China best CNC Vertical Turning Lathe Machine for Wheels Milling Attachment wholesaler

Product Description

cnc vertical turning lathe machine for wheels milling attachment 



1.Product Description


Our company developed the cnc vertical turning lathe machine. The machine covers a small space, can be designed to meet different space request.

This series machine is suitable for machining parts in all industries. On the machine cylindrical turning and boring . tapering and surfcing as well as grooving can be carried out rough and finishing.Since the workpiece is mounted on the horizontal worktable, it is more convenient to clamp the workpiece.

2.Main Features

1. The machine tool is of roller type linear slide rail, with ultrahigh rigidity and overload capacity, substantially improving positioning accuracy and bearing capacity in regard to vertical and horizontal feed movement.

2. The machine tool spindle belt pulley is connected with that of spindle numerical control servo motor through belt, equipped with 22Kw motor for infinitely variable speed of wide range, satisfying different spindle speed required for parts rough machining and finish machining.

3. Both the vertical and horizontal feed is controlled by servo motor automatically. The vertical direction setting Balance weight

structure greatly extend the life cycle of lead screw

4. Automatic tool holder: the tool and detection station conversion can be realized by CNC system.

5.Automatic lubrication system is used for main moving parts.

6.Can choose different machine appearance.



Specification UNIT VTC450 VTC60 VTC70
Max.Swing diameter mm 500 650 700
Spindle speed rpm 100~1500 100~1000 100~1000
Cutting feed speed mm/min 0.1~1000 0.1~1000 0.1~1000
Vertical moving distance of tool holder mm 550 600 700
Tool rest horizontal moving distance mm 400 450 700
Longitudinal fast moving speed mm/min 16000 16000 16000
Transverse fast moving speed mm/min 16000 16000 16000
Tool holder form   horizontal horizontal horizontal
Diameter of hydraulic chuck mm 400/500 400/500 400/500/630
Main motor power Kw 15 18.5 22
positioning accuracy mm ±0.008 ±0.008 ±0.008
Re -positioning accuracy mm ±0.004 ±0.004 ±0.004
Machine size mm 2000x1900x3030 2000x1900x3030 2050x1800x3200





CNC Vertical Lathe is suitable for internal and extemal turning,internal and extermal tapering,circula
arc,facing,slotting,thread,drilling,reaming,boring,chamfering of big diameter axle parts and disc type parts. The machine has awidely use,high efficiency,good stability,easy to operate.It can achieve the high-precision processing of single or batch processing.


5.Packaging Details


Packaging Details

1. Packing method: Internal plastic moisture-proof anti-rust packaging, External wooden packaging, Exclusive container transport.
2. Mode of transport: by sea or by land.


6.Our services

Our services are divided into pre-sale, sales, after-sale 3 parts.


Pre-sale:to provide detailed advice, the program recommended to the factory inspection, as far as possible to meet your questions and needs.
Sales:can support samples, support diversified payment methods, the solid forklift tire press machine production process
transparent,standardized and quickly stocking.
After-sales:support diversification guidance, training, voice and video images, and even solid forklift tire press machine overseas site installation, on-site training, home maintenance, continuous return visit customers concerned about the use

7.Company information

Zhongyou has passed the ISO quality management system certification,Products are exported to more than 50 countries and regions including Europe, America, Asia, Oceania and Africa.Has a number of product patents and honor certificates,is a continuous innovation machinery and equipment company.



1:How can I choose the most suitable machines ?
A: Please tell me your specifications ,we can choose the best model for you , or you can choose the exact model .You can also send us the products drawing ,we will choose the most suitable machines for you .

2: How can I get a quotation?
A: Pls tell us the machine you need, including quantity, raw materials and other requirements.

3: Where is your factory located? How can I visit there?
A : Our factory is located in HangZhou City ,ZheJiang Province,277500 China. You are warmly welcomed to visit us.

4. What is your trade terms?
A : FOB, CFR and CIF all acceptable.

5:How can i trust your company?
A:We have professional design, we can provide you suitable suggestion and lowest price
1. Assessed by third party, national patents and CE, ISO for all equipment, 


The Functions of Splined Shaft Bearings

Splined shafts are the most common types of bearings for machine tools. They are made of a wide variety of materials, including metals and non-metals such as Delrin and nylon. They are often fabricated to reduce deflection. The tooth profile will become deformed with time, as the shaft is used over a long period of time. Splined shafts are available in a huge range of materials and lengths.


Splined shafts are used in a variety of applications and industries. They are an effective anti-rotational device, as well as a reliable means of transmitting torque. Other types of shafts are available, including key shafts, but splines are the most convenient for transmitting torque. The following article discusses the functions of splines and why they are a superior choice. Listed below are a few examples of applications and industries in which splines are used.
Splined shafts can be of several styles, depending on the application and mechanical system in question. The differences between splined shaft styles include the design of teeth, overall strength, transfer of rotational concentricity, sliding ability, and misalignment tolerance. Listed below are a few examples of splines, as well as some of their benefits. The difference between these styles is not mutually exclusive; instead, each style has a distinct set of pros and cons.
A splined shaft is a cylindrical shaft with teeth or ridges that correspond to a specific angular position. This allows a shaft to transfer torque while maintaining angular correspondence between tracks. A splined shaft is defined as a cylindrical member with several grooves cut into its circumference. These grooves are equally spaced around the shaft and form a series of projecting keys. These features give the shaft a rounded appearance and allow it to fit perfectly into a grooved cylindrical member.
While the most common applications of splines are for shortening or extending shafts, they can also be used to secure mechanical assemblies. An “involute spline” spline has a groove that is wider than its counterparts. The result is that a splined shaft will resist separation during operation. They are an ideal choice for applications where deflection is an issue.
A spline shaft’s radial torsion load distribution is equally distributed, unless a bevel gear is used. The radial torsion load is evenly distributed and will not exert significant load concentration. If the spline couplings are not aligned correctly, the spline connection can fail quickly, causing significant fretting fatigue and wear. A couple of papers discuss this issue in more detail.


