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markus
2022-06-08 09:23:08

The term "reverse engineering" is frequently used in the context of automobile design and other forms of industrial design, and it has become widely accepted.  What exactly is reverse engineering in terms of technology, and how does it benefit you? What is  Reverse Engineering Service in terms of technology? What is the procedure in its entirety and how does it work? During this time of year, a simple science popularization project can be completed with little difficulty.



https://www.youtube.com/watch?v=17VhdfyIM1IWhat is the process of Reverse Engineering, and how does it benefit the individual?

Specific to product design technology,  Reverse Engineering Service (also known as reverse technology) involves conducting reverse analysis and research on a target product to deduce and obtain design elements such as the processing flow, organizational structure, functional characteristics, and technical specifications of the product in order to produce products that perform similar functions but are not exactly the same as the target product.  This is done in order to produce products that perform similar functions but are not exactly the same as the target product.  When it comes to product design technology, Reverse Engineering is the process of conducting reverse analysis and research on a target product in order to deduce and obtain design elements such as features and functions.  For the uninitiated, the Reverse Engineering process is actually quite well understood, and it consists in disassembling and analyzing an existing finished product in order to determine its manufacturing structure and function, and then replicating that manufacturing structure and functionality with the greatest degree of accuracy.  To put it another way, seek out the essence of a phenomenon by paying close attention to it.  Reverse Engineering: A Step-by-Step Guide to Getting Started

Reverse Engineering: A Step-by-Step Guide to Getting Started
Section 3 of this document contains a detailed description of the operation process.
To begin, you should break down existing samples into their most fundamentally processable components as quickly and thoroughly possible.  In most cases, once the process reaches this point, computer technology is used to complete it, which is referred to as object digitization in the industry.

The specific method described above requires the collection of spatial topology discrete point data in accordance with the product model using appropriate measuring equipment, followed by the storage of the measurement results in a file or database, in order to be carried out.  Data collection methods such as coordinate measuring machines, three-dimensional laser scanners, three-dimensional digitizers, multi-angle photographs of objects, and other digital methods are frequently used for the purpose of obtaining data quickly and precisely.  After obtaining a relatively complete sampling data set of T, it is possible to create a three-dimensional graphic representation of T through the use of three-dimensional graphics processing technology (three-dimensional graphics processing).  This enables the development of a product structure that is both intuitive and simple to comprehend. . Separately, some editing and processing of the measurement data is required, such as the deletion of noise points, the addition of necessary compensation points, the segmentation of the data, and the compression of the data, among other things.  Separately, some calibration of the measurement data is required, such as the calibration of the measurement data.

The data must be recombined and rebuilt after the object digitization process is complete in order to recreate the original product model, a process that is referred to as object modeling in this context.  When dealing with this particular product, the reverse calculation of the three-dimensional CAD model is carried out using discrete point data from a spatial topology of the product.  After the product object analysis and interpolation detection have been performed on the product, the model is then adjusted and optimized for the product.

In order to determine the most appropriate manufacturing process, the model must then be subjected to a series of detailed analyses.  Object analysis is the term used to describe this process.  A product surface analysis, as well as finite element and process analysis, are performed using the model and design characterization, and the results of the analysis are stored in a file or database so that they can be retrieved and used by other modules at a future time.

When you have completed the object analysis, the next step is imitation, which is the process of creating an object.  Following the completion of the analysis, the CNC machining code is generated, and the reverse object is processed on the CNC machine in the same manner as the original.

5.  Compare the finished products with the original samples, make note of any differences, as well as any advantages and disadvantages, and make any necessary corrections, inspections, and modifications as necessary.  For accuracy and other test performance indicators, it is common practice to compare and contrast the newly constructed CAD model with previously measured and processed samples in order to determine whether or not the model meets the requirements of the test specifications.  When a component part does not meet the design requirements, the process outlined above should be repeated until the component part does meet the design requirements of the component part in question.

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