821134 Lever Volvo.Penta
D100A; D100AK; D100B, D100BHC; D100BRC; TD100AHC, D120A; D120AK; TD120A, D70B; D70B PP; D70B K, MD100A; TMD100A; TMD100AK, MD120A; MD120AK; TMD120A, TAMD60A; TAMD60B, TD120AHC; TD120ARC; TAD120AHC, TD120C, TD120HPP; TID120HPP, TD60A; TD60B; TD60B PP,
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$259.63
30-06-2024
4.3[1.94] Pounds
US: remodeling solution
Grandeur 821134 Arc Plate Double Dummy with Newport Lever in Satin Nickel
Grandeur Solid forged brass construction for strength and durability || Double Dummy: ideal for doors that require only push/pull function – no latch or lock || Pre-mounted knobs and levers for easy installation || Hand assembled in the USA || Lifetime mechanical warranty
Grandeur Solid forged brass construction for strength and durability || Double Dummy: ideal for doors that require only push/pull function – no latch or lock || Pre-mounted knobs and levers for easy installation || Hand assembled in the USA || Lifetime mechanical warranty
Compatible models:
D100A; D100AK; D100B
D100BHC; D100BRC; TD100AHC
D120A; D120AK; TD120A
D70B; D70B PP; D70B K
MD100A; TMD100A; TMD100AK
MD120A; MD120AK; TMD120A
TAMD60A; TAMD60B
TD120AHC; TD120ARC; TAD120AHC
TD120C
TD120HPP; TID120HPP
TD60A; TD60B; TD60B PP
TD60D; TD60D-83; TD60DPP-83
TD70G; TD70G-83; TD70GPP
TID120FPP; TID120FG; TD120G
Volvo.Penta
Volvo Penta entire parts catalog list:
- Fuel System Excl.Spec.S5175/497250 D100A: A » 821134
- Fuel System Excl.Spec.S5175/497250 D100A: B
- Fuel System Excl.Spec.S5175/497250 D100A: C
- Classed Fuel System, Spec.9902, 9879 Earlier Prod: A
- Classed Fuel System, Spec.9902, 9879 Earlier Prod: TD100AA
- Classed Fuel System, Spec.9902, 9879 Later Prod Spec.867019: A
- Classed Fuel System, Spec.9902, 9879 Later Prod Spec.867019: B
- Classed Fuel System, Spec.9902, 9879 Later Prod Spec.867019: C
- Centrifugal Governor: 240909
- Centrifugal Governor: 240910
- Stop Solenoid and Installation Components: A
- Stop Solenoid and Installation Components: B
- Stop Solenoid and Installation Components: C
- Stop Solenoid and Installation Components
- FUEL SYSTEM: A
- FUEL SYSTEM: B
- FUEL SYSTEM: C
- FUEL SYSTEM: D
- STOP SOLENOID AND INSTALLATION COMPONENTS
- Fuel System, Standard Model: A
- Fuel System, Standard Model: B
- Centrifugal Governor: 240909
- Centrifugal Governor: 240910
- Stop Solenoid and Installation Components: A
- Stop Solenoid and Installation Components: B
- Stop Solenoid and Installation Components
MD100A; TMD100A; TMD100AK; TMD100A-CC; MD100B; MD100BK; MD100B-CC
- Fuel System, Classed Engine Spec 867669, 867670: A
- Fuel System, Classed Engine Spec 867669, 867670: B
- Stop Solenoid and Installation Components: A
- Stop Solenoid and Installation Components: B
- Stop Solenoid and Installation Components: C
- Stop Solenoid and Installation Components
- Fuel System: A
- Fuel System: B
- Fuel System: C
- Fuel System, Classed Engine
- Fuel System
- Fuel System for Cl. Engine and with PONT-%A2- Mousson Twin Rev. Gear
- Stop Solenoid and Installation Components: A
- Stop Solenoid and Installation Components: B
- Stop Solenoid and Installation Components: C
- Stop Solenoid and Installation Components: D
- Stop Solenoid and Installation Components
- Stop Solenoid and Installation Components
TD120AHC; TD120ARC; TAD120AHC; TD120BHC; TD120BRC; TAD120BHC; TAD120CHC; TD120AHC/CC; TD120ARC/CC
- Fuel System: A
- Fuel System: B
- Fuel System: C
- Stop Solenoid and Installation Components
- Stop Solenoid and Installation Components: A
- Stop Solenoid and Installation Components: B
TD120HPP; TID120HPP
- FUEL SYSTEM
- FUEL SYSTEM
- STOP SOLENOID AND INSTALLATION COMPONENTS
- STOP SOLENOID AND INSTALLATION COMPONENTS
