Tag Archives: pto shaft pin

China OEM Pto Drive Pin Shaft Transmission Part Agricultural Tractor Split Wood Chipper Cardan Flange Rotovator Industrial Manufacturer

Product Description

Pto Drive Pin Shaft Transmission Part Agricultural Tractor Split Wood Chipper Cardan Flange Rotovator Industrial Manufacturer

Application of Pto Drive Pin Shaft

PTO drive pin shafts are used to connect the power take-off (PTO) shaft of a tractor to an implement, such as a mower or a tiller. The pin shaft is inserted into the PTO shaft and then secured in place with a pin or bolt. The pin shaft helps to transmit power from the PTO shaft to the implement.

PTO drive pin shafts are typically made of steel or aluminum and are available in a variety of lengths and sizes. The length of the pin shaft is determined by the distance between the PTO shaft and the implement. The size of the pin shaft is determined by the size of the PTO shaft and the implement.

PTO drive pin shafts are an essential component of many agricultural and construction machines. They are used to transfer power from the PTO shaft to the implement, which allows the implement to perform its intended function.

Here are some of the specific advantages of using PTO drive pin shafts:

  • Efficiency: PTO drive pin shafts are very efficient at transferring power. They can transfer up to 95% of the power from the PTO shaft to the implement.
  • Durability: PTO drive pin shafts are very durable and can withstand a lot of wear and tear.
  • Cost-effectiveness: PTO drive pin shafts are a cost-effective way to power implements.

Overall, PTO drive pin shafts are a versatile and reliable component that can be used in a wide variety of applications. They offer a number of advantages, including efficiency, durability, and cost-effectiveness.

Here are some of the safety precautions that should be taken when using PTO drive pin shafts:

  • Always wear safety glasses when working with PTO drive pin shafts.
  • Never operate a PTO drive shaft with the guards removed.
  • Keep children and pets away from PTO drive pin shafts.
  • Be aware of your surroundings and make sure there are no people or objects in the path of the PTO drive pin shaft.
  • If the PTO drive pin shaft becomes damaged, do not use it. Replace the PTO drive pin shaft immediately.

By following these safety precautions, you can help to prevent accidents and injuries when working with PTO drive pin shafts.

 

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Material: Carbon Steel
Load: Drive Shaft
Stiffness & Flexibility: Stiffness / Rigid Axle
Journal Diameter Dimensional Accuracy: IT6-IT9
Axis Shape: Straight Shaft
Shaft Shape: Real Axis
Samples:
US$ 9999/Piece
1 Piece(Min.Order)

|
Request Sample

cardan shaft

Are there any limitations or disadvantages associated with cardan shaft systems?

While cardan shaft systems offer numerous advantages, they also have some limitations and disadvantages that should be considered. Let’s explore these limitations in detail:

1. Angular Misalignment:

– Cardan shafts are designed to accommodate angular misalignment between the driving and driven components. However, excessive misalignment can lead to increased wear, vibration, and decreased efficiency. If the misalignment exceeds the recommended limits, it can put additional stress on the universal joints and other components, reducing the lifespan of the shaft and potentially causing mechanical failures.

2. Noise and Vibration:

– Cardan shaft systems can introduce noise and vibration into the equipment or vehicle. The universal joints and slip yokes in the shaft assembly can generate vibrations as they rotate, especially at high speeds. These vibrations can contribute to increased noise levels, potentially causing discomfort for passengers or affecting the performance of sensitive equipment. Proper balancing and maintenance of the shaft can help mitigate these effects, but they may still be present to some extent.

3. Maintenance and Lubrication:

– Cardan shaft systems require regular maintenance and lubrication to ensure optimal performance and longevity. The universal joints and slip yokes need to be properly lubricated to minimize friction and wear. If maintenance is neglected, the joints can wear out quickly, leading to increased vibration, noise, and potential failure. Regular inspections and lubrication are necessary to maintain the efficiency and reliability of cardan shaft systems.

4. Limited Flexibility in High-Speed Applications:

– Cardan shafts have limitations when it comes to high-speed applications. At high rotational speeds, the centrifugal forces acting on the rotating components can cause significant stress on the shaft and universal joints. This can result in increased wear, reduced lifespan, and potential failure. In such cases, alternative power transmission systems such as constant-velocity (CV) joints or direct drives may be more suitable.

5. Space and Weight Constraints:

– Cardan shaft systems require sufficient space for installation due to their length and telescopic design. In applications with limited space constraints, it may be challenging to accommodate the full length of the shaft, or modifications may be necessary to ensure proper fit. Additionally, the weight of the shaft can be a consideration, especially in applications where weight reduction is crucial. In such cases, alternative lightweight materials or drive systems may be more appropriate.

