首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >PHOSPHATE COATING ON THE SURFACE OF CARBONYL IRON POWDER AND ITS EFFECT IN MAGNETORHEOLOGICAL SUSPENSIONS
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PHOSPHATE COATING ON THE SURFACE OF CARBONYL IRON POWDER AND ITS EFFECT IN MAGNETORHEOLOGICAL SUSPENSIONS

机译:羰基铁粉表面的磷酸盐涂层及其在磁流变悬浮液中的作用

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摘要

Two types of carbonyl iron powders, (CIP's, BASF AG), the HS and HS-I (I = insulated, due a coating with phosphate), and two kinds of silica, one hydrophobic (Cab-O-Sil? TS610) and other hydrophilic (Cab-O-Sil? M5), were used to evaluate the influence of the surface treatment of the magnetic particle and the kind of fumed silica on the formulation of some magnetorheological suspensions (MRS). Oscillatory measurements at no field showed an evident difference between the silicas, but not a specific interaction with the phosphate coating on HSI. On the other hand, steady flow experiments also without magnetic field showed that the kind of silica and its specific interactions with the coating on iron powder drove the rheological behavior of the MRS on all region of the shear rate. Under magnetic field, the flow curves differences will be due to the iron particles and its magnetic properties, mainly on the region of higher shear rate.
机译:两种类型的羰基铁粉(CIP,BASF AG),HS和HS-1(I =绝缘,由于涂有磷酸盐),以及两种二氧化硅,一种疏水性(Cab-O-Sil?TS610)和其他亲水性材料(Cab-O-Sil?M5)用于评估磁性颗粒的表面处理和气相二氧化硅的种类对某些磁流变悬浮液(MRS)配方的影响。在无场的振荡测量结果表明,二氧化硅之间存在明显差异,但与HSI上的磷酸盐涂层之间没有特定的相互作用。另一方面,同样在没有磁场的情况下进行的稳定流动实验表明,二氧化硅的种类及其与铁粉涂层的特定相互作用驱动了MRS在剪切速率的所有区域上的流变行为。在磁场作用下,流动曲线的差异将归因于铁颗粒及其磁性,主要是在剪切速率较高的区域。

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