0315081 BUSHING JOHNSON
100ESL71A, 100ESL72R, 100ML79S, 115EL77S, 115ESL69E, 115ESL70D, 115ESL73M, 115ESL74B, 115ESL75E, 115ETZ78C, 115ML79R, 125ESL71C, 125ESL72R, 135ESL73M, 135ESL74B, 135ESL75E, 140ML78C, 140ML79R, 50ES72C, 50ES73R, 50ES75B, 50R79C, 55E76E, 55E77D, 55E78S
BUSHING
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Compatible models:
100ESL71A
100ESL72R
100ML79S
115EL77S
115ESL69E
115ESL70D
115ESL73M
115ESL74B
115ESL75E
115ETZ78C
115ML79R
125ESL71C
125ESL72R
135ESL73M
135ESL74B
135ESL75E
140ML78C
140ML79R
50ES72C
50ES73R
50ES75B
50R79C
55E76E
55E77D
55E78S
55E79C
65ES73R
70EL76D
70EL77S
70ES74M
70ES75B
75ELR76D
75ELR77S
75ESLR75B
85EL76D
85EL77S
85ESL69E
85ESL70B
85ESL71A
85ESL72R
85ESL73M
85ESL74B
85ESL75E
85ETLR78C
85ML79R
BJ25ARECA
BJ25AREDC
BJ25AREUR
BJ25PL3EEM
BJ25PL3SIE
BJ25PL3SSB
BJ35ARECR
BJ35AREDS
BJ35AREEA
BJ35AREUC
BJ35E3SIE
BJ35E3SSB
BJ40EECR
BJ40EEDS
BJ40EEEA
BJ40EEUC
BJ40ELSIF
BJ40ELSSM
BJ50BEEDS
BJ50EEER
BJ50ELSIF
BJ50ELSSA
BJ50ESECC
BJ50RLEUC
HJ55WMLM
HJ55WMLZ
J100MLCSC
J100WMLCOC
J100WMLCRS
J110MLCDC
J115MLCIH
J115MLCNB
J115MLCOS
J115MLCRD
J115MLCSA
J115MLCTE
J140MLCIH
J140MLCNB
J140MLCSA
J140MLCTE
J140TLCRD
J25JRTSSS
J30JREEM
J30JRSIE
J30JRSSB
J35AELCDE
J35AELCUD
J40AELCCS
J40ECDE
J40ECEC
J40ECOB
J40ECRM
J40ECUD
J40EEIA
J40EENJ
J40EEOD
J40EERE
J40EESR
J40EETB
J40JRECA
J40JREDC
J40JREOS
J40JREUR
J40PLSNF
J40PLSOC
J40PLSRS
J40PLSTD
J40RLSNF
J40RLSOC
J40RLSRS
J40RLSTD
J45RCE
J45RCEIA
J45RCENM
J45RCESR
J48ESLCCC
J48ESLCER
J48ESLCUS
J48ESLEDC
J48ESLEIM
J48ESLENB
J48ESLEOS
J48ESLERD
J48ESLESA
J48ESLETE
J50BECCS
J50BECDE
J50BECEC
J50BECIC
J50BECNR
J50BECOB
J50BECRM
J50BECTA
J50BECUD
J50BEEIA
J50BEENJ
J50BEEOD
J50BEERE
J50BEESR
J50BEETB
J50ECSR
J50PLSNF
J50PLSOC
J50PLSRS
J50PLSTD
J50TELCEC
J55RCIM
J55RLCSA
J55RSLN
J55RWLCRD
J55RWLE
J55RWLEIA
J55RWLENM
J55RWLESR
J60ECIA
J60ECNM
J60ECSR
J60ECTB
J60ELCOD
J60ELCRE
J65RWLCDR
J65RWLCOC
J65RWLCRS
J85MLCSA
J90MLCDC
J90MLCIH
J90MLCNB
J90MLCOS
J90MLCRD
J90MLCTE
SJ40RSLD
SJ40RSLR
SJ40RSLZ
JOHNSON
BRP JOHNSON entire parts catalog list:
- EXHAUST HOUSING » 0315081
100ML79S, 100TLR79S, 100TXLR79S 1979
115EL77S, 115ETL77 1977
115ESL69E, 115ESL69S 1969
115ESL70D 1970
115ESL73M 1973
115ESL74B, 115ETL74B 1974
115ESL75E, 115ETL75E 1975
115ETZ78C, 115ML78C, 115TXL78C 1978
115ML79R, 115TL79R, 115TXL79R 1979
125ESL71C 1971
125ESL72R 1972
135ESL73M 1973
135ESL74B, 135ETL74B 1974
135ESL75E, 135ETL75E 1975
140ML78C, 140TL78C, 140TX78C 1978
140ML79R, 140TL79R, 140TXL79R 1979
50ES72C, 50ESL72C, 50R72C, 50RL72C 1972
50ES73R, 50ESL73R, 50R73R, 50RL73R 1973
50ES75B, 50ESL75B 1975
50R79C, 50RL79C 1979
55E76E, 55EL76E 1976
55E77D, 55EL77D 1977
55E78S, 55EL78S 1978
55E79C, 55EL79C 1979
65ES73R, 65ESL73R 1973
70EL76D 1976
70EL77S 1977
