High quality swiss lathe manufacturer and supplier

Swiss type cnc lathe wholesale factory today: 6 Reasons why you should choose CNC Swiss lathe for small parts – While traditional lathes do their job, Swiss CNC lathes are designed to work with small and delicate parts more accurately. Here are the six major reasons why they are the best choice for highly accurate and precise work. Unmatched precision – Accuracy is very important when handling small parts. Even the smallest error can render the part useless. A CNC Swiss lathe is built to operate with high precision. It can cut pieces so accurately that they fit flawlessly in watches, medical instruments or aeroplane engines. There are even machines that can cut the parts as thin as a human hair. Swiss machining has tolerances of up to ±0.0002 inches. That is thinner than a human hair. High speed and efficiency – Speed is important in an industry. A CNC Swiss lathe offers greater speed and efficiency because it can use different cutting tools at the same time. When one tool cuts the front, another tool works on the back. This reduces time and increases output. Find additional info on swiss type cnc lathe.



A Swiss lathe, or Swiss-type machine, is a highly precise CNC (Computer Numerical Control) lathe optimized for machining small, intricate, and long, slender parts. It is not anything like a regular lathe. In a Swiss lathe, the material moves through a small support called a guide bushing. This design keeps the material in place so the cuts are clean and accurate. Just imagine the screws in a watch, surgical instruments, or small airplane components; any one of these can be produced with a Swiss lathe. Since these parts are so tiny, they must fit perfectly to work. Join us as we describe what a Swiss lathe is, how it works, its key components, the differences between it and standard lathes, the advantages it brings, and the industries where it is used.

Horizontal machining centers, CNC gantry grinders, precision parts inspection equipment, multi-station automation vertical or horizontal machining center equipment for processing large parts. and many more. Welcomes foreign brand machine tool companies to come to our company to negotiate the above-mentioned work items for the parent machine. Its product sales are very good, for the whole world sales in China. At present, the annual sales volume of the company’s products is growing at a rate of 30%.

How does a swiss lathe machine work? A swiss lathe machine, also known as a sliding headstock lathe or swiss screw machine, is a precision turning tool used to produce intricate and small parts. Unlike conventional lathes that hold the workpiece in place while the cutting tool rotates around it, a Swiss lathe holds the bar stock firmly in place while the headstock slides along its length. One of the unique features of a Swiss lathe is its guide bushing located close to the cutting edge. This reduces vibrations and increases accuracy by providing support for long and thin parts during machining. The workpiece moves forward through this bushing when being cut using rotating tools mounted on gang slides which move simultaneously with each other. Find more details at https://www.jsway-cnc.com/swiss-lathe-machine.html.

Additionally, as many Swiss lathes incorporate a secondary spindle, or ‘sub-spindle’, they also incorporate ‘live tooling’. Live tools are rotary cutting tools that are powered by a small motor independently of the spindle motor(s). Live tools increase the intricacy of components that can be manufactured by the Swiss lathe. For instance, automatically producing a part with a hole drilled perpendicular to the main axis (the axis of rotation of the spindles) is very economical with live tooling, and similarly uneconomical if done as a secondary operation after machining by the Swiss lathe is complete. A ‘secondary operation’ is a machining operation requiring a partially completed part to be secured in a second machine to complete the manufacturing process. Generally, advanced CAD/CAM software uses live tools in addition to the main spindles so that most parts that can be drawn by a CAD system can actually be manufactured by the machines that the CAD/CAM software support.

CNC Vertical Mills generally have a single spindle, automatic tool changer, work table and CNC Control. The spindle on a CNC Machining Center can have a wide range of speeds depending on what material is being cut and the depth of cut that is required. Typical spindle speed ranges from 0 to 10,000 RPM. Higher speeds are used for lighter materials including graphite and aluminum among others. Higher speeds can reach 12,000 RPM up to 50,000 RPM and higher.