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EN
Production development has for decades concentrated on incremental improvements by exploiting existing manufacturing knowledge to improve existing production systems or adapt them for new product developments. Building up an "ambidextrous innovation" ability, and more specifically in increasing focus on explorative production innovation, is important to balance production development efforts and obtain sustainable development of production. This paper aims to provide a conceptual framework for “ambidextrous production innovation” that conceptualizes and highlights phenomenon characteristics from exploitative and explorative perspectives. The conceptual framework describes “production innovation” as the process of either increasing or developing a new production capability, enabling opportunities for new product designs. This process can be either “product-driven” or “production-driven” depending on the primary objective of the development.
EN
The Fourth Industrial Revolution, also known as Industry 4.0, is about connecting the physical world with the virtual world in real-time. With the advent of the Fourth Industrial Revolution, manufacturing companies are introducing a number of solutions that increase productivity and personalize finished products in line with the idea of Industry 4.0. The application of, among others, the following: 3D printing, the Internet of Things, Big Data, cyber-physical systems, computing clouds, robots (collaborating and mobile), Radio-frequency identification systems, and also quality control and reverse engineering systems, is becoming popular. There are still not enough studies and analyses connected with the Polish 3D printing market, and also attempt to determine the attitude of those studies and analyses to the implementation of the Industry 4.0 conception. In connection with what is stated above, the principal objective of this paper is to determine the directions of the 3D printing industry development. In this publication, it is as well the survey respondents’ opinions relevant to opportunities and threats connected with the implementation of the Industry 4.0 conception in an enterprise are presented. The survey was conducted on a group of 100 enterprises and scientific research institutes in Poland, offering and/or applying additive technologies.
3
Content available remote Strategia rozwoju badań i technologii szkła
PL
Zaprezentowano strategię rozwoju badań i technologii w dziedzinie szkła, opracowaną w ramach projektu Forsight-Foremat, poświęconemu scenariuszom rozwoju technologii nowoczesnych materiałów metalicznych, ceramicznych i kompozytowych. Głównym zadaniem przemysłu szklarskiego jest wprowadzenie nowych metod służących redukcji zużycia energii oraz emisji CO2. Postuluje się zwiększenie zainteresowania jednostek badawczo-rozwojowych problemami technologicznymi przemysłu szklarskiego. Proponuje się utworzenie programu badawczo-wdrożeniowego "Materiały na ekologiczny dom". W zakresie zaawansowanych materiałów należy skoncentrować uwagę na włóknach optycznie aktywnych dla optoelektroniki, włóknach tekstylnych i wzmacniających kompozyty, nowych pokryciach na szkło i materiały dla energetyki solarnej, jako obecnie najbardziej perspektywicznych.
EN
Strategy of the development of glass science and technology in Poland has been elaborated in the frame of Forsight-Foremat project on the technology of modern metals, ceramics and composites development. As a main effort for the glass industry in the nearest future are the new methods to reduce energy consumption and minimized the CO2 emanations. Increase an effort of R&D centers on glass industry problems is postulated. Program "Materials for Ecologic House" is proposed. Scientific and technical works should be focused on optic active fibers for optoelectronics, textile and reinforcement fibers, new coating on glass and materials for solar energy as most prospecting.
EN
In order to shorten manufacturing time for new products and their moulds, the use and the development of modern techniques are critical. One of such technologies is the rapid prototyping method, which enables to designers and customers to see the physical presentation of a new product. Application of the CAE methods is accentuated in the development phase of the product, which redounds to cost reducing on tools and moulds development. The paper deals with several steps in prototype development, the application of computer simulation by means of CAE system Moldflow MPI in mould development for mold plastic part and utilization of CAM system for NC programming of the mould manufacturing.
5
Content available remote A new approach in development of technological processes
EN
It is necessary to bring in additional stages in the method for development of the technological processes in manufacture and assembling of details, which are linked with the use of technological heredity and the use of effect self-organization and the purpose of directed forming of the rise indexes of quality products.
EN
For a new innovative product and production development the corporation in a virtual company is an organizational concept of the future. As a result there are demands for company capabilities as well for the product structuring based on the system technology. By using new techniques like simulation or virtual reality companies can fasten up there development processes and optimize products and production in advance. For this the knowledge management will become one of the success factors of the future. The used development tools have to be highly integrated.
PL
Sprawa unowocześnienia produktu i metod wytwarzania wymagają nowego podejścia do zagadnienia środowiska organizacyjnego przedsiębiorstwa. Metody symulacyjne łącznie z technikami rzeczywistości wirtualnej są w stanie przyśpieszyć procesy rozwoju produktu i optymalizacji wytwarzania. Zarządzenie wiedzą staje się w tej sytacji jednym z kluczowych czynników sukcesu firmy. Narzędzia tu używane muszą być silnie zintegrowane.
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