Electrification due to the separation of materials

D. Hays
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Abstract

When a dielectric material is brought into contact with and then separated from a dissimilar material, an electrostatic charge usually transfers between the otherwise uncharged materials. If the contacting materials are identical, electrification is observed when the two bodies are asymmetrically rubbed together. Electrification is also obtained if a dielectric material, such as mica, is simply cleaved into two parts. Since dielectric materials are good insulators, charge accumulated on a dielectric body decays very slowly. Charge retention on dielectric materials usually represents a nuisance (shocks, dust collection, etc.) or a hazard (explosion of fuels, powders, etc.). On the other hand, the motion of small dielectric particles can be controlled by an electric field if the particles acquire an electrostatic charge by contact and separation from other materials. The ability to manipulate charged particles with an electrostatic force is utilized in the electrophotographic copying process, spray painting, and separation of ores.
由于物料分离而产生的电气化
当一种介电材料与另一种不同的材料接触并分离时,静电电荷通常在不带电的材料之间转移。如果接触材料是相同的,当两个物体不对称地摩擦在一起时,就会观察到带电现象。如果将介电材料,如云母,简单地切割成两部分,也会产生电气化。由于介电材料是良好的绝缘体,积累在介电体上的电荷衰减非常缓慢。介电材料上的电荷保留通常代表一种麻烦(冲击,粉尘收集等)或危险(燃料,粉末爆炸等)。另一方面,如果小介电粒子通过与其他材料的接触和分离而获得静电荷,则可以通过电场来控制其运动。用静电力操纵带电粒子的能力被用于电子照相复印过程、喷漆和矿石分离。
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