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  • 1.
    Leisner, Peter
    RISE., SP – Sveriges Tekniska Forskningsinstitut, SP Elektronik.
    Influence of ultrasound and cathode rotation on formation of intrinsic stress in Ni films during electrodeposition2011Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 89, nr 3, s. 137-142Artikkel i tidsskrift (Fagfellevurdert)
  • 2.
    Leisner, Peter
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik.
    Prizes and grants from the European Academy of Surface Technology2018Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 96, nr 6, s. 287-289Artikkel i tidsskrift (Annet vitenskapelig)
  • 3.
    Leisner, Peter
    et al.
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Johansson, Eilert
    RISE - Research Institutes of Sweden.
    Aspects to be considered when making innovation out of promising research results in surface technology2019Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 97, nr 2, s. 67-72Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    In the eyes of industrialists, scientists often exaggerate the economic potential of their findings. The industrialists know that developing a new technology to production is associated with uncertainty and risks. To elucidate the challenges faced by the surface treatment industry, this paper discusses aspects that should be considered when making innovation out of promising research results. The Technology Readiness Level (TRL) metric for assessing maturity of a technology is discussed and exemplified. Additional risks of fluid character such as legislation, price of raw material and customer expectations are also discussed. Even though, the subject is of general relevance, the present discussion refers to surface technology and examples are given from copper plating of printed circuit boards, and durable and cost-efficient coatings on electrical connectors.

  • 4.
    Leisner, Peter
    et al.
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden;.
    Nielsen, L. P.
    DTI Danish Technological Institute, Denmark.
    Offshoring and backshoring of surface finishing from the perspective of the Nordic countries2019Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 97, nr 2, s. 54-56Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    Backshoring of production to Western Europe has become an increasingly important trend after decades of offshoring. The subject is introduced by a general discussion followed by a specific analysis of the Nordic surface finishing industry. The main finding is that production quality is the main driver for backshoring of surface finishing. .

  • 5.
    Leisner, Peter
    et al.
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Zanella, C.
    Jönköping University, Sweden.
    Application of Assaf panel for evaluating throwing power of pulse reverse electroplating on complex geometries2018Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 96, nr 5, s. 258-264Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    The Assaf panel arrangement was used for evaluating pulse reverse plating processes and optimisation of the throwing power (TP) of complex three-dimensional (3D) geometries. Two different electroplating processes were investigated: an acid copper bath and a cyanide silver bath without additives. It has not been possible to establish a direct correlation factor for TP obtained with the Assaf panel and the 3D objects included in the trials. Nevertheless, the Assaf panel was found to be a useful tool for preliminary process parameter optimisation. The copper bath needs agitation to deposit coatings of good quality, whereas the silver bath obtains the best throwing power without agitation. The latter is probably due to inhibition by adsorbed cyanide.

  • 6.
    Leisner, Peter
    et al.
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Zanella, C.
    Jönköping University, Sweden.
    Belov, I.
    Jönköping University, Sweden.
    Edström, C.
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik.
    Sandulache, G.
    Happy Plating, Austria.
    Hansal, W. E. G.
    Happy Plating, Austria.
    Control of silver throwing power by pulse reverse electroplating2017Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 95, nr 1, s. 25-30Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    The influence of electroplating parameters on throwing power (TP) is studied in additive-free silver cyanide solutions under direct current and pulse reverse electroplating conditions. It is found that the best TP is obtained when no agitation of the electrolyte is applied. The most important parameters for controlling the TP are the cathodic current density, the anodic to cathodic charge ratio, and the ratio between the anodic and cathodic current densities. Guidelines for process optimisation are given.

  • 7.
    Leisner, Peter
    et al.
    RISE., SP – Sveriges Tekniska Forskningsinstitut, SP Elektronik.
    Zanella, Caterina
    RISE., SP – Sveriges Tekniska Forskningsinstitut. Jönköping University, Sweden; University of Trento, Italy.
    Edström, Curt
    RISE., SP – Sveriges Tekniska Forskningsinstitut, SP Elektronik, Miljötålighet. Jönköping University, Sweden.
    Wang, H.
    Chang Zhou University, China.
    Influence of anodic pulses and periodic current reversion on electrodeposits2014Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 92, nr 6, s. 336-341Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    This paper discusses how anodic pulses and periodic current reversion influence electrodeposition. Depending on the involved metal and electrolyte, very different effects can be observed and taken advantage of. The Wagner number, Wa, describing the current distribution is shown to be useful for predicting the throwing power at low frequencies of current reversion, even in complex electrochemical systems, but is less useful at higher frequencies. Passivation can occur due to oxide formation, super-saturation of metal salts or depletion of complexing agents at the electrode surface. Furthermore, dissolution and desorption processes in the anodic period can have strong influence on the succeeding cathodic electrocrystallisation affecting preferred crystal orientation, intrinsic stress and current efficiency. A literature survey is combined with experiments from silver plating from a cyanide bath.

