| 第三节 耐热铸钢和高温用铸钢
(1)美国ASTM标准与UNS系统一般用途耐热铸钢[ASTM A297/A297M--1998]
a.耐热铸钢的钢号与化学成分,见表7-5-17。
表7-5-17 耐热铸钢的钢号与化学成分(质量分数)(%)
| 钢号 |
类型 |
C |
Si |
Mn |
P
≤ |
S
≤ |
Cr |
Ni |
Mo① |
| ASTM |
UNS |
| HF |
J92603 |
19Cr-9Ni |
0.20-0.40 |
≤2.00 |
≤2.00 |
0.04 |
0.04 |
18.0-23.0 |
8.0-12.0 |
≤0.50 |
| HH |
J93503 |
25Cr-12Ni |
0.20-0.50 |
≤2.00 |
≤2.00 |
0.04 |
0.04 |
24.0-28.0 |
11.0-14.0 |
≤0.50 |
| HI |
J94003 |
28Cr-15Ni |
0.20-0.50 |
≤2.00 |
≤2.00 |
0.04 |
0.04 |
26.0-30.0 |
14.0-18.0 |
≤0.50 |
| HK |
J94224 |
25Cr-20Ni |
0.20-0.60 |
≤2.00 |
≤2.00 |
0.04 |
0.04 |
24.0-28.0 |
18.0-22.0 |
≤0.50 |
| HE |
J93403 |
29Cr-9Ni |
0.20-0.50 |
≤2.00 |
≤2.00 |
0.04 |
0.04 |
26.0-30.0 |
8.0-11.0 |
≤0.50 |
| HT |
J94605 |
17Cr-35Ni |
0.35-0.75 |
≤2.50 |
≤2.00 |
0.04 |
0.04 |
15.0-19.0 |
33.0-37.0 |
≤0.50 |
| HU |
J95405 |
19Cr-39Ni |
0.35-0.75 |
≤2.50 |
≤2.00 |
0.04 |
0.04 |
17.0-21.0 |
37.0-41.0 |
≤0.50 |
| HW |
— |
12Cr-60Ni |
0.35-0.75 |
≤2.50 |
≤2.00 |
0.04 |
0.04 |
10.0-14.0 |
58.0-62.0 |
≤0.50 |
| HX |
— |
17Cr-60Ni |
0.35-0.75 |
≤2.50 |
≤2.00 |
0.04 |
0.04 |
15.0-19.0 |
64.0-68.0 |
≤0.50 |
| HC |
J92605 |
28Cr |
≤0.50 |
≤2.00 |
≤1.00 |
0.04 |
0.04 |
26.0-30.0 |
≤4.00 |
≤0.50 |
| HD |
J93005 |
28Cr-5Ni |
≤0.50 |
≤2.00 |
≤1.50 |
0.04 |
0.04 |
26.0-30.0 |
4.0-7.0 |
≤0.50 |
| HL |
J94604 |
29Cr-20Ni |
0.20-0.60 |
≤2.00 |
≤2.00 |
0.04 |
0.04 |
28.0-32.0 |
18.0-22.0 |
≤0.50 |
| HN |
J94213 |
20Cr-25Ni |
0.20-0.50 |
≤2.00 |
≤2.00 |
0.04 |
0.04 |
19.0-23.0 |
23.0-27.0 |
≤0.50 |
| HP |
J95705 |
26Cr-35Ni |
0.35-0.75 |
≤2.50 |
≤2.00 |
0.04 |
0.04 |
24-28 |
33-37 |
≤0.50 |
①铸件中Mo含量可由供需双方在规定范围内商定。
b.耐热铸钢的力学性能,见表7-5-18。
表7-5-18 耐热铸钢的力学性能
| 钢号 |
力学性能(不小于) |
| ASTM |
UNS |
σb/MPa |
σS①/MPa |
δ②(%) |
| HF
HH
HI
HK
HE
HT
HU
HW
HX
HC
HD
HL
HN
HP |
J92603
J93503
J94003
J94224
J93403
J94605
J95405
—
—
J92605
J93005
J94604
J94213
J95705 |
485
515
485
450
585
450
450
415
415
380
515
450
435
430 |
240
240
240
240
275
—
—
—
—
—
240
240
—
235 |
25
10
10
10
9
4
4
—
—
—
8
10
8
4.5 |
①屈服点或屈服强度。
②试样标距50mm。当按本标准的规定在拉伸试验时采用ICI试棒,其标距长度与缩减截面直径之比为4:1。
(2)美国ASTM标准与UNS系统高温用奥氏体铸钢[ASTM A297/A297M—2000]
a.高温用奥氏体铸钢的钢号与化学成分。见表7-5-19。
表7-5-19 高温用奥氏体铸钢的钢号与化学成分(质量分数)(%)
| 钢号 |
C |
Si |
Mn |
P
≤ |
S
≤ |
Cr |
Ni |
Mo |
其他 |
| ASTM |
UNS |
| CF-3 |
J92500 |
