Fluid Power Diagrams and Questions (Mechanical engineering Pneumatic & hydraulic)
MODULE TITLE : APPLICATIONS OF PNEUMATICS AND
HYDRAULICS
TOPIC TITLE : FLUID POWER DIAGRAMS
LESSON 5 : HYDRAULIC PRESSURE CONTROL VALVES
APH - 1 - 5
© Teesside University 2011
Published by Teesside University Open Learning (Engineering)
School of Science & Engineering
Teesside University
Tees Valley, UK
TS1 3BA
+44 (0)1642 342740
All rights reserved. No part of this publication may be reproduced, stored in a
retrieval system, or transmitted, in any form or by any means, electronic, mechanical,
photocopying, recording or otherwise without the prior permission
of the Copyright owner.
This book is sold subject to the condition that it shall not, by way of trade or
otherwise, be lent, re-sold, hired out or otherwise circulated without the publisher's
prior consent in any form of binding or cover other than that in which it is
published and without a similar condition including this
condition being imposed on the subsequent purchaser.
________________________________________________________________________________________
INTRODUCTION ________________________________________________________________________________________
The control element of a hydraulic system is provided by the system's valves.
In this lesson and the next we will examine hydraulic valves, and illustrate
their many functions.
Hydraulic valves are used to control system pressure, flow rate and direction of
flow. Here we will deal only with pressure-control valves.
________________________________________________________________________________________
YOUR AIMS ________________________________________________________________________________________
On completion of this lesson you should be able to:
• differentiate between a direct acting and a compound design of
pressure relief valve
• describe the function of a relief valve, a safety valve, a sequence
valve, a pressure-reducing valve, unloading and off-loading valves,
as well as counterbalance and brake valves
• identify these components on a hydraulic diagram from their
symbolic representation to BS 2917.
1
Teesside University Open Learning (Engineering)
© Teesside University 2011
________________________________________________________________________________________
HYDRAULIC VALVES ________________________________________________________________________________________
Valves are used in a hydraulic system to control the hydraulic power delivered
by the system pump which is driven by the prime mover.
• They will control the force or torque that can be exerted by an
actuator, by controlling the pressure of the fluid supplied to it.
• They will control the speed at which the actuator moves, by
controlling the flow rate of the fluid being supplied to it.
• They will also be used to control the direction in which the actuator
will move, by diverting fluid from one actuator port to another, so
controlling the direction of fluid flow through the actuator.
PRESSURE-CONTROL VALVES
One of the most important pressure-control valves is the relief valve or safety
valve. Its prime function is to limit system pressure.
Relief valves usually establish or limit a working pressure. Safety valves
operate only when there is a circuit malfunction. A relief valve may, however,
operate in a dual capacity, as both relief valve and safety device.
Relief valves are usually sited as close to the pump outlet as possible, and
come in two basic designs. FIGURE 1 shows the constructional details of the
direct-acting relief valve, along with its symbolic representation to BS 2917.
2
Teesside University Open Learning (Engineering)
© Teesside University 2011
FIG. 1 Direct-Acting Relief Valve
The direct-acting relief has two port connections, the inlet which is connected
to system pressure (P), and the outlet usually connected to the tank (T). The
valve is a normally-closed valve, with the system pressure being opposed by a
poppet or a ball, held firmly on a valve seat by an adjustable spring. When the
pressure of the fluid, acting on the poppet or ball area exposed to it, can exert
sufficient force to push the poppet off the valve seat, fluid will flow through
the valve back to the tank at low pressure.
When fully open, the valve will divert all of the pump flow back to the tank,
and prevent the system pressure from rising any higher than the fully-open
setting of the valve.
The adjusting screw is used to increase or decrease the pressure at which the
valve will start to open. The pressure at which the valve just opens is
described as its 'cracking pressure', and the system pressure when the valve is
fully open is called the 'full flow pressure'. The difference between full flow
and cracking pressures is called 'pressure override': this may be as much as
P T
P
T Adjusting screw
3
Teesside University Open Learning (Engineering)
© Teesside University 2011
10% of the full flow pressure of the valve. This means that, if the full flow
pressure of the valve is set at 200 bar, the valve may actually start leaking fluid
at 180 bar, with a subsequent loss in hydraulic power.