There are many different types of splined shafts. Each type features an evenly spaced helix of grooves on its outer surface. These grooves are either parallel or involute. Their shape allows them to be paired with gears and interchange rotary and linear motion. Splines are often cold-rolled or cut. The latter has increased strength compared to cut spines. These types of shafts are commonly used in applications requiring high strength, accuracy, and smoothness.
Another difference between internal and external splined shafts lies in the manufacturing process. The former is made of wood, while the latter is made of steel or a metal alloy. The process of manufacturing splined shafts involves cutting furrows into the surface of the material. Both processes are expensive and require expert skill. The main advantage of splined shafts is their adaptability to a wide range of applications.
In general, splined shafts are used in machinery where the rotation is transferred to an internal splined member. This member can be a gear or some other rotary device. These types of shafts are often packaged together as a hub assembly. Cleaning and lubricating are essential to the life of these components. If you’re using them on a daily basis, you’ll want to make sure to regularly inspect them.
Crowned splines are usually involute. The teeth of these splines form a spiral pattern. They are used for smaller diameter shafts because they add strength. Involute splines are also used on instrument drives and valve shafts. Serration standards are found in the SAE. Both kinds of splines can also contain a ball bearing for high torque. The difference between the 2 types of splines is the number of teeth on the shaft.
Internal splines have many advantages over external ones. For example, an internal spline shaft can be made using a grinding wheel instead of a CNC machine. It also uses a more accurate and economical process. Furthermore, it allows for a shorter manufacturing cycle, which is essential when splining high-speed machines. In addition, it stabilizes the relative phase between the spline and thread.

Manufacturing methods

There are several methods used to fabricate a splined shaft. Key and splined shafts are constructed from 2 separate parts that are shaped in a synchronized manner to transfer torque uniformly. Hot rolling is 1 method, while cold rolling utilizes low temperatures to form metal. Both methods enhance mechanical properties, surface finishes, and precision. The advantage of cold rolling is its cost-effectiveness.
Cold forming is 1 method, as well as machining and assembling. Cold forming is a unique process that allows the spline to be shaped to the desired shape. The resulting shape provides maximum contact area and torsional strength. Standard splines are available in standard sizes, but custom lengths can also be ordered. CZPT offers various auxiliary equipment, such as mating sleeves and flanged bushings.
Cold forging is another method. This method produces long splined shafts that are used in automobile propellers. After the spline portion is cut out, it is worked on in a hobbing machine. Work hardening enhances the root strength of the splined portion. It can be used for bearings, gears, and other mechanical components. Listed below are the manufacturing methods for splined shafts.
Parallel splines are the simplest of the splined shaft manufacturing methods. Parallel splines are usually welded to shafts, while involute splines are made of metal or non-metals. Splines are available in a wide variety of lengths and materials. The process is usually accompanied by a process called milling. The workpiece rotates to produce the serrated surface.
Splines are internal or external grooves in a splined shaft. They work in combination with keyways to transfer torque. Male and female splines are used in gears. Female and male splines correspond to 1 another to ensure proper angular correspondence. Involute splines have more surface area and thus are stronger than external splines. Moreover, they help the shaft fit into a grooved cylindrical member without misalignment.
A variety of other methods of manufacturing a splined shaft can be used to produce a splined shaft. Spline shafts can be produced using broaching and shaping, 2 precision machining methods. Broaching uses a metal tool with successively larger teeth to remove metal and create ridges and holes in the surface of a material. However, this process is expensive and requires special expertise.


The splined shaft is a mechanical component with a helix-like shape formed by the equal spacing of grooves in a circular ring. The splines can either have parallel or involute sides. The splines minimize stress concentration in stationary joints and can be used in both rotary and linear motion. In some cases, splines are rolled rather than cut. The latter is more durable than cut splines and is often used in applications requiring high strength, accuracy, and smooth finish.
Splined shafts are commonly made of carbon steel. This alloy steel has a low carbon content, making it easy to work with. Carbon steel is a great choice for splines because it is malleable. Generally, high-quality carbon steel provides a consistent motion. Steel alloys are also available that contain nickel, chromium, copper, and other metals. If you’re unsure of the right material for your application, you can consult a spline chart.
Splines are a versatile mechanical component. They are easy to cut and fit. Splines can be internal or external, with teeth positioned at equal intervals on both sides of the shaft. This allows the shaft to engage with the hub around the entire circumference of the hub. It also increases load capacity by creating a constant multiple-tooth point of contact with the hub. For this reason, they’re used extensively in rotary and linear motion.
Splined shafts are used in a wide variety of industries. CZPT Inc. offers custom and standard splined shafts for a variety of applications. When choosing a splined shaft for a specific application, consider the surrounding mated components, torque requirements, and size requirements. These 3 factors will make it the ideal choice for your rotary equipment. And you’ll be pleased with the end result!
There are many types of splines and their applications are endless. They transfer torque and angular misalignment between parts, and they also enable the axial rotation of assembled components. Therefore, splines are an essential component of machinery and are used in a wide range of applications. This type of shaft can be found in various types of machines, from household appliances to industrial machinery. So, the next time you’re looking for a splined shaft, make sure you look for a splined one.

China best CNC Vertical Turning Lathe Machine for Wheels Milling Attachment     wholesaler China best CNC Vertical Turning Lathe Machine for Wheels Milling Attachment     wholesaler