0325913 SPRING JOHNSON
J10ECCD, J10ECDB, J10ECES, J10ECOM, J10ECUE, J10EEIR, J10EENA, J10EESC, J10ELCRA, J15ECCS, J15ECDE, J15ECEC, J15ECOB, J15ECRM, J15ECUD, J15EEIA, J15EENM, J15EESR, VJ14RCCS, VJ14RCCS, VJ14RCEC, VJ14RCEC
SPRING
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Rating:
Compatible models:
BRP JOHNSON entire parts catalog list:
- STEERING HANDLE & THROTTLE CONTROL » 0325913
J10ECES, J10ELCES, J10RCES, J10RLCES, J10SELCES, TJ10ELCES, TJ10RLCES 1989
J10ECOM, J10ELCOM, J10RCOM, J10RLCOM, J10SELCOM 1985
J10ECUE, J10ELCUE, J10RCUE, J10RLCUE, J10SELCUE 1987
J10EEIR, J10ELEIR, J10REIR, J10RELEIR, J10RLEIR, J10SELEIR, TJ10RELEIR 1991
J10EENA, J10ELENA, J10RELENA, J10RENA, J10RLENA, J10SELENA, TJ10RELENA 1992
J10EESC, J10ELESC, J10RELESC, J10RESC, J10RLESC, J10SELESC, TJ10ELESC, TJ10RELESC, TJ10RLESC 1990
J10ELCRA, J10RCRA, J10RLCRA, J10SELCRA 1984
J15ECCS, J15ELCCS, J15RCCS, J15RLCCS 1988
J15ECDE, J15ELCDE, J15RCDE, J15RLCDE 1986
J15ECEC, J15ELCEC, J15RCEC, J15RLCEC, TJ15RLCEC 1989
J15ECOB, J15ELCOB, J15RCOB, J15RLCOB 1985
J15ECRM, J15ELCRM, J15RCRM, J15RLCRM 1984
J15ECUD, J15ELCUD, J15RCUD, J15RLCUD 1987
J15EEIA, J15ELEIA, J15REIA, J15RELEIA, J15RLEIA 1991
J15EENM, J15ELENM, J15RELENM, J15RENM, J15RLENM 1992
J15EESR, J15ELESR, J15RELESR, J15RESR, J15RLESR 1990
VJ14RCCS 1988
VJ14RCCS 1988
VJ14RCEC 1989
VJ14RCEC 1989
Information:
Severe Operation
Severe operation is the use of an engine that exceeds current published standards for the engine. Caterpillar maintains standards for the following engine parameters:
Horsepower
Range of rpm
Fuel consumption
Fuel quality
Altitude
Maintenance intervals
Selection of oil
Selection of coolant
Environmental qualities
InstallationRefer to the standards for your engine or consult your Caterpillar dealer in order to determine if your engine is operating within the defined parameters.Severe operation can accelerate component wear. Engines that are operating under severe conditions may need more frequent maintenance intervals for the following reasons:
Maximum reliability
Retention of full service lifeBecause of individual applications, it is not possible to identify all of the factors which can contribute to severe operation. Consult your Caterpillar dealer about the maintenance that is needed for your specific engine.The following factors can contribute to severe operation: environment, improper operating procedures and improper maintenance practices.Environmental Factors
Extreme Ambient Temperatures
Extended operation in environments that are extremely cold or hot can damage components. Valve components can be damaged by carbon buildup if the engine is frequently started and stopped in very cold temperatures. Extremely hot inlet air reduces the performance capabilities of the engine.Note: See this Operation and Maintenance Manual, "Cold Weather Operation" topic (Operation Section), or see Supplement, SEBU5898, "Cold Weather Recommendations".Cleanliness
Unless the equipment is cleaned regularly, extended operation in a dirty environment and in a dusty environment can damage components. Built up mud, dirt, and dust can encase components. This can make maintenance difficult. The buildup can contain corrosive chemicals. Corrosive chemicals and salt can damage some components.Improper Operating Procedures
Extended operation at low idle
Minimum cool down periods after high load factor operation
Operating the engine beyond the guidelines for the engine rating
Operating the engine at loads that are greater than the rated load
Operating the engine at speeds that are greater than the rated speed
Use of the engine for an application that is not approvedImproper Maintenance Practices
Extension of maintenance intervals
Not using recommended fuel, lubricants, and antifreeze/coolant solutionsOverhaul Information
Reduced hours of operation at full load will result in a lower average power demand. A decreased average power demand should increase both the engine service life and the overhaul interval.The need for an overhaul is generally indicated by increased fuel consumption and by reduced power.The following factors are important when a decision is being made on the proper time for an engine overhaul:
