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Preparation device for fiber-reinforced high-performance thermo-plasticity composite

A composite material, fiber reinforced technology, applied in the directions of manufacturing auxiliary devices, additive processing, additive manufacturing, etc., can solve the problems of low degree of automation, low mechanical properties of parts, inability to meet the grasping of reinforced thermoplastic samples, etc., to achieve production efficiency Improved, easy to operate, and error-removing effects

Pending Publication Date: 2018-10-16
嘉兴领科材料技术有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, limited by the additive manufacturing method and the raw materials used, the mechanical properties of the prepared parts are generally low, which cannot meet the requirements of industrial applications for high-performance parts.
[0004] The existing equipment for preparing fiber-reinforced high-performance thermoplastic composite materials is not highly automated, and cannot meet the requirements of multi-axis motion for grasping reinforced thermoplastic samples, and cannot meet the requirements for welding and assembling multiple components.

Method used

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  • Preparation device for fiber-reinforced high-performance thermo-plasticity composite

Examples

Experimental program
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Embodiment

[0020] Example: such as figure 1 As shown, a preparation device for fiber-reinforced high-performance thermoplastic composites includes a robot arm 1 and a vision positioning system 2 fixed on the robot arm 1; a negative pressure suction cup 6 is arranged below the vision positioning system 2, and a negative pressure suction cup 6 The bottom is provided with a multi-axis machining center 3; the multi-axis machining center 3 reciprocates along the X, Y, and Z axis directions on the horizontal plane, and the multi-axis machining center 3 is provided with a sample table 7 for placing the sample N ; The vacuum nozzle 8 is arranged directly above the sample table 7, the vacuum nozzle 8 is located at the bottom of the negative pressure suction cup 6, and the top of the vacuum nozzle 8 is connected to the vacuum pump 5 through the sealed pipeline 4; the device coordinates the work through the multi-axis machining center, Combined with the visual positioning system, the sample can be ...

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Abstract

The invention relates to a preparation device for a fiber-reinforced high-performance thermo-plasticity composite. The preparation device comprises a robot arm and a vision locating system; the visionlocating system is fixed to the robot arm; a negative-pressure sucking disc is arranged at the lower part of the vision locating system; a multi-shaft machining center is arranged at the bottom of the negative-pressure sucking disc and reciprocates in the horizontal plane in the X-axis direction, the Y-axis direction and the Z-axis direction; a sample table where a sample is placed is arranged onthe multi-shaft machining center; a vacuum sucking nozzle is arranged right above the sample table and is located at the bottom of the negative-pressure sucking disc; and a space above the vacuum sucking nozzle is connected with a vacuum pump through a sealing pipeline. With the adoption of the device, through coordinating working of the multi-shaft machining center and combination with the vision locating system, the sample can be placed in the precise position on the sample table very precisely; and high vacuum can be achieved through the vacuum sucking nozzle. The device is suitable for the samples in different sizes and different shapes, and is reasonable in structure and easy to operate.

Description

technical field [0001] The invention belongs to the technical field of composite material preparation devices, in particular to a preparation device for fiber-reinforced high-performance thermoplastic composite materials. Background technique [0002] Additive manufacturing is to manufacture solid parts by adding materials layer by layer. In traditional processes, complex components are often formed by assembling individual simple parts, which can lead to early structural failure at material seams. Additive manufacturing technology can directly manufacture objects with complex shapes, without the need for molds and numerous complex machining processes, and without the need to combine multiple single parts into a whole complex component. In the additive manufacturing process, material is placed exactly where it is needed. Remaining material can often be immediately recycled to reduce waste. All of these features make additive manufacturing an attractive option for material...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B29C64/147B29C64/20B29C64/321B29C64/393B33Y30/00B33Y40/00B33Y50/02
CPCB29C64/147B29C64/20B29C64/321B29C64/393B33Y30/00B33Y40/00B33Y50/02
Inventor 王春敏孙亚峰胡延东王永荣
Owner 嘉兴领科材料技术有限公司