Document 2jVZMQ9MNoXBmpj6Bkz1Ze50r
Heating Ventilating Air Conditioning Guide 1939
random lengths of 16 to 22 ft, although when ordered with plain ends 5 per cent may be in lengths of 12 to 16 ft. Five per cent of the totai number of lengths ordered may be jointers which are two pieces coupled together. Extra-strong pipe is generally furnished with plain ends in random lengths of 12 to 22 ft, although 5 per cent may be in lengths nf 6 to 12 ft. ' In addition to IPS copper pipe, several varieties of copper tubing are in use with either flared or compression couplings or soldered joints. Dimen sions of copper water tubing intended for plumbing, underground water service, fuel-oil lines, gas lines, etc., have been standardized by the U. s Government and the American Society for Testing Materials. There are three standard wall-thickness schedules of copper water tubing classified in accordance with their principal uses as follows:
Class K--Designed for underground services and general plumbing service. Class L--Designed for general plumbing purposes.
Class M--Designed for use with soldered fittings only.
In general, Type K is used where corrosion conditions are severe, arid
Table 2. Nominal Weights of Welded and Seamless Steel Pipe
Nominal
Pipe
8m
Inches
SCHED.
10 Plain Ends
SCHED. 20
Plain Ends
Schedule 30
Plain Ends
Threads and Coup lings
' Schedule 40
Plain Ends
Threads and Coup lings
SCHED. 60
Plain Ends
SCHED. 80
Plain Ends
8ched.
100 Plain Ends
SCHED. 120
Plain Ends
SCHED 140 `
Plain Ends
Scan.
160 Plus
End#
H M %
H 1
1M
2" 2 3 3H 4 5 6 8 10 12 14 O. D. 16 0. D. 18 O. D. 20 O. D. 24 O. D. 30 0. D.
36.8 42.1 47.4 52.8 63.5 99.0
22.4 28.1 33.4 45.7 ,52.3 59.0 78.6 94.7 158.0
24.7* 34.3* 43.8* 54.6 62.6 82.0 105.0 141.0 197.0
0.25* 0.25*
0.32*
0.43* 0.43*
0.54*
0.57* 0.57*
0.74*
0.86* 0.86*
1.09*
1.14* 1.14*
1.48*
1.68* 1.69*
2.18*
2.28* 2.29*
3.00*
2.72* 2.74*
3.64*
3.66* 3.68*
5.03*
5.80* 5.82*
7.67*
7.58* 7.62*
10.3*
9.11* 9.21*
12.5*
10.8* 10.9*
15.0*
14.7* 14.9*
20.8*
19.0* 19.2*
28.6*
25.0* 28.6* 28.8* 35.7. 43.4* 50.9
35.0* 40.5* 41.2* 54.8* 64.4 77.0
45.0* 53.6 55.0 73.2 88.6 108.0
63.3
85.0 107.0 131.0
82.8
108.0 137.0 165.0
105.0
133.0 171.0 208.0
123.0
167.0 209.0 251.0
171.0
231.0 297.0 361.0
19.0 27.1 36.4 60.7 89.2 126.0 147.0 193.0 239.0 297.0 416.0
1.31 1.94 2:85 3.77 4.86 7.45 10.0 14.3
22.6 33.0 45.3 67.8 74.7 105.0 116.0 140.0 161.0 171.0 190.0 224.0 241.0 275.0 304.0 342.0 374.0 484.0 536.0
Weights are given in pounds per linear foot and are for pipe with plain ends except for sizes which art..
commercially available with threads and couplings for which both weights are listed.
*
The weights marked with asterisk in Schedules 30 and 40 are identical with weights for standard-weight pipe former lists; those in Schedules 60 and 80 are identical with weights for extra-strong pipe in former lists.
The Schedule Numbers indicate approximate values of the expression 1000 x P/S.
364
Chapter 18. Pipe, Fittings, Welding
Types L and M where such conditions may be considered normal as, for instance, in heating work. Types K and L are available in both hard and soft tempers; Type M is available only in hard temper. Where flexibility is essential as in hidden replacement work or where as few joints as possible are desired as in fuel-oil lines, the soft temper is commonly used. New.or exposed work generally employs copper pipe of a hard temper. All three classes are extensively used with soldered fittings.
Standard dimensions, weights, and diameter and wall thickness tolerances for these classes of copper tubing are given in Table 5. Copper pipe is also available with dimensions of steel pipe.
Refrigeration lines used in connection with air conditioning equipment also employ copper tubing extensively. For refrigeration use where tubing absolutely free from scale and dirt is required, bright annealed copper tubing that has been deoxidized is used. This tubing is available in a variety of sizes and wall thicknesses.
EXPANSION AND FLEXIBILITY
The increase in temperature of a pipe from room temperature to an operating steam or water temperature 100 F or more above room tem-
Table 3. Dimensions of Welded Wrought-Iron Pipe
Nouinal Pipe Sob
Vs Vt Vs 14 V. l Wi l 'A 2 t)4 3 3K
4.
5 6 8 10 ' 12 14 0. D. 16 0. D. 18 0. D. 20 0. D.
Outside Dumeteb
0.405 0.540 0.67S 0.840 1.050 1.315 1.660 1.900 2.375 2.875 3.5 4.0 4.5 .5.563 6.625 8.625 10.75 12.75 14.0 16.0 18.0 20.0
Nominal Wall Thicknesses fob Schedule Numbers
Schedule 10
......
0.250 0.250 0.250
Schedule 20 '
0.312 0.312 0.312 0.375
Schedule 30
0.283* 0.313* 0.336* 0.375 0.375 0.437 0.500
Schedule 40
0.070* 0.090* 0.093*
o.m*
0.115* 0.136* 0.143* 0.148* 0.158* 0.208* 0.221* 0.231* 0.242* 0.263* 0.286* 0.329* 0.372* 0.414 0.437 0.500 0.562 0.562
Schedule 60
0.510* 0 574 0.625 0.687 0.750
Schedule 80
o nos* n i??* o m* 0 151* 0 157* n i5* 0 105* 0 ?Od* 0 775* n 787* 0 306* 0 575* 0 544* n .58.5* 0 441* n 5in* 0.606 n 70?
0.750
---------wvug o. t (pvcu 111 lacnes.
dimeosiorwand,listed for the respective pipe sires represent their nominal or average wall *Thi ? Inc*U(*e an allowance for null tolerance of 12.o per cent under the nominal rhiVir^^
might
asteruk in Schedules 30 and 40 are identical with thicknesses for standard-
Dipe in former lists1161 ^8ts* t^ose 111 Schedules 60 and 80 are identical with thicknesses for extra-strong
The Schedule Numbers indicate approximate values of the expression 1000 x P/S. .
365