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Sökning: L773:2409 9066 OR L773:2413 4996

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1.
  • Abbas, Asad, et al. (författare)
  • Process of knowledge transfer from universities to industry through the University of Technology Transfer Offices in China : The case of Anhui province
  • 2018
  • Ingår i: Science and Innovation. - : National Academy of Sciences of Ukraine (Co. LTD Ukrinformnauka) (Publications). - 2409-9066 .- 2413-4996. ; 14:2, s. 5-18
  • Tidskriftsartikel (refereegranskat)abstract
    • Introduction. This paper focuses on knowledge generation and the way in which it is transferred from universities to industry. Most well reputed universities have several departments and university-run enterprises that engage in research. The purpose of these research units is to help universities provide breakthrough innovation through the generation of new knowledge.Problem Statement. For this we chose to study China's University Technology Transfer Offices (UTTOs) to gather concrete evidence of university knowledge generation for commercial use in industry. The objective of this study is get indepth information about the role of UTTOs in the transfer of such knowledge.Purpose. The generation of new knowledge contributes to the field of science and technology; in turn, industry can use this knowledge to produce new innovative products or improve existing ones. This study aims to identify the process of knowledge transfer from universities to industry in China.Materials and Methods. Our study was carried out as a qualitative case study in the Anhui province of China. Data was mainly collected through semi-structured interviews with technology transfer experts working in technology transfer offices. Collected data were analyzed using a knowledge transfer model with six phases: 1) awareness, 2) acquisition, 3) transformation, 4) association, 5) application, and 6) feedback.Results. In China, universities and their research groups dominate in the generation and commercialization of research results, with UTTOs acting as technology bridges between the two parties, as well as providing legal and business services.Conclusions. This paper contributes by offering a detailed description of the knowledge transfer process and specifically the role and activities of UTTOs. This research also helps Chinese and international researchers currently carrying out research on the technology transfer process in China.
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2.
  • Kovtun, Yurii, et al. (författare)
  • Development of Technology for Vacuum Surface Conditioning by RF Plasma Discharge Combined With DC Discharge
  • 2021
  • Ingår i: Science and Innovation. - : National Academy of Sciences of Ukraine. - 2409-9066 .- 2413-4996. ; 17:4, s. 33-43
  • Tidskriftsartikel (refereegranskat)abstract
    • Introduction: It is important to decrease light and heavy impurities influxes towards the plasma volume during the high temperature plasma experiments in fusion devices. This is why the conditioning of the wall inner vacuum surfaces is a basic part of the fusion device operation.Problem Statement: The conventional inner vacuum chamber surface conditioning methods has a significant drawback: sputtering materials in a vacuum chamber. The inner vacuum surfaces can be also conditioned with radio-frequency (RF) discharge plasma, but the conditioning effectiveness is limited by low ion energy.Purpose: The purpose of this research is to develop vacuum surface conditioning technology by the radio frequency plasma combined with DC discharge.Materials and Methods: The noncontact passive method of optical plasma spectroscopy has been used to estimate ion plasma composition. The stainless steel outgassing has been determined in situ with the thermodesorption probe method. The sputtering of the samples has been measured with the weight loss method.Results: The studies of combined discharge have shown that: the anode voltage of combined discharge is lower than in case of the glow discharge; the stainless steel 12Kh18N10T erosion coefficient is about 1.5 times less in the case of combined discharge than in the glow one; the thermal desorption diagnostic of wall conditions in the DSM-1 experimental device has shown better efficiency with the combined discharge as compared with the glow discharge. The proposed technology is an original one and has no analogs.Conclusions: The reported research results have shown good prospects for the combined discharge usage for plasma walls conditioning and opportunities for using the combined discharge technology for big fusion machines.
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