Document Kj55mbqNaGMLjKyKkXLB0owQ

168 Air Conditioning and Heating Piping Vibration ANACONDA METAL HOSE DIVISION The American Brass Company WATERBURY 20, CONNECTICUT Engineering Data ANACONDA Vibration Eliminators WITH FEMALE ENDS I SEAMLESS FLEXIBLE TIN-BRONZE (98.75% Copper, 1.25% Tin) TUBING. TO FIT COPPER TUBE Actual O.D. *4 lA % Nom. u C % % Vfc *4 % V* % a4 IV1 1 1% 1*4 1% 2% 2 2% 2*4 3% 3 3% 3% 4yt 4 5 6 8% 8 Flexible TUBING I.D. 34 `4 v,, % xh Vi % % i 1V U4 2 2`4 3' 3Vt 4 5 6 8 H4 7 1)4 3X 9 9X to 11X UX 13 14K * 17 20 24 27 32 33 41 49 62 DIMENSIONS (See Drawing Above) A Max. B Max. X *6 *6 X %X KH 1 iX l \X 1X IX 1H IX IX IX 2X 2X 2X IX 3>4 SX SX sx 4X 4X 5 SX sx 6 6X ix ix 8X 9X tox EV4 X X X X X l IX IK ix ix 2 2X 3 SX 4. 4K SX 6X 7 FOR SUCTION AND DISCHARGE LINES Part No. U.L. No. () 36I8F I418F 5614F M-36 (UL) M-14 (UL) M-56 (UL) 3838F 1212F 12S8F M-38 (UL) M-12 (UL) M-12 (UL) 3458F 3434F 1010F M-34 (UL) M-34 (UL) M-10 (UL) 5454F 6464F 2020F M-54 (UL) M-54 (UL) M-20H (UL) 5252F 3034F 7272F M-52H (UL) M-30 (UL) M-72 (UL) 4040F 5050F 6460F 8080F M-40 (UL) --_ ----- . Flexible TUBING % % % 8 *4 *4 1*4 iA 2A 3 FOR APPLICATIONS UP TO 300 PSI (1) 3618F I4I8F 56I4F M-36 (UL) M-14 (UL) M-S6 (UL) 3838F I212F I258F M-38 (UL) M-12 (UL) M-12 (UL) 3458F 3434F I010F . M-34 (UL) M-34 (UL) M-10 (UL) 5454F 6464F 2020F M-54 (UL) M-64 (UL) M-20H (UL) S252F M-S2H (UL) 3030FH ::-M-30H (UL) FOR APPLICATIONS UP TO 400 PSI (2) Part No. U.L. No. (*) 3618FX 1418FX 5614FX M-36 (UL)X M-14 (UL)X M-56 (UL)X FOR APPLICATIONS UP TO 450 PSI (3) Part No- U.L. No. O 3618FY I418FY 56I4FY M-36 (UL)Y M-!4 (UL)Y . M-56' (UL)Y FOR APPLICATIONS UP TO 500 PSI (4) Part No. U.L. No. () 3618FZ I418FZ 5614FZ M-36 (UL)Z M-14 (UL)Z M-56 (UL)Z 3838FX 12I2FX 1258FX M-38 (UL)X M-12 (UL)X M-12 (UL)X 3838FY 1212FY 1258FY M-38 (UL)Y M-12 (UL)Y M-12 (UL)Y 3838FZ 1212FZ 1256FZ M-38 (UL)Z M-12 (UL)Z M-12 (UL)Z 3458FX 3434FX 1010FX M-34 (UL)X M-34 (UL)X M-10 (UL)X 3458FY 3434FY 1010FY M-34 (UL)Y M-34 (UL)Y M-10 (UL)Y 3458FZ 3434FZ I010FZ M-34 (UL)Z M-34 (UL)Z M-10 (UL)Z 5454FX M-54 (UL)X 5454FY M-54 (UL)Y NOTES ON APPLICATION COLUMNS; Pressure relief device setting (PSI) Pressure Limiting device cut-out (PSI) < 330 or less 300 or less 5454FZ (2) 440 or less 400 or jess M-54 (UL)Z (3) 500 or less 450 or less (4) 560 or less 500 or less GENERAL NOTES I.D. of copper tube ends for depth *' K" meets ASA Std. B|6. 18-1950 and ASA Bl6.22-1951. Braid: sizes through IX* I.D. have one signal-bronze (98.24% Copper'; 1.75% Tin; 6.01% Phosphorus) braid covering. Q 2* I.D. and larger are double-braided with signal-bronze wire for extra strength and protection. 3*-3030FH and all larger Vibration Eliminators are soldered under the ferrules after welding. () Underwriters' Laboratories (U.L.) number on ferrule may appear with prefix " W" instead of " M". Copper tube ends on sixes above 3' are commercial parts and " E" and " H" may exceed tolerances shown. Vibration Eliminators are also available with male aids. Write for specifications. Also write for general catalog on Anaconda hose assemblies. Air Conditioning and .Healing Piping Copper tad Copper & Brass Research Association 420 Lexington Avenue, New York 17, N. Y. 169 The two most common types of solder used in joining copper tube are 50-50 tin-lead solder and 95-5 tin-antimony solder. 