{"id":4250,"date":"2021-05-14T00:45:03","date_gmt":"2021-05-13T22:45:03","guid":{"rendered":"https:\/\/www.proof.de\/?p=4250"},"modified":"2025-10-22T15:37:17","modified_gmt":"2025-10-22T13:37:17","slug":"testa-sferica-dispositivi-di-misura-e-componenti-speculari-chiari","status":"publish","type":"post","link":"https:\/\/blog.proofs.de\/it\/kugelkopfmessgeraete-und-specular-component-erklaert\/","title":{"rendered":"Spiegazione dei misuratori di teste sferiche e della componente speculare"},"content":{"rendered":"<div class=\"kk-star-ratings kksr-auto kksr-align-right kksr-valign-top\" data-payload='{\"align\":\"right\",\"id\":\"4250\",\"slug\":\"default\",\"valign\":\"top\",\"ignore\":\"\",\"reference\":\"auto\",\"class\":\"\",\"count\":\"0\",\"legendonly\":\"\",\"readonly\":\"\",\"score\":\"0\",\"starsonly\":\"\",\"best\":\"5\",\"gap\":\"5\",\"greet\":\"Jetzt bewerten\",\"legend\":\"0\\\/5 - (0 votes)\",\"size\":\"24\",\"title\":\"Kugelkopf-Messger&auml;te und Specular Component erkl&auml;rt\",\"width\":\"0\",\"_legend\":\"{score}\\\/{best} - ({count} {votes})\",\"font_factor\":\"1.25\"}'>\n            \n<div class=\"kksr-stars\">\n    \n<div class=\"kksr-stars-inactive\">\n            <div class=\"kksr-star\" data-star=\"1\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" data-star=\"2\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" data-star=\"3\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" data-star=\"4\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" data-star=\"5\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n    <\/div>\n    \n<div class=\"kksr-stars-active\" style=\"width: 0px;\">\n            <div class=\"kksr-star\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n            <div class=\"kksr-star\" style=\"padding-right: 5px\">\n            \n\n<div class=\"kksr-icon\" style=\"width: 24px; height: 24px;\"><\/div>\n        <\/div>\n    <\/div>\n<\/div>\n                \n\n<div class=\"kksr-legend\" style=\"font-size: 19.2px;\">\n            <span class=\"kksr-muted\">Valuta ora<\/span>\n    <\/div>\n    <\/div>\n\n<p class=\"wp-block-paragraph\">Le diverse superfici possono influenzare sia il colore che l'aspetto degli oggetti. Un oggetto colorato e lucido di solito appare pi\u00f9 saturo all'occhio, mentre un oggetto simile con una superficie opaca e diffusa appare pi\u00f9 spento.<\/p>\n\n\n\n<p class=\"wp-block-paragraph translation-block\">Se si formano una superficie lucida, una semi-opaca e una opaca dalla stessa plastica nera, la superficie lucida appare spesso la pi\u00f9 nera, mentre la superficie molto opaca appare significativamente pi\u00f9 chiara. Lo stesso effetto si nota anche con la <a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/laminacion-de-peliculas\/\" target=\"_self\" class=\"encyclopedia tooltipstered\">plastificazione delle stampe: un blu scuro o un nero laminato lucido appare pi\u00f9 saturo e pi\u00f9 scuro, mentre un nero laminato opaco appare pi\u00f9 chiaro e pi\u00f9 grigio all'occhio umano a causa della rifrazione diffusa della luce.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Gli esseri umani percepiscono il colore degli oggetti attraverso la luce che viene riflessa da essi, e superfici diverse riflettono la luce in modo diverso. In generale, distinguiamo quindi due modi in cui la luce viene riflessa da un oggetto: <strong>La riflessione speculare e la riflessione diffusa<\/strong>.<\/p>\n\n\n\n<figure class=\"wp-block-image size-large\"><a href=\"http:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_licht_reflexion_spiegelnd_und_diffus_von_matten_und_glaenzenden_objekten.png\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"716\" src=\"http:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_licht_reflexion_spiegelnd_und_diffus_von_matten_und_glaenzenden_objekten-1024x716.png\" alt=\"Riflessione speculare e diffusa della luce da parte di oggetti opachi e lucidi\" class=\"wp-image-4257\" srcset=\"https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_licht_reflexion_spiegelnd_und_diffus_von_matten_und_glaenzenden_objekten-1024x716.png 1024w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_licht_reflexion_spiegelnd_und_diffus_von_matten_und_glaenzenden_objekten-300x210.png 300w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_licht_reflexion_spiegelnd_und_diffus_von_matten_und_glaenzenden_objekten-768x537.png 768w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_licht_reflexion_spiegelnd_und_diffus_von_matten_und_glaenzenden_objekten.png 