China high quality Alternator Freewheel Pulley CZPT 535 0209 10 1042102030  Denso1042102040  Denso with Great quality

Product Description

   

 

 

 

 

Alternator freewheel pulleys
I.D.1 [ mm ] 17.00
O.D.1 [ mm ] 52.50
L.1 [ mm ] 41.00
L.2 [ mm ] 8.70
G. [ qty. ] 7
d. [ mm ] M14x1.5

###

Reference nb Producer
021040-1340 DENSO
1116905 POWERMAX
23088711BN REAL
23088711OE REAL
24-82289-4 WAI / TRANSPO
24-82290 WAI / TRANSPO
24-82290-4 WAI / TRANSPO
27415-0W010 TOYOTA
27415-0W010A TOYOTA
27415-0W010B TOYOTA
27415-0W010C TOYOTA
27415-0W0130 TOYOTA
27415-0W060 TOYOTA
27415-0W061 TOYOTA
27415-0W062 TOYOTA
27415-0W063 TOYOTA
27415-0W130 TOYOTA
27415-0W131 TOYOTA
3.5415.1 IKA
333062 CARGO
53-1059A CIVIC/DA PARTS
5350209000 LUK
535020910 LUK
5503 ZEN
60-1059A CIVIC/DA PARTS
600726 LITENS
600954 LITENS
86-74-53 VISNOVA
920726 LITENS
920954 LITENS
CCP92117AS CASCO
CCP92117GS CASCO
SCP92117 SANDO
ZN5503 ZEN
219170 ERA
UD21343AFP AS-PL

###

Reference nb Producer
1042102030 DENSO
1042102040 DENSO
1042102041 DENSO
1042102050 DENSO
1042102051 DENSO
1042102080 DENSO
1042104070 DENSO
1042104071 DENSO
1042104470 DENSO
1042104471 DENSO
1042104571 DENSO
1042104600 DENSO
1042104604 DENSO
1042104670 DENSO
1042104671 DENSO
1042104680 DENSO
1042104713 DENSO
1042104740 DENSO
1042104750 DENSO
1042104830 DENSO
1042108200 DENSO
270600C080 TOYOTA
270600P041 TOYOTA
270600P130 TOYOTA
270600P140 TOYOTA
270600P141 TOYOTA
270600P150 TOYOTA
270600P151 TOYOTA
270600P180 TOYOTA
270600P181 TOYOTA
270600P182 TOYOTA
270600P183 TOYOTA
270600P190 TOYOTA
270600P191 TOYOTA
270600P192 TOYOTA
270600P193 TOYOTA
270600P240 TOYOTA
270600P241 TOYOTA
2706031030 TOYOTA
2706031031 TOYOTA
2706031040 TOYOTA
2706031041 TOYOTA
2706031042 TOYOTA
2706031050 TOYOTA
2706031051 TOYOTA
2706031052 TOYOTA
2706031060 TOYOTA
2706031061 TOYOTA
2706031062 TOYOTA
2706031070 TOYOTA
2706031071 TOYOTA
2706031072 TOYOTA
2706031080 TOYOTA
2706031081 TOYOTA
2706031082 TOYOTA
2706031090 TOYOTA
2706031091 TOYOTA
2706031100 TOYOTA
2706031101 TOYOTA
2706031102 TOYOTA
2706031110 TOYOTA
2706031111 TOYOTA
2706031112 TOYOTA
2706031120 TOYOTA
2706031160 TOYOTA
2706031161 TOYOTA
2706031162 TOYOTA
2706031180 TOYOTA
2706031190 TOYOTA
2706031201 TOYOTA
2706031211 TOYOTA
2706031212 TOYOTA
2706031220 TOYOTA
2706031330 TOYOTA
2706031331 TOYOTA
2706034010 DENSO
2706075350 TOYOTA
2706075380 TOYOTA
2706075381 TOYOTA
2706075382 TOYOTA
2706075440 TOYOTA
2706075450 TOYOTA
2706075460 TOYOTA
2706075490 TOYOTA
2706075550 TOYOTA
A6323 AS-PL
A6522S AS-PL
Alternator freewheel pulleys
I.D.1 [ mm ] 17.00
O.D.1 [ mm ] 52.50
L.1 [ mm ] 41.00
L.2 [ mm ] 8.70
G. [ qty. ] 7
d. [ mm ] M14x1.5