50-50 solder is generally used for moderate pressures with tem peratures up to 250 F. For all temperatures up to 250s F where higher strengths are required, the 95-5 solder should be used. In general, 95-5 solder melts at a higher temperature than docs 50-50, has less of a pasty range, and is therefore somewhat more difficult to handle, particularly for a vertical joint to be filled upward. The fluxes best suited to the 50-50 and 95-5 soldera are in paste form and consist of a petrolatum-base, impregnated with zinc and ammonium chlorides. It should not be the function of the flux to clean the copper, but assuming that the copper has been cleaned the flux may be reasonably expected to remove resi dues of oxide, in addition to protecting the surfaces from oxida tion during the heating process. The flux also floats out the remaining oxides ahead of the molten solder and promotes wetting action of the solder. In general, paste-type fluxes are recommended rather than liquid fluxes. 1. cleaning tube end 2. cleaning fitting socket 7. applying solder 8. removing surplus solder and flux It cannot be too strongly emphasized that for strong, tight, long lasting joints, thorough cleaning of the tube surface and the inside of the cup of the fitting is of utmost importance. Pretinning is not necessary and generally is oot recommended if the metal is properly cleaned and fluxed. Fittings that are oversize will result in a loose fit. The capillary action is dependent on a fairly tight fit although a certain amount of looseness can be tolerated. Looseness is more apt to cause difficulties in working with the larger size copper tube, especially for horizontal joints where an oversize fitting may allow the tube to rest directly on the socket, resulting in a double width space at the top. Wherever possible, such joints should be made up in a verti cal position, before assembly. For best results always use fittings conforming to accepted standards. Making up a joint There are six simple steps that, when followed, will result in a well-made joint. These steps should be taken after first measuring the tube to proper length so that it will run the full length of the socket of the fitting, cutting the tube end squarely and removal of all small burrs. 1. Clean tube end and socket of fitting. 3. Apply flux to the clean areas. 3. Assemble. 4. Apply heat and solder. 5. Remove residual solder and flux. 6. Allow joint to cool. Safe Strength of Soldered Joints Pressure Roiings ^ Solder used m Joints Urvira Temperatures Deg. F Maximum Service Pressure, PSI Water) Vi to 1 in. lad.* 114 to 2 In. Ind.* 2 to 4 in. Ind.* 50-50 Ttn-leod** 100 200 175 ISO 150 150 125 100 200 100 90 75 250 B5 75 50 95-5 Tin-Antimony 100 500 400 300 150 400 350 275 200 300 250 200 250 200 175 150 Brozing Filler Melal melting at ar above 1000 Fft 250 300 210 170 350 270 190 155 Standard copper-volar tuba size* *ASTM B32. Allay grade S0A tl&duding refrigerants and other nan-corrative liquids and gases ttASTM 0260, Brazing Filler Metal