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12V Hydraulic DC Motor Two Terminals-factory

12V Hydraulic DC Motor Two Terminals-factory

12V Hydraulic DC Motor is a type of mechanical actuator that converts pressure and flow from a hydraulic fluid into torque and angular displacement. These devices are used to drive various systems in the world, ranging from construction and mining equipment to agricultural machinery.

Application: Intelligent Logistics,Construction Machinery,Vehicle Power Unit,Lifting machine,Ladder truck,special equipment,Automobile tail stock.

Package: Standard export pallet. 100pcs/pallet

MOQ: 100pcs

 

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MODEL RATED VOLT SPEED OUTPUT POWER RATED CURRENT RATED TORQUE DUTY CYCLE INSULATION WATERPROOF
(V DC) (RPM) (W) (A) (N.m)
1288 12 2700 1800 230 6.5 S2=2min F IP54
                 
                 

 

 

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Why Choose Us?

Quality products

Our company is committed to delivering high-quality products through their advanced manufacturing processes and strict quality control measures.

Rich experience

Dedicated to strict quality control and attentive customer service, our experienced staff is always available to discuss your requirements and ensure complete customer satisfaction.

Quality Control

For each process,we have strict inspection standards,and we always insist that quality is life.

Competitive Pricing

We offer competitive pricing without compromising on quality, making our products accessible to a wide range of customers.

 

 

Advantages of 12V Hydraulic DC Motor
 

How a hydraulic system works differs to some degree by the type of motor and its application, but they all function on the same basic principle. The motor system's pump acts against an incompressible fluid within the system by pushing against a piston inside a cylinder. The piston's movement then converts into a rotational force. 12V Hydraulic DC Motor come with many benefits, including the following:

 

Generation of very high output force in comparison to input force.

 

More accurate movements versus other motor types.

 

Can function optimally in harsh environments.

 

Stops and starts readily.

 

Capable of slow and precise movements while moving heavy loads.

 

High torque capacity despite a system that is a fraction of an electric motor's size.

 

Stores energy in accumulators as fluid under pressure, creating a more efficient system.

 

Uses no power while holding a standstill load.

 

Motor size can be reduced to the dimensions needed for the average load.

 

Remote munting is a possibility. Only the accumulator, actuator, and control valves must be located near the application close.

 

Types of 12V Hydraulic DC Motor
 
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• Gerotor Motors: These motors function by having an inner and outer rotor, with the inner rotor offset within the outer. This offset creates chambers that trap fluid, which is then expelled, causing the rotors to turn.
• Vane Motors: They employ vanes that slide in and out of the rotor to trap fluid, generating rotation.
• Piston Motors: In this type, pistons move back and forth inside the cylinder block. Their movement is caused by the hydraulic fluid, resulting in the rotation of the motor's output shaft.

 

What Other Benefits Do You Know of Using a 12V Hydraulic DC Motor?
 

1. They are environmentally friendly – electric powered 12V Hydraulic DC Motor are the most sustainable type of motor because they do not produce any emissions.
2. They are quiet – electric powered 12V Hydraulic DC Motor are the least noisy type of motor, which makes them ideal for use in sensitive areas such as medical facilities.
3. They are versatile – electric powered 12V Hydraulic DC Motor can be used in a variety of applications including agriculture, construction, manufacturing, and mining.
4. They are reliable – electric powered 12V Hydraulic DC Motor have a high reliability rate, which makes them ideal for use in critical applications.
5. They are affordable – compared to other types of 12V Hydraulic DC Motor, electric powered 12V Hydraulic DC Motor are relatively inexpensive, making them an affordable option for businesses and consumers.

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How to Increase the Working Life of Your 12V Hydraulic Dc Motor?
 

If you've had trouble trying to predict how long your 12V Hydraulic DC Motor will last, you're not alone; the lifespan of any Hydraulic DC Motor can be next to impossible to figure, even with a lot of past experience. Unfortunately, there currently exists no approach that's dependable enough to reveal a precise figure. However, it isn't necessary to guess about how long your 12V Hydraulic DC Motor will live; all that needs to be done is to look at a few factors.

