Laser Machining Picture Generation for Flexible Image Input
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Solution Overview
Problem
Existing laser machining technologies face challenges in flexibility when utilizing image materials, leading to inefficiencies in obtaining the desired pictures for machining.
Innovation Solution
A picture processing method for laser machining is introduced, which involves obtaining picture generation information, processing it using a picture generation model to create a target picture, and importing this picture into the laser machining process. This method includes three modes: text generating, picture generating, and graffiti generating, to enhance flexibility and efficiency.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional image material utilization methods are used for laser machining, then the process is simple, but the flexibility is low and efficiency is poor
Solution Approach 1:
The image processing workflow is segmented into multiple specialized modules: picture generation model for creating images from text, picture processing module for format conversion and optimization, and picture selection module for user choice. This segmentation allows each module to specialize in specific tasks, improving overall flexibility while managing complexity through modular design.
Solution Approach 2:
The system implements multi-functionality by enabling the laser machining device to handle diverse image input methods (text-to-image, picture upload, picture selection) and multiple picture processing operations (format conversion, optimization, selection). This universal approach allows a single system to adapt to various user needs and image sources, significantly enhancing flexibility.
2Productivity
If manual picture selection and processing is performed, then the process is straightforward, but the efficiency of obtaining required pictures is low
Solution Approach 1:
The system performs preliminary actions by automatically generating pictures using the picture generation model before the actual laser machining process begins. Users can obtain required pictures in advance through text-to-image generation or upload pictures beforehand, eliminating the need for time-consuming manual picture selection and processing during production, thus significantly improving efficiency.
3Adaptability or versatility
If automated picture generation is implemented, then efficiency and flexibility improve, but the system complexity increases
Solution Approach 1:
The control device serves as an intermediary between the user and the complex picture generation and processing systems. It provides a simplified interface that manages the interactions with the picture generation model, picture processing module, and picture selection module, allowing users to benefit from automated picture generation without directly dealing with the underlying system complexity.
Data Source
AI summary
A picture processing method for laser machining includes: obtaining picture generation information for generating a target picture required by a user; where the picture generation information includes at least picture description information; processing the picture generation information by a picture generation model to obtain a target picture consistent with the picture generation information; and importing the target picture into a laser machining process of a laser machining device.


