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Phosphorescent ferro-magnetic particle formulation and method of non-destructive testing therewith

机译:磷光铁磁粉配方及其无损检测方法

摘要

A dispersion of particles is provided that each contain at least one ferromagnetic domain and at least one phosphor domain having a stimulation wavelength, a glow persistence of at least 5 seconds and a visible wavelength emission. A polymeric resin that is transmissive of the stimulation wavelength and the visible wavelength emission coats the ferromagnetic and phosphor domains to define each particle size. A method of non-destructively inspecting a test article applies a dispersion of these particles to a surface of the test article. A magnetic field is then induced including the test article. The surface of the test article is exposed to incident energy adapted to stimulate phosphorescence of the dispersion of particles. With the incident energy exposure ceased, the position of the dispersion of particles on the surface of the test article is imaged. An inspection system for non-destructively inspecting a test article is also provided.
机译:提供一种粒子色散,其中每个粒子包含至少一个铁磁畴和至少一个磷光体畴,所述磷光体畴具有激发波长、至少5秒的辉光持续性和可见波长发射。可透射刺激波长和可见波长发射的聚合物树脂涂覆在铁磁和磷光体畴上,以定义每个粒径。非破坏性检查供试品的方法是将这些颗粒分散在供试品表面。然后感应磁场,包括供试品。将供试品表面暴露于入射能量中,该入射能量适于激发粒子分散体的磷光。当入射能量暴露停止时,对试样表面上粒子分散的位置进行成像。还提供了一种用于对供试品进行非破坏性检查的检查系统。

著录项

  • 公开/公告号US11313835B2

    专利类型

  • 公开/公告日2022-04-26

    原文格式PDF

  • 申请/专利权人 ILLINOIS TOOL WORKS INC.;

    申请/专利号US201616084085

  • 发明设计人 SHAWN MICHAEL KILTY;

    申请日2016-12-20

  • 分类号G01N21/64;G01N27/82;G01N21/88;H01F1/44;

  • 国家 US

  • 入库时间 2022-08-25 00:44:54

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