 
General System Considerations

What kind of application your hydraulic system is being used for is the first thing to think about, as this will have the most impact on the life of your 12V Hydraulic DC Motor. The temperature at which the Hydraulic DC Motor must operate will be another consideration. Regardless, a Hydraulic DC Motor of industrial grade will generally have a longer lifespan than one without an industrial designation.

 
Oil

Oil is another consideration; specifically, the grade and type being used in the system. Some oils, like the fire-resistant or other special purpose types, will not have a positive impact on the life of a Hydraulic DC Motor, but may help the Hydraulic DC Motor run more easily while in service. The cleanliness of oil is another factor to keep in mind, as this will be integral to the long life of a 12V Hydraulic DC Motor, and every other components in the system, including hydraulic seals and gaskets.

 
Load

How hard a 12V Hydraulic DC Motor works overall will speak volumes about its potential lifespan. The rate at which the Hydraulic DC Motor spins, the pressure under which it must work and its duty cycle all will contribute to the length of its life. A 12V Hydraulic DC Motor operating at 70% or less of a duty cycle that spins at 1200 rpm using clean oil is likely to last over 20,000 hours. However, under a 90% load with 1800 rpm and a special purpose oil, that lifespan is reduced to around 10,000 hours.

 
Design Flaws

Even if you have all of the information you could ever want about a particular 12V Hydraulic DC Motor, there is one thing no one can prepare for, and that is a flaw in the Hydraulic DC Motor's design. Even the best designs can have hidden flaws which can compromise the system and/or cause complete failure of the Hydraulic DC Motor itself. For example, if a Hydraulic DC Motor's design allows for valves to shift rapidly and cause regular spikes in pressure, this will eventually and inevitably cause total Hydraulic DC Motor failure if left unchecked.

 

 

Difference between 12V Hydraulic DC Motor and electric motor
 
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IElectric motors convert electrical energy into mechanical energy through the interaction of a magnetic field and a winding current to produce force on the shaft. They are the most common type of motor in industrial applications.
12V Hydraulic DC Motors convert pressure into torque and rotational energy by drawing fluid from a reservoir and pumping it through the motor's cylinder. They are often used in combination with other hydraulic components, such as pumps and valves.
Depending on the flow, displacement and pressure drop in the cylinder, 12V Hydraulic DC Motors can produce a wide range of power. They range in speed from low-speed units that operate at 0.5 rpm to high-speed models that can run up to 10,000 rpm.
Both types of motors can be used to move a variety of heavy loads. But electric motors are typically better suited to applications that require constant torque, such as those requiring continuous motion or that have multiple actuators working at once.

 

How 12V Hydraulic DC Motor Work
 

12V Hydraulic DC Motor, an essential part of hydraulic systems, have diverse applications across many industries due to their unique properties and characteristics. To comprehend their function, we must first understand what hydraulics entail. Hydraulics involves the use of pressurized fluids, typically oil, to transmit power in machines. The primary components in hydraulic systems include the hydraulic pump, valves, actuators, and the 12V Hydraulic DC Motor. The latter plays a significant role in converting hydraulic energy (fluid power) into mechanical energy (rotation).

A 12V Hydraulic DC Motor works based on Pascal's law which states that when pressure is applied to a fluid in a closed system, the pressure is equally distributed throughout the fluid. This is how fluid power is converted to mechanical power. When hydraulic fluid is pumped into the motor at high pressure, it enters chambers within the motor. As these chambers fill, they create forces that move internal parts of the motor, typically rotors or pistons. As the rotor or pistons move, they turn the output shaft, generating torque and causing rotation. The movement of these internal parts creates new chambers on the opposite side of the motor. These chambers are then filled with fluid that has been pushed out from the first set of chambers. The cycle then repeats, maintaining a continuous motion.

