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PX8 P L A S T I C PX8 PLASTIC PERFORMANCE WIL-10131-T-01

PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

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Page 1: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

PX8 P L A S T I C

P X 8 P L A S T I C P E R F O R M A N C E

WIL-10131-T-01

Page 2: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

WILDEN PUMP & ENGINEERING, LLC 2 PX8 Plastic Performance

The Pro-Flo X™ air distribution system with the

revolutionary Effi ciency Management System (EMS)

offers fl exibility never before seen in the world of

AODD pumps. The

patent-pending EMS

is simple and easy

to use. With the

turn of an integrated

control dial, the operator can select the optimal

balance of fl ow and effi ciency that best meets the

application needs. Pro-Flo X™ provides higher

performance, lower

operational costs

and fl exibility that

exceeds previous

industry standards.

Pro-Flo XTM Operating Principal

S e c t i o n 5 B

Turning the dial changes the relationship between air inlet and exhaust porting.

Each dial setting represents an entirely different fl ow curve

Pro-Flo X™ pumps are shipped from the factory on setting 4, which is the highest fl ow rate setting possible

Moving the dial from setting 4 causes a decrease in fl ow and an even greater decrease in air consumption.

When the air consumption decreases more than the fl ow rate, effi ciency is improved and operating costs are reduced.

$$$

AIR CONSUMPTION

Page 3: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

PX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC

SETTING 4 PERFORMANCE CURVE EMS CURVE

H O W T O U S E T H I S E M S C U R V E

8.2 GPMExample data point = Example data point =

Figure 1 Figure 20.580.48

fl ow multiplier

air multiplier

This is an example showing how to determine fl ow rate and air consumption for your Pro-Flo X™ pump using the Effi cien-cy Management System (EMS) curve and the performance curve. For this example we will be using 4.1 bar (60 psig) inlet air pressure and 2.8 bar (40 psig) discharge pressure and EMS setting 2.

Step 1: Identifying performance at setting 4. Locate the curve that represents the fl ow rate of the pump with 4.1 bar (60 psig) air inlet pressure. Mark the point where this curve crosses the horizontal line representing 2.8 bar (40 psig) discharge pressure. (Figure 1). After locating your performance point on the fl ow curve, draw a vertical line downward until reaching the bottom scale on the chart. Identify the fl ow rate (in this case, 8.2 gpm). Observe location of performance point relative to air consump-tion curves and approximate air consumption value (in 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 until intersecting both fl ow and air curves for your desired EMS setting (in this case, setting 2). Mark the points where the EMS curves inter-sect the horizontal discharge pressure line. After locating your EMS points on the EMS

curve, draw vertical lines downward until reaching the bottom scale on the chart. This identifi es the fl ow X Factor (in this case, 0.58) and air X Factor (in this case, 0.48).

Step 3: Calculating performance for specific EMS

setting. Multiply the fl ow rate (8.2 gpm) obtained in Step 1 by the fl ow X Factor multi-plier (0.58) in Step 2 to determine the fl ow rate at EMS setting 2. Multiply the air consump-tion (9.8 scfm) obtained in Step 1 by the air X Factor multiplier (0.48) in Step 2 to deter-mine the air consumption at EMS setting 2 (Figure 3).

Figure 3

The fl ow rate and air consumption at Setting 2 are found to be 18.2 lpm (4.8 gpm) and 7.9 Nm3/h (4.7 scfm) respectively.

.58

4.8 gpm

(Flow X Factor setting 2)

(Flow rate for setting 2)

(air consumption for setting 4)(Air X Factor setting 2)

(air consumption for setting 2)

9.8 scfm

.48

4.7 scfm

8.2 gpm (fl ow rate for Setting 4)

Example 1

Page 4: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

WILDEN PUMP & ENGINEERING, LLC 4 PX8 Plastic Performance

EMS CURVESETTING 4 PERFORMANCE CURVE

H O W T O U S E T H I S E M S C U R V E

This is an example showing how to determine the inlet air pressure and the EMS setting for your Pro-Flo X™ pump to optimize the pump for a specifi c application. For this exam-ple we will be using an application requirement of 18.9 lpm (5 gpm) fl ow rate against 2.8 bar (40 psig) discharge pressure. This example will illustrate how to calculate the air consump-tion that could be expected at this operational point.

