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Scanning acoustic microscopy investigation of weld lines in injection-molded parts manufactured from industrial thermoplastic polymer

机译:扫描工业热塑性聚合物制造的注塑部件中焊接线的声学显微镜研究

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摘要

Scanning acoustic microscopy (SAM) is used to characterize welds in a thermoplastic polymer (ABS) manufactured by injection-molding, particularly at the locations of weld-lines known to form as unavoidable significant defects. Acoustic micrographs obtained at 420 MHz clearly resolve the weld lines with morphological deformations and microelastic heterogenity. This is also where terahertz (THz) measurements, carried out in support of the SAM study, reveal enhanced birefringence corresponding to the location of these lines enabling verification of the SAM results. Rayleigh surface acoustic waves (RSAW), quantified by V(z) curves (with defocusing distance of 85 mu m), are found to propagate slower in regions close to the weld lines than in regions distant from these lines. The discrepancy of about 100 m/s in the velocity of RSAW indicates a large variation in the micro-elastic properties between areas close to and distant from the weld lines. The spatial variations in velocity (VR) of RSAWs indicate anisotropic propagation of the differently polarized ultrasonic waves.
机译:扫描声学显微镜(SAM)用于表征通过注塑制造制造的热塑性聚合物(ABS)中的焊接,特别是在已知的焊缝线的位置,形成为不可避免的显着缺陷。在420 MHz获得的声学显微照片清楚地解析了具有形态变形和微弹性异质性的焊接线。这也是支持SAM研究的Terahertz(THz)测量,揭示了与这些线路的位置相对应的增强的双折射,从而能够验证SAM结果。由V(Z)曲线量化的瑞利表面声波(RSAW)(具有散焦距离为85μm),在靠近焊接线的区域中传播比在远离这些线的区域中的区域。 RSA法速度约为100m / s的差异表示靠近焊接线的区域之间的微弹性的大的变化。 RSAWS的速度(VR)的空间变化表示不同偏振超声波的各向异性传播。

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