6. Cost:

– Cardan shaft systems can be relatively costly compared to other power transmission options. The complexity of their design, the need for customization, and the use of multiple components contribute to higher manufacturing and installation costs. However, it’s important to consider the overall benefits and performance of cardan shaft systems when evaluating their cost-effectiveness for specific applications.

7. Limited Misalignment Compensation:

– While cardan shafts can accommodate angular misalignment, they have limitations when it comes to compensating for other types of misalignment, such as parallel offset or axial displacement. In applications that require significant compensation for these types of misalignment, alternative power transmission systems with more advanced flexibility, such as flexible couplings or CV joints, may be more suitable.

Despite these limitations, cardan shaft systems remain widely used and offer numerous advantages in various applications. By understanding these limitations and considering the specific requirements of the application, engineers can make informed decisions regarding the suitability of cardan shaft systems or explore alternative power transmission options.

cardan shaft

Are there any emerging trends in cardan shaft technology, such as lightweight materials?

Yes, there are several emerging trends in cardan shaft technology, including the use of lightweight materials and advancements in design and manufacturing techniques. These trends aim to improve the performance, efficiency, and durability of cardan shafts. Here are some of the notable developments:

1. Lightweight Materials:

– The automotive and manufacturing industries are increasingly exploring the use of lightweight materials in cardan shaft construction. Materials such as aluminum alloys and carbon fiber-reinforced composites offer significant weight reduction compared to traditional steel shafts. The use of lightweight materials helps reduce the overall weight of the vehicle or machinery, leading to improved fuel efficiency, increased payload capacity, and enhanced performance.

2. Advanced Composite Materials:

– Advanced composite materials, such as carbon fiber and fiberglass composites, are being utilized in cardan shafts to achieve a balance between strength, stiffness, and weight reduction. These materials offer high tensile strength, excellent fatigue resistance, and corrosion resistance. By incorporating advanced composites, cardan shafts can achieve reduced weight while maintaining the necessary structural integrity and durability.

3. Enhanced Design and Optimization:

– Advanced computer-aided design (CAD) and simulation techniques are being employed to optimize the design of cardan shafts. Finite element analysis (FEA) and computational fluid dynamics (CFD) simulations allow for better understanding of the structural behavior, stress distribution, and performance characteristics of the shafts. This enables engineers to design more efficient and lightweight cardan shafts that meet specific performance requirements.

4. Additive Manufacturing (3D Printing):

– Additive manufacturing, commonly known as 3D printing, is gaining traction in the production of cardan shafts. This technology allows for complex geometries and customized designs to be manufactured with reduced material waste. Additive manufacturing also enables the integration of lightweight lattice structures, which further enhances weight reduction without compromising strength. The flexibility of 3D printing enables the production of cardan shafts that are tailored to specific applications, optimizing performance and reducing costs.

5. Surface Coatings and Treatments:

– Surface coatings and treatments are being employed to improve the durability, corrosion resistance, and friction characteristics of cardan shafts. Advanced coatings such as ceramic coatings, diamond-like carbon (DLC) coatings, and nanocomposite coatings enhance the surface hardness, reduce friction, and protect against wear and corrosion. These treatments extend the lifespan of cardan shafts and contribute to the overall efficiency and reliability of the power transmission system.

6. Integrated Sensor Technology:

– The integration of sensor technology in cardan shafts is an emerging trend. Sensors can be embedded in the shafts to monitor parameters such as torque, vibration, and temperature. Real-time data from these sensors can be used for condition monitoring, predictive maintenance, and performance optimization. Integrated sensor technology allows for proactive maintenance, reducing downtime and improving the overall operational efficiency of vehicles and machinery.

These emerging trends in cardan shaft technology, including the use of lightweight materials, advanced composites, enhanced design and optimization, additive manufacturing, surface coatings, and integrated sensor technology, are driving advancements in the performance, efficiency, and reliability of cardan shafts. These developments aim to meet the evolving demands of various industries and contribute to more sustainable and high-performing power transmission systems.cardan shaft

How do cardan shafts contribute to power transmission and motion in various applications?

