Mechanical Alloying(MA) was mixed with a wax-based binder to form a feedstock. The effects of MA milling time, nanopowder volume fraction and temperature on the rheological behavior of the feedstock are discussed. With increase of milling time, the viscosity of the feedstock and the sensitivity of viscosity to shear strain rate decrease. Therefore, the fluidity and formalization of this powder feedstock at the condition of long time milling become better. With increase of powder volume fraction, the viscosity of the feedstock has a non-linear increase, which follows the formula: . Here n is equal to 0. 68. The change of viscosity with temperature and shear strain rate is small for the MA powder, so the quality of these MIM products is not strongly effected by the changes of temperature and injection speed.

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范景蓮 黃伯云 等. W—Ni—Fe納米晶粉末的流變特性[J].稀有金屬材料與工程,2001,(2):127~130.[Fan Jinglian Huang Baiyun Qu Xuanhui. Rheological Behavior of W-Ni-Fe Nanostructured Powder[J]. Rare Metal Materials and Engineering,2001,(2):127~130.]
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  • 最后修改日期:2000-07-24
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