192287 Washer Volvo.Penta
230A; 230B; 250A, 251A, AQ115A; AQ115B; AQ130, AQ145A; BB145A, AQ145B, AQ151A; AQ151B; AQ151C, AQ171A; AQ171C, D70B; D70B PP; D70B K, MD120A; MD120AK; TMD120A, MD1B; MD2B; AQD2B, MD5A; MD5B; MD5C, MD6; MD6A; MD6B, TD120AHC; TD120ARC; TAD120AHC, TD120
Washer
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All States Pulley - Vertical Unloader Auger Jackshaft fits Case IH 1644 1666 1688 2144 2166 2188 2344 2366 2577 2588 1640 1660 1680 2377 1660 2388 1994762C2 1994762C1 1994762C3 AV100367
All States Compatible with Case IH Combine(s) 1640 (s/n: JJC0097103-later), 1644, 1660 (s/n: JJC0102897-later), 1660 (s/n: JJC0038346-later), 1666, 1680 (s/n: JJC0115352-later), 1688, 2144, 2166, 2188, 2344, 2366, 2377 (s/n: HAJ0292001-later), 2388 (s/n: JJC0276540-earlier, s/n: HAJ0292001-later), 2577, 2588 || Replaces Case IH OEM Number(s) 1994762C2, 1994762C1, 1994762C3 || Replaces Mfg Number(s) AV100367
All States Compatible with Case IH Combine(s) 1640 (s/n: JJC0097103-later), 1644, 1660 (s/n: JJC0102897-later), 1660 (s/n: JJC0038346-later), 1666, 1680 (s/n: JJC0115352-later), 1688, 2144, 2166, 2188, 2344, 2366, 2377 (s/n: HAJ0292001-later), 2388 (s/n: JJC0276540-earlier, s/n: HAJ0292001-later), 2577, 2588 || Replaces Case IH OEM Number(s) 1994762C2, 1994762C1, 1994762C3 || Replaces Mfg Number(s) AV100367
$382.99
20-05-2024
7.0[3.15] pounds
US: Newport Fasteners
#4 (#3 Head) x 1/4" High Low Style Thread Forming Screws/Unslotted/Hex Washer Head/Steel/Zinc (Carton: 10,000 pcs)
Newport Fasteners Hex Washer Unslotted High Low || Self Tapping Screws || Head dimensions often differ from standard tapping screws || Case Hardened to Rockwell C45-50 (Core Hardness: Rockwell C28-36) || Fully Threaded
Newport Fasteners Hex Washer Unslotted High Low || Self Tapping Screws || Head dimensions often differ from standard tapping screws || Case Hardened to Rockwell C45-50 (Core Hardness: Rockwell C28-36) || Fully Threaded
Compatible models:
230A; 230B; 250A
251A
AQ115A; AQ115B; AQ130
AQ145A; BB145A
AQ145B
AQ151A; AQ151B; AQ151C
AQ171A; AQ171C
D70B; D70B PP; D70B K
MD120A; MD120AK; TMD120A
MD1B; MD2B; AQD2B
MD5A; MD5B; MD5C
MD6; MD6A; MD6B
TD120AHC; TD120ARC; TAD120AHC
TD120HPP; TID120HPP
TD70G; TD70G-83; TD70GPP
TID120FPP; TID120FG; TD120G
Volvo.Penta
Volvo Penta entire parts catalog list:
- Fuel System » 192287
AQ115A; AQ115B; AQ130; AQ130A; AQ130B; AQ130C; AQ130D; AQ165A; AQ170A; AQ170B; AQ170C; AQD21A; BB115A; BB115B; BB115C; BB165A; BB170A; BB170B; BB1
AQ145A; BB145A
AQ145B
AQ151A; AQ151B; AQ151C
AQ171A; AQ171C
D70B; D70B PP; D70B K; TD70B
- Fan-and Belt Protection with Inst- Allation Components, Generator
- Fan-and Belt Protection with Installation Components
MD1B; MD2B; AQD2B; MD3B
MD5A; MD5B; MD5C
MD6; MD6A; MD6B; MD7; MD7A; MD7B
TD120AHC; TD120ARC; TAD120AHC; TD120BHC; TD120BRC; TAD120BHC; TAD120CHC; TD120AHC/CC; TD120ARC/CC
TD120HPP; TID120HPP
TD70G; TD70G-83; TD70GPP; TD70GPP-83; TID70G; TID70GPP; TID70GG; TD70GG; TD70GG-83
- Lubricating System, Standard Model: A
- Lubricating System, Standard Model: B
- Lubricating System, Standard Model
- Lubricating System, Angle of Inclination 10°
- Lubricating System, Angle of Inclination 10°
- Lubricating System, Angle of Inclination 40°: A
- Lubricating System, Angle of Inclination 40°: B
- Lubricating System, Angle of Inclination 40°
Information:
Turbocharger Failure
Personal injury can result from air pressure.Personal injury can result without following proper procedure. When using pressure air, wear a protective face shield and protective clothing.Maximum air pressure at the nozzle must be less than 205 kPa (30 psi) for cleaning purposes.
