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CVN AND DWTT ENERGY METHODS FOR DETERMINING FRACTURE ARREST TOUGHNESS OF HIGH STRENGTH PIPELINE STEELS

机译:CVN和DWTT能量法确定高强度管线钢的断裂应变韧性

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Battelle two curve model (BTCM) was developed in the 1970s and successfully used for determining arrest toughness for ductile gas transmission pipelines in terms of Charpy vee-notched (CVN) impact energy. Practice has shown that the BTCM is accurate only for pipeline grades up to X65, but not for high strength pipeline grades X70 and above. Different methods to improve the BTCM were proposed over the years. This paper reviews the BTCM and its modified methods in terms of CVN energy or drop weight tear test (DWTT) energy for determining arrest toughness of ductile gas pipeline steels, particularly for high strength pipeline steels X80 and beyond. This includes the often-used Leis correction method, the CSM factor method, Wilkowski DWTT method and others. The CVN and DWTT energy-based methods are evaluated and discussed through the critical analysis and comparison with full-scale experimental data. The objective is to identify reasonable methods to be used for determining the minimum fracture toughness required to arrest a ductile running crack in a modern high strength, high pressure gas pipeline. The results show that available nonlinear models to correlate the standard DWTT and CVN energies are questionable, and the Leis correction method is a viable approach for determining arrest toughness for high strength pipeline steels, but further study is needed for ultra-high pipeline grades. Suggestions for further improving the BTCM are discussed.
机译:Battelle两条曲线模型(BTCM)于1970年代开发,并成功地根据夏比vee缺口(CVN)冲击能确定了韧性气体传输管道的阻滞韧性。实践表明,BTCM仅对X65以下的管道等级是准确的,而对X70及以上的高强度管道则不正确。这些年来,人们提出了多种改进BTCM的方法。本文从CVN能量或落锤撕裂试验(DWTT)能量的角度对BTCM及其改进的方法进行了综述,以确定可燃气体管线钢(特别是X80及更高强度的高强度管线钢)的制动韧性。这包括常用的Leis校正方法,CSM因子方法,Wilkowski DWTT方法等。通过批判性分析和与全面实验数据的比较,对基于CVN和DWTT能量的方法进行了评估和讨论。目的是确定合理的方法,以确定在现代高强度,高压气体管道中阻止延性运行裂纹所需的最小断裂韧性。结果表明,可用的非线性模型来关联标准DWTT和CVN能量是有问题的,Leis校正方法是确定高强度管线钢的止裂韧性的可行方法,但超高管线钢还需要进一步研究。讨论了进一步改进BTCM的建议。

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