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    • 8. 发明申请
    • NONDESTRUCTIVE DETERMINATION OF TOUGHNESS OF METAL, PLASTIC, AND COMPOSITE MATERIALS
    • 金属,塑料和复合材料韧性的非结晶性测定
    • WO2017015601A1
    • 2017-01-26
    • PCT/US2016/043670
    • 2016-07-22
    • FLUOR TECHNOLOGIES CORPORATION
    • MESSER, Barry
    • G01N3/24G01N29/04
    • G01N29/4427G01N29/0681G01N2291/0234G01N2291/02827
    • Embodiments relate generally to systems and methods for determining a toughness value for a material of a metal part, wherein the method comprises detecting a texture of a carbon steel material using an ultrasonic microscopy unit, wherein the ultrasonic microscopy unit uses one or more waveforms including at least one of straight beam, phased array, shear wave, and time-of-flight diffraction (TOFD); determining elemental analysis of the carbon steel material; combining the texture with the elemental analysis to generate a toughness value for the steel; comparing the generated toughness value with a standard curve, wherein when the toughness value falls below the curve, the carbon steel material comprises an acceptable toughness, and when the toughness value falls above the curve, the carbon steel material comprises an unacceptable toughness.
    • 实施例一般涉及用于确定金属部件的材料的韧性值的系统和方法,其中所述方法包括使用超声波显微镜单元检测碳钢材料的质地,其中超声波显微镜单元使用一个或多个波形,包括在 直射束,相控阵,剪切波和飞行时间衍射(TOFD)中的至少一个; 确定碳钢材料的元素分析; 将纹理与元素分析相结合,以产生钢的韧性值; 将所产生的韧性值与标准曲线进行比较,其中当韧性值低于曲线时,碳钢材料包含可接受的韧性,并且当韧性值下降到曲线以上时,碳钢材料包含不可接受的韧性。