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Additive and subtractive composite 3D printing equipment and method based on (cold metal transfer) CMT welding and multi-axis numerical control machine tool

A CNC machine tool and 3D printing technology, applied in the field of 3D printing, can solve problems such as low production efficiency, small printing size, and low printing accuracy, and achieve the effects of improving processing efficiency, processing accuracy, and processing quality

Active Publication Date: 2017-07-21
SOUTH CHINA UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The invention overcomes the problems of low printing precision, low production efficiency, and small printing size in traditional printing, and at the same time minimizes the existence of supporting structures

Method used

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  • Additive and subtractive composite 3D printing equipment and method based on (cold metal transfer) CMT welding and multi-axis numerical control machine tool
  • Additive and subtractive composite 3D printing equipment and method based on (cold metal transfer) CMT welding and multi-axis numerical control machine tool
  • Additive and subtractive composite 3D printing equipment and method based on (cold metal transfer) CMT welding and multi-axis numerical control machine tool

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Experimental program
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Embodiment

[0036] Such as Figures 1 to 3 shown. The invention discloses a composite 3D printing equipment for adding and subtracting materials of a CMT and a multi-axis CNC machine tool, including a molding device drive mechanism 1 placed in a sealed molding chamber, a metal wire feeding mechanism 2, a central control system 6, and a 3D printer base 16 ; The 3D printer base 16 is provided with a displacer 33 ;

[0037] The forming device driving mechanism 1 includes a Z-direction moving guide rail 9, a milling robot arm 10 for carrying a milling cutter 17, a welding robot arm 11 for carrying a cold metal welding torch 15, a Y direction controller 13, and a rail support frame. Y direction moving guide rail 12 on 14, X direction moving guide rail 19, X direction controller 20, Z direction controller 21;

[0038] The Y direction moving guide rail 12 and the Y direction controller 13 jointly form a Y direction moving mechanism, wherein the Y direction controller 13 is fixed on the X direc...

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PUM

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Abstract

The invention discloses additive and subtractive composite 3D printing equipment and method based on cold metal transfer (CMT) welding and a multi-axis numerical control machine tool. The equipment is composed of a forming equipment driving mechanism, a metal wire feeding mechanism, a water cooling machine, a high-pressure Ar protection gas cylinder, a central control system, a tool changer, a cooling liquid system and the like. The forming equipment driving mechanism comprises Z-direction moving guide rails, a milling mechanical arm used for loading a milling cutter, a welding mechanical arm used for loading a cold metal welding gun, a Y-direction controller, Y-direction moving guide rails arranged on guide rail supporting racks, an X-direction moving guide rail, an X-direction controller and a Z-direction controller. A positioner is arranged on a 3D printer base. Additive manufacturing is achieved by adoption of the cold metal welding gun of the equipment, and the part production efficiency is improved compared with a 3D printer with laser as the heat source; and meanwhile, the milling cutter is adopted for milling a welding machined surface, and the part surface quality is greatly improved.

Description

technical field [0001] The invention relates to 3D printing technology, in particular to a 3D printing equipment and method for adding and subtracting material composites of CMT and multi-axis numerical control machine tools. Background technique [0002] Cold Metal Transition Welding Technology (CMT) is a new type of welding technology without welding slag spatter. The so-called cold metal transition refers to the monitoring of the short arc and the reversing wire feeding of the welding wire under the digital control mode. This equipment greatly improves the welding production capacity and can effectively guarantee the welding quality of the welded parts. However, for some parts with complex shapes and high surface precision requirements, simple cold metal transition welding is difficult to achieve. Therefore, it is necessary to add another device to ensure the quality of the workpiece surface. [0003] Since Fronius proposed the cold metal transition in 2004, after more...

Claims

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Application Information

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IPC IPC(8): B23P23/04B22F3/105B33Y30/00
CPCB23P23/04B33Y30/00B22F10/00B22F10/22B22F10/25B22F12/22B22F12/20Y02P10/25
Inventor 杨永强周权白玉超李阳
Owner SOUTH CHINA UNIV OF TECH
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