选择性Sorel水泥活化中印刷策略对产品性能的影响

IF 3.4 4区 工程技术 Q1 ENGINEERING, MECHANICAL
Farid Salari, P. Bosetti, V. Sglavo
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引用次数: 1

摘要

目的选择性水泥活化(SCA)颗粒床结合法是一种计算机辅助制造(CAM)技术,用于生产胶凝元素。在打印之前,计算机辅助设计文件被切片以生成g代码。本文旨在研究切片机软件的关键输入参数对打印产品最终性能的影响。设计/方法/方法一次一个因素(OFAT)方法用于研究选定参数对打印样品最终性能的影响,并讨论了每个变量结果变化的原因。发现更细的骨料可以产生更致密的层,从而产生密度更高、强度更高的产品。流体压力由体素率(rV)直接决定;然而,高压可以更好地控制强化产品的流体渗透;对于极端rVs,在连续层和单线基元之间的界面上的残余空隙会损害机械强度。据了解,打印头沿零件在粉末床中的方向运动可以改善机械性能。独创性/价值实验设计(DOE)法同时评估工艺参数对各种输入打印变量的影响。由于资源有限,在全因子设计的子集上进行了分数因子计划;因此,提供每个因素变化背后的物理解释是困难的。在所有其他参数保持不变的情况下,OFAT有助于分析一个因素的变化对产量的影响。研究结果有助于工程师正确考虑变量变化对未来DOE设计的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of printing strategies on the properties of product in selective Sorel cement activation
Purpose Particles bed binding by selective cement activation (SCA) method is a computer-aided manufacturing (CAM) technique used to produce cementitious elements. A computer-aided design file is sliced to generate G-codes before printing. This paper aims to study the effect of key input parameters for slicer software on the final properties of printed products. Design/methodology/approach The one factor at a time (OFAT) methodology is used to investigate the impact of selected parameters on the final properties of printed specimens, and the causes for the variations in outcomes of each variable are discussed. Findings Finer aggregates can generate a more compact layer, resulting in a denser product with higher strength. Fluid pressure is directly determined by voxel rate (rV); however, high pressures enable better fluid penetration control for fortified products; for extreme rVs, residual voids in the interfaces between successive layers and single-line primitives impair mechanical strength. It was understood that printhead movement along the orientation of the parts in the powder bed improved the mechanical properties. Originality/value The design of experiment (DOE) method assesses the influence of process parameters on various input printing variables at the same time. As the resources are limited, a fractional factorial plan is carried out on a subset of a full factorial design; hence, providing physical interpretation behind changes in each factor is difficult. OFAT aids in analyzing the effect of a change in one factor on output while all other parameters are kept constant. The results assist engineers in properly considering the influence of variable variations for future DOE designs.
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来源期刊
Rapid Prototyping Journal
Rapid Prototyping Journal 工程技术-材料科学:综合
CiteScore
8.30
自引率
10.30%
发文量
137
审稿时长
4.6 months
期刊介绍: Rapid Prototyping Journal concentrates on development in a manufacturing environment but covers applications in other areas, such as medicine and construction. All papers published in this field are scattered over a wide range of international publications, none of which actually specializes in this particular discipline, this journal is a vital resource for anyone involved in additive manufacturing. It draws together important refereed papers on all aspects of AM from distinguished sources all over the world, to give a truly international perspective on this dynamic and exciting area. -Benchmarking – certification and qualification in AM- Mass customisation in AM- Design for AM- Materials aspects- Reviews of processes/applications- CAD and other software aspects- Enhancement of existing processes- Integration with design process- Management implications- New AM processes- Novel applications of AM parts- AM for tooling- Medical applications- Reverse engineering in relation to AM- Additive & Subtractive hybrid manufacturing- Industrialisation
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