Dover Wilden P8 Original Series Скачать руководство пользователя страница 25

WIL-10320-E-08

 23 

WILDEN PUMP & ENGINEERING, LLC

S e c t i o n   6

S U G G E S T E D   I N S T A L L A T I O N

Wilden pumps are designed to meet the performance 
requirements of even the most demanding pumping 
applications.  They have been designed and manufactured 
to the highest standards and are available in a variety of 
liquid path materials to meet your chemical resistance 
needs.  Refer to the performance section of this manual for 
an in-depth analysis of the performance characteristics of 
your pump.  Wilden offers the widest variety of elastomer 
options in the industry to satisfy temperature, chemical 
compatibility, abrasion resistance and flex concerns.
The suction pipe size should be at least the equivalent or 
larger than the diameter size of the suction inlet on your 
Wilden pump.  The suction hose must be non-collapsible, 
reinforced type as these pumps are capable of pulling a high 
vacuum. Discharge piping should also be the equivalent 
or larger than the diameter of the pump discharge which 
will help reduce friction losses.  It is critical that all fittings 
and connections are airtight or a reduction or loss of pump 
suction capability will result.
INSTALLATION: Months of careful planning, study, 
and selection efforts can result in unsatisfactory pump 
performance if installation details are left to chance.
Premature failure and long-term dissatisfaction can be 
avoided if reasonable care is exercised throughout the 
installation process.
LOCATION: Noise, safety and other logistical factors usually 
dictate where equipment will be situated on the production 
floor. Multiple installations with conflicting requirements 
can result in congestion of utility areas, leaving few choices 
for additional pumps.
Within the framework of these and other existing conditions, 
every pump should be located in such a way that the 
following key factors are balanced against each other to 
maximum advantage.
ACCESS: First of all, the location should be accessible. If 
it’s easy to reach the pump, maintenance personnel will 
have an easier time carrying out routine inspections and 
adjustments. Should major repairs become necessary, ease 
of access can play a key role in speeding the repair process 
and reducing total downtime.
AIR SUPPLY: Every pump location should have an air line 
large enough to supply the volume of air necessary to 
achieve the desired pumping rate. Use air pressure up to 
a maximum of 8.6 bar (125 psig) depending on pumping 
requirements.  Bleed port is to be left open unless being 
used with the submersible option.
For best results, the pumps should use a 5µ (micron) air 
filter, needle valve and regulator. The use of an air filter 
before the pump will ensure that the majority of any pipeline 
contaminants will be eliminated.
SOLENOID OPERATION: When operation is controlled by a 
solenoid valve in the air line, three-way valves should be 
used. This valve allows trapped air between the valve and 
the pump to bleed off which improves pump performance. 
Pumping volume can be estimated by counting the number 
of strokes per minute and then multiplying the figure by the 
displacement per stroke.

MUFFLER: Sound levels are reduced below OSHA 
specifications using the standard Wilden muffler. Other 
mufflers can be used to further reduce sound levels, but 
they usually reduce pump performance.
ELEVATION: Selecting a site that is well within the pump’s 
dynamic lift capability will assure that loss-of-prime issues will 
be eliminated. In addition, pump efficiency can be adversely 
affected if proper attention is not given to site location.
PIPING: Final determination of the pump site should not be 
made until the piping challenges of each possible location 
have been evaluated. The impact of current and future 
installations should be considered ahead of time to make 
sure that inadvertent restrictions are not created for any 
remaining sites.
The best choice possible will be a site involving the shortest 
and straightest hook-up of suction and discharge piping. 
Unnecessary elbows, bends, and fittings should be avoided. 
Pipe sizes should be selected to keep friction losses within 
practical limits. All piping should be supported independently 
of the pump. In addition, the piping should be aligned to 
avoid placing stress on the pump fittings.
Flexible hose can be installed to aid in absorbing the forces 
created by the natural reciprocating action of the pump. If the 
pump is to be bolted down to a solid location, a mounting 
pad placed between the pump and the foundation will assist 
in minimizing pump vibration. Flexible connections between 
the pump and rigid piping will also assist in minimizing 
pump vibration. If quick-closing valves are installed at any 
point in the discharge system, or if pulsation within a system 
becomes a problem, a surge suppressor (SD Equalizer

®

should be installed to protect the pump, piping and gauges 
from surges and water hammer.
If the pump is to be used in a self-priming application, make 
sure that all connections are airtight and that the suction lift is 
within the model’s ability. NOTE: Materials of construction and 
elastomer material have an effect on suction lift parameters. 
Please refer to the performance section for specifics.
When pumps are installed in applications involving flooded 
suction or suction head pressures, a gate valve should be 
installed in the suction line to permit closing of the line for 
pump service.
Pumps in service with a positive suction head are most efficient 
when inlet pressure is limited to 0.5–0.7 bar (7–10 psig). 
Premature diaphragm failure may occur if positive suction 
is 0.7 bar (10 psig) and higher.
SUBMERSIBLE APPLICATIONS: Pro-Flo X™ pumps can be 
used for submersible applications, when using the Pro-Flo 
X™ submersible option. 
NOTE: Pro-Flo

®

 and Accu-Flo™ pumps are not submersible.

