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Fracture-mechanics based prediction of the fatigue strength of weldments. Material aspects

机译:基于裂缝力的抗疲劳强度的焊接强度预测。 材料方面

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Any fracture mechanics based determination of the fatigue strength of weldments requires different input information such as the local weld geometry and material data of the areas the crack is passing through during its propagation. The latter is so far not a trivial task as the fatigue crack is usually initiated at the weld toe at the transition from the weld metal to the heat affected zone. Furthermore, the crack propagates through the different microstructures of the weldment even into the base metal and causes final fracture. This paper describes how the material input information has been gained particularly for heat affected zone material by thermo-mechanically simulated material specimens for two steels of quite different static strength. The data comprise the cyclic stress-strain curve, the crack closure effect-corrected crack growth characteristics, fatigue threshold values for long cracks, the dependency of the parameter on the crack length and monotonic fracture resistance. The substantial experimental effort was necessary for the validation exercises of the IBESS approach, however, within the scope of practical application more easily applicable estimating methods are required. For that purpose, the paper provides a number of appropriate proposals in line with its check against the reference data from the elaborate analyses. (C) 2017 Elsevier Ltd. All rights reserved.
机译:任何基于焊接疲劳强度的确定的任何骨折力学都需要不同的输入信息,例如局部焊接几何形状和材料数据的裂缝在其传播过程中通过。后者是迄今为止,随着疲劳裂缝通常在从焊接金属到热影响区域的焊接脚趾在焊接脚趾上发起的疲劳裂缝。此外,裂缝均匀地传播通过焊接的不同微观结构甚至进入基础金属并导致最终裂缝。本文介绍了通过热机械模拟材料标本对材料输入信息的热影响区域材料进行了相当不同的静态强度的两个钢。数据包括循环应力 - 应变曲线,裂纹闭合效应校正的裂纹生长特性,长裂缝的疲劳阈值值,参数对裂缝长度和单调裂缝抗性的依赖性。然而,在IBESS方法的验证练习必需的实质性努力,然而,在实际应用范围内,需要更容易适用的估算方法。为此目的,本文提供了许多适当的建议,其核对来自精心分析的参考数据。 (c)2017 Elsevier Ltd.保留所有权利。

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