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Effects of flow induced orientation of ferromagnetic particles on relative magnetic permeability of injection molded composites

机译:铁磁颗粒的流致取向对注塑复合材料相对磁导率的影响

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Composite samples consisting of ferromagnetic asymmetric particles incorporated into a polyolefin binder were injection molded using custom designed molds which produced preferential fiber orientations. The relative magnetic permeability values of he composites were measured as a function of the filler volume fraction, injection rate, gate diameter, temperature, aspect ratio of the fibers, and fiber orientation, Fiber orientation was affected by the molding conditions and controlled the relative magnetic permeability of the composites. The degree of fiber orientation was significantly affected by the size of the opening (gate) to the mold, or by the mold geometry going from an edge-gated cylindrical to a center-gated disk: cavity, Relative permeability values of the composites were observed to increase when the fiber orientation and the applied field were parallel to one another. For instance, highly aligned composite samples exhibited up to 30% greater relative permeability values compared to those samples which exhibit fiber orientation distributions approaching a random distribution. To our knowledge this is the first study that provides data linking the fiber orientation distribution functions of ferromagnetic asymmetric particles to the relative magnetic permeability values of injection molded composites.
机译:使用定制设计的模具将由掺入聚烯烃粘合剂中的铁磁不对称颗粒组成的复合样品注塑成型,该模具可产生优先的纤维取向。测量复合材料的相对磁导率值与填料体积分数,注入速率,浇口直径,温度,纤维的长径比和纤维取向的关系,纤维取向受成型条件的影响并控制相对磁性复合材料的渗透性。纤维取向程度受模具开口(浇口)的大小或模具几何形状从边缘门控圆柱到中心门控圆盘的影响很大:腔,观察到复合材料的相对渗透率值当纤维方向和施加的场相互平行时增加。例如,与那些表现出接近随机分布的纤维取向分布的样品相比,高度对齐的复合材料样品表现出高达30%的相对磁导率值。据我们所知,这是首次提供将铁磁不对称颗粒的纤维取向分布函数与注塑复合材料的相对磁导率值相关联的数据的研究。

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