Document wD6bk4GdK0jg3eaNb79G70QBE

E6000 i.--, - V\ : *, 'vjy` rx ^ .. < 1 5 :. .,< , -Ar-\': PvC" \ *> Y \,r A r;.,,: % ' xU' ... . c Vs & ELEMENT ASSEMBLY Revised 15 October 1982 PLAINTIFF'S EXHIBIT 9 ^//Lfih FAW 13178 COMPONENT PARTS FOR E TYPE ELEMENTS ITEM DESCRIPTION 1 Complete Element Assembly 2 Housing Half 3 Housing Half w/Valve Hole 4 Tube 5 Torque Bar* . 6 Friction Shoe Assembly 7 Release Spring 8 Tube Stem Nut 9 Replacement Friction Blocks & Rivets 1 * Nuts required for VE Elements see Parts List Page S. FAW 13179 I OPERATION A. DESCRIPTION B. HOW IT WORKS The Airflex type "E" element assemblies are air actuated, radially expanding units, primarily designed for slip clutch and tension brake applications; however, they are also suited for medium speed cyclic operation and high acceleration loads. The Airflex type "E" element is available with two different friction shoe designs. The type "VE" element is available with one friction shoe design. The design features of the friction shoe assemblies are illustrated below. The neoprene rubber and cord actuating tube (4) is the primary moving part in the Airflex type "E" element assembly. When air pressure is introduced to the element assembly, the tube expands radially. This causes the release springs (7) to compress and the friction shoes (6)tomakecontactwiththefriction drum. The frictional force or torque is controlled by tl-ra-;,, amount of applied air pressure, i.e. at 50 psig ;an V element will have twice the torque it would have; at 25 psig. \ ,,f When the air pressure is releasedvjor decreased, the release springs assure total apd positive retraction of the friction shoes (6). , - 'T Torque is transmitted from the friction shoes to the torque bars (5) and itb^the housing halves (Z' & 3) of the assembly., f Type "E" used for light duty slip applications. The maximum recommended, gir pressure is 11 O psig for cyclic applications^.^Qipsig for air cooled slip application^arid 3Q.p&igfor water cooled slip applica tions. ,fc?mitty/m air pressure is 5 psig on ail slip applications! /'* Vv/ Type ventilate applications. "E" used Th.e'Airflex t2:E4T5 element offers a unique feature . withl'the use of lock-out bars. These are pins which ./slide througM the housings and friction shoes and / prevent" tfie shoes from making contact with the frichpn? drum. This feature allows the use of higher, mqreycbntrolabfe air pressure when lower torque for medium dutyH slip Sis required. k.*' NOTE: When using lock-out bars, shoes must be locked out in pairs and always diametrically opposite. The type "E" element assembly is available .dual, mounted for greater -torque and thermal capacity. A variety of mounting components for either clutch or brake applications are available. C. ELEMENT ADJUSTMENT , The airflex type "E" elements require no adjustment or lubrication. The flexibility of the rubber tube com pensates for friction shoe wear and there is no metal to metal contact such as mechanical linkage, springs, gears, etc. to require lubrication. 11. INSTALLATION Caution Air inflation of the Airflex element tube with out a frieddp-drum in place may cause permanent dam age to. tHe element. A.. MOUNTING The element must be inserted squarely onto the hub register and the mounting bolts equally torqued. The element must be properly centered within the friction drum so as to provide adequate running clearance. B. ALIGNMENT Good alignment is essential for optimum clutch per formance and consistency. Misalignment results in vibration and preloaded bearing, gears and other machine components. These factors reduce the service life of other machine components considerably. To extend the service life of machine components, we recommend the closest possible alignment. FAW 13180 C. AIR SYSTEM Typical control systems shown on page 4. I he Airflex rotorseal is designed to give trouble-free service under the most severe conditions, without requiring special attention. 