70ES74M, 70ESL74M, 70ESLR74M 1974
70ES75B, 70ES75E, 70ESL75B, 70ESL75E 1975
75ELR76D, 75ER76D 1976
75ELR77S, 75ER77S 1977
75ESLR75B, 75ESR75B 1975
85EL76D, 85EL76G, 85ETLR76D, 85ETLR76G 1976
85EL77S, 85ETLR77S 1977
85ESL69E, 85ESL69M, 85ESL69S 1969
85ESL70B, 85ESL70D 1970
85ESL71A, 85ESL71H 1971
85ESL72R 1972
85ESL73M 1973
85ESL74B 1974
85ESL75E 1975
85ETLR78C, 85ML78C, 85TXLR78C 1978
85ML79R, 85TL79R, 85TXL79R 1979
BJ25ARECA, BJ25ARLECA, BJ25KECA, BJ25KLECA, BJ25QLECA, J25KLECA, J25QLECA, J25RMECA, J25RMLECA, J25TKECA, J25TKLECA 1998
BJ25AREDC, BJ25ARLEDC, BJ25KEDC, BJ25KLEDC, BJ25QLEDC, J25KLEDC, J25QLEDC, J25RMEDC, J25RMLEDC, J25TKEDC, J25TKLEDC 1996
BJ25AREUR, BJ25ARLEUR, BJ25KEUR, BJ25KLEUR, BJ25QLEUR, J25KLEUR, J25QLEUR, J25RMEUR, J25RMLEUR, J25TKEUR, J25TKLEUR 1997
BJ25PL3EEM, J25PL3EEM, J25R3EEM, J25RL3EEM, J25TEL3EEM 1999
BJ25PL3SIE, BJ25VL3SIE, J25PL3SIE, J25R3SIE, J25RL3SIE, J25RV3SIE, J25RVL3SIE, J25TEL3SIE, J25TVL3SIE, J25VL3SIE 2001
BJ25PL3SSB, J25PL3SSB, J25R3SSB, J25RL3SSB, J25TEL3SSB 2000
BJ35ARECR, BJ35ARLECR, BJ35KECA, BJ35KLECA, BJ35QLECA, J35KLECA, J35QLECA, J35TKLECA 1998
BJ35AREDS, BJ35ARLEDS, BJ35KEDC, BJ35KLEDC, BJ35QLEDC, HJ35RMLEDC, J35KLEDC, J35QLEDC, J35RMLEDC, J35TKLEDC 1996
BJ35AREEA, BJ35E3EEM, BJ35EL3EEM, BJ35KEEM, BJ35PL3EEM, J35E3EEM, J35EL3EEM, J35PL3EEM, J35R3EEM, J35RL3EEM, J35TEL3EEM 1999
BJ35AREUC, BJ35ARLEUC, BJ35KEUR, BJ35KLEUR, BJ35QLEUR, HJ35RMLEUR, J35KLEUR, J35QLEUR, J35RMLEUR, J35TKLEUR 1997
BJ35E3SIE, BJ35EL3SIE, BJ35EV3SIE, BJ35EVL3SIE, BJ35PL3SIE, BJ35VL3SIE, J35PL3SIE, J35R3SIE, J35RL3SIE, J35RV3SIE, J35RVL3SIE, J35TEL3SIE, J35TVL3SIE, J35VL3SIE 2001
BJ35E3SSB, BJ35EL3SSB, BJ35PL3SSB, J35PL3SSB, J35R3SSB, J35RL3SSB, J35TEL3SSB 2000
BJ40EECR, BJ40ELECR, BJ40TLECR, J40ELECR, J40RECR, J40RLECR, J40TEECR, J40TELECR, J40TLECR, J40TTLECR 1998
BJ40EEDS, BJ40ELEDS, BJ40TLEDS, HJ40REDS, HJ40RLEDS, J40ELEDS, J40REDS, J40RLEDS, J40TEEDS, J40TELEDS, J40TLEDS, J40TTLEDS, SJ40EEDS, SJ40REDS, SJ40RLEDS 1996
BJ40EEEA, BJ40ELEEA, BJ40PLEEA, J40PLEEA, J40REEA, J40RLEEA, J40TPLEEA 1999
BJ40EEUC, BJ40ELEUC, BJ40TLEUC, HJ40REUC, HJ40RLEUC, J40ELEUC, J40REUC, J40RLEUC, J40TEEUC, J40TELEUC, J40TLEUC, J40TTLEUC 1997
BJ40ELSIF, BJ40ESIF, BJ40PLSIF, J40PLSIF, J40RLSIF, J40RSIF, J40TPLSIF 2001
BJ40ELSSM, BJ40ESSM, BJ40PLSSM, J40PLSSM, J40RLSSM, J40RSSM, J40TPLSSM 2000
BJ50BEEDS, BJ50BELEDS, BJ50TLEDS, J50JEDS, J50TLEDS 1996
BJ50EEER, BJ50ELEER, BJ50PLEEA, BJ50RLEEA, J50ELEER, J50PLEEA 1999
BJ50ELSIF, BJ50ESIF, BJ50PLSIF, BJ50RLSIF, J50ELSIF, J50PLSIF, RJ50ELSIF 2001
BJ50ELSSA, BJ50ESSA, BJ50PLSSM, BJ50RLSSM, J50ELSSA, J50PLSSM 2000
BJ50ESECC, BJ50RLECR, BJ50TLECR, BJ50TSLECC, J50ESLECC, J50TLECR, J50TSLECC, X50ESLECC 1998
BJ50RLEUC, BJ50TLEUC, BJ50TSLEUS, J50ESLEUR, J50JEUC, J50TLEUC, J50TSLEUS 1997
