S0703010K
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Accumulator
GENERAL DESCRIPTION
The accumulator is a gas-charged storage
device designed to hold a reserve quantity of
hydraulic fluid under pressure. Accumulators are
used in hydraulic circuits in much the same way
that condensers (or capacitors) are used to
collect, store and maintain electrical charge in a
circuit.
In a hydraulic circuit, minor variations or lags in
pump output that might otherwise cause
unsteady or irregular operation are made up
from the supply of pressurized oil in the
accumulator.
Accumulators are solidly constructed to resist the high operating pressures of the fluids they contain. There
are only three main moving parts: a plug at the top allows pre-charging or expelling gas from the
compressible, pre-charged upper chamber; a valve assembly at the bottom of the accumulator for passing
hydraulic fluid in and out, and an elastic diaphragm to separate the two chambers. The flexible diaphragm
changes shape to conform to the changing pressures and volumes of the two fluids in the upper and lower
chambers.
There are six possible positions the diaphragm
can be in and they are as follows:
1.
With no gas charge in the upper chamber
0 bar (0 psi, empty) and no oil in the
bottom 0 bar (0 psi, dry) the elastic
diaphragm hangs loosely.
2.
When the pre-pressure charge of gas
(usually nitrogen) is introduced through the
port at the top of the accumulator, the
diaphragm expands to maximum size. The
valve button in the center of the diaphragm
pushes into the fluid opening in the bottom
chamber, sealing off the lower valve. If the
pressure of the gas charge exceeds
system oil pressure, no fluid enters the
accumulator. The button also keeps the
diaphragm from protruding into the lower
valve opening.
Reference
Number
Description
1
Screw Plug
2
Steel Pressure Vessel
3
Diaphragm
4
Fluid Valve
1
2
3
4
ARS1790L
Figure 1
1
2
3
6
5
4
Nitrogen
ARS1800L
Pressure Fluid
Figure 2
Summary of Contents for Solar 300LC-V
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Page 7: ...1SAFETY...
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Page 47: ...1SPECIFICATIONS...
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Page 70: ...S0202080K Page 22 Specifications for Solar 300LC V...
Page 71: ...1GENERAL MAINTENANCE...
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Page 86: ...S0302000 Page 14 General Maintenance Procedures Return to Master Table of Contents...
Page 99: ...1UPPER STRUCTURE...
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Page 102: ...S0402040K Page 2 Cab TABLE OF CONTENTS Removal 3 Installation 6...
Page 116: ...S0403050K Page 8 Counterweight Return to Master Table of Contents...
Page 140: ...S0407000 Page 6 Swing Bearing...
Page 164: ...S0408070K Page 24 Swing Reduction Gear...
Page 165: ...1LOWER STRUCTURE AND CHASSIS...
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Page 190: ...S0505000 Page 24 Track Assembly 7 Tighten plug 1 Figure 48 Figure 48...
Page 191: ...S0505000 Page 25 Track Assembly TRACK SPRING AND TRACK ADJUSTING CYLINDER PARTS LIST Figure 49...
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Page 205: ...S0605060K Page 11 Air Conditioner Face and Defroster ARS1300L Figure 12...
Page 220: ...S0605060K Page 26 Air Conditioner...
Page 229: ...1HYDRAULICS...
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Page 262: ...S0703010K Page 2 Accumulator TABLE OF CONTENTS General Description 3 Specifications 4...
Page 266: ...S0703010K Page 6 Accumulator...
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Page 308: ...S0705000 Page 34 Cylinders 17 Force out pin bushing 1 from body of cylinder Figure 28...
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Page 324: ...S0707270K Page 12 Swing Motor Toshiba MFC200 PARTS LIST Figure 6...
Page 355: ...S0707315K Page 11 Travel Motor with Gearbox...
Page 424: ...S0708315K Page 28 Main Pump Kawasaki CONSTRUCTION OF REGULATOR Figure 22...
Page 444: ...S0708315K Page 48 Main Pump Kawasaki...
Page 450: ...S0709401K Page 6 Main Control Valve Kayaba Figure 1...
Page 451: ...S0709401K Page 7 Main Control Valve Kayaba Figure 2...
Page 453: ...S0709401K Page 9 Main Control Valve Kayaba...
Page 455: ...S0709401K Page 11 Main Control Valve Kayaba Figure 4...
Page 467: ...S0709401K Page 23 Main Control Valve Kayaba Figure 16...
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