In some hydraulic systems, where the valve is being used primarily as a safety
valve, this loss of power is not important. However, in other systems, losses
due to pressure override do interfere with the efficient operation of the
machine, and cannot be tolerated.
Pressure override tends to increase as heavier valve springs are used.
Therefore, in an attempt to reduce pressure override to a negligible value, the
compound relief or pilot-operated relief valve was designed. This valve does
not rely on heavy springs for its operation, therefore pressure override is
negligible.
FIGURE 2 illustrates the constructional details of a compound relief valve,
along with its hydraulic symbol to BS 2917.
The compound relief valve is a two-stage valve. The operating pressure is set
by adjusting the setting of the pilot relief valve. The main relief valve has a
spool with a drilled orifice: fluid can pass through this orifice, and create a
pressure balance across the main spool. This means that, provided that fluid
does not flow through the pilot relief, the main spool can be held closed by a
relatively light spring. However, if the pilot valve is opened, by the system
reaching the set pressure, then, the pressure balance cannot be achieved, and
the main valve opens to divert the full pump flow to tank.
4
Teesside University Open Learning (Engineering)
© Teesside University 2011
FIG. 2 Compound Relief Valve
Because this design of relief valve does not use heavy-duty springs in its operation, the amount of pressure override is negligible.
What do you think will be the effect on the operation of a hydraulic system, if the
system pressure relief valve malfunctions and jams in the fully open state?
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
__________________________________________________________________________________________________
P
T
∆ P
Pilot stage
Vent port plug
Main valve spool
P T
5
Teesside University Open Learning (Engineering)
© Teesside University 2011
This will allow the total output from the pump to flow unopposed directly to tank. As there
is now no resistance to flow in the system, there will be no rise in pressure, and no work can
be done by the system.
Relief Valve Unloading
The compound relief valve can also be connected to a directional valve; the
operation of this valve will vent the pressure on the top of the main spool, and
allow the valve to come open at a minimal pressure. This has the effect of
dumping the flow from the pump at minimal pressure, and allowing it to run in
an unloaded state.
The unloading valve can be operated manually, electrically or by a fluid
pressure signal. FIGURE 3 illustrates the principle using a solenoid-operated
vent valve V. This method is commonly used to allow the system pump to
always start under light-load conditions, and allows the system to be fitted with
a smaller prime mover as a consequence.
The motor-start control will energise a timing relay which, in turn, will
energise the vent valve to unload the main relief. After 5 or 10 seconds, when
the motor has run up to full speed, the solenoid is de-energised: the system can
then load up to normal working pressure.
6
Teesside University Open Learning (Engineering)
© Teesside University 2011
FIG. 3 Venting a Compound Relief Valve
Off-loading Valve
The off-loading valve is a remotely-controlled relief valve, normally used in
conjunction with double-pump circuits. In FIGURE 4 a double-pump unit is
driven by a common electric motor. Pump A is a high pressure, small capacity
unit: pump B is a low pressure unit of high capacity. The off-loading valve is
P
T
∆ P
V
Vent valve
To system
M
7
Teesside University Open Learning (Engineering)
© Teesside University 2011
connected into the supply from the low-capacity pump, but piloted by a signal
emanating from the output from the high-pressure pump. Maximum system
pressure is controlled by the conventional relief valve, connected to the output
from the high-pressure pump.
FIG. 4 Pump Off-loading
When the pressure in the system rises to 50 bar, the off-loading valve is opened
by the pilot pressure. The output from the low-pressure pump is diverted to
the tank at minimal pressure. This reduces the work load on the pump drive
motor and allows this extra capacity to be used to drive the high-pressure
pump up to the maximum system operating pressure of 200 bar.
As the pressure in the system falls to below 50 bar, the off-loading valve will
be closed, and the output from the low-pressure pump will once again be
delivered into the system.
To system
50 bar 200 bar
Off-loading valve symbol
P T
X
Pump BPump A
LPMHP
8
Teesside University Open Learning (Engineering)
© Teesside University 2011
In the system shown in FIGURE 4, what prevents the decay of system pressure
occurring when the off-loading valve is opened by the pilot control?