HJ55WMLM 1996
HJ55WMLZ 1997
J100MLCSC, J100TRLCSC, J100TRXCSC 1980
J100WMLCOC, J100WTLCOC 1985
J100WMLCRS, J100WTLCRS 1984
J110MLCDC, J110TLCDC, J110TLCDF 1986
J115MLCIH, J115MLCIM, J115TLCIH, J115TLCIM, J115TXCIH, J115TXCIM 1981
J115MLCNB, J115TLCNB, J115TXCNB 1982
J115MLCOS, J115TLCOS 1985
J115MLCRD, J115TLCRD, J115TXCRD 1984
J115MLCSA, J115TLCSA, J115TXCSA 1980
J115MLCTE, J115TLCTE, J115TXCTE 1983
J140MLCIH, J140MLCIM, J140TLCIH, J140TLCIM, J140TXCIH, J140TXCIM 1981
J140MLCNB, J140TLCNB, J140TXCNB 1982
J140MLCSA, J140TLCSA, J140TXCSA 1980
J140MLCTE, J140TLCTE, J140TXCTE 1983
J140TLCRD, J140TXCRD 1984
J25JRTSSS 2000
J30JREEM 1999
J30JRSIE 2001
J30JRSSB 2000
J35AELCDE, J35ARLCDE 1986
J35AELCUD, J35ARLCUD 1987
J40AELCCS, J40ARLCCS, J40ATLCCS, J40ECCS, J40ELCCS, J40RCCS, J40RLCCS, J40TECCS, J40TELCCS, J40TLCCS, J40TTLCCS 1988
J40ECDE, J40ELCDE, J40RCDE, J40RLCDE, J40TECDE, J40TELCDE, J40TLCDE 1986
J40ECEC, J40ELCEC, J40RCEC, J40RLCEC, J40TECEC, J40TELCEC, J40TLCEC, J40TTLCEC, TJ40ELCEC 1989
J40ECOB, J40ELCOB, J40RCOB, J40RLCOB, J40TECOB, J40TELCOB 1985
J40ECRM, J40ELCRM, J40RCRM, J40RLCRM, J40TECRM, J40TELCRM 1984
J40ECUD, J40ELCUD, J40RCUD, J40RLCUD, J40TECUD, J40TLCUD 1987
J40EEIA, J40ELEIA, J40REIA, J40RLEIA, J40TEEIA, J40TELEIA, J40TLEIA, J40TTLEIA, TJ40ELEIA, VJ40EEIA, VJ40ELEIA, VJ40TELEIA, VJ40TLEIA 1991
J40EENJ, J40EENM, J40ELENJ, J40ELENM, J40RENM, J40RLENM, J40TEENJ, J40TEENM, J40TELENJ, J40TELENM, J40TLENJ, J40TLENM, J40TTLENM, TJ40ELENJ, TJ40ELENM, VJ40EENJ, VJ40EENM, VJ40ELENJ, VJ40ELENM, VJ40TELENJ, VJ40TELENM, VJ40TLENJ, VJ40TLENM 1992
J40EEOD, J40ELEOD, J40REOD, J40RLEOD, J40TEEOD, J40TELEOD, J40TLEOD, J40TTLEOD 1995
J40EERE, J40ELERE, J40RERE, J40RLERE, J40TEERE, J40TELERE, J40TLERE, J40TTLERE 1994
J40EESR, J40ELESR, J40RESR, J40RLESR, J40TEESR, J40TELESR, J40TLESR, J40TTLESR, TJ40ELESF, TJ40ELESR, TJ40TELESF, TJ40TELESR, VJ40EESR, VJ40ELESR, VJ40TELESR, VJ40TLESR 1990
J40EETB, J40ELETB, J40RETB, J40RLETB, J40TEETB, J40TELETB, J40TLETB, J40TLETF, J40TTLETB, J40TTLETF, TJ40ELETB, VJ40EETB, VJ40ELETB, VJ40TELETB, VJ40TLETB, VJ40TLETF 1993
J40JRECA 1998
J40JREDC 1996
J40JREOS 1995
J40JREUR 1997
J40PLSNF 2002
J40PLSOC 2005
J40PLSRS 2004
Information:
Electric
The controller requires electric signals to its 4 solenoid coils to determine which notch position (1, 2, 3, 4, 5, 6, 7 or 8) the operator is selecting.Pneumatic
The controller uses air pressure (or lack of air pressure) in Bimba pancake cylinders to extend or collapse the cylinders.Mechanical
The controller cylinders are stacked and assembled in a way to move the lever that turns the speed shaft of the governor when various cylinders are extended or collapsed. Refer to Control Logic,in this instruction, for an example of the logic used to change the eight notch American Association of Railroads (AAR) code to a binary code.EIGHT NOTCH CONTROLLER MECHANICAL ADJUSTMENTS