Step 1: Establish inlet air pressure. Higher air pres-sures will typically allow the pump to run more effi ciently, however, available plant air pressure can vary greatly. If an operating pressure of 6.9 bar (100 psig) is chosen when plant air frequently dips to 6.2 bar (90 psig) pump performance will vary. Choose an oper-ating pressure that is within your compressed air system's capabilities. For this example we will choose 4.1 bar (60 psig).

Step 2: Determine performance point at setting 4. For this example an inlet air pressure of 4.1 bar (60 psig) inlet air pressure has been chosen. Locate the curve that represents the perfor-mance of the pump with 4.1 bar (60 psig) inlet air pressure. Mark the point where this curve crosses the horizontal line representing 2.8 bar (40 psig) discharge pressure. After locat-ing this point on the fl ow curve, draw a verti-cal line downward until reaching the bottom scale on the chart and identify the fl ow rate.

In our example it is 38.6 lpm (10.2 gpm). This is the setting 4 fl ow rate. Observe the loca-tion of the performance point relative to air consumption curves and approximate air consumption value. In our example setting 4 air consumption is 24 Nm3/h (14 scfm). See fi gure 4.

Step 3: Determine flow X Factor. Divide the required fl ow rate 18.9 lpm (5 gpm) by the setting 4 fl ow rate 38.6 lpm (10.2 gpm) to determine the fl ow X Factor for the application.

Step 4: Determine EMS setting from the flow

X Factor. Plot the point representing the fl ow X Factor (0.49) and the application discharge pressure 2.8 bar (40 psig) on the EMS curve. This is done by following the horizontal 2.8 bar (40 psig) psig discharge pressure line until it crosses the vertical 0.49 X Factor line. Typi-cally, this point lies between two fl ow EMS setting curves (in this case, the point lies be-tween the fl ow curves for EMS setting 1 and 2). Observe the location of the point relative to the two curves it lies between and approxi-mate the EMS setting (fi gure 5). For more pre-cise results you can mathematically interpo-late between the two curves to determine the optimal EMS setting.

5 gpm / 10.2 gpm = 0.49 (flow X Factor)

DETERMINE EMS SETTING

For this example the EMS setting is 1.8.

Figure 4

Example data point = 10.2 gpm fl ow multiplier

Figure 5

EMS FlowSettings 1 & 2

Example 2.1

0.49

Page 5: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

PX8 Plastic Performance 5 WILDEN PUMP & ENGINEERING, LLC

EMS CURVESETTING 4 PERFORMANCE CURVE

H O W T O U S E T H I S E M S C U R V E

Example 2.2

Determine air consumption at a specific

EMS setting.

Step 1: Determine air X Factor. In order to determine the air X Factor, identify the two air EMS set-ting curves closest to the EMS setting estab-lished in example 2.1 (in this case, the point lies between the air curves for EMS setting 1 and 2). The point representing your EMS setting (1.8) must be approximated and plotted on the EMS curve along the horizontal line represent-ing your discharge pressure (in this case, 40 psig). This air point is different than the fl ow point plotted in example 2.1. After estimating (or interpolating) this point on the curve, draw a vertical line downward until reaching the bottom scale on the chart and identify the air X Factor (fi gure 7).

Step 2: Determine air consumption. Multiply your setting 4 air consumption (14 scfm) value by the air X Factor obtained above (0.40) to deter-mine your actual air consumption.

In summary, for an application requiring 18.9 lpm (5 gpm) against 2.8 bar (40 psig) discharge pressure, the pump inlet air pressure should be set to 4.1 bar (60 psig) and the EMS dial should be set to 1.8. The pump would then consume 9.5 Nm3/h (5.6 scfm) of compressed air.