ALL WILDEN PUMPS ARE CAPABLE OF PASSING SOLIDS.  
A STRAINER SHOULD BE USED ON THE PUMP INTAKE TO 
ENSURE THAT THE PUMP'S RATED SOLIDS CAPACITY IS 
NOT EXCEEDED.
CAUTION: DO NOT EXCEED 8.6 BAR (125 PSIG) AIR 
SUPPLY PRESSURE.

Содержание Wilden P8 Original Series

Страница 1: ...W h e r e I n n o v a t i o n F l o w s www wildenpump com P8 PX8 Original Series Metal Pump EOM Engineering Operation Maintenance WIL 10320 E 08 REPLACES WIL 10320 E 07 WIL 10320 E...

Страница 2: ...rating Principle 12 How to Use this EMS Curve 13 Performance Curves Rubber Fitted 16 TPE Fitted 17 Reduced Stroke PTFE Fitted 18 Full Stroke PTFE Fitted 19 Ultra Flex Fitted 20 Suction Lift Curves 21...

Страница 3: ...fluids and whenever discharge of static electricity is a hazard CAUTION Do not exceed 8 6 bar 125 psig air supply pressure CAUTION The process fluid and cleaning fluids must be chemically compatible...

Страница 4: ...TEEL WW CAST IRON CAST IRON AIR CHAMBERS A ALUMINUM C PTFE COATED N NICKEL PLATED S STAINLESS STEEL V HALAR COATED ALUMINUM P8 only CENTER BLOCK A ALUMINUM PX8 only N NICKEL PLATED PX8 only P POLYPROP...

Страница 5: ...eloped in the liquid chamber and manifold of the pump These same hydraulic forces lift the discharge valve ball off its seat while the opposite discharge valve ball is forced onto its seat forcing flu...

Страница 6: ...HAUST ALUMINUM BASE SCREEN MODEL 51 mm 2 FNPT LIQUID INLET C D E J H U T L K M N P V W 51 mm 2 FNPT LIQUID INLET R FOOTED BASE FOR STAINLESS STEEL ALLOY C MODELS 51 mm 2 FNPT LIQUID INLET S X B 64 mm...

Страница 7: ...8 26 3 F 58 2 3 G 64 2 5 H 351 13 8 J 48 1 9 K 348 13 7 L 559 22 0 M 315 12 4 N 257 10 1 P 231 9 1 R 257 10 1 S 15 0 6 T 64 2 5 U 51 2 0 V 284 11 2 W 58 2 3 X 279 11 0 Y 396 15 6 Z 15 DIA 0 6 DIA DIME...

Страница 8: ...ead of 2 8 bar 40 psig requires 5 5 bar 80 psig and 137 Nm3 h 85 scfm air consumption CAUTION Do not exceed 8 6 bar 125 psig air supply pressure P8 METAL TPE FITTED Flow rates indicated on chart were...

Страница 9: ...al 1 Max Flow Rate 496 lpm 131 gpm Max Size Solids 6 4 mm 1 4 1 Displacement per stroke was calculated at 4 8 bar 70 psig air inlet pressure against a 2 1 bar 30 psig head pressure Example To pump 238...

Страница 10: ...um 32 kg 70 lb 316 Stainless Steel 51 kg 112 lb Cast Iron 47 kg 104 lb Alloy C 52 kg 114 lb Air Inlet 13 mm 1 2 Inlet 51 mm 2 Outlet 51 mm 2 Suction Lift 4 9 m Dry 16 0 8 8 m Wet 29 0 Disp per Stroke...

Страница 11: ...es are calibrated for pumps operating at 305 m 1 000 above sea level This chart is meant to be a guide only There are many variables that can affect your pump s operating characteristics The number of...

Страница 12: ...S e c t i o n 5 A N O T E S...

Страница 13: ...PX8 M E T A L P X 8 P E R F O R M A N C E...

Страница 14: ...umption decreases more than the flow rate efficiency is improved and operating costs are reduced The Pro Flo X air distribution system with the revolutionary Efficiency Management System EMS offers fl...

Страница 15: ...this case 9 8 scfm Step 2 Determining flow and air X Factors Locate your discharge pressure 40 psig on the verti cal axis of the EMS curve Figure 2 Follow along the 2 8 bar 40 psig horizontal line unt...