5R7598 Control Group Low idle (also notch 1) and notch 8 are the only true adjustments possible with this control. Intermediate notches can change slightly with different starting points for notch 1, but most applications will not require attention to the middle notches.If the axis of stud (1) and its rod end (2) are perpendicular to governor control rod (3) at its mid point travel:* Then rpm steps between notches will be roughly equal to each other.If this perpendicular situation exists at notch 1 position:* Then lower notch steps will be larger than upper notch steps:If the situation exists at notch 8:* Then upper notch steps will be larger than lower notch steps. Before adjusting rod and lever lengths make certain the rod ends that face each other between Bimba cylinders (4) and (5), 3.18 mm (0.125 in) stroke and 6.35 mm (0.250 in) stroke, are tightened properly. Two open end wrenches may need grinding off to be thin enough to tighten this joint.Adjustments
The choice of spline indexing between governor control rod (3) and governor shaft can be made with considerations in the above NOTE.1. Turn engine switch to the OFF position.2. Remove bolt (6), nut (7) and washer (8) and check hole alignment between governor control rod (3) and rod end (2) at both idle and notch 8.The governor control rod (3) can be used as a handle and manually moved to both ends of its travel.The Bimba cylinders (4), (5), (9) can be extended.* WITH air pressure to all three (to simulate notch idle and 1) .. and* WITHOUT air pressure to all three (to simulate notch idle and 1). This can be done with engine STOPPED or at low idle.If locomotive control stand is connected and air system is charged, then the cab controller can be used to extend the Bimba cylinders to check hole alignment.3. If holes line up properly, no further adjustment is necessary.4. Reinstall bolt (6), nut (7) and washer (8).5. If holes do not line up, make whichever of the following adjustments as required: The total stroke, 22.23 mm (0.875 in), of the Bimba cylinders CANNOT be changed. Refer to Eight Notch Controller Bimba Cylinder Lengths,in this instruction, for an example of the cylinder lengths at selected notch positions.If total Bimba stroke is too SHORT:* The governor control rod (3) must be turned clockwise (in 1/2turn increments) for a shorter lever armIf total Bimba stroke is too LONG:* The governor control rod (3) must be turned counterclockwise (in 1/2turn increments) for a longer lever arm. The following step, adjusting fixed length of Bimba package, can be