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
__________________________________________________________________________________________________
The non-return check-valve situated in the low pressure pump output line, downstream of
the off-loading valve, will prevent pressure decay.
9
Teesside University Open Learning (Engineering)
© Teesside University 2011
Sequence Valves
A sequence valve is another normally-closed pressure-control valve, very
similar in design to a relief valve. It will allow the hydraulic fluid to flow into
a sub-circuit, when the pressure in the main system has reached the setting of
the sequence valve. By this method, it is possible to control the sequence of
events in a hydraulic control system.
FIGURE 5 shows how the operational sequence of two hydraulic actuators can
be controlled using a sequence valve.
FIG. 5 Sequence Circuit
–
+
– +
30 bar
A
B
A B
P T
A B
T
Sequence valve with integral reverse flow check and
external drain connection
Direction control valve
70 bar
M
10
Teesside University Open Learning (Engineering)
© Teesside University 2011
When the directional valve is energised P to A, fluid will be diverted into the
head end of cylinder A and to the inlet port of the sequence valve. The
cylinder A will extend and, when resistance to motion causes the system
pressure to rise (in this case to 30 bar), then the sequence valve will open to
allow flow to enter the rod end of cylinder B, causing this cylinder to retract.
When the directional valve is energised P to B, then fluid will be diverted to
the rod end of cylinder A and to the head end of cylinder B. This will cause
both cylinders to reverse their previous operation, with the exhaust flow from
the rod end of cylinder B passing through the sequence valve, via the integral
reverse-flow check valve. The operational sequence of the above circuit is
therefore:
A + B – (A – B+)
Which unit in the above circuit (FIGURE 5) is responsible for establishing the
maximum pressure that can be applied to the actuators?
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
__________________________________________________________________________________________________
The maximum pressure that can develop in this system will ultimately be controlled by the
system relief valve (in this case set at 70 bar).
11
Teesside University Open Learning (Engineering)
© Teesside University 2011
Pressure-Reducing Valve
Pressure-reducing valves are the only normally-open pressure-control valves.
Their function is to limit the pressure downstream of the valve to a value less
than the pressure upstream of the valve.
The circuit shown in FIGURE 6 shows a clamp and stamp circuit that utilises
two hydraulic cylinders. The operating sequence of the cylinders is controlled
by the sequence valve which will allow the clamp cylinder to outstroke before
the stamping cylinder.
However, in this particular case, clamp pressure must be limited by a pressure
reducing valve to prevent damage to the component by the action of the clamp.
With the directional control valve in the position shown, system fluid will pass
through the valve and into the clamping cylinder via the pressure-reducing
valve. The clamp cylinder will outstroke to clamp the component. The
pressure-reducing valve will limit the pressure build-up on the full bore end of
the cylinder to 50 bar (its set value).
Pressure upstream of the reducing valve will rise initially to 60 bar at which
time the sequence valve will open to allow fluid to flow into the full bore end
of the stamp cylinder. The maximum stamping pressure can rise to the setting
of the system relief valve (100 bar). Reversal of the directional control valve
will instroke both cylinders almost simultaneously, with fluid being evacuated
from the full bore ends of both cylinders via the reverse flow checks of both
the sequence and pressure-control valves.
Although the pressure-reducing valve is a normally-open valve, reverse flow
through the valve is only possible if the pressure in the subcircuit is less than
the set pressure of the valve. If the reverse flow pressure exceeds the valve
setting, the valve will be forced closed and reverse flow will be impossible. In
such cases, it is usual to use a valve with an integral reverse flow check.
12
Teesside University Open Learning (Engineering)
© Teesside University 2011
FIG. 6 Sequence Circuit
In the illustration (FIGURE 6) the pressure-reducing valve has a connection to tank
(T). What do you think is the purpose of this connection?
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
__________________________________________________________________________________________________
Clamp Stamp
60 bar50 bar
100 bar Pressure reducing
valve
Sequence valve
Pressure Reducing Valve with integral reverse flow check
A B
T
M
13
Teesside University Open Learning (Engineering)
© Teesside University 2011
Answer
The connection to tank on the pressure-reducing valve is an external drain port.
In the case of this particular valve, with it being of compound design, the pilot
fluid, which would normally travel down the centre of the spool to the outlet of
the valve, cannot do so. This is because the outlet is pressurised and it would
cause a malfunction of the valve. It is therefore necessary to drain this oil
directly back to the tank using a separate line.
