{"id":51374,"date":"2023-09-01T10:38:46","date_gmt":"2023-09-01T17:38:46","guid":{"rendered":"https:\/\/silvaco.com\/%e6%9c%aa%e5%88%86%e7%b1%bb\/simulation-standard-numerical-algorithm-to-perform-viscoelastic-analysis\/"},"modified":"2023-09-12T13:37:24","modified_gmt":"2023-09-12T20:37:24","slug":"simulation-standard-numerical-algorithm-to-perform-viscoelastic-analysis","status":"publish","type":"post","link":"https:\/\/silvaco.com\/zh-hans\/simulation-standard\/numerical-algorithm-to-perform-viscoelastic-analysis\/","title":{"rendered":"Numerical Algorithm to Perform Viscoelastic Analysis"},"content":{"rendered":"<div id='template_overview'  class='avia-section main_color avia-section-small avia-no-border-styling  avia-bg-style-scroll  avia-builder-el-0  avia-builder-el-no-sibling   container_wrap fullsize' style='background-color: #ffffff;  margin-top:0px; margin-bottom:0px; '  ><div class='container' ><main  role=\"main\" itemprop=\"mainContentOfPage\"  class='template-page content  av-content-full alpha units'><div class='post-entry post-entry-type-page post-entry-51374'><div class='entry-content-wrapper clearfix'>\n<div class='flex_column_table av-equal-height-column-flextable -flextable' style='margin-top:20px; margin-bottom:0px; '><div class=\"flex_column av_three_fourth  flex_column_table_cell av-equal-height-column av-align-top first  avia-builder-el-1  el_before_av_one_fourth  avia-builder-el-first  \" style='padding:0px 0px 0px 0px ; border-radius:0px; '><section class=\"av_textblock_section \"  itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/BlogPosting\" itemprop=\"blogPost\" ><div class='avia_textblock  '   itemprop=\"text\" ><h1>Numerical Algorithm to Perform Viscoelastic Analysis<\/h1>\n<h3>Introduction<\/h3>\n<p><img loading=\"lazy\" decoding=\"async\" class=\" wp-image-51148 alignright\" src=\"https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-300x298.jpg\" alt=\"\" width=\"179\" height=\"178\" srcset=\"https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-300x298.jpg 300w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-80x80.jpg 80w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-768x762.jpg 768w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-36x36.jpg 36w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-180x180.jpg 180w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-705x699.jpg 705w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-37x37.jpg 37w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-55x55.jpg 55w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image-48x48.jpg 48w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/aug2023_feature-image.jpg 965w\" sizes=\"(max-width: 179px) 100vw, 179px\" \/>Viscous materials exhibit both viscous and elastic characteristics when undergoing deformation. The response of such materials to force is characterized by two distinct phases. The materials first deform instantaneously akin to elastic materials. Following on, the material continues to deform at a relatively slower time scale. Typically, materials undergoing thermal treatment exhibit viscoelastic properties.<\/p>\n<p>There is a large body of work present in literature regarding the modelling of viscoelastic materials. Starting from the pioneering work of (Green &amp; Tobolsky, 1946), there have been many attempts to accurately model viscoelasticity (see (Christensen, 2012) for a review). As the response of viscoelastic material is dependent upon the complete history of the applied loading, the numerical solution of these models poses challenges to the numerical schemes. Central to any scheme solving viscoelasticity is the evaluation of the heredity integral (discussed in more detail below). A review of proposed methods to evaluate this integral can be seen in (Sorvari &amp; Jari, 2010).<\/p>\n<p>In Victory Process, we utilize the formulation proposed by (Kaliske &amp; Rothert, 1997) to present a numerical algorithm to solve linear viscoelasticity. This is a relatively simple-to-implement algorithm which can utilize an off the shelf linear finite element solver to solve linear viscoelasticity. There is no need to change the system of equations, which can make the problem stiffer and may require specialized solvers. We use this algorithm to solve the standard linear solid model (discussed in more detail below), but it can be used to solve the Generalized Maxwell model.