首页> 外文会议>Composites and Advanced Materials Expo Conference >ADDITIVE MANUFACTURING OF STRAIN GAUGE SENSORS USING CONDUCTIVE POLYMER BY FUSED DEPOSITION MODELING AND ITS APPLICATIONS ON LINERLESS COMPOSITE PRESSURE VESSELS
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ADDITIVE MANUFACTURING OF STRAIN GAUGE SENSORS USING CONDUCTIVE POLYMER BY FUSED DEPOSITION MODELING AND ITS APPLICATIONS ON LINERLESS COMPOSITE PRESSURE VESSELS

机译:导电聚合物熔融沉积法应变传感器的增材制造及其在无衬里复合材料压力容器上的应用

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This investigation reports on the use of additively manufactured biaxial strain gauge sensors for assessing the loads and deformations in a linerless (type Ⅴ) composite pressure vessel (CPV). Fused deposition modeling (FDM) is a widely used rapid prototyping/additive manufacturing technique due to its relatively fast processing time and low cost. However, additive manufacturing of strain gauge sensors using FDM is uncommon because there are very few suitable conductive filaments commercially available. The filament selected for the strain gauge sensors in this study is a conductive polymer with low resistivity and high melting point which are crucial for the strain gauge to maintain its shape and integrity to obtain accurate, low power readings after being subjected to high temperatures during the post-curing process of CPVs. A small footprint and the lack of a permanently attached substrate allows the placement of strain gauges integrated into the composite layer to have minimal impact on the structural integrity of the pressure vessel. The applications for this study include but are not limited to pressurant and propellant tanks for launchers and spacecraft, self-contained breathing apparatus, space habitats and alternative fuel tanks.
机译:本研究报告了使用额外制造的双轴应变计传感器来评估无衬里(Ⅴ型)复合材料压力容器(CPV)中的载荷和变形。熔融沉积建模(FDM)是一种广泛应用的快速成型/添加制造技术,其加工时间相对较快,成本较低。然而,使用FDM进行应变计传感器的附加制造并不常见,因为市场上几乎没有合适的导电丝。本研究中选择的应变计传感器灯丝是一种导电聚合物,具有低电阻率和高熔点,这对于应变计在CPV后固化过程中经受高温后保持形状和完整性以获得准确、低功率读数至关重要。由于占地面积小,且没有永久性连接的基板,因此可以将应变计安装在复合材料层中,从而对压力容器的结构完整性产生最小的影响。本研究的应用包括但不限于用于发射器和航天器的增压剂和推进剂罐、自给式呼吸器、太空栖息地和替代燃料罐。

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