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The Fatigue Behavior of Built-Up Welded Beams of Commercially Pure Titanium

机译:商业纯钛组合焊接梁的疲劳行为

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摘要

In this article, the results of a recent study aimed at evaluating, understanding, and rationalizing the extrinsic influence of fatigue loading on the response characteristics of built-up welded beams made from commercially pure titanium (Grade 2) are presented and discussed. The beams were made from welding plates and sheets of titanium using the pulsed gas metal arc welding technique to form a structural beam having an I-shaped cross section. The welds made for the test beams of the chosen metal were fillet welds using a matching titanium filler metal wire. The maximum and minimum load values at which the built-up beams were cyclically deformed were chosen to be within the range of 22-45% of the maximum predicted flexural static load. The beams were deformed in fatigue at a stress ratio of 0.1 and constant frequency of 5 Hz. The influence of the ratio of maximum load with respect to the ultimate failure load on fatigue performance, quantified in terms of fatigue life, was examined. The percentage of maximum load to ultimate load that resulted in run-out of one million cycles was established. The overall fracture behavior of the failed beam sample was characterized by scanning electron microscopy observations to establish the conjoint influence of load severity, intrinsic microstructural effects, and intrinsic fracture surface features in governing failure by fracture.
机译:在本文中,提出并讨论了旨在评估,理解和合理化疲劳载荷对由商业纯钛制成的组合式焊接梁(2级)的响应特性的外在影响的最新研究结果。所述梁是使用脉冲气体金属电弧焊技术由钛的焊接板和薄板制成的,以形成具有I形横截面的结构梁。为所选金属的测试梁制作的焊缝是使用匹配的钛填充金属丝进行的角焊缝。组合梁循环变形的最大和最小载荷值选择为最大预计弯曲静载荷的22-45%。这些梁在疲劳强度为0.1的应力比和5 Hz的恒定频率下变形。研究了最大载荷相对于最终破坏载荷的比率对疲劳性能的影响,疲劳强度以疲劳寿命来量化。确定导致一百万次循环用尽的最大负载与最终负载的百分比。通过扫描电子显微镜观察来表征失效梁样品的整体断裂行为,以建立载荷强度,固有微观结构效应以及固有断裂表面特征共同控制断裂破坏的联合影响。

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