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In der Materialforschung gilt die digitale Bildkorrelation (Digital Image Correlation, DIC) als etabliertes Verfahren, um sehr genau und berührungslos Verformungen zu erkennen. Das gilt für Zug-, Druck- und Biegetests ebenso wie für Aufprall-, Ermüdungs- oder Druckwellen-Analysen sowie ganz allgemein zur Erkennung von Defekten auch unter der Probenoberfläche. <\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/f\/csm_digitale-bildkorrelation-nutzt-fluoreszenz_fc00a76db9.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/f\/csm_digitale-bildkorrelation-nutzt-fluoreszenz_fc00a76db9.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/f\/csm_digitale-bildkorrelation-nutzt-fluoreszenz_8d8881e609.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/f\/csm_digitale-bildkorrelation-nutzt-fluoreszenz_8d8881e609.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/optical-systems\/image\/digitale-bildkorrelation-nutzt-fluoreszenz.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/optical-systems\/image\/digitale-bildkorrelation-nutzt-fluoreszenz.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/f\/csm_digitale-bildkorrelation-nutzt-fluoreszenz_d24d85ef05.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/f\/csm_digitale-bildkorrelation-nutzt-fluoreszenz_d24d85ef05.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/b\/f\/csm_digitale-bildkorrelation-nutzt-fluoreszenz_fc00a76db9.jpg","alt":"","title":""}},"link":"https:\/\/magazine.polytec.com\/de\/digitale-bildkorrelation-nutzt-fluoreszenz","origUid":7517,"readingTime":"5 min","subline":"Digitale Bildkorrelation nutzt Fluoreszenz","tags":[{"title":"Automotive & Aerospace","uid":79},{"title":"Biologie & Medizin","uid":80},{"title":"Forschung & Entwicklung","uid":86},{"title":"Infrastruktur & Bauwesen","uid":85},{"title":"Maschinenbau & Feinwerktechnik","uid":84},{"title":"Materialforschung & -prüfung","uid":83}],"technologies":[{"title":"Optische Systeme","uid":228}],"title":"Mehr Möglichkeiten für Verformungstests in der Materialprüfung","uid":7517,"visits":230},{"authors":[{"fullName":"Ellen-Christine Reiff","fullOfficialName":"M.A. Ellen-Christine Reiff"},{"fullName":"Peter Schullerer","fullOfficialName":" Peter Schullerer"}],"description":"

Bei Pulverbeschichtungen kommt es auf die Qualität der Beschichtung an. Eine Messung ihrer Dicke oder Gleichmäßigkeit ist – vor allem an kritischen Stellen – bei der Qualitätskontrolle unerlässlich. Systeme, die auf dem fotothermischen Messverfahren basieren, erschließen hier praxisgerechte Möglichkeiten ...<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_3b1c5507ac.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_3b1c5507ac.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_acd206bc52.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_acd206bc52.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_686a3695e1.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_686a3695e1.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_85baaf1ad9.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_85baaf1ad9.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/1\/5\/csm_pulverbeschichtung-aluminiumteile-enovasense_3b1c5507ac.jpg","alt":"Pulverbeschichtung von Aluminiumteilen","title":""}},"link":"https:\/\/magazine.polytec.com\/de\/inline-messsystem-fuer-pulverbeschichtungen","origUid":7248,"readingTime":"4 min","subline":"Kontaktlose Echtzeit-Messung senkt die Betriebskosten","tags":[{"title":"Materialforschung & -prüfung","uid":83},{"title":"Maschinenbau & Feinwerktechnik","uid":84},{"title":"Prozess- & Qualitätskontrolle","uid":15}],"technologies":[{"title":"Optische Systeme","uid":228}],"title":"Inline-Messsystem für Pulverbeschichtungen","uid":7248,"visits":1366},{"authors":[{"fullName":"Jochen Grimm","fullOfficialName":"Dipl.-Ing. (FH) Jochen Grimm"}],"description":"

3D-Scanner sind keine neue Technik – und dennoch faszinierend, da immer wieder neue interessante Anwendungsbereiche erschlossen werden. Die Vielfalt an Herstellern und Modellen für unterschiedliche Einsatzzwecke tragen dazu bei, vom Monochrom-Scanner für eine einfach Umriss-Erfassung bis zum High-End-Farbscanner für hochauflösende 3D-Modelle.<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_5c595827b9.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_5c595827b9.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_d7d98945cb.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_d7d98945cb.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_d7288569b0.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_d7288569b0.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_e91f88de93.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_e91f88de93.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/8\/e\/csm_3d-scanner-anwendungen_5c595827b9.jpg","alt":"Fußabdruck Tatort","title":""}},"link":"https:\/\/magazine.polytec.com\/de\/anwendungsbereiche-industrieller-3d-scanner","origUid":7065,"readingTime":"6 min","subline":"Von Täterspuren bis zur Roboter-Überwachung","tags":[{"title":"Prozess- & Qualitätskontrolle","uid":15},{"title":"Maschinenbau & Feinwerktechnik","uid":84},{"title":"Forschung & Entwicklung","uid":86},{"title":"Materialforschung & -prüfung","uid":83}],"technologies":[{"title":"Optische Systeme","uid":228}],"title":"Teil 2: Anwendungsbereiche industrieller 3D-Scanner","uid":7065,"visits":1515},{"authors":[{"fullName":"Jochen Grimm","fullOfficialName":"Dipl.-Ing. (FH) Jochen Grimm"}],"description":"

Im ersten Teil des Artikels haben wir Typisierung und technischen Grundlagen von 3D-Scannern beleuchtet. Hier erfahren Sie mehr über deren vielseitige Anwendungsbereiche und interessante Praxisbeispiele.<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/9\/csm_3d-scanner_5b7cd7ee39.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/9\/csm_3d-scanner_5b7cd7ee39.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/9\/csm_3d-scanner_5b7173c4b1.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/9\/csm_3d-scanner_5b7173c4b1.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/optical-systems\/image\/3d-scanner.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/optical-systems\/image\/3d-scanner.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/9\/csm_3d-scanner_4dbf8e19fe.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/9\/csm_3d-scanner_4dbf8e19fe.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/f\/9\/csm_3d-scanner_5b7cd7ee39.jpg","alt":"","title":""}},"link":"https:\/\/magazine.polytec.com\/de\/grundlagen-industrieller-3d-scanner","origUid":7078,"readingTime":"6 min","subline":"Von Handheld bis High-End","tags":[{"title":"Prozess- & Qualitätskontrolle","uid":15},{"title":"Maschinenbau & Feinwerktechnik","uid":84},{"title":"Forschung & Entwicklung","uid":86},{"title":"Materialforschung & -prüfung","uid":83}],"technologies":[{"title":"Optische Systeme","uid":228}],"title":"Teil 1: Grundlagen industrieller 3D-Scanner","uid":7078,"visits":1631},{"authors":[{"fullName":"Peter Schullerer","fullOfficialName":" Peter Schullerer"},{"fullName":"Ellen-Christine Reiff","fullOfficialName":"M.A. Ellen-Christine Reiff"}],"description":"

Bei vielen Produkten kommt es auf die Qualität der Beschichtung an, zum Beispiel auf die Materialdicke, die Farbe, den Glanz oder die Anhaftung einer oder mehrerer Schichten auf einem Untergrund. Wozu auch immer diese Beschichtungen dienen, eine Messung ihrer Dicke oder Gleichmäßigkeit ist – vor allem an kritischen Stellen – bei der Qualitätskontrolle unerlässlich.<\/p>","imageObject":{"variants":[{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/6\/9\/csm_schichtdickenbestimmung-eloxierbad_d160e6fbff.jpg.webp","type":"image\/webp","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/6\/9\/csm_schichtdickenbestimmung-eloxierbad_d160e6fbff.jpg","name":"default","width":"570","breakpoint":"1200"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/optical-systems\/image\/schichtdickenbestimmung-eloxierbad.jpg.webp","type":"image\/webp","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/magazine\/optical-systems\/image\/schichtdickenbestimmung-eloxierbad.jpg","name":"large","width":"900","breakpoint":"992"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/6\/9\/csm_schichtdickenbestimmung-eloxierbad_eff012f8e7.jpg.webp","type":"image\/webp","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/6\/9\/csm_schichtdickenbestimmung-eloxierbad_eff012f8e7.jpg","name":"medium","width":"1380","breakpoint":"768"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/6\/9\/csm_schichtdickenbestimmung-eloxierbad_1b5a9efe08.jpg.webp","type":"image\/webp","name":"extrasmall","width":"640","breakpoint":"320"},{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/6\/9\/csm_schichtdickenbestimmung-eloxierbad_1b5a9efe08.jpg","name":"extrasmall","width":"640","breakpoint":"320"}],"default":{"src":"https:\/\/magazine.polytec.com\/fileadmin\/_processed_\/6\/9\/csm_schichtdickenbestimmung-eloxierbad_d160e6fbff.jpg","alt":"Präzise Schichtdickenbestimmung für eloxierte Oberflächen","title":""}},"link":"https:\/\/magazine.polytec.com\/de\/praezise-schichtdickenbestimmung-ohne-referenzieren","origUid":6653,"readingTime":"5 min","subline":"Plug-and-Play-Messsystem für eloxierte Oberflächen","tags":[{"title":"Maschinenbau & Feinwerktechnik","uid":84},{"title":"Prozess- & Qualitätskontrolle","uid":15}],"technologies":[{"title":"Optische Systeme","uid":228}],"title":"Präzise Schichtdickenbestimmung ohne Referenzieren","uid":6653,"visits":757},{"authors":[{"fullName":"Özgür Tan","fullOfficialName":"Dr. Özgür Tan"}],"description":"

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