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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Temperature and Strain Rate on Tensile Properties and Activation Energy for Dynamic Strain Aging in Alloy 625
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Effects of Temperature and Strain Rate on Tensile Properties and Activation Energy for Dynamic Strain Aging in Alloy 625

机译:温度和应变速率对625合金动态应变时效的拉伸性能和活化能的影响

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Alloy 625 ammonia cracker tubes were service exposed for 60,000 hours at 873 K. These were then subjected to a solution-annealing treatment at 1473 K for 0.5 hours. The effects of temperature and strain rate on the tensile properties of the solution-annealed alloy were examined in the temperature range of 300 to 1023 K, employing the strain rates in the range of 3 X 10~(-5) s~(-1) to 3 X 10~(-3) s~(-1). At intermediate temperatures (523 to 923 K), various manifestations of dynamic strain aging (DSA) such as serrated flow, peaks, and plateaus in the variations of yield strength (YS) and ultimate tensile strength (UTS) and work-hardening rate with temperature were observed. The activation energy for serrated flow (Q) was determined by employing various methodologies for T < 823 K, where a normal Portevien-Le Chatelier effect (PLE) was observed. The value of Q was found to be independent of the method employed. The average Q value of 98 kJ/mol was found to be in agreement with that for Mo migration in a Ni matrix. At elevated temperatures (T > = 823 K), type-C serrations and an inverse PLE was noticed. The decrease in uniform elongation beyond 873 K for 3 X 10~(-5) s~(-1) and 3 X 10~(-3) s~(-1) and beyond 923 K for 3 X 10(-4) s~(-1) strain rates seen in this alloy has been ascribed to reduction in ductility due to precipitation of carbides and 8 phase on the grain boundaries.
机译:625氨裂解釜合金在873 K下暴露60,000小时。然后在1473 K下进行0.5小时的固溶退火处理。在3 X 10〜(-5)s〜(-1)范围内,研究了温度和应变速率对固溶退火合金在300至1023 K温度范围内拉伸性能的影响。 )至3 X 10〜(-3)s〜(-1)。在中间温度(523至923 K)下,动态应变时效(DSA)的各种表现形式,例如锯齿状流动,峰和平稳期,屈服强度(YS)和极限抗拉强度(UTS)的变化以及加工硬化率随观察温度。锯齿流的活化能(Q)通过T <823 K的各种方法确定,其中观察到正常的Portevien-Le Chatelier效应(PLE)。发现Q的值与所采用的方法无关。发现98 kJ / mol的平均Q值与Ni基体中Mo迁移的Q值一致。在高温下(T> = 823 K),发现C型锯齿和相反的PLE。 3 X 10〜(-5)s〜(-1)和3 X 10〜(-3)s〜(-1)超过873 K且3 X 10(-4)超过923 K的均匀伸长率降低在这种合金中看到的s〜(-1)应变速率归因于由于碳化物和8相在晶界上的析出而导致的延展性降低。

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