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Review of Requirements for the Durability and Damage Tolerance Certification of Additively Manufactured Aircraft Structural Parts and AM Repairs

机译:审查增材制造的飞机结构零件的耐久度和损坏容忍证书的要求以及AM维修

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摘要

The USAF requirements for the durability and damage tolerance certification for additively manufactured (AM) aircraft structural parts, which are detailed in Structures Bulletin EZ-19-01, raise a number of new and, as yet, unanswered questions. The present paper attempts to address three questions: How to perform a fracture mechanics-based analysis of crack growth in an AM part so as to account for the residual stresses, how to perform a fracture mechanics-based durability analysis of a cold spray repair so as to account for both the induced residual stresses and the presence of multiple co-located cracks, and how to perform a fracture mechanics-based durability analysis of an AM part so as to account for the presence of multiple collocated surface braking cracks. In this context, the present paper reveals the potential of the Hartman–Schijve variant of the NASGRO crack growth equation to accurately predict the growth of each of the individual (collocated) cracks that arose in a cold spray-repaired specimen and in a specimen from a crack that nucleated and grew from a rough surface.
机译:美国空军对增材制造(AM)飞机结构部件的耐用性和破坏耐受性认证的要求(在结构公告EZ-19-01中进行了详细说明)提出了许多新的,但尚未解决的问题。本文试图解决三个问题:如何对断裂进行AM裂纹扩展的基于断裂力学的分析,以解决残余应力,如何对冷喷涂修复进行基于断裂力学的耐久性分析,从而解决这一问题。既要考虑引起的残余应力,又要考虑存在多个共处的裂纹,以及如何对AM零件执行基于断裂力学的耐久性分析,以解决存在多个并置的表面制动裂纹的问题。在这种情况下,本论文揭示了NASGRO裂纹扩展方程的Hartman-Schijve变体准确预测在冷喷涂修复后的试样中以及在冷轧后的试样中出现的每个(并置的)裂纹的增长的潜力。从粗糙表面成核并生长的裂纹。

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