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An experimental study of factors affecting the selective inhibition of sintering process.

机译:影响选择性抑制烧结过程的因素的实验研究。

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摘要

Selective Inhibition of Sintering (SIS) is a new rapid prototyping method that builds parts in a layer-by-layer fabrication basis. SIS works by joining powder particles through sintering in the part's body, and by sintering inhibition of some selected powder areas.; The objective of this research has been to improve the new SIS process, which has been invented at USC. The process improvement is based on statistical design of experiments. To conduct the needed experiments a working machine and related path generator software were needed. The machine and its control software were made available prior to this research. The path generator algorithms and software had to be created. This program should obtain model geometry data from a CAD file and generate an appropriate path file for the printer nozzle. Also, the program should generate a simulation file for path file inspection using virtual prototyping. The activities related to path generator constitute the first part of this research, which has resulted in an efficient path generator.; In addition, to reach an acceptable level of accuracy, strength, and surface quality in the fabricated parts, all effective factors in the SIS process should be identified and controlled. Simultaneous analytical and experimental studies were conducted to recognize effective factors and to control the SIS process. Also, it was known that polystyrene was the most appropriate polymer powder and saturated potassium iodide was the most effective inhibitor among the available candidate materials. In addition, statistical tools were applied to improve the desirable properties of the parts fabricated by the SIS process. An investigation of part strength was conducted using the Response Surface Methodology (RSM) and a region of acceptable operating conditions for the part strength was found. Then, through analysis of the experimental results, the impact of the factors on the final part surface quality and dimensional accuracy was modeled. After developing a desirability function model, process operating conditions for maximum desirability were identified. Finally, the desirability model was validated.
机译:选择性烧结抑制(SIS)是一种新的快速原型制作方法,可在逐层制造的基础上构建零件。 SIS的工作原理是通过在零件体内进行烧结来结合粉末颗粒,并通过抑制某些选定的粉末区域进行烧结。这项研究的目的是改善USC发明的新SIS工艺。流程改进基于实验的统计设计。为了进行所需的实验,需要工作机和相关的路径生成器软件。该机器及其控制软件在此研究之前已经可用。必须创建路径生成器算法和软件。该程序应从CAD文件获取模型几何数据,并为打印机喷嘴生成适当的路径文件。此外,程序应使用虚拟原型生成用于路径文件检查的仿真文件。与路径生成器有关的活动构成了本研究的第一部分,从而产生了一个高效的路径生成器。此外,为使所制造零件的精度,强度和表面质量达到可接受的水平,应确定和控制SIS过程中的所有有效因素。同时进行了分析和实验研究,以识别有效因素并控制SIS过程。另外,已知在可获得的候选材料中,聚苯乙烯是最合适的聚合物粉末,而饱和碘化钾是最有效的抑制剂。另外,使用统计工具来改善由SIS工艺制造的零件的理想性能。使用响应表面方法(RSM)进行了零件强度的调查,发现了零件强度可接受的工作条件区域。然后,通过对实验结果的分析,模拟了这些因素对最终零件表面质量和尺寸精度的影响。在建立合意性函数模型之后,确定了最大合意性的过程操作条件。最后,验证了期望模型。

著录项

  • 作者

    Asiabanpour, Bahram.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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