无损检测在汽车铝金属基复合材料零件质量控制中的应用

C. S. Proença, P. Morais, F. Salgueiro, Beatriz Correia, A. López, C. Kneissl, T. Petkov
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摘要

使用铝金属基复合材料(Al-MMCs)制造汽车零部件在汽车工业中逐渐获得相关地位。由于汽车行业的竞争日益激烈,因此非常需要提供高效、稳定和高质量的产品。一般来说,遵循汽车标准是自愿的,这意味着企业和其他组织在法律上没有义务应用它们。然而,在某些情况下,标准可能有助于遵守法律要求,例如欧洲指令和条例中包含的要求。IATF 16949:2016是IATF 16949标准的当前版本,概述了组织必须在其质量体系中保持IATF 16949认证的要求。这种制造al - mmc的新应用需要额外的程序来保证制造的组件的质量。由于制造过程可能产生各种缺陷,如裂纹、空洞、熔合不足、夹杂物、孔隙和其他冶金方面的缺陷,因此应采用无损检测(NDT)技术来保证所制造部件的质量。因此,开发可靠的铝基复合材料零件无损检测方法是一项重大挑战。这方面涉及如何优化或开发无损检测程序,以解决过程的单一结构,如复杂的几何形状、各向异性材料特性、特殊的内部结构和纳米颗粒的存在。这项工作的主要目的是总结和展示不同无损检测技术在汽车工业制造铝- mmc组件质量控制中的相关潜力,并在欧洲FLAMINGo项目(轻质铝金属基复合材料的制造和绿色车辆的验证)中进行探索。这项研究是非常重要的,因为无损检测技术提供了不同的缺陷检测概率,主要是微缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Non-destructive Testing in Quality Control of Manufactured Aluminium Metal Matrix Composite Components for the Automotive Industry
The manufacturing of automotive components using aluminium metal matrix composites (Al-MMCs) is progressively gaining a relevant place in the automotive industry. Due to the increasing competition in the automobile sector, there is a great need to supply efficient, stable, and high-quality products. Generally, following automotive standards is voluntary, which means that businesses and other organizations are not legally obliged to apply them. Nevertheless, in certain cases standards may facilitate compliance with legal requirements, such as those contained in European directives and regulations. IATF 16949:2016 is the current version of the IATF 16949 Standard and outlines the requirements an organization must maintain in their quality system for IATF 16949 certification. This new application of manufacturing Al-MMCs requires additional procedures to guarantee the quality of the components manufactured. Because the manufacturing process may generate various defects, such as cracks, voids, lack of fusion, inclusions, porosities, and other metallurgical aspects, non-destructive testing (NDT) techniques should be used for guaranteeing the quality of the components manufactured. The development of reliable NDT methods for aluminium metal matrix composite parts is thus a major challenge. This aspect is related to how NDT procedures need to be optimised or developed to address the singular structures of the processes, such as complex geometry, anisotropic material properties, special internal structures, and the presence of nanoparticles. The main objective of this work is to summarize and present the relevant potential of different NDT techniques used in quality control of manufactured Al-MMC components in the automotive industry, to be explorer in the European FLAMINGo project (Fabrication of Lightweight Aluminium Metal Matrix Composites and Validation in Green Vehicles). This study is very significant because the NDT techniques present different probabilities of detection of the defects, principally of the microdefects.
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