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Which Type of 12V Hydraulic DC Motor is Most efficient for Your Application?
 
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For many applications, a gear-driven 12V Hydraulic DC Motor is the most efficient type of motor. Gear-driven motors use gears to turn a shaft, which causes the motor to generate more power as it operates. They are typically used in applications that require high torque and low speed, such as agricultural machinery and heavy equipment.
However, there are other types of 12V Hydraulic DC Motors that can be more efficient for specific applications. A direct-drive 12V Hydraulic DC Motor uses no gears and simply uses the pressure from the hydraulic fluid to turn the shaft. This type of motor is less common, but can be more efficient because it doesn't waste energy in the gears. It's also less likely to jam due to dirt or debris build up on the gears.
12V Hydraulic DC Motor Applications:
Heavy-duty equipment for various industries. Construction. Mining.
Metalworking machines.
Vehicle braking systems.
Applications with: A lot of back-and-forth motion.
In applications where one actuator moves another.
Systems that apply constant torque and where binding or jams can occur.

 

How to Choose 12V Hydraulic DC Motor?
 

12V Hydraulic DC Motor are rotary actuators that convert hydraulic energy into mechanical torque. Using the pressure and flow provided by the hydraulic pump, 12V Hydraulic DC Motor rotate to pull, drive or winch external loads on various hydraulic machines spanning construction equipment to food mixers. The three most common constructions of 12V Hydraulic DC Motor are the gear, vane and piston varieties, each with a unique style. In addition, some common types use orbital technology, such as gerotor and geroller motors.

 

1. Understand motor torque and speed
Torque, or the turning and twisting effort of the force of the motor, is expressed as inch-pounds (in.-lb), foot-pounds (ft-lbs) or newton meters (Nm). When describing the torque performance of a 12V Hydraulic DC Motor, we describe three different areas. First, breakaway torque is typically used to define the minimum torque required to start a motor with no load, and this torque factors in internal friction and the pressure required to overcome static friction.
Running torque describes the load-induced torque a motor uses to move whatever rotary function the machine requires. Running torque may be relatively stable, such as a winch function, but could also vary widely for dynamically changing conditions, such as wheel drive motors.
Starting torque is the minimum torque required to start a motor under load and is a combination of load-induced torque (which factors inertia) and breakaway torque. The ratio of actual torque to theoretical torque provides us with the mechanical efficiency factor of a 12V Hydraulic DC Motor.

 

2. Motor type and selection
Each motor type enjoys different natural characteristics and expect performance to be relative to cost. Gear motors, for example, are inexpensive but generally limited to medium pressure, medium torque and a narrow range of displacement (although they generally offer the lowest displacement options), and they are often rated for high speed (3,000 rpm or more). On the other hand, vane motors offer the fluid power designer a medium-pressure, medium-speed, quieter, and more efficient option than the gear motor option.
The construction of each 12V Hydraulic DC Motor, as you'd expect, varies widely by style. Gear motors feature two gears, one driven (by the shaft) and the other idle. Their function is simple; high-pressure oil enters the inlet port, which flows around the gears and housing to the outlet port. Although torque is a function of displacement and pressure, providing high pressure at the inlet does not guarantee high force. The pressure differential from the inlet and outlet port matters, so understand that every psi of backpressure reduces effectual output. At the medium-pressure and cost range, vane motors feature a housing with an eccentric bore. The motor's vanes slide in and out of its rotor, and displacement is controlled by the size of the vanes and the width of its eccentric bore. The movement of the pressurized fluid causes an unbalanced force, which in turn forces the rotor to turn in one direction.

