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RHEOLOGICAL INVESTIGATION OF EFFECT OF COUPLING AGENT AND PARTICLE SIZE ON PROCESSING OF POLYMER-BONDED MAGNETS

机译:偶联剂和颗粒尺寸对聚合物粘结磁体加工影响的流变学研究

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The effect of coupling agents and particle size on melt rheology of polyphenylene sulfide-bonded neodymium-iron-boron (Nd-Fe-B) alloy magnets was studied with oscillatory flow experiments to accelerate efforts to optimize their processing. The minimum viscosity of the polymer-bonded magnets near 290°C was obtained with Nd-Fe-B fillers (106-150 particle size range) that were coupled with a silane coupling agent. All the samples tested followed power-law fluid flow behavior. Morphological and dynamic mechanical analysis of the samples showed that the beneficial function of the coupling agent may be ascribed to enhanced wetting of the magnetic Nd-Fe-B powders by the polymer, improving the processability of the polymer bonded magnets.
机译:通过振荡流实验研究了偶联剂和粒度对聚苯硫醚键合的钕铁硼(Nd-Fe-B)合金磁体的熔体流变学的影响,以加快优化工艺的努力。使用与硅烷偶联剂偶联的Nd-Fe-B填料(粒度范围为106-150)获得了290℃附近的聚合物粘结磁体的最小粘度。所有测试的样品均遵循幂律流体流动行为。样品的形态和动态力学分析表明,偶联剂的有益功能可能归因于聚合物对磁性Nd-Fe-B粉末的增强润湿作用,从而改善了聚合物粘结磁体的可加工性。

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