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Guangdong JSWAY CNC Machine Tool Co., Ltd. since 2004.

Numerical control lathe processing parts basic steps

CNC lathe is short for digital program controlled lathe, it combines good commonality universal lathe, machining high precision fine lathe and processing power of special features in one, a general lathe is biggest, the most widely coverage of a machine tool. Initiative in CNC lathe is a kind of using nc skills, good programming end action in accordance with the advance of machine tools. It by carrier program unit, input devices, CNC, servo system, the position feedback system and machine mechanical parts. On the initiative in the numerical control lathe machining parts usually through the following steps: 1. According to the scheme of processing components of the pattern and process, with the rules of the code and program format to write, and record it on the carrier; 2. The program on the carrier through the input device input into the CNC unit; 3. CNC unit by processing the input, the signal to each coordinate machine tool servo system; 4. Signal from the servo system based on the CNC unit, driving the moving parts of machine and and control necessary auxiliary operation; 5. Through the machine mechanical parts to drive the relative motion of the cutting tool and the workpiece, the requirements of the workpieces; 6. Detect the movement of the numerical control lathe, and through the feedback to the CNC unit feedback device, to reduce the machining error. Is not, of course, about the open-loop CNC lathe detection and feedback system.

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How to Mitigate Deformation in the Machining System of Swiss-Type Lathes Forces Causing Deformation in the Machining System


Methods to Reduce the Impact of Force-Induced Deformation
To minimize the impact of force-induced deformation on the stability of Swiss-type lathes and enhance machining accuracy and stability, the following measures can be taken:
JSWAY Company Shines at the Jakarta International Industrial Week

JSWAY Company’s Professional Team Performance
As one of the exhibitors, JSWAY Company showcased the excellence of its professional team at this Jakarta Industrial Week. The team members of JSWAY Company, with their enthusiasm and professional knowledge, actively engaged in exchanges with customers from all over the world, providing them with detailed product introductions and technical support. They not only demonstrated JSWAY Company's advanced technology and high-quality products in the fields of CNC machines, milling and turning centers, and Swiss-type lathes, but also left a deep impression on customers with their enthusiastic service.
The booth of JSWAY Company attracted the attention of many professional visitors. Through professional explanations and demonstrations, the team members successfully conveyed to customers JSWAY Company's technological advantages and innovation capabilities in the field of CNC machines. Their positive performance not only enhanced JSWAY Company's brand image but also laid a solid foundation for the company's further expansion in the Southeast Asian market.
Manual Milling Machines vs. CNC Machines: Which is Better?

Compare manual mills and CNC machine advantages, costs, precision, and applications to choose the right technology for prototyping, job shops, or production.
How to Improve Precision of  Swiss-Type Lathes through Fixture Adjustment

Improving Precision and Service Life through Fixture Adjustment and Maintenance


Fixture Adjustment Methods:


Fixture Maintenance Methods:


By properly adjusting and regularly maintaining fixtures, the machining accuracy and service life of Swiss-type lathes can be effectively improved, ensuring efficient and stable production processes.
How Does CNC Machine Tool Bed Stress Affect Machining Quality?

The stress in a machine tool bed can influence machining quality in several ways:

Machining Accuracy


Deformation and Displacement: Stress in the bed can cause structural deformation, which in turn affects the positional accuracy of various machine components. For example, insufficient rigidity at the tailstock support of the bed may lead to positional deviations of the tailstock center, with maximum displacement deformation reaching up to 0.13465 mm. Such deformation directly impacts the relative positioning between the tool and the workpiece, resulting in machining errors.
How the Multi-Process Integration of Swiss-Type Lathes is Achieved and its Effects
In summary, the multi-process integration of Swiss-type lathes, achieved through advanced CNC systems, multi-axis linkage, power tools, and automation features, offers significant benefits in terms of precision, efficiency, and versatility. This integrated approach not only enhances production efficiency but also reduces costs, making Swiss-type lathes an ideal choice for modern manufacturing needs.
Features of Differences Swiss-Type Lathe Power Heads and Their Impact on Machining

Differences in Machining Effects with Different Power Head Configurations


Single Spindle vs. Dual Spindle: Single-spindle Swiss-type lathes usually come with one side power head and are suitable for machining relatively simple parts. In contrast, dual-spindle lathes can be equipped with more power heads and can even perform simultaneous machining on the main and secondary spindles, significantly improving machining efficiency and complexity.


Side Tool Post vs. Horizontal Tool Post: Power heads with a side tool post structure perform better when machining difficult-to-chip materials, while those with a horizontal tool post structure are more efficient for machining easy-to-cut materials.


In summary, the power heads of Swiss-type lathes offer significant advantages in machining accuracy, efficiency, complexity, and adaptability. Different power head configurations can be selected based on specific machining requirements to achieve the best machining results.
Application Cases of Pitch Compensation for  Swiss CNC lathe
Pitch compensation is an important means of precision improvement in CNC machines. By compensating for the pitch errors of the lead screw, it can significantly enhance the positioning accuracy and machining accuracy of the machine tool. The following is a detailed description of the methods, steps, and application cases of pitch compensation:
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