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2400cc engine

(240 products available)

About 2400cc engine

Types of 2400cc engines

2400cc engines, also known as 2.4 liter engines, are internal combustion engines that use gasoline or diesel fuel. They are standard engine sizes in numerous vehicles, including cars, trucks, and SUVs. There are different types of 2400cc engines, including:

  • 4-cylinder

    These engines have four cylinders arranged in a straight line and are also known as inline-4 engines. The cylinders draw in and compress air and fuel and then ignite the mixture. Most 2400cc V6 engine vehicles use inline-4 engines because they are fuel-efficient, lightweight, and cost-effective.

  • V6

    These engines have six cylinders arranged in two rows of three cylinders that are in a v-shape. The v6 engine design allows more power to be generated in a smaller size. V6 engines are powerful and smooth, making them suitable for heavy and fast vehicles. This engine type is popular in SUVs and trucks.

  • 5-cylinder

    These engines have five cylinders that are often arranged in a line. However, some 2400cc engines may have a v5 design. The inline or v5 engine design allows for more power and torque to be generated. For this reason, 5-cylinder engines are commonly used in sports and high-performance vehicles.

  • V8

    These engines have eight cylinders that are arranged in two rows of four in a v-shape, similar to the v6 engine. The v8 engine generates a lot of power, making it suitable for heavy-duty and high-speed vehicles. The engine is used in trucks that haul large loads and in sports cars.

Specification and maintenance of 2400cc engines

Specification

  • Engine size

    The 2400cc engine has a total capacity of 2400 cubic centimeters or 2.4 liters. This means that the 2400cc engine can draw 2400 liters of air and fuel into the cylinders with each cycle.

  • Cylinder arrangement

    2400cc engines have in-line cylinders arranged in a straight line. This is the most common engine layout.

  • Number of cylinders

    Six cylinders are used in 2400cc engines. Each cylinder contains a piston that moves up and down, much like the pistons in a pump.

  • Fuel type

    These 2400cc engines can use gasoline or diesel fuel, depending on the specific engine design. Gasoline engines use spark plugs to ignite the fuel-air mixture, while diesel engines rely on compression to ignite the fuel.

  • Power output

    The 2400cc engine generates 130 to 250 horsepower and 150 to 300 lb-ft of torque. The horsepower is a measure of how much work the engine can do over time, while the torque is a measure of how much twisting force the engine can apply.

  • Engine configuration

    2400cc engines can have different configurations, such as V-shaped or flat layouts. In V-shaped engines, the cylinders are arranged in two rows at an angle like a V. Flat engines have cylinders in two parallel rows.

  • Valves per cylinder

    Each cylinder of a 2400cc engine has two to four valves. These valves control the intake of air and fuel into the cylinders and the exhaust of combustion gases out of the cylinders.

  • Camshaft location

    The camshaft controls the opening and closing of the valves in the engine. It is typically located in the engine block or cylinder head, depending on the engine design.

  • Fuel injection system

    Some 2400cc engines use fuel injection systems that atomize the fuel into tiny droplets and inject it into the intake manifold or directly into the cylinders. This allows for better fuel atomization and combustion efficiency.

Maintenance

  • Regular oil changes

    Oil changes are vital for engine health. Oil lubricates engine parts and helps them move smoothly. Over time, the oil breaks down and cannot protect the engine as well. Changing the oil regularly ensures the engine stays healthy. Typically, the oil should be changed every 5,000 to 10,000 kilometers. The exact interval depends on driving conditions and the type of oil used.

  • Air filter replacement

    The air filter cleans the air going into the engine. A dirty air filter restricts airflow and can hurt engine performance. It should be checked every 20,000 kilometers and replaced if necessary. Driving in dusty areas requires more frequent inspections.

  • Coolant flush

    The cooling system prevents the engine from overheating. Over time, the coolant loses its effectiveness. A coolant flush is recommended every 40,000 kilometers. This replaces the old coolant and cleans the system. The exact interval may vary based on the vehicle.

  • Spark plug replacement

    Spark plugs ignite the air-fuel mixture in gasoline engines. They should be checked for wear and replaced every 50,000 kilometers. Worn spark plugs can cause misfires and reduce fuel efficiency. Their condition affects how well they perform over time.

  • Tire rotation

    Tires should be rotated every 10,000 kilometers. This ensures even tire wear and helps them last longer. Common rotation patterns include moving the front tires to the rear, the rear tires to the front, and the rear center.

  • Brake inspection

    The brakes should be checked every 20,000 kilometers. The condition of the brake pads, discs, and other components is important for safety. Brake performance can decline if not inspected regularly.

  • Suspension check

    Suspension parts like shock absorbers and bushings should be inspected every 40,000 kilometers. Worn suspension components can affect ride comfort and handling over time.

  • Timing belt replacement

    The timing belt synchronizes engine components. It should be replaced every 100,000 to 150,000 kilometers. A worn timing belt can cause engine damage if it breaks or slips.

  • Fuel system cleaning

    Fuel injectors, the fuel pump, and the fuel lines should be cleaned every 40,000 kilometers. This removes deposits and ensures the fuel system works well. Dirty injectors can affect how the fuel is delivered to the engine.

