China wholesaler OEM Galvanized Sheet Metal Steel Aluminum Alloy Stamping Parts for Agricultural Equipment near me shop

Product Description

          OEM Galvanized Sheet Metal Steel Aluminum Alloy Stamping Parts for Agricultural Equipment

Material Precious Metals,Copper,Brass,Steel Alloys,Hardened Metals,Aluminum,Stainless Steel,Bronze …etc
Dimension customized
Tolerance +/- 0.005–0.02mm / can also be customized.
Prototype accepted
Surface treatment plating,mirror polishing,powder coating,anodize oxidation, e-coating,brushed,dip-coating…etc
Processing laser cuting,stamping,bending,punching,CNC machining, die-casting, forming, tooling, milling, grinding,tapping,riveting,welding 
Package polybag/caron/wooden-case
Lead time 3-15days
Application car part,sever casing housing, communication equipment, intelligent terminal, airspace parts, auto sheet metal, car’s navigation system, medical apparatus,drone part, LCD TV back plate, air condition, computer/advisement player, security equipment, air cleaner, water treatment equipment and electric appliance
Equipment laser cutting machine, Japan Murata CNC punch, CNC Bending Machine, Large hydraulic press machine600-1200T Squeeze riveter ZheJiang punch machine, CNC machining center, Precision miller, Grinder, Driller, Multi-spindle tool, argon welding/carbon dioxide welding/AC welding machine, Pipe cutting/bending machine and Polishing machine

Our promise:
1.Offering design and improvement scheme freely.
2.Offering video and photos with details freely during production.
3.Helping customers to do factory inspection freely for his other Chinese suppliers.
4.We have our own factory, and 80% of our employees have been working for more than 10 years. 
5.Producing completely according to the accuracy of drawings,assembly measurement to detect function and strict     quality control to ensure 0 return rate.
6.99% orders can be ensured delivery time.
7.Quote can be offered within 24 hours fastest.
8.Delivery time is only 7 days fastest.
9.Responding to the enquiry within 2 hours.
10.The materials we use are optimal.
11.24 hours online service.
12.The lowest price with the same quality and service.
13.Logistics arrangement with high performance to price ratio.
14.The most suitable packing method to different products. 

           OUR PRODUCING PROCESS:
            1. Tooling (Mold) design and Manufacture.
            2. Manufacture the parts according to the Stamping Machine.
            3. Riveting, Welding or Screw tap according to Customer’s require.
            4. After finish manufacture process we will test the parts by the Image measurement instrument, 
            Caliper, Angel Gage etc.
            5. After make sure all the dimension can reach customer’s require, we will make the surface 
            treatment process.
            6. After finish surface treatment we will testing all the parts by worker so that we can make sure 
            the parts which we sell is 100% qualified.
            7. After finish testing we will pack the parts by Vacuum Package Machine.

 

        Q: What is the payment method?
        A: We accept TT (Bank Transfer), Western Union, L/C.
        1. For total amount under US$500, 100% in advance.
        2. For total amount above US$500, 30% in advance, the rest before shipment.

        Q: What is your MOQ?
        A: MOQ depends on our client’s needs, besides,we welcome trial order before mass-production.
 
        Q: What is the production cycle?
        A: It varies a lot depending on product dimension,technical requirements and quantity. 
        We always try to meet customers’ requirement by adjusting our workshop schedule.
 
        Q: What kind of payment terms do you accept?
        A: T/T, western union,  etc.
 
        Q: Is it possible to know how is my product going on without visiting your company?
        A: We will offer a detailed products schedule and send weekly reports with digital pictures 
        and videos which show the machining progress.
 
       Q: If you make poor quality goods,will you refund our fund?
       A: We make products according to drawings or samples strictly until them reach your 100% 
       satisfaction.And actually we wont take a chance to do poor quality products.We are proud of 
       keeping the spirit of good quality.

       If you are interested in our products, please send message to us! 

       Quality First,Price Best,Service Foremost!
       We assure you of our best services at all times!

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 wholesaler OEM Galvanized Sheet Metal Steel Aluminum Alloy Stamping Parts for Agricultural Equipment     near me shop China wholesaler OEM Galvanized Sheet Metal Steel Aluminum Alloy Stamping Parts for Agricultural Equipment     near me shop

Recent Posts