3D printer provided with gradient powder feeding system

A 3D printer and powder supply technology, which is applied in the field of additive manufacturing, can solve the problems of complicated powder mixing and uniform distribution steps, inability to guarantee volume ratio, always quantitative and accurate falling, and inability to ensure constant or consistent ratio, etc., to achieve constant Effects of Sex and Consistency

Pending Publication Date: 2018-12-21
北京隆源自动成型系统有限公司
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AI Technical Summary

Problems solved by technology

Patent CN108213425A introduces a powder mixing and uniform distribution method and device for 3D printing of gradient material parts. The steps of mixing and uniform distribution are complicated
[0004] In the patent CN108480630A, a device and method for preparing gradient materials based on selective laser melting technology is introduced. The device includes a laser scanning galvanometer and a powder storage device, a powder mixer, a powder scraper, and a workbench arranged in sequence from top to bottom. In order to realize the gradient change of the material composition on the horizontal plane perpendicular to the powder spreading direction, it only emphasizes that the outlet at the bottom of the powder storage is rectangular, and the s

Method used

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  • 3D printer provided with gradient powder feeding system
  • 3D printer provided with gradient powder feeding system
  • 3D printer provided with gradient powder feeding system

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Embodiment Construction

[0035] refer to figure 1 , figure 2As shown, the two figures show the overall layout of the 3D printer embodiment with a gradient powder supply system. Front and rear powder spreading is adopted. The powder supply system is above the workbench. There is a front blanking system in front of the forming cylinder, and a Back-blanking system, between the molding cylinder and the back-blanking system is the discharge port of the precise feeder of the gradient powder supply system. Just above the molding cylinder is an optical system such as a vibrating mirror, a laser, and a beam expander. In the sealed box, the sealed box is filled with inert protective gas during the working process, and the inert protective gas is recycled after passing through the dust removal and purification system. Before processing, first add enough powder to each stocker, seal the box and fill it with inert gas. Between the outlets of the feeder, the processing starts when the required process conditions...

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Abstract

The invention provides a 3D printer provided with a gradient powder feeding system. The gradient powder feeding system is composed of two or more storage devices, a powder distributor and an accuratepowder feeder, wherein one or more partition plates are arranged in the powder distributor. According to the 3D printer provided with the gradient powder feeding system, it can be ensured that two ormore types of powder can always be quantitatively and accurately fed according to a required volume ratio, and it can also be ensured that the gradient change ratio of powder components of each powderspreading layer in a direction perpendicular to the powder spreading direction is always constant; materials with material components continuously changing can be rapidly obtained through subsequentprecise regional laser sintering, data about the tissue, physical performance and mechanical performance of materials with different components can be rapidly obtained, functional gradient material test samples or parts can be rapidly obtained, and a profound influence on research and development of functional materials and new materials is achieved.

Description

technical field [0001] The invention relates to a 3D printer with a gradient powder supply system, belonging to the field of additive manufacturing. Background technique [0002] Gradient materials refer to two or more materials with different properties, which are formed by changing the composition and structure of these materials to make them change gradually without interface. Gradient materials, a novel material design idea, once proposed, immediately attracted the attention of material scientists from all over the world and started research on it. The main preparation methods include powder molding, physical vapor deposition (PVD), and chemical vapor deposition. (CVD), plasma spraying, electroforming, electroplating, self-propagating high-temperature synthesis, etc. These methods all require complex processes or equipment, and the lack of simple preparation methods is an important reason for limiting the further development of functionally graded materials. [0003] Wi...

Claims

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Application Information

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IPC IPC(8): B22F3/105B33Y30/00
CPCB22F3/003B33Y30/00B22F10/00B22F10/77B22F12/44B22F12/49B22F12/52B22F10/32B22F10/28B22F12/58B22F12/55B22F12/224Y02P10/25
Inventor 李全贵赵浩宗贵升赵志刚袁晓鑫
Owner 北京隆源自动成型系统有限公司
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