The need for preventive maintenance
The quality of the fuel that is being used
The operating conditions
The results of the S O S analysisNote: Refer to this Operation and Maintenance Manual, "Overhaul (Top)" for further information about the top overhaul.Note: Refer to this Operation and Maintenance Manual, "Overhaul (Major)" for further information about the major overhaul.Oil Consumption as an Overhaul Indicator
Oil consumption, fuel consumption, and maintenance information can be used to estimate the total operating cost for your Caterpillar engine. Oil consumption can also be used to estimate the required capacity of a makeup oil tank that is suitable for the maintenance intervals.Oil consumption is in proportion to the percentage of the rated engine load. As the percentage of the engine load is increased, the amount of oil that is consumed per hour also increases.The oil consumption rate (brake specific oil consumption) is measured in grams per kW/h (lb per bhp). The brake specific oil consumption (BSOC) depends on the engine load. Consult your Caterpillar dealer for assistance in determining the typical oil consumption rate for your engine.When an engine's oil consumption has risen to three times the original oil consumption rate due to normal wear, an engine overhaul should be scheduled. There may be a corresponding increase in blowby and a slight increase in fuel consumption.Overhaul Options
Before Failure Overhaul
To minimize downtime, Caterpillar Inc. recommends a scheduled engine overhaul by your Caterpillar dealer before the engine fails. This will provide you with the best cost/value relationship.Note: Overhaul programs vary according to the engine application and according to the dealer that performs the overhaul. Consult your Caterpillar dealer for specific information about the available overhaul programs and about overhaul services for extending the engine life.A planned overhaul before failure may be the best value for the following reasons:
Costly unplanned downtime can be avoided.
Many original parts can be reused according to the standards for reusable parts.
The engine's service life can be extended without the risk of a major catastrophe due to engine failure.
The best cost/value relationship per hour of extended life can be attained.After Failure Overhaul
If a major engine failure occurs and the engine must be removed from the hull, many options are available. An overhaul should be performed if the engine block or the crankshaft needs to be repaired.If the engine block is repairable and/or the crankshaft is repairable, the overhaul cost should be between 40 percent and 50 percent of the cost of a new engine with a similar exchange core.This lower cost can be attributed to three aspects:
Specially designed Caterpillar engine features
Caterpillar dealer exchange components
Caterpillar Inc. remanufactured exchange components
Severe operation is the use of an engine that exceeds current published standards for the engine. Caterpillar maintains standards for the following engine parameters:
Horsepower
Range of rpm
Fuel consumption
Fuel quality
Altitude
Maintenance intervals
Selection of oil
Selection of coolant
Environmental qualities
InstallationRefer to the standards for your engine or consult your Caterpillar dealer in order to determine if your engine is operating within the defined parameters.Severe operation can accelerate component wear. Engines that are operating under severe conditions may need more frequent maintenance intervals for the following reasons:
Maximum reliability
Retention of full service lifeBecause of individual applications, it is not possible to identify all of the factors which can contribute to severe operation. Consult your Caterpillar dealer about the maintenance that is needed for your specific engine.The following factors can contribute to severe operation: environment, improper operating procedures and improper maintenance practices.Environmental Factors