###

Reference nb Producer
021040-1340 DENSO
1116905 POWERMAX
23088711BN REAL
23088711OE REAL
24-82289-4 WAI / TRANSPO
24-82290 WAI / TRANSPO
24-82290-4 WAI / TRANSPO
27415-0W010 TOYOTA
27415-0W010A TOYOTA
27415-0W010B TOYOTA
27415-0W010C TOYOTA
27415-0W0130 TOYOTA
27415-0W060 TOYOTA
27415-0W061 TOYOTA
27415-0W062 TOYOTA
27415-0W063 TOYOTA
27415-0W130 TOYOTA
27415-0W131 TOYOTA
3.5415.1 IKA
333062 CARGO
53-1059A CIVIC/DA PARTS
5350209000 LUK
535020910 LUK
5503 ZEN
60-1059A CIVIC/DA PARTS
600726 LITENS
600954 LITENS
86-74-53 VISNOVA
920726 LITENS
920954 LITENS
CCP92117AS CASCO
CCP92117GS CASCO
SCP92117 SANDO
ZN5503 ZEN
219170 ERA
UD21343AFP AS-PL

###

Reference nb Producer
1042102030 DENSO
1042102040 DENSO
1042102041 DENSO
1042102050 DENSO
1042102051 DENSO
1042102080 DENSO
1042104070 DENSO
1042104071 DENSO
1042104470 DENSO
1042104471 DENSO
1042104571 DENSO
1042104600 DENSO
1042104604 DENSO
1042104670 DENSO
1042104671 DENSO
1042104680 DENSO
1042104713 DENSO
1042104740 DENSO
1042104750 DENSO
1042104830 DENSO
1042108200 DENSO
270600C080 TOYOTA
270600P041 TOYOTA
270600P130 TOYOTA
270600P140 TOYOTA
270600P141 TOYOTA
270600P150 TOYOTA
270600P151 TOYOTA
270600P180 TOYOTA
270600P181 TOYOTA
270600P182 TOYOTA
270600P183 TOYOTA
270600P190 TOYOTA
270600P191 TOYOTA
270600P192 TOYOTA
270600P193 TOYOTA
270600P240 TOYOTA
270600P241 TOYOTA
2706031030 TOYOTA
2706031031 TOYOTA
2706031040 TOYOTA
2706031041 TOYOTA
2706031042 TOYOTA
2706031050 TOYOTA
2706031051 TOYOTA
2706031052 TOYOTA
2706031060 TOYOTA
2706031061 TOYOTA
2706031062 TOYOTA
2706031070 TOYOTA
2706031071 TOYOTA
2706031072 TOYOTA
2706031080 TOYOTA
2706031081 TOYOTA
2706031082 TOYOTA
2706031090 TOYOTA
2706031091 TOYOTA
2706031100 TOYOTA
2706031101 TOYOTA
2706031102 TOYOTA
2706031110 TOYOTA
2706031111 TOYOTA
2706031112 TOYOTA
2706031120 TOYOTA
2706031160 TOYOTA
2706031161 TOYOTA
2706031162 TOYOTA
2706031180 TOYOTA
2706031190 TOYOTA
2706031201 TOYOTA
2706031211 TOYOTA
2706031212 TOYOTA
2706031220 TOYOTA
2706031330 TOYOTA
2706031331 TOYOTA
2706034010 DENSO
2706075350 TOYOTA
2706075380 TOYOTA
2706075381 TOYOTA
2706075382 TOYOTA
2706075440 TOYOTA
2706075450 TOYOTA
2706075460 TOYOTA
2706075490 TOYOTA
2706075550 TOYOTA
A6323 AS-PL
A6522S AS-PL

Types of pulleys and their advantages and disadvantages

There are several types of pulleys. Learn the basic equations of the pulley system. Then learn about the different uses for pulleys. The disadvantages of using pulleys will be covered. Knowing these, you can buy the pulley that suits your needs. Here are some of the best pulley types and their pros and cons.
pulley

Basic equations of pulley systems

A pulley system is a mechanism that allows two blocks of a certain mass to be connected by a taut rope. The acceleration of each block is the same in magnitude and direction. The external force acting on each block is the weight of the block (10g) and the tension in the string. The tension between the two blocks is the total tension and the force acting on the pulley is the weight of the two blocks.
This simple mechanism uses two simple equations to explain how the system works. First, the mass of the weight on both sides of the pulley must be the same. When the weight is forced to move, the rope tightens and the second pulley descends. The weight is also attached to the second pulley and must be the same distance as the first pulley. This will result in a speed ratio of 2 times the distance covered by the first pulley.
Second, we have to calculate the force required to lift the object. The lower mass is supported by a wire configuration passing through all pulleys, while the uppermost pulley is used to apply the force. The lower block is used to support the weight. The applied force needs to travel a distance nx to move the weight. This distance, called MA, can be written as:
Once we have gathered the necessary information, we can apply the calculations to the pulley system. We can also use the Mechanical Advantage Calculator to calculate the force on the anchor. To do this, we must apply a force to the load as well as to the pulley itself. Using this equation, we can calculate the force required by the load to lift the load.
pulley

