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{"title":"HPAC High Pressure Cage Type Cast Angle Valve ANSI 900 1500 2500 JIS 63K","imgUrl":"https:\/\/img.chinax.com\/nimg\/dd\/73\/d65cabafa1851c4ae0f298314b3d-200x200-1\/hpac_high_pressure_cage_type_cast_angle_valve_ansi_900_1500_2500_jis_63k.jpg","attrs":{"Brand Name":"WEYO","Model Number":"HPAC","Place of Origin":"China","Minimum Order Quantity":"Negotiable"}}
HPAS high-pressure single-seat angle valve is a top-guided control valve, featuring small pressure drop loss in the valve body, large flow rate and wide adjustable range. The angle valve can be selected according to the requirements of pipeline turning layout.
The valve core has a large guiding area and good vibration resistance. The control valve is equipped with a multi-spring diaphragm actuator, which has a compact structure and large output force. The angle valve can be widely used to control high-pressure fluids at various temperatures.
Cv value and stroke are shown in Table 1.
Nominal diameter (mm)
25
40
50
80
Valve seat diameter (mm)
25
32
40
32
40
50
50
65
80
Rated Cv value
Equal percentage linearity
JIS63K ANSI9001500
0.25
0.4
0.63
1
1.6
2.5
4
6.3
12
12
17
25
17
25
47
47
75
110
ANSI2500
-
12
17
12
17
31
31
47
75
Rated stroke (mm)
14.3
25
38
Allowable pressure difference
I. Valves equipped with HA and VA actuators (with positioners) are shown in Tables 2 and 3.
A. Air-closed valves (Table 2)
Nominal pressure
Actuator
Supply pressure (MPa)
Spring range (MPa)
Allowable pressure difference
Valve seat diameter (mm) or Cv value
Cv≤4.0
Cv=6.3
Cv=12
32
40
50
65
80
ANSI 900 1500 JIS 63K
HA3D
0.28
0.04~0.20
16.3 15.2
16.1 14.9
10.2 9.2
5 4.2
3.2 2.7
1.8 1.4
1 0.70
0.70 0.40
0.3
20.7 19.6
20.5 19.2
13 12
6.4 5.7
4.2 3.6
2.4 1.9
1.4 1
0.90 0.60
0.35
26.4
26.4
20 19
10 9.2
6.6 6
3.8 3.4
2.3 1.9
1.6 1.3
0.4
-
-
26.4 26
13.5 12.8
9.1 8.5
5.3 4.8
3.2 2.8
2.2 1.9
HA4D
0.28
-
-
18.3 17.3
9.1 8.4
6.1 5.5
3.5 3
2.1 1.7
1.4 1.1
0.3
-
-
23.1 22.1
11.6 10.9
7.7 7.1
4.5 4
2.7 2.3
1.9 1.6
0.35
-
-
26.4
17.7 17
11.9 11.3
7 6.5
4.2 3.9
3 2.7
0.4
-
-
-
23.9 23.2
16.1 15.5
9.5 9
5.8 5.4
4.1 3.8
VA5D
0.26
0.02~0.10
-
-
-
26.3 25.5
17.7 17.1
10.4 10
6.3 6
4.5 4.2
0.28
-
-
-
26.4
20 19.4
11.8 11.4
7.2 6.8
5.1 4.8
ANSI 2500
HA3D
0.28
0.04~0.20
16.3 15.2
16.1 14.9
10.2 9.2
10.2 9.2
5 4.2
2.5 2
1.8 1.4
1 0.70
0.3
20.7 19.6
20.5 19.2
13 12
13 12
6.4 5.7
3.3 2.8
2.4 1.9
1.4 1
0.35
31.6 30.5
31.4 30.1
20 19
20 19
10 9.2
5.2 4.7
3.8 3.4
2.3 1.9
0.4
42.5 41.4
42.3 41
27 26
27 26
13.5 12.8
7.2 6.7
5.3 4.8
3.2 2.8
HA4D
0.28
-
-
18.3 17.3
18.3 17.3
9.1 8.4
4.8 4.3
3.5 3
2.1 1.7
0.3
-
-
23.1 22.1
23.1 22.1
11.6 10.9
6.1 5.6
4.5 4
2.7 2.3
0.35
-
-
35.1 34.1
35.1 34.1
17.7 17
9.5 8.9
7 6.5
4.2 3.9
0.4
-
-
44
44
23.9 23.2
12.8 12.3
9.5 9
5.8 5.4
VA5D
0.26
0.02~0.10
-
-
-
-
26.3 25.5
14.1 13.6
10.4 10
6.3 6
0.28
-
-
-
-
29.6 28.9
15.9 15.4
11.8 11.4
7.2 6.8
Remarks:
The maximum allowable pressure difference shall not exceed the maximum value specified in the ANSI B16.34 standard.
The maximum allowable pressure difference varies with the valve seat leakage. The pressure difference given in the upper part of the same cell indicates the condition when the valve seat leakage is ≤0.01%, while the pressure difference in the lower part indicates the condition when the valve seat leakage is ≤0.001%.
The inlet pressure P1 shall not exceed the maximum allowable pressure difference when the valve is closed.
