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Capillary test specimen, system, and methods for in-situ visualization of capillary flow and fillet formation

机译:用于毛细管流动和圆角形成的现场可视化的毛细管测试样品,系统和方法

摘要

A capillary test specimen, method, and system for visualizing and quantifying capillary flow of liquids under realistic conditions, including polymer underfilling, injection molding, soldering, brazing, and casting. The capillary test specimen simulates complex joint geometries and has an open cross-section to permit easy visual access from the side. A high-speed, high-magnification camera system records the location and shape of the moving liquid front in real-time, in-situ as it flows out of a source cavity, through an open capillary channel between two surfaces having a controlled capillary gap, and into an open fillet cavity, where it subsequently forms a fillet on free surfaces that have been configured to simulate realistic joint geometries. Electric resistance heating rapidly heats the test specimen, without using a furnace. Image-processing software analyzes the recorded images and calculates the velocity of the moving liquid front, fillet contact angles, and shape of the fillet's meniscus, among other parameters.
机译:一种毛细管测试样品,方法和系统,用于在实际条件下可视化和量化液体的毛细管流动,包括聚合物底部填充,注塑,钎焊,钎焊和浇铸。毛细管试样可以模拟复杂的接头几何形状,并具有开放的横截面,以便从侧面轻松观察。高速,高倍率摄像系统实时记录移动液体前沿从源腔流出时通过两个表面之间的开放毛细管通道(具有受控的毛细管间隙)实时原位记录的位置和形状。 ,并进入一个开放的圆角型腔,然后在其上的自由曲面上形成圆角,该曲面已配置为模拟现实的关节几何形状。电阻加热无需使用炉子即可快速加热试样。图像处理软件分析记录的图像,并计算运动的液体前沿速度,圆角接触角和圆角弯月面形状以及其他参数。

著录项

  • 公开/公告号US6581438B1

    专利类型

  • 公开/公告日2003-06-24

    原文格式PDF

  • 申请/专利权人 SANDIA CORPORATION;

    申请/专利号US20020146095

  • 申请日2002-05-15

  • 分类号G01N110/00;

  • 国家 US

  • 入库时间 2022-08-22 00:06:50

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