  • 8.
    Lekka, M.
    et al.
    University of Undine, Italy.
    Zanella, C.
    Jönköping University, Sweden.
    Leisner, Peter
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik.
    New European Training Network solving corrosion problems on micro- and nanoscale: mCBEEs2017Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 95, nr 6, s. 297-298Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    mCBEEs is an acronym for: Advanced integrative solutions to Corrosion problems beyond micro-scale: towards long-term durability of miniaturised Biomedical, Electronic and Energy systems. It is a doctoral student training network funded by the European Commission under the Marie Sklodowska-Curie Action scheme in the same way as the recently reported training network SELECTA that is focusing on smart electrodeposited alloys for environmentally sustainable applications.1.

  • 9.
    Magagnin, Luca
    et al.
    Politechnico de Milano, Italy.
    Leisner, Peter
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Professor Pietro Luigi Cavallotti: 11 November 1938 – 12 October 20172018Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 96, nr 1, s. 7-Artikkel i tidsskrift (Annet (populærvitenskap, debatt, mm))
  • 10.
    Mölmen, Live
    et al.
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Alexandersson, Anna
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik.
    Leisner, Peter
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Surface technology should improve PEM fuel cell performance2019Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 97, nr 3, s. 112-114Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    Leading industrial nations are investing in hydrogen technology as energy storage solution with fuel cells as the main converter to electric energy. Improvements in the performance of the key components: electrode catalyst, bipolar plates and polymer electrolyte membrane are needed to reduce costs for mass-market introduction. Consequently, surface technology has an essential role in meeting the goals. 

  • 11.
    Nielsen, Lars Pleth
    et al.
    DTI Danish Technological Institute, Denmark.
    Leisner, Peter
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Møller, Per
    DTU Technical University of Denmark, Denmark.
    Surface technology is essential for transition to a hydrogen based energy system2018Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 96, nr 1, s. 8-10Artikkel i tidsskrift (Annet vitenskapelig)
    Abstract [en]

    The importance of advanced surface technology for the success of the ongoing energy turnaround in Germany has recently been discussed in this journal. The purpose of the present article is to add views based on the conditions valid for the Nordic region.

  • 12.
    Nielsen, Lars Pleth
    et al.
    DTI Danish Technological Institute, Denmark.
    Leisner, Peter
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik. Jönköping University, Sweden.
    Møller, Per B.
    DTU Technical University of Denmark, Denmark.
    Surface technology is essential for transition to a hydrogen-based energy system2018Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 96, nr 1, s. 8-10Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    The importance of advanced surface technology for the success of the ongoing energy turnaround in Germany has recently been discussed in this journal.1 The purpose of the present article is to add views based on the conditions valid for the Nordic region.

  • 13.
    Péter, L.
    et al.
    Wigner Research Centre for Physics, Hungary.
    Zanella, C.
    Jönköping University, Sweden.
    Leisner, Peter
    RISE - Research Institutes of Sweden, Säkerhet och transport, Elektronik.
    European training school for young scientists and EAST Forum 20172017Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 95, nr 5, s. 237-238Artikkel i tidsskrift (Fagfellevurdert)
  • 14. Zanella, Caterina
    et al.
    Leisner, Peter
    RISE., SP – Sveriges Tekniska Forskningsinstitut, SP Elektronik.
    Seminar Report - 6th European pulse plating seminar2014Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 92, nr 4, s. 178-179Artikkel i tidsskrift (Fagfellevurdert)
  • 15.
    Zanella, Caterina
    et al.
    Jönköping University, Sweden.
    Péter, Laszlo
    Hungarian Academy of Science, Hungary.
    Leisner, Peter
    RISE., SP – Sveriges Tekniska Forskningsinstitut.
    Promotion of young European scientists in surface technology2016Inngår i: Transactions of the Institute of Metal Finishing, ISSN 0020-2967, E-ISSN 1745-9192, Vol. 94, nr 4, s. 173-174Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    This contribution is an extension of two earlier reports in Transactions on EAST activities in which the imminent start-up of the e-MINDS program, involving training courses for early stage surface technology researchers in electrochemical processing in the development of miniaturized systems and devices, was noted. The first of these courses recently took place in Brno, the Czech Republic, in April 2016. e-MINDS was a COST action devoted to high-quality research in electrochemical processing technologies and corrosion towards the development of miniaturized systems and devices. Sixty-one attendees participated at the course event, representing 18 European countries.

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