<br \/>\nIn the next section, we first present the model that is solved by the algorithm. The focus of the solver is to simulate the behavior of materials used in semiconductor devices, typically at high temperatures. We present a mathematical model that is suitable for describing the viscoelastic behavior of these materials. The numerical scheme to solve the model is stated next. Next to that, we give the algorithm to evaluate the solution based on that numerical scheme. To demonstrate the capability and accuracy of the scheme, various test cases are presented. First, we test the scheme against benchmark creep and stress relaxation cases, for which analytical solutions are available. A test case involving the thermal treatment of a material at varying initial stresses and treatment time is presented next. Finally, we simulate a technique to introduce stress in Silicon on oxide (SOI), which involves stress transfer between material layers at high temperatures.<\/p>\n<\/div><\/section><\/div><div class='av-flex-placeholder'><\/div><div class=\"flex_column av_one_fourth  flex_column_table_cell av-equal-height-column av-align-top av-zero-column-padding   avia-builder-el-3  el_after_av_three_fourth  avia-builder-el-last  \" style='border-radius:0px; ' id=\"whitepaper\" ><p><div  class='avia-builder-widget-area clearfix  avia-builder-el-4  el_before_av_image  avia-builder-el-first '><div id=\"nav_menu-29\" class=\"widget clearfix widget_nav_menu\"><div class=\"menu-simulation-standard-side-menu-chinese-simplified-container\"><ul id=\"menu-simulation-standard-side-menu-chinese-simplified\" class=\"menu\"><li id=\"menu-item-35571\" class=\"menu-item menu-item-type-post_type menu-item-object-page menu-item-35571\"><a href=\"https:\/\/silvaco.com\/zh-hans\/technical-library\/simulation-standard\/\">Simulation Standard<\/a><\/li>\n<\/ul><\/div><\/div><\/div><br \/>\n<div  class='avia-image-container  av-styling-    avia-builder-el-5  el_after_av_sidebar  el_before_av_button  avia-align-center '  itemprop=\"image\" itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/ImageObject\"  ><div class='avia-image-container-inner'><div class='avia-image-overlay-wrap'><a href=\"\/dynamicweb\/jsp\/downloads\/DownloadDocStepsAction.do?req=download&amp;nm=Q3_SS_Sep_2023.pdf\" class='avia_image' target=\"_blank\" rel=\"noopener noreferrer\"><img decoding=\"async\" width=\"231\" height=\"300\" class='wp-image-51153 avia-img-lazy-loading-not-51153 avia_image' src=\"https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/Q3_SS_Sep_2023-231x300.jpg\" alt='' title='Q3_SS_Sep_2023'  itemprop=\"thumbnailUrl\" srcset=\"https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/Q3_SS_Sep_2023-231x300.jpg 231w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/Q3_SS_Sep_2023-29x37.jpg 29w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/Q3_SS_Sep_2023-42x55.jpg 42w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/Q3_SS_Sep_2023-37x48.jpg 37w, https:\/\/silvaco.com\/wp-content\/uploads\/2023\/09\/Q3_SS_Sep_2023.jpg 250w\" sizes=\"(max-width: 231px) 100vw, 231px\" \/><\/a><\/div><\/div><\/div><br \/>\n<div  class='avia-button-wrap avia-button-center  avia-builder-el-6  el_after_av_image  avia-builder-el-last ' ><a href='\/dynamicweb\/jsp\/downloads\/DownloadDocStepsAction.do?req=download&amp;nm=Q3_SS_Sep_2023.pdf' class='avia-button  avia-color-grey   avia-icon_select-yes-right-icon avia-size-small avia-position-center ' target=\"_blank\" rel=\"noopener noreferrer\"><span class='avia_iconbox_title' >Download Simulation Standard<\/span><span class='avia_button_icon avia_button_icon_right' aria-hidden='true' data-av_icon='\ue875' data-av_iconfont='entypo-fontello'><\/span><\/a><\/div><\/p><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n","protected":false},"excerpt":{"rendered":"<p><b>Numerical Algorithm to Perform Viscoelastic Analysis <\/b><\/p>\n<p>Viscous materials exhibit both viscous and elastic characteristics when undergoing deformation. The response of such materials to force is characterized by two distinct phases. The materials first deform instantaneously akin to elastic materials. Following on, the material continues to deform at a relatively slower time scale. Typically, materials undergoing thermal treatment exhibit viscoelastic properties.<\/p>\n","protected":false},"author":8,"featured_media":51153,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[7723],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v24.0 (Yoast SEO v24.0) - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Numerical Algorithm to Perform Viscoelastic Analysis - Silvaco<\/title>\n<meta name=\"description\" content=\"Numerical Algorithm to Perform Viscoelastic Analysis - Viscous materials exhibit both viscous and elastic characteristics when undergoing\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/silvaco.com\/zh-hans\/simulation-standard\/numerical-algorithm-to-perform-viscoelastic-analysis\/\" \/>\n<meta property=\"og:locale\" content=\"zh_CN\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Numerical Algorithm to Perform Viscoelastic Analysis\" \/>\n<meta property=\"og:description\" content=\"Numerical Algorithm to Perform Viscoelastic Analysis - 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