ݺߣshows by User: TomaszLiskiewicz / http://www.slideshare.net/images/logo.gif ݺߣshows by User: TomaszLiskiewicz / Thu, 13 Jun 2019 12:13:15 GMT ݺߣShare feed for ݺߣshows by User: TomaszLiskiewicz Good and evil of tribological engineering surfaces /slideshow/good-and-evil-of-tribological-engineering-surfaces/149430588 tomaszliskiewiczinaugurallecturemcrmetjune19-190613121315
Inaugural lecture for Tomasz Liskiewicz, Professor of Tribology and Surface Engineering, Manchester Metropolitan University, Faculty of Science and Engineering]]>

Inaugural lecture for Tomasz Liskiewicz, Professor of Tribology and Surface Engineering, Manchester Metropolitan University, Faculty of Science and Engineering]]>
Thu, 13 Jun 2019 12:13:15 GMT /slideshow/good-and-evil-of-tribological-engineering-surfaces/149430588 TomaszLiskiewicz@slideshare.net(TomaszLiskiewicz) Good and evil of tribological engineering surfaces TomaszLiskiewicz Inaugural lecture for Tomasz Liskiewicz, Professor of Tribology and Surface Engineering, Manchester Metropolitan University, Faculty of Science and Engineering <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/tomaszliskiewiczinaugurallecturemcrmetjune19-190613121315-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Inaugural lecture for Tomasz Liskiewicz, Professor of Tribology and Surface Engineering, Manchester Metropolitan University, Faculty of Science and Engineering
Good and evil of tribological engineering surfaces from Tomasz Liskiewicz
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Surface Ventures: �What Exponential Growth �of Technology means �for Tribological Coatings /slideshow/surface-ventures-what-exponential-growth-of-technology-means-for-tribological-coatings/66641990 pse2016-161002130348
Knowledge grows exponentially. The more we know, the greater our ability to learn and the faster we expand our knowledge base. The growth of knowledge fuels the growth of technology, with each new scientific discovery becoming a tool with which novel technologies are invented. It might be difficult to appreciate and accept the fact of exponential growth, as human perception is linear. Our brains have linear expectations, because that has always been the case. However, it has been postulated, that we are currently “on the knee” of the exponential growth of technology curve. As a result, technology progresses so fast, that the past no longer looks like the present, and the present is nowhere near how the future will look like. Materials science will play a key role in enabling future technologies, and we are in the midst of a materials science revolution that will impact every industry. Today, materials scientists are engineering smart, novel materials and functional surfaces with advanced properties well beyond state-of-the-art. Novel materials mean breakthrough opportunities in medicine, energy generation, transportation, consumer electronics, and high value manufacturing. This perspective talk discusses the current opportunities and future challenges for the protective and tribological coatings in the context of exponential growth of technology.]]>

Knowledge grows exponentially. The more we know, the greater our ability to learn and the faster we expand our knowledge base. The growth of knowledge fuels the growth of technology, with each new scientific discovery becoming a tool with which novel technologies are invented. It might be difficult to appreciate and accept the fact of exponential growth, as human perception is linear. Our brains have linear expectations, because that has always been the case. However, it has been postulated, that we are currently “on the knee” of the exponential growth of technology curve. As a result, technology progresses so fast, that the past no longer looks like the present, and the present is nowhere near how the future will look like. Materials science will play a key role in enabling future technologies, and we are in the midst of a materials science revolution that will impact every industry. Today, materials scientists are engineering smart, novel materials and functional surfaces with advanced properties well beyond state-of-the-art. Novel materials mean breakthrough opportunities in medicine, energy generation, transportation, consumer electronics, and high value manufacturing. This perspective talk discusses the current opportunities and future challenges for the protective and tribological coatings in the context of exponential growth of technology.]]>
