{"id":600,"date":"2018-10-17T00:14:39","date_gmt":"2018-10-16T16:14:39","guid":{"rendered":"https:\/\/plasticmoldco.com\/?p=600"},"modified":"2018-10-17T00:14:39","modified_gmt":"2018-10-16T16:14:39","slug":"chapter-25-2-residual-stress-china-injection-mold","status":"publish","type":"post","link":"https:\/\/www.plasticmoldco.com\/it\/2018\/10\/17\/capitolo-25-2-sollecitazione-residua-china-stampo-a-iniezione\/","title":{"rendered":"Capitolo 25-2, Sollecitazione residua, stampo ad iniezione in porcellana"},"content":{"rendered":"<h1>Raffreddamento sbilanciato<\/h1>\n<p>dalla parete dello stampo al suo centro pu\u00f2 causare tensioni residue indotte dalla temperatura. Inoltre, le tensioni residue asimmetriche indotte dalla temperatura possono verificarsi se la velocit\u00e0 di raffreddamento delle due superfici \u00e8 sbilanciata. Questo sbilanciamento del raffreddamento determina un andamento asimmetrico di tensione-compressione sul pezzo, causando un momento flettente che tende a provocare la deformazione del pezzo. Questo fenomeno \u00e8 illustrato nella Figura 3. Di conseguenza, i pezzi con spessore non uniforme o con aree poco raffreddate sono soggetti a un raffreddamento sbilanciato e quindi a tensioni termiche residue. Per i pezzi moderatamente complessi, la distribuzione delle tensioni residue indotte dalla temperatura \u00e8 ulteriormente complicata dallo spessore non uniforme delle pareti, dal raffreddamento dello stampo e dai vincoli dello stampo alla libera contrazione.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-full wp-image-1328\" title=\"Raffreddamento non bilanciato\" src=\"https:\/\/web.archive.org\/web\/20130131102852im_\/http:\/\/www.moldchina.org\/wp-content\/uploads\/2011\/10\/Unbalanced-cooling.gif\" alt=\"\" width=\"584\" height=\"287\" \/><\/p>\n<h3>FIGURA 3. Le tensioni residue asimmetriche indotte dalla temperatura, causate da un raffreddamento sbilanciato sullo spessore del pezzo stampato, provocano una deformazione del pezzo.<\/h3>\n<h2>Densit\u00e0 di congelamento variabile<\/h2>\n<p>La figura seguente illustra la variazione della densit\u00e0 di congelamento causata dalla storia della pressione di riempimento.<\/p>\n<h3>Profilo di temperatura<\/h3>\n<p>La figura di sinistra mostra il profilo di temperatura in un punto del pezzo. A scopo illustrativo, il pezzo \u00e8 suddiviso in otto strati uguali lungo lo spessore del pezzo. Il profilo mostra la temperatura all'istante di solidificazione (freeze-off) per ogni strato (da t1 a t8). Si noti che il materiale inizia a solidificare dagli strati esterni e l'interfaccia congelata si sposta verso l'interno con il passare del tempo.<\/p>\n<h3>Traccia della pressione<\/h3>\n<p>La figura centrale traccia una tipica storia di pressione, mostrando i livelli di pressione (da P1 a P8) mentre ogni strato si solidifica. In generale, la pressione aumenta gradualmente durante il riempimento, raggiungendo il massimo nella fase iniziale dell'impaccamento, per poi iniziare a diminuire a causa del raffreddamento e del congelamento del gate. Di conseguenza, il materiale negli strati esterni e centrali si solidifica quando il livello di pressione \u00e8 basso, mentre gli strati intermedi congelano in presenza di un'elevata pressione di impaccamento.<\/p>\n<h3>Volume specifico congelato<\/h3>\n<p>La figura di destra mostra la traccia del volume specifico per lo strato 5 su un grafico pvT e i volumi specifici finali congelati per tutti gli strati, contrassegnati dai cerchi pieni numerati.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-full wp-image-1329\" title=\"Congelato in un volume specifico\" src=\"https:\/\/web.archive.org\/web\/20130131102852im_\/http:\/\/www.moldchina.org\/wp-content\/uploads\/2011\/10\/Frozen-in-specific-volume.gif\" alt=\"\" width=\"680\" height=\"251\" \/><\/p>\n<h3>FIGURA 4. Fattori che influenzano lo sviluppo del volume specifico \"congelato\".<br \/>\nRestringimento differenziale<\/h3>\n<p>Dati i volumi specifici congelati, i vari strati si restringeranno in modo diverso, secondo le curve pvT che regolano il comportamento di contrazione del materiale. Ipoteticamente, se ogni strato fosse staccato dagli altri (come mostrato nella Figura 5), gli elementi del materiale nella figura a sinistra in basso si sarebbero ritirati come quelli nella figura centrale. In questo caso, gli strati intermedi tendono a ridursi meno degli altri a causa del minore volume specifico congelato (o, equivalentemente, della maggiore densit\u00e0 congelata). In realt\u00e0, tutti gli strati sono legati tra loro. Pertanto, il risultato finale sar\u00e0 una distribuzione del ritiro compromessa, con gli strati intermedi compressi e quelli esterni e centrali allungati.<\/p>","protected":false},"excerpt":{"rendered":"<p>Un raffreddamento sbilanciato dalla parete dello stampo verso il centro pu\u00f2 causare tensioni residue indotte dalla temperatura. Inoltre, se la velocit\u00e0 di raffreddamento delle due superfici \u00e8 sbilanciata, possono verificarsi tensioni residue asimmetriche indotte dalla temperatura. Un raffreddamento cos\u00ec sbilanciato determina un andamento asimmetrico di tensione-compressione sul pezzo, causando un momento flettente che tende a provocare la deformazione del pezzo. Questo [...]<\/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-600","post","type-post","status-publish","format-standard","hentry","category-mould-technology-blog-1"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.4 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Chapter 25-2, 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\/it\/2018\/10\/17\/25-2-fejezet-marado-feszultseg-porcelan-froccsontoforma\/\" \/>\n<meta property=\"og:locale\" content=\"it_IT\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Chapter 25-2, Residual stress, china injection mold - Plastic Mold | China Mold Maker\" \/>\n<meta property=\"og:description\" content=\"Unbalanced cooling from the mold wall to its center can cause thermal-induced residual stress. Furthermore, asymmetrical thermal-induced residual stress can occur if the cooling rate of the two surfaces is unbalanced. Such unbalanced cooling will result in an asymmetric tension-compression pattern across the part, causing a bending moment that tends to cause part warpage. 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