mpx - flowserve• ansi/asme b73.3 or iso 2858 conformance • close-coupled or frame mounted •...

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MPX Magnetic Drive ess Process Pumps For Handling Toxic and Corrosive Fluids

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Page 1: MPX - Flowserve• ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI) • Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2) MATERIALS

MPX Magnetic Drive ess Process Pumps

For Handling Toxic and Corrosive Fluids

Page 2: MPX - Flowserve• ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI) • Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2) MATERIALS

Ingersoll-Dresser Pumps' model MPX utilizes leading-edge technology to provide the most reliable magnetic drive equipment available.

With extensive, worldwide application experience, backed by state-of-the-art research and development facilities, Ingersoll-Dresser Pumps has developed the MPX in response to today's customer needs in reducing maintenance expenses and optimizing capital

CONFIGURATION OPTIONS

equipment investments. • ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI)

• Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2)

MATERIALS OF CONSTRUCTION st,

Ductile Iron 316 SS Alloy 20 Haste!lay C Hastelloy B Casing

Impeller CD4MCu Duplex Alloy 20 Hastelloy C Hastelloy B

Casing Cover 316 SS Alloy 20 Hastelloy C Hastelloy B

Pump Shaft 316 SSARO A 20/CRO Host CARO Hast B/CRO

Power Shaft Carbon Steel

Inner Magnet Carrier 316 SS/NEO A 20/NE0 I Hast C/NE0 Host B/NEO

Outer Magnet Carrier 410 SS (fully enclosed, epoxy coated magnets secured in integrally cast slots)

Containment Shells Reinforced Polyether Etherketone (PEEK)

Hastelloy C (hydroformed, seamless)

Shell 0-Ring Teflon/Von

Bearing Housing Iron

Product Lube Bearings PGS-200 Silicon Carbide

The MPX is a sealless, horizontal, single stage, back pullout, centerline discharge pump available in both frame mounted and close-coupled configurations. The close-coupled version is ideal for applications rith space constraints or where

there is a need to minimize alignment concerns. Available sizes include ANSFASME group 1 and group 2, along with "sub-ANSI", low co low capacity sizes.

PERFORMANCE PARAMETERS • Maximum capacity:

1700 gpm (385 inThr)

• Maximum head: 550 ft (165 m)

• Maximum temperature: 500° F (250° C)

• Maximum working pressure: 375 psi (25 bar)

• Maximum power: 100 hp (75 kW)

C

0

MPX Setting New Standards of Exce ance in Sea ess Pump Tedina ogy

CONSTRUCTION DETAILS Casing — The casing is a self-venting, top centerline discharge design with a confined gasket. Flanges are 150# flat faced (100-150 RMS finish) as standard.

Impeller — The semi-open impeller is precision-cast for consistent high efficiency and low NPSH. The impeller is statically and hydraulically balanced and adjustable to maintain maximum performance. Scallops and pumping vanes mininiize axial thrust, ensuring long-term equipment reliability.

Drive System — The standard magnet-to-magnet drive system uses high-strength, rare earth, neodymium iron boron magnets designed to handle torque over the entire pump operating range, up to 100 hp. The inner magnet carrier is engineered to optimize magnetic flux while minimizing weight. The outer magnet carrier is designed to withstand corrosive, external environ-ments. Optional samarium cobalt magnets are available for high-temperature applications.

Containment Shell — The standard containment shell is engineered composite, reinforced Polyether Etherketone (PEEK). This polymer far exceeds alloys in minimizing electrical conductivity, eliminating eddy-current drag, maximizing pump efficiency and protecting against flashing. An optional hydroformed Hastelloy C shell can be used alone or with the PEEK shell as a dual contaimnent system.

Product Lubricated Bearings — Product lubricated bearings are constructed of porous, graphite-filled silicon carbide for maximum corrosion and abrasion resistance, and improved run-dry capability.

Monitoring — The pump is designed to allow moni-toring of vibration, fluid temperature and containment shell temperature, dual shell pressure measurement and dry-rim shutdown.

Frame End — The pump frame end is of iron construc-tion, with full register fits to assure aligmnent. Close-coupled mounting is available up to 40 hp.

