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SYSTEM FOR NUCLEATION AND PROPAGATION OF FATIGUE CRACKS ON SE(B) SPECIMENS

机译:用于疲劳裂缝的成核和传播SE(B)标本的系统

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The degree of safety that a structural component has against catastrophic fracture in service can be obtained from fracture mechanics parameters. The master curve could be used for integrity evaluation in pressure vessel of nuclear power plant. The pre-crack specimens are used in this evaluation. The tests based on ASTM E 8M and ASTM E 647 standards to determination of material properties related to fracture mechanics, most often performed in a servo-hydraulic drive equipment, are time consuming and costly. This paper presents the development of a system for nucleation and propagation of fatigue cracks on SE(B) specimens. The operating principle consists of a cyclic loading, concentrated in the center of the specimen, transmitted and controlled by an eccentric mechanism. The main contribution of this work is the low-cost technology in the production of fatigue pre-crack, and the possibility of performing the nucleation and propagation of the pre-crack required for obtaining the J_(IC) and CTOD parameters. The experimental results satisfied expectations with respect to the plastic deformation in the crack tip and met the requirements of the standards.
机译:可以从裂缝力学参数获得结构部件对灾难性骨折的安全程度。主曲线可用于核电站压力容器中的完整性评估。预裂纹标本用于该评估。基于ASTM E 8M和ASTM E 647标准的测试,以确定与骨折力学相关的材料特性,最常在伺服液压驱动设备中进行,是耗时且昂贵的。本文介绍了SE(B)样本对疲劳裂缝的成核和繁殖的系统的发展。操作原理由循环负载组成,浓缩在样品的中心,通过偏心机构传递和控制。这项工作的主要贡献是在生产疲劳前裂缝中的低成本技术,以及执行获得J_(IC)和CTOD参数所需的预裂缝的成核和传播的可能性。实验结果对裂纹尖端中的塑性变形的预期满意,并符合标准的要求。

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