Figure 6

0.40 air multiplierExample data point = Figure 7

10.2 gpmExample data point =

For this example the air X Factor is 0.40

14 scfm x 0.40 = 5.6 SCFM

EMS AirSettings 1 & 2

Page 6: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

WILDEN PUMP & ENGINEERING, LLC 6 PX8 Plastic Performance

SE

TT

ING

4 P

ER

FO

RM

AN

CE

CU

RV

EE

MS

CU

RV

E

P E R F O R M A N C EP

X8

PLA

ST

IC R

UB

BE

R-F

ITT

ED

The

Effi c

ienc

y M

anag

emen

t Sys

tem

(EM

S) c

an b

e us

ed to

opt

imize

the

perfo

rman

ce o

f you

r Wild

en p

ump

for

spec

ifi c

appl

icat

ions

. Th

e pu

mp

is d

eliv

ered

with

the

EMS

adju

sted

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

EX

AM

PLE

A PX

8 po

lypr

opyl

ene,

rubb

er-fi

tted

pum

p op

erat

ing

at E

MS

setti

ng

4, a

chie

ved

a fl o

w ra

te o

f 231

lpm

(61

gpm

) usi

ng 7

5 N

m3 /h

(44

scfm

) of

air

whe

n ru

n at

4.1

bar

(60

psig

) air

inle

t pre

ssur

e an

d 2.

8 ba

r (40

ps

ig) d

isch

arge

pre

ssur

e (S

ee d

ot o

n pe

rform

ance

cur

ve).

The

end

user

did

not

requ

ire th

at m

uch

fl ow

and

wan

ted

to re

duce

ai

r co

nsum

ptio

n at

his

faci

lity.

He

det

erm

ined

that

EM

S se

tting

2

wou

ld m

eet h

is n

eeds

. At

2.8

bar

(40

psig

) dis

char

ge p

ress

ure

and

EMS

setti

ng 2

, the

fl ow

“X

fact

or”

is 0

.69

and

the

air

“X fa

ctor

” is

0.

53 (s

ee d

ots

on E

MS

curv

e).

Mul

tiply

ing

the

orig

inal

set

ting

4 va

lues

by

the

“X fa

ctor

s” p

rovi

des

the

setti

ng 2

fl ow

rate

of 1

59 lp

m (4

2 gp

m) a

nd a

n ai

r con

sum

ptio

n of

40

Nm

3 /h (

23 s

cfm

). T

he fl

ow r

ate

was

red

uced

by

31%

whi

le

the

air c

onsu

mpt

ion

was

redu

ced

by 4

7%, t

hus

prov

idin

g in

crea

sed

effi c

ienc

y.

For a

det

aile

d ex

ampl

e fo

r how

to s

et y

our E

MS,

see

beg

inni

ng o

f pe

rfor

man

ce c

urve

sec

tion.

Caut

ion:

Do

not e

xcee

d 8.

6 ba

r (12

5 ps

ig) a

ir s

uppl

y pr

essu

re.

TE

CH

NIC

AL

DA

TA

Heig

ht .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.770

mm

(30.

3”)

Wid

th. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.490

mm

(19.

3”)

Dept

h. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.356

mm

(14.

0”)

Ship

Wei

ght .

. . .

. . .

. Po

lypr

opyl

ene

34 k

g (7

5 lb

s.)

Air I

nlet

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 1

9 m

m (3

/4”)

Inle

t . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 5

1 m

m (2

”)

Outle

t. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

51

mm

(2”)

Suct

ion

Lift

. . .

. . .

. . .

. . .

. . .

. . .

. . .6

.9 m

Dry

(22.

7’)

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

9.3

m W

et (3

0.6’

)Di

sp. P

er S

troke

. . .

. . .

. . .

. . .

. . .

. . 2

.9 l

(0.7

7 ga

l.)1

Max

. Flo

w R

ate

. . .

. . .

. . .

. . .

. . .5

94 lp

m (1

57 g

pm)

Max

. Size

Sol

ids

. . .

. . .

. . .

. . .

. . .

. . .

6.4

mm

(1/4

”)

1 Disp

lace

men

t per

stro

ke w

as c

alcu

late

d at

4.8 b

ar (7

0 psig

) ai

r inl

et p

ress

ure

agai

nst a

2.1 b

ar (3

0 psig

)hea

d pr

essu

re.

The

Effi c

ienc

y M

anag

emen

t Sy

stem

(EM

S)

can

be u

sed

to o

ptim

ize t

he p

erfo

rman

ce o

f yo

ur W

ilden

pum

p fo

r sp

ecifi

c ap

plic

atio

ns.

