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案件記録

INTEGRATED ACOUSTIC AND THERMAL MODULATION FOR OPTIMIZED 3D METAL FABRICATION

発明審査中
1閲覧数
20請求項 · 2 独立
§ Ⅰ

案件概要

IPC分類

B22F 10/50B22F 10/73B22F 10/85B22F 12/55B22F 12/90B33Y 10/B33Y 30/B33Y 40/B33Y 50/2

CPC分類

B22F10/50B22F10/73B22F10/85B22F12/55B22F12/90B33Y10/B33Y30/B33Y40/B33Y50/2B22F2998/10

This invention pertains to a system and method for three-dimensional (3D) printing using acoustic modulation to control the flow and solidification of various materials, with integrated thermal management and real-time analytical adjustments. The system addresses the challenges of controlling the solidification process in non-solid states, which can lead to defects. It utilizes acoustic emitters for precise modulation, a material dispensing unit adaptable to various materials, and an advanced control system for synchronization. The method involves material dispensing followed by acoustic modulation to mold the material. Adjustments based on sensor feedback ensure a seamless transition from non-solid to solid states. The system can handle diverse materials and create multi-material objects with tailored properties. Applications include the fabrication of 3D objects with enhanced structural integrity, surface finish, and complex geometries, as well as functionally graded materials and composites.

原文(中国語)

This invention pertains to a system and method for three-dimensional (3D) printing using acoustic modulation to control the flow and solidification of various materials, with integrated thermal management and real-time analytical adjustments. The system addresses the challenges of controlling the solidification process in non-solid states, which can lead to defects. It utilizes acoustic emitters for precise modulation, a material dispensing unit adaptable to various materials, and an advanced control system for synchronization. The method involves material dispensing followed by acoustic modulation to mold the material. Adjustments based on sensor feedback ensure a seamless transition from non-solid to solid states. The system can handle diverse materials and create multi-material objects with tailored properties. Applications include the fabrication of 3D objects with enhanced structural integrity, surface finish, and complex geometries, as well as functionally graded materials and composites.

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