Cardan shafts, also known as propeller shafts or drive shafts, play a significant role in power transmission and motion in various applications. They are widely used in automotive, industrial, and marine sectors to transfer torque and rotational power between non-aligned components. Cardan shafts offer several benefits that contribute to efficient power transmission and enable smooth motion in different applications. Here’s a detailed look at how cardan shafts contribute to power transmission and motion:

1. Torque Transmission:

– Cardan shafts are designed to transmit torque from a driving source, such as an engine or motor, to a driven component, such as wheels, propellers, or machinery. They can handle high torque loads and transfer power over long distances. By connecting the driving and driven components, cardan shafts ensure the efficient transmission of rotational power, enabling the motion of vehicles, machinery, or equipment.

2. Angular Misalignment Compensation:

– One of the key advantages of cardan shafts is their ability to accommodate angular misalignment between the driving and driven components. The universal joints present in cardan shafts allow for flexibility and articulation, compensating for variations in the relative positions of the components. This flexibility is crucial in applications where the driving and driven components may not be perfectly aligned, such as vehicles with suspension movement or machinery with adjustable parts. The cardan shaft’s universal joints enable the transmission of torque even when there are angular deviations, ensuring smooth power transfer.

3. Axial Misalignment Compensation:

– In addition to angular misalignment compensation, cardan shafts can also accommodate axial misalignment between the driving and driven components. Axial misalignment refers to the displacement along the axis of the shafts. The design of cardan shafts with telescopic sections or sliding splines allows for axial movement, enabling the shaft to adjust its length to compensate for variations in the distance between the components. This feature is particularly useful in applications where the distance between the driving and driven components can change, such as vehicles with adjustable wheelbases or machinery with variable attachment points.

4. Vibration Damping:

– Cardan shafts contribute to vibration damping in various applications. The flexibility provided by the universal joints helps absorb and dampen vibrations generated during operation. By allowing slight angular deflection and accommodating misalignment, cardan shafts help reduce the transmission of vibrations from the driving source to the driven component. This vibration damping feature improves the overall smoothness of operation, enhances ride comfort in vehicles, and reduces stress on machinery.

5. Balancing:

– To ensure smooth and efficient operation, cardan shafts are carefully balanced. Even minor imbalances in rotational components can result in vibration, noise, and reduced performance. Balancing the cardan shaft minimizes these issues by redistributing mass along the shaft, eliminating or minimizing vibrations caused by centrifugal forces. Proper balancing improves the overall stability, reduces wear on bearings and other components, and extends the lifespan of the shaft and associated equipment.

6. Safety Features:

– Cardan shafts often incorporate safety features to protect against mechanical failures. For example, some cardan shafts have guards or shielding to prevent contact with rotating components, reducing the risk of accidents or injuries. In applications where excessive forces or torques can occur, cardan shafts may include safety mechanisms such as shear pins or torque limiters. These features are designed to protect the shaft and other components from damage by shearing or disengaging in case of overload or excessive torque.

7. Versatility in Applications:

– Cardan shafts offer versatility in their applications. They are widely used in various industries, including automotive, agriculture, mining, marine, and industrial sectors. In automotive applications, cardan shafts transmit power from the engine to the wheels, enabling vehicle propulsion. In industrial machinery, they transfer power between motors and driven components such as conveyors, pumps, or generators. In marine applications, cardan shafts transmit power from the engine to propellers, enabling ship propulsion. The versatility of cardan shafts makes them suitable for a wide range of power transmission needs in different environments.

In summary, cardan shafts are essential components that contribute to efficient power transmission and motion in various applications. Their ability to accommodate angular and axial misalignment, dampen vibrations, balance rotational components, and incorporate safety features enables smooth and reliable operation in vehicles, machinery, and equipment. The versatility of cardan shafts makes them a valuable solution for transmitting torque and rotational power in diverse industries and environments.

China OEM Pto Drive Pin Shaft Transmission Part Agricultural Tractor Split Wood Chipper Cardan Flange Rotovator Industrial Manufacturer  China OEM Pto Drive Pin Shaft Transmission Part Agricultural Tractor Split Wood Chipper Cardan Flange Rotovator Industrial Manufacturer
editor by CX 2024-02-06

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We – EPG Group the biggest agricultural gearbox and pto manufacturing unit in China with 5 various branches. For a lot more particulars: Cellular/whatsapp/telegram/Kakao us at: 0086-13083988828

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First EPT (mining)dump truck elements, All series, such as 3305,3306,3307, TR50, TR60, TR100, and MT3600, MT3700, NTE150, NTE200, NTE240, NTE260,.excellent quality! Competitive price tag! Welcome to inquiry!

one.framed structure
2.PTO assembly
3.Relationship
4.transmission shaft
five.wheel hub
6.absorber
seven.Front axle and wheel hub
8.differential mechanism
9.rear axle assembly, axle shaft
ten.braking technique
11.gap adjuster
twelve.wheel-side/planetary structure
13.front suspension cylinder
14.rear suspension cylinder
15.steering cylinder
16.lifting cylinder
17.Chassis parts, fastening bolt, pin, shaft sleeve.