TD60D; TD60D-83; TD60DPP-83; TD60DG-83; TID60D; TID60DG
TD70G; TD70G-83; TD70GPP; TD70GPP-83; TID70G; TID70GPP; TID70GG; TD70GG; TD70GG-83
TID120FPP; TID120FG; TD120G; TD120GG PP; TD120GG
Information:
Cylinder Block
Illustration 1 g02149272
Typical example
The cast iron cylinder block for the four cylinder engine has four cylinders which are arranged in-line. The cylinder block is made of cast iron. The cylinder block provides support for the full length of the cylinder bores. The cylinder bores are machined into the block.The cylinders are honed to a specially controlled finish in order to ensure long life and low oil consumption.The cylinder block has five main bearings which support the crankshaft. Thrust washers are installed on both sides of number 3 main bearing in order to control the end play of the crankshaft. The thrust washers can only be installed one way.Passages supply the lubrication for the crankshaft bearings. These passages are machined into the cylinder block.Cooling passages are cast into the cylinder block in order to allow the circulation of coolant.The cylinder block has a bush that is installed for the front camshaft journal. The other camshaft journals run directly in the cylinder block.The engine has a cooling jet that is installed in the cylinder block for each cylinder. The piston cooling jet sprays lubricating oil onto the inner surface of the piston in order to cool the piston.A Multi-Layered Steel (MLS) cylinder head gasket is used between the engine block and the cylinder head in order to seal combustion gases, water, and oil.Cylinder Head
Illustration 2 g02466936
Typical example
(1) Valve keepers
(2) Valve spring retainer
(3) Valve spring The engine has a cast iron cylinder head (5). The inlet manifold is integral within the cylinder head. There are two inlet valves and two exhaust valves for each cylinder. Each pair of valves (6) are connected by a valve bridge that is controlled by a pushrod valve system. The ports for the inlet valves are on the left side of the cylinder head. The ports for the exhaust valves are on the right side of the cylinder head. The valve stems move in valve guides that are pressed into the cylinder head. There is a renewable stem seal (4) that fits over the top of the valve guide. The valve seats are replaceable.Pistons, Rings, and Connecting rods
Illustration 3 g03728612
Typical example
The pistons (9) have a Quiescent or a Re-entrant combustion chamber in the top of the piston in order to provide an efficient mix of fuel and air. The piston pin (8) is off-center in order to reduce the noise level. The position pin (8) is retained in the correct position by two circlips (3).The pistons have two compression rings (1) and an oil control ring (2). The groove for the top ring has a hard metal insert in order to reduce wear of the groove. The piston skirt has a low friction coating in order to reduce the risk of seizure when the engine is new.The correct piston height is important in order to ensure that the piston does not contact the cylinder head. The correct piston height also ensures the efficient combustion of fuel which is necessary in order to conform to requirements for emissions.The connecting rods (4) are machined from forged steel. The connecting rods have bearing caps (6) that are fracture split. Two connecting rod bearings (5) are installed between the connecting rod (4) and the bearing cap (6). The bearing caps on fracture split connecting rods are retained with Torx bolts (7). Connecting rods with bearing caps that are fracture split have the following characteristics:
The splitting produces an accurately matched surface on each side of the fracture for improved strength.
