热加工工艺
熱加工工藝
열가공공예
HOT WORKING TECHNOLOGY
2010年
8期
32-35
,共4页
王耀宁%赵西成%王耀斌%马红周
王耀寧%趙西成%王耀斌%馬紅週
왕요저%조서성%왕요빈%마홍주
Ti-6Al-2Zr-1Mo-1V合金%高温变形%应力指数%变形激活能
Ti-6Al-2Zr-1Mo-1V閤金%高溫變形%應力指數%變形激活能
Ti-6Al-2Zr-1Mo-1V합금%고온변형%응력지수%변형격활능
Ti-6A1-2Zr-1Mo-1V alloy%high temperature deformation%stress index%deformation activation energy
通过高温压缩模拟实验,分析了Ti-6Al-2Zr-1Mo-1V合金在变形温度为850~1100℃,应变速率为0.01~10 s-1条件下的高温变形力学行为规律,并利用线性回归方法计算了不同温度范围内的应力指数n和变形激活能Q,获得了该合金高温变形力学行为计算模型.结果表明,Ti-6Al-2Zr-1Mo-1V合金对变形温度和应变速率非常敏感.在恒温时流动应力随应变速率的增大而增大,在恒应变速率时随变形温度的升高而降低.在850~950℃时,n、Q分别为7.0874和610.463 kJ/mol;而在950~1100℃时,n=4.7324,Q=238.030 kJ/mol,该预测模型的计算值与实测值之间的相对误差分别为6.341%和6.957%.
通過高溫壓縮模擬實驗,分析瞭Ti-6Al-2Zr-1Mo-1V閤金在變形溫度為850~1100℃,應變速率為0.01~10 s-1條件下的高溫變形力學行為規律,併利用線性迴歸方法計算瞭不同溫度範圍內的應力指數n和變形激活能Q,穫得瞭該閤金高溫變形力學行為計算模型.結果錶明,Ti-6Al-2Zr-1Mo-1V閤金對變形溫度和應變速率非常敏感.在恆溫時流動應力隨應變速率的增大而增大,在恆應變速率時隨變形溫度的升高而降低.在850~950℃時,n、Q分彆為7.0874和610.463 kJ/mol;而在950~1100℃時,n=4.7324,Q=238.030 kJ/mol,該預測模型的計算值與實測值之間的相對誤差分彆為6.341%和6.957%.
통과고온압축모의실험,분석료Ti-6Al-2Zr-1Mo-1V합금재변형온도위850~1100℃,응변속솔위0.01~10 s-1조건하적고온변형역학행위규률,병이용선성회귀방법계산료불동온도범위내적응력지수n화변형격활능Q,획득료해합금고온변형역학행위계산모형.결과표명,Ti-6Al-2Zr-1Mo-1V합금대변형온도화응변속솔비상민감.재항온시류동응력수응변속솔적증대이증대,재항응변속솔시수변형온도적승고이강저.재850~950℃시,n、Q분별위7.0874화610.463 kJ/mol;이재950~1100℃시,n=4.7324,Q=238.030 kJ/mol,해예측모형적계산치여실측치지간적상대오차분별위6.341%화6.957%.
Based on high-temperature compression simulation experiments of Ti-6A1-2Zr-1Mo-1V alloy,its mechanieal behavior law was analyzed under the conditions of deformation temperature at 850~1100 ℃,strain rate of 0.01~10 s-1.The flow stress predictive models for Ti-6A1-2Zr-1Mo-1V alloys could be obtained by the calculation of stress index n and deformation activation energy Q using linear regression method.The results show that the flow stress of Ti-6A1-2Zr-1Mo-1V alloys is very sensitive to the deformation temperature and strain rate.The flow stress increases with the increase of strain rate at the constant temperature,but reduces with the increase of temperature at the constant strain rate.At 850~950 ℃,stress index n and deformation activation energy Q is respectively 7.0874 and 610.463 kJ/mol.But at 950~1100 ℃,n=4.7324,Q=238.030 kJ/mol.The relative error between the calculation and experimental value is respectively 6.341% and6.957%.