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Design and feasibility testing of a high resolution, 3D printer using concentrated solar power

机译:使用集中的太阳能的高分辨率,3D打印机的设计和可行性测试

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摘要

Additive manufacturing (3D printing), combined with computer aided design, is transforming the modern manufacturing industry. Using high temperature techniques such as "selective laser sintering", fabricators are given access to a wide range of starting materials. The sustainability of the approach could be improved through the direct use of concentrated sunlight to sinter these powders. Using inexpensive components, the cost can also be decreased to enable utilization by microbusinesses, especially those operating in remote, off-grid locations. For achieving this goal a high resolution prototype has been developed and constructed using a Fresnel lens design. To determine the feasibility of the method, two dimensional sintering tests were conducted on a commercial Nylon 12 powder. The effects of the most influential parameters on this process were determined through the implementation of a simplified model and dimensional analysis.The most important parameter for the description of the process was found to be the dimensionless ratio of incoming radiative power to power required for sintering or melting. For conditions in which only a single phase transformation takes place, this parameter was found to remain constant, with a mean of 6.84 and variance of 0.04. The limits of the power to speed ratio were also determined, achieving thicknesses as low as 0.3 mm for the selected powder and lens combination. The measured parameters demonstrate the feasibility of high resolution 3D printing using the proposed technique, provided that tailored control strategies are developed. A major limitation was found to be the focal spot size of the lens, which determines the track width. This can be improved from the current value of 3 mm through the use of a cast glass lens.
机译:添加剂制造(3D打印),结合计算机辅助设计,正在改变现代制造业。使用诸如“选择性激光烧结”的高温技术,制造器可获得广泛的起始材料。通过直接使用浓阳光来烧结这些粉末,可以改善该方法的可持续性。使用廉价的组件,也可以降低成本,以实现微生物素质的利用,尤其是在遥控器的离网位置运行的成本。为了实现这一目标,已经开发了高分辨率的原型,并使用菲涅耳透镜设计来开发和构造。为了确定该方法的可行性,在商业尼龙12粉末上进行二维烧结试验。通过实施简化的模型和尺寸分析来确定最有影响力参数对该过程的影响。发现该过程描述的最重要参数是对烧结所需的电力的电力的无量纲比率或融化。对于仅发生单相变换的条件,发现该参数保持恒定,其平均值为6.84,方差为0.04。还测定了速比的功率的极限,为所选粉末和透镜组合达到0.3mm的厚度。如果开发了定制的控制策略,则测量参数展示了使用该技术的高分辨率3D打印的可行性。发现一个主要限制是镜头的焦点尺寸,它决定了轨道宽度。通过使用铸造玻璃透镜,这可以从电流值提高3mm。

著录项

  • 来源
    《Solar Energy》 |2019年第6期|13-23|共11页
  • 作者单位

    Univ Pretoria Dept Chem Engn Lynnwood Rd ZA-0083 Pretoria South Africa;

    Univ Pretoria Dept Chem Engn Lynnwood Rd ZA-0083 Pretoria South Africa;

    Univ Pretoria Dept Chem Engn Lynnwood Rd ZA-0083 Pretoria South Africa|Univ Manchester Sch Chem Engn & Analyt Sci Sackville St Manchester M1 3AL Lancs England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Additive manufacturing; Concentrated solar energy; Selective sintering;

    机译:添加剂制造;集中的太阳能;选择性烧结;

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