Ball Bearings — The standard ball bearings are sealed, grease lubricated and designed for minimum B-10 or L-10 life of ten years. Oil lubrication is optional.

Pump Shaft — Engineered for maximum cooling and ease of maintenance, the internal shaft has a center-line flow path and uses abrasion-resistant, ceramic coating as standard.

Flow Path — The MPX flow path is designed to ensure optimum cooling and bearing lubrication, allowing solids handling capability up to 1% by weight and 100 micron size. An optional self cleaning wash-flow strainer enables greater solids handling capability.

Page 3: MPX - Flowserve• ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI) • Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2) MATERIALS

MPX Designed Fith User-Friendly Featu es

Sealless Design utilizes high torque magnet coupling. • Eliminates seal • Reduces maintenance

Easy to Disassemble/Assemble • Number of parts minimized for reduced

maintenance time/costs

Optimized Internal Flow Path hibricates bearings and - cools magnets.

• Increases reliability • Lowers flashing potential

Worldwide Design. meets ANSI/ASME B73.3 or ISO 2858. (CPXS Design)

• Satisfies global requirements

Precision-Cast, Semi-Open Impeller ensures repeatability of performance; satisfies industry preference.

• Ensures consistently high performance • Accommodates particles

Safety Skid-Ring protects shell from contact with outer magnet carrier. • Increases reliability and safety • Ensures containment at all times

C

Solid Pump Shaft utilizes chrome-oxide coating in place of fragile journal bearings.

• Reduces number of components • Simplifies maintenance

Advanced Bearing Material consists of graphite-filled silicon carbide, enabling short-term, dry-run protection.

• Reduces maintenance costs

Close-Coupled Option eliminates need for alignment, coupling, bedplate and extra space.

• Lowers installation costs • Minimizes maintenance

Secondary Containment Option provides true outer shroud. Pressure sen-sor available to monitor primary shell.

• Ensures safety • Controls critical emissions

PEEK Containment Shell eliminates mechanical seal; provides corrosion resistance; eliminates eddy-current loss.

• Reduces parts usage • Decreases power consumption • Reduces maintenance costs

Back Pullout Design Assures 100% fluid containment during maintenance. • Ensures safety for maintenance personnel • Provides environmental protection

Page 4: MPX - Flowserve• ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI) • Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2) MATERIALS

Problem: This Gulf Coast customer has experienced frequent, costly failures on an installation pumping a high specific gravity chemical.

PGS-200 Advanced Bearing Material: The state-of-the-art, graphite-filled, silicon carbide bearings displayed exceptional endurance throughout the extensive bearing development tests performed at Ingersoll-Dresser Pumps' Corporate Technology Center. This self-lubricating material will ensure maximum reliability for the inherently difficult services utilizing sealless technology.

Safety Skid-Ring: This ring will protect the shell from contact with the outer magnet carrier, ensuring reliability and safety at all times.

With the MPX Flow Path Analysis Software, Ingersoll-Dresser Pumps can offer the most sophisticated internal magdrive analysis available. This software will accurately ensure a successful installation before you invest in equipment.

Solution: With the standard self-lubricating bearings, the internal flow path design, and the low-thrust impeller, the MPX has significantly extended this customer's MTBF.

Secondary Containment Option:

The MPX allows the use of two static

containment shells (reinforced PEEK and hydroformed

Hastelloy C), each indi- vidually providing 100% fluid

containment. This design provides added security for critical services.

Low-Thrust Impeller Design: The precision-cast, semi-open impeller utilizes hydraulic scallops and pumping slots to achieve maximum efficiency while minimizing axial thrust. This design ensures excellent bearing life without the use of detrimental balance holes.

Optimized Internal Flow Path: Ingersoll-Dresser Pumps' Corporate Technology Center performed precise MPX flow path testing in order to optimize internal cooling and bearing lubrication across the entire pump operating range. Results can be shown in the Flow Path Analysis software program.

FLOW PATH ANALYSI As a teclutical support

uaers€41-Dresser Paoli Is' teelmiet.;:ols... -

at proNide complete flow, pressurf. :.

