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Comparison of 15-5PH Stainless Steel Type 1 versus Type 2 Fatigue Data for Aircraft Primary Structural Elements

机译:比较15-5PH不锈钢1型与飞机主要结构元素的2型疲劳数据

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15-5PH is a precipitation-hardening, martensitic stainless steel used for primary structural elements such as engine mounts where corrosion resistance, high strength, good fatigue and fracture toughness is required. The material composition is defined in AMS5659M. This alloy can be either Type 1 - vacuum arc remelt (VAR) or Type 2 - electro slag remelt (ESR) and is most commonly heat treated per SAE AMS-H-6875 or AMS2759/3 to condition H1025 (an ultimate tensile strength of 155 ksi [1070 MPa] minimum). Typically material handbooks have limited fatigue data and most data is only for Type 1. Therefore, the fatigue properties of 15-5PH H1025 stainless steel for both Type 1 and Type 2 were determined. The objective of the fatigue testing was to generate a family of S-N curves (maximum stress versus number of cycles to failure) for a series of stress ratios across the entire range of cycles to failure. All test coupons have been made from 5/8″ to 1″ [16-25 mm] diameter bar material with a typical lathe turned surface finish of 40-80 micro-inches [1-2 micro-meters] or a polished surface of 8 micro-inches [0.2 micro-meters]. The machined surface versus the polished surface resulted in a 10% reduction in fatigue strength near the endurance limit. When comparing the family of curves of Type 1 and Type 2 materials no significant differences were found. Therefore, the VAR and ESR Type materials appear to have approximately equivalent fatigue properties based on this set of fatigue data.
机译:图15-5PH是一种沉淀硬化,用于主结构元件的马氏体不锈钢,如发动机支架,其中需要耐腐蚀,强度高,疲劳和断裂韧性。材料组合物在AMS5659M中定义。这种合金可以是1型 - 真空弧形雷丝(VAR)或2型 - 电渣重熔(ESR),并且每种SAE AMS-H-6875或AMS2759 / 3最常热处理到条件H1025(一种最终拉伸强度) 155 KSI [1070 MPA]最小值)。通常,材料手册具有有限的疲劳数据,并且大多数数据仅适用于1.因此,确定了1型和型2的15-5ph H1025不锈钢的疲劳性能。疲劳测试的目的是产生一系列S-N曲线(最大应力与失败的循环数),在整个循环范围内的一系列应力比率下降。所有测试优惠券都是由5/8“至1”[16-25毫米]直径的杆材料制成,典型车床转动表面光洁度为40-80微英寸[1-2微米]或抛光表面8微英寸[0.2微米]。加工表面与抛光表面相比导致耐久性极限疲劳强度降低10%。当比较1型和2型材料的曲线系列时,没有发现显着的差异。因此,VAR和ESR型材料似乎基于该组疲劳数据具有近似等效的疲劳性能。

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