Digital workshop technology is one of the key technologies in digital manufacturing and the basis for realizing digital manufacturing systems. This paper uses Visual C++6.0 as a tool and OpenGL as a platform to analyze and study the digital workshop equipment integration technology and its model, proposes methods and strategies for digital workshop equipment integration, and completes the integration of digital workshop equipment. The simulation experiment shows that the digital workshop model can be applied to engineering practice. Keywords: digital workshop, OpenGL, equipment integration Digital workshop technology is an important application of digital manufacturing technology in the field of production and manufacturing, and has become the basis for the implementation of advanced manufacturing technology in the actual manufacturing process. Digital workshop technology is to use computer simulation and digital reality technology with the support of high-performance computers and high-speed networks, and in a group collaborative way. It summarizes all aspects of modeling and simulation research on objects and activities in the real manufacturing world. From the formation of product concepts, design to the three-dimensional visual and interactive environment of the entire manufacturing process, the essential process of product manufacturing (including product design, performance analysis, process planning, processing and manufacturing, quality inspection, production process management and control) is realized on the computer, and the possible problems in product functions, performance and machinability are simulated and predicted through computer digital models. The first step in building a digital workshop is to establish a digital 3D manufacturing environment in the computer, which is a prerequisite for realizing the integration of digital workshop equipment. The digital 3D manufacturing environment consists of two parts: the hardware environment and the software environment. The hardware environment mainly refers to the modeling of the processing environment, which includes the establishment of models such as the workshop, machine tool library, tool library, and blank library. The software environment mainly refers to the realization of machine tool processing functions and workshop roaming, as well as the connection between blanks and the environment, the planning of tool trajectories, the evaluation of part machinability, and the rationality evaluation of machine tool and tool processing parameters. This paper uses Windows as the development platform, Visual C++6.0 as the programming tool, and OpenGL as the graphics development tool to establish a 3D manufacturing environment for a digital workshop.
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