• tut temperature allalYS(',, ai

• Cib:ation,, 1,0th -ill your pump. IThis

data service Can ide

t1ssuran6:6„011 t 1itie1l seevl

Pump Shaft: --e wetted shaft is a one-piece design for purposes of

simplification and maintain- ability. The chrome-oxide

shaft coating provides an optimum running

surface for the process-lubricated,

silicon carbide bearings and eliminates use of fragile

journal bearings. The center bore in the shaft enables auxiliary internal cooling.

Page 5: MPX - Flowserve• ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI) • Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2) MATERIALS

3000 RPM

IC'10

NM U. NM

--■•=mENNUmnmoinur Ulil iirimmummoninainim 11111

• NNIO 111101

1•11111111111111111M1111111111111 300 400 5&:, 760 tow 20'00 200

6'0 so Ida 14o 200 300 4«,

150 - 500-

80 -

60

50 -

40 -

30

20 -

400-

300-

200-

10°- 90-

E1°-

70-

60

15 - 50 -

40

10 -

8 -

30-

100 - 90

80

70

60-

15 -

40-

10 - 3

8 -

6 - 20

4 -

• 30 -

20 -

50-

10 U.S. GPM 10

Ne/HR

att-M.Mag-astr ....esemnsownomemui - imimmommmumaimummiumnisa. immii■■■•••••MUDZSEb, 11111111111111111==•1111UNIENI ■IMEMMINIM11111111111011111111111/ IMMINIIIM•UUMOMIEW

20 30

6

4 10 1 61

5 10

CAPACITY

1500 RPM

20 30 40 50 70 100

4 4 ; 6 16 16 26

300 460 sOo

66, 80 io

700 1000 2000

10 280 360 400

lO- U.S. GPM 10

14HR

TOTAL HEAD

METERS FEET

600

150 - 500 -

400

100 - 300

80 -

60 - 200-

so -

40 -

TOTAL HEAD

METERS FEET

600-

280

4_

CAPACITY

TOTAL HEAD

METERS FEET

600

150 - 500-

400-

100 300

80 -

60 - 200

50 -

40 -

30 - MO-90

80-

70 20 -

60 -

15 - 50

40-

10 - 30

6 - 20-

5 -

4 -

3600 RPM

10-, U.S. GPM 10

14'HR

200

30 40

CAPACITY

300 480 5049

Eio 80 TO°

780 1000

150 260

s'o 2060

480

1.258.7 506

105

FAG 201.2 05

1"1141=1.1111 -44r

MPX Hydraulk Coverage

Hydraulic Coverage 50 Cycle Hydraulic Coverage 60 Cycle

' U.S. GPM 10 , 20 , 30 40 50 70 100 200 380 480 500 780 IOW 2000

R151 11R 3 4 5 6 6 16 16 20 30 40 66 80 180 150 280 303 480

CAPACITY

TOTAL HEAD

METERS FEET

600

150 - 500

400

100 - 300

80 -

50 - 200

50 -

40 -

30 - 100• 90

80-

70 - 20

60

15

40-

1800 RPM

10 30

8 -

6 - 2

5 -

4 -

Page 6: MPX - Flowserve• ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI) • Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2) MATERIALS

FRAME PUMP SIZE WEIGHT X Y

CLOSE-COUPLED

PI D El F I HI

lbs kg In mm In mm In nom IN mm In mo in nom In mm

80

1.5x1x5 80 36 5.51 140

3.15 80 0.71 18 4.41 112

2.75 70

2.75 70 0.59 (4) 15 (4) 2x1.25x5 90 41 3.15 80 1.25x.75x6 95 43

6.30 160 5.20 132 3.35 85 1.5x1x6J 105 48

100

1.5 x1 x6 120 55

6.50 165 4.00 102 0.75 19

5.25 133 3.00 76 N/A N/A 0.62 (2) 16 (2) 3 x1.5 x6 125 57 3 x2x6K 135 61 1.5 x1 x8 140 64 0.84 21

150

3x1.5x8 215 98 8.50 216

4.00 102

1.12 28 8.75 210

4.88 124 N/A N/A 0.62 16

3x2x8 225 102 9.50 241 4x3x8 230 105 11.00 279

4x3x8L 240 109 2x1x10 210 '95

8.50 216 3x1.5x10 225 102 3x2x10 235 107 9.50 241 4x3x10 245 111

11.00 279 1.00 25 4x3x1OL 250 114 6x4x10 310 141 13.50 343 1.50

38 10 254 3x1.5x13 270 123 10.50 267 1.12 3x2x13 275 125 11.50 292 4x3x13 305 139 12.50 318 1.5