Extreme Ambient Temperatures
Extended operation in environments that are extremely cold or hot can damage components. Valve components can be damaged by carbon buildup if the engine is frequently started and stopped in very cold temperatures. Extremely hot inlet air reduces the performance capabilities of the engine.Note: See this Operation and Maintenance Manual, "Cold Weather Operation" topic (Operation Section), or see Supplement, SEBU5898, "Cold Weather Recommendations".Cleanliness
Unless the equipment is cleaned regularly, extended operation in a dirty environment and in a dusty environment can damage components. Built up mud, dirt, and dust can encase components. This can make maintenance difficult. The buildup can contain corrosive chemicals. Corrosive chemicals and salt can damage some components.Improper Operating Procedures
Extended operation at low idle
Minimum cool down periods after high load factor operation
Operating the engine beyond the guidelines for the engine rating
Operating the engine at loads that are greater than the rated load
Operating the engine at speeds that are greater than the rated speed
Use of the engine for an application that is not approvedImproper Maintenance Practices
Extension of maintenance intervals
Not using recommended fuel, lubricants, and antifreeze/coolant solutionsOverhaul Information
Reduced hours of operation at full load will result in a lower average power demand. A decreased average power demand should increase both the engine service life and the overhaul interval.The need for an overhaul is generally indicated by increased fuel consumption and by reduced power.The following factors are important when a decision is being made on the proper time for an engine overhaul:
The need for preventive maintenance
The quality of the fuel that is being used
The operating conditions
The results of the S O S analysisNote: Refer to this Operation and Maintenance Manual, "Overhaul (Top)" for further information about the top overhaul.Note: Refer to this Operation and Maintenance Manual, "Overhaul (Major)" for further information about the major overhaul.Oil Consumption as an Overhaul Indicator
Oil consumption, fuel consumption, and maintenance information can be used to estimate the total operating cost for your Caterpillar engine. Oil consumption can also be used to estimate the required capacity of a makeup oil tank that is suitable for the maintenance intervals.Oil consumption is in proportion to the percentage of the rated engine load. As the percentage of the engine load is increased, the amount of oil that is consumed per hour also increases.The oil consumption rate (brake specific oil consumption) is measured in grams per kW/h (lb per bhp). The brake specific oil consumption (BSOC) depends on the engine load. Consult your Caterpillar dealer for assistance in determining the typical oil consumption rate for your engine.When an engine's oil consumption has risen to three times the original oil consumption rate due to normal wear, an engine overhaul should be scheduled. There may be a corresponding increase in blowby and a slight increase in fuel consumption.Overhaul Options
Before Failure Overhaul
To minimize downtime, Caterpillar Inc. recommends a scheduled engine overhaul by your Caterpillar dealer before the engine fails. This will provide you with the best cost/value relationship.Note: Overhaul programs vary according to the engine application and according to the dealer that performs the overhaul. Consult your Caterpillar dealer for specific information about the available overhaul programs and about overhaul services for extending the engine life.A planned overhaul before failure may be the best value for the following reasons:
Costly unplanned downtime can be avoided.
Many original parts can be reused according to the standards for reusable parts.
The engine's service life can be extended without the risk of a major catastrophe due to engine failure.