B. Air-to-open valves Table 3
Nominal pressure
Actuator
Supply pressure (MPa)
Spring range (MPa)
Allowable pressure difference (MPa)
Valve seat diameter (mm) or Cv value
Cv≤4.0
Cv=6.3
Cv=12
32
40
50
65
80
ANSI 900 1500
HA3R
0.26~0.04 (*4)
0.08~0.24
16.3 15.2
16.1 14.9
10.2 9.2
5 4.2
3.2 2.7
1.8 1.4
1 0.70
0.70 0.40
HA4R
18.7 18
18.5 17.7
18.3 17.3
9.1 8.4
6.1 5.5
3.5 3
2.1 1.7
1.4 1.1
VA5R
-
-
-
12.7 12
8.5 7.9
5 4.5
3 2.6
2.1 1.8
VA6R
0.30(*1)
0.19~0.25
26.4
26.4
26.4
25.8
17.4
10.2
6.2
4.4
0.35(*2)
0.19~0.30
0.40(*3)
0.19~0.35
26.4
26.4
26.4
25.1
16.8
9.8
5.9
4.1
ANSI 2500
HA3R
0.26~0.40 (*4)
0.08~0.24
16.3 15.2
16.1 14.9
10.2 9.2
10.2 9.2
5 4.2
2.5 2
1.8 1.4
1 0.70
HA4R
18.7 18
18.5 17.7
18.3 17.3
18.3 17.3
9.1 8.4
4.8 4.3
3.5 3
2.1 1.7
VA5R
0.26~0.28 (*4)
-
-
-
-
12.7 12
6.8 6.2
5 4.5
3 2.6
VA6R
0.30(*1)
0.19~0.25
32.9
32.8
32.7
32.7
25.8
13.8
10.2
6.2
0.35(*2)
0.19~0.30
0.40(*3)
0.19~0.35
32.5
32.3
32
32
25.1
13.3
7.8
5.9
II. Valves equipped with VP actuators (with positioners) are shown in Tables 4
公称压 力
执行 机构
供气 压力 (MPa)
允许压差(MP)
阀座直径(mm)或Cv值
Cv≤4.0
Cv=6.3
Cv=12
32
40
50
65
80
ANSI 900 1500
VP5
0.3
18.8 18.5
18.7 18.4
18.6 18.2
18.4 17.7
14.2 13.6
8.3 7.9
5 4.7
3.6 3.3
0.4
25.1 24.8
25.1 24.7
25 24.5
24.7 24.1
19.1 18.5
11.3 10.8
6.9 6.5
4.9 4.6
0.5
26.4
26.4
26.4
26.4
24 23.4
14.2 13.8
8.7 8.3
6.2 5.9
VP6
0.3
-
-
-
-
17.9 17.5
14.6 14.2
8.9 8.6
6.4 6.1
0.4
-
-
-
-
24 23.6
19.7 19.2
12.1 11.7
8.6 8.3
0.5
-
-
-
-
26.4
24.8 24.3
15.2 14.8
10.9 10.6
VP7
0.3
-
-
-
-
-
17.5 17.1
13.8 13.5
9.9 9.6
0.4
-
-
-
-
-
23.4 23.1
18.6 18.2
13.3 13
0.5
-
-
-
-
-
26.4
23.3 22.9
16.7 16.4
ANSI 2500
VP5
0.3
18.8 18.5
18.7 18.4
18.6 18.2
18.6 18.2
18.4 17.7
11.3 10.7
8.3 7.9
5 4.7
0.4
25.1 24.8
25.1 24.7
25 24.5
25 24.5
24.7 24.1
15.2 14.7
11.3 10.8
6.9 6.5
0.5
31.5 32.2
31.4 31.1
31.3 30.9
31.3 30.9
31 30.4
19.2 18.6
14.2 13.8
8.7 8.3
VP6
0.3
-
-
-
-
-
17.8 17.3
14.6 14.2
8.9 8.6
0.4
-
-
-
-
-
23.9 23.5
19.7 19.2
12.1 11.7
0.5
-
-
-
-
-
30 29.6
24.8 24.3
15.2 14.8
VP7
0.3
-
-
-
-
-
-
17.5 17.1
13.8 13.5
0.4
-
-
-
-
-
-
23.4 23.1
18.6 18.2
0.5
-
-
-
-
-
-
29.4 29
23.3 22.9
Remarks:
If the actuator is equipped with an auxiliary air supply, the smaller one of the two supply pressures shall be selected as the basis for calculating the allowable pressure difference.
The maximum allowable pressure difference shall not exceed the maximum value specified in the ANSI B16.34 or JIS B2201 standard.
The inlet pressure P1 shall not exceed the allowable pressure difference when the valve is closed.
The maximum allowable pressure difference varies with the valve seat leakage. The pressure difference given in the upper part of the same cell indicates the condition when the valve seat leakage is ≤0.01%, while the pressure difference in the lower part indicates the condition when the valve seat leakage is ≤0.001%.
Flange distance is shown in Table 5. Table 5 Unit: mm
Nominal diameter
A
JIS63KRF
ANSI900
ANSI1500
ANSI2500
RF,SW,BW
RJ
RF,SW,BW
RJ
RF,SW,BW
RJ
25
138
146
159
159
40
161.5
166.5
179
180.5
50
177
187.5
189
188
189
225
225
80
215.5
220
220
230
230
270
270
Equipped with HA,VA5,VA6,VP actuator
Company Details
Bronze Gleitlager
,
Bronze Sleeve Bushings
and
Graphite Plugged Bushings
from Quality China Factory
Business Type:
Manufacturer,Seller
Year Established:
2003
Total Annual:
141790014-161450000
Employee Number:
1000~1200
Ecer Certification:
Verified Supplier
High-End Die-Shanghai WEYO Automation Technology Co., Ltd. was established in 2021 and is headquartered in Shanghai. It is an innovative technology enterprise that specializes in high-end industrial automation equipment, core components supply, technical services, and solution provision. With the co... High-End Die-Shanghai WEYO Automation Technology Co., Ltd. was established in 2021 and is headquartered in Shanghai. It is an innovative technology enterprise that specializes in high-end industrial automation equipment, core components supply, technical services, and solution provision. With the co...