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首页> 外文期刊>Journal of Nondestructive Evaluation >An NDE Methodology to Predict Density in Green-State Powder Metallurgy Compacts
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An NDE Methodology to Predict Density in Green-State Powder Metallurgy Compacts

机译:NDE方法论,用于预测绿态粉末冶金复合材料的密度

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Extensive work at PMRC has established a clear correlation between green-state density and electric conductivity of P/M parts. By monitoring a static electric current flow through the pre-sintered P/M sample and recording the voltage response over its surface, sufficient information can be gathered to predict the density profile throughout the sample volume. In this paper, the formulation and implementation of a novel numerical forward and inverse formulation will be presented that is capable of relating DC voltage measurements to green-state density distributions. It will be shown that this methodology is applicable to both lubricated and lubricant-free compacts. We will present a general forward solution that enables the calculation of three-dimensional surface voltages for a given set of boundary conditions and a known conductivity/density distribution throughout the P/M sample. This formulation is particularly useful for the development of new sensors and measurement arrangements, since it permits the optimization of current injection patterns and voltage probe locations. Our novel inverse solution adjusts the conductivity/density profile so as to determine the conductivity distribution that matches most closely a given set of voltage data on the surface. Practical measurements with a range of green-state P/M samples will underscore the success and usefulness of this modeling approach.
机译:PMRC的大量工作已经建立了绿色状态密度与P / M零件的电导率之间的明确关联。通过监视流过预烧结P / M样品的静态电流并记录其表面上的电压响应,可以收集足够的信息来预测整个样品体积中的密度分布。在本文中,将提出能够将直流电压测量值与绿色态密度分布相关联的新型数值正向和反向公式的制定和实现。结果表明,该方法学适用于润滑和无润滑剂的压坯。我们将提供一个通用的正向解决方案,该解决方案能够为给定的一组边界条件和整个P / M样品的已知电导率/密度分布计算三维表面电压。该公式对于开发新的传感器和测量装置特别有用,因为它可以优化电流注入方式和电压探头的位置。我们新颖的反向解决方案可调节电导率/密度曲线,从而确定与表面上给定的一组电压数据最接近匹配的电导率分布。一系列绿色状态P / M样本的实际测量将强调这种建模方法的成功和实用性。

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