Страница 16: ...sig discharge pressure After locat ing this point on the flow curve draw a verti cal line downward until reaching the bottom scale on the chart and identify the flow rate In our example it is 38 6 lpm...

Страница 17: ...fferent than the flow point plotted in example 2 1 Af ter estimating or interpolating this point on the curve draw a vertical line downward un til reaching the bottom scale on the chart and identify t...

Страница 18: ...the pump user to deter mine flow and air consumption at each EMS setting For any EMS setting and discharge pressure the X factor is used as a multiplier with the original values from the setting 4 pe...

Страница 19: ...The flow rate was reduced by 37 while the air consumption was reduced by 52 thus providing increased efficiency For a detailed example for how to set your EMS see beginning of performance curve sectio...

Страница 20: ...he pump user to deter mine flow and air consumption at each EMS setting For any EMS setting and discharge pressure the X factor is used as a multiplier with the original values from the setting 4 per...

Страница 21: ...n at each EMS setting For any EMS setting and discharge pressure the X factor is used as a multiplier with the original values from the setting 4 per formance curve to calculate the actual flow and ai...

Страница 22: ...rate was reduced by 41 while the air consumption was reduced by 54 thus providing increased efficiency For a detailed example for how to set your EMS see beginning of performance curve section CAUTIO...

Страница 23: ...a level This chart is meant to be a guide only There are many variables that can affect your pump s operating characteristics The number of intake and discharge elbows viscosity of pumping fluid eleva...

Страница 24: ...N O T E S...

Страница 25: ...tween the valve and the pump to bleed off which improves pump performance Pumping volume can be estimated by counting the number of strokes per minute and then multiplying the figure by the displaceme...

Страница 26: ...e pump from operating in an emergency situation simply close the shut off valve user supplied installed in the air supply line A properly functioning valve will stop the air supply to the pump therefo...

Страница 27: ...maintenance problems and unscheduled downtime In addition accurate records make it possible to identify pumps that are poorly suited to their applications Pump will not run or runs slowly 1 Ensure tha...

Страница 28: ...ny fluid to flow into a suitable container Be aware of any hazardous effects of contact with your process fluid NOTE The model photographed for these instructions incorporates rubber diaphragms balls...

Страница 29: ...alve balls and seats Inspect ball cage area of liquid chamber for excessive wear or damage Step 7 Remove one 1 set of large clamp bands which secure one 1 liquid chamber to the center section Step 8 L...

Страница 30: ...id chamber Inspect diaphragm assembly and shaft for signs of wear or chemical attack Replace all worn parts with genuine Wilden parts for reliable performance Step 10 To remove diaphragm assembly from...

Страница 31: ...r process fluid The Wilden P8 metal pump utilizes a revolutionary Pro Flo air distribution system The PX8 metal pump utilizes the Pro Flo X air distribution system Proprietary composite seals reduce t...

Страница 32: ...ap ring on both sides of center section with snap ring pliers A I R V A L V E C E N T E R S E C T I O N D I S A S S E M B L Y Step 7 Remove air chamber bolts with 1 4 hex head wrench Step 8 Remove pil...

Страница 33: ...fit by hand Applies to Pro Flo ONLY A I R V A L V E C E N T E R S E C T I O N D I S A S S E M B L Y A Step 2 Next install an optional submersible air valve gasket 04 2621 52 The submersible air valve...

Страница 34: ...4 6 N m 55 ft lb Small Clamp Bands 6 6 N m 58 in lb Large Clamp Bands Rubber Fitted 47 5 N m 35 ft lb Large Clamp Bands PTFE Fitted 47 5 N m 35 ft lb SHAFT SEAL INSTALLATION PRE INSTALLATION Once all...

Страница 35: ...lightlyonthetapetoensure that the adhesive holds in place during assembly Do not stretch the tape during placement in the center of diaphragm bead groove Step 3 The end of the tape should overlap appr...

Страница 36: ...8 S e c t i o n 8 E X P L O D E D V I E W P A R T S L I S T I N G P8 METAL F u l l S t r o k e D i a p h r a g m F i t t e d E X P L O D E D V I E W ALL CIRCLED PART IDENTIFIERS ARE INCLUDED IN REPAIR...

Страница 37: ...08 3651 01 18 Screw HSFHS 3 8 16 x 1 8 71 6250 08 71 6250 08 71 6250 08 71 6250 08 19 Retaining Ring 2 04 3890 03 04 3890 03 04 3890 03 04 3890 03 20 Shaft Pro Flo 1 08 3812 03 08 3812 03 08 3812 03...

Страница 38: ...E 08 E X P L O D E D V I E W P A R T S L I S T I N G P8 METAL R e d u c e d S t r o k e D i a p h r a g m F i t t e d E X P L O D E D V I E W ULTRA FLEX ALL CIRCLED PART IDENTIFIERS ARE INCLUDED IN R...