The best cost/value relationship per hour of extended life can be attained.After Failure Overhaul
If a major engine failure occurs and the engine must be removed from the hull, many options are available. An overhaul should be performed if the engine block or the crankshaft needs to be repaired.If the engine block is repairable and/or the crankshaft is repairable, the overhaul cost should be between 40 percent and 50 percent of the cost of a new engine with a similar exchange core.This lower cost can be attributed to three aspects:
Specially designed Caterpillar engine features
Caterpillar dealer exchange components
Caterpillar Inc. remanufactured exchange components
Parts spring JOHNSON:
0319023
0319023 SPRING, Choke return
10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, BJ10FDLECM, BJ10FDLEDR, BJ10FDLEUA, BJ15FAEDR, BJ15FAEUA, BJ15FDLECM, J10ECCD, J10ECDB, J10ECES, J10ECOM, J10ECSE, J10ECUE, J10EEIR, J10EENA, J10EESC, J1
0318943
0318943 SPRING, Pinion
10E74G, 10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, J10ECCD, J10ECDB, J10ECES, J10ECOM, J10ECSE, J10ECUE, J10EEIR, J10EENA, J10EESC, J10ELCID, J10ELCNS, J10ELCRA, J10ELCTC, J15ECCS, J15ECDE, J15ECEC, J15EC
0320469
0320469 SPRING, Throttle return
10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E74G, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, 2R79A, 4R79D, 6R79E, BJ3REDS, BJ4BREDS, BJ4BREUC, BJ4RDHEDS, J10ECDB, J10ECOM, J10ECSE, J10ELCID, J10ELCNS, J10ELCRA, J10ELCTC, J15ECDE, J15ECIS, J15ECNC, J15ECO
0319808
0319808 SPRING CLIP
115EL77S, 115ESL74B, 115ESL75E, 135ESL74B, 135ESL75E, 70EL76D, 70EL77S, 70ES74M, 70ES75B, 75ELR76D, 75ELR77S, 75ESLR75B, 85EL76D, 85EL77S, 85ESL75E, J35AELCDE, J35AELCUD, J40AELCCS, J40ECDE, J40ECUD, J45RCE, J50BECCS, J50BECDE, J50BECIC, J50BECNR, J5
0320428
0320428 SPRING,Reverse lock rod
10E75C, 10E76G, 10E77A, 10E78M, 10EL79B, 15E75C, 15E76A, 15E77M, 15E78B, 15E79E, BJ10EEDD, BJ10FAEDC, BJ10FAEUR, BJ10FDLECM, BJ10FDLEDR, BJ10FDLEUA, BJ10RELEUS, BJ10RHLSDA, BJ10RHLSOR, BJ10RHLSRC, BJ10RHLSTS, BJ15EEDS, BJ15FAEDR, BJ15FAEUA, BJ15FDLEC
0321734
0321734 SPRING,Choke override
10E76G, 10E77A, 10E78M, 10EL79B, 15E76A, 15E77M, 15E78B, 15E79E, J10ECCD, J10ECDB, J10ECES, J10ECOM, J10ECSE, J10ECUE, J10EEIR, J10EENA, J10EESC, J10ELCID, J10ELCNS, J10ELCRA, J10ELCTC, J15ECCS, J15ECDE, J15ECEC, J15ECIS, J15ECNC, J15ECOB, J15ECRM, J
0323653
0323653 SPRING, Rewind starter
10EL79B, 15E79E, J10ECCD, J10ECDB, J10ECES, J10ECOM, J10ECSE, J10ECUE, J10EEIR, J10EENA, J10EESC, J10ELCID, J10ELCNS, J10ELCRA, J10ELCTC, J15ECCS, J15ECDE, J15ECEC, J15ECIS, J15ECNC, J15ECOB, J15ECRM, J15ECSD, J15ECTR, J15ECUD, J15EEIA, J15EENM, J15E
0511986
0511986 SPRING,Valve
BJ10EEDD, BJ10FAEDC, BJ10FAEUR, BJ10FDLECM, BJ10FDLEDR, BJ10FDLEUA, BJ10RELEUS, BJ115ELEDR, BJ115ELEUA, BJ115GLECM, BJ115PLEEM, BJ115PLSIE, BJ115PLSSB, BJ115TLEDA, BJ130PLEED, BJ130PLSSS, BJ130TLECE, BJ130TLEDM, BJ130TLEUB, BJ135PLSIF, BJ150ELECD, BJ