If a turbocharger failure occurs, remove the air-to-air aftercooler core. Internally flush the air-to-air aftercooler core with a solvent that removes oil and other foreign substances. Shake the air-to-air aftercooler core in order to eliminate any trapped debris. Wash the aftercooler with hot, soapy water. Thoroughly rinse the aftercooler with clean water and blow dry the aftercooler with compressed air. Blow dry the assembly in the reverse direction of normal air flow. To make sure that the whole system is clean, carefully inspect the system.
Do not use caustic cleaners to clean the air-to-air aftercooler core.Caustic cleaners will attack the internal metals of the core and cause leakage.
Aftercooler Core Leakage
Illustration 1 g01524518
FT-1984 Aftercooler Testing Group
(1) Regulator and valve assembly
(2) Nipple
(3) Relief valve
(4) Tee
(5) Coupler
(6) Aftercooler
(7) Dust plug
(8) Chain
(9) Dust plug A low-power problem in the engine can be the result of aftercooler leakage. Aftercooler system leakage can result in the following problems:
Low power
Low boost pressure
Black smoke
High exhaust temperature
Remove all air leaks from the system to prevent engine damage. In some operating conditions, the engine can pull a manifold vacuum for short periods of time. A leak in the aftercooler or air lines can let dirt and other foreign material into the engine and cause rapid wear and/or damage to engine parts.
A large leak of the aftercooler core can often be found by making a visual inspection. To check for smaller leaks, use the following procedure:
Disconnect the air pipes from the inlet and outlet side of the aftercooler core.
Dust plug chains must be installed to the aftercooler core or to the radiator brackets to prevent possible injury while you are testing. Do not stand in front of the dust plugs while you are testing.
Install couplers (5) on each side of the aftercooler core. Also, install dust plugs (7) and (9). These items are included with the FT-1984 Aftercooler Testing Group. Note: Installation of additional hose clamps on the hump hoses is recommended to prevent the hoses from bulging while the aftercooler core is being pressurized.
Do not use more than 240 kPa (35 psi) of air pressure or damage to the aftercooler core can be the result.
Install the regulator and valve assembly (1) on the outlet side of the aftercooler core assembly. Also, attach the air supply.
Open the air valve and pressurize the aftercooler to 205 kPa (30 psi). Shut off the air supply.
Inspect all connection points for air leakage.
The aftercooler system pressure should not drop more than 35 kPa (5 psi) in 15 seconds.
If the pressure drop is more than the specified amount, use a solution of soap and water to check all areas for leakage. Look for air bubbles that will identify possible leaks. Replace the aftercooler core, or repair the aftercooler core, as needed.
To help prevent personal injury when the tooling is removed, relieve all pressure in the system slowly by using an air regulator and a valve assembly.
After the testing, remove the FT-1984 Aftercooler Testing Group. Reconnect the air pipes on both sides of the aftercooler core assembly. Air System Restriction
Pressure measurements should be taken at the air inlet elbow and at the turbocharger outlet.Use the differential pressure gauge of the 1U-5470 Engine Pressure Group. Use the following procedure in order to measure the restriction of the aftercooler:
Connect the vacuum port of the differential pressure gauge to a port in the air inlet elbow.