done while engine is running for final fine tuning of either idle or notch 8Stud (1) can be turned into or out of rod end (2) to achieve the proper starting point (notch idle) or proper ending point (notch 8).An infinite number of adjustments are available here instead of the in comparison to the 1/2turn increments used on the governor control rod.Make the adjustments by loosening nut (10) and using flats on rod from Bimba cylinder (9) to turn stud (1)..Final setting should be such that total stroke (dimension) of the Bimba cylinders is slightly greater than required. This is to ensure that the Bimba cylinders will not be controlling either low idle or high idle but stops inside the Woodward 3161 governor will control low idle and high idle.EIGHT NOTCH CONTROLLER BIMBA CYLINDER LENGTH COMBINATIONS
EIGHT NOTCH CONTROLLER ELECTRICAL ADJUSTMENTS
The Controller and Woodward 3161 governor do not control excitation of the generator on any of these locomotives.However, older Westinghouse and General Electric D.C. traction machines are generally furnished with a 3 field exciter or else use a split pole excitation design.If equipped with a 3 field exciter or split pole excitation design the generator characteristic curve is sufficiently hyperbolic to approximate the engine horsepower capability and so special load control governing is NOT required.Initial adjustments are required however, and even though in operation the excitation is fixed, taps on the fixed resistors can be moved during load bank testing for proper horsepower utilization at all ground speeds. Refer to Excitation System Schematic,in this instruction for an example of the excitation system and the resultant characteristic curve.EXCITATION SYSTEM SCHEMATIC
Several iterations back and forth between a high voltage situation (high ground speed simulation) and a high current situation (low ground speed simulation) are generally required when doing the load bank test and commissioning a locomotive. The main items to remember during this iterative process are:NEVER adjust the self field when trying to change the high amp end of the characteristic curve (the battery field's duty on that end) .. andNEVER alter the battery field when adjusting the high voltage portion of the characteristic curve (the self field's duty on that end).Each adjustment does effect both ends of the curve but adjustments must be made on the most effective contributor to a specific portion of the curve.Generally the battery field adjusts the level and the self field adjusts the slope of the characteristic curve.CONTROL LOGIC
The following chart is an example of the logic used to change the eight notch American Association of Railroads (AAR) code to a binary code.
