|
Weld Line Prediction: From Injection Molding Simulation to Structural Simulation
4/11/2012 |
|
|
With aid of the interface SIGMAlink, the weld lines predicted with the injection molding simulation software SIGMASOFT® can now be mapped into Finite Element Analysis Software and be considered in the structural design of injection molded parts.
Schaumburg, IL, April 1st 2012 - SIGMA Plastic Services, Inc., Schaumburg, IL, presents a new functionality of its injection molding simulation software SIGMASOFT®. The simulation of the cavity filling in injection molding allows identifying regions where weld lines are formed, not only on the surface but also through the part's thickness, with a complete 3D approach. With the interface SIGMAlink it is now possible to transfer this 3D information into FEA (Finite Element Analysis) software, to consider the drop in mechanical properties in these regions when performing structural design analysis. A particular advantage of SIGMASOFT® is the 3-dimenional prediction of the weld lines, which reproduces the weld regions not only on the surface, but also through the part's thickness - as it occurs in reality.
Weld lines occur as a consequence of the collision of two (or more) flow fronts in the cavity of a mold. This disruption in the homogeneity of the injection molded part causes optical defects, which compromises the surface quality, but also produces a weakening from the mechanical point of view and, under certain circumstances, weld lines can even act as stress intensifiers. Therefore, there is a loss in the mechanical properties in the regions where weld lines appear.
Using the "tracer" technology, which has been available for years in SIGMASOFT®, the appearance of weld lines can be reproduced during the filling stage. The location of the weld lines can be described precisely and additionally an indication is given on how critical they are. The formation of the weld lines during the filling stage and the way they flow as the packing pressure is applied are predicted 3-dimensionally.
The interface SIGMAlink enables exporting (mapping) physical and flow-related properties into commercial software for FEA (such as Ansys, Abaqus, Radios, etc.). Factors such as flow and thermally induced stresses and fiber orientation can be considered in the FEA. With the further expansion of SIGMAlink it is now possible to export information regarding the final position and 3D-profile of the weld lines into the structural FEA. In this way, the drop in the mechanical properties produced by weld lines can also be considered in the mechanical part design.
In Figure 1 the formation of a weld line region in SIGMASOFT® is presented. The flow front is depicted in grey. The "tracer" particles in orange show clearly that the melt fronts do not collide in a flat region, but that this weld line has a complex 3D profile at the end of the filling and packaging phases.
Caption
Figure 1 - The tracer technology in SIGMASOFT® allows visualizing the fully 3D profile of weld lines over the part thickness. With SIGMAlink this information can now be mapped into structural FEA.
|
|
|
|
|
|
主站蜘蛛池模板:
精品无人区一码二码三码|
亚洲AVAv电影AV天堂18禁|
亚洲精品国产精品不乱码|
国产97色在线|
99热在线观看|
国产精品毛片在线完整版|
黄色好看一区二区三区|
免费无码又爽又刺激网站|
国产精品极品美女自在线观看免费|
熟妇人妻系列|
人妻精品一区|
亚洲一区二区三区免费不卡|
色综合色国产热无码一|
免费无码高潮流白浆视频|
中文人妻不卡|
日韩欧美亚洲国产高清在线
|
热久久这里是精品6免费观看|
а√8天堂中文官网资源|
国产三级自拍|
国产又猛又爽又黄视频|
日本中文一区二区三区亚洲|
亚洲精品日韩久久精品|
亚洲人成在线播放网站|
97影院午夜在线观看视频|
一卡二卡三卡四卡视频区|
人人妻人人澡人人爽|
黑人又粗又长又大|
富蕴县|
中文字幕成人精品久久不卡|
被拉到野外强要好爽|
国产玖玖视频|
无码爆乳超乳中文字幕在线|
国产精品欧美一区二区三区不卡|
亚洲国产精品久久久天堂麻豆宅男|
www.色小在线精品|
国模吧一区二区三区精品视频|
Y111111国产精品久久久|
亚洲熟妇少妇任你躁在线观看无码|
天堂中文8资源在线8|
国内精品伊人久久久久av|
红桃视频成人传媒|