≤0.03 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
17.0-21.0 |
8.0-12.0 |
≤0.50 |
— |
| CF3A |
— |
≤0.03 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
17.0-21.0 |
8.0-12.0 |
≤0.50 |
— |
| CF3M |
J92800 |
≤0.03 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
17.0-21.0 |
9.0-13.0 |
2.0-3.0 |
— |
| CF3MA |
— |
≤0.03 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
17.0-21.0 |
9.0-13.0 |
2.0-3.0 |
— |
| CF3MN |
J92804 |
≤0.03 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
17.0-21.0 |
9.0-13.0 |
2.0-3.0 |
N0.10-0.20 |
| CF8 |
J92600 |
≤0.08 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
18.0-21.0 |
8.0-11.0 |
≤0.50 |
— |
| CF8A |
— |
≤0.08 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
18.0-21.0 |
8.0-11.0 |
≤0.50 |
— |
| CF8C |
J92710 |
≤0.08 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
18.0-21.0 |
9.0-12.0 |
≤0.50 |
Nb≥8*C%-100 |
| CF8M |
J92900 |
≤0.08 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
18.0-21.0 |
9.0-12.0 |
2.0-3.0 |
— |
| CF10 |
— |
0.04-0.10 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
18.0-21.0 |
8.0-11.0 |
≤0.50 |
— |
| CF10M |
J92901 |
0.04-0.10 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
18.0-21.0 |
9.0-12.0 |
2.0-3.0 |
— |
| CF10MC |
J92971 |
≤0.10 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
15.0-18.0 |
13.0-16.0 |
1.75-2.25 |
Nb≥10*C%-1.20 |
| CF10SMnN |
J92972 |
≤0.10 |
3.50-4.50 |
7.00-9.00 |
0.060 |
0.030 |
16.0-18.0 |
8.0-9.0 |
— |
N0.08-0.18 |
| CD3MWCuN |
— |
≤0.03 |
≤1.00 |
≤1.00 |
0.030 |
0.025 |
24.0-26.0 |
6.5-8.5 |
3.0-4.0 |
Cu0.5-1.0
W0.5-1.0
N0.20-0.30 |
| CD4MCu |
J93970 |
≤0.04 |
≤1.00 |
≤1.00 |
0.04 |
0.04 |
24.5-26.5 |
4.75-6.00 |
1.75-2.25 |
Cu2.75-3.250 |
| CE8MN |
— |
≤0.08 |
≤1.50 |
≤1.00 |
0.040 |
0.040 |
22.5-25.5 |
8.0-11.0 |
3.0-4.0 |
N0.10-0.30 |
| CE20N |
J92802 |
≤0.20 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
23.0-26.0 |
8.0-11.0 |
≤0.50 |
N0.08-0.20 |
| CG3M |
J92999 |
≤0.03 |
≤1.50 |
≤1.50 |
0.04 |
0.04 |
18.0-21.0 |
9.0-13.0 |
3.0-4.0 |
|
| CG6MMN |
J93790 |
≤0.06 |
≤1.00 |
4.00-6.00 |
0.040 |
0.030 |
20.5-23.5 |
11.5-13.5 |
1.5-3.0 |
Nb0.10-0.30
V0.10-0.30;
N0.20-0.40 |
| CG8M |
J93000 |
≤0.08 |
≤1.50 |
≤1.50 |
0.04 |
0.04 |
18.0-21.0 |
9.0-13.0 |
3.0-4.0 |
— |
| CK3MCuN |