Connect the pressure port of the differential pressure gauge to a port in the turbocharger outlet.
Record the value.
Air flow is at a maximum level.
Total air pressure drop of the charged system exceeds 15 kPa (4.5 in Hg).If a restriction is discovered, proceed with the following tasks, as required:
Clean
Repair
ReplacementDynamometer Test
In hot ambient temperatures, chassis dynamometer tests for models with an air-to-air aftercooler can add a greater heat load to the jacket water cooling system. Therefore, the jacket water cooling system temperature must be monitored. The following measurements may also need a power correction factor:
Inlet air temperature
Fuel API rating
Fuel temperature
Barometric pressureWith dynamometer tests for engines, use the FT-1438 Aftercooler Gp (DYNAMOMETER TEST). This tool allows the water-cooled aftercooler to control the inlet air temperature to 43 °C (110 °F).
Personal injury can result from air pressure.Personal injury can result without following proper procedure. When using pressure air, wear a protective face shield and protective clothing.Maximum air pressure at the nozzle must be less than 205 kPa (30 psi) for cleaning purposes.
If a turbocharger failure occurs, remove the air-to-air aftercooler core. Internally flush the air-to-air aftercooler core with a solvent that removes oil and other foreign substances. Shake the air-to-air aftercooler core in order to eliminate any trapped debris. Wash the aftercooler with hot, soapy water. Thoroughly rinse the aftercooler with clean water and blow dry the aftercooler with compressed air. Blow dry the assembly in the reverse direction of normal air flow. To make sure that the whole system is clean, carefully inspect the system.
Do not use caustic cleaners to clean the air-to-air aftercooler core.Caustic cleaners will attack the internal metals of the core and cause leakage.
Aftercooler Core Leakage
Illustration 1 g01524518
FT-1984 Aftercooler Testing Group
(1) Regulator and valve assembly
(2) Nipple
(3) Relief valve
(4) Tee
(5) Coupler
(6) Aftercooler
(7) Dust plug
(8) Chain
(9) Dust plug A low-power problem in the engine can be the result of aftercooler leakage. Aftercooler system leakage can result in the following problems:
Low power
Low boost pressure
Black smoke
High exhaust temperature
Remove all air leaks from the system to prevent engine damage. In some operating conditions, the engine can pull a manifold vacuum for short periods of time. A leak in the aftercooler or air lines can let dirt and other foreign material into the engine and cause rapid wear and/or damage to engine parts.
A large leak of the aftercooler core can often be found by making a visual inspection. To check for smaller leaks, use the following procedure:
Disconnect the air pipes from the inlet and outlet side of the aftercooler core.
Dust plug chains must be installed to the aftercooler core or to the radiator brackets to prevent possible injury while you are testing. Do not stand in front of the dust plugs while you are testing.
Install couplers (5) on each side of the aftercooler core. Also, install dust plugs (7) and (9). These items are included with the FT-1984 Aftercooler Testing Group. Note: Installation of additional hose clamps on the hump hoses is recommended to prevent the hoses from bulging while the aftercooler core is being pressurized.
Do not use more than 240 kPa (35 psi) of air pressure or damage to the aftercooler core can be the result.
Install the regulator and valve assembly (1) on the outlet side of the aftercooler core assembly. Also, attach the air supply.
Open the air valve and pressurize the aftercooler to 205 kPa (30 psi). Shut off the air supply.
Inspect all connection points for air leakage.
The aftercooler system pressure should not drop more than 35 kPa (5 psi) in 15 seconds.
If the pressure drop is more than the specified amount, use a solution of soap and water to check all areas for leakage. Look for air bubbles that will identify possible leaks. Replace the aftercooler core, or repair the aftercooler core, as needed.
To help prevent personal injury when the tooling is removed, relieve all pressure in the system slowly by using an air regulator and a valve assembly.
After the testing, remove the FT-1984 Aftercooler Testing Group. Reconnect the air pipes on both sides of the aftercooler core assembly. Air System Restriction
Pressure measurements should be taken at the air inlet elbow and at the turbocharger outlet.Use the differential pressure gauge of the 1U-5470 Engine Pressure Group. Use the following procedure in order to measure the restriction of the aftercooler:
Connect the vacuum port of the differential pressure gauge to a port in the air inlet elbow.