Страница 39: ...1 03 08 3841 03 N A 21 Stud 2 08 6152 08 08 6152 08 08 6152 08 08 6152 08 Stud Ultra Flex 2 08 6150 08 08 6150 08 08 6150 08 N A 22 Inner Piston 2 08 3750 01 08 3750 01 08 3750 01 08 3750 01 Inner Pis...

Страница 40: ...ENGINEERING LLC 38 WIL 10320 E 08 E X P L O D E D V I E W P A R T S L I S T I N G P8 METAL SANIFLO 1935 2004 EC E X P L O D E D V I E W FULL STROKE IPD ULTRA FLEX REDUCED STROKE PTFE FULL STROKE PTFE...

Страница 41: ...ssembly 4 08 7100 03 70 29 RHSN Bolt Small Clamp Band 5 16 18 x 1 1 2 8 08 6050 03 30 Wing Nut Small Clamp Band 5 16 18 8 08 6661 10 31 Washer Brass Flat 340 x 750 x 063 8 08 6700 07 70 VALVE BALLS VA...

Страница 42: ...0320 E 08 PX8 METAL F u l l S t r o k e D i a p h r a g m F i t t e d E X P L O D E D V I E W E X P L O D E D V I E W P A R T S L I S T I N G FULL STROKE PTFE FITTED ALL CIRCLED PART IDENTIFIERS ARE I...

Страница 43: ...90 03 04 3890 03 16 Shaft 1 08 3812 03 08 3812 03 08 3812 03 08 3812 03 08 3812 03 08 3812 03 17 Piston Inner 2 08 3700 01 08 3700 01 08 3700 01 08 3700 01 08 3700 03 08 3700 03 18 Diaphragm 2 08 1010...

Страница 44: ...8 PX8 METAL R e d u c e d S t r o k e D i a p h r a g m F i t t e d E X P L O D E D V I E W E X P L O D E D V I E W P A R T S L I S T I N G ULTRA FLEX FITTED ALL CIRCLED PART IDENTIFIERS ARE INCLUDED...

Страница 45: ...Ultra Flex 2 08 3761 01 08 3761 01 08 3761 01 N A 08 3761 01 N A 19 Diaphragm Back Up3 2 20 Diaphragm 2 08 1010 55 08 1010 55 08 1010 55 08 1010 55 08 1010 55 08 1010 55 Ultra Flex 2 21 Piston Outer...

Страница 46: ...4 12 13 3 2 8 6 5 1 7 36 38 40 35 37 36 38 39 34 37 38 36 35 34 37 WILDEN PUMP ENGINEERING LLC 44 WIL 10320 E 08 E X P L O D E D V I E W P A R T S L I S T I N G P8X METAL SANIFLO 1935 2004 EC E X P L...

Страница 47: ...apping 1 04 6345 08 04 6345 08 04 6345 08 19 Muffler Metal 1 MNPT 1 15 3510 99R 15 3510 99R 15 3513 99R WETTED PATH COMPONENTS 20 Liquid Chamber 2 08 5000 03P 08 5000 03P 08 5000 03P 21 Manifold Disch...

Страница 48: ...TS 34 Shaft Pro Flo 1 08 3840 09 08 3840 09 08 3840 09 35 Stud Shaft 1 2 20 x 2 1 8 1 08 6152 08 08 6152 08 08 6152 08 36 Piston Inner 2 08 3750 01 08 3750 01 08 3752 03 37 Diaphragm Primary Pkg 2 1 3...

Страница 49: ...ra Flex information Backup diaphragms for use with PTFE diaphragms only ELASTOMER KITS OPTIONS PRO FLO DESCRIPTION NEOPRENE BUNA N VITON EPDM Pro Flo Original Metal 08 9554 51 08 9554 52 08 9554 53 08...

Страница 50: ...V AA NN PP SS BNU EPU FBS FES FSS FWS FWL TEU TSU TSS TWS ZSS FS FW TF FS FW STF 0070 0075 0120 E 76 mm 3 FDA Pro Flo X Models PX XPX 15 SS A C N S AA SS PP BNU EPU FSS FWS TEU TSU TSS TWS ZSS FS FW T...

Страница 51: ...omes first Failure due to normal wear misapplication or abuse is of course excluded from this warranty Since the use of Wilden pumps and parts is beyond our control we cannot guarantee the suitability...

Страница 52: ...UBLE DIAPHRAGM PUMPS almatec de AUTOMATIK PELLETIZING SYSTEMS maag com BLACKMER VANE PUMPS COMPRESSORS blackmer com FLUID DYNAMICS POLYMER BLENDING SYSTEMS fluiddynamics1 com GRISWOLD CENTRIFUGAL PUMP...

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