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用于熔模铸造的DPP 3D打印注塑模具的非接触多尺度分析

Non-Contact Multiscale Analysis of a DPP 3D-Printed Injection Die for Investment Casting.

作者信息

Kroma Arkadiusz, Mendak Michał, Jakubowicz Michał, Gapiński Bartosz, Popielarski Paweł

机构信息

Division of Foundry and Plastic Working, Institute of Materials Technology, Faculty of Mechanical Engineering, Poznan University of Technology, 60-965 Poznan, Poland.

Division of Metrology and Measurement Systems, Institute of Mechanical Technology, Poznan University of Technology, 60-965 Poznan, Poland.

出版信息

Materials (Basel). 2021 Nov 9;14(22):6758. doi: 10.3390/ma14226758.

Abstract

The investment casting method supported with 3D-printing technology, allows the production of unit castings or prototypes with properties most similar to those of final products. Due to the complexity of the process, it is very important to control the dimensions in the initial stages of the process. This paper presents a comparison of non-contact measurement systems applied for testing of photopolymer 3D-printed injection die used in investment casting. Due to the required high quality of the surface parameters, the authors decided to use the DPP (Daylight Polymer Printing) 3D-printing technology to produce an analyzed injection die. The X-ray CT, Structured blue-light scanner and focus variation microscope measurement techniques were used to avoid any additional damages to the injection die that may arise during the measurement. The main objective of the research was to analyze the possibility of using non-contact measurement systems as a tool for analyzing the quality of the surface of a 3D-printed injection die. Dimensional accuracy analysis, form and position deviations, defect detection, and comparison with a CAD model were carried out.

摘要

采用3D打印技术支持的熔模铸造方法,能够生产出性能与最终产品最为相似的单个铸件或原型。由于工艺复杂,在工艺初始阶段控制尺寸非常重要。本文介绍了用于测试熔模铸造中使用的光聚合物3D打印注塑模具的非接触式测量系统的比较。由于所需的表面参数质量较高,作者决定使用日光聚合物打印(DPP)3D打印技术来生产分析用的注塑模具。使用X射线计算机断层扫描(CT)、结构蓝光扫描仪和聚焦变化显微镜测量技术,以避免在测量过程中对注塑模具造成任何额外损坏。该研究的主要目的是分析使用非接触式测量系统作为分析3D打印注塑模具表面质量工具的可能性。进行了尺寸精度分析、形状和位置偏差分析、缺陷检测以及与CAD模型的比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bd9/8624798/e0566f1997a7/materials-14-06758-g001.jpg

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