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Evaluation of Fatigue Strength of Alloy Steel Pipe Under Influence of Hydrostatic Pressure

机译:静压压力影响下合金钢管疲劳强度评价

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The influence of hydrostatic pressure on the performance of the material is becoming increasingly important in several applications such as ocean engineering, nuclear engineering and petroleum engineering. It is required to meet the increasing demand to analyze the influence of hydrostatic pressure under fatigue load. The magnitude of hydrostatic pressure increases with increase in depth of the water from surface level. For example at a depth of 2 km from water surface, 200 bar hydrostatic pressure will act on the submerged body. In addition to that when components are used in subsea environment, corrosion will occur in the component. So it is necessary to determine what will be the effect on fatigue life of the components which are subjected to hydrostatic pressure with fatigue load in a corrosion environment. This analysis will be taken into consideration while designing machine element which is used for underwater application. High hydrostatic pressure alters the yield criterion of materials. Thus, it becomes essential to generate the fatigue strength data of structural steel in pressurized simulated sea water (3.5% NaCl solution) conditions. This paper presents the comparison of fatigue life data evaluated for alloy steel pipe under ambient conditions and under hyperbaric pressure conditions. To generate fatigue strength data under the influence of hydrostatic pressure, experiment has been done in MTS machine setup which consists of high-pressure chamber assembly and computer-controlled servo-hydraulic test system for applying cyclic load and differential hydrostatic pressure. Here both external and internal pressures are applied with the axial load to the specimen pipe. The S-N curve for alloy steel pipe (ASTM 106 grade B) is evaluated for two differential hydrostatic pressures at 10 bars internal with 30 bar external and 30 bar internal with 50 bar external pressure which are applied to the test specimen pipe.
机译:静水压力对材料性能的影响在诸如海洋工程,核工程和石油工程等若干应用中变得越来越重要。需要满足日益增长的需求,以分析疲劳负荷下静水压力的影响。静液压压力的大小随着表面水平的水深增加而增加。例如,在水面距2公里的深度,200巴静压压力将作用于浸没体。除了在海底环境中使用组件外,部件将发生腐蚀。因此,有必要确定在腐蚀环境中具有疲劳负荷的抗静压压力的部件对疲劳寿命的影响。将考虑该分析,同时设计用于水下应用的机器元件。高静水压压力改变了材料的产量标准。因此,必须在加压模拟海水中产生结构钢的疲劳强度数据(3.5%NaCl溶液)条件是必要的。本文介绍了在环境条件下对合金钢管和高压压力条件进行了疲劳寿命数据的比较。为了在静液压压力的影响下产生疲劳强度数据,实验已经在MTS机器设置中完成,由高压室组件和计算机控制的伺服液压测试系统组成,用于施加循环负载和差动静压压力。这里施加外部和内部压力,用轴向载荷施加到样品管。合金钢管(ASTM 106级B)的S-N曲线在10巴内进行两个差动静压压力,其中30巴外部和30巴内置,具有50巴外压,施加到试样管。

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