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Case cx240 hydraulic pump

(573 products available)

About case cx240 hydraulic pump

Types of case cx240 hydraulic pump

The Case cx240 hydraulic pump is a vital element in The Case CX240B, C Series, and M Series hydraulic systems. It supplies high-pressure liquid for operating machine functions. Pumps are categorized according to operating characteristics and hydraulic fluid displacement. They include gear, vane, piston, and others. These types include the following:

Gear pump

A gear pump is one of the simplest hydraulic pump constructions. Its simplicity also impacts its power. One of the pair of intermeshing gears is driven by the pump shaft to perform work. While that happens, the other is rotated in its cavity. This seals a small volume between teeth and releases it into the pump outlet as the gears rotate. Though usually low in efficiency, high viscosity fluid can increase efficiency. Brute strength can compensate for many deficiencies.

Vane pump

A vane pump consists of a cylindrical rotor with slots containing movable vanes. It is fitted eccentrically within a casing. As the rotor turns, centrifugal force extends the vanes. These allow pockets to pass through the pump inlet to the outlet, where they compress and release the fluid. Its construction is simpler and cheaper than that of a piston pump. This makes it widely used in many applications.

Piston pump

A piston pump employs one or more pistons in a cylindrical bore to convert mechanical energy into hydraulic energy. This is done by drawing liquid into the chamber and then expelling it under high pressure. Axial, bent, and swash plates are a few designs. These pumps deliver the highest pressures.

High pressure spray/mist hydraulic pump

This pump is used in high-pressure spray and mist systems. An example is an agricultural application where pesticides, fertilizers, or chemicals are sprayed on crops. These pumps create pressure to atomize a fluid into tiny droplets, forming a spray or mist. Other applications of these pumps are in industrial cooling and fogging systems.

Atomization

This is the pump's primary function. It refers to breaking the liquid flow into particles. Nozzles or atomizing devices convert fluid into a spray. The desired droplet size is determined by nozzles. Smaller nozzles create fine sprays suitable for disease control and insect control. Larger nozzles are used for applying fertilizers and larger droplets. Larger droplets settle quickly and are less likely to drift.

Spray patterns

Hydraulic pumps affect this. Nozzles determine the spray pattern by controlling how the fluid is released. Patterns include fan, cone, and hollow or solid. Each has different applications depending on the coverage area and droplet size. Cone nozzles are ideal for targeting specific areas with smaller droplets. Wide-angle fan nozzles are used for large areas requiring heavy applications. Narrow-angle fans are for small areas.

Pressure control

All high-pressure spray or mist pumps are equipped with pressure control features. They are often fitted with pressure regulators or relief valves. These are used to maintain or limit the pump pressure range. This prevents damage from over-pressurization. It also ensures consistent performance during fluid application.

Fogging

This refers to generating a very fine mist. It's used in pest control, cooling systems, and space disinfection. The pumps create a high-pressure spray that produces tiny droplets. These droplets can easily drift in the air to reach target insects or easily penetrate into spaces with limited access, like cracks and crevices during pest control.

Industrial hydraulic pumps

These are used to power tools, equipment, and machinery in construction and mining applications. For example, they power hydraulic hammers, drills, excavators, and other heavy equipment used for digging, lifting, and moving large quantities of dirt and rock.

Excavator attachments

These Case cx240 hydraulic pumps power various excavator attachments like buckets and hydraulic thumbs and tilting buckets. They also power specialized tools like augers for digging holes, breakers for rock and concrete demolition, and grapples for lifting and moving heavy and irregularly shaped objects.

Hydrostatic pump

This pump conveys liquid with the help of a hydraulic motor through a closed-loop system. It drives the system's main hydraulic motor by its liquid. It also recirculates a portion of the hydraulic fluid back to the reservoir after its use in the system. Hydrostatic pumps are mainly regarded for their crucial function in heavy mobile equipment.

Orbital pump

Also called bent axis motors. They are considered the workhorse of hydrostatic drives. They provide good torque even at low speeds. Their motorizable version drives working equipment like compressors and alternators. Pumpable version are used in open/closed loop and win/win situations.

Axial piston pump

This pump conveys fluid by utilizing the combined area of all pistons and the swashplate governed by the pump control. Axial piston pumps feature high power density and efficiency. Hence, they are well-suited for icing hydraulic machinery and mobile equipment.

How to choose case cx240 hydraulic pump

Case cx240 hydraulic pumps are used to replace worn-out cases or keep a fleet of hydraulic equipment in good condition. Sellers should first check the part number to ensure they get a compatible pump model. Suppliers should sell both OEM and aftermarket hydraulic pumps. They should ensure all available pump models are compatible with the customer's equipment. Both OEM or aftermarket have their upsides. OEM are designed specific to the case cx240, while aftermarket are more budget-friendly.

When selecting a hydraulic pump for hydraulic system, buyers should consider the type of hydraulic fluid used and ensure the pump they select is compatible. The cx240 is used in various applications. Buyers should get pumps with different specifications for diverse applications. Buyers should also consider purchasing pump kits that include all components necessary for the installation at once. This will save money and time.

Pump brands will stock various pumps with different specifications or compatible with hydraulic equipment. They should get hydraulic pumps with varying displacement sizes. Larger sizes increase power and torque, making them ideal for large machinery. Smaller sizes increase pressure and are ideal for smaller equipment. Buyers should also ask for pumps with different shaft sizes. Smaller shaft sizes mean less torque is transmitted, making them suitable for lighter tasks.

On the other hand, larger shaft sizes mean more torque is transmitted. Buyers should consider hydraulic pump accessories like seals and hose kits alternatives that can replace worn hydraulic equipment. Buyers should purchase hydraulic pumps made of durable materials like stainless steel, cast iron, and aluminum alloys. Lastly, they should purchase replacement pumps from the same seller to build a long-term rapport.

Q&A

Q1. Which part of the hydraulic pump generates pressure?

A1. The pump's discharge area is where the fluid exits and high pressure is generated. Here, the fluid is compressed and forced out of the pump through the discharge port. This pressure is the pump's output pressure. It is the highest pressure the pump can generate. The discharge area plays a vital role in pressure generation.

Q2. What is the function of a sprag clutch in a hydraulic pump?

A2. A sprag clutch in a hydraulic pump allows rotational movement in one direction but not the other. It serves as a one-way valve. It enables fluid to flow under pressure while preventing backflow when the pressure drops. This is essential in applications requiring unidirectional fluid flow and back pressure protection.

Q3. Where is the case cx240 hydraulic pump made?

A3. The Case cx240 hydraulic pump is manufactured in various locations worldwide. Most of it is made in the U.S. and Europe. The hydraulic system's components are crafted and rigorously tested in Case factories to ensure quality and performance.

Q4. What causes the hydraulic pump to cease working?

A4. Several factors can lead to pump failure, poor maintenance being one. This causes wear and tear of important parts. Other causes are contamination, loss of prime, and overheating. External damage, improper fluid and air exposure, and incorrect installations can also cause the pump to fail.