The correct connecting rod must be installed with the correct bearing cap. Each connecting rod and bearing cap have an unique serial number. When a connecting rod is assembled the serial numbers for the connecting rod and bearing cap must match.Crankshaft
Illustration 4 g02155439
Typical example
(1) Crankshaft gear
(2) Crankshaft
(3) Crankshaft thrust washers
(4) Crankshaft timing ring The crankshaft can be a spheroidal graphite iron casting or a steel forging.The crankshaft has five main journals. Thrust washers are installed on both sides of number 3 main bearing in order to control the end play of the crankshaft.The crankshaft changes the linear energy of the pistons and connecting rods into rotary torque in order to power external equipment.A gear at the front of the crankshaft drives the timing gears. The crankshaft gear turns the idler gear which then turns the following gears:
Camshaft gear
Fuel injection pump and fuel transfer pump
The idler gear is driven by the crankshaft gear which turns the gear of the lubricating oil pump.Lip type seals are used on both the front of the crankshaft and the rear of the crankshaft.A timing ring is installed to the crankshaft. The timing ring is used by the ECM in order to measure the engine speed and the engine position.A ring gear for the balancer can be installed to the crankshaft. When a balancer is installed, the engine oil pump is an integral part of the balancer assembly. The ring gear for the balancer drives the balancer.Gears and Timing Gear Case
Illustration 5 g02212814
Typical example
(1) Hole for the water pump gear
(3) Position of the accessory drive gear The crankshaft oil seal is mounted in the cover of the timing case. The timing case cover is made from sound-deadened steel or cast iron.The timing gears are made of steel.The crankshaft gear (5) drives an upper idler gear (4) and a lower idler gear. The upper idler gear (4) drives the camshaft gear (6) and the fuel injection pump gear (2). The lower idler gear drives the oil pump. The water pump drive gear is driven by the fuel injection pump gear.The camshaft rotates at half the engine speed. The fuel injection pump rotates at engine speed.Camshaft
The engine has a single camshaft. The camshaft is made of cast iron. The camshaft lobes are chill hardened.The camshaft is driven at the front end. As the camshaft turns, the camshaft lobes move the valve system components. The valve system components move the cylinder valves.The camshaft gear must be timed to the crankshaft gear. The relationship between the lobes and the camshaft gear causes the valves in each
Illustration 1 g02149272
Typical example
The cast iron cylinder block for the four cylinder engine has four cylinders which are arranged in-line. The cylinder block is made of cast iron. The cylinder block provides support for the full length of the cylinder bores. The cylinder bores are machined into the block.The cylinders are honed to a specially controlled finish in order to ensure long life and low oil consumption.The cylinder block has five main bearings which support the crankshaft. Thrust washers are installed on both sides of number 3 main bearing in order to control the end play of the crankshaft. The thrust washers can only be installed one way.Passages supply the lubrication for the crankshaft bearings. These passages are machined into the cylinder block.Cooling passages are cast into the cylinder block in order to allow the circulation of coolant.The cylinder block has a bush that is installed for the front camshaft journal. The other camshaft journals run directly in the cylinder block.The engine has a cooling jet that is installed in the cylinder block for each cylinder. The piston cooling jet sprays lubricating oil onto the inner surface of the piston in order to cool the piston.A Multi-Layered Steel (MLS) cylinder head gasket is used between the engine block and the cylinder head in order to seal combustion gases, water, and oil.Cylinder Head
Illustration 2 g02466936
Typical example
(1) Valve keepers
(2) Valve spring retainer
(3) Valve spring The engine has a cast iron cylinder head (5). The inlet manifold is integral within the cylinder head. There are two inlet valves and two exhaust valves for each cylinder. Each pair of valves (6) are connected by a valve bridge that is controlled by a pushrod valve system. The ports for the inlet valves are on the left side of the cylinder head. The ports for the exhaust valves are on the right side of the cylinder head. The valve stems move in valve guides that are pressed into the cylinder head. There is a renewable stem seal (4) that fits over the top of the valve guide. The valve seats are replaceable.Pistons, Rings, and Connecting rods
Illustration 3 g03728612
Typical example
The pistons (9) have a Quiescent or a Re-entrant combustion chamber in the top of the piston in order to provide an efficient mix of fuel and air. The piston pin (8) is off-center in order to reduce the noise level. The position pin (8) is retained in the correct position by two circlips (3).The pistons have two compression rings (1) and an oil control ring (2). The groove for the top ring has a hard metal insert in order to reduce wear of the groove. The piston skirt has a low friction coating in order to reduce the risk of seizure when the engine is new.The correct piston height is important in order to ensure that the piston does not contact the cylinder head. The correct piston height also ensures the efficient combustion of fuel which is necessary in order to conform to requirements for emissions.The connecting rods (4) are machined from forged steel. The connecting rods have bearing caps (6) that are fracture split. Two connecting rod bearings (5) are installed between the connecting rod (4) and the bearing cap (6). The bearing caps on fracture split connecting rods are retained with Torx bolts (7). Connecting rods with bearing caps that are fracture split have the following characteristics:
The splitting produces an accurately matched surface on each side of the fracture for improved strength.
