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产品[
clark磁力驱动泵
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clark磁力驱动泵
CLARK SOLUTIONS
AM Series Magnetic Drive Chemical Pumps
Flow Rates to 55 GPM, Pressures to 22 PSI
DESCRIPTION
The AM series chemical pumps are centrifugal, horizontal axis, cl
clark磁力驱动泵的详细介绍
clark磁力驱动泵
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CLARK SOLUTIONS AM Series Magnetic Drive Chemical Pumps Flow Rates to 55 GPM, Pressures to 22 PSI
DESCRIPTION The AM series chemical pumps are centrifugal, horizontal axis, close-coupled type. The bodies are entirely built with reinforced thermoplastic polymers. Materials for the internal components include ceramic oxides, HD carbon and fluorinated elastomers. Any fluid contact with metallic pump parts is avoided.
These chemical pumps are an excellent choice for small scale chemical pumping applications. |
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FEATURES “Hermetic” Pump A drive magnet assembly (item 7 of cut away dwg.) is driven by the motor shaft. This magnetic field acts on the magnet that is molded into the impeller assembly (item 4). The rear casing (item 2) isolates the drive mechanism from the impeller assembly and the fluid media.

1) Volute Casing
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6) SS Screws
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2) Rear Casing
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7) Drive Magnet Assembly
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3) O-Ring Gasket
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8) Support
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4) Centrifugal Impeller
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9) Flange for NEMA Motor
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5) a/b Guide Bushings
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10) Electrical Motor
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Safety & Life The magnetic drive system, which excludes any type of rotating seal, extends pump life. The only seal required is a static o-ring gasket between the volute casing and rear casing. The “R” version of the pump (see tables 2&3) has materials that tolerate dry running for 15 minutes to hours (depending on operating conditions and materials selected).
Versatility & Performance Two housing materials, style WR, glass fiber reinforced (30%) Polypropylene, and style GF, Ethylene-ChloroTrifluoroEthylene carbon fiber filled (20%) are offered along with a choice of internal materials. Depending on material choice, the pumps handle applications from clean water to waste and slightly abrasive liquids, strong alkali or salts such as sodium hypochlorite, and acids such as chromix, nitric, sulphuric, etc.(see compatibility chart ). The mechanical properties of the reinforced housing materials allow the use of the pumps with fluids containing solids with medium grade of abrasion. For example a pump supplied with “X” internal materials (see table ) can handle solids up to an index hardness of Mohs 4, a maximum quantity in weight of 5%, and a maximum size of 0.25 mm.
A selection of impellers accommodates a range of liquid specific gravities.

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MATERIALS
Media Compatibility |
Medium |
WR |
GF |
V |
K |
Cold mineral acids |
++ |
++ |
+ |
+ |
Hot mineral acids |
0 |
++ |
- |
+ |
Cold oxidizing acids |
- |
++ |
+ |
+ |
Hot oxidizing acids |
- |
++ |
0/- |
+ |
Cold inorganic salts |
++ |
++ |
+ |
+ |
Hot inorganic salts |
+ |
++ |
+ |
+ |
Cold inorganic bases |
++ |
++ |
-(*) |
+ |
Hot inorganic bases |
++ |
++ |
-(*) |
+ |
Cold alogens |
- |
+ |
+ |
+ |
Hot alogens |
- |
+ |
- |
+ |
Cold aliphatic solvents |
+ |
+ |
+ |
+ |
Hot aliphatic solvents |
- |
0 |
0/- |
+ |
Cold aromatic solvents |
- |
+ |
0/- |
+ |
Hot aromatic solvents |
- |
0 |
- |
+ |
Cold functional aromatic solvents |
- |
+ |
- |
+ |
Hot functional aromatic solvents |
- |
0 |
- |
+ |
Cold chlorinated solvents |
- |
+ |
- |
+ |
Hot chlorinated solvents |
- |
0 |
- |
+ |
Cold alcohols |
++ |
++ |
-(*) |
+ |
Hot alcohols |
+ |
+ |
-(*) |
+ |
Cold ethers |
- |
+ |
- |
+ |
Hot ethers |
- |
+ |
- |
+ |
Cold ketones |
+ |
+ |
|
+ |
Hot ketones |
0 |
0 |
-(*) |
+ |
Cold amines |
+ |
+ |
-(*) |
+ |
Cold polymer solvents |
++ |
0 |
+ |
+ |
++= Excellent + =Good 0=Moderate -=Not Resistant |
(*)=Use EPDM |
ABBREVIATION LEDGER
GFR/PP(WR)- Glass reinforced polypropylene CFF/E-CTFE(GF)- EthylenchloroTrifluoroEthylene carbon filled(20%) Carb. H.D.- High density carbon SiC- Silicon Carbide CER- Alumina ceramic at 99.7%- hi purity FKM(V)- Fluorinated elastomer FFKM(K)- Perfluor elastomer EPDM- EthylenePropylene rubber NPT m- Male NPT NPT f- Female NPT ND- Nominal diameter ANSI- Ref. flange ANSI B 16.5- flat face
Table1 - Case Materials
Version |
Reinforced Polymers |
Process Min Temp. |
Process Max. Temp. |
Ambient temp. |
WR |
GFR-PP |
-5oC (23oF) |
80oC (176oF) |
0-40oC (32...104oF) |
GF |
CFF-E-CTFE |
-30oC (-22oF) |
110oC (230oF) |
-20-40oC (-4...104oF) |
Table2 - Materials Model AM45
Pump Model |
AM-45-WR |
AM-45-GF |
Pump Version |
R |
R |
Volute Casing |
GFR-PP |
CFF-E-CTFE |
Rear Casing |
Centrifugal Impeller |
Guide Bushing |
Carb. HD |
Carb. HD |
Shaft |
CER |
CER |
Thrust Bushing |
CER |
CER |
O Ring Gasket |
FKM (1) |
FKM (1) ; (2) |
Screws |
304 SS |
304 SS |
Table3 - Materials Models AM250P, 350P, 500P
Pump Model |
AM-XXXP-WR |
AM-XXX-GF |
Pump Version |
R |
X1 |
R |
X2 |
Volute Casing |
GFR-PP |
CFF-E-CTFE |
Rear Casing |
Centrifugal Impeller |
Guide Bushing |
Carb. HD |
|
Carb. HD |
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Shaft |
CER |
CER |
SiC |
SiC |
Thrust Bushing |
CER |
CER |
SiC |
SiC |
O Ring Gasket |
FKM (1) |
FKM (1) ; (2) |
Screws |
304 SS |
304 SS |
Upon request: (1) EPDM and (2) FFKM
FLOW DATA
Table4 - Impeller Selection
Liquid Specific Gravity Limits At Max Flow |
Impeller |
Specific Gravity Limit (kg/dm3) |
H |
1.1 |
K |
1.4 |
L |
1.9 |
Actual RPM at max. capacity |
Pump Model |
45 |
250P |
350P |
500P |
RPM |
3400 |
3200 |
3200 |
3300 |
Flow Curves are for water at 20°C
SPECIFICATIONS
Pump Model |
AM45 |
AM250P |
AM350P |
AM500P |
Inlet |
1/2” NPT m |
3/4” NPT f |
1” NPT m |
1-1/4” NPT m |
Outlet |
3/8” NPT m |
3/4” NPT m |
1” NPT m |
1” NPT m |
ANSI Flanges |
N/A |
N/A |
1” |
1” |
Power |
45W |
1/3 HP |
1/2 HP |
3/4 HP |
Type |
single-phase |
three-phase |
three-phase |
three-phase |
Voltage |
208-230 |
208/230-460 |
Motor Size |
Special |
NEMA 56C |
Max Inlet Pressure |
22 PSI |
Medium Viscosity |
<20 cSt |
Weight |
8.8 lb |
28.5 lb |
31 lb |
37.5 lb |


