{"id":3817,"date":"2023-07-07T15:15:48","date_gmt":"2023-07-07T14:15:48","guid":{"rendered":"https:\/\/dptlab.com\/?p=3817"},"modified":"2025-01-23T12:51:03","modified_gmt":"2025-01-23T11:51:03","slug":"focus-on-hq-reverse-engineering","status":"publish","type":"post","link":"https:\/\/dptlab.com\/it\/focus-on-hq-reverse-engineering\/","title":{"rendered":"Focus On: High Quality Reverse Engineering"},"content":{"rendered":"<h4><em>In questo articolo descriveremo il processo di High Quality Reverse Engineering nell&#8217;ambiente multi-geometrico di ThinkDesign. Partendo da una mesh scansionata in 3D di un oggetto fisico, evidenzieremo i comandi e le funzioni utilizzate per ricostruire il modello in termini di superfici NURBS.<\/em><\/h4>\n<p>&nbsp;<\/p>\n<p>Nel <a href=\"https:\/\/dptlab.com\/it\/focus-on-meshes-in-design-and-prototyping-processes\" target=\"_blank\" rel=\"noopener\">precedente articolo<\/a> su questo argomento, abbiamo presentato l&#8217;uso delle mesh nel processo di Reverse Engineering.<br \/>\nAbbiamo descritto come il formato Mesh sia entrato nel ciclo di sviluppo del prodotto grazie ai progressi della tecnologia di scansione 3D e come venga utilizzato in un ampio insieme di attivit\u00e0 che interagiscono con i processi di progettazione, controllo qualit\u00e0 e produzione.<br \/>\nAbbiamo anche evidenziato come l&#8217;ambiente multi-geometrico di ThinkDesign offra un&#8217;ampia gamma di strumenti per correggere, riparare e manipolare direttamente la geometria della mesh al fine di garantirne l&#8217;accuratezza e l&#8217;usabilit\u00e0 in preparazione alla modellazione delle superfici.<\/p>\n<p>Nell&#8217;esempio seguente, prima di iniziare l&#8217;attivit\u00e0 di ricostruzione delle superfici, ci concentreremo sull&#8217;oggetto mesh 3D per correggerne alcune imprecisioni, che possono essere dovute alla scansione stessa o a difetti effettivamente presenti sulla parte scansionata.<\/p>\n<p>Nella seguente immagine troviamo una mesh che rappresenta un prototipo di drone, importato nell&#8217;ambiente 3D da un file STL come mesh triangolare.<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/1_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/1_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"1_ReverseEngineering\" title=\"\" width=\"700\" height=\"421\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/1_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>Ogni guscio della mesh \u00e8 separato dall&#8217;intera struttura per consentire un maggiore focus sui singoli componenti che costituiscono l&#8217;oggetto. Le parti centrali che rappresentano la fusoliera sono divise lungo il piano di simmetria (comandi <b>Separa mesh<\/b> e <b>Dividi mesh con piano<\/b>).<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/2_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/2_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"2_ReverseEngineering\" title=\"\" width=\"700\" height=\"416\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/2_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/3_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/3_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"3_ReverseEngineering\" title=\"\" width=\"700\" height=\"418\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/3_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>I problemi comuni a ciascuna mesh vengono quindi riparati: fessure, buchi, auto-intersecazioni e geometrie <i>non-manifold<\/i> vengono rilevati e corretti automaticamente con l&#8217;aiuto degli strumenti di qualit\u00e0 della mesh (comandi <b>Correggi mesh<\/b>, <b>Riempi buchi<\/b>, <b>Rimuovi Sfaccettature errate<\/b> e <b>Cuci mesh<\/b>).<br \/>\nPrima che sia adatta ad ulteriori lavorazioni, la mesh deve essere rifinita per semplificarne la struttura e renderne la superficie pi\u00f9 liscia (comandi <b>Raffina mesh<\/b> e <b>Liscia mesh<\/b>).<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/4_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/4_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"4_ReverseEngineering\" title=\"\" width=\"700\" height=\"418\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/4_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/5_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/5_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"5_ReverseEngineering\" title=\"\" width=\"700\" height=\"417\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/5_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>Curve di sezione e Linee di carattere vengono estratte sulla mesh per determinare la topologia di base del modello (comando <b>Curva di sezione<\/b>, <b>Linee di carattere mesh<\/b> e <b>Curva sulla forma per punti di interpolazione<\/b>).<br \/>\nTenendo conto che l&#8217;entit\u00e0 mesh, per quanto accurata, rappresenta in realt\u00e0 un&#8217;approssimazione in termini di triangoli planari, le curve generate potrebbero dover essere riadattate per mantenere la forma desiderata ed evitare spigoli vivi (comando <b>Approssima curva<\/b>).<br \/>\nI controlli di qualit\u00e0 sulle curve risultanti aiutano sicuramente a garantire la base per la generazione di superfici di alta qualit\u00e0 (comando <b>Curvatura<\/b>).<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/6_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/6_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"6_ReverseEngineering\" title=\"\" width=\"700\" height=\"417\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/6_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/7_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/7_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"7_ReverseEngineering\" title=\"\" width=\"700\" height=\"416\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/7_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>La ricostruzione delle superfici viene effettuata con funzioni di modellazione avanzata delle superfici, che garantiscono la massima libert\u00e0 e la copertura completa delle forme geometriche.<br \/>\nLe superfici loft vengono generate rapidamente con un processo semiautomatico che mira a scegliere i tipi pi\u00f9 adatti tra superfici rigate, tese, proporzionali, a griglia o di collegamento (comando <b>Superfici loft<\/b>).<\/p>\n<p>I controlli di analisi possono essere eseguiti durante la generazione della superficie e forniscono un rapido feedback sulla qualit\u00e0 del tipo di superficie scelto (comando <b>Analisi zebra<\/b>).<\/p>\n<p>La distanza tra l&#8217;oggetto mesh e la superficie generata pu\u00f2 essere calcolata per fornire maggiori informazioni su eventuali errori (comando <b>Mappa distanza due entit\u00e0<\/b>).<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/8_ReverseEngineering.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/8_ReverseEngineering.jpg\" fetchpriority=\"high\" alt=\"8_ReverseEngineering\" title=\"\" width=\"700\" height=\"418\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/8_ReverseEngineering.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/9_ReverseEngineering-2.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/9_ReverseEngineering-2.jpg\" fetchpriority=\"high\" alt=\"9_ReverseEngineering\" title=\"\" width=\"700\" height=\"417\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/9_ReverseEngineering-2.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>Le superfici di collegamento vengono inserite per collegare i bordi della superficie delle ali con la punta e la fusoliera (comando Collega superfici avanzato). Le superfici risultanti sono generate controllando la lisciatura e facendo corrispondere le condizioni di continuit\u00e0 richieste lungo i contorni.<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/10_ReverseEngineering-2.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/10_ReverseEngineering-2.jpg\" fetchpriority=\"high\" alt=\"10_ReverseEngineering\" title=\"\" width=\"700\" height=\"447\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/10_ReverseEngineering-2.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/11_ReverseEngineering-2.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/11_ReverseEngineering-2.jpg\" fetchpriority=\"high\" alt=\"11_ReverseEngineering\" title=\"\" width=\"700\" height=\"417\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/11_ReverseEngineering-2.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>\u00c8 possibile generare superfici di copertura (<i>capping<\/i>) di alta qualit\u00e0 fornendo i dati della mesh come vincolo di riferimento per la forma della superficie risultante (comando <b>Super Capping<\/b>).<br \/>\nDurante la generazione della superficie, viene data la massima priorit\u00e0 all&#8217;ottenimento di superfici di classe A, che preservano le condizioni dei dati di input e allo stesso tempo soddisfano il pi\u00f9 possibile i vincoli.<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/12_ReverseEngineering-2.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/12_ReverseEngineering-2.jpg\" fetchpriority=\"high\" alt=\"12_ReverseEngineering\" title=\"\" width=\"700\" height=\"417\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/12_ReverseEngineering-2.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>La ricostruzione dell&#8217;oggetto in termini di superfici NURBS fornisce un punto di partenza per perfezionare e ottimizzare il modello, migliorandone le prestazioni e la realizzabilit\u00e0.<br \/>\nUlteriori modifiche e miglioramenti sono possibili in qualsiasi momento del processo mediante operazioni e lavorazioni di modellazione solida e modifiche associative delle superfici.<\/p>\n<div class=\"image_frame image_item scale-with-grid element_classes aligncenter no_border mfn-img-box\"  role=\"link\" aria-label=\"Image with links\" tabindex=\"0\"><div class=\"image_wrapper\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/13_ReverseEngineering-2.jpg\" rel=\"prettyphoto\"   class=\"\"  tabindex=\"-1\" title=\"\"><div class=\"mask\"><\/div><img decoding=\"async\" class=\"scale-with-grid\" src=\"https:\/\/dptlab.com\/wp-content\/uploads\/13_ReverseEngineering-2.jpg\" fetchpriority=\"high\" alt=\"13_ReverseEngineering\" title=\"\" width=\"700\" height=\"430\" style=\"\"\/><\/a><div class=\"image_links\"><a href=\"https:\/\/dptlab.com\/wp-content\/uploads\/13_ReverseEngineering-2.jpg\" class=\"zoom\" rel=\"prettyphoto\" tabindex=\"-1\" aria-label=\"zoom image\" title=\"\"><svg viewBox=\"0 0 26 26\"><defs><style>.path{fill:none;stroke:#333;stroke-miterlimit:10;stroke-width:1.5px;}<\/style><\/defs><circle cx=\"11.35\" cy=\"11.35\" r=\"6\" class=\"path\"\/><line x1=\"15.59\" y1=\"15.59\" x2=\"20.65\" y2=\"20.65\" class=\"path\"\/><\/svg><\/a><\/div><\/div><\/div>\n\n<p>Grazie a ThinkDesign siamo stati in grado di eseguire l&#8217;intero processo di High Quality Reverse Engineering, dall&#8217;acquisizione dei dati alla ricostruzione delle superfici, tutto nello stesso ambiente 3D.<\/p>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>In questo articolo descriveremo il processo di High Quality Reverse Engineering nell&#8217;ambiente multi-geometrico di ThinkDesign. Partendo da una mesh scansionata in 3D di un oggetto fisico, evidenzieremo i comandi e<span class=\"excerpt-hellip\"> [\u2026]<\/span><\/p>\n","protected":false},"author":1,"featured_media":3958,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[24,26],"tags":[70],"class_list":["post-3817","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-approfondimenti","category-focus-on-it","tag-reverse-engineering-it"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>High Quality Reverse Engineering | Focus On | DPT<\/title>\n<meta name=\"description\" content=\"In questo articolo descriveremo il processo di High Quality Reverse Engineering nell&#039;ambiente multi-geometrico di ThinkDesign.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, 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