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The Development of Robust Structural Health Monitoring Sensors Utilizing TRIP Steel

机译:利用TRIP钢开发鲁棒的结构健康监测传感器

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摘要

The feasibility of using the inherently smart properties of transformation-induced plasticity (TRIP) steels as a basis for low cost, robust smart structural health monitoring sensors has been investigated. These steels undergo an irreversible strain-induced phase transformation from paramagnetic austenite to ferromagnetic martensite. Specific needs were identified in the geotechnical industry, and a primary aim of the project was the development of a load cell based on this technology. Cast TRIP steel alloys were designed and tested for their transformation performance during deformation. The response of the phase transformation was also studied under various environmental and loading conditions. The inaccuracies accumulated under unknown environmental and loading conditions were found to be substantial but not excessive for some applications, where other characteristics such as cost and reliability are more important. Results point to potential methods for the reduction of the inaccuracies. Prototype load cells were built and tested, and one variation was installed in a suspension bridge.
机译:已经研究了使用相变诱发塑性(TRIP)钢固有的智能特性作为低成本,坚固耐用的智能结构健康监测传感器的基础的可行性。这些钢经历了从顺磁性奥氏体到铁磁性马氏体的不可逆应变诱导相变。在岩土工业中确定了特殊需求,该项目的主要目的是开发基于该技术的称重传感器。设计并测试了TRIP铸钢合金在变形过程中的转化性能。还研究了在各种环境和负载条件下的相变响应。发现在未知环境和负载条件下累积的误差很大,但对于某些应用(其中成本和可靠性等其他特性更为重要)的应用而言,误差并不过分。结果指出了减少误差的潜在方法。建立并测试了原型测力传感器,并在悬索桥中安装了一个变体。

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