FRAME MOTOR FIUME

WEIGHT AG BA A2 D2

MOTOR DIMEtISIONS

03 E2 F2 H2 K2 LP 02 P2

lbs kg in mm in mm In mem In mm In mm In mix I. nom In mm in nom In mei In mm I. mm

80 AND 100

56 30 14 9.56 242 2.56 65 6

'50 165 3.50 89

0.91 23 2.44 62 3.00 76 0.34 9

5.00 127 11.97 304 6.75 171 1.00 25 1431 35 16 11.18 284 2.88 73 1.75 44 2.75 70

4 00 102 6.00 152 14.00 356 6.78 172 0.50 13 145T 45 20 5.00 127 182T 80 36

14'06 357 3.62 92 8.50 216 4.50 114 0.75 19 3.75 95

4.50 114

0.41 10 6.25 159

15.00 381 9.25 235 0.38 10

184T 90 41 5.50 140 213T 115 52 15.94 405

4'50 114 9.62 244 5.25 133 0.00 0.00 4.25 108

6.44 164 10.81 275 0.47 12 215T 150 68 17.44 443 7.00 178 7.94 202 254T 270 122 20.56 522

5.00 '

127 11.38 289 6.25 159 1.00* 25* 5.00 127 8.25 210

0' 53

13 24 15.62 397 12.94 329 0.62 16

256T 310 141 22.31 567 10.00 254 19

1'5.2

0 5 286

1

150

182T 75 34 14 06

' 357 3.50 89 8.50 216 4.50 114 3.75 95 3.75 95

4.50 114

0.41 10 6.25 159

17'85 453

9.25 235 0.38 10 184T 105 48 5.50 140 2131 160 73 15.94 405

4'25 108 9.63 245 5.25 133 3.00 76 4.25 108

6.44 164 10.81 275 0.47 12 2151 175 80 17.4,4 443 7.00 178 7.93 201 2541 280 127 20.56 522

4'75 121

11.38 289 6.25 159 2.00 51 5.00 127 8.25 210

0 ' 53 13

9.50 241 18

'48 469 12.92 328 0.62 16

256T 300 136 22.31 567 10.00 254 11.25 286 284T 390 177 21.75 552

13.75 349 7.00 178 1.25 32 5.50 140 9.50 241 11.50 292

19 11 ' 485 14.19 360 1.00 25 2861 400 182 23.25 591 11.00 279 13.00 330 324T 560 255 24.69 627

5'25 133 15.75 400 8.00 203 0.25 6 6.25 159

10.50 267 0 ' 66 17

13.50 343 20

'10 511 16.38 416 1.50 38

326T 59v

268 26.19 665 12.00 305 15.00 381

* SPACER REQUIRED UNDER PUMP Footnotes: Dimensions are approximate. Not to be used In construction.

WEIGHT CP X Y D El

BARE PUMP

E2 F F I HI H2 U KEY SIZE AA AB FRAME PUMP SIZE

lbs kg In om in mm I. mm in mm In mm in mos in mm In num I. mo in •m in mm in mm I. mm in mm

