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Evaluation of Different Internal Structure and Build Orientation for Multijet Modeling Process

机译:不同内部结构的评估与多jet建模过程的构建方向

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Rapid Prototyping (RP) technology has proven its capability to produce complex parts with shorter lead time. This advantage could benefit tremendously in application such as the Investment Casting (IC) process. The focus of the study is the production of sacrificial IC patterns produced using Multijet Modeling (MJM) RP technology. It includes the evaluation of dimensional accuracy and the surface roughness of part with a hollow and quasi hollow inner support patterns. Different internal structure's pattern were developed using CAD software, and the part were fabricated using MJM technique in two different build orientations. Analyses were done using Coordinate Measuring Machine (CMM) and the surface roughness tester. Results show that part built with 90° orientation is better than part built with 0° orientation both in terms of accuracies and roughness. Different internal structure similarly affects the final part quality, though the post processing steps also have their influence, thus making it no clear different among the parts. However, it demonstrated parts with square structure produced the best dimensional accuracy and the part with hatch structure produced the best surface roughness.
机译:快速原型设计(RP)技术已证明其能够生产较短的交货时间。这种优势可以在诸如投资铸造(IC)过程之类的应用中受益匪浅。该研究的重点是生产使用多jet建模(MJM)RP技术产生的牺牲IC模式。它包括尺寸精度和部分的尺寸精度和具有空心中空内部支撑图案的部分的粗糙度。使用CAD软件开发了不同的内部结构的模式,部分使用MJM技术以两种不同的构建方向制造。使用坐标测量机(CMM)和表面粗糙度测试仪进行分析。结果表明,在精度和粗糙度方面,用90°定向构建的部分优于0°定向的部分。不同的内部结构同样影响最终部件质量,尽管后处理步骤也具有它们的影响,因此零件之间没有明确不同。然而,它展示了方形结构的部件产生了最佳尺寸精度,并且具有舱口结构的部分产生了最佳的表面粗糙度。

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