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DRILL PIPE FATIGUE ANALYSIS: FULL SIZE APPARATUS AND COUPON TESTS

机译:钻杆疲劳分析:全尺寸设备和优惠券测试

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摘要

Drill pipe fatigue damage occurs under cyclic loading conditions due to, for instance, rotation in curved sections of the well. Failures caused by crack nucleation and propagation are one of the highest risks to the structural integrity of these pipes. Usually, failure mechanisms develop in the transition region of the tool joint. Several mechanical and metallurgical factors affect the fatigue life of drill pipes. The former are mainly geometric discontinuities such as transition zones, pits and slip marks. The latter are related to the size and distribution of crystalline grains, phases and second phase particles (inclusions). In this study, the roles played by both factors in the fatigue life of drill pipes are studied through an extensive experimental test program. To this end, a fatigue simulator was designed and built to test full-scale drill pipes under rotating cyclic bending and constant tension loading. Additionally, the fundamental fatigue mechanisms are investigated via laboratory tests in small-scale coupons. These tests were performed in an opto-mechanical fatigue apparatus that was specially designed to perform in-situ real time monitoring surface analysis during the experiments.
机译:钻杆疲劳损坏是在周期性载荷条件下发生的,例如由于井弯曲部分的旋转。裂纹成核和扩展引起的故障是这些管道结构完整性的最高风险之一。通常,故障机制会在工具接头的过渡区域中发展。一些机械和冶金因素会影响钻杆的疲劳寿命。前者主要是几何不连续点,例如过渡带,凹坑和滑痕。后者与晶粒,相和第二相颗粒(夹杂物)的大小和分布有关。在这项研究中,通过广泛的实验测试程序研究了两个因素在钻杆疲劳寿命中所起的作用。为此,设计并构建了疲劳模拟器,以在旋转的周期性弯曲和恒定张力载荷下测试全尺寸钻杆。此外,通过实验室试验以小试件的形式研究了基本疲劳机理。这些测试是在光机疲劳设备中进行的,该设备专门设计用于在实验过程中进行现场实时监测表面分析。

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