 

Our Factory
 

Sunroad Motor Co.,Ltd was established in 1986 and has been deeply involved in DC motors for more than 30 years. It is a professional manufacturer of DC motors and an authoritative certified micro motor engineering technology center. In order to meet the needs of customers and the market, the company invested 20 million yuan in 2000 to establish a modern factory in Ningbo with an area of 22000 square meters. We have established a production, research and development, and management team of 160 people. Our mature research and development team and professional testing and research and development equipment enable us to independently design and develop products according to customer needs. Professional automation equipment greatly improves our production capacity to meet the order needs of domestic and foreign customers.

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Ultimate FAQ Guide to 12V Hydraulic DC Motor
 

Q: What is a 12V Hydraulic DC Motor?

A: There are many types of 12V Hydraulic DC Motors, but the most efficient ones use a rotary vane pump. They are able to move a lot of water very quickly, which makes them perfect for applications like irrigation or hauling heavy objects. 12V Hydraulic DC Motors can be used for a variety of purposes, from powering tools and equipment in construction or manufacturing to moving objects on a manufacturing line.

Q: How do you size a 12V Hydraulic DC Motor to pump?

A: Use this equation to help figure out what electric motor horsepower (HP) is required to drive a hydraulic pump. SImply take the gallons per minute (GPM) multiplied by the pump pressure PSI then divide that number by the result of 1,714 times efficiency (we used 85% effiencey in this case).

Q: What is the most efficient 12V Hydraulic DC Motor?

A: In this article, we'll take a look at three different types of 12V Hydraulic DC Motors and see which is best suited for a particular application. We'll also discuss some factors to consider when choosing a motor, such as horsepower and speed. There are many types of 12V Hydraulic DC Motors, but the most efficient type is a rotary vane motor. This type of motor uses a series of vanes to turn the rotor, which in turn produces mechanical power.

Q: How do I choose a hydraulic pump motor?

A: Proper 12V Hydraulic DC Motor selection starts with the expected performance required by the application, then works back to the prime mover-the pump. Then it is necessary to evaluate the cost of your motor options along with the degree of complexity you want for the overall system. However, it isn't necessary to guess about how long your hydraulic pump will live; all that needs to be done is to look at a few factors.

Q: How much HP do you need to run a hydraulic pump?

A: Calculate your Hydraulic (Fluid Power) Horsepower. Rules-Of-Thumb: Horsepower for driving a pump: For every 1 HP of drive, the equivalent of 1 GPM @ 1500 PSI can be produced. Horsepower for idling a pump: To idle a pump when it is unloaded will require about 5% of its full rated horsepower.

Q: How to design a 12V Hydraulic DC Motor?

A: All types of 12V Hydraulic DC Motors have common design features: a driving surface area subject to pressure differential; a way of timing the porting of pressure fluid to the pressure surface to achieve continuous rotation; and a mechanical connection between the surface area and an output shaft. The ability of the pressure surfaces to withstand force, the leakage characteristics of each type of motor, and the efficiency of the method used to link the pressure surface and the output shaft determine the maximum performance of a motor in terms of pressure, flow, torque output, speed, volumetric and mechanical efficiencies, service life, and physical configuration.

Q: What is the biggest enemy of a hydraulic system?

A: Dirty oil is one of the biggest enemies in hydraulic systems. Contamination can destroy hydraulic fluid as well as damage to components in the system. In order to prolong the life of a hydraulic fluid we can remember "Keep it clean, keep it cool, keep it dry" and should check the fluid condition regularly.

Q: What is the life expectancy of a 12V Hydraulic DC Motor?

A: How hard a pump works overall will speak volumes about its potential lifespan. The rate at which the pump spins, the pressure under which it must work and its duty cycle all will contribute to the length of its life. A pump operating at 70% or less of a duty cycle that spins at 1200 rpm using clean oil is likely to last over 20,000 hours. However, under a 90% load with 1800 rpm and a special purpose oil, that lifespan is reduced to around 10,000 hours.

Q: What is the best oil for 12V Hydraulic DC Motors?

