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China supplier Cutting Machine Header Rice Reaper Beans Grass Corn Harvester near me manufacturer

Product Description

CHMC 4YZ-4WA model 200HP Corn and Maize Combine Harvester

 

 

Technical parameters:

Model

4YZ-4WA

Type

Wheel type

Wheel

2 drive wheel + 2 direction wheel

Function

Picker + peeling, produce “corn cob”

Model of engine

YC4A165-T300

Engine manufactory

YUCHAI

Power

200 hp

Engine speed

2300-2400 r/min

Harvester rows

4 rows

Cutting width

2300mm

Harvest efficiency

0.33~0.66 hm2/h

Total loss rate

≤4%

Breakage rate

≤1.0%

Impurity rate

≤1.5%

Peeling rate

≥90%

Oil consumption

≤20kg/hm²

Minimum corn cob height from field

300mm

Granary volume

2200L

NW

6571 Kgs

Size

6855×2582×3230 mm

 

 

Harvesting Process:                                                                                   

 

1.Using a straw crushing and returning device, can completely crush the corn straw and reduce the stubble height. 

 

2.Peeling device with special design, adopt soft peeling technology,5 sets peeling device,20 pcs rollers, metal and rubber rollers blended, this design makes peeling cleaner, reduces the rate of seed damage&loss.

 

3.Flexible harvesting ways,suitable for different row space and different planting structure, can harvest even not in rows.

 

4.Assembling shake sieve and seed recycling bins, can collect the fallen corn seed, reduce loss rate.

 

5.Short machine body, short front-back wheel distance, small turning radius, easy to turn around in the field.

 

6.Special cutter table, auger-type picking roller, forceful and quick to pull the corn stick into cutter table, not intertwine, not blocking.

 

7.Adopt a hydraulic side-dumping device, convenient for corn unloading.

 

8.Adopt closed, shock-absorbing, and big-sized glass cab, comfortable and clear visibility to drive.

 

9.Peeling device and CZPT elevator with an alarm system, first-time to warn the fault information.

 

10.Adopt a visual image system to monitor CZPT tank and reversing, convenient, clean, and safe.

 

11. Reserve a termination to connect the air conditioner or fan.

 

 

FAQ:                                                                                 

Q1.How long is the delivery date?

A: In general, we can ship the goods within 15 days after receiving your payment. Of course, it also depends on your quantity.

 

Q2. How can I visit your factory?

A: We are located in HangZhou city, middle of China, Airport&High-speed train, the transportation is very convenient

 

Q3: What are your main products?

A: Our products are covered rice&wheat combine harvester, corn harvester, and peanut harvester.

 

Q4. What are your terms of payment?

A: T/T, L/C, Paypal, Western Union

 

Q 5: How is the quality of the harvester?

A: We are an experienced manufacturer which has been in this field for 30 more years, and can supply high-quality harvesters for you.

 

 

After-Sales Service                                               

1. Training how to install and use the machine, engineers available to service machinery overseas.

 

2. Warranty period of 1 year since machine arrives destination port. Malfunctions which are caused by machine-self and quality will be responsible for our manufacturer. Other malfunctions caused by operation mistakes, man-made problems, etc will be responsible for clients-self.

 

3. Timely response to customers’ problems 7*24 hours provide in-time Feedback tracking and after-sales services to maximize the customer’s satisfaction.

 

Local Service at Users Farm                                   

 

Services Including:

 

– Agricultural technology consulting

– Combine harvester usage training

– Agricultural machinery sales services

– Agricultural machinery maintenance services

– Farm technology exchange meetings

– Farmers’ private technology exchange meetings

– Agricultural machinery sharing and leasing organizations

 

Contact Us                                                                

Mia Hou
Business Manager/International Dept.
 
 
HangZhou CZPT Harvest Machinery Co., Ltd
ADD: North of 310 national road, Xihu (West Lake) Dis. Town, HangZhou,
HangZhou City, ZheJiang province, China.P.O.455710
 

Drive shaft type

The driveshaft transfers torque from the engine to the wheels and is responsible for the smooth running of the vehicle. Its design had to compensate for differences in length and angle. It must also ensure perfect synchronization between its joints. The drive shaft should be made of high-grade materials to achieve the best balance of stiffness and elasticity. There are 3 main types of drive shafts. These include: end yokes, tube yokes and tapered shafts.
air-compressor