The

pum

p is

del

iver

ed w

ith th

e EM

S ad

just

ed

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

The

EMS

curv

e al

low

s th

e pu

mp

user

to

dete

rmin

e fl o

w

and

air

cons

umpt

ion

at

each

EM

S se

tting

. Fo

r an

y EM

S se

tting

and

di

scha

rge

pres

sure

, th

e “X

fac

tor”

is

used

as

a m

ultip

lier

with

the

orig

inal

val

ues

from

th

e se

tting

4 p

erfo

rman

ce c

urve

to c

alcu

late

th

e ac

tual

fl o

w a

nd a

ir co

nsum

ptio

n va

lues

fo

r th

at s

peci

fi c E

MS

setti

ng.

Not

e: y

ou c

an

inte

rpol

ate

betw

een

the

setti

ng c

urve

s fo

r op

erat

ion

at in

term

edia

te E

MS

setti

ngs.

Page 7: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

PX8 Plastic Performance 7 WILDEN PUMP & ENGINEERING, LLC

SE

TT

ING

4 P

ER

FO

RM

AN

CE

CU

RV

EE

MS

CU

RV

E

P E R F O R M A N C EP

X8

PLA

ST

IC T

PE

-FIT

TE

D

The

Effi c

ienc

y M

anag

emen

t Sys

tem

(EM

S) c

an b

e us

ed to

opt

imize

the

perfo

rman

ce o

f you

r Wild

en p

ump

for

spec

ifi c

appl

icat

ions

. Th

e pu

mp

is d

eliv

ered

with

the

EMS

adju

sted

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

EX

AM

PLE

A PX

8 po

lypr

opyl

ene,

TPE

-fi tte

d pu

mp

oper

atin

g at

EM

S se

tting

4,

achi

eved

a fl

ow ra

te o

f 291

lpm

(77

gpm

) usi

ng 8

2 N

m3 /h

(48

scfm

) of

air

whe

n ru

n at

4.1

bar

(60

psig

) air

inle

t pre

ssur

e an

d 2.

1 ba

r (30

ps

ig) d

isch

arge

pre

ssur

e (S

ee d

ot o

n pe

rform

ance

cur

ve).

The

end

user

did

not

requ

ire th

at m

uch

fl ow

and

wan

ted

to re

duce

ai

r co

nsum

ptio

n at

his

faci

lity.

He

det

erm

ined

that

EM

S se

tting

3

wou

ld m

eet h

is n

eeds

. At

2.1

bar

(30

psig

) dis

char

ge p

ress

ure

and

EMS

setti

ng 3

, the

fl ow

“X

fact

or”

is 0

.90

and

the

air

“X fa

ctor

” is

0.

81 (s

ee d

ots

on E

MS

curv

e).

Mul

tiply

ing

the

orig

inal

set

ting

4 va

lues

by

the

“X fa

ctor

s” p

rovi

des

the

setti

ng 3

fl ow

rate

of 2

62 lp

m (6

9 gp

m) a

nd a

n ai

r con

sum

ptio

n of

66

Nm

3 /h (

39 s

cfm

). T

he fl

ow r

ate

was

red

uced

by

10%

whi

le

the

air c

onsu

mpt

ion

was

redu

ced

by 1

9%, t

hus

prov

idin

g in

crea

sed

effi c

ienc

y.

For a

det

aile

d ex

ampl

e fo

r how

to s

et y

our E

MS,

see

beg

inni

ng o

f pe

rfor

man

ce c

urve

sec

tion.

Caut

ion:

Do

not e

xcee

d 8.

6 ba

r (12

5 ps

ig) a

ir s

uppl

y pr

essu

re.

TE

CH

NIC

AL

DA

TA

Heig

ht .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.770

mm

(30.

3”)

Wid

th. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.490

mm

(19.

3”)

Dept

h. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.356

mm

(14.

0”)

Ship

Wei

ght .

. . .

. . .

. Po

lypr

opyl

ene

34 k

g (7

5 lb

s.)

Air I

nlet

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 1

9 m

m (3

/4”)

Inle

t . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 5

1 m

m (2

”)

Outle

t. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

51

mm

(2”)

Suct

ion

Lift

. . .

. . .

. . .

. . .

. . .

. . .

. . .6

.6 m

Dry

(21.

6’)

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

9.2

m W

et (3

0.1’

)Di

sp. P

er S

troke

. . .

. . .

. . .

. . .

. . .

. . 3

.0 l

(0.7

9 ga

l.)1

Max

. Flo

w R

ate

. . .

. . .

. . .

. . .

. . .6

06 lp

m (1

60 g

pm)

Max

. Size

Sol

ids

. . .