  • Regular vehicle inspections

    Getting the vehicle inspected periodically is essential for safety and reliability. The emissions system, lights, wipers, and other vital components are checked.

How to choose 2400cc engines

Many manufacturers produce a variety of 2400 cc engines, making it difficult to choose the right one. Start by determining the market needs. Do buyers prefer gasoline engines or diesel engines?

Gasoline engines have a larger market share because most people prefer the power delivery and refinement they offer. Additionally, they are quieter than diesel engines. The latter, on the other hand, provides better fuel efficiency and more torque. Consider selling both engine types to cater to all buyers' preferences.

Know the target audience and use cases. Are the buyers looking for engines for sports cars, sedans, or SUVs? For SUV and sedan models, buyers may prefer engines with better fuel efficiency and decent power output. They would lean towards diesel 2400cc engine variants.

Stock availability and lead time are crucial when sourcing any product. Work with suppliers who have a reputation for fulfilling orders on time. It's also important to partner with suppliers who offer competitive MOQ and pricing.

Consider the after-sales support offered by the supplier. Can the warranty be extended to the end users? Does the supplier assist with technical training and product knowledge? Work with a supplier who provides adequate support to ensure the business thrives.

How to DIY and Replace 2400cc engine

  • Step 1: Prepare the vehicle

    The first step is to park the vehicle on a flat surface. After that, the parking brake is set, and the negative battery cable is disconnected. This ensures safety and prevents the battery from being drained.

    The hood is opened, and two supporting rods are inserted to hold the hood in an open position. The engine cover is removed by loosening the fasteners.

  • Step 2: Assess and prepare for engine replacement

    The 2400cc engine's user manual is read to understand the steps for removing and reinstalling the engine. The required tools for engine replacement are gathered, such as wrenches, sockets, and an engine hoist. The engine is visually inspected to identify the connections and components that need to be disconnected. This includes the air intake, exhaust system, electrical connections, cooling system hoses, and engine mounts.

  • Step 3: Disconnecting the electrical system

    Electrical connections to the engine are disconnected. This includes disconnecting the battery cables, alternator cables, starter motor connections, and electrical connectors for sensors and actuators. Hoses are removed after being marked to indicate their original connection points. Cooling system hoses are disconnected from the engine. This includes the radiator hoses, heater hoses, and any other hoses connected to the cooling system.

  • Step 4: Remove the engine from the vehicle

    Various components connected to the engine are removed. This may include the intake manifold, exhaust manifold, timing belt or chain, accessories like the alternator and power steering pump, and oil pan. The engine is prepared for removal by loosening or removing engine mounts. An engine hoist is attached to the engine using suitable lifting points and slings. The engine is carefully lifted using the hoist, and once it is free from the engine mounts and all connections, the engine is lifted until it clears the engine bay. Then, the engine is carefully lifted and removed from the vehicle.

  • Step 5: Installing the new engine

    The new engine is prepared for installation by transferring accessories and components from the old engine to the new one. This includes items like the intake manifold, exhaust manifold, timing belt or chain, and accessories. The engine is aligned with the engine mounts in the vehicle. Once this is done, the engine is lowered carefully until it makes contact with the engine mounts. After it is ensured that the engine is properly seated on the mounts, the engine hoist is used to hold the engine in place. Engine mounts are tightened to secure the engine.

  • Step 6: Reconnecting systems and components

    The intake system is reassembled by installing the air intake components, such as the air filter housing and intake manifold. The exhaust system is reconnected by installing the exhaust manifold and connecting any pipes or components that were previously removed. Electrical connections to the new engine are reconnected, including battery cables, alternator cables, starter motor connections, and electrical connectors for sensors and actuators. Cooling system hoses are reconnected to the engine using the markings made during disconnection to ensure correct placement.

  • Step 7: Final checks and start the engine

    After the engine is installed, all systems and components are checked to ensure proper installation and connections. This includes verifying the engine mounts, checking for leaks (oil, coolant, and others), and ensuring the correct placement of hoses and electrical connections. Once the final checks are completed, the procedure to start the engine is followed as indicated in the user manual. This may include steps like priming the fuel system, ensuring proper oil lubrication, and following specific starting procedures.

Q&A

Q1: Are 2400cc engines good?

A1: Yes, 2400cc engines are good. They are suitable for different types of cars, including those used for off-road driving. The performance of a 2400 engine can be felt when accelerating and maintaining high speeds. It is also capable of generating enough power to pull heavy loads. This makes the 2400cc engine ideal for business purposes and freight transport.

Q2: How long does a 2400cc engine last?

A2: The longevity of a 2400cc engine depends on several factors. For instance, the engine will last longer if it is well maintained. The average lifespan of a 2400cc engine is between 200,000 to 250,000 miles. After reaching this mileage, the engine's performance will begin to decline gradually.

Q3: Is a 2400cc engine good on fuel?

A3: The 2400cc engine is not very good on fuel, but it is also not the worst. Its fuel efficiency is influenced by its driving style, the vehicle's weight, and the terrain. Compared to smaller engines, 2400cc engines use more fuel. However, larger car models that have bigger engines use more fuel compared to a 2400cc engine.