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Temperature-dependent optical material properties of polymer powders regarding in-situ measurement techniques in additive manufacturing

机译:高分子粉末的温度依赖性光学材料特性,关于添加剂制造中的原位测量技术

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摘要

Due to the growing number of applications for Additive Manufacturing (AM), an increasing need for enhanced quality control methods exists. Here optical measurement techniques are often used for in-situ monitoring in AM. There is a great potential to standardize and improve applications of optical measurement devices in accordance to the increasing requirements of measuring tasks. Beside the optical material qualifications, especially process-oriented changes in optical effects are of great relevance for in-situ evaluations. The optical modifications may be attributed to aggregate specific phase transitions coming along with variable emitted wavelengths. A measuring setup with two integrations spheres and a heated process chamber have been developed to analyze the optical interactions of laser radiation and visual illumination with the powder. The process oriented analysis for selective laser sintering lead to improved operating conditions in the field of in-situ measurements in combination with an accurate evaluation of the absorption ratio of the examined powder.
机译:由于添加剂制造的应用数量越来越多,存在增加增强质量控制方法的需求。这里,光学测量技术通常用于上午的原位监测。根据测量任务的越来越长,有很大的潜力可以标准化和改进光学测量装置的应用。除了光学材料的资格旁边,尤其是面向过程的光学效应变化对于原位评估具有很大的相关性。光学修改可以归因于聚合特定的相位转换以及可变发射波长。已经开发出具有两个积分球和加热的处理室的测量设置以分析激光辐射和用粉末的视觉照明的光相互作用。用于选择性激光烧结的过程取向分析导致原位测量领域的操作条件与准确评估所检查粉末的吸收比的准确评估。

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