The correct connecting rod must be installed with the correct bearing cap. Each connecting rod and bearing cap have an unique serial number. When a connecting rod is assembled the serial numbers for the connecting rod and bearing cap must match.Crankshaft
Illustration 4 g02155439
Typical example
(1) Crankshaft gear
(2) Crankshaft
(3) Crankshaft thrust washers
(4) Crankshaft timing ring The crankshaft can be a spheroidal graphite iron casting or a steel forging.The crankshaft has five main journals. Thrust washers are installed on both sides of number 3 main bearing in order to control the end play of the crankshaft.The crankshaft changes the linear energy of the pistons and connecting rods into rotary torque in order to power external equipment.A gear at the front of the crankshaft drives the timing gears. The crankshaft gear turns the idler gear which then turns the following gears:
Camshaft gear
Fuel injection pump and fuel transfer pump
The idler gear is driven by the crankshaft gear which turns the gear of the lubricating oil pump.Lip type seals are used on both the front of the crankshaft and the rear of the crankshaft.A timing ring is installed to the crankshaft. The timing ring is used by the ECM in order to measure the engine speed and the engine position.A ring gear for the balancer can be installed to the crankshaft. When a balancer is installed, the engine oil pump is an integral part of the balancer assembly. The ring gear for the balancer drives the balancer.Gears and Timing Gear Case
Illustration 5 g02212814
Typical example
(1) Hole for the water pump gear
(3) Position of the accessory drive gear The crankshaft oil seal is mounted in the cover of the timing case. The timing case cover is made from sound-deadened steel or cast iron.The timing gears are made of steel.The crankshaft gear (5) drives an upper idler gear (4) and a lower idler gear. The upper idler gear (4) drives the camshaft gear (6) and the fuel injection pump gear (2). The lower idler gear drives the oil pump. The water pump drive gear is driven by the fuel injection pump gear.The camshaft rotates at half the engine speed. The fuel injection pump rotates at engine speed.Camshaft
The engine has a single camshaft. The camshaft is made of cast iron. The camshaft lobes are chill hardened.The camshaft is driven at the front end. As the camshaft turns, the camshaft lobes move the valve system components. The valve system components move the cylinder valves.The camshaft gear must be timed to the crankshaft gear. The relationship between the lobes and the camshaft gear causes the valves in each
Parts lever Volvo Penta:
241782
241782 Lever
AQD70D; TAMD70D; TAMD70E, D100A; D100AK; D100B, D70B; D70B PP; D70B K, MD70B; MD70BK; TMD70B, MD70C; TMD70C; TAMD70C, TAMD122A; TMD122A; TAMD122P-A, TAMD162A; TAMD162B; TAMD162C, TAMD61A; TAMD62A, TAMD71A; TAMD72A, TAMD71B; TAMD73P-A; TAMD73WJ-A, TD1
825882
825882 Lever
AQ115A; AQ115B; AQ130, AQD70D; TAMD70D; TAMD70E, MD100A; TMD100A; TMD100AK, MD120A; MD120AK; TMD120A, MD70B; MD70BK; TMD70B, MD70C; TMD70C; TAMD70C, TAMD60A; TAMD60B, TAMD60C
31143
31143 Lever
D100A; D100AK; D100B, D100BHC; D100BRC; TD100AHC, D120A; D120AK; TD120A, MD100A; TMD100A; TMD100AK, MD120A; MD120AK; TMD120A, MD70B; MD70BK; TMD70B, TAMD122A; TMD122A; TAMD122P-A, TD120AHC; TD120ARC; TAD120AHC, TD120C, TID120FPP; TID120FG; TD120G, TM
240060
240060 Lever
D100A; D100AK; D100B, MD70C; TMD70C; TAMD70C, TAD1230G; TD1210G; TWD1210G, TAD1230P; TD121GP-87; TWD1210P, TAMD122A; TMD122A; TAMD122P-A, TAMD162A; TAMD162B; TAMD162C, TAMD74A; TAMD74A-A; TAMD74A-B, TD100CHC; TD100CRC; TD121CHC, TD100G-87; TD1030ME;
870912
870912 Lever
D70CHC; D70CRC; TD70CHC, TAD1230P; TD121GP-87; TWD1210P, TAMD122A; TMD122A; TAMD122P-A, TAMD60C, TAMD63L-A; TAMD63P-A, TAMD71A; TAMD72A, TAMD71B; TAMD73P-A; TAMD73WJ-A, TD100CHC; TD100CRC; TD121CHC, TD100G; TD100G-85; TD100G-87, TD120HP-86; TD121; TD
244170
244244
207810