80

t5x1x5 90 41

16.14 410 5.51 140

3.15 80 4.41 112 2.75 70

N/A N/A

N/A N/A 2.75 70

.625 16 .625 16

.875 22 .187x.094 5x2.5

3.66 93 3.46 89

2x1 25x5 95 43 4.33 110 378 96

125 x.75x6 100 45 6.30 160 5.20 132 3.35 85 4.09 104

1.5x1x6J 110 50 4.17 106 4.09 104

100

1.5x1x6 125 57

17.50 445 6.5 165

4.0 102

5.25 133 3.0 76 7.25 184

N/A N/A

4.75 121 4.75 121 3x1.5x6 130 59 5.0 127

3x2x66 140 64 5.5 140

1.5 x1 x8 145 66 6.0 152

6.0 152

150

3x1.5 x8 285 130

23.50 597

8.5 216

8.25 210

4.88 124 3.62 92 12.5 318 1.125 29 .25 x.125 6x3

3x2x8 290 132 9.5 214 6.5 165

4 x3 x8 305 139 11.0 279 70 178 4x3x8L 315 144 2x1x10 290 132

8.5 216 7.12 181

7.12 181 3x1.5x10 305 139 3x2x10 310 141 9.5 241 7.5 191

4x3x10 325 148 11.0 279 8.0 203

4x3x1OL 335 152 6x4x10 385 175 13.5 343

10.0 254

1035 273 8.0 203

3x1.5x13 350 159 10.5 267 8.5 216 838 213

3x2x13 355 161 11.5 292 9.0 229

4 x3 x13 380 173 12.5 318 10.0 254 8.50 216

FRAME ANSI BED SIZE

NEMA MOTOR FRAME

SIZES

HA HB HE

BEOPLATE

HE

DATA

HG RH HL HT C BEDHLATE WEIGHT

STEEL FIBERGLASS

in om in mm in nun in mm In mm in mm in nun In mm In nom lb kg lb kg

80

100

150

11 56-182 10 254 35 90 4.00 102 32.50 826 2.62 66

0.75 19.1

4.50 114 3.5 89

14.50 368 45 21 17 8

21 184-215 12 305 39 990 4.50 114 36.50 927 3.00 76 19.50 495 68 31 20 9

11 56-182 10 254 35 890 4.00 102 32.50 826 2.62 66 14.50 368 45 21 17 8

2T 184-215 12 305 39 990 4.50 114 36.50 927 3.00 76 19.50 495 68 31 20 9

2 254-286 15 391 52 1320 6.00 152 49.50 1257 3.38 86 27.00 686 147 67 37 17

1 143-215 12 305 45 1140 4.50 114 42.50 1080 3.00 76 19.50 495 80 36 26 12 2 254-286 15 391 52 1320 6.00 152 49.50 1257 3.38 86 27.00 686 147 67 37 17

3 324-365 18 467 58 1475 7.50 191 55.50 1410 4.00 102 1.00 25.4

34.00 864 205 93 48 22 4 404-405 18 467 60 1520 7.50 191 57.50 1461 4.00 102 38.50 998 215 97 - 5 444-445 22 559 68 1730 9.50 241 32.75 8319 3.00 76 44.50 1130 190 86 90 41

Page 7: MPX - Flowserve• ANSI/ASME B73.3 or ISO 2858 conformance • Close-coupled or frame mounted • Frame 80 (sub-ANSI) • Frame 100 (ANSI group 1) • Frame 150 (ANSI group 2) MATERIALS

Our To al Commit Customer Service

Ingersoll-Dresser Pumps' support services are focused on you, our customer.

Our parts supply and manufacturing facilities, located throughout the world, are geared to provide high quality OEM parts. Computerized quotation and order fulfillment programs provide instant pricing and order entry.

In addition to providing quality OEM parts, Ingersoll-Dresser Pumps offers expert repairs (both at our Pump Service Facilities and on-site), cost-effective upgrades and extensive aftermarket services that include:

• Complete design analyses of critical pumping systems

• Detailed pump condition assessment and quality repair

• Pump monitoring and predictive maintenance systems

• Complete parts inventory management programs

• Single point project management for expeditious handling of hard-ware purchases, repairs, upgrades, and technical support

All of these services and more are aimed at optimizing your pump and system performance.

We're customer focused — worldwkle!

Ingersoll•Dresser Pumps North America:

Latin America: Europe, Middle East, Africa:

Asia:

800.728.P1TMP

1.713.803.4400 44.1204.690.524 65.775.3003

Ingersoll-Rand • Pacific • Worthington • Pleuger • Scienco • Jeumont-Schneider Pumps

Nothing contained within this brochure is intended to extend any warranty or representation, expressed or implied, regarding the products described herein. Any such warranties or other terms or conditions of sale of products shall be in accordance with Ingersoll-Dresser Pumps standard terms and conditions of sale for such products, which are available upon request.

Form CPK1110B-051098-EN © 1998 Ingersoll-Dresser Pump Company Printed in USA