The controller requires electric signals to its 4 solenoid coils to determine which notch position (1, 2, 3, 4, 5, 6, 7 or 8) the operator is selecting.Pneumatic
The controller uses air pressure (or lack of air pressure) in Bimba pancake cylinders to extend or collapse the cylinders.Mechanical
The controller cylinders are stacked and assembled in a way to move the lever that turns the speed shaft of the governor when various cylinders are extended or collapsed. Refer to Control Logic,in this instruction, for an example of the logic used to change the eight notch American Association of Railroads (AAR) code to a binary code.EIGHT NOTCH CONTROLLER MECHANICAL ADJUSTMENTS
5R7598 Control Group Low idle (also notch 1) and notch 8 are the only true adjustments possible with this control. Intermediate notches can change slightly with different starting points for notch 1, but most applications will not require attention to the middle notches.If the axis of stud (1) and its rod end (2) are perpendicular to governor control rod (3) at its mid point travel:* Then rpm steps between notches will be roughly equal to each other.If this perpendicular situation exists at notch 1 position:* Then lower notch steps will be larger than upper notch steps:If the situation exists at notch 8:* Then upper notch steps will be larger than lower notch steps. Before adjusting rod and lever lengths make certain the rod ends that face each other between Bimba cylinders (4) and (5), 3.18 mm (0.125 in) stroke and 6.35 mm (0.250 in) stroke, are tightened properly. Two open end wrenches may need grinding off to be thin enough to tighten this joint.Adjustments
The choice of spline indexing between governor control rod (3) and governor shaft can be made with considerations in the above NOTE.1. Turn engine switch to the OFF position.2. Remove bolt (6), nut (7) and washer (8) and check hole alignment between governor control rod (3) and rod end (2) at both idle and notch 8.The governor control rod (3) can be used as a handle and manually moved to both ends of its travel.The Bimba cylinders (4), (5), (9) can be extended.* WITH air pressure to all three (to simulate notch idle and 1) .. and* WITHOUT air pressure to all three (to simulate notch idle and 1). This can be done with engine STOPPED or at low idle.If locomotive control stand is connected and air system is charged, then the cab controller can be used to extend the Bimba cylinders to check hole alignment.3. If holes line up properly, no further adjustment is necessary.4. Reinstall bolt (6), nut (7) and washer (8).5. If holes do not line up, make whichever of the following adjustments as required: The total stroke, 22.23 mm (0.875 in), of the Bimba cylinders CANNOT be changed. Refer to Eight Notch Controller Bimba Cylinder Lengths,in this instruction, for an example of the cylinder lengths at selected notch positions.If total Bimba stroke is too SHORT:* The governor control rod (3) must be turned clockwise (in 1/2turn increments) for a shorter lever armIf total Bimba stroke is too LONG:* The governor control rod (3) must be turned counterclockwise (in 1/2turn increments) for a longer lever arm. The following step, adjusting fixed length of Bimba package, can be done while engine is running for final fine tuning of either idle or notch 8Stud (1) can be turned into or out of rod end (2) to achieve the proper starting point (notch idle) or proper ending point (notch 8).An infinite number of adjustments are available here instead of the in comparison to the 1/2turn increments used on the governor control rod.Make the adjustments by loosening nut (10) and using flats on rod from Bimba cylinder (9) to turn stud (1)..Final setting should be such that total stroke (dimension) of the Bimba cylinders is slightly greater than required. This is to ensure that the Bimba cylinders will not be controlling either low idle or high idle but stops inside the Woodward 3161 governor will control low idle and high idle.EIGHT NOTCH CONTROLLER BIMBA CYLINDER LENGTH COMBINATIONS
EIGHT NOTCH CONTROLLER ELECTRICAL ADJUSTMENTS
The Controller and Woodward 3161 governor do not control excitation of the generator on any of these locomotives.However, older Westinghouse and General Electric D.C. traction machines are generally furnished with a 3 field exciter or else use a split pole excitation design.If equipped with a 3 field exciter or split pole excitation design the generator characteristic curve is sufficiently hyperbolic to approximate the engine horsepower capability and so special load control governing is NOT required.Initial adjustments are required however, and even though in operation the excitation is fixed, taps on the fixed resistors can be moved during load bank testing for proper horsepower utilization at all ground speeds. Refer to Excitation System Schematic,in this instruction for an example of the excitation system and the resultant characteristic curve.EXCITATION SYSTEM SCHEMATIC
Several iterations back and forth between a high voltage situation (high ground speed simulation) and a high current situation (low ground speed simulation) are generally required when doing the load bank test and commissioning a locomotive. The main items to remember during this iterative process are:NEVER adjust the self field when trying to change the high amp end of the characteristic curve (the battery field's duty on that end) .. andNEVER alter the battery field when adjusting the high voltage portion of the characteristic curve (the self field's duty on that end).Each adjustment does effect both ends of the curve but adjustments must be made on the most effective contributor to a specific portion of the curve.Generally the battery field adjusts the level and the self field adjusts the slope of the characteristic curve.CONTROL LOGIC
The following chart is an example of the logic used to change the eight notch American Association of Railroads (AAR) code to a binary code.