. . .

. . .

. . .

. . .

. . .

6.4

mm

(1/4

”)

1 Disp

lace

men

t per

stro

ke w

as c

alcu

late

d at

4.8 b

ar (7

0 psig

) ai

r inl

et p

ress

ure

agai

nst a

2.1 b

ar (3

0 psig

)hea

d pr

essu

re.

The

Effi c

ienc

y M

anag

emen

t Sy

stem

(EM

S)

can

be u

sed

to o

ptim

ize t

he p

erfo

rman

ce o

f yo

ur W

ilden

pum

p fo

r sp

ecifi

c ap

plic

atio

ns.

The

pum

p is

del

iver

ed w

ith th

e EM

S ad

just

ed

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

The

EMS

curv

e al

low

s th

e pu

mp

user

to

dete

rmin

e fl o

w

and

air

cons

umpt

ion

at

each

EM

S se

tting

. Fo

r an

y EM

S se

tting

and

di

scha

rge

pres

sure

, th

e “X

fac

tor”

is

used

as

a m

ultip

lier

with

the

orig

inal

val

ues

from

th

e se

tting

4 p

erfo

rman

ce c

urve

to c

alcu

late

th

e ac

tual

fl o

w a

nd a

ir co

nsum

ptio

n va

lues

fo

r th

at s

peci

fi c E

MS

setti

ng.

Not

e: y

ou c

an

inte

rpol

ate

betw

een

the

setti

ng c

urve

s fo

r op

erat

ion

at in

term

edia

te E

MS

setti

ngs.

Page 8: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

WILDEN PUMP & ENGINEERING, LLC 8 PX8 Plastic Performance

SE

TT

ING

4 P

ER

FO

RM

AN

CE

CU

RV

EE

MS

CU

RV

E

P E R F O R M A N C EP

X8

PLA

ST

IC P

TFE

-FIT

TE

D

The

Effi c

ienc

y M

anag

emen

t Sys

tem

(EM

S) c

an b

e us

ed to

opt

imize

the

perfo

rman

ce o

f you

r Wild

en p

ump

for

spec

ifi c

appl

icat

ions

. Th

e pu

mp

is d

eliv

ered

with

the

EMS

adju

sted

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

EX

AM

PLE

A PX

8 po

lypr

opyl

ene,

PTF

E-fi t

ted

pum

p op

erat

ing

at E

MS

setti

ng 4

, ac

hiev

ed a

fl ow

rate

of 4

09 lp

m (1

08 g

pm) u

sing

141

Nm

3 /h (8

3 sc

fm)

of a

ir w

hen

run

at 5

.5 b

ar (8

0 ps

ig) a

ir in

let p

ress

ure

and

0.7

bar (

10

psig

) dis

char

ge p

ress

ure

(See

dot

on

perfo

rman

ce c

urve

).

The

end

user

did

not

requ

ire th

at m

uch

fl ow

and

wan

ted

to re

duce

ai

r co

nsum

ptio

n at

his

faci

lity.

He

det

erm

ined

that

EM

S se

tting

1

wou

ld m

eet h

is n

eeds

. At

0.7

bar

(10

psig

) dis

char

ge p

ress

ure

and

EMS

setti

ng 1

, the

fl ow

“X

fact

or”

is 0

.35

and

the

air

“X fa

ctor

” is

0.

17 (s

ee d

ots

on E

MS

curv

e).

Mul

tiply

ing

the

orig

inal

set

ting

4 va

lues

by

the

“X fa

ctor

s” p

rovi

des

the

setti

ng 1

fl ow

rate

of 1

43 lp

m (3

8 gp

m) a

nd a

n ai

r con

sum

ptio

n of

24

Nm

3 /h (

14 s

cfm

). T

he fl

ow r

ate

was

red

uced

by

65%

whi

le

the

air c

onsu

mpt

ion

was

redu

ced

by 8

3%, t

hus

prov

idin

g in

crea

sed

effi c

ienc

y

For a

det

aile

d ex

ampl

e fo

r how

to s

et y

our E

MS,

see

beg

inni

ng o

f pe

rfor

man

ce c

urve

sec

tion.

Caut

ion:

Do

not e

xcee

d 8.

6 ba

r (12

5 ps

ig) a

ir s

uppl

y pr

essu

re.

