Uniaxial creep test data for P91 material at 600 °C and a stress of 155 MPa (repeat test)
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The data relate to a thesis concerned with demonstrating the suitability of Small Punch (SP) testing for lifetime prediction of metallic materials operating at high temperatures. The lack of standardisation of this technique and doubts about the correlation of the data with that obtained from conventional creep tests, supports the need to exploit the recently launched Code of Practice for Small Punch Testing (CEN/WS 21). The present work is specifically concerned with investigating the creep behaviour of P91 steel weldments at 600 Celsius along with low-temperature fracture behaviour. Thin discs, 8 mm in diameter and 0.5 mm thick, were manufactured from different zones of a component containing a P91 welded joint: base metal (BM), service- exposed material (SE), weld metal (WM), fine-grain and coarse-grain heat affected zones (FG-HAZ & CG-HAZ). The results of SP creep tests on these disks, performed at 600 Celsius under different loads carefully following the Code of Practice, could be correlated with uniaxial creep data. The SP test is shown to be a reliable method to depict creep behaviour of this alloy and its weldments and a creep model derived, useful for life time prediction, could also be demonstrated through FEA to predict the creep deformation of the SP discs. Additionally, the SP testing method shows potential to evaluate the fracture properties of P91 weldments, in particular the ductile-to-brittle transition temperature and fracture toughness estimations.
本数据集关联一项旨在验证小冲杆(Small Punch, SP)试验用于高温服役金属材料寿命预测适用性的研究论文。该技术尚未形成标准化体系,且其试验数据与常规蠕变试验所得数据的相关性尚存疑,因此亟需推广近期发布的《小冲杆试验实施规程》(CEN/WS 21)。本研究聚焦于探究P91钢焊件在600℃下的蠕变行为,同时兼顾其低温断裂行为研究。从含P91焊接接头的构件的不同区域制取了直径8mm、厚度0.5mm的薄圆盘试样,涉及区域包括母材(Base Metal, BM)、服役后材料(Service-Exposed Material, SE)、焊缝金属(Weld Metal, WM)以及细晶热影响区与粗晶热影响区(FG-HAZ & CG-HAZ)。严格遵循该实施规程,在600℃、不同载荷条件下对上述圆盘试样开展小冲杆蠕变试验,所得结果可与单轴蠕变试验数据建立相关性。研究表明,小冲杆试验是表征该合金及其焊件蠕变行为的可靠方法;同时通过有限元分析(Finite Element Analysis, FEA)验证,所推导得到的可用于寿命预测的蠕变模型,同样可准确预测小冲杆圆盘试样的蠕变变形。此外,小冲杆试验方法在评估P91钢焊件的断裂性能方面展现出应用潜力,尤其可用于韧脆转变温度测定与断裂韧性估算。
提供机构:
European Commission JRC
创建时间:
2014-07-29



