SIGER i-NC Mold Precision Optimization System V1.3 Version Released




SIGER i-NC Mold Precision Optimization System V1.3 Version Released.


01
i-NC Mold Precision Optimization System V1.3 Version
Release Background

In order to meet the diverse optimization needs of large automotive mold customers, the SIGER product team has specially launched a version upgrade, which adds a precision optimization function for stamping type die molds to meet the processing requirements of large die molds; At the same time, the temperature difference deformation compensation technology has been improved, effectively reducing the impact of temperature fluctuations on the machining accuracy of machine tools, ensuring the provision of more reliable and efficient machining solutions, and meeting customers' high-precision needs for mold machining in different scenarios.




02
i-NC Mold Precision Optimization System V1.3 Version
Business blueprint

The i-NC mold accuracy optimization system is an auxiliary software applied to CNC machining. Its core function is to analyze and compensate for errors generated by CNC machine tools during the machining process, output optimization codes to improve machining accuracy and efficiency. This system is suitable for various high-precision machining scenarios, such as aerospace, precision molds, precision instrument manufacturing, etc. It is of great significance for improving machine tool performance and machining quality.


03
i-NC Mold Precision Optimization System V1.3 Version
Update Point

3.1 New application module for AB mold optimization


In order to reduce the cost of manual grinding, an AB mold accuracy matching optimization scheme has been launched, and a "AB mold closing optimization" application module has been added to solve the problem of inconsistent fit clearance between the upper and lower molds (referred to as AB molds) and the designed workpiece clearance in mold processing. This significantly reduces the dependence on manual grinding, improves machining efficiency, shortens machining cycles, and effectively reduces costs. At the same time, the system homepage has been added to display the entry points of various scenarios and the execution status of corresponding optimization tasks, enabling one click quick viewing of task details.

 


3.1.1 "Preparation for mold optimization" function added


Add the function of preparing for mold optimization, enter the required basic data, and strictly verify these data to prevent human errors. Only after passing the verification can the optimization execution steps be entered.





3.1.2 "Mold Optimization Execution" Function Added

Added the function of optimizing the execution of mold closure, utilizing A-model measurement results and related data to optimize the B-model program. It also replaces Vericut simulation by calculating whether the compensation amount of each trajectory point exceeds the threshold, shortening the review cycle.




3.1.3 New function of "mold compensation record" added


To visually present the optimization effect of the engine, a new module compensation recording function has been added, which displays in detail the optimization records of the B-module program and provides a program comparison tool. Through this tool, enterprises can quantitatively compare the processing programs before and after optimization, intuitively view the specific changes of each trajectory point, and more accurately evaluate the optimization effect.





3.2 Expansion of "Temperature Optimization Preparation" Function


To improve the reliability of temperature optimization preparation, an upgrade has been made to this function, adding a repeated measurement accuracy verification step. By accurately comparing multiple measurement data with the machining accuracy standard, the data consistency can be ensured before entering the optimization execution stage. Intended to eliminate noise interference caused by improper measurement operations and ensure the accuracy of optimization results.





3.3 Function Expansion of "Temperature Difference Deformation Optimization"


In order to shorten the time for CAM engineers to review optimization programs, an upgrade has been made to the temperature difference deformation optimization function, adding a "compensation amount verification" function to replace Vericut simulation by calculating whether the compensation amount of each trajectory point exceeds the threshold, greatly improving task execution efficiency.





The SIGER i-NC mold precision optimization system is a digital solution tailored by SIGER Data and Hanmai Technology to meet the precision optimization needs of actual machining scenarios. Optimization of machining accuracy based on online measurement feedback and adaptive trajectory adjustment principles. Firstly, timely online measurement should be conducted on the actual machining process to obtain measurement data. Then, based on theoretical CAD part models and measurement data, the machining program is optimized and used for machine tool machining to improve machining accuracy and efficiency.


If you are interested in SIGER products, you can contact us by phone or email, or submit your requirements by leaving a message, and we will arrange personnel to contact you as soon as possible.

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Official Contact Info:

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