Model |
AM45 (mm) |
AM45 (inches) |
a1 |
34 |
1-11/32 |
L |
225 |
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G |
120 |
4-3/4 |
Q |
40 |
1-9/16 |
h1 |
60 |
2-3/8 |
h2 |
75 |
2-31/32 |
S |
Ø 9.5 |
Ø 3/8 |
r |
90 |
3-9/16 |
R |
Ø 102.3 |
Ø 4 |
m1 |
40 |
1-9/16 |
n1 |
100 |
3-15/16 |
Dimensions in inches |
Model |
250P |
350P |
500P |
a1 |
2-7/16 |
2-7/16 |
2-7/16 |
a1.1 |
2-7/16 |
2-7/16 |
2-7/16 |
L |
12-1/4 |
12-1/4 |
12-1/4 |
HD |
6-1/2 |
6-1/2 |
6-1/2 |
Q |
1-27/32 |
1-15/16 |
2-3/32 |
h1 |
3-1/2 |
3-1/2 |
3-1/2 |
h2 |
3-15/16 |
3-15/16 |
3-15/16 |
h2.1 |
3-15/16 |
3-15/16 |
3-15/16 |
S |
11/32 |
11/32 |
11/32 |
r |
8-3/16 |
8-3/16 |
8-3/16 |
r1 |
5-5/8 |
5-5/8 |
5-5/8 |
R |
5-3/4 |
5-3/4 |
5-3/4 |
m1 |
3 |
3 |
3 |
n1 |
4-7/8 |
4-7/8 |
4-7/8 |
KM |
2-3/4 |
3-1/8 |
3-1/2 |
KA |
2-3/4 |
3-1/8 |
3-1/2 |
dxz |
5/8 x 4 |
5/8 x 4 |
5/8 x 4 |
Flanges are per ANSI B 16.5- Flat Face |
ORDERING INFORMATION
AM-A-B-C-D-E-F-G-H-I EXAMPLE: AM-250P-GF-H-V-R-N-U-N-3
A= Model |
B= Pump Body (Table 2) |
C=Impeller (Table 4) |
D= O-Ring Gasket |
E=Materials (Tables 2&3) |
F=Connections |
G=Motor |
H=Motor Detail |
I=Motor Phases |
45 |
WR
GK
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H
K
L
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V=FPM
E=EPDM
K=FFKM
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R
X
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N=NPT A=ANSI Flange |
U=NEMA |
N=Standard
S=Special Voltage
E=Ex-Proof
0=Without Motor
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1=Single Phase
3=Three Phase
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250P |
350P |
500P |
For assistance call 978-568-3400
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