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11.3. Refrigerant piping work
When working with refrigerant piping, the following points must
be carefully observed: no moisture or dust must be allowed to
enter the piping, and there must be no refrigerant leaks.
1. Procedure and precautions for flaring work
a. Cut the pipe
Use a pipe cutter, and cut slowly so the pipe will not be
deformed.
b. Remove burrs and clean shavings from the cut surface
If the shape of the pipe end is poor after removing burrs,
or if shavings adhere to the flared area, it may lead to
refrigerant leaks.
To prevent this, turn the cut surface downward and
remove burrs, then clean the surface, carefully.
c.
Insert the flare nut (be sure to use the same nut that is
used on the AC unit)
d. Flaring
Check the clamp bar and the cleanliness of the copper
pipe.
Be sure to use the clamp bar to do the flaring with
accuracy. Use either an R410A flaring tool, or a
conventional flaring tool. Flaring tools come in different
sizes, so be sure to check the size before using. When
using a conventional flaring tool, use the copper pipe
gauge for clearance adjustment, etc., to ensure the
correct A dimension (see Fig. 10)
Fig. 10 Flaring dimensions
11.3.1. Piping materials
It is recommended that you use copper and copper alloy jointless pipes with a maximum oil adherence of 40 mg/10m. Do not use
pipes that are crushed, deformed, or discolored (especially the inside surface). If these inferior pipes are used, impurities may clog
the expansion valves or capillaries.
Because the pressure of ACs using R410A is higher than those using R22, it is essential that you select materials that are
appropriate for these standards.
The thickness of the copper tubing used for R410A is shown in Table 10. Please be aware that tubing with a thickness of only 0.7
mm is also available on the market, but this should never be used.
Table 10 Copper tube thickness (mm)
Soft pipe
Thickness (mm)
Nominal diameter
Outside diameter (mm)
R410A
(Reference) R22
1/4
6.35
0.80
0.80
3/8
9.52
0.80
0.80
1/2
12.7
0.80
0.80
5/8
15.88
1.00
1.00
11.3.2. Processing and connecting piping materials
Fig. 11 Relation between the flare nut structure and flaring tool end
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Содержание CS-F14DD3E5
Страница 8: ...4 DIMENSIONS 4 1 CS F14DD3E5 CS F18DD3E5 8 ...
Страница 9: ...4 2 CU B14DBE5 CU B18DBE5 9 ...
Страница 10: ...5 REFRIGERATION CYCLE 5 1 CS F14DD3E5 CU B14DBE5 CS F18DD3E5 CU B18DBE5 10 ...
Страница 11: ...6 BLOCK DIAGRAM 6 1 CS F14DD3E5 CS F18DD3E5 6 2 CU B14DBE5 11 ...
Страница 12: ...6 3 CU B18DBE5 12 ...
Страница 13: ...7 WIRING DIAGRAM 7 1 CS F14DD3E5 CS F18DD3E5 13 ...
Страница 14: ...7 2 CU B14DBE5 14 ...
Страница 15: ...7 3 CU B18DBE5 15 ...
Страница 17: ...8 2 Remote control display 17 ...
Страница 18: ...8 3 Remote control panel 18 ...
Страница 85: ...13 TECHNICAL DATA 13 1 Sound data 85 ...
Страница 86: ...86 ...
Страница 87: ...13 2 Sound measurement point 13 2 1 Indoor unit 13 2 2 Outdoor unit 87 ...
Страница 88: ...13 3 Discharge and suction pressure 13 3 1 Saturation temperature of discharge and suction pressure COOLING 88 ...
Страница 89: ...HEATING 89 ...
Страница 91: ...91 ...
Страница 93: ...93 ...
Страница 95: ...13 5 Fan performance 13 5 1 CS F14DD3E5 Fan performance test report Fan performance curve 95 ...
Страница 96: ...13 5 2 CS F18DD3E5 Fan performance test report Fan performance curve 96 ...
Страница 98: ...13 7 Operating characteristics S C Starting Current R C Running Current IPT Power Consumption 98 ...
Страница 99: ...14 REPLACEMENT PARTS 14 1 Indoor unit CS F14DD3E5 CS F18DD3E5 99 ...
Страница 101: ...14 2 Outdoor unit CU B14DBE5 CU B18DBE5 101 ...
Страница 102: ...CU B14DBE5 CU B18DBE5 102 ...
Страница 104: ...15 PRINT PATTERN 15 1 Indoor unit INDOOR UNIT PRINTED CIRCUIT BOARD MAIN 104 ...
Страница 105: ...15 2 Outdoor unit OUTDOOR UNIT PRINTED CIRCUIT BOARD MAIN 105 PHAAM Printed in Malaysia SFYW0605 01 ...