Sun, 02 Oct 2016 13:03:48 GMT /slideshow/surface-ventures-what-exponential-growth-of-technology-means-for-tribological-coatings/66641990 TomaszLiskiewicz@slideshare.net(TomaszLiskiewicz) Surface Ventures: �What Exponential Growth �of Technology means �for Tribological Coatings TomaszLiskiewicz Knowledge grows exponentially. The more we know, the greater our ability to learn and the faster we expand our knowledge base. The growth of knowledge fuels the growth of technology, with each new scientific discovery becoming a tool with which novel technologies are invented. It might be difficult to appreciate and accept the fact of exponential growth, as human perception is linear. Our brains have linear expectations, because that has always been the case. However, it has been postulated, that we are currently “on the knee” of the exponential growth of technology curve. As a result, technology progresses so fast, that the past no longer looks like the present, and the present is nowhere near how the future will look like. Materials science will play a key role in enabling future technologies, and we are in the midst of a materials science revolution that will impact every industry. Today, materials scientists are engineering smart, novel materials and functional surfaces with advanced properties well beyond state-of-the-art. Novel materials mean breakthrough opportunities in medicine, energy generation, transportation, consumer electronics, and high value manufacturing. This perspective talk discusses the current opportunities and future challenges for the protective and tribological coatings in the context of exponential growth of technology. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/pse2016-161002130348-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Knowledge grows exponentially. The more we know, the greater our ability to learn and the faster we expand our knowledge base. The growth of knowledge fuels the growth of technology, with each new scientific discovery becoming a tool with which novel technologies are invented. It might be difficult to appreciate and accept the fact of exponential growth, as human perception is linear. Our brains have linear expectations, because that has always been the case. However, it has been postulated, that we are currently “on the knee” of the exponential growth of technology curve. As a result, technology progresses so fast, that the past no longer looks like the present, and the present is nowhere near how the future will look like. Materials science will play a key role in enabling future technologies, and we are in the midst of a materials science revolution that will impact every industry. Today, materials scientists are engineering smart, novel materials and functional surfaces with advanced properties well beyond state-of-the-art. Novel materials mean breakthrough opportunities in medicine, energy generation, transportation, consumer electronics, and high value manufacturing. This perspective talk discusses the current opportunities and future challenges for the protective and tribological coatings in the context of exponential growth of technology.
Surface Ventures: What Exponential Growth of Technology means for Tribological Coatings from Tomasz Liskiewicz
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Functional surfaces for corrosion protection – current challenges and future trends /slideshow/functional-surfaces-for-corrosion-protection-current-challenges-and-future-trends/35314728 intercorr2014slideshare-140530143946-phpapp02
Originally presented as a keynote paper during Intercorr 2014 conference in Fortaleza, Brazil, on May 21st, 2014. ]]>

Originally presented as a keynote paper during Intercorr 2014 conference in Fortaleza, Brazil, on May 21st, 2014. ]]>
Fri, 30 May 2014 14:39:46 GMT /slideshow/functional-surfaces-for-corrosion-protection-current-challenges-and-future-trends/35314728 TomaszLiskiewicz@slideshare.net(TomaszLiskiewicz) Functional surfaces for corrosion protection – current challenges and future trends TomaszLiskiewicz Originally presented as a keynote paper during Intercorr 2014 conference in Fortaleza, Brazil, on May 21st, 2014. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/intercorr2014slideshare-140530143946-phpapp02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Originally presented as a keynote paper during Intercorr 2014 conference in Fortaleza, Brazil, on May 21st, 2014.
Functional surfaces for corrosion protection – current challenges and future trends from Tomasz Liskiewicz
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DLC coatings in oil and gas production /TomaszLiskiewicz/dlc-coatings-in-oil-and-gas-production dlccoatingsinoilandgasproduction-140225155325-phpapp01
Diamond-like carbon (DLC) coatings are recognized in many sectors as a promising way of controlling wear and the corrosion performance of components. DLC coatings are unique in the sense that they are a diverse group of amorphous carbon films with a wide range of engineering properties. This allows the tailoring of DLC coating properties for specific applications by choosing suitable deposition method and adjusting their architectures. In this presentation, three qualities of DLC coatings with the greatest relevance for oil and gas applications are identified; these include: (i) improved tribological properties; (ii) reduced corrosion; and (iii) anti-fouling properties. Successful applications of DLC coatings in petroleum production are reviewed, giving examples of protection against erosion-corrosion and fouling in flow control devices and in components where protection of internal surfaces in cylindrical structures is required. The application of DLC coatings in the oil and gas sectors is still very low, compared to other sectors; therefore, it is expected that demand for this type functional coatings has potential for steady growth.]]>

Diamond-like carbon (DLC) coatings are recognized in many sectors as a promising way of controlling wear and the corrosion performance of components. DLC coatings are unique in the sense that they are a diverse group of amorphous carbon films with a wide range of engineering properties. This allows the tailoring of DLC coating properties for specific applications by choosing suitable deposition method and adjusting their architectures. In this presentation, three qualities of DLC coatings with the greatest relevance for oil and gas applications are identified; these include: (i) improved tribological properties; (ii) reduced corrosion; and (iii) anti-fouling properties. Successful applications of DLC coatings in petroleum production are reviewed, giving examples of protection against erosion-corrosion and fouling in flow control devices and in components where protection of internal surfaces in cylindrical structures is required. The application of DLC coatings in the oil and gas sectors is still very low, compared to other sectors; therefore, it is expected that demand for this type functional coatings has potential for steady growth.]]>
Tue, 25 Feb 2014 15:53:24 GMT /TomaszLiskiewicz/dlc-coatings-in-oil-and-gas-production TomaszLiskiewicz@slideshare.net(TomaszLiskiewicz) DLC coatings in oil and gas production TomaszLiskiewicz Diamond-like carbon (DLC) coatings are recognized in many sectors as a promising way of controlling wear and the corrosion performance of components. DLC coatings are unique in the sense that they are a diverse group of amorphous carbon films with a wide range of engineering properties. This allows the tailoring of DLC coating properties for specific applications by choosing suitable deposition method and adjusting their architectures. In this presentation, three qualities of DLC coatings with the greatest relevance for oil and gas applications are identified; these include: (i) improved tribological properties; (ii) reduced corrosion; and (iii) anti-fouling properties. Successful applications of DLC coatings in petroleum production are reviewed, giving examples of protection against erosion-corrosion and fouling in flow control devices and in components where protection of internal surfaces in cylindrical structures is required. The application of DLC coatings in the oil and gas sectors is still very low, compared to other sectors; therefore, it is expected that demand for this type functional coatings has potential for steady growth. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/dlccoatingsinoilandgasproduction-140225155325-phpapp01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Diamond-like carbon (DLC) coatings are recognized in many sectors as a promising way of controlling wear and the corrosion performance of components. DLC coatings are unique in the sense that they are a diverse group of amorphous carbon films with a wide range of engineering properties. This allows the tailoring of DLC coating properties for specific applications by choosing suitable deposition method and adjusting their architectures. In this presentation, three qualities of DLC coatings with the greatest relevance for oil and gas applications are identified; these include: (i) improved tribological properties; (ii) reduced corrosion; and (iii) anti-fouling properties. Successful applications of DLC coatings in petroleum production are reviewed, giving examples of protection against erosion-corrosion and fouling in flow control devices and in components where protection of internal surfaces in cylindrical structures is required. The application of DLC coatings in the oil and gas sectors is still very low, compared to other sectors; therefore, it is expected that demand for this type functional coatings has potential for steady growth.
DLC coatings in oil and gas production from Tomasz Liskiewicz
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https://cdn.slidesharecdn.com/profile-photo-TomaszLiskiewicz-48x48.jpg?cb=1560427891 Tomasz has 15 years of international academic and engineering experience from leading reasearch institutions in the UK, France, Canada and Poland. He is an Associate Professor at the University of Leeds, has PhD in Mechanical Engineering and is a Fellow of the Institution of Mechanical Engineers in London. He is a founder of Amberwrite and co-founder of Amber Editing - personal growth companies that help young researchers to publish effectively in scholarly journals. Tomasz is a trainer certified by Peak Potentials. Passionate traveller and kitesurfer. https://cdn.slidesharecdn.com/ss_thumbnails/tomaszliskiewiczinaugurallecturemcrmetjune19-190613121315-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/good-and-evil-of-tribological-engineering-surfaces/149430588 Good and evil of tribo... https://cdn.slidesharecdn.com/ss_thumbnails/pse2016-161002130348-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/surface-ventures-what-exponential-growth-of-technology-means-for-tribological-coatings/66641990 Surface Ventures: �Wha... https://cdn.slidesharecdn.com/ss_thumbnails/intercorr2014slideshare-140530143946-phpapp02-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/functional-surfaces-for-corrosion-protection-current-challenges-and-future-trends/35314728 Functional surfaces fo...