1. AIR PIPING Pneumatic piping should be free of foreign material such as pipe dope, metal chips, etc. Pipe ends should be reamed after cutting to prevent reductions of effective pipe diameter. Selecting the proper size of pipe and valve is very important for proper operation in cyclic applications. Keep the number of 90 elbows amf sharp bends to a minimum and avoid the use of stioet elbows in piping. . Due to the extreme accuracy and close tolerance on internal parts, considerable care is required when rebuilding rotorseals in the field. Many customers consider the rotorseal as a disposable item since a replacement is relatively inexpensive. See operation and maintenance instructions per table 1. ..Undersized pipe or air system components will cause sluggish response, and may contribute to accelerated wear of friction lining. Air line lubricators are not required for the Airflex element and, if used, should be of the nonadjustable mist type. ' Rotorseal Type AA2, B2, 03, C2 RH Maintenance and . Service Instructions 0S9O1O R;S9030 AD, BD, FDA . RS9040 \ 2. AIR TANK BT , ./ V--,: ,059070 For elements operating on rapid cyclic duty an air accumulator tank with pressure regulator and gauge TABLE 1 is recommended except in those cases where the installation may be near a large supply line.. Always install the pressure regulator in the supply line to the tank and provide a drain at the bottom for blowing off condensation which may accumulate in the system. 5.QUICK RELEASE VA.LYE The air tank also serves as an excellent filter. The ^.rff|ex qyick* Release valve is a quick dump 3. CONTROL VALVES ing .:a|r v,valve i.deveidped for instantaneous release of .air.,ff;om element; The quick release valve contains Thd*controlling air valve should be mounted as close S ; pfunger'assembly which is designed to function or? to the element as possible. For cyclic applications, a) differential m air pressure, controlled by the sole- the solenoid air valve should be a three-way pilot- ' noid valve, it is very important that each quick release operated poppet type. If you have special cortfro?: valve*exhaust freely. If it fails to exhaust or seal, the problems, our Engineering Department will -ubriiit .pnd-'cap should be removed, the plunger cleaned and recommendations upon request. M4 th/e " internal surface of the housing wiped out. The plunger would be lubricated with light lube oil and 4. AIRFLEX ROTORSEAL . t" . `reassembled. See. operation and maintenance instruc Air to operate a clutch is usually introduced intg tffef end of the shaft through the Airflex,rotorseal/ Whifch must be connected with a seotion^of flexible air hose. Rigid piping to the rotorsp^ wiJJ. fend' to pre load the bearings. Air to operate" a brake'is usually introduced directly to the inLet yalve on'Th^ element. tions QRV9080. . Exhaust noise from the quick release valve can be reduced by using a muffler which is available as an optional feature. With the muffler the noise energy level can be reduced by 90%. This is well below specifications of the Walsh-Healy Act. =V-V * TYPICAL CONTROL SYSTEMS CLUTCH (A) FOR MANUAL OPERATION WITH MODULATING VALVE HOTORSEAL MODULATING TYPE VALVE i^O !' M' EXHAUST PRESSURE REGULATdR' v WITH GAUGE V, "" Vf '"Xm/; ... SUPPLY ; , FT'Tf. " ois'}' (B) FOR MANUAL OPER^ON Witfe/ HAND ON .6 OFF -VALVE /*' J .v ROTORSEAL ,.<^Vv'sv o ,* "i. /- / A !/ LEXISLE FLQW <-au?%6 H0SE VALVE I ? ; y:Yr'-;-. <' VALVE *S - (ONLY IF' REQUIRED)*" ' =Np " - ii.>s .. QN ffoFF PRESSURE REGULATOR WITH GAUGE -EXHAUST AIR SUPPLY V*-' 4^ FOR ELECTRO-PNEUMATIC OPERATION WITH C.SOLENOIP VAIVE. ' ? |IT% :J L * i> -RQTORSEAL v %t. , HANO PUSH BUTTON O 3 WAY NORMALLY CLOSED j SOLENOIO VALVE STATION ' PRESSURE REGULATOR WITH GAUGE FLOW CONTROL VALVE (ONLY IF REQUIRED)* =80= EXHAUST * Use valve with free flow in exhaust direction. 