ARTICLES FROM FIBROUS MATERIAL AND FIBROUS COMPOSITE MANUFACTURING METHOD AND AUTOMATED SYSTEM FOR ITS IMPLEMENTATION Russian patent published in 2018 - IPC B29C53/56 B29C53/58 B29C53/60 

Abstract RU 2653987 C1

FIELD: manufacturing technology.

SUBSTANCE: group of inventions relates to the articles from fibrous material or fibrous composite manufacturing automated system and method. Technical result is achieved by the articles from a fibrous material manufacturing method by means of feeding devices, supplying the fibrous material onto predetermined mold, or to the parts assembly for their connection, or to receiving device, in the molded products production. At that, the predetermined mold, or the parts assembly, or the receiving device is partially or completely surrounded by the shell of magnetic material. Wherein the shell shape can be plane, cylinder, sphere, torus and other curved surfaces, as well as combinations thereof. Feeders are moved along the shell surface using the stand-alone wheeled platforms, which retention on the shell surface is performed by means of a magnetic field between the shell and magnets, embedded into the wheels surface or installed in the platforms bottom. Platform positioning on the shell surface is performed by means of mounted on the platform video camera, directed to the shell surface area under the platform. At that, along the shell entire surface are located drawing or point sources of visible or infrared radiation in amount, at any time ensuring the at least two point sources of visible or infrared radiation entry into the camera field of view. During the platforms with feeders movement according to the set algorithm by space-time pattern, the fibrous material interweaving and laying onto predetermined mold, or the parts assembling takes place, or the interwoven fibrous material is supplied to the receiving device.

EFFECT: increase in the productivity, elimination of the human factor effect during the production process, as well as creation of the three-dimensional fibrous products and structures.

11 cl, 10 dwg

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RU 2 653 987 C1

Authors

Mishchenko Dmitrij Gennadevich

Dates

2018-05-15Published

2017-02-16Filed