From the completion of processing to stable mass production, the mold often needs to go through many links such as detection, test mode, and mold repair. Where exactly does the mold surface deviation appear? Is there a local anomaly on a complex surface? After test mode, it was found that the product size or shape did not meet the requirements. How to quickly locate the problem and provide more complete data basis for subsequent cause analysis and mold repair decisions?
In mold manufacturing scenarios such as automobile body sheet metal parts, interior and exterior plastic parts, Precision Injection Molding Parts, facing complex curved surfaces and large size features, if the measurement data is not comprehensive enough, engineers often need to rely on experience judgment, after several rounds of testing, test mode and correction, it not only affects the mold repair efficiency, but also may lengthen the project cycle. Similar requirements also exist in the fields of complex parts and tooling manufacturing such as electronics, energy, aerospace, etc.
Make up for the information difference of quality analysis From "measuring several points" to seeing the deviation of the whole mold surface
ZEISS 3D Optical measurement scheme can obtain the global 3D data of the mold and parts surface through ATOS Q, ATOS 5 and other systems, and compare the measured data with the CAD model in combination with ZEISS INSPECT Optical 3D, visually present the deviation of size and shape surface, providing data basis for anomaly location, quality analysis and mold repair judgment. Relevant information of the automobile industry shows that this kind of three-dimensional data can be used for mold manufacturing, first article inspection and subsequent quality control.
For repeated measurement, first piece and batch detection, ZEISS ScanBox automatic three-dimensional measurement system can be further combined. ScanBox compares actual 3D data with CAD models or measurement plans, and covers processes such as automatic data collection, detection, and reporting.
From mold processing, test mode to mold repair and mass production testing, global 3D data can help engineers identify deviations faster, verify mold repair results, and reduce repeated test mode and correction caused by insufficient measurement information.
On September 11, 14:00-15:00 Zeiss China industrial quality product application development Liang Xiangtao will focus on the three major problems of mold defect judgment, mold repair efficiency and quality analysis in the live broadcast room, this paper comprehensively introduces the principle and working process of blue light 3D measurement, sorts out its application in different stages of mold processing chain, and analyzes how to support deviation identification through global 3D data combined with typical schemes, mold repair judgment and quality analysis.
This live broadcast, you will learn
·How to quickly judge mold defects?
·How to reduce repeated test mode and shorten the mold repair cycle?
·How to use global 3D data to conduct quality analysis?
·How to match measurement applications in different stages of mold production?
If you are facing problems such as difficult positioning of mold deviation, repeated mold repair, and lack of complete data support for quality analysis, please sign up for this online seminar, learn how global 3D data provides more efficient data support for mold quality analysis.
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