{"id":599,"date":"2018-10-17T00:13:07","date_gmt":"2018-10-16T16:13:07","guid":{"rendered":"https:\/\/plasticmoldco.com\/?p=599"},"modified":"2018-10-17T00:13:07","modified_gmt":"2018-10-16T16:13:07","slug":"chapter-25-3-residual-stress-china-injection-mold","status":"publish","type":"post","link":"https:\/\/www.plasticmoldco.com\/nl\/2018\/10\/17\/hoofdstuk-25-3-restspanning-china-spuitgiet\/","title":{"rendered":"Hoofdstuk 25-3, Residuele spanning, porseleinen spuitgietmatrijs"},"content":{"rendered":"<div id=\"titlep\">\n<div>\n<div>Hoofdstuk 25-3, Residuele spanning, porseleinen spuitgietmatrijs<br \/>\n<a href=\"https:\/\/web.archive.org\/web\/20130131102856\/http:\/\/www.moldchina.org\/\">Home<\/a>\u00a0\"\u00a0<a title=\"Bekijk alle berichten in Blog Matrijstechnologie\" href=\"https:\/\/web.archive.org\/web\/20130131102856\/http:\/\/www.moldchina.org\/mold-news\/mould-china-blog\" rel=\"category tag\">Blog over matrijstechnologie<\/a>\u00a0\"\u00a0<a title=\"Bekijk alle berichten in Nieuwscentrum\" href=\"https:\/\/web.archive.org\/web\/20130131102856\/http:\/\/www.moldchina.org\/mold-news\" rel=\"category tag\">Nieuwscentrum<\/a>\u00a0\" Hoofdstuk 25-3, Residuele spanning, porseleinen spuitgietmatrijs<\/div>\n<\/div>\n<\/div>\n<div id=\"mge\"><\/div>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-full wp-image-1332\" title=\"Differenti\u00eble krimp\" src=\"https:\/\/web.archive.org\/web\/20130131102856im_\/http:\/\/www.moldchina.org\/wp-content\/uploads\/2011\/10\/Differential-shrinkage.gif\" alt=\"\" width=\"569\" height=\"209\" \/><\/p>\n<h3>FIGUUR 5. Er ontstaan variabele restspanningen en het onderdeel vervormt als lagen met een verschillend bevroren specifiek volume op elkaar inwerken.<\/h3>\n<h2>Procesge\u00efnduceerde vs. in-cavity restspanning<\/h2>\n<p>Procesge\u00efnduceerde restspanningsgegevens zijn veel nuttiger dan in-cavity restspanningsgegevens voor simulatie van vormen. Hieronder volgen definities van de twee termen, samen met een voorbeeld dat het verschil tussen beide illustreert.<\/p>\n<h3>Procesge\u00efnduceerde restspanning<\/h3>\n<p>Na het uitwerpen van het onderdeel worden de beperkingen van de matrijsholte losgelaten en kan het onderdeel krimpen en vervormen. Nadat het zich in een evenwichtstoestand bevindt, wordt de overblijvende spanning in het onderdeel procesge\u00efnduceerde restspanning of eenvoudig restspanning genoemd. Procesge\u00efnduceerde restspanning kan stromingsge\u00efnduceerd of thermisch ge\u00efnduceerd zijn, waarbij de laatste de dominante component is.<\/p>\n<h3>Restspanning in de holte<\/h3>\n<p>Terwijl het onderdeel nog in de matrijsholte zit, wordt de interne spanning die tijdens het stollen ontstaat, restspanning in de matrijs genoemd. Deze restspanning in de matrijs is de kracht die de krimp en vervorming van het werkstuk na de uitwerping veroorzaakt.<\/p>\n<h3>Voorbeeld<\/h3>\n<p>De krimpverdeling beschreven in Vervorming door differenti\u00eble krimp leidt tot een thermisch ge\u00efnduceerd restspanningsprofiel voor een uitgeworpen onderdeel, zoals weergegeven in de figuur linksonder. Het spanningsprofiel in de figuur linksboven is de in-cavity restspanning, waarbij het spuitgietproduct v\u00f3\u00f3r het uitwerpen beperkt blijft in de matrijs. Zodra het onderdeel wordt uitgeworpen en de beperkte kracht van de mal wordt losgelaten, zal het onderdeel krimpen en vervormen om de ingebouwde restspanning (meestal trekspanning, zoals afgebeeld) los te laten en een evenwichtstoestand te bereiken. De evenwichtstoestand betekent dat er geen externe kracht op het onderdeel wordt uitgeoefend en dat de trek- en drukspanningen over de doorsnede van het onderdeel met elkaar in evenwicht zijn. De figuren aan de rechterkant komen overeen met het geval met een niet-uniforme afkoeling over de dikte van het onderdeel, waardoor een asymmetrische verdeling van de restspanning ontstaat.