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Development of materials for the rapid manufacture of die cast tooling.

机译:开发用于快速制造压铸模具的材料。

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摘要

The focus of this research is to develop a material composition that can be processed by rapid prototyping (RP) in order to produce tooling for the die casting process. Where these rapidly produced tools will be superior to traditional tooling production methods by offering one or more of the following advantages: reduced tooling cost, shortened tooling creation time, reduced man-hours for tool creation, increased tool life, and shortened die casting cycle time.; By utilizing RP's additive build process and vast material selection, there was a prospect that die cast tooling may be produced quicker and with superior material properties. To this end, the material properties that influence die life and cycle time were determined, and a list of materials that fulfill these “optimal” properties were highlighted. Physical testing was conducted in order to grade the processability of each of the material systems and to optimize the manufacturing process for the downselected material system.; Sample specimens were produced and microscopy techniques were utilized to determine a number of physical properties of the material system. Additionally, a benchmark geometry was selected and die casting dies were produced from traditional tool materials (H13 steel) and techniques (machining) and from the newly developed materials and RP techniques (selective laser sintering (SLS) and laser engineered net shaping (LENS)). Once the tools were created, a die cast alloy was selected and a preset number of parts were shot into each tool.; During tool creation, the manufacturing time and cost was closely monitored and an economic model was developed to compare traditional tooling to RP tooling. This model allows one to determine, in the early design stages, when it is advantageous to implement RP tooling and when traditional tooling would be best.; The results of the physical testing and economic analysis has shown that RP tooling is able to achieve a number of the research objectives, namely, reduce tooling cost, shorten tooling creation time, and reduce the man-hours needed for tool creation. Though identifying the appropriate time to use RP tooling appears to be the most important aspect in achieving successful implementation.
机译:这项研究的重点是开发一种可以通过快速成型(RP)进行加工的材料成分,以生产用于压铸工艺的工具。这些快速生产的工具将通过提供以下一项或多项优势而优于传统的工具生产方法:降低工具成本,缩短工具创建时间,减少工具创建工时,延长工具寿命并缩短压铸周期时间。;通过利用RP的添加剂制造工艺和广泛的材料选择,可以更快地生产具有卓越材料性能的压铸模具。为此,确定了影响模具寿命和循环时间的材料特性,并突出显示了满足这些“最佳”特性的材料清单。进行物理测试,以分级每种材料系统的可加工性,并优化向下选择的材料系统的制造工艺。产生样品样本,并使用显微镜技术确定材料系统的许多物理性质。此外,选择了基准几何形状,并使用传统工具材料(H13钢)和技术(机加工)以及最新开发的材料和RP技术(选择性激光烧结(SLS)和激光工程网成形(LENS))生产压铸模具)。一旦创建了工具,就选择了压铸合金,并将预设数量的零件射入每个工具。在工具创建过程中,密切监视了制造时间和成本,并开发了一种经济模型来将传统工具与RP工具进行比较。这种模型使人们可以在设计的早期阶段确定何时实施RP工具是有利的,何时是最佳传统工具。物理测试和经济分析的结果表明,RP工具能够实现许多研究目标,即降低工具成本,缩短工具创建时间并减少工具创建所需的工时。尽管确定适当的时间使用RP工具似乎是成功实施的最重要方面。

著录项

  • 作者

    Hardro, Peter Jason.;

  • 作者单位

    University of Rhode Island.;

  • 授予单位 University of Rhode Island.;
  • 学科 Engineering Materials Science.; Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 258 p.
  • 总页数 258
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;一般工业技术;
  • 关键词

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