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Generalized models for unidirectional anisotropic properties of 3D printed polymers

机译:3D印刷聚合物的单向各向异性特性的广义模型

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Purpose The purpose of this paper is to empirically determine general models and methods for yield strength and modulus at different print orientations adequate for design purposes associated with typical fused deposition modeled (FDM) components/parts. Emphasis was placed on characterizing the impacts of anisotropy and resulting trends independent of material toward developing a method that matched the level of engineering required for current limited structural capabilities of FDM. Design/methodology/approach Tensile tests were performed with a range of unidirectional filament orientations of three different materials allowing for determination of the generalized models, which are then compared to previous findings of others. Findings Though anisotropic trends were similar to previous findings, minimum yield strength was found to be associated with filaments 75 degrees from the loading direction resulting in a sinusoidal generalization. Modulus was found to be best approximated with an exponential decay. Resulting models allow for determination of yield strength and modulus in any orientation of FDM-printed material based on minimal testing. Originality/value This study is the widest range of angles and materials to be tested and analyzed for unidirectional FDM allowing for new trends to be identified. In line with the level of engineering required for most FDM components/parts, the resulting generalized models allow for determination of yield strength and modulus with less computation and minimal testing.
机译:目的本文的目的是经验确定与典型融合沉积建模(FDM)组分/部件相关的设计目的的不同印刷取向的屈服强度和模量的一般模型和方法。重点是表征各向异性的影响,并产生趋势与材料朝向开发符合FDM的当前有限结构能力所需的工程水平的方法。设计/方法/接近拉伸试验是通过三种不同材料的单向长丝取向进行的拉伸试验,允许确定广义模型,然后与其他人的先前发现相比。结果表明,尽管各向异性趋势与先前的发现类似,发现最小屈服强度与从装载方向的长丝75度相关联,导致正弦概括。发现模量与指数衰减最近似。基于最小检测,所产生的模型允许在FDM印刷材料的任何方向上测定屈服强度和模量。本研究的原创性/值是待测试的最广泛的角度和材料,并分析单向FDM,允许识别新的趋势。符合大多数FDM组件/部件所需的工程水平,所得到的广义模型允许确定屈服强度和模量,计算较少,测试最小。

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