{"id":5715,"date":"2020-11-04T13:27:00","date_gmt":"2020-11-04T13:27:00","guid":{"rendered":"https:\/\/prod.zbt.compositas.io\/news\/beton-werkzeug-innovatives-heisspressverfahren-fuer-hochleitfaehige-compounds\/"},"modified":"2025-02-07T13:30:51","modified_gmt":"2025-02-07T13:30:51","slug":"concrete-mould-innovative-hot-pressing-process-for-highly-conductive-compounds","status":"publish","type":"news","link":"https:\/\/zbt.de\/en\/news\/concrete-mould-innovative-hot-pressing-process-for-highly-conductive-compounds\/","title":{"rendered":"Concrete mould: Innovative hot pressing process for highly conductive compounds"},"content":{"rendered":"<section class=\"text-teaser text-teaser--white\">\n  <h2 class=\"text-teaser__heading\">Concrete mould: Innovative hot pressing process for highly conductive compounds<\/h2>\n  <div class=\"text-teaser__text\"><div class=\"teaser-text\">\n<div class=\"teaser-text\">\n<p class=\"bodytext\">In the UltraPress research project, a new innovative hot pressing process was developed using a tool made of ultra-high-performance concrete (UHPC). This can be used for the production of graphite bipolar plates for e.g. HT-PEM fuel cells based on highly conductive compound materials.<\/p>\n<div class=\"news-text-wrap\">\n<p class=\"bodytext\">In the project, which was financed within the framework of BMBF&#8217;s KMU-NetC funding initiative, it was possible to demonstrate the basics of a new innovative hot pressing process using a tool made of ultra-high-performance concrete (UHPC) for the production of graphite bipolar plates for HT-PEM fuel cells, as well as its suitability. The application suitability of a pressing tool made of UHPC was tested and after iterative optimisation of the UHPC mixture the target values such as compressive strength of 200 MPa, high temperature resistance up to 330\u00b0C, low shrinkage and a self-compacting consistency could be achieved! The temperature control of the UHPC mould for the production of graphite bipolar plates was achieved by induction.<\/p>\n<p class=\"bodytext\">The process control (time, power) and the inductive heatability of different graphite PPS compounds was investigated at the ZBT and an optimal compound formulation was determined in close cooperation with the project partner Eisenhuth. The design and simulation of the induction coil geometry was carried out at the project partner IKFF at the University of Stuttgart. After setting up an isostatic press suitable for the application at the project partner Boyke, various test series were carried out with two-part pure concrete tools and three-part superstructures with an additional steel insert. The three-part press tool turned out to be more suitable due to the adjustable and achieved process parameters. With the selected tool design, the production of hot-pressed bipolar plates could be realised within a few minutes.<\/p>\n<p class=\"bodytext\">The characteristic material parameters tested at the ZBT, such as permeability to hydrogen, electrical conductivity and mechanical parameters of the bipolar plates, correspond to the specifications of the Department of Energy and are comparable with references established on the market. Thus, the basic usability of the technology for the production of semi-finished products and in future also structured bipolar plates for PEM fuel cells, also in the technically more demanding high-temperature PEM variant, or also redox flow batteries, was proven.<\/p>\n<p class=\"bodytext\">The technology offers a considerable reduction in cycle time compared to conventional hot pressing processes of these bipolar plates. The results of the project project offer great potential for a considerable reduction in the costs of fuel cells and electrochemical converters as well as the energy consumption required to manufacture the BPP. Boyke Press Technology GmbH<\/p>\n<ul>\n<li style=\"list-style-type: none;\">\n<ul>\n<li>Eisenhuth GmbH &amp; Co. KG<\/li>\n<li>Zentrum f\u00fcr BrennstoffzellenTechnik GmbH\n<ul>\n<li>Department new materials and technologies<\/li>\n<li>Department fuel cells and stacks\u00a0\/\u00a0compound technologies<\/li>\n<\/ul>\n<p class=\"bodytext\">\n<\/li>\n<li>Institut f\u00fcr Konstruktion und Fertigung in der Feinwerktechnik<\/li>\n<li>Vorrichtungsbau Giggel GmbH<\/li>\n<li>IKAM GmbH<\/li>\n<\/ul>\n<\/li>\n<\/ul>\n<p>&nbsp;<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/section>\n\n\n<section class=\"latest-news latest-news--white\">\n            <h2 class=\"latest-news__heading\">More News<\/h2>\n                <div class=\"latest-news__grid\">\n                                            <div class=\"latest-news__item\">\n                    <a href=\"https:\/\/zbt.de\/en\/news\/zbt-researcher-elisabeth-verweyen-presents-progress-on-conductive-polymer-compounds-4\/\" class=\"news-card\" title=\"ZBT at the Hydrogen Technology Expo 2026 in Hamburg\">\n    <div class=\"news-card__header\">\n        <figure class=\"news-card__figure\">\n            <img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"768\" src=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/1000146481-1024x768.jpg\" class=\"news-card__image wp-post-image\" alt=\"\" srcset=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/1000146481-1024x768.jpg 1024w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/1000146481-300x225.jpg 300w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/1000146481-768x576.jpg 768w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/1000146481-1536x1152.jpg 1536w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/1000146481-1320x990.jpg 1320w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/1000146481.jpg 2048w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/>\n        <\/figure>\n    <\/div>\n    <div class=\"news-card__body\">\n        <time class=\"topic-card__published\" datetime=\"2026-08-04T15:04:30+00:00\">\n            4. 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July, 2026\n        <\/time>\n        <h4 class=\"topic-card__title\">New Instrument for Gas Analysis<\/h4>\n        <p class=\"topic-card__text\">The gas analysis laboratory at ZBT is being expanded to include an HPLC-QTOF mass spectrometer.<\/p>\n    <\/div>\n    <div class=\"news-card__footer\">\n        <div class=\"news-card__action\">\n            <span class=\"news-card__more\">Read more<\/span>\n            <i class=\"news-card__arrow\"> <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" fill=\"currentColor\" viewBox=\"0 0 448 512\"><path d=\"M435.3 267.3L446.6 256l-11.3-11.3-168-168L256 65.4 233.4 88l11.3 11.3L385.4 240 16 240 0 240l0 32 16 0 369.4 0L244.7 412.7 233.4 424 256 446.6l11.3-11.3 168-168z\"\/><\/svg><\/i>\n        <\/div>\n    <\/div>\n<\/a>\n                <\/div>\n                                <\/div>\n    <\/section>\n","protected":false},"excerpt":{"rendered":"<p>In the UltraPress research project, a new innovative hot pressing process was developed using a tool made of ultra-high-performance concrete (UHPC). This can be used for the production of graphite bipolar plates for e.g. HT-PEM fuel cells based on highly conductive compound materials.<\/p>\n","protected":false},"featured_media":0,"parent":0,"template":"","class_list":["post-5715","news","type-news","status-publish","hentry"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v24.9 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Concrete mould: Innovative hot pressing process for highly conductive compounds - Zentrum f\u00fcr BrennstoffzellenTechnik GmbH<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/prod.zbt.compositas.io\/news\/beton-werkzeug-innovatives-heisspressverfahren-fuer-hochleitfaehige-compounds\/\" \/>\n<meta property=\"og:locale\" content=\"en_GB\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Concrete mould: Innovative hot pressing process for highly conductive compounds - Zentrum f\u00fcr BrennstoffzellenTechnik GmbH\" \/>\n<meta property=\"og:description\" content=\"In the UltraPress research project, a new innovative hot pressing process was developed using a tool made of ultra-high-performance concrete (UHPC). 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