Parts bushing JOHNSON:
0312708
0312708 BUSHING,Starter
100ML79S, 115ETZ78C, 115ML79R, 140ML78C, 140ML79R, 150TL79C, 175TL79R, 200TL79A, 235TL70A, 4R69B, 4R70E, 4R71D, 4R72S, 4R73C, 4R74R, 4R75A, 4R76M, 4R77B, 4R78E, 50ES72C, 50ES73R, 50ES74M, 50ES75B, 50R79C, 55E76E, 55E77D, 55E78S, 55E79C, 65ES73R, 70EL
0308532
0308532 BUSHING
100ESL71A, 100ESL72R, 100ML79S, 115EL77S, 115ESL69E, 115ESL70D, 115ESL73M, 115ESL74B, 115ESL75E, 115ETZ78C, 115ML79R, 115TXL77S, 125ESL71C, 125ESL72R, 135ESL73M, 135ESL74B, 135ESL75E, 140ML77S, 140ML78C, 140ML79R, 150TL78S, 150TL79C, 175TL77S, 175TL7
0304765
0304765 BUSHING,Shift rod
10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, 20R69B, 20R70C, 20R71S, 20R72R, 20R73A, 25E72R, 25E73A, 25E74M, 25E75B, 25E76E, 25E77S, 25E78C, 25E79R, 25R69B, 25R70C, 25R71S, 33E69A, 33E69A, 33E70M, 3
0315094
0315094 BUSHING
100ESL71A, 115ESL69E, 115ESL70D, 125ESL71C, 150TL78S, 175TL77S, 175TL78C, 200TL76S, 200TL77C, 200TL78R, 235TL78R, 85ESL69E, 85ESL70B, 85ESL71A, CJ275TLCDC, CJ275TLCOS, CJ300TLCDC, CJ300TLCOS, J120TLAEM, J120TLAIE, J120TLASB, J120TLCCA, J120TLCDC, J12
0315101
0315101 BUSHING
100ESL71A, 100ML79S, 115ESL69E, 115ESL70D, 115ESL73M, 115ETZ78C, 115ML79R, 125ESL71C, 135ESL73M, 140ML78C, 140ML79R, 25E77S, 25E78C, 25E79R, 35E76G, 35E77C, 35E78R, 35E79A, 50ES71S, 50ES72C, 85ESL69E, 85ESL70B, 85ESL71A, 85ESL73M, 85ETLR78C, 85ML79R,
0318208
0318208 BUSHING, Shift lever
115EL77S, 115ESL73M, 115ESL74B, 115ESL75E, 115TXL77S, 135ESL73M, 135ESL74B, 135ESL75E, 140ML77S, 85EL77S, 85ESL73M, 85ESL74B, 85ESL75E, 85TXLR77S
0387157
0387157 BUSHING ASSY.,Prop.
150TL78S, 150TL79C, 175TL77S, 175TL78C, 175TL79R, 200TL76S, 200TL77C, 200TL78R, 200TL79A, 235TL70A, 235TL78R, BJ115ELEDR, BJ115ELEUA, BJ115GLECM, BJ115PLEEM, BJ115PLSIE, BJ115PLSSB, BJ130PLEED, BJ130PLSSS, BJ130TLECE, BJ130TLEDM, BJ130TLEUB, BJ135PLS
0329291
0329291 BUSHING, Swivel bracket
BJ40EECR, BJ40EEDS, BJ40EEEA, BJ40EEUC, BJ40ELSIF, BJ40ELSSM, BJ50BEEDS, BJ50EEER, BJ50ELSIF, BJ50ELSSA, BJ50ESECC, BJ50RLEUC, J105WELEEN, J105WELSIF, J105WELSSC, J105WRLEES, J105WRLSIF, J105WRLSSC, J115JKLEOC, J115JKLERS, J25JRTSSS, J30JREEM, J30JRS