 

drawing NO Vehicle model
framed structure   
9015218 TR50
20019310 TR50
9240460 TR50
09015394 TR50
09069246 TR50

PTO assembly
20000042 TR50
9060268 TR50
9274893 TR50
9195847 TR50
571528 TR50
00907696 TR50
0905711 TR50
0905710 TR50
15252439 TR50
15245600 TR50
15016501 TR50
09264925 TR50
1530571 TR50
05714209 TR50
06772182 TR50
6772182 TR50
09269703 TR50
connection
15300857 TR50
15300858 TR50
09227330 TR50
06772182 TR50
transmission shaft
old09060412/new15300854 3307/TR50
old15233277/new15272774 3307/TR50
old09072552/new1530571 3307/TR50
old0957152/new15272772 3307/TR50

 

15352300 TR100new
15352330 TR100
15352327 TR100.
09253468 TR100
09255689 TR100.11E
09433576 TR100
09062983 TR100.11E.
15571746 TR100
09062983  TR100
9011828 TR100
15000838 TR100
09015398 TR100
15249677 TR100
15228480 TR100
15335654 TR100

PTO assembly
15252682 TR60
9065715 TR60
9274893 TR60
9195847 TR60
15252439 TR60
15300845 TR60
transmission shaft
15300843 TR60
15272772 TR60
1530571 TR60
15272865 TR60
wheel hub
15246296 TR60
9253468 TR60
15265338 TR60
differential mechanism
9272352 TR60
1530571 TR60
9272346 TR60
9272386 TR60
front suspension cylinder
15336056 TR60
15336055 TR60
15247973 TR60
09068668 TR60
5714086 TR60
0957149 TR60
5716508A TR60

absorber
15228210 TR100
9065712 TR100
9423067 TR100
15246912 TR100
15229318 3311E
15336167 TR100
1535712 TR100
15336167 TR100
PTO assembly
old15257485/new15331595 TR100
old15257459/new15331594 TR100
20038184 TR100new
20038083 TR100new
9274893 TR100
9195847 TR100
15331585 TR100new
15246910 3311E
1530571 TR100/11E
15331582 TR100
connection
old06777070/new1530571 TR100
old15258084/new15230619 TR100
09227330 TR100
06772182 TR100
transmission shaft
old15300850/new15336537 TR100
15272865 TR100
old15258114/new15352888 TR100
15271476 TR100
differential mechanism
15315244 TR100
9272346 TR100
9272352 TR100
9272386 TR100
150571  TR100
15007646  TR100
Front suspension cylinder
2003571/15250974/15352794 TR100
15335709/15250973/15335709 TR100
09069475 TR100
5713858 TR100
09069476 TR100
9396484/9396486 TR100

Different way to deliver the areas
Our ambitions: Fast, comprehensive and risk-free shipping items to you…
EPT do:
Authentic areas
Reasonable price tag
Enough inventories
F EPT delivery

If you have other calls for for Terex dump truck components,you should really feel free of charge to contact with me.

