期刊文献+
共找到9篇文章
< 1 >
每页显示 20 50 100
基于注射成型模拟技术的塑料件浇口位置优化设计 被引量:5
1
作者 钟佩思 赵国强 武迎迎 《塑料工业》 CAS CSCD 北大核心 2006年第7期29-31,共3页
针对注塑模具中合理的浇口位置在塑料制品设计中的重要性,提出了在模具设计中采用塑料注射成型模拟技术对塑料件浇口位置进行优化设计的思想。以鼠标上端盖作为实例,介绍了借助模拟分析软件MPI对其浇口位置进行计算机模拟分析的过程,优... 针对注塑模具中合理的浇口位置在塑料制品设计中的重要性,提出了在模具设计中采用塑料注射成型模拟技术对塑料件浇口位置进行优化设计的思想。以鼠标上端盖作为实例,介绍了借助模拟分析软件MPI对其浇口位置进行计算机模拟分析的过程,优化了模具的浇口位置及注射成型工艺参数,从而获得了高预测质量的产品,降低了生产成本,提高了模具企业的市场竞争力。 展开更多
关键词 注射成型模拟技术 PRO/E MOLDFLOW 优化设计
下载PDF
基于MoldFlow的铅酸蓄电池盖注射成型模拟分析
2
作者 范杰 田怀文 《模具制造》 2008年第6期5-7,共3页
随固定型阀控式铅酸蓄电池阻燃要求的提出,本文应用Moldflow软件对蓄电池盖的注射成型进行了模拟。对模具的浇注系统、冷却系统进行了优化,并针对阻燃ABS的特点,提出了更适合于阻燃材料的注射工艺条件。
关键词 MOLDFLOW软件 铅酸蓄电池 CAE 注射成型模拟
下载PDF
注射成型薄壁制品收缩与翘曲因素 被引量:25
3
作者 董斌斌 申长雨 李倩 《化工学报》 EI CAS CSCD 北大核心 2005年第4期727-731,共5页
介绍了薄壁注射成型的充填、保压、冷却和残余应力的数值模型, 并将集成的模拟程序对收缩翘曲问题进行定量地模拟分析. 采用Taguchi 实验优化设计理论, 用L27 (313) 正交表设计实验并进行了统计分析. 研究了因素如熔体温度、模具温度、... 介绍了薄壁注射成型的充填、保压、冷却和残余应力的数值模型, 并将集成的模拟程序对收缩翘曲问题进行定量地模拟分析. 采用Taguchi 实验优化设计理论, 用L27 (313) 正交表设计实验并进行了统计分析. 研究了因素如熔体温度、模具温度、保压时间、保压压力、浇口尺寸和注射速率对收缩与翘曲的影响的显著性. 得出优化工艺参数如熔体温度、模具温度、保压时间和压力能减少残余热应力; 保压压力和熔体温度是影响收缩与翘曲的最显著因素. 展开更多
关键词 注射成型模拟 因素 水平 收缩与翘曲
下载PDF
塑料成型加工模拟技术及软件应用 被引量:18
4
作者 文劲松 麻向军 +2 位作者 刘斌 晋刚 瞿金平 《计算机辅助工程》 2003年第4期56-62,共7页
本文介绍了国内外塑料成型加工模拟技术与软件的发展和应用,重点介绍了MOLDFLOW和POLYFLOW软件,并指出了国内发展的方向。
关键词 塑料成型加工 计算机模拟 有限元法 高分子聚合物 注射成型模拟软件
下载PDF
发动机缸盖出水口接头叠层式热流道注塑模具设计 被引量:11
5
作者 奚建胜 黄文涛 《中国塑料》 CSCD 北大核心 2017年第5期103-108,共6页
根据企业提供的产品以及技术要求,确定了叠层式热流道的模具结构,通过Moldflow软件的注射成型模拟,验证了成型方案的可行性;设计了侧向抽芯和分型机构、浇注系统、二次推出机构、电加热温控系统以及其他模具零件。所设计的模具已应用于... 根据企业提供的产品以及技术要求,确定了叠层式热流道的模具结构,通过Moldflow软件的注射成型模拟,验证了成型方案的可行性;设计了侧向抽芯和分型机构、浇注系统、二次推出机构、电加热温控系统以及其他模具零件。所设计的模具已应用于实际生产中,并取得了良好的经济效益。 展开更多
关键词 叠层式注塑模具 热流道 注射成型模拟 电加热温控系统 二次推出机构
下载PDF
CAE技术在注塑模浇口优化设计中的应用 被引量:5
6
作者 陈开源 周南桥 刘斌 《现代塑料加工应用》 CAS 北大核心 2008年第5期52-55,共4页
基于CAE(计算机辅助工程)技术,应用Moldflow/MPI软件对手机外壳注塑过程进行模拟分析。预测了在不同浇口方案下的注塑缺陷,确定了最优浇口设计方案,为模具设计人员优化注塑模设计提供了依据。
关键词 计算机辅助工程 注射成型模拟分析 注塑模 浇口 优化设计
下载PDF
Simulation of Non-isothermal Injection Molding for a Non-Newtonian Fluid by Level Set Method 被引量:8
7
作者 杨斌鑫 欧阳洁 +1 位作者 刘春太 李强