4 FAW 13182 111, MAINTENANCE A. POINTS TO CHECK WHEN INSPECTING THE > AlRfLEX ELEMENT: 1) The wear and condition of the friction shoe assemblies* See Figure E for wear gap measurement. See Table 3 for max imum allowable gap. See Table 2 for minimum lining thickness. a) If the friction linings are glazed, this condition can be corrected by sanding the friction lining to remove the glaze. Linings that have been worn to the minimum allowable thickness should be replaced. MOLDED BLOCK E SERIES ELEMENT SIZE MINIMUM ALLOWABLE UNJ6 THICKNESS tin.) MAXIMUM ALLOWABLE KM ON DfOJK DIA. (IN.) 1ZE47S .688 .094 14E475 . Thro 27F.475 .812 .094 . 30E600 t 34F600 ' 1.062 .094 40E700 .125 4) Oil or grease on the friction surface. a) If oil or grease accidentally gets on a clutch actuating element, the oil or grease should be wiped off with a cloth dampened with gasoline or naptha, and then wiped dry. If friction shoes have been contaminated, they should be re moved and cleaned. (See instructions below for friction shoe replacement.) For light contam ination, Fuller's Earth may be used to remove . grease dr oil from the friction lining surface. If the lining is saturated with oil or grease, a sol- * ' vent such as VM and P Naptha .pr Petroleum Ether should be used to degrease.the lining. .; A cloth dampened with the solvent .may .be, used to wipe the grease off the jinihg, or tfid friction shoe assembly may be dipp&d into the solvent. Severely saturated linjngs may. have to be re placed. j" ' Caution: The recommended solvents are flam mable and should bte used withthe proper safety precautions.; ; -> ; 5) Friction shoes'dd not tetractv' a) Contamination &t the "quick release valve may nqt iperrhit complete air exhausting of the tube. nbti.alfbw the shoes to retract properly. .fnpect::;qyicK^release valve, see paragraph 5 %' page 3^.: fj' VENTILATED E SERIES 12E475 .032 .094 14E475 Thru 34E60Q ' .188 .094 40F700 .18A .125 19VE475 24VE475 27VE475 SERIES .250 .094 * .188 ;:-H094 .188 TABLE ; '':%N.094 . / 4 \ b) If felea^e springs are broken, shoes will not l ' retract properly. To replace broken springs, : follow instructions under Replacement of Friction ; Shoes. |f the element is exposed to severe contaminaV; tion, a deposit may form. This can prevent the friction shoes from retracting. To correct this condition, the friction shoes must be removed(per instructions below) and deposits cleaned off. d) Heat curing of the rubber can harden the actu ating -tube-so much-that--it actually-resists proper friction shoe retraction. If a tube is in this condition, it must be replaced. NOTE: The number preceding letters vE' or VE in the element size designates^.the .original'"drum diameter in inches. f ,< V 6} Leaks in the air lines or in the rotorseal. a) Repair as necessary. EXAMPLE: 14E475--Original -Drum Diameter = 14 inches. MaximuJh.allowable^rum Dia. is 14"+3/32" = 14-3/32*% / 2) The condition df the friction surface of the drum. (See table 2)v ` a) If the dnjrrt surface is badly grooved or worn, the,,brface may be remachined. The minimum drum ` diameter should not exceed the wear ^hown in table 2. V:' . .-ST/ Xhe condition of the rubber tube. (Ref. paragraph J 5d below), a) If there are air bubbles or signs of ply separa tion on the tube, the tube must be replaced. B. REPLACEMENT OF FRICTION SHOES AND ' RELEASE SPRINGS Friction shoes should be replaced or relined when the friction material has worn down to the minimum allowable lining thickness shown in table 2. Excessive lining wear may cause the release springs to break and may also result in scoring of the friction drum surface. REPLACEMENT OF RELEASE SPRINGS Procedure: Place blade of screwdriver on the end of the release spring. By striking the screwdriver with a hammer, the spring is pushed through the slot and out the opposite side. It can then be grasped and pulled out- 5 NOTE: Any element assembly with 60# springs has two springs (installed piggy-back) per friction shoe assembly. To install, insert replacement spring into the appropriate slot with the curved part toward the tube (see cut away view on Page 1). Drive the spring into the slot until the dimple on the spring seats into the hole in the backing plate. Expand rivets by driving pin flush with head of rivet as shown. ` REPLACEMENT OF FRICTION SHOES Remove release springs (see `above). With the springs removed the friction shoes will slide out easily. A screwdriver may be required when removing the first shoe. The rest of the shoes should slide out easily. It is not necessary to remove torque bars. NOTE: When the friction shoes are removed, the rubber tube is exposed and should be visually in spected and all foreign material removed. It Is not necessary to pse fop. hard a blow since rivet drives easily^ \ The following is a description of the three different friction shoe assemblies shown on page 2. A) Style "E" The friction block is bonded and screwed to a metal backing plate. The entire assembly must be replaced as a unit- 2) Removal of block (where''wedge-type rivets are used) to removereplacement blocks drive pin out of rivet, a'^.shqwn/'arici-either shear off with sharp single-bevel chiseror drill out rivet with 1/4" drill. Install .n'eyv'blocks ask instructed in Step No. 2. . * .* T. - Tpassemble^'VE'' friction Blocks. _ B) Style "Ventilated E" and "VE" , __ The friction block is riveted to the backing p1ate> Replacement friction blocks and rivets are available. gTlOTEf'Goc^rich RIVNUT Header tool is required. Obtain r- from-? local Goodrich RIVNUT supplier or from the factory**Airflex part number is 1 53X38. To replace friction blocks only, follow the steps .4.) place new friction block on backing plate. outlined below. . * 'h IMPORTANT: New rivets are furnished mihreplacefnent friction blocks. - % .... V*'1 Step A 1) Remove old block by fshearing: offupset portion of rivet with a sharp, singVe.irevel chisel. A dull chisel will distort rivet and mutilate holes ip backing plate. 2) Remove rivets amfbfock. . * 3) Clean all foreign matter from backing plate. To assemble "Ventilate E" friction shoes 1) Fastening mew biock (with wedge-type rivets) lay on new; block'and insert all wedge-type rivets. Clamp block tightly to backing plate being sure that backing plate is^vfciacked up" on curved surface so that the backing.pfate lip is not bent out of shape. 2) Using B.F. Goodrich Rivnut Header (available from Airflex Plant) select one of Rivnuts furnished with new block and engage all threads of the Rivnut on the pull-up stud. (See Fig. C). Hold hex nut and rotate by hand the Allen bolt with hex counter sunk hole (called the jack screw) until head of rivnut is snug against shoulder on tool. Insert Rivnut through hole in one corner of friction block and backing plate. 6 FAW 13184 3) Place Allen wrench in socket of jack screw and hold stationary. Turn-hex (Fig. D) in clockwise direction with a wrench while holding Rivnut Header at right angle to the work. Power is best applied through angle shown. , . 4) Turn the nut Until firm resistance indicates complete upset of the Rrvnut. Approx. 1 to 1-3/4 turns wifi be required. 5) Break nut loose with counterclockwise movement of end wrench. Remove both wrenches from the tool. 6) Remove tool from Rivnut by revolving entire tool in counterclockwise direction. 