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EVALUATION OF SHORT TERM CREEP-RUPTURE STRENGTH OF HIGH TEMPERATURE P122 BOILER MATERIAL

机译:高温P122锅炉材料短期蠕变断裂强度的评价。

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摘要

The complex thermal-mechanical loading of power-generating plant components usually comprises of creep, high-cycle and low-cycle fatigue which are thermally induced by start-ups, load changes and shut-downs, producing instationary temperature gradients and hence creating strain as well as stress fields. In order to select the correct materials for these hostile environmental conditions, it is vitally important to understand the behaviour of mechanical properties such as creep rupture properties of these materials. This paper reports the results of standard creep rupture tests of P122 (HCM12A or 12Cr-1.8W-1.5Cu) high temperature boiler material. P122 is one of the latest developed materials for high temperature environments, which has the potential to be successful in hostile environments. The tests were conducted at temperatures ranging from 550℃ to 700℃ at 50℃ intervals with stress levels ranging from 80 - 400 MPa using a locally made creep rupture testing machine. The results are found to have stable creep-rupture strength at short term creep stage for over 800-hours at elevated temperatures. Creep life prediction from Larson-Miller relationship was also carried out and the accuracy of life prediction is demonstrated. Moreover, the fracture mode assessments strongly revealed a typical ductile transgranular fracture mode with dimples and voids.
机译:发电设备部件的复杂热机械负载通常包括蠕变,高周疲劳和低周疲劳,这些疲劳是由启动,负载变化和停机引起的,并产生固定的温度梯度,从而产生应变。以及应力场。为了为这些恶劣的环境条件选择正确的材料,了解这些材料的机械性能(例如蠕变断裂性能)的行为至关重要。本文报告了P122(HCM12A或12Cr-1.8W-1.5Cu)高温锅炉材料的标准蠕变断裂试验结果。 P122是用于高温环境的最新开发材料之一,在敌对环境中具有成功的潜力。使用本地制造的蠕变断裂试验机在550℃至700℃的温度范围内以50℃的间隔进行测试,应力水平在80-400 MPa之间。结果发现,在高温下,短期蠕变阶段具有超过800小时的稳定蠕变断裂强度。还进行了基于Larson-Miller关系的蠕变寿命预测,并证明了寿命预测的准确性。此外,骨折模式评估强烈地揭示了典型的延性经晶状骨折模式,带有酒窝和空隙。

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