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2C LWD/LWT 114-2172, 5-2172X
2C LWT/LWT 5-2110 5-2171
2C 4LWT 5-781X
2C LWD X LWD five-2117
2C 2R/2CLWT 114-2100
2R 5-2101 1-1875
3C HWD X RD 5-3154
3C HWD/HWD 5-3155
3C LWD X LWD five-3161
3C LWD/HWD five-3211 9325
3C LWT X LWD W3150, 5-3150
3C LWT/HWD five-3158X
3C LWT/LWT five-3152X
44R five-431X three-0044
4C LWD X LWT W4123
4C 4R/LWT five-4152
4C HWD/HWD five-4143
4C HWD/LWT 114-4140 5-4140
4C LWD X LWD W4104
4C LWT X LWT 5-4138, 5-4000X
58WB DWT CP58WB-DWT 5-5801
58WB HWD X DWT 58WB1F
58WB HWD X LWT CP58WB-HB
58WB HWD/HWD five-5800, CP58WB-HWD
5C LWT/LWT 5-5122
5C HWD X HWD five-5177
5C LWD/HWD LONG ZERK, 5-5139X
5R LWT X HWD five-5173X
5C LWT X LWD five-5127
5C LWT X RD 5-5132
5C Round 5571-S
6C HWD PERMALUBE, GKN REF: 3-71301 3-65980 631-04-2-C91
6C 4 HWD LUBE4LIFE, X6128
6C LWD X HWD W6149, 5-6149
6C/7C 6C LWT/7C LWT five-6162
6C/7C HWD 5-6166 / 114-6166
6C 2LWT X 2 LWD 5-6152X
6C 4HWD W6128 5-6106X
6C HWD CP62N-HWD
6C 4LWT 5-6000X W6143 67288
6C HB PERMALUBE, W6102 5-6102XPL
6C HWD PERMALUBE three-75937
6C HWD X LWT 6C-CP-62N-HB W6114, 5-6102
6C HWD/RD 5-6139
7C HWD X HWD five-7105 W7126 CP72N-HWD 69233
7C DWT X HWD 4 GREASE ZERKS 5-7370, 3-74587
7C HWD X HWD 4 ZERKS 5-7126-4
7C HWD X HWD 45 DEGREE ZERK
7C HWD PERMALUBE 3-75956
7C LWD/LWT five-7206
7C LWD 114-7209
7C LWT X HWD PERMALUBE CP72N-155
7C LWT X HWD W7207 2520-01-518-0923
7C LWT/HWD 5-7207 5-7102X 5-7202X, CP72N-HB
7C LWT/LWT five-7000 5-7205 CP72N-DWT
7N   CP7N
8.5C HWD CP85WB-HWD
eight.5C LWT/LWT five-8500
8.5C 4 HWD W8516, 5-8516
eight.5C HWD PERMALUBE 5-8576XPL X8516 5-8516XPL
eight.5C LWD X HWD five-8585
8.5C LWD 5-8575
8.5C LWT X HWD PERMALUBE 5-8515XPL
eight.5C LWT X HWD five-8515
8C LWT X LWD W8206 5-8206
8C HWD/HWD 5-8105 5-8113
8C LWT/HWD 5-8207, W8207
8C LWT/LWT 5-8205
8C TH 6-8205
8C TH five-8205XPL
9C LWT X HWD 5-9017, CP92N-HB
9C HWD X HWD 5-9001, 5-9016
9C LWD 5-9015 7075-HC 114-9037 7983274
9C LWT X LWD 114-9026, W9026
9C LWT/LWT five-9014
CONVERSION 6C LWT X 7C HWD 5-6163
CONVERSION 1650 X 7C HWD 5-330
CONVERSION 1810-9C 5-324
ROUND BEARING WING BEARING
Measurement Type
1310 2C-TW
1310 3C-TW
1410 4C-B
1410 4C-D
1480 5C-B
1480 5C-TW
1550 6C-TW
1550 6C-B
1550 58WB-B
1710 8.5C-B
1810 9C-B
1880 9C-B

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Firm profile

EPT was set up on Jan., 2007, we have more than eighty workers and a lot more than 20% of them are specialised technological personnel.

Coming together the way, EPT has turn out to be a professional maker and exporter in precision shaft, micro shaft, motor shaft, stainless metal shaft, non-stHangZhourd shaft and hardware components.

The goods are employed in numerous fields such as residence appliance, micro motor, laptop, scanner, printer, communication, vehicle and equipment equipment and instrument and many others.

 

 

We passed IATF16949:2016 Quality Management System Certification:

We handed ISO9001:2015 Quality Management System Certification.

FAQ:

one,How can I get samples?

If sample benefit under twenty$,we can deliver by totally free of demand.Otherwise we would charge samples.

For Sample shipping, it is better if buyer can have acquire courier account amount.
Or buyer can prepare nearby courier business to choose up samples from our factory.

Also we can organize in our side and charge courier expenses accordingly. Any further query,p EPT write to our email box!

two,What is the leadtime for sample purchase ?

10-15 days following getting your sample get.

3,What is leadtime for mass amount ?

It truly is depend on the quantity.
For example: If the quantity as 10000pcs, 15 days for the leadtime following getting PO.

4,Payment Terms:

one.a hundred% T/T in EPT (30% deposit,stability compensated before cargo).
2.a hundred% T/T (thirty% deposit, harmony 30 times right after B/L day),but masking CITIC.
three.L/C
four.D/P
5.D/A
six.Paypal

5,What is your minimum order quantity for the items in the order?
 
2000pcs for each size except for sample.

six,Are you a trading company or manufacturer? 

We are a manufacturer, specialized in producing and exporting various shafts and pins

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