7) Repeat above operation with successive Rivnuts working diagonally from corner to corner, and then following in like fashion between the two remaining corners. Then fill In any remaining holes. - 8) Repeat on remaining friction shoes until the entire set has been refined. To install new or relined friction shoe assembly, reverse disassembly procedure. E element - IV REPLACEMENT OF ACTUATION TUBE The type "E" elements are available with either a continuous or butt end tube. The butt end tube is a "wrap-around" style which can be installed without having to remove element from the shaft. To remove tube, disassemble springs, friction shoes and torque bars. Split the element halves. Remove tube stem nut. Remove tube. Clean both housing halves thoroughly!! To assemble, reverse the above procedure. V NOTE: The tube stem nut should be torqCied to 55#ftr''0. In any correspondence regarding Airflex equipment, always refer to size {diameter and\width of ffittion surface) and serial number stampqijton pm of element near air entry hole. .;> % Calf or write Eaton Corporation, Industrial D/ives Divi sion, Airflex Plant, 9919'Cfintoh Roacfc Cleveland, Ohio 44144. r* " ALLOWABLE FRICTION HATERIAL/PRUH WEAR TABLES WEAR INDICATOR- SAP ', 7- FIGURE E VEfflTLATED EX7RUDD\-,;V ALUMINUM BACKING % PLATE TYPE PSA..:' STANDARD MOLDED BLOCK STEEL BACKING PLATE TYPE PSA TABkf^' 4; UNIT SIZE 12E475 14E475 16E475 19E475 21.5E47S 24E475 27F475 3OF600 34E600 40F700 WEAR INDICATOR GAP AT MAXIMUM ALLOWABLE WEAR CONDITION (INCH) AIR APPLIED * UNIT FULLY ENGAGED WITH DRUM VENTILATED EXTRUDED AL B/P TYPE FSA ' STANDARD MOLDED BLOCK 1TPE FSA .08 .17 .18 .22 .14 .18 .18 .23 .19 .24 .23 .27 .17 .21 .02 .10 .02. .10 -ID 7 .17 BACKING PUTE VIEWED THROUGH'SPRING SLOT WINDOW" (AIR ENGAGED CONDITION) NOTE: WEAR INDICATOR GAPS INCREASE WITH FRICTION MATERIAL/DRUM WEAR. THEREFORE, INDICATOR GAPS OF LESS THAN THE ABOVE TABULATED VALUES ARE ACCEPTABLE FOR CONTINUED OPERATION* WHEREAS, WHEN INDICATOR GAPS ARE EQUAL 70 M GREATER THAN THE ABOVE TABULATED VALUES. THE FRICTION LININGS HUST BE REPLACED. FAW i H 2 -i LU 2 LU LU 8 FAW 13186 Hiiimbtrin Parenthesis IndicatesQuantity fot Complete Element. jfr}JiimhA| trtAn"M< OnJrthfv Airflex* Form ML-318 Revised March 15, 1980 ... ^ V' 5- "A * V\ AA-- EATON PRODUCT WARRANTY Eaton warrants to the Purchaser that each new Airflex Product or part manufactured to be delivered hereunder will be free from defects in material, workmanship and title, and will deliver its rated ca pacity provided such Product is properly cared for, operated under normal conditions and with com petent supervision. If it appears within 12 months from the date of shipment, that the Product de livered hereunder does not meet the warranties specified above and the Purchaser notifies Eaton promptly, Eaton shall thereupon correct any defect, including non-conformance with the specifications, at its option, either by repairing any defective part.or parts or by making available at Eaton's plant ^re paired or replacement part. The liability of Eaton to the Purchaser (except as to title) arising Out of the supplying of said Product, or its use, whether on% warranty, contract or otherwise, shall not in any* case exceed the cost of correcting delects ip tile Product as herein provided and upon the expiration of said 12 months, all such liability; shall terminate. The foregoing shall, constitute,ttie sple remedy of the Purchaser and the'sole liabilityof'"Eaton. LIMITATION DF WARRANTY THE FOREGOING WARRANTY IS EXCLUSIVE AND IN LIEU OF: ALL OTHER WARRANTIES WHETHER WRITTlftu'6RAtrOR IMPLIED. ANY IMPLIED WAR RANTS QF^MERCHANTABILITY OR FITNESS PARTICULAR PURPOSE ARE .SPECIFI CALLY M^tjUbED. ( in no event shall Eaton be liable for special or consequential damages. Eaton's liability or any other claim br loss or liability arising out of or connected wifh this contract, or the manufacture, sale, delivery, resale or use of any units covered by this contract (including, but not limited to, loss or liability arising from breach of contract) shall in no case exceed the unit price for such equipment or part thereof in volved in the claim, except as provided in the above. .. M- ' W i , Vv >'r>. ;f:' PowerTransmission Systems Eaton Corporation Industrial Drives Operations Airflex Division Cleveland, Ohio 44144 . PRINTED IN U.SJU.