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A Technique for the Nondestructive Detection of Voids and Composition Anomalies in Metal Matrix Composite Wires Using X or γ Rays

机译:一种使用X或γ光线在金属矩阵复合线中无损检测空隙和组成异常的技术

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摘要

An initial study of a technique proposed for the nondestructive testing of metal matrix composites is the subject of this paper. These composites are manufactured in the form of approximately 1/2-mm-diameter “precursor” wires. Larger structures are fabricated by diffusion bonding of lay-ups. Reliable nondestructive quality control indicators of wire integrity have not yet been developed although a number of possibilities are being examined.1 Testing of the precursor wires is difficult because current manufacturing processes produce wires that may be entirely satisfactory but that vary in cross-sectional geometry, in surface properties, and sometimes in the amount of matrix material that is present. Techniques based on observations of wire resistance, surface emissivity, and sound emission signatures are difficult to interpret because of these characteristics. Wire imaging using x-ray or neutron techniques is also difficult because large lengths of wire must be examined with a resolution in the plane of the wire exceeding 50 line pairs per millimeter.
机译:对金属基复合材料无损检测提出的技术的初步研究是本文的主题。这些复合材料以大约1/2毫米“前体”线的形式制造。通过铺设的扩散键合来制造较大的结构。尚未开发可靠的无损质量控制指示灯尚未开发出的电线完整性虽然正在检查许多可能性,但是对前体导线的测试很困难,因为电流制造工艺产生可能完全令人满意但在横截面几何上变化的电线,在表面性质中,有时在存在的基质材料中。由于这些特性,基于导线电阻,表面发射率和声发射签名观察的技术难以解释。使用X射线或中子技术的电线成像也很困难,因为必须在电线平面中的分辨率超出每毫米的50线对的分辨率来检查大长度的线。

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