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Short fatigue crack growth in an aircraft Al-alloy of a 7075 type after shot peening

机译:喷丸后7075型飞机铝合金的疲劳裂纹短时增长

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摘要

An effect of shot peening with two groups of parameters representing limits for practical use in service on growth of physically short fatigue cracks in a 2.4 mm thick sheet of an aircraft V-95 Al-alloy (a type of a 7075 alloy), clad with a 7072 Al-alloy (Al-Zn1) was investigated. The first part of the work deals with measurement techniques of short cracks, with an adaptation and verification of direct current potential drop (DCPD) method for detection of short crack initiation and early stages of growth. The possibilities of the method in terms of sensitivity and resolution as well as the limits are discussed. Using the improved experimental methodology, physically short fatigue cracks of the length from 0.2 mm to more than 3 mm, most of them between 0.8 and 1.5 mm, were prepared under high cycle fatigue repeated tensile loading of the constant nominal stress range 160 MPa, load asymmetry R=0. Specimens with existing short fatigue cracks together with some specimens with no cracks were then shot peened using two different groups of parameters. Microhardness measurement and informative measurement of residual stresses near the peened edges were carried out. Development of crack growth after shot peening were measured and compared with crack growth in specimens without shot peening. Retardation of crack growth was significant particularly for cracks shorter than 2 mm. For the specific stress range, evaluated results enabled to estimate threshold length of defects, which will be reliably arrested after the application of the shot peening
机译:用两组代表实际使用极限的参数的喷丸处理对2.4毫米厚的V-95铝合金飞机(一种7075合金)包覆的2.4毫米厚薄板中的物理短疲劳裂纹的生长的影响研究了7072铝合金(Al-Zn1)。工作的第一部分涉及短裂纹的测量技术,以及对直流电势降(DCPD)方法的适应和验证,以检测短裂纹的萌生和早期生长。讨论了该方法在灵敏度和分辨率以及极限方面的可能性。使用改进的实验方法,在恒定标称应力范围为160 MPa的高循环疲劳反复拉伸载荷下,制备了长度从0.2 mm至3 mm以上的物理短疲劳裂纹,其中大多数裂纹在0.8至1.5 mm之间。不对称R = 0。然后,使用两组不同的参数对存在短时疲劳裂纹的试样以及一些没有裂纹的试样进行喷丸处理。进行了喷丸边缘附近的显微硬度测量和有益的残余应力测量。测量喷丸后的裂纹扩展发展情况,并与未喷丸的试样中的裂纹扩展进行比较。裂纹扩展的延缓是显着的,特别是对于短于2 mm的裂纹。对于特定的应力范围,评估结果可以估计缺陷的阈值长度,在喷丸处理后,该阈值将被可靠地阻止

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