Counterbalance and Brake Valves
A counterbalance valve is a normally-closed valve, similar in design to a relief
valve. It is used to create a back pressure on the underside of a vertically
mounted piston, to prevent a suspended load from falling freely, due to gravity,
when being hydraulically lowered.
The circuit shown in FIGURE 7 illustrates the functional operation of a
counterbalance valve.
The pressure setting of the counterbalance is slightly higher than that required
to prevent the load from falling freely.
Therefore, to lower the load, we require hydraulic assistance: thus fluid is
supplied to the head end of the cylinder. The combined efforts of the
suspended load and the pressure applied to the cylinder will be sufficient to
force the counterbalance valve open, and the load will start to lower. Any
tendency to fall freely is counteracted by the valve.
When the load needs to be raised, the directional valve is operated to divert the
fluid flow through the reverse-flow check of the counterbalance valve, and into
the rod end of the cylinder.
14
Teesside University Open Learning (Engineering)
© Teesside University 2011
FIG. 7 Circuit with Counterbalance
What do you think would be the effect on the operation of the system in FIGURE 7, if
the suspended mass was removed from the end of the cylinder rod?
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
....................................................................................................................................................
__________________________________________________________________________________________________
100 bar
Mass
Counterbalance valve
M
15
Teesside University Open Learning (Engineering)
© Teesside University 2011
Answer
Removing the suspended mass would affect the operating pressures. The
cylinder would retract at a much lower pressure than before, because there was
no longer a load to be lifted. However, the cylinder would require a far higher
pressure to extend, because it would have to overcome the resistance to flow,
created by the counterbalance valve without the assistance of the mass.
A brake valve is very similar to a counterbalance valve, but is normally sited in
the exhaust line of a hydraulic motor. Its function is to prevent the motor from
overspeeding, when an overrunning load is applied to the motor shaft, and to
provide a smooth rate of deceleration. See FIGURE 8.
FIG. 8
Brake valve
X
X
A B
M
16
Teesside University Open Learning (Engineering)
© Teesside University 2011
When the motor is to be run in its normal direction of rotation, the directional
valve is actuated to provide flow into the motor inlet port. As well as
supplying oil to the motor, it will also feed to the cross-line pilot connection of
the brake valve (X). This will cause the valve to open at a much lower value
than the valve is set for, sometimes as little as 10% of the preset pressure.
The flow of fluid will cause the motor to rotate, and exhaust flow will return to
tank, via the pilot-opened brake valve and the directional valve.
Any tendency for the motor to overspeed, due to an overunning load, will
result in a reduction in inlet pressure, and the collapse of the pilot signal (x).
The brake valve will then impose its preset back-pressure, sensed by the
internal pilot, on the exhaust flow which will reduce the running speed of the
motor. As the motor speed drops, the flow resistance in the inlet line will
increase, causing the pressure to increase, re-establishing the pilot signal (x).
This now removes the back-pressure braking.
When the motor is to be stopped, the directional valve is moved to its central
off condition, which removes the supply from the motor inlet and cross-line
pilot. The brake valve once again imposes back-pressure braking, to bring the
motor to a smooth controlled stop. If reverse rotation of the motor drive is
required, it is usual for the brake valve to be fitted with an integral reverse-
flow check-valve.
That concludes this lesson on pressure-control valves. All of the valves
discussed are very similar to each other. In many cases, it is only by looking at
the application of the valve that we can identify it.
Now answer the Self-Assessment Questions on the next page.
17
Teesside University Open Learning (Engineering)
© Teesside University 2011
________________________________________________________________________________________
SELF-ASSESSMENT QUESTIONS ________________________________________________________________________________________
1. What are the three features controlled by valves in a hydraulic system?
2. What are the two general types of relief valve called?
3. What is the function of an unloading valve?
4. What is the function of a sequence valve?
5. Use BS 2917 symbols to represent a double-pump system with low
pressure pump off-loading.
6. What is the function of a counterbalance valve?
7. Draw the symbolic representation of a pressure-reducing valve, complete
with an integral reverse-flow check-valve.
18
Teesside University Open Learning (Engineering)
© Teesside University 2011
________________________________________________________________________________________
NOTES ________________________________________________________________________________________
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
...................................................................................................................................................
19
Teesside University Open Learning (Engineering)
© Teesside University 2011
________________________________________________________________________________________
ANSWERS TO SELF-ASSESSMENT QUESTIONS ________________________________________________________________________________________
1. The three features controlled by the valves in a hydraulic system are
pressure, flow rate and direction of flow.
2. The two general designs of relief valve are:
• direct-acting relief valve
• compound or pilot-operated relief valve.
3. An unloading valve is used to permit the pump to operate at minimum
load, by overriding the system relief valve and diverting fluid flow
directly to the tank at minimal pressure.
4. The function of a sequence valve is to control the sequence of events in a
hydraulic system, by opening at an adjustable preset pressure, to allow
fluid to flow into the system sub-circuits at the desired time in the
operational cycle.
20
Teesside University Open Learning (Engineering)
© Teesside University 2011
5.
FIG. 4 (Reproduced)
6. The function of a counterbalance valve is to maintain a constant back-
pressure in the system, to prevent a suspended load from falling freely,
due to the effects of gravity when being hydraulically lowered.
7.
Pressure reducing valve with integral reverse
flow check
To system
50 bar 200 bar
Off-loading valve symbol
P T
X
Pump BPump A
LPMHP
21
Teesside University Open Learning (Engineering)
© Teesside University 2011
________________________________________________________________________________________
SUMMARY ________________________________________________________________________________________
In this lesson we have looked at the uses of pressure-control valves in a
hydraulic system. Pressure on the actuator will control its output force: the
system relief valve will set the maximum pressure in a hydraulic system.
However, we can use pressure-control valves to control other features of a
hydraulic system, not only maximum system pressure. Unloading and off-
loading valves will reduce the workload on the system prime mover. Sequence
valves will control the operational sequence of the system: counterbalance and
brake valves are used to provide back-pressure braking on system actuators.
Pressure-reducing valves are used to limit pressure in system sub-circuits to a
value less than the main system pressure: they are the only normally-open
pressure-control valves
22
Teesside University Open Learning (Engineering)
© Teesside University 2011
<< /ASCII85EncodePages false /AllowTransparency false /AutoPositionEPSFiles true /AutoRotatePages /None /Binding /Left /CalGrayProfile (Dot Gain 20%) /CalRGBProfile (sRGB IEC61966-2.1) /CalCMYKProfile (U.S. Web Coated \050SWOP\051 v2) /sRGBProfile (sRGB IEC61966-2.1) /CannotEmbedFontPolicy /Error /CompatibilityLevel 1.4 /CompressObjects /Tags /CompressPages true /ConvertImagesToIndexed true /PassThroughJPEGImages true /CreateJDFFile false /CreateJobTicket false /DefaultRenderingIntent /Default /DetectBlends true /ColorConversionStrategy /LeaveColorUnchanged /DoThumbnails false /EmbedAllFonts true /EmbedJobOptions true /DSCReportingLevel 0 /SyntheticBoldness 1.00 /EmitDSCWarnings false /EndPage -1 /ImageMemory 1048576 /LockDistillerParams false /MaxSubsetPct 100 /Optimize true /OPM 1 /ParseDSCComments true /ParseDSCCommentsForDocInfo true /PreserveCopyPage true /PreserveEPSInfo true /PreserveHalftoneInfo false /PreserveOPIComments false /PreserveOverprintSettings true /StartPage 1 /SubsetFonts true /TransferFunctionInfo /Apply /UCRandBGInfo /Preserve /UsePrologue false /ColorSettingsFile () /AlwaysEmbed [ true ] /NeverEmbed [ true ] /AntiAliasColorImages false /DownsampleColorImages true /ColorImageDownsampleType /Bicubic /ColorImageResolution 300 /ColorImageDepth -1 /ColorImageDownsampleThreshold 1.50000 /EncodeColorImages true /ColorImageFilter /DCTEncode /AutoFilterColorImages true /ColorImageAutoFilterStrategy /JPEG /ColorACSImageDict << /QFactor 0.15 /HSamples [1 1 1 1] /VSamples [1 1 1 1] >> /ColorImageDict << /QFactor 0.15 /HSamples [1 1 1 1] /VSamples [1 1 1 1] >> /JPEG2000ColorACSImageDict << /TileWidth 256 /TileHeight 256 /Quality 30 >> /JPEG2000ColorImageDict << /TileWidth 256 /TileHeight 256 /Quality 30 >> /AntiAliasGrayImages false /DownsampleGrayImages true /GrayImageDownsampleType /Bicubic /GrayImageResolution 300 /GrayImageDepth -1 /GrayImageDownsampleThreshold 1.50000 /EncodeGrayImages true /GrayImageFilter /DCTEncode /AutoFilterGrayImages true /GrayImageAutoFilterStrategy /JPEG /GrayACSImageDict << /QFactor 0.15 /HSamples [1 1 1 1] /VSamples [1 1 1 1] >> /GrayImageDict << /QFactor 0.15 /HSamples [1 1 1 1] /VSamples [1 1 1 1] >> /JPEG2000GrayACSImageDict << /TileWidth 256 /TileHeight 256 /Quality 30 >> /JPEG2000GrayImageDict << /TileWidth 256 /TileHeight 256 /Quality 30 >> /AntiAliasMonoImages false /DownsampleMonoImages true /MonoImageDownsampleType /Bicubic /MonoImageResolution 1200 /MonoImageDepth -1 /MonoImageDownsampleThreshold 1.50000 /EncodeMonoImages true /MonoImageFilter /CCITTFaxEncode /MonoImageDict << /K -1 >> /AllowPSXObjects false /PDFX1aCheck false /PDFX3Check false /PDFXCompliantPDFOnly false /PDFXNoTrimBoxError true /PDFXTrimBoxToMediaBoxOffset [ 0.00000 0.00000 0.00000 0.00000 ] /PDFXSetBleedBoxToMediaBox true /PDFXBleedBoxToTrimBoxOffset [ 0.00000 0.00000 0.00000 0.00000 ] /PDFXOutputIntentProfile () /PDFXOutputCondition () /PDFXRegistryName (http://www.color.org) /PDFXTrapped /Unknown /Description << /ENU (Use these settings to create PDF documents with higher image resolution for high quality pre-press printing. The PDF documents can be opened with Acrobat and Reader 5.0 and later. These settings require font embedding.) /JPN <FEFF3053306e8a2d5b9a306f30019ad889e350cf5ea6753b50cf3092542b308030d730ea30d730ec30b9537052377528306e00200050004400460020658766f830924f5c62103059308b3068304d306b4f7f75283057307e305930023053306e8a2d5b9a30674f5c62103057305f00200050004400460020658766f8306f0020004100630072006f0062006100740020304a30883073002000520065006100640065007200200035002e003000204ee5964d30678868793a3067304d307e305930023053306e8a2d5b9a306b306f30d530a930f330c8306e57cb30818fbc307f304c5fc59808306730593002> /FRA <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> /DEU <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> /PTB <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> /DAN <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> /NLD <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> /ESP <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> /SUO <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> /ITA <FEFF00550073006100720065002000710075006500730074006500200069006d0070006f007300740061007a0069006f006e00690020007000650072002000630072006500610072006500200064006f00630075006d0065006e00740069002000500044004600200063006f006e00200075006e00610020007200690073006f006c0075007a0069006f006e00650020006d0061006700670069006f00720065002000700065007200200075006e00610020007100750061006c0069007400e00020006400690020007000720065007300740061006d007000610020006d00690067006c0069006f00720065002e0020004900200064006f00630075006d0065006e00740069002000500044004600200070006f00730073006f006e006f0020006500730073006500720065002000610070006500720074006900200063006f006e0020004100630072006f00620061007400200065002000520065006100640065007200200035002e003000200065002000760065007200730069006f006e006900200073007500630063006500730073006900760065002e002000510075006500730074006500200069006d0070006f007300740061007a0069006f006e006900200072006900630068006900650064006f006e006f0020006c002700750073006f00200064006900200066006f006e007400200069006e0063006f00720070006f0072006100740069002e> /NOR <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> /SVE <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> >> >> setdistillerparams << /HWResolution [2400 2400] /PageSize [612.000 792.000] >> setpagedevice