tube yoke

Tube yokes are shaft assemblies that use metallic materials as the main structural component. The yoke includes a uniform, substantially uniform wall thickness, a first end and an axially extending second end. The first diameter of the drive shaft is greater than the second diameter, and the yoke further includes a pair of opposing lugs extending from the second end. These lugs have holes at the ends for attaching the axle to the vehicle.
By retrofitting the driveshaft tube end into a tube fork with seat. This valve seat transmits torque to the driveshaft tube. The fillet weld 28 enhances the torque transfer capability of the tube yoke. The yoke is usually made of aluminum alloy or metal material. It is also used to connect the drive shaft to the yoke. Various designs are possible.
The QU40866 tube yoke is used with an external snap ring type universal joint. It has a cup diameter of 1-3/16″ and an overall width of 4½”. U-bolt kits are another option. It has threaded legs and locks to help secure the yoke to the drive shaft. Some performance cars and off-road vehicles use U-bolts. Yokes must be machined to accept U-bolts, and U-bolt kits are often the preferred accessory.
The end yoke is the mechanical part that connects the drive shaft to the stub shaft. These yokes are usually designed for specific drivetrain components and can be customized to your needs. Pat’s drivetrain offers OEM replacement and custom flanged yokes.
If your tractor uses PTO components, the cross and bearing kit is the perfect tool to make the connection. Additionally, cross and bearing kits help you match the correct yoke to the shaft. When choosing a yoke, be sure to measure the outside diameter of the U-joint cap and the inside diameter of the yoke ears. After taking the measurements, consult the cross and bearing identification drawings to make sure they match.
While tube yokes are usually easy to replace, the best results come from a qualified machine shop. Dedicated driveshaft specialists can assemble and balance finished driveshafts. If you are unsure of a particular aspect, please refer to the TM3000 Driveshaft and Cardan Joint Service Manual for more information. You can also consult an excerpt from the TSB3510 manual for information on angle, vibration and runout.
The sliding fork is another important part of the drive shaft. It can bend over rough terrain, allowing the U-joint to keep spinning in tougher conditions. If the slip yoke fails, you will not be able to drive and will clang. You need to replace it as soon as possible to avoid any dangerous driving conditions. So if you notice any dings, be sure to check the yoke.
If you detect any vibrations, the drivetrain may need adjustment. It’s a simple process. First, rotate the driveshaft until you find the correct alignment between the tube yoke and the sliding yoke of the rear differential. If there is no noticeable vibration, you can wait for a while to resolve the problem. Keep in mind that it may be convenient to postpone repairs temporarily, but it may cause bigger problems later.
air-compressor

end yoke

If your driveshaft requires a new end yoke, CZPT has several drivetrain options. Our automotive end yoke inventory includes keyed and non-keyed options. If you need tapered or straight holes, we can also make them for you.
A U-bolt is an industrial fastener that has U-shaped threads on its legs. They are often used to join 2 heads back to back. These are convenient options to help keep drivetrain components in place when driving over rough terrain, and are generally compatible with a variety of models. U-bolts require a specially machined yoke to accept them, so be sure to order the correct size.
The sliding fork helps transfer power from the transfer case to the driveshaft. They slide in and out of the transfer case, allowing the u-joint to rotate. Sliding yokes or “slips” can be purchased separately. Whether you need a new 1 or just a few components to upgrade your driveshaft, 4 CZPT Parts will have the parts you need to repair your vehicle.
The end yoke is a necessary part of the drive shaft. It connects the drive train and the mating flange. They are also used in auxiliary power equipment. CZPT’s drivetrains are stocked with a variety of flanged yokes for OEM applications and custom builds. You can also find flanged yokes for constant velocity joints in our extensive inventory. If you don’t want to modify your existing drivetrain, we can even make a custom yoke for you.

China supplier Cutting Machine Header Rice Reaper Beans Grass Corn Harvester   near me manufacturer China supplier Cutting Machine Header Rice Reaper Beans Grass Corn Harvester   near me manufacturer

China OEM Farming Equipment 4lz-4.0e Harvesting Machine for Corn wholesaler

Product Description

crawler type combine harvester,; 88hp diesel engine,; gearbox with HST,; 4kg feeding capacity,; 22/8822 0571 -62828320,; 62828873
Fax:; 86~/8822 0571 -62829970
 
 
Mobile:;
 
 

 

Applications of Spline Couplings

A spline coupling is a highly effective means of connecting 2 or more components. These types of couplings are very efficient, as they combine linear motion with rotation, and their efficiency makes them a desirable choice in numerous applications. Read on to learn more about the main characteristics and applications of spline couplings. You will also be able to determine the predicted operation and wear. You can easily design your own couplings by following the steps outlined below.
splineshaft

Optimal design

The spline coupling plays an important role in transmitting torque. It consists of a hub and a shaft with splines that are in surface contact without relative motion. Because they are connected, their angular velocity is the same. The splines can be designed with any profile that minimizes friction. Because they are in contact with each other, the load is not evenly distributed, concentrating on a small area, which can deform the hub surface.
Optimal spline coupling design takes into account several factors, including weight, material characteristics, and performance requirements. In the aeronautics industry, weight is an important design factor. S.A.E. and ANSI tables do not account for weight when calculating the performance requirements of spline couplings. Another critical factor is space. Spline couplings may need to fit in tight spaces, or they may be subject to other configuration constraints.
Optimal design of spline couplers may be characterized by an odd number of teeth. However, this is not always the case. If the external spline’s outer diameter exceeds a certain threshold, the optimal spline coupling model may not be an optimal choice for this application. To optimize a spline coupling for a specific application, the user may need to consider the sizing method that is most appropriate for their application.
Once a design is generated, the next step is to test the resulting spline coupling. The system must check for any design constraints and validate that it can be produced using modern manufacturing techniques. The resulting spline coupling model is then exported to an optimisation tool for further analysis. The method enables a designer to easily manipulate the design of a spline coupling and reduce its weight.
The spline coupling model 20 includes the major structural features of a spline coupling. A product model software program 10 stores default values for each of the spline coupling’s specifications. The resulting spline model is then calculated in accordance with the algorithm used in the present invention. The software allows the designer to enter the spline coupling’s radii, thickness, and orientation.
splineshaft