Connect the pressure port of the differential pressure gauge to a port in the turbocharger outlet.
Record the value.
Air flow is at a maximum level.
Total air pressure drop of the charged system exceeds 15 kPa (4.5 in Hg).If a restriction is discovered, proceed with the following tasks, as required:
Clean
Repair
ReplacementDynamometer Test
In hot ambient temperatures, chassis dynamometer tests for models with an air-to-air aftercooler can add a greater heat load to the jacket water cooling system. Therefore, the jacket water cooling system temperature must be monitored. The following measurements may also need a power correction factor:
Inlet air temperature
Fuel API rating
Fuel temperature
Barometric pressureWith dynamometer tests for engines, use the FT-1438 Aftercooler Gp (DYNAMOMETER TEST). This tool allows the water-cooled aftercooler to control the inlet air temperature to 43 °C (110 °F).
Parts washer Volvo Penta:
960142
960142 Washer
2001; 2001B; 2001AG, 430; 430A; 430B, AQ115A; AQ115B; AQ130, AQ175A, AQ190A; AQ240A, AQ205A; AQ205LB, D100A; D100AK; D100B, D11A-A; D11A-B; D11A-C, D11B1-A MP; D11B2-A MP, D11B3-A MP; D11B4-A MP, D120A; D120AK; TD120A, D9A2A; D9A2A D9-425; D9A2A D9-5
191156
191156 Washer
2001; 2001B; 2001AG, D100A; D100AK; D100B, D120A; D120AK; TD120A, D13B-F MG; D13B-E MG; D13B-E MG (FE), D70B; D70B PP; D70B K, MD120A; MD120AK; TMD120A, TAD1030G; TD1010G; TWD1010G, TAD1030GE; TAD1031GE; TAD1032GE, TAD1030P, TAD1230G; TD1210G; TWD121
955897
955897 Washer
2001; 2001B; 2001AG, 230A; 230B; 250A, 3.0GSMBYMCE; 3.0GSPBYCCE, 3.0GSMWTR; 3.0GSMWTS; 3.0GSPWTR, 430; 430A; 430B, 500; 500A; 501A, 571A, 740A; BB740A, AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, AQ
897244
897244 Washer
230A; 230B; 250A, AD30A; AQAD30A; MD30A, AQ115A; AQ115B; AQ130, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145A; BB145A, AQ175A, AQ190A; AQ240A, AQ200B; AQ225B, AQ200C; AQ200D; AQ225C, AQ200D; AQ200F; 280B, AQ225D; AQ225E; AQ225F, AQ23
942598
942598 Washer
230A; 230B; 250A, 251A, 430; 430A; 430B, 500; 500A; 501A, 571A, 740A; BB740A, AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, AQ115A; AQ115B; AQ130, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131
955901
955901 Washer
AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, D3-110I-D; D3-110I-E; D3-110I-F, D3-110I-G; D3-140A-G; D3-140I-G, D3-110I-H; D3-140A-H; D3-140I-H, KAD32P; TAMD42WJ-A; KAD43P-A, KAD42A; KAMD42A; HS1A, KAD42B; KAMD42B; TAMD42B,
808733
808733 Washer
D100A; D100AK; D100B, D100BHC; D100BRC; TD100AHC, D120A; D120AK; TD120A, D12D-A MG; D12D-E MG, D12D-A MH; D12D-B MH; D12D-C MH, MD100A; TMD100A; TMD100AK, MD120A; MD120AK; TMD120A, TAMD103A, TAMD122A; TMD122A; TAMD122P-A, TAMD162A; TAMD162B; TAMD162C
837708
837708 Washer
D100BHC; D100BRC; TD100AHC, MD100A; TMD100A; TMD100AK, MD120A; MD120AK; TMD120A, TAMD103A, TAMD122A; TMD122A; TAMD122P-A, TD100CHC; TD100CRC; TD121CHC, TD120AHC; TD120ARC; TAD120AHC, TMD100C, TMD102A; TAMD102A; TAMD102D, TMD121C; TAMD121C; TAMD121D