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Material property variations and defects of carbon/carbon brake disks monitored by ultrasonic methods

机译:超声监测碳/碳制动盘的材料性能变化和缺陷

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摘要

Several ultrasonic techniques were applied to carbon/carbon brake disks for the evaluation of spatial variations in material properties that are attributable to the manufacturing process. In a carbon/carbon brake disk manufactured by a combination of pitch impregnation and vapor infiltration methods, the spatial variation of ultrasonic velocity was measured and found to be consistent with the nonuniform densification behavior in the manufacturing process. Low frequency (e.g 1-5 MHz) through-transmission scans were used for mapping out the material property inhomogeneity. These results were compared with that obtained by dry-coupling ultrasonics. A good correlation was found between ultrasonic velocity and material density on a set of small blocks cut out of the disk. Pulse-echo C-Scans (10-25 MHz) were used to image near-surface material property anomalies associated with certain steps in the manufacturing process. Ultrasonic velocities in the in-plane directions were affected more by the relative contents of fabric and chopped fiber, and less by the void content.
机译:几种超声技术被应用于碳/碳制动盘,以评估可归因于制造过程的材料特性的空间变化。在通过沥青浸渍和蒸气渗透方法的组合制造的碳/碳制动盘中,测量了超声波速度的空间变化,发现其与制造过程中的不均匀致密化行为一致。低频(例如1-5 MHz)透射扫描用于标出材料特性的不均匀性。将这些结果与通过干耦合超声获得的结果进行比较。在从磁盘切出的一组小块上,超声波速度与材料密度之间发现了良好的相关性。脉冲回波C扫描(10-25 MHz)用于成像与制造过程中某些步骤相关的近表面材料特性异常。面内方向上的超声波速度受织物和短切纤维相对含量的影响较大,而受孔隙含量的影响较小。

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