Characteristics

An important aspect of aero-engine splines is the load distribution among the teeth. The researchers have performed experimental tests and have analyzed the effect of lubrication conditions on the coupling behavior. Then, they devised a theoretical model using a Ruiz parameter to simulate the actual working conditions of spline couplings. This model explains the wear damage caused by the spline couplings by considering the influence of friction, misalignment, and other conditions that are relevant to the splines’ performance.
In order to design a spline coupling, the user first inputs the design criteria for sizing load carrying sections, including the external spline 40 of the spline coupling model 30. Then, the user specifies torque margin performance requirement specifications, such as the yield limit, plastic buckling, and creep buckling. The software program then automatically calculates the size and configuration of the load carrying sections and the shaft. These specifications are then entered into the model software program 10 as specification values.
Various spline coupling configuration specifications are input on the GUI screen 80. The software program 10 then generates a spline coupling model by storing default values for the various specifications. The user then can manipulate the spline coupling model by modifying its various specifications. The final result will be a computer-aided design that enables designers to optimize spline couplings based on their performance and design specifications.
The spline coupling model software program continually evaluates the validity of spline coupling models for a particular application. For example, if a user enters a data value signal corresponding to a parameter signal, the software compares the value of the signal entered to the corresponding value in the knowledge base. If the values are outside the specifications, a warning message is displayed. Once this comparison is completed, the spline coupling model software program outputs a report with the results.
Various spline coupling design factors include weight, material properties, and performance requirements. Weight is 1 of the most important design factors, particularly in the aeronautics field. ANSI and S.A.E. tables do not consider these factors when calculating the load characteristics of spline couplings. Other design requirements may also restrict the configuration of a spline coupling.

Applications

Spline couplings are a type of mechanical joint that connects 2 rotating shafts. Its 2 parts engage teeth that transfer load. Although splines are commonly over-dimensioned, they are still prone to fatigue and static behavior. These properties also make them prone to wear and tear. Therefore, proper design and selection are vital to minimize wear and tear on splines. There are many applications of spline couplings.
A key design is based on the size of the shaft being joined. This allows for the proper spacing of the keys. A novel method of hobbing allows for the formation of tapered bases without interference, and the root of the keys is concentric with the axis. These features enable for high production rates. Various applications of spline couplings can be found in various industries. To learn more, read on.
FE based methodology can predict the wear rate of spline couplings by including the evolution of the coefficient of friction. This method can predict fretting wear from simple round-on-flat geometry, and has been calibrated with experimental data. The predicted wear rate is reasonable compared to the experimental data. Friction evolution in spline couplings depends on the spline geometry. It is also crucial to consider the lubrication condition of the splines.
Using a spline coupling reduces backlash and ensures proper alignment of mated components. The shaft’s splined tooth form transfers rotation from the splined shaft to the internal splined member, which may be a gear or other rotary device. A spline coupling’s root strength and torque requirements determine the type of spline coupling that should be used.
The spline root is usually flat and has a crown on 1 side. The crowned spline has a symmetrical crown at the centerline of the face-width of the spline. As the spline length decreases toward the ends, the teeth are becoming thinner. The tooth diameter is measured in pitch. This means that the male spline has a flat root and a crowned spline.
splineshaft

Predictability

Spindle couplings are used in rotating machinery to connect 2 shafts. They are composed of 2 parts with teeth that engage each other and transfer load. Spline couplings are commonly over-dimensioned and are prone to static and fatigue behavior. Wear phenomena are also a common problem with splines. To address these issues, it is essential to understand the behavior and predictability of these couplings.
Dynamic behavior of spline-rotor couplings is often unclear, particularly if the system is not integrated with the rotor. For example, when a misalignment is not present, the main response frequency is 1 X-rotating speed. As the misalignment increases, the system starts to vibrate in complex ways. Furthermore, as the shaft orbits depart from the origin, the magnitudes of all the frequencies increase. Thus, research results are useful in determining proper design and troubleshooting of rotor systems.
The model of misaligned spline couplings can be obtained by analyzing the stress-compression relationships between 2 spline pairs. The meshing force model of splines is a function of the system mass, transmitting torque, and dynamic vibration displacement. This model holds when the dynamic vibration displacement is small. Besides, the CZPT stepping integration method is stable and has high efficiency.
The slip distributions are a function of the state of lubrication, coefficient of friction, and loading cycles. The predicted wear depths are well within the range of measured values. These predictions are based on the slip distributions. The methodology predicts increased wear under lightly lubricated conditions, but not under added lubrication. The lubrication condition and coefficient of friction are the key factors determining the wear behavior of splines.

China OEM Farming Equipment 4lz-4.0e Harvesting Machine for Corn   wholesaler China OEM Farming Equipment 4lz-4.0e Harvesting Machine for Corn   wholesaler