TE

CH

NIC

AL

DA

TA

Heig

ht .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.770

mm

(30.

3”)

Wid

th. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.490

mm

(19.

3”)

Dept

h. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.356

mm

(14.

0”)

Ship

Wei

ght .

. . .

. . .

. Po

lypr

opyl

ene

34 k

g (7

5 lb

s.)

Air I

nlet

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 1

9 m

m (3

/4”)

Inle

t . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 5

1 m

m (2

”)

Outle

t. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

51

mm

(2”)

Suct

ion

Lift

. . .

. . .

. . .

. . .

. . .

. . .

. . .3

.8 m

Dry

(12.

5’)

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

9.2

m W

et (3

0.1’

)Di

sp. P

er S

troke

. . .

. . .

. . .

. . .

. . .

. . 1

.8 l

(0.4

7 ga

l.)1

Max

. Flo

w R

ate

. . .

. . .

. . .

. . .

. . .5

03 lp

m (1

33 g

pm)

Max

. Size

Sol

ids

. . .

. . .

. . .

. . .

. . .

. . .

6.4

mm

(1/4

”)

1 Disp

lace

men

t per

stro

ke w

as c

alcu

late

d at

4.8 b

ar (7

0 psig

) ai

r inl

et p

ress

ure

agai

nst a

2.1 b

ar (3

0 psig

)hea

d pr

essu

re.

The

Effi c

ienc

y M

anag

emen

t Sy

stem

(EM

S)

can

be u

sed

to o

ptim

ize t

he p

erfo

rman

ce o

f yo

ur W

ilden

pum

p fo

r sp

ecifi

c ap

plic

atio

ns.

The

pum

p is

del

iver

ed w

ith th

e EM

S ad

just

ed

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

The

EMS

curv

e al

low

s th

e pu

mp

user

to

dete

rmin

e fl o

w

and

air

cons

umpt

ion

at

each

EM

S se

tting

. Fo

r an

y EM

S se

tting

and

di

scha

rge

pres

sure

, th

e “X

fac

tor”

is

used

as

a m

ultip

lier

with

the

orig

inal

val

ues

from

th

e se

tting

4 p

erfo

rman

ce c

urve

to c

alcu

late

th

e ac

tual

fl o

w a

nd a

ir co

nsum

ptio

n va

lues

fo

r th

at s

peci

fi c E

MS

setti

ng.

Not

e: y

ou c

an

inte

rpol

ate

betw

een

the

setti

ng c

urve

s fo

r op

erat

ion

at in

term

edia

te E

MS

setti

ngs.

Page 9: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

PX8 Plastic Performance 9 WILDEN PUMP & ENGINEERING, LLC

SE

TT

ING

4 P

ER

FO

RM

AN

CE

CU

RV

EE

MS

CU

RV

E

P E R F O R M A N C EP

X8

PLA

ST

IC U

LTR

A-F

LEX

TM

FIT

TE

D

The

Effi c

ienc

y M

anag

emen

t Sys

tem

(EM

S) c

an b

e us

ed to

opt

imize

the

perfo

rman

ce o

f you

r Wild

en p

ump

for

spec

ifi c

appl

icat

ions

. Th

e pu

mp

is d

eliv

ered

with

the

EMS

adju

sted

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

EX

AM

PLE

A PX

8 po

lypr

opyl

ene,

Ultr

a-Fl

ex-fi

tted

pum

p op

erat

ing

at E

MS

setti

ng 4

, ach

ieve

d a

fl ow

rate

of 3

07 lp

m (8

1 gp

m) u

sing

99

Nm

3 /h

(58

scfm

) of a

ir w

hen

run

at 4

.1 b

ar (6

0 ps

ig) a

ir in

let p

ress

ure

and

1.4

bar (

20 p

sig)

dis

char

ge p

ress

ure

(See

dot

on

perfo

rman

ce c

urve

).

The

end

user

did

not

requ

ire th

at m

uch

fl ow

and

wan

ted

to re

duce

ai

r co

nsum

ptio

n at

his

faci

lity.

He

det

erm

ined

that

EM

S se

tting

2

wou

ld m

eet h

is n

eeds

. At

1.4

bar

(20

psig

) dis

char

ge p

ress

ure

and

EMS

setti

ng 2

, the

fl ow

“X

fact

or”

is 0

.74

and

the

air

“X fa

ctor

” is

0.

