首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Impact of Millimeter-Size Silicon Microchips on the Mechanical Properties of Polymer Samples Tested under Flexural Bending, Long-Term Creep, and Impact Conditions
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Impact of Millimeter-Size Silicon Microchips on the Mechanical Properties of Polymer Samples Tested under Flexural Bending, Long-Term Creep, and Impact Conditions

机译:毫米大小的硅微芯片对在弯曲,长期蠕变和冲击条件下测试的聚合物样品的机械性能的影响

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One way to continuously monitor the whole water distribution system is to equip pipes with many small sensors. If these sensors are to be integrated within the pipe walls, it is important to assess their impact on the structural integrity of the pipes, but embedding pipes with these microchips for testing would allow limited control of the position and orientation of the microchips. Therefore, microchips of a few millimeters in size and different shapes were embedded within small-scale polyethylene samples. Pipes are subject to a range of different stresses during their lifetime including hoop, bending, and potentially local impact stresses, and long-term creep effects. This paper focuses on the bending, flexural creep, and impact stresses, with some examples from the tensile tests also presented. The key findings are that there is little effect of the microchips on the 50-year flexural moduli and the short-term flexural properties of the polymer, although there was a significant improvement in the toughness and a reduction in the tensile strength
机译:持续监控整个配水系统的一种方法是为管道配备许多小传感器。如果要将这些传感器集成到管壁内,则重要的是评估它们对管道结构完整性的影响,但是将管道与这些微芯片一起嵌入以进行测试将允许对微芯片的位置和方向进行有限的控制。因此,在小型聚乙烯样品中嵌入了几毫米大小和不同形状的微芯片。管道在使用寿命期间会承受一系列不同的应力,包括环向弯曲,弯曲以及可能的局部冲击应力以及长期蠕变效应。本文着重于弯曲,弯曲蠕变和冲击应力,并提供了一些来自拉伸试验的例子。关键发现是,微芯片对聚合物的50年挠曲模量和短期挠曲特性影响不大,尽管韧性得到了显着改善,而抗张强度却有所下降。

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