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Designs for the manufacture of manipulable plastic DNA/RNA building blocks for learning life science

机译:用于制造用于学习生命科学的可操纵塑料DNa / RNa构建模块的设计

摘要

The subject of this thesis is the design of custom injection-molded manipulable DNA building blocks for use in a hands-on life sciences educational kit. The new design of the DNA building blocks is meant to replace the existing building blocks, which are hand-constructed from 12 existing LEGO® blocks and glued together by volunteers. The goals of the new design are to reduce the part count, increase the ease of assembly and outsource it to the end-user, and reduce dependence on the availability of LEGO components without sacrificing function and while keeping mold and production costs low. The functional requirements for the building blocks were determined through detailed conversations with the designer of the existing LEGO DNA Learning Center Set and its supplementary curriculum materials. Simple mechanical models and 3D-printed prototypes were used in an iterative design process. The part count for each building block was reduced to 3, which require 6 unique molds. Several design options for each of the three subcomponents of the DNA building blocks are presented for further assessment of mold cost and manufacturability.
机译:本文的主题是设计定制注塑成型可操纵DNA构建块,以用于动手生命科学教育工具包。 DNA构建基块的新设计旨在替代现有的构建基块,这些构建基块由12个现有的LEGO®块手工构建,并由志愿者粘合在一起。新设计的目标是减少零件数量,增加组装的便利性,并将其外包给最终用户,并在不牺牲功能的情况下减少对LEGO组件可用性的依赖,同时保持较低的模具和生产成本。通过与现有LEGO DNA学习中心套件及其补充课程资料的设计者进行详细对话,确定了构建模块的功能要求。在迭代设计过程中使用了简单的机械模型和3D打印的原型。每个构件的零件数量减少到3,这需要6个独特的模具。为进一步评估模具成本和可制造性,介绍了DNA构建模块三个子组件中每个子组件的几种设计选项。

著录项

  • 作者

    Lemanski Bethany I;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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