A desktop laser precision cleaning device with dual-wavelength composite energy distribution

A technology of compound energy and cleaning device, applied in the field of laser cleaning, can solve the problems of poor precision, limited cleaning depth, mechanical stress deformation, etc., to achieve the effect of enhancing uniformity and fineness

Inactive Publication Date: 2019-06-14
山东微壹信息技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Studies have shown that dry ice cleaning is most effective when it is applied to remove non-metallic dirt from metal substances. Therefore, it is widely used to clean organic residues or pollutants in precision parts and molds. The disadvantage is that it is difficult to clean stubborn metal oxides. thorough
Gas blast cleaning has good performance on stubborn stains such as various inks, paints and coatings. Famous aviation manufacturing companies such as Boeing and Airbus as well as the U.S. Air Force are using gas blast cleaning technology to remove paint from aircraft, but its shortcomings The reason is that the cost of consumables is high, the cleaning depth is limited, and there are problems such as microscopic residues and mechanical stress deformation.
The disadvantage of ultrasonic cleaning technology is that it is limited by the size of the cleaning pool equipment. It is generally only suitable for cleaning small parts in the workshop. It is difficult to clean large parts online, and it will also produce a lot of pollution and toxic waste water.
[0010] 1) Most of the laser cleaning machines are handheld devices, and the control method completely depends on the operator holding the cleaning processing head, and relying on the human eye (or using a distance sensor) to maintain a reasonable focus range of the laser beam on the surface of the workpiece, resulting in poor precision and physical exertion Large, cleaning efficiency is not high
[0011] 2) Generally, single-wavelength pulsed lasers are used for cleaning and processing, which completely relies on the overlapping scanning of Gaussian laser beams to ablate and remove pollutants on the surface of the material, which is limited by the absorption rate of different materials for single-wavelength laser energy and the interaction between laser and matter. The mechanism of action is different, and it is difficult to completely remove complex pollutants with multiple components (metal rust, organic polymer attachments, inorganic oxides, etc.), the cleaning quality is not high, and it cannot meet the ultra-fine cleaning requirements of complex pollutants

Method used

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  • A desktop laser precision cleaning device with dual-wavelength composite energy distribution
  • A desktop laser precision cleaning device with dual-wavelength composite energy distribution
  • A desktop laser precision cleaning device with dual-wavelength composite energy distribution

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Embodiment Construction

[0044] The present invention will be described in further detail below in conjunction with the accompanying drawings and specific embodiments.

[0045] Such as Figure 1-7 As shown, the present invention provides a desktop laser precision cleaning device with dual-wavelength composite energy distribution, including a worktable 1, an X-Y electric module 2, a rotary table assembly 3, a laser cleaning assembly 4 and a Z-direction lifting table 5.

[0046] The X-Y electric module 2 is fixedly installed on the workbench 1, and the rotary table assembly 3 is installed on the X-Y electric module 2, which can be driven by the X-Y electric module 2 to perform X-Y two-dimensional plane movement.

[0047] The Z-direction lifting platform 5 is installed on the workbench 1, the laser cleaning assembly 4 is installed on the lifting plate 502 of the Z-direction lifting platform 5, and is located above the rotating table assembly 3, and the laser cleaning assembly 4 can be driven by the lifti...

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Abstract

The invention provides a bench-type laser precision washing device with dual-wavelength composite energy distribution, comprising a workbench, an X-Y electric module, a turntable component, a laser washing component, and a Z-directional lifting bench; the X-Y electric module is fixedly mounted on the workbench, the turntable component is mounted on the X-Y electric module, the Z-directional lifting bench is mounted on the workbench, and the laser washing component is mounted on a lifting plate of the Z-directional lifting bench; the laser washing component includes a laser, a transmission fiber, a blow nozzle, a laser ranging sensor, a galvanometer scanning system and a dual-wavelength composite reshaping system; a laser beam emitted by the laser is transmitted by the transmission fiber and enters the dual-wavelength composite reshaping system; the dual-wavelength composite reshaping system outputs a dual-wavelength composite reshaped beam that passes through the galvanometer scanning system and is focused on the surface of material. The bench-type laser precision washing device has the advantages that washing uniformity and fineness are improved, damage to material matrix is effectively decreased via circular spacing, and washing quality is greatly improved.

Description

technical field [0001] The invention belongs to the field of laser cleaning, and in particular relates to a desktop laser precision cleaning device with dual-wavelength composite energy distribution. Background technique [0002] Cleaning is aimed at the dirt, rust or coating on the surface of the material, using chemical or physical principles to make it evaporate or peel off instantly, that is, to remove the surface attachment or surface coating of the object and obtain a clean material surface. [0003] At present, there are two types of surface cleaning technologies at home and abroad: chemical cleaning and physical cleaning. Chemical cleaning mainly uses chemical reactions to remove the main chemical components in the dirt. Due to incomplete cleaning and the discharge of a large amount of acid and salt during cleaning, it pollutes the environment and corrodes equipment, so the scope of application is relatively small. In contrast, the physical cleaning method is to app...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B08B7/00B23K26/064
CPCB08B7/0042B23K26/064B23K26/0643B23K26/0648
Inventor 魏鑫磊于艳玲
Owner 山东微壹信息技术有限公司
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