Reshetnikova E.S., Savelyeva I.A., Svistunova E.A. —
Methods of geometric modeling and computer graphics based on the WorldSkills Occupational Standards “Engineering CAD Software”
// Pedagogy and education. – 2021. – ¹ 2.
– P. 1 - 12.
DOI: 10.7256/2454-0676.2021.2.32225
URL: https://en.e-notabene.ru/ppmag/article_32225.html
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Abstract: This article examines the questions of preparation of students of technical specialties in the higher educational institutions based on the WorldSkills Occupational Standards “Engineering CAD Software”. The relevance of implementation of 3D modeling standards in modern computer-aided design systems into the educational process is substantiated by the need in preparation of highly qualified internationally recognized specialists in different industry fields. The author analyzed competitive tasks of the WorldSkills championships, as well as assesses the importance of graphic training for the development of competences of a modern specialist, who use CAD in their professional activity. The article examines the methodology of geometric-graphic preparation of students of the specialty 15.05.01 Design of Technological Machines and Complexes, specialization in the Design of Metallurgical Machines and Complexes, implemented in the Magnitogorsk State Technical University. A distinct advantage of this methodology is the use of various CAD software and development of the skills for manual sketching of details of mechanical engineering within the framework of studying engineering graphics. The results are acquired of successful implementation of competitive tasks of the Worldskills championships in the educational process. The author concludes that the use of the developed methodology in educational process allowed improving the efficiency of preparation of students.
Logunova O.S., Kukhta I.B., Reshetnikova E.S. —
Algorithm development for 3D image visualization: algorithm of layerwise transformation in compression and spread of a digital cube
// Software systems and computational methods. – 2020. – ¹ 4.
– P. 69 - 81.
DOI: 10.7256/2454-0714.2020.4.34303
URL: https://en.e-notabene.ru/itmag/article_34303.html
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Abstract: One of the promising areas of software development is the modeling of shapes of various objects with graphical representation of the process itself. The relevance of creation of such systems is first and foremost substantiated by providing a potential user with opportunity to visualize the process of shaping the object under the influence of external factors. Such software modules are highly demanded in such fields as modeling of deformation of a steel ingot in manufacturing rolled steel, prediction of occurrence of defects caused by external influence upon objects of various shape, as well as visualization of work of technical equipment related to external impact upon the object, which changes its shape as a result of applied forces. Elaboration of such systems allows inventing emulators that are demanded in educational institutions, as they replace expensive equipment for training practical skills of the students. For example, in medical universities, such software and hardware systems can be used for acquiring practical skills of working with medical equipment, like installation of ultrasonography. The standard training process for carrying out ultrasound examination in a medical university consists of two stages: theoretical and practical. In the course of training, students are not allowed to use ultrasonography machine as many times to be able to acquire sufficient skills in working with medical equipment. Therefore, it is relevant to develop an assistant robotic system for training, which would serve as an emulator of an actual ultrasonography equipment. The first stage of implementation of such project is the development of a specialized software product that would allow visualizing the image of human organs in 3D format with an option of scaling, rotation and deformation, which occurs due to application of pressure on soft tissues using special joystick during ultrasonography examination.
Reshetnikova E.S., Savelyeva I.A., Svistunova E.A. —
Geometric modeling and development of custom libraries in the design of engineering facilities
// Software systems and computational methods. – 2020. – ¹ 1.
– P. 1 - 7.
DOI: 10.7256/2454-0714.2020.1.32292
URL: https://en.e-notabene.ru/itmag/article_32292.html
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Abstract: The subject of research is the process of designing a conveyor belt. The authors consider parameterization in geometric modeling of parts and components of equipment and the creation of custom libraries in Compass 3D as a means of reducing the complexity and improving the quality of the design process. The preliminary design is the design stage of the development of design documentation and aims to determine the fundamental design solutions for a general idea of the device, operating principles and dimensions of the product. It is advisable to develop a preliminary design before the stage of developing a technical project and creating design documentation. Today, at all stages of work on the project, modern computer-aided design (CAD) systems are used, which not only accelerate the design process, but also make it possible to demonstrate to the customer the finished project at the stage of making technical decisions. This allows making timely changes in accordance with the requirements of the customer and to carry out high-quality preparation of the project for its implementation. The volume and time for further stages of work depend on the timing of the presentation of the preliminary design, therefore, the use of three-dimensional modeling parametrization in CAD is an effective way for designing engineering objects. Parameterization when working with 3D models allows you to get a set of typical product designs based on a once-created model by changing the set values of the variables, which significantly reduces the time spent on the project.