Types of pulleys

There are three basic types of pulleys: movable, fixed and compound. Both types of pulleys translate the force applied to them. The ideal mechanical advantage of pulleys is two. This is because a single movable pulley only doubles the force, whereas a compound pulley doubles or triples the force. This type of pulley is often used with other types of pulleys.
Movable pulls move with the weight of the load, and the force pulling them increases on the lift side. They are often found in utility elevators and construction cranes. These systems are very simple, inexpensive and quiet to use. The force required to lift the object depends on the mechanical advantage of the system. The two most common types of pulleys are listed below. Let’s take a closer look at each one.
V-shaped pulleys are used in vehicles and electric motors. These pulleys require a “V” belt to function properly. Some have multiple “V” grooves to avoid slipping. They are used in heavy duty applications to reduce the risk of power slip. These pulleys also have more than one “V” groove. V-belt pulleys are commonly used in vehicles and electric motors.
Composite pulleys are made from more than one type of cable or rope wrapped around the wheel. They can be fixed or hinged and are usually made of stainless steel or bronze. Composite pulleys have multiple layers and can be a single unit or many different components. There are three main types of pulleys: fixed pulleys and composite pulleys. These are the most common types. Almost every type of pulley is used for some type of application.
Fixed pulleys have one advantage over movable pulleys: they change direction as the weight of the load increases. They are typically used in heavy construction equipment. Gun tackles, patio tackles, and stationary tackles are examples of equipment that use a pulley mechanism. These devices are very common and can be found on most modern construction sites. They provide great convenience for lifting large loads.

application

What are the applications of pulleys? Simply put, a pulley is a mechanical device that transforms a difficult task into an easier one. It consists of ropes and pulleys. It is usually used to lift objects. Usually, people wrap a rope around a pulley and pull up to lift the object. One disadvantage of using pulleys is that they require the same force as lifting the object directly.
One of the most popular applications of pulleys is lifting heavy objects. They help people pull up heavy objects and blocks. The system can also be used in seeders, lifts, grinders, etc. Other applications include raising flags, loading cargo, pulling curtains and rock or mountain climbing. Students can learn about the various uses of pulleys and the physics behind them.
Pulleys can be made of many different materials, depending on the application. Some are movable, which means they move with the object they are used to lift. This pulley system can be made of nylon, wire rope or fiber material. The best part about these systems is that they are easy to install and maintain. For a better grasp, use the guide or video tutorial to learn more about the pulley system and how it works.
Tapered pulleys are common in paper mills. They are high-quality pulleys that transmit power to connected parts. They can be dynamic or static and have different balances. Because pulley systems are highly customized, most industrial applications require systems designed specifically for specific applications. In this way, the system is safe, simple and inexpensive. The benefits of this design are endless.
The most common use of pulleys is for motor drives. They are used to minimize noise by applying force to the shaft to reduce the workload. They are also less expensive than gears and do not require lubrication. Furthermore, they can change the direction of the applied force. They are also less expensive than gears and are often used with other components. A screw is a cylindrical member with helical ribs used to connect something.
pulley

shortcoming

Although the pulley system makes it easier to move heavy objects, it still has some drawbacks. When using a pulley system, you must remember that the force required to lift the weight increases with the number of cycles. In addition, the distance between the puller and the heavy object increases, which may lead to accidents. Also, moving heavy objects can be tricky if the rope slips. Pulley systems are not very expensive and can be easily assembled. However, it does require a lot of space.
First, it is not efficient. Besides being inefficient, pulleys produce different forces at different speeds. Fixed pulleys use more force than the load, while movable pulleys move with the load. A movable pulley requires less force than a fixed pulley, but the combined system travels a long distance. Therefore, this method is not as efficient as the fixed method.
Pulleys are not only used in industrial processes. You can see them in various places in your daily life. For example, large construction cranes use pulleys to lift heavy loads. Even flagpoles, blinds, clotheslines, ziplines, motors and climbing equipment use pulleys. Still, despite their advantages, the disadvantages are not too serious.
Another disadvantage of the pulley is its wear and tear. While a pulley’s housing is theoretically infinite, its bearings and locking components typically wear out over time. To overcome this problem, a new bearing and locking assembly can be installed. No need to replace the housing and shaft, the entire assembly can be re-bonded and painted to replicate the original look. Alternatively, the pulley can be replaced with a new housing and shaft.
Using pulleys can also reduce the advantage of pulleys. On the other hand, interception and tackle is a system in which two pulleys are connected to each other using ropes. Unlike pulleys, pulley pulley systems can be adjusted in the direction of travel and can move heavy loads up to four times their force when used in hydraulic lifts.

Xl Pulley

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