Document 32opNpzM6bd6K91mgO7B52wa

596 CHAPTER 26 1952 Guide Fittings for copper pipe of /PiS dimensions are available in screwed or soldered types of connection. Table 5. from ASA Standard A40.3-1941 contains dimensions for soldered joint elbows, tees, crosses, and 45 deg elbows. ' ..... - The compression type fitting is generally limited to smaller size tubing, while the flared and soldered types are used in both large and small sizes. An American Standard, A<SA A40.2-1936 has been prepared to stand ardize dimensions for brass fittings for flared copper water tubes. Flared tube fittings are widely used in refrigerating work where S.A.E. dimensions Table 8. ` American Standard Dimensions fob Butt-Welding Elbows, Tees, Caps, and Lapped-Joint Stub Ends, ASA B16.9-1940 Nominal Pot 8m [ Outbids '' Dumzteb 90-Deg i Elbows A Ccntsb-to-End 45^Deg Elbows B Of Ron Tee ; C*. i \a tyt 2 2K 3 3K 4 5 6 8 10 12 ; i.3i5 1.660 < 1.900 2.375 ! 2.875 3.500 . 4.000 4.500 5.563 6.625 8625 10.750 12.750 \K % mi 2A m 3m 3% ; m 4K 2 3% 2A 6 2K 7K 3K 9 3% 12 5 15 6Vi18 7K m `VA 2A m 3 3A 3% m 5% 7 8A 10 ,CaP8 m m IK IK 2 2K 2K 3 3K 4 5 6: LapfedJoint Stub Ends Length 4 .4 4 6 6 6 6 6 8 8 8 10 10 Radius of Fillet rR Diam. of fcr K As A Mb k. % % 3ie Ke : Mi K= K 2 2K 2% 3`A 4K 5 SK 6As 7As 8K 10 % 12A - 15 All dimensions given in inches. * Thft'diTnt>TMnrm of welding tees cover those which have side outlets from one Bise less than half thesize of the run-way opening of the tees to full size. b Dimensions E and F are applicable only to these fittings in schedules up to and including Schedule 80, ASA Standard B36.10-1939. The shape of these caps shall be ellipsoidal and shall conform to the requirements of the AJ3.MJ3. Boiler Construction Code. d This dimension is for standard machined facings in accordance with*American Standard for Steel Pipe Flanges Flanged FittingB (ASA B16e-1939). The back face of the lap shall be machined to conform to the surface of the flange on which it seats. Where ring joint facings are to be applied, use dimension K as given in ASA B16e-1939. and a 45-deg flare render most fittings interchangeable, although for re frigeration use, thread fits and tolerances on thread gages must be main tained-within close limits. Brass fittings with S.A.E. dimensions are not interchangeable with the American Standard fittings for water tubes. Ammonia pipe fittings made of cast-iron were formerly used extensively in handling refrigerants in large installations. Replacement of; ammonia by other refrigerants operating at lower pressures has seriously curtailed the market for these fittings. For this reason formulation of an American Standard for these fittings was abandoned by the ASA in 1936. Pipe, Fittings, Welding .597 FLANGE FACINGS AND GASKETS A number of different flange facings in common use are plain face, raised face, tongue and groove, and male and female. Cast-iron fittings for 125 psi and below are normally furnished with a plain face, while the 250 lb cast-iron fittings are supplied with a A-in. raised face. The standard facing for steel flanged fittings for 150 and 300 psi is a A-in. raised face, although these fittings are obtainable with a variety of facings. The gasket surface of the raised face may be finished smooth or may be machined with concentric or spiral grooves often referred to as serrated face or phonograph finish, respectively. The dimensions of elbows, tees, and crosses for 125 lb cast-iron screwed fittings are given in Table 6, whereas the dimensions for 125 lb cast-iron flanged fittings are given in Table 7. For low temperature service not to exceed about 220 F, a number of paper or vegetable fiber gasket materials will prove satisfactory; for plain raised face flanges, rubber or rubber inserted gaskets are commonly em ployed. Asbestos composition gaskets are probably the most widely used, particularly where the temperature exceeds 250 F. Jacketed asbestos and . metallic gaskets may be used for any pressure and temperature conditions, but preferably only with a narrow recessed facing.. WELDING Erection of piping in heating and ventilating installations by means of fusion welding has been commonly accepted in the past few years, as an alternate method to the screwed and flanged joint. Since the question of economy of welding as against the use of screwed and flanged fittings is dependent on the individual job, the use of welding is generally recom mended on the basis of a greatly reduced cost of maintenance and. repair, of less weight resulting from the use of a lighter-weight pipe, and of increased economy in pipe insulation, hangers, and supports rather than on the basis of any economy that'might be effected in actual erection by welding on low to medium pressure heating jobs. Fusion welding, commonly used in erection of piping, is defined as the process of joining metal parts in the molten, or molten and vapor states, without the application of mechanical pressure or blows. Fusion welding embraces gas welding and electric arc welding, both of which are commonly' used to produce acceptable welds. Welding processes and procedure are described in various publications. Welding application requires the same basic knowledge of design as do the other types of assembly, but, in addition, requires a generous know ledge of the sciences involved, particularly as to welding qualities of metal, their reaction to extremely high temperatures, and the ability- to determine and use only the best quality welding rods. This requirement applies equally to employer and employee, with the employer accepting all of the responsibility. Thus the employer should select his welding mechanics with good judgment, provide them with first-class equipment and tools, arrange for their training and use of acceptable workmanship standards, and at regular intervals subject their work to prescribed tests. Rules for fusion welding of pipe joints, the qualification of welding operators, welding procedures and the testing thereof, are contained in the Standard Manual on Pipe Welding of the Heating, Piping & Air Con ditioning Contractors National Association., and in publications of other groups.8-4-5 In general, the wall thickness and chemical analysis of the