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·776 工程科学学报,第41卷,第6期 a) b 0001 1120 轧制 0110 (e) 图5热变形前后TC17合金a相的取向分布.(a)热压缩前:(b)860℃,0.01s1:(c)840℃,0.1s1:(d)860℃,0.1s1:(c)880℃ 0.1s1:(0860℃,1s-1 Fig.5 a phase orientation distribution of the TC17 alloy before and after hot compression:(a)before hot compression:(b)860C,0.01s:(c) 840℃,0.1s1:(d)860℃,0.1s1:(e)880℃,0.1s1:(f0860℃,1s1 (b) 轧制 001 101 e 图6热变形前后TC17合金B相的取向分布.(a)热压缩前:(b)860℃,0.01s1:(c)840℃,0.1s1:(d)860℃,0.1s1:(e)880℃, 0.1sl,(f0860℃,1s1 Fig.6 B-phase orientation distribution of the alloy before and after hot compression:(a)before hot compression:(b)860C,0.01s(e)840 ℃,0.1s1:(d)860℃,0.1s1:(e)880℃,0.1s1:(0860℃,1s1工程科学学报,第 41 卷,第 6 期 图 5 热变形前后 TC17 合金 α 相的取向分布. ( a) 热压缩前; ( b) 860 ℃,0. 01 s - 1 ; ( c) 840 ℃,0. 1 s - 1 ; ( d) 860 ℃,0. 1 s - 1 ; ( e) 880 ℃, 0. 1 s - 1 ; ( f) 860 ℃,1 s - 1 Fig. 5 α phase orientation distribution of the TC17 alloy before and after hot compression: ( a) before hot compression; ( b) 860 ℃,0. 01 s - 1 ; ( c) 840 ℃,0. 1 s - 1 ; ( d) 860 ℃,0. 1 s - 1 ; ( e) 880 ℃,0. 1 s - 1 ; ( f) 860 ℃,1 s - 1 图 6 热变形前后 TC17 合金 β 相的取向分布 . ( a) 热压缩前; ( b) 860 ℃,0. 01 s - 1 ; ( c) 840 ℃,0. 1 s - 1 ; ( d) 860 ℃,0. 1 s - 1 ; ( e) 880 ℃, 0. 1 s - 1,( f) 860 ℃,1 s - 1 Fig. 6 β-phase orientation distribution of the alloy before and after hot compression: ( a) before hot compression; ( b) 860 ℃,0. 01 s - 1 ; ( c) 840 ℃,0. 1 s - 1 ; ( d) 860 ℃,0. 1 s - 1 ; ( e) 880 ℃,0. 1 s - 1 ; ( f) 860 ℃,1 s - 1 · 677 ·
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