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-full wp-image-1333\" title=\"In-cavity restspanningsprofiel (boven) vs. procesge\u00efnduceerd restspanningsprofiel en deelvorm na uitwerpen (onder).\" src=\"https:\/\/web.archive.org\/web\/20130131102856im_\/http:\/\/www.moldchina.org\/wp-content\/uploads\/2011\/10\/In-cavity-residual-stress-p.gif\" alt=\"In-cavity restspanningsprofiel (boven) vs. procesge\u00efnduceerd restspanningsprofiel en deelvorm na uitwerpen (onder).\" width=\"662\" height=\"512\" \/><\/p>\n<p>FIGUUR 6. In-cavity restspanningsprofiel (boven) vs. procesge\u00efnduceerd restspanningsprofiel en deelvorm na uitwerpen (onder).<\/p>\n<h2>Thermisch ge\u00efnduceerde restspanning verminderen<\/h2>\n<p>Omstandigheden die leiden tot voldoende pakking en meer uniforme matrijswand temperaturen zullen de thermisch ge\u00efnduceerde restspanningen verminderen. Deze omvatten:<br \/>\n- Juiste verpakkingsdruk en -duur<br \/>\n- Gelijkmatige koeling van alle oppervlakken van het onderdeel<br \/>\n- Uniforme wanddikte<\/p>","protected":false},"excerpt":{"rendered":"<p>Chapter 25-3, Residual stress, china injection mold Home\u00a0\u00bb\u00a0Mould Technology Blog\u00a0\u00bb\u00a0News Center\u00a0\u00bb Chapter 25-3, Residual stress, china injection mold FIGURE 5.\u00a0Variable residual stresses arise and the part deforms as layers of different frozen-in specific volume interact with each other Process-induced vs. in-cavity residual stress Process-induced residual stress data are much more useful than in-cavity residual stress [&hellip;]<\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_et_pb_use_builder":"","_et_pb_old_content":"","_et_gb_content_width":"","footnotes":""},"categories":[15],"tags":[],"class_list":["post-599","post","type-post","status-publish","format-standard","hentry","category-mould-technology-blog-1"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Chapter 25-3, Residual stress, china injection mold - Plastic Mold | China Mold Maker<\/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:\/\/www.plasticmoldco.com\/nl\/2018\/10\/17\/\u03ba\u03b5\u03c6\u03ac\u03bb\u03b1\u03b9\u03bf-25-3-\u03c5\u03c0\u03bf\u03bb\u03b5\u03b9\u03bc\u03bc\u03b1\u03c4\u03b9\u03ba\u03ad\u03c2-\u03c4\u03ac\u03c3\u03b5\u03b9\u03c2-\u03c3\u03b5-\u03ba\/\" \/>\n<meta property=\"og:locale\" content=\"nl_NL\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Chapter 25-3, Residual stress, china injection mold - Plastic Mold | China Mold Maker\" \/>\n<meta property=\"og:description\" content=\"Chapter 25-3, Residual stress, china injection mold Home\u00a0\u00bb\u00a0Mould Technology Blog\u00a0\u00bb\u00a0News Center\u00a0\u00bb Chapter 25-3, Residual stress, china injection mold FIGURE 5.\u00a0Variable residual stresses arise and the part deforms as layers of different frozen-in specific volume interact with each other Process-induced vs. in-cavity residual stress Process-induced residual stress data are much more useful than in-cavity 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