1483w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\"><\/a><\/figure>\n\n\n\n<h2 class=\"wp-block-heading\"><a href=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_licht_reflexion_spiegelnd_und_diffus_von_matten_und_glaenzenden_objekten.png\"><\/a><\/h2>\n\n\n\n<h2 class=\"wp-block-heading\">Riflessione speculare<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">La riflessione speculare \u00e8 quando la luce viene riflessa dalla sorgente luminosa con un angolo uguale ma opposto. In parole povere, si pu\u00f2 pensare a una palla che rimbalza su un pavimento liscio e rimbalza indietro con lo stesso angolo. Questa riflessione si verifica principalmente sugli oggetti con superfici lucide e lisce.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Riflessione diffusa<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">Se invece la luce riflessa si disperde in numerose direzioni diverse, si parla di riflessione diffusa. Questa riflessione si verifica con oggetti che hanno una superficie opaca e irregolare. Una palla rimbalzerebbe su una superficie di questo tipo - ad esempio, un pavimento irregolare composto da numerose piramidi di dimensioni diverse - a volte con un angolo e a volte con un angolo completamente diverso.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Strumenti di misura a testa sferica con sfera integratrice<\/h2>\n\n\n\n<p class=\"wp-block-paragraph translation-block\">Oggi, quando il colore e <a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/lustre\/\" target=\"_self\" class=\"enciclopedia tooltipstered\">la lucentezza<\/a> devono essere valutati nelle catene di fornitura globali e su superfici diverse, questo viene spesso fatto utilizzando testine a sfera<a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/espettrofotometro-2\/\" target=\"_self\" class=\"enciclopedia tooltipstered\">spettrofotometri<\/a> come il <a href=\"https:\/\/www5.konicaminolta.eu\/de\/messgeraete\/produkte\/farbmessung\/spektralphotometer-portabel\/cm-26dg-series\/einfuehrung.html\" target=\"_blank\" rel=\"noopener\">KonicaMinolta CM-26d<\/a>, che utilizziamo nel <a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/prueba\/\" target=\"_self\" class=\"encyclopedia tooltipstered\">Proof<\/a> GmbH anche il colore semi-opaco e quello libero da opacit\u00e0 <a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/cielab\/\" target=\"_self\" class=\"enciclopedia tooltipstered\">CIELAB<\/a> <a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/hlc\/\" target=\"_self\" class=\"enciclopedia tooltipstered\">HLC<\/a> Colour Alas XL. Con la geometria della testa a sfera d:8 e il sensore di lucentezza integrato a 60\u00b0, che supporta sia la modalit\u00e0 di misurazione <a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/sci\/\" target=\"_self\" class=\"encyclopedia tooltipstered\">SCI<\/a> - \"Componente Speculare Inclusa\" che <a href=\"https:\/\/blog1.proofen.de\/es\/lexico-2\/sce\/\" target=\"_self\" class=\"encyclopedia tooltipstered\">SCE<\/a> - \"Componente Speculare Escluso\", questo dispositivo di misurazione pu\u00f2 misurare il colore e la brillantezza in meno di un secondo, senza dover utilizzare un dispositivo di misurazione aggiuntivo per la brillantezza e doverlo sempre impostare e allineare di nuovo.<\/p>\n\n\n<div class=\"wp-block-image\">\n<figure class=\"alignleft\"><a href=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung-scaled.jpg\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"683\" src=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung-1024x683.jpg\" alt=\"Proof.de: Spettrofotometro a testa sferica KonicaMinolta CM26d con misurazione SCI e SCE: Misurazione del colore libero CIELAB HLC Colour Atlas XL\" class=\"wp-image-4266\" srcset=\"https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung-1024x683.jpg 1024w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung-300x200.jpg 300w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung-768x512.jpg 768w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung-1536x1024.jpg 1536w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung-2048x1365.jpg 2048w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\"><\/a><\/figure>\n<\/div>\n\n<div class=\"wp-block-image\">\n<figure class=\"alignleft\"><a href=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-scaled.jpg\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"683\" src=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-1024x683.jpg\" alt=\"Proof.de: Spettrometro a testa sferica KonicaMinolta CM26d con misurazione SCI e SCE: indicazione sul display\" class=\"wp-image-4265\" srcset=\"https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-1024x683.jpg 1024w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-300x200.jpg 300w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-768x512.jpg 768w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-1536x1024.jpg 1536w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-2048x1365.jpg 2048w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\"><\/a><\/figure>\n<\/div>\n\n\n<p class=\"wp-block-paragraph\"><a href=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_display-scaled.jpg\">&nbsp;<\/a><\/p>\n\n\n<div class=\"wp-block-image\">\n<figure class=\"alignleft\"><a href=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_Durchsicht_in_die__Ulbrichtkugel-scaled.jpg\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"683\" src=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_Durchsicht_in_die__Ulbrichtkugel-1024x683.jpg\" alt=\"Proof.de: Spettrometro a testa sferica KonicaMinolta CM26d con misurazione SCI e SCE: con il CK-26d, \u00e8 possibile guardare direttamente nella sfera integrante attraverso un&#039;aletta retrattile, e quindi controllare visivamente la sezione di misurazione attraverso la sfera ancora una volta.\" class=\"wp-image-4270\" srcset=\"https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_Durchsicht_in_die__Ulbrichtkugel-1024x683.jpg 1024w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_Durchsicht_in_die__Ulbrichtkugel-300x200.jpg 300w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_Durchsicht_in_die__Ulbrichtkugel-768x512.jpg 768w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_Durchsicht_in_die__Ulbrichtkugel-1536x1024.jpg 1536w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_KonicaMinolta_CM-26d_Kugelkopf_Spektralmessgeraet_mit_SCI-und-SCE-Messung_Durchsicht_in_die__Ulbrichtkugel-2048x1365.jpg 2048w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\"><\/a><figcaption class=\"wp-element-caption\">Con KonicaMinolta CM-26d \u00e8 possibile guardare direttamente nella sfera integratrice attraverso uno sportello che pu\u00f2 essere spinto indietro; in questo modo la sezione di misurazione pu\u00f2 essere controllata visivamente ancora una volta attraverso la sfera e ricontrollata.<a href=\"https:\/\/blog.proofs.de\/it\/lexikon\/just\/\" target=\"_self\" title=\"Just Normlicht GmbH \u00e8 il produttore pi\u00f9 noto di soluzioni di illuminazione standard nel settore della stampa.\" class=\"encyclopedia\">solo<\/a>\u00e8 stato individuato.<\/figcaption><\/figure>\n<\/div>\n\n\n<p class=\"wp-block-paragraph\">Con gli strumenti di misurazione a sfera integrante, le superfici da misurare sono solitamente illuminate a tutti gli angoli e misurate con un angolo di 8 gradi rispetto all'asse verticale. Questa condizione di misurazione viene definita d\/8 o d:8. La maggior parte dei dispositivi di misurazione a sfera integrante, come il CM-26d, pu\u00f2 misurare con o senza componente di lucentezza, come descritto in precedenza.<br>Al contrario, i modelli 45\/0 utilizzati nell'industria della stampa, come X-Rite i1 Pro2, misurano sempre senza la riflessione speculare. Il riflesso della superficie del campione viene quindi percepito in modo diverso dalle geometrie ottiche d:8 con componente di lucentezza - SCI - , d:8 senza componente di lucentezza - SCE - e 45\/0 rispettivamente.<\/p>\n\n\n<div class=\"wp-block-image\">\n<figure class=\"alignleft\"><a href=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_Specular_Component_Kugelkopf-Messung.png\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"798\" src=\"https:\/\/blog1.proofen.de\/wp-content\/uploads\/2021\/04\/proof_de_Specular_Component_Kugelkopf-Messung-1024x798.png\" alt=\"Spiegazione della misurazione della componente speculare della testa a sfera SCI \/ SPIN e SCE \/ SPEX\" class=\"wp-image-4261\" srcset=\"https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_Specular_Component_Kugelkopf-Messung-1024x798.png 1024w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_Specular_Component_Kugelkopf-Messung-300x234.png 300w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_Specular_Component_Kugelkopf-Messung-768x599.png 768w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_Specular_Component_Kugelkopf-Messung-1536x1197.png 1536w, https:\/\/blog.proofs.de\/wp-content\/uploads\/2021\/04\/proof_de_Specular_Component_Kugelkopf-Messung.png 1595w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\"><\/a><\/figure>\n<\/div>\n\n\n<h2 class=\"wp-block-heading\">Modalit\u00e0 di misurazione SCI<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">Per misurare il vero colore di un oggetto senza l'influenza della finitura superficiale, si utilizza la modalit\u00e0 di misurazione Componente Speculare Inclusa (SCI). La modalit\u00e0 SCI include sia la luce riflessa speculare che quella diffusa ed \u00e8 ideale per il controllo qualit\u00e0 e il monitoraggio della qualit\u00e0 del colore.