A: • Jcb Non Synthetic Hydraulic Engine Oil, Bucket of 7.5 Litre.
• Hydraulic Engine Oil 68.
• Light Vehicle Synthetic Hydraulic Oil For Industrial, Grade: Aw -46.
• Heavy Vehicle Fortune Engine Hydraulic Oil, For Automobile, Grade: 68 No.
• Heavy Vehicle Castrol Hydraulic Oil, Unit Pack Size: 210 Liter, Grade: Hyspin Aws46.

Q: Why are 12V Hydraulic DC Motors better?

A: The advantages of 12V Hydraulic DC Motorrs are their simple configuration and ability to operate without an electronic drive circuit in applications where speed control is not needed. Their disadvantage is that their brushes and commutator are consumable parts that require regular replacement. The brushes also generate electrical and acoustic noise.

Q: What are the criteria for 12V Hydraulic DC Motor selection?

A: The three main specifications you will need to know for any DC motor application are voltage, speed and torque. Once these aspects are determined, you are now ready to get started on your journey to select the ideal motor solution. The key is to use a motor that is operating at or near its maximum efficiency.

Q: How do you control the speed of a 12V Hydraulic DC Motor?

A: 12V Hydraulic DC Motors generally operate at low speed and can be driven by a simple pulse width modulation (PWM) controller to vary the voltage supplied to the motor to control the speed in one direction and provide the torque for the motor drive. If a bidirectional motor drive is needed, for example for an electric car window or as a servo in an industrial automation application, an H-bridge can be used alongside the PWM controller.

Q: What is 12V Hydraulic DC Motor?

A: 12V Hydraulic DC Motors are one of the simplest types of DC motor. It uses brushes to deliver current to the motor windings through mechanical commutation. The number of coils wound around the motor and the density of the coils determine the properties of the motor. The armature or rotor is an electromagnet. The field magnet is a permanent magnet. This motor does not require any controller to operate or vary the speed.

Q: How do I know which 12V Hydraulic DC Motor to use?

A: Voltage, speed, and torque are the three most important characteristics to understand for any DC motor application. Once you've identified these factors, you're ready to go on your quest to find the best motor option. The trick is to utilize a motor that is at or near its peak efficiency.

Q: What is the life expectancy of a 12V Hydraulic DC Motor?

A: 12V Hydraulic DC Motors on average achieve a service life of 1000-3000 hours whereas brushless motors should be able to achieve 20000 hours providing they are operated within their specification. The output speed is also a key factor when choosing a brushed or brushless motor.

Q: Can DC motors be 3-phase?

A: All DC motors are single phase, but AC motors can be single phase or three phase. AC and DC motors use the same principle of using an armature winding and magnetic field except with DC motors, the armature rotates while the magnetic field doesn't rotate.

Q: What happens if you run 12V Hydraulic DC Motor at lower voltage?

A: A 12V Hydraulic DC Motor's speed is directly proportional to the input voltage. The higher the input voltage, the faster the output speed. The lower the input voltage, the slower the output speed. We can control the speed independently of torque by manipulating the supply voltage using a 12V Hydraulic DC Motor control unit.

Q: How efficient is a 12V Hydraulic DC Motor?

A: Brushless motors are typically 85-90% efficient whereas 12V Hydraulic DC Motors are around 75-80% efficient. This difference in efficiency means that more of the total power used by the motor is being turned into rotational force and less is being lost as heat.

Q: How do you calculate the horsepower of a 12V Hydraulic DC Motor?

A: The quickest method to closely estimate motor horsepower is to use a digital clamp meter to measure current and voltage to the motor, and then perform a simple calculation. Use this formula to estimate motor horsepower. Horsepower(hp)= Voltage x Amperage x % EFF x power factor x 1.73/746.

Q: Do 12V Hydraulic DC Motors require more maintenance than AC motors?

A: Reduced Maintenance Needs: The AC Motor Advantage. A significant advantage of AC motors over their DC counterparts is their reduced maintenance requirements. While 12V Hydraulic DC Motors require regular replacement of components like carbon brushes, AC motors do away with such demands.

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