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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Determination of density distribution in powder compacts using ultrasonic tomography
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Determination of density distribution in powder compacts using ultrasonic tomography

机译:超声层析成像法测定粉末压块中的密度分布

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Laser-induced ultrasonic bulk wave tomography is used for density variation determination of powder metal compacts. A laser beam is used to excite ultrasonic energy, and the signals passing through the specimen are received by an air-coupled transducer. The density variations of powder metal compacts can be determined directly by the cross-sectional tomographic images of slowness obtained by using a filtered, backprojection algorithm based on measured time of flights. Interpolations with respect to sample and projection angles are used to generate the input data required for displaying a well-balanced, reconstructed image to reduce the aliasing distortions caused by insufficient input data. Results of presintered cylindrical ferrous powdered samples show that this novel approach makes the reconstruction process more cost effective than the very tedious, time-consuming, and inaccurate metallographic methods, thus making it a potentially powerful tool for studying manufacturing processes through significant parameters to obtain a more uniform density distribution.
机译:激光诱导的超声波体波层析成像用于确定粉末金属压块的密度变化。激光束用于激发超声能量,并且穿过样品的信号被空气耦合传感器接收。粉末金属压坯的密度变化可以直接通过横截面的慢速断层图像来确定,该图像通过使用基于测得的飞行时间的滤波反投影算法获得。关于采样角和投影角的插值用于生成显示平衡良好的重建图像所需的输入数据,以减少由输入数据不足引起的混叠失真。预烧结圆柱状铁粉样品的结果表明,这种新颖的方法使重建过程比非常繁琐,耗时且不准确的金相方法更具成本效益,从而使其成为潜在的强大工具,可通过重要参数研究制造过程来获得高质量的合金。密度分布更均匀。

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