54 (s

ee d

ots

on E

MS

curv

e).

Mul

tiply

ing

the

orig

inal

set

ting

4 va

lues

by

the

“X fa

ctor

s” p

rovi

des

the

setti

ng 2

fl ow

rate

of 2

27 lp

m (6

0 gp

m) a

nd a

n ai

r con

sum

ptio

n of

53

Nm

3 /h (

31 s

cfm

). T

he fl

ow r

ate

was

red

uced

by

40%

whi

le

the

air c

onsu

mpt

ion

was

redu

ced

by 6

9%, t

hus

prov

idin

g in

crea

sed

effi c

ienc

y.

For a

det

aile

d ex

ampl

e fo

r how

to s

et y

our E

MS,

see

beg

inni

ng o

f pe

rfor

man

ce c

urve

sec

tion.

Caut

ion:

Do

not e

xcee

d 8.

6 ba

r (12

5 ps

ig) a

ir s

uppl

y pr

essu

re.

The

Effi c

ienc

y M

anag

emen

t Sy

stem

(EM

S)

can

be u

sed

to o

ptim

ize t

he p

erfo

rman

ce o

f yo

ur W

ilden

pum

p fo

r sp

ecifi

c ap

plic

atio

ns.

The

pum

p is

del

iver

ed w

ith th

e EM

S ad

just

ed

to s

ettin

g 4,

whi

ch a

llow

s m

axim

um fl

ow.

The

EMS

curv

e al

low

s th

e pu

mp

user

to

dete

rmin

e fl o

w

and

air

cons

umpt

ion

at

each

EM

S se

tting

. Fo

r an

y EM

S se

tting

and

di

scha

rge

pres

sure

, th

e “X

fac

tor”

is

used

as

a m

ultip

lier

with

the

orig

inal

val

ues

from

th

e se

tting

4 p

erfo

rman

ce c

urve

to c

alcu

late

th

e ac

tual

fl o

w a

nd a

ir co

nsum

ptio

n va

lues

fo

r th

at s

peci

fi c E

MS

setti

ng.

Not

e: y

ou c

an

inte

rpol

ate

betw

een

the

setti

ng c

urve

s fo

r op

erat

ion

at in

term

edia

te E

MS

setti

ngs.

TE

CH

NIC

AL

DA

TA

Heig

ht .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.770

mm

(30.

3”)

Wid

th. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.490

mm

(19.

3”)

Dept

h. .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

.356

mm

(14.

0”)

Ship

Wei

ght .

. . .

. . .

. Po

lypr

opyl

ene

34 k

g (7

5 lb

s.)

Air I

nlet

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 1

9 m

m (3

/4”)

Inle

t . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . 5

1 m

m (2

”)

Outle

t. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

51

mm

(2”)

Suct

ion

Lift

. . .

. . .

. . .

. . .

. . .

. . .

. . .5

.7 m

Dry

(18.

7’)

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

. . .

9.2

m W

et (3

0.1’

)Di

sp. P

er S

troke

. . .

. . .

. . .

. . .

. . .

. . 2

.0 l

(0.5

2 ga

l.)1

Max

. Flo

w R

ate

. . .

. . .

. . .

. . .

. . .5

68 lp

m (1

50 g

pm)

Max

. Size

Sol

ids

. . .

. . .

. . .

. . .

. . .

. . .

6.4

mm

(1/4

”)

1 Disp

lace

men

t per

stro

ke w

as c

alcu

late

d at

4.8 b

ar (7

0 psig

) ai

r inl

et p

ress

ure

agai

nst a

2.1 b

ar (3

0 psig

)hea

d pr

essu

re

Page 10: PX8 - | Burt Process Equipment · PDF filePX8 Plastic Performance 3 WILDEN PUMP & ENGINEERING, LLC SETTING 4 PERFORMANCE CURVE EMS CURVE HOW TO USE THIS EMS CURVE Example data point

WILDEN PUMP & ENGINEERING, LLC 10 WIL-10131-E-01

PSIG[BAR]

Dry

Vac

uum

Inlet Air Pressure

METER FT H20P X 8 P L A S T I C S U C T I O N L I F T C A PA B I L I T Y

S e c t i o n 5 D

S U C T I O N L I F T C U R V E