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Effect of Interfacial Adhesion on Tensile Strength of 3D Printed Particulate Nanocomposites

机译:界面粘附对3D印刷颗粒纳米复合材料拉伸强度的影响

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Tensile strength of a nanocomposite is dependent on different characteristics such as particle size,particle loading and matrix-particle interfacial adhesion.Matrix-particle interfacial adhesion is one of the main characteristics that affects the mechanical properties.Additive manufacturing have unique and distinct advantages over conventional manufacturing techniques.However,nanocomposites fabricated by additive manufacturing still need a comprehensive study.In this paper we investigated the effect of interfacial adhesion between matrix and filler of samples printed using photopolymer extrusion 3D printing technique.In order to compare the matrix-particle interfacial adhesion of samples printed by this technique,another set of samples have been fabricated using casting technique.Tensile tests on both sets of samples had been conducted and interfacial adhesion parameter models and SEM was used to draw the comparison;consequently,samples fabricated by 3D printing proved to have better mechanical properties than casted samples.
机译:的纳米复合材料的拉伸强度是取决于不同的特性,如粒径,粒子负载和基质粒子界面adhesion.Matrix粒子界面的粘合性的主要特征之一,影响机械properties.Additive制造具有优于常规独特和明显的优点制造techniques.However,纳米复合材料制造的由附加的制造还需要一个全面study.In本文中,我们研究了使用光聚合物挤出3D印刷technique.In为了比较矩阵粒子界面粘合印刷基质和样品的填料之间的界面粘合性的效果通过这种技术印刷的样品的,另一组样品已经使用两个样本集铸造technique.Tensile测试已经进行和界面粘合性参数模型和SEM来绘制比较制造;因此,样品制备通过三维打印证明有更好的米器的机械特性比铸造样品。

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