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A study on the influence of process parameters on the Mechanical Properties of 3D printed ABS composite

机译:工艺参数对3D印刷ABS复合材料力学性能影响的研究

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Additive Manufacturing (AM) technologies have been emerged as a fabrication method to obtain engineering components within a short span of time. Desktop 3D printing, also referred as additive layer manufacturing technology is one of the powerful method of rapid prototyping (RP) technique that fabricates three dimensional engineering components. In this method, 3D digital CAD data is converted directly to a product. In the present investigation, ABS + hydrous magnesium silicate composite was considered as the starting material. Mechanical properties of ABS + hydrous magnesium silicate composite material were evaluated. ASTM D638 and ASTM D760 standards were followed for carrying out tensile and flexural tests, respectively. Samples with different layer thickness and printing speed were prepared. Based on the experimental results, it is suggested that low printing speed, and low layer thickness has resulted maximum tensile and flexural strength, as compared to all the other process parameters samples.
机译:添加剂制造(AM)技术被出现为制造方法,以在短时间内获得工程部件。桌面3D打印,也称为添加层制造技术是制造三维工程部件的快速原型(RP)技术的强大方法之一。在此方法中,3D数字CAD数据将直接转换为产品。在本发明的研究中,ABS +含水镁硅酸镁复合物被认为是原料。评价ABS +含水镁硅酸镁复合材料的机械性能。遵循ASTM D638和ASTM D760标准,分别进行拉伸和弯曲试验。制备具有不同层厚度和印刷速度的样品。基于实验结果,建议较低的印刷速度,低层厚度导致最大拉伸和弯曲强度,与所有其他工艺参数样品相比。

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