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Evaluation of Fracture Toughness Test Data for Multilayer Dissimilar Joint Welds Using a Weibull Stress Model

机译:使用Weibull Regress模型评估多层不同联接焊缝的断裂韧性试验数据

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Fracture behaviour of welded joints with dissimilar weld metals (WMs) has been investigated in this paper. A low-toughness WM and a high-strength WM with a moderate toughness were layered alternately in the thickness direction. Fracture tests were conducted with 3-point bend (3PB) specimen and tension plate with a through-thickness crack. The 3PB specimen showed a multistage fracture. The first fracture was originated from the low-toughness WM. On the other hand, no multistage fracture occurred in the tension plate, although the low-toughness WM was responsible for brittle fracture initiation in the same manner as in the 3PB specimen. The fracture toughness of the multilayer dissimilar joint was apparently larger than the welded joint made with the low toughness WM only. The weakest-link model has been applied for analyzing those toughness properties of the multilayer dissimilar joint. The estimated fracture toughness by the weakest-link model was not necessarily consistent with the toughness data, which was because of the local stress elevation in the low-toughness WM area close to the high-strength WM. Because of this, a modified Weibull stress model was used to estimate fracture toughness values for the multilayer dissimilar joint WM and to account for an active fracture zone length scale in the multilayer weld joint materials.
机译:本文研究了焊接接头与不同焊接金属(WMS)的断裂行为。低韧性Wm和具有中等韧性的高强度Wm在厚度方向上交替地分层。用3点弯曲(3PB)试样和带厚度裂缝的张力板进行裂缝试验。 3PB样本显示多级骨折。第一裂缝起源于低韧性Wm。另一方面,在张力板中没有发生多级断裂,尽管低韧性Wm以与3pb样本相同的方式负责脆性断裂引发。多层异常接头的断裂韧性显然比用低韧性WM制成的焊接接头。最弱的链路模型已应用于分析多层不同关节的那些韧性特性。最弱的链路模型的估计断裂韧性并不一定与韧性数据一致,这是因为靠近高强度Wm的低韧性Wm区域中的局部应力升高。因此,用于估计多层异常关节WM的断裂韧性值的修改后的Weibull压力模型,并考虑多层焊接接合材料中的主动断裂区长度。

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