THIS IS A COMPREHENSIVE SITE FOR YOU TO MAKE YOUR OWN SELECTION OF ANY TYPE OF PULSATION DAMPER FOR ANY TYPE OF PUMP. THEN FIND THE CUT SHEET, THE DIMENSIONS AND THE COST.
BECAUSE WE OFFER YOU MORE, YOU NEED A SITE NAVIGATION TOOL
SO PLEASE PRINT A SITE MAP NOWPDF file
PRINT OUT
Text Layout of the sitemap Visual Webpage Layout of the site map
An ascii outline of where to go with html links:
1. PULSATION_DAMPING
SELECT_SMOOTH goto 2. to find the size you need
PULSE_DAMPER_TYPES goto A. to find the type you need
SELECT_PUMP_APLICAT goto B. to find your pump characteristics
--------------------------------2. RESIDUAL FLUCTUATION ALLOWED depends on your system, don't over specify.
goto FLOW_FLUCTUATION_OR_PRESSURE_PULSATION
goto 3. FIND_PUMP_F
goto 4. CALC_DAMPER_VOLUME
goto 5. SELECT_PIPE_METHOD
Start damper type selection goto A.
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A. FLOW THROUGH PRESSURE PULSATION INTERCEPTORS & FLOW FLUCTUATION SMOOTHERS
-------------------------------6. FLEXFLON_PTFE_DIAPHRAGM pulse damping with Virgin PTFE or MTFEgoto HP_WITH_HAZARD_ALERT "FLO" 2 layer diaphragm & 2ndry containment FLEXORBER HP
-OR- goto LOW_PRESSURE "SOG" 4x life at 50% cost, 8 fold better FLEXORBER LP
--------------------------------7. BAG_BLADR_TUBE elastomer part dampers EP, Buna N, Fluorogoto LIQUID_IN_BLADR "HUG" Liquid in the bladder N2 in the shell PIPEHUGGER
-OR- goto GAS_IN_BAG "PIG" N2 in the balloon liquid contacts shell PIPEGUARD
-OR- goto FLEX_TUBE "PUG" for slurries and above 2" suction sys. PUMPGUARD
--------------------------------8. NO_MOVING_PARTS "Solid State" pressure pulsation dampersgofor WAG_CER WAG
ceramic balls disperse the pressure transients WAVEGUARD CERAMIC
gofor WAG_HO WAG
multi orifice and multi chamber + delt P & liquid compressibility WAVEGUARD HELMHOLTZ
gofor CAG CAVGD
vertical column to provide head, with bubble collector tube CAVGUARD
----------------------------------------------------------------------------B. A DOZEN DIFFERENT PUMP SYSTEMS, different volumetric and frequency needs
--------------------------------goto Hz.
calculate the base cyclic forcing frequency
goto FLOW
calculate the flow fluctuation volume
goto Hz_Vol
determine whether Dampener will be Solid State or Volumetric
-----------------------------------------
THEN GO BELOW FOR EXAMPLES AND TYPICAL INSTALLATIONS,
OR GO back TO "A"
-----------------------------------------goto SUCTION_SYS for suction systems
Preventing cavitation and acceleration head loss, suction pulses
goto PRESUR_PULSE for discharge systems
Intercepting pressure pulsation waves (traveling at 3000 mph)
goto CENTRIFUGAL for resonance & shaft shake
Start up surge, shutdown back flow shock & hammer, resonant pulsation
goto VANE_GEAR_LOBE smooth flow but high Hz.
Small displacement per vane, tooth, lobe, but high frequency pulsation
goto MULTIPLEX_A614 Triplex, quintuplex, septuplex reciprocating pump acoustic pulsation
goto PACKD_PLUNGR accurate metering
The highest efficiency pumps least lost volume easiest to dampen
goto AODD_&_VLP LP flow fluctuation smoothing
The volume of the pulse with an AODD depends on how quickly the
return stroke begins, critical need is a large air supply
goto HOSE_PUMPS low pressure and large pipe
For sludge and slurry, catch the pulse spike from shoe hitting tube
on discharge back fill the void from shoe or roller lift off.
goto LP_DOSING_PTFE lost motion flow control
Solenoid, cam, back stroke volume limiting, the flow begins
with a squirt and the highest pressure pulse in the cycle
The Below Visual Layout is simply to show the availability offered. There are 4,024 links.
Therefore we highly recommend that you print yourself out a site mapPRINT OUT
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