首页> 外文会议>International Conference and Exhibition on New Actuator Systems and Applications >Modeling and Experiments of Additively-Manufactured Fluid Actuated Morphing Unit Structures
【24h】

Modeling and Experiments of Additively-Manufactured Fluid Actuated Morphing Unit Structures

机译:橡皮制造流体致动变形单元结构的建模与实验

获取原文
获取外文期刊封面目录资料

摘要

Fluid actuated morphing unit structures (FAMoUS) enable shape adaptability when implemented in larger systems or vehicles, such as aircraft wings, in order to improve overall performance such as increased efficiency. FAMoUS units are composed of reinforced elastomeric chambers that tend to elongate when pressurized by air or liquid whilst preserving a relatively smooth outer surface, thereby combining the skin, substructure and actuation components into a tightly integrated compact package. A number of research challenges need to be first overcome and this paper presents numerical and experimental results of single FAMoUS units that have been produced with additive manufacturing methods. With the specific composition of elastomeric and stiffening materials, the units exhibit actuator behaviour by generating force and stroke which can be used for carrying loads and changing shape. Approximating equations for force generation show that dependencies on pressure, material stiffness and incompressibility and geometry exist. Methods for fabrication include additive manufacturing though the associated material properties need to allow for sufficient strength for adequate force generation and stiffness. Specimens printed with real silicone elastomers and ongoing tests are hypothesized to show substantially higher strength, working pressures and force than those with PolyJet(r) rapid prototyping materials.
机译:当在较大的系统或车辆(例如飞机翼)的车辆中实现时,流体致动变形单元结构(着名)能够实现形状适应性,以提高诸如提高效率的整体性能。着名的单元由增强弹性腔室组成,所述加强弹性腔室由空气或液体加压时倾向于细长,同时保持相对光滑的外表面,从而将皮肤,子结构和致动部件组合成紧密集成的紧凑型封装。需要首先克服许多研究挑战,本文提出了具有添加剂制造方法的单一着名单元的数值和实验结果。利用弹性体和加强材料的特定组成,通过产生力和行程,该单元具有用于承载负载和变化形状的力和冲程来表现出致动器行为。用于力产生的近似方程表明,存在对压力,材料刚度和不可压制性和几何形状的依赖性。制造方法包括添加剂制造,尽管相关的材料特性需要足够的强度以获得足够的力产生和刚度。用真正的硅氧烷弹性体和正在进行的测试印刷的样品被假设以显示比具有多射精(R)快速原型材料的强度,工作压力和力显着更高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号