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New strain measurement technology for material damage assessment

机译:用于材料损伤评估的新应变测量技术

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Abstract: A new strain sensing methodology for the measurement of peak strain in engineering materials has been developed. The approach involves the correlation of change in the magnetic susceptibility attendant with the strain-dependent, solid-state phase transformation in a sensing element. The sensing materials are metastable steel alloys that irreversibly transform from nonferromagnetic to ferromagnetic behavior as a function of the peak, applied normal strain. The technology makes available a reliable method for passive, semi-active, or active monitoring of strains or deflections and is applicable as either embedded sensors or attached strain gages, i.e., monitors. Strain assessment devices of various types have been conceptualized to meet a variety of needs. The history, principles, and test data on the development are presented. Discussion and results of a prototype system installed on the I-95 Savannah River bridge are presented. Examples of current projects and future applications of the technology are presented and discussed. A range of applications is discussed that illustrates the versatility of the approach and the value of such systems in materials and structural safety assessment. !18
机译:摘要:开发了一种新的应变传感方法,用于测量工程材料中的峰值应变。该方法涉及磁化率的变化与传感元件中应变相关的固态相变的相关性。传感材料是亚稳态钢合金,它根据施加的法向应变的峰值从非铁磁行为不可逆地转变为铁磁行为。该技术为应变,挠度的被动,半主动或主动监视提供了可靠的方法,并且可以用作嵌入式传感器或附加的应变计,即监视器。各种类型的应变评估设备已被概念化以满足各种需求。介绍了开发的历史,原理和测试数据。介绍了安装在I-95萨凡纳河大桥上的原型系统的讨论和结果。介绍并讨论了该技术的当前项目和未来应用的示例。讨论了一系列应用,这些方法说明了该方法的多功能性以及此类系统在材料和结构安全评估中的价值。 !18

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