J93254 |
≤0.025 |
≤1.00 |
≤1.20 |
0.045 |
0.010 |
19.5-20.5 |
17.5-19.5 |
6.0-7.0 |
Cu0.50-1.00
N0.18-0.24 |
| CK20 |
J93202 |
0.04-0.20 |
≤1.75 |
≤1.50 |
0.040 |
0.040 |
23.0-27.0 |
19.0-22.0 |
≤0.50 |
— |
| CH8 |
J93400 |
≤0.08 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
22.0-26.0 |
12.0-15.0 |
≤0.50 |
— |
| CH10 |
J93401 |
0.04-0.10 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
22.0-26.0 |
12.0-15.0 |
≤0.50 |
— |
| CH20 |
J93402 |
0.04-0.20 |
≤2.00 |
≤1.50 |
0.040 |
0.040 |
22.0-26.0 |
12.0-15.0 |
≤0.50 |
— |
| CN3MN |
J94651 |
≤0.03 |
≤1.00 |
≤2.00 |
0.040 |
0.010 |
20.0-22.0 |
23.2-25.5 |
6.0-7.0 |
Cu≤0.75;
N0.18-0.26 |
| CN7M |
J08007 |
≤0.07 |
≤1.50 |
≤1.50 |
0.040 |
0.040 |
19.0-22.0 |
27.5-30.5 |
2.0-3.0 |
Cu3.0-4.0 |
| CT15C |
— |
0.05-0.15 |
0.15-1.50 |
0.50-1.50 |
0.03 |
0.03 |
19.0-21.0 |
31.0-34.0 |
0.50-1.50 |
— |
| HK30 |
J94203 |
0.25-0.35 |
≤1.75 |
≤1.50 |
0.040 |
0.040 |
23.0-27.0 |
19.0-22.0 |
≤0.50 |
— |
| HK40 |
J94204 |
0.35-0.45 |
≤1.75 |
≤1.50 |
0.040 |
0.040 |
23.0-27.0 |
19.0-22.0 |
≤0.50 |
— |
| HT30 |
J94603 |
0.25-0.35 |
≤2.50 |
≤2.50 |
0.040 |
0.040 |
13.0-17.0 |
33.0-37.0 |
≤0.50 |
— |
b.高温用奥氏体铸钢的力学性能,见表7-5-20。
表7-5-20 高温用奥氏体铸钢的力学性能
| 钢号 |
力学性能(不小于) |
| ASTM |
UNS |
σb/MPa |
σS①/MPa |
δ(%) |
| CF-3 |
J92600 |
485 |
205 |
35 |
| CF3A |
— |
530 |
240 |
35 |
| CF3M |
J92900 |
485 |
205 |
30 |
| CF3MA |
— |
550 |
255 |
30 |
| CF3MN |
J92804 |
515 |
255 |
35 |
| CF8 |
J92810 |
485 |
205 |
35 |
| CF8A |
— |
530 |
240 |
35 |
| CF8C |
J927100 |
485 |
205 |
30 |
| CF8M |
J92900 |
485 |
205 |
30 |
| CF10 |
— |
485 |
205 |
35 |
| CF10M |
J92901 |
485 |
205 |
30 |
| CF10MC |
J92971 |
485 |
205 |
20 |
| CF10SMnN |
J92972 |
585 |
295 |
30 |
| CD3MWCuN |
|
700 |
450 |
25 |
| CD4MCu |
J93970 |
690 |
485 |
16 |
| CE8MN |
|
665 |
450 |
25 |
| CE20N |
J92802 |
550 |
275 |
30 |
| CG3M |
J92999 |
515 |
240 |
25 |
| CG6MMN |
J93790 |
585 |
295 |
30 |
| CG8M |
J93000 |
515 |
240 |
25 |
| CK3MCuN |
J93254 |
550 |
260 |
35 |
| CK20 |
J93202 |
450 |
195 |
30 |
| CH8 |
J93400 |
450 |
195 |
30 |
| CH10 |
J93401 |
485 |
205 |
30 |
| CH20 |
J93402 |
485 |
205 |
30 |
| CN3MN |
J94651 |
550 |
260 |
35 |
| CN7M |
N08007 |
425 |
170 |
35 |
| CT15C |
|
435 |
170 |
20 |
| HK30 |
J94203 |
450 |
240 |
20 |
| HK40 |
J94204 |
425 |
240 |
10 |
| HT30 |
J94603 |
450 |
195 |
15 |
①屈服点或屈服强度。
(3)美国ASTM标准与UNS系统适合于熔焊的高温用碳素钢[ASTM A216/A216M--1998]
a.高温用碳素铸钢的钢号与化学成分,见表7-5-21。
表7-5-21 高温用碳素铸钢的钢号与化学成分(质量分数)(%)
| 钢号 |
主要化学成分(≤%) |
残余元素(≤%) |
| ASTM |
UNS |
C
(CE) |
Si |
Mn |
P |
S |
Cr |
Ni |
Mo |
Cu |
V |
总量 |
| WCA |
J02502 |
0.25
(0.50) |
0.60 |
0.70 |
0.04 |
0.045 |
0.50 |
0.50 |
0.20 |
0.30 |
0.03 |
1.00 |
| WCB |
J03002 |
0.30
(0.50) |
0.60 |
1.00 |
0.04 |
0.045 |
0.50 |
0.50 |
0.20 |
0.30 |
0.03 |
1.00 |
| WCC |
J02503 |
0.25
(0.55) |
0.60 |
1.20 |
0.04 |
0.045 |
0.50 |
0.50 |
0.20 |
0.30 |
0.03 |
1.00 |
b.高温用碳素铸钢的力学性能,见表7-5-22。
表7-5-22 高温用碳素铸钢的力学性能
| 钢号 |
力学性能(不小于) |
| ASTM |
UNS |
σb/MPa |
σ0.2①/MPa |
δ②(%) |
Ψ(%) |
| WCA
WCB
WCC |
J02502
J03002
J02503 |
415-585
485-655
485-655 |
205
250
275 |
24
22
22 |
35
35
35 |
①屈服强度可用0.2%残余变形法或用载荷下0.5%伸长率法测定。
②试样标距50mm。当按A703标准的规定,采用ICI(美国精密铸造学会)试棒作拉伸试验时,其标距长度对缩减截面直径之比为4:1。
(4)美国ASTM标准高温用镍铬合金铸钢[ASTM A447/A447M--1998]
a.高温用镍铬合金铸钢的型号与化学成分,见表7-5-23。
表7-5-23 高温用镍铬合金铸钢的型号与化学成分(质量分数)(%)
| 钢号 |
C |
Si |
Mn |
P
≤ |
S
≤ |
Cr |
Ni① |
N |
Fe和其他 |
| Type I
Type II |
0.20-0.45
0.20-0.45 |
≤1.75
≤1.75 |
≤2.50
≤2.50 |
0.05
0.05 |
0.05
0.05 |
23.0-28.0
23.0-28.0 |
10.0-14.0
10.0-14.0 |
≤0.20
≤0.20 |
由供需双方协议
由供需双方协议 |
①商品铸钢件常含有少量的C0,可把C0含量折算为Ni含量的一部分。
b.高温用镍铬合金铸钢的力学性能,见表7-5-24。
表7-5-24 高温用镍铬合金铸钢的力学性能
| 钢号 |
时效后的力学性能(不小于) |
高温短时力学性能 |
| σb/MPa |
δ①(%) |
σb/MPa |
δ①(%) |
| Type I
Type II |
550
550 |
9
4 |
由供需双方协议
140 |
由供需双方协议
8 |
①试样标距50mm。
(5)美国ASTM标准抗高温腐蚀的镍铬铸造合金[ASTM A560/A560M--1998]
a.抗高温腐蚀的镍铬铸造合金的牌号与化学成分,见表7-5-25。
表7-5-25 抗高温腐蚀的镍铬铸造合金的牌号与化学成分(质量分数)(%)
| 牌号 |
C |
Si |
Mn |
P
≤ |
S
≤ |
Cr |
Ni |
Fe |
其他 |
| 50Cr-50Ni |
≤0.10 |
≤1.00 |
≤0.30 |
0.02 |
0.02 |
48.0-52.0 |
余量 |
≤1.00 |
Al≤0.25;
Ti≤0.50;
N≤0.30 |
| 60Cr-40Ni |
≤0.10 |
≤1.00 |
≤0.30 |
0.02 |
0.02 |
58.0-62.0 |
余量 |
≤1.00 |
Al≤0.25;
Ti≤0.50;
N≤0.30 |
| 50Cr-50Ni-Nb① |
≤0.10 |
≤0.50 |
≤0.30 |
0.02 |
0.02 |
47.0-52.0 |
余量 |
≤1.00 |
Al≤0.25;
Nb1.4-1.7;
Ti≤0.50;
N≤0.16② |
①ω(Ni)+ω(Cr)+ω(Nb)必须≥97.5%。
②ω(N)+ω(C)≤0.20%。
b.抗高温腐蚀的镍铬铸造合金的力学性能,见表7-5-26。
表7-5-26 抗高温腐蚀的镍铬铸造合金的力学性能
| 牌号 |
力学性能(不小于) |
| σb/MPa |
σs/MPa |
δ①(%) |
Ak②/J |
| 50Cr-50Ni
60Cr-40Ni
50CT-50Ni-Cb |
550
760
550 |
340
590
345 |
5
—
5 |
78
14
— |
①试样标距50mm。
②夏比无缺口试样。
|