{"id":32,"date":"2018-12-20T18:35:39","date_gmt":"2018-12-20T18:35:39","guid":{"rendered":"http:\/\/localhost\/tunneltest\/web\/?page_id=32"},"modified":"2022-07-29T11:03:33","modified_gmt":"2022-07-29T11:03:33","slug":"metallography","status":"publish","type":"page","link":"https:\/\/www.bk-werkstofftechnik.com\/en\/materials-testing\/metallography\/","title":{"rendered":"Metallography"},"content":{"rendered":"<h2>Analysis in detail<\/h2>\n<p>In metallography materials are tested with respect to their structural properties. One of the best image analysis methods supports our metallographers in the daily analysis of very different materials.<\/p>\n<p>In addition to the actual metallography we also do plastography, which deals with non-metallic materials. Here we test primarily <a href=\"https:\/\/www.bk-werkstofftechnik.com\/en\/materials-testing\/destructive-materials-testing-on-composite\/\" target=\"_blank\" rel=\"noopener\">composite materials<\/a>, such as e.g. carbon fiber reinforced plastics (CFRP).<\/p>\n<p>In special cases it is possible by means of ambulant metallography to test components on site or when installed non-destructively. In this connection replicas are taken which are then microscopically evaluated in the laboratory. This method is used for example in the inspection of creep rupture damages within the scope of plant reviews.<\/p>\n<p>Thus we also offer a comprehensive solution for our clients in the area of metallography, plastography and mobile analysis:<\/p>\n<ul>\n<li>The latest image analysis system with automatic microscope table control from Olympus, including archiving<\/li>\n<li>Cold and warm embedding machines<\/li>\n<li>Specimen preparation \u2013 manual and on semi-automatic and fully automatic machines<\/li>\n<li>Preparation of macro sections and micro sections<\/li>\n<li>Weld seam analysis in accordance with DIN EN ISO 5817, DIN EN ISO 10042, determination of design throat thickness in accordance with DIN 15614-7<\/li>\n<li>Determination of ferrite per ASTM E562<\/li>\n<li>Determination of particle size in accordance with ISO 643 und ASTM E112<\/li>\n<li>Classification of gray cast iron in accordance with ISO 945-1<\/li>\n<li>Titanium (\u03b1+\u00df, \u03b1-case)<\/li>\n<li>Rough grain analysis<\/li>\n<li>Layer thickness measurement<\/li>\n<li>Quantitative determination of structural constituents und phase contents<\/li>\n<li>Pore analysis in CFRP, e.g. AITM 4-0003 and VDG P201 in NE metals<\/li>\n<li>Density determination Sintered materials<\/li>\n<li>Small load and microhardness test<\/li>\n<li>Determining the hardness depth (CHD) in accordance with ISO 2639<\/li>\n<li>Baumannn print or sulfur print for detecting sulfur and its distribution in steel<\/li>\n<li>Ambulant metallography, replicas by means of Replica technology<\/li>\n<li>Damage analysis<\/li>\n<\/ul>\n","protected":false},"excerpt":{"rendered":"<p>Analysis in detail In metallography materials are tested with respect to their structural properties. One of the best image analysis methods supports our metallographers in the daily analysis of very different materials. In addition to the actual metallography we also do plastography, which deals with non-metallic materials. Here we test primarily composite materials, such as [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":311,"parent":26,"menu_order":5,"comment_status":"closed","ping_status":"closed","template":"page-templates\/page-servicios.php","meta":{"_acf_changed":false,"_en_post_content":"<h2>Analysis in detail<\/h2>\r\nIn metallography materials are tested with respect to their structural properties. One of the best image analysis methods supports our metallographers in the daily analysis of very different materials.\r\n\r\nIn addition to the actual metallography we also do plastography, which deals with non-metallic materials. Here we test primarily <a href=\"https:\/\/www.bk-werkstofftechnik.com\/en\/materials-testing\/destructive-materials-testing-on-composite\/\" target=\"_blank\" rel=\"noopener\">composite materials<\/a>, such as e.g. carbon fiber reinforced plastics (CFRP).\r\n\r\nIn special cases it is possible by means of ambulant metallography to test components on site or when installed non-destructively. In this connection replicas are taken which are then microscopically evaluated in the laboratory. This method is used for example in the inspection of creep rupture damages within the scope of plant reviews.\r\n\r\nThus we also offer a comprehensive solution for our clients in the area of metallography, plastography and mobile analysis:\r\n<ul>\r\n \t<li>The latest image analysis system with automatic microscope table control from Olympus, including archiving<\/li>\r\n \t<li>Cold and warm embedding machines<\/li>\r\n \t<li>Specimen preparation \u2013 manual and on semi-automatic and fully automatic machines<\/li>\r\n \t<li>Preparation of macro sections and micro sections<\/li>\r\n \t<li>Weld seam analysis in accordance with DIN EN ISO 5817, DIN EN ISO 10042, determination of design throat thickness in accordance with DIN 15614-7<\/li>\r\n \t<li>Determination of ferrite per ASTM E562<\/li>\r\n \t<li>Determination of particle size in accordance with ISO 643 und ASTM E112<\/li>\r\n \t<li>Classification of gray cast iron in accordance with ISO 945-1<\/li>\r\n \t<li>Titanium (\u03b1+\u00df, \u03b1-case)<\/li>\r\n \t<li>Rough grain analysis<\/li>\r\n \t<li>Layer thickness measurement<\/li>\r\n \t<li>Quantitative determination of structural constituents und phase contents<\/li>\r\n \t<li>Pore analysis in CFRP, e.g. AITM 4-0003 and VDG P201 in NE metals<\/li>\r\n \t<li>Density determination Sintered materials<\/li>\r\n \t<li>Small load and microhardness test<\/li>\r\n \t<li>Determining the hardness depth (CHD) in accordance with ISO 2639<\/li>\r\n \t<li>Baumannn print or sulfur print for detecting sulfur and its distribution in steel<\/li>\r\n \t<li>Ambulant metallography, replicas by means of Replica technology<\/li>\r\n \t<li>Damage analysis<\/li>\r\n<\/ul>","_en_post_name":"metallography","_en_post_excerpt":"","_en_post_title":"Metallography","_de_post_content":"<div id=\"cc-m-7695997386\" class=\"j-module n j-header \">\r\n<h2 id=\"cc-m-header-7695997386\" class=\"\">Die Analyse im Detail<\/h2>\r\nBei der Metallografie werden Werkstoffe im Hinblick auf ihre Gef\u00fcgeeigenschaften untersucht. Eines der besten Bildanalyseverfahren unterst\u00fctzt unsere Metallografen bei der t\u00e4glichen Analyse von unterschiedlichsten Werkstoffen.\r\n\r\nZus\u00e4tzlich zu der eigentlichen Metallografie betreiben wir auch die Plastografie, die sich mit der Analyse von nicht-metallischen Werkstoffen auseinandersetzt. Hier untersuchen wir haupts\u00e4chlich <a href=\"https:\/\/www.bk-werkstofftechnik.com\/de\/werkstoffprufung\/zerstorende-werkstoffprufungen-an-verbundwerkstoffen-composites\/\" target=\"_blank\" rel=\"noopener\">Verbundwerkstoffe<\/a>, wie z.B. Kohlenstofffaserverst\u00e4rkte Kunststoffe (CFK).\r\n\r\nIn speziellen F\u00e4llen ist es mittels ambulanter Metallografie auch m\u00f6glich, Komponenten vor Ort bzw. im eingebauten Zustand zerst\u00f6rungsfrei zu untersuchen. Hierbei werden Gef\u00fcgeabdr\u00fccke (Replikas) entnommen, die anschlie\u00dfend im Labor mikroskopisch ausgewertet werden. Dieses Verfahren kommt beispielsweise bei der \u00dcberpr\u00fcfung von Zeitstandsch\u00e4digungen im Rahmen von Anlagenrevisionen zur Anwendung.\r\n<div id=\"cc-m-7695997886\" class=\"j-module n j-text \">\r\n\r\nSomit bieten wir auch im Bereich der Metallographie, Plastographie und mobiler Analyse eine ganzheitliche L\u00f6sung f\u00fcr unsere Kunden:\r\n<ul>\r\n \t<li>Neuestes Bildanalysesystem mit automatischer Mikroskop-Tischsteuerung von Olympus, inkl. Archivierung<\/li>\r\n \t<li>Kalt- und Warmeinbettpressen<\/li>\r\n \t<li>Schliffpr\u00e4paration manuell und am Halb- und Vollautomaten<\/li>\r\n \t<li>Erstellung von Makro- und Mikroschliffen<\/li>\r\n \t<li>Schwei\u00dfnaht-Analyse nach DIN EN ISO 5817, DIN EN ISO 10042, A-Ma\u00df-Bestimmung nach DIN 15614-7<\/li>\r\n \t<li>Ferritbestimmung nach ASTM E562<\/li>\r\n \t<li>Korngr\u00f6\u00dfenbestimmung nach ISO 643 und ASTM E112<\/li>\r\n \t<li>Klassifizierung von Grauguss nach ISO 945-1<\/li>\r\n \t<li>Titan (\u03b1+\u00df, \u03b1-case)<\/li>\r\n \t<li>Grobkorn-Analyse<\/li>\r\n \t<li>Schichtdicken-Messung<\/li>\r\n \t<li>Quantitative Bestimmung von Gef\u00fcgebestandteilen und Phasengehalten<\/li>\r\n \t<li>Porenanalyse an CFK, z.B. AITM 4-0003 und VDG P201 an NE-Metallen<\/li>\r\n \t<li>Dichtebestimmung von Sinterwerkstoffen<\/li>\r\n \t<li>Kleinlast- und Mikroh\u00e4rtepr\u00fcfung<\/li>\r\n \t<li>Bestimmung der Einh\u00e4rtetiefe (CHD) nach ISO 2639<\/li>\r\n \t<li>Baumannabdruck bzw. Schwefelabdruck zum Nachweis von Schwefel und dessen Verteilung im Stahl<\/li>\r\n \t<li>Ambulante Metallographie, Gef\u00fcgeabdr\u00fccke mittels Replika-Technik<\/li>\r\n \t<li>Schadensanalyse<\/li>\r\n<\/ul>\r\n<\/div>\r\n<\/div>","_de_post_name":"metallografie","_de_post_excerpt":"","_de_post_title":"Metallografie","edit_language":"en","footnotes":""},"class_list":["post-32","page","type-page","status-publish","has-post-thumbnail","hentry"],"acf":{"photo_gallery":{"imagenes":[[{"id":311,"title":"Metallography","caption":"","full_image_url":"https:\/\/www.bk-werkstofftechnik.com\/wp-content\/uploads\/metallography-1.jpg","thumbnail_image_url":"https:\/\/www.bk-werkstofftechnik.com\/wp-content\/uploads\/metallography-1-150x106.jpg","large_srcset":"https:\/\/www.bk-werkstofftechnik.com\/wp-content\/uploads\/metallography-1-1024x721.jpg 1024w, https:\/\/www.bk-werkstofftechnik.com\/wp-content\/uploads\/metallography-1-450x317.jpg 450w, 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