<\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Illumina il campione in modo uniforme da tutti i lati.<\/li>\n\n\n\n<li>Prende in considerazione la riflessione totale della superficie.<\/li>\n\n\n\n<li>Ha una buona ripetibilit\u00e0 ed \u00e8 insensibile alle variazioni di superficie o agli artefatti.<\/li>\n\n\n\n<li>Non percepisce le differenze di lucentezza del campione e quindi non simula la valutazione visiva.<\/li>\n<\/ul>\n\n\n\n<h2 class=\"wp-block-heading\">Modalit\u00e0 di misurazione SCE<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">La modalit\u00e0 di misurazione Componente Speculare Esclusa (SCE), invece, che esclude la luce riflessa specularmente, viene utilizzata per valutare il colore di un oggetto in modo che corrisponda alla percezione visiva dell'occhio umano. In modalit\u00e0 SCE, una superficie lucida viene misurata in genere pi\u00f9 scura di una superficie opaca dello stesso colore; simile a come la vede l'occhio umano. Questa modalit\u00e0 \u00e8 tipicamente utilizzata nelle ispezioni di controllo qualit\u00e0 per garantire che il colore corrisponda agli standard cromatici attraverso l'ispezione visiva.<\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Illumina il campione in modo uniforme da tutti i lati, ma non nell'angolo di riflessione della misurazione.<\/li>\n\n\n\n<li>Esclude la riflessione speculare della superficie, anche se di solito non completamente.<\/li>\n\n\n\n<li>Include la riflessione diffusa della superficie.<\/li>\n\n\n\n<li>E' piuttosto sensibile alla variabilit\u00e0 e all'irregolarit\u00e0 della superficie.<\/li>\n\n\n\n<li>Misura il colore di una superficie in modo simile a come lo vede l'occhio umano.<\/li>\n<\/ul>","protected":false},"excerpt":{"rendered":"<p>Le diverse superfici possono influenzare sia il colore che l'aspetto degli oggetti. Un oggetto colorato e lucido di solito appare pi\u00f9 saturo all'occhio, mentre un oggetto simile con una superficie opaca e diffusa appare pi\u00f9 spento. Se si stampano una superficie lucida, una semi-opaca e una opaca dalla stessa plastica nera, la superficie lucida apparir\u00e0 spesso la pi\u00f9 nera, mentre la superficie molto opaca apparir\u00e0 molto pi\u00f9 chiara. Lo stesso effetto si nota anche nella laminazione delle stampe: un blu scuro o un nero laminati lucidi appaiono pi\u00f9 saturi e scuri, un blu opaco laminato... <\/p>\n<p class=\"read-more-container\"><a title=\"Spiegazione dei misuratori di teste sferiche e della componente speculare\" class=\"read-more button\" href=\"https:\/\/blog.proofs.de\/it\/kugelkopfmessgeraete-und-specular-component-erklaert\/#more-4250\" aria-label=\"Per saperne di pi\u00f9 su Metri con testa a sfera e componente speculare spiegata\">Leggi di pi\u00f9<\/a><\/p>","protected":false},"author":2,"featured_media":4261,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"om_disable_all_campaigns":false,"inline_featured_image":false,"_monsterinsights_skip_tracking":false,"footnotes":""},"categories":[1,25,437,7],"tags":[1241,1246,1244,1250,1229,1240,1220,1247,1245,1228,1227,1243,1242,1225,1226],"class_list":["post-4250","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-allgemein","category-licht-und-normlicht","category-proof-software-und-technik","category-proof-wissen","tag-cm-26d","tag-diffuse-reflexion","tag-glaenzendes-objekt","tag-glanzkomponente","tag-konicaminolta","tag-kugelkopf","tag-kugelkopfmessgeraet","tag-matte-reflexion","tag-reflexion","tag-sce","tag-sci","tag-specular-component-excluded","tag-specular-component-included","tag-spex","tag-spin","generate-columns","tablet-grid-50","mobile-grid-100","grid-parent","grid-50","no-featured-image-padding","resize-featured-image"],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 5.0.1.1 - aioseo.com -->\n\t<meta name=\"description\" content=\"Die Kugelkopf-Messtechnologie und die Unterschiede von SCI \/ SPIN bzw. 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