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Fracture behaviour of diffusion bonded titanium alloys with strength mismatch

机译:强度不匹配的扩散结合钛合金的断裂行为

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摘要

The present study considers the effect of strength mismatch on the fracture behaviour of diffusion bonded joints between commercially pure (CP) Ti and Ti-6Al-4V (Ti64), including dissimilar joints and sandwich structures with strength undermatching and overmatching. The aim of the investigation is to determine the influence of the interlayer thickness (for both higher and lower strength interlayers) and the bond quality on the deformation behaviour and fracture toughness of the joints. The influence of mechanical heterogeneity (strength mismatch) on the fracture behaviour of the interface in dissimilar joints was also investigated. Round bars of CP Ti and Ti64 having a diameter of 40 mm were diffusion bonded as dissimilar butt joints and sandwich structures containing lower strength (undermatching) and higher strength (overmatching) interlayers of different thicknesses. Round transverse tensile specimens and standard four point bend (single edge notch bend) specimens were extracted from the joints via spark erosion cutting. The four point bend specimens were fatigue precracked to introduce a sharp crack after introducing machine notches at the centre of the interlayers in the sandwich structures and at the interface in the dissimilar joints, and tested at room temperature. Some specimens were also prepared with the crack positioned away from the interface to determine the effect of notch position on fracture behaviour. The effect of strength mismatch on the crack tip opening displacement fracture toughness parameter of the joints has been evaluated. Crack initiation, crack growth, and crack deviation processes have been examined and fracture resistance curves (R curves) constructed for the joints. These results were used to explain the influence of mechanical heterogeneity of the joints and interlayer thickness on fracture behaviour.
机译:本研究考虑了强度失配对商业纯(CP)Ti和Ti-6Al-4V(Ti64)之间扩散粘结接头的断裂行为的影响,包括异种接头和强度不足或过度匹配的夹心结构。研究的目的是确定中间层厚度(对于较高和较低强度中间层)和粘结质量对接头变形行为和断裂韧性的影响。还研究了机械异质性(强度不匹配)对异种接头界面断裂行为的影响。将直径为40 mm的CP Ti和Ti64圆棒作为不同的对接接头和夹层结构进行扩散粘结,该夹层结构包含不同强度的较低强度(欠匹配)和较高强度(过度匹配)的中间层,且厚度不同。通过火花腐蚀切割从接缝中提取出圆形横向拉伸试样和标准的四点弯曲(单边缺口弯曲)试样。在夹层结构的中间层中心和异种接头的界面处引入机械切口后,对四点弯曲试样进行疲劳预裂纹以产生尖锐的裂纹,并在室温下进行测试。还准备了一些试样,将裂纹放置在远离界面的位置,以确定缺口位置对断裂行为的影响。评估了强度失配对接头裂纹尖端开口位移断裂韧性参数的影响。已经检查了裂纹萌生,裂纹扩展和裂纹偏差过程,并为接头绘制了抗断裂强度曲线(R曲线)。这些结果被用来解释接头的机械异质性和夹层厚度对断裂行为的影响。

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