Vacuum Drying and Leakage Checking
Installation
111
7. Vacuum Drying and Leakage Checking
7.1 Purpose of vacuum drying
Eliminating moisture in system to prevent the phenomena of ice-blockage and copper oxidation.
Ice-blockage shall cause abnormal operation of system, while copper oxide shall damage compressor.
Eliminating the non-condensable gas (air) in system to prevent the components oxidizing, pressure
fluctuation and bad heat exchange during the operation of system.
7.2 Selection of vacuum pump
The ultimate vacuum degree of vacuum pump shall be -756mmHg or above.
Precision of vacuum pump shall reach 0.02mmHg or above.
7.3 Operation procedure for vacuum drying
Due to different construction environment, two kinds of vacuum drying ways could be chosen, namely
ordinary vacuum drying and special vacuum drying.
7.3.1 Ordinary vacuum drying
1. When conduct first vacuum drying, connect pressure gauge to the infusing mouth of gas pipe and liquid
pipe, and keep vacuum pump running for 1hour (vacuum degree of vacuum pump shall be reached
-755mmHg).
2 If the vacuum degree of vacuum pump could not reach -755mmHg after 1 hour of drying, it indicates
that there is moisture or leakage in pipeline system and need to go on with drying for half an hour.
3 If the vacuum degree of vacuum pump still could not reach -755mmHg after 1.5 hours of drying, check
whether there is leakage source.
4 Leakage test: After the vacuum degree reaches -755mmHg, stop vacuum drying and keep the pressure
for 1 hour. If the indicator of vacuum gauge does not go up, it is qualified. If going up, it indicates that
there is moisture or leak source.
7.3.2 Special vacuum drying
The special vacuum drying method shall be adopted when:
1. Finding moisture during flushing refrigerant pipe.
2. Conducting construction on rainy day, because rain water might penetrated into pipeline.
3. Construction period is long, and rain water might penetrated into pipeline.
4. Rain water might penetrate into pipeline during construction.
Procedures of special vacuum drying are as follows:
1. Vacuum drying for 1 hour.
2. Vacuum damage, filling nitrogen to reach 0.5Kgf/cm2 .
Because nitrogen is dry gas, vacuum damage could achieve the effect of vacuum drying, but this
method could not achieve drying thoroughly when there is too much moisture. Therefore, special
attention shall be drawn to prevent the entering of water and the formation of condensate water.
3. Vacuum drying again for half an hour.
If the pressure reached -755mmHg, start to pressure leakage test. If it cannot reached the value,
repeat vacuum damage and vacuum drying again for 1 hour.
4 Leakage test: After the vacuum degree reaches -755mmHg, stop vacuum drying and keep the pressure
for 1 hour. If the indicator of vacuum gauge does not go up, it is qualified. If going up, it indicates that
there is moisture or leak source.
Summary of Contents for FSFIF-121AE2
Page 12: ...Service Space 10 Indoor Units 3 Service Space 1000mm 1000mm 1000mm 1000m m ...
Page 14: ...Air Velocity Distributions Reference Data 12 Indoor Units 30 36K Cooling Heating ...
Page 15: ...Air Velocity Distributions Reference Data Indoor Units 13 48 60K Cooling Heating ...
Page 20: ...Field Wiring 18 Indoor Units 9 Field Wiring ...
Page 28: ...Static Pressure 26 Indoor Units 4 Static Pressure FSLIF 182AE2 FSLIF 242AE2 ...
Page 29: ...Static Pressure Indoor Units 27 FSLIF 301AE2 FSLIF 362AE2 ...
Page 30: ...Static Pressure 28 Indoor Units FSLIF 481AE0 FSLIF 602AE0 ...
Page 35: ...Field Wiring Indoor Units 33 9 Field Wiring ...
Page 37: ...Wiring Diagram Indoor Units 35 FSLIF 362AE2 ...
Page 38: ...Wiring Diagram 36 Indoor Units ...
Page 42: ...Service Space 40 Indoor Units 3 Service Space ...
Page 51: ...Wiring Diagram Indoor Units 49 Field Wiring 9 ...
Page 52: ...Wiring Diagram 50 Indoor Units 10 Wiring diagram FSPIF 181AE2 ...
Page 53: ...Ceiling Floor Type Indoor Units 51 FSPIF 241AE2 FSPIF 301AE2 ...
Page 54: ...Wiring Diagram 52 Indoor Units FSPIF 362AE2 FSPIF 480AE0 FSPIF 601AE0 ...
Page 58: ...Service Space 56 Indoor Units 3 Service Space ...
Page 62: ...60 Indoor Units 9 Field Wiring FSKIF 121AE2 EU FSKIF 184AE2 EU 12k unit Field Wiring ...
Page 63: ...Indoor Units 61 10 Wiring diagram FSKIF 121AE2 EU FSKIF 184AE2 EU Wiring Diagram ...
Page 67: ...Console Type 2 Dimensions 16 Drain pipe 195 Hanging arm Unit mm 700 600 210 Indoor Units 63 ...
Page 68: ...Console Type 3 Service Space 64 Indoor Units ...
Page 73: ...Console Type 9 Field Wiring Indoor Units 69 FSFIF 121AE2 12 ...
Page 74: ...Console Type 10 Wiring diagram 70 Indoor Units FSFIF 121AE2 ...
Page 76: ...Outdoor Units 72 Outdoor Units ...
Page 78: ...Dimensions 74 Outdoor Units Model KBtu h Unit mm W D H W1 A B 48 60 952 415 1333 1045 634 404 ...
Page 84: ...Wiring diagram 80 Outdoor Units 7 Wiring diagram FSOIF 121AE2 FSOIF 183AE2 ...
Page 85: ...Wiring diagram Outdoor Units 81 FSOIF 301AE2 FSOIF 243AE2 FSOIF 362AE2 3F ...
Page 86: ...Wiring diagram 82 Outdoor Units FSOIF 482AE0 3F FSOIF 602AE0 3F ...
Page 87: ...Wiring diagram Outdoor Units 83 ...
Page 105: ...Installation 101 ...
Page 110: ...Refrigerant pipe installation 106 Installation ...
Page 145: ...Troubleshooting Electrical Control System 141 2 4 4 3 J4 malfunction J4 ...
Page 154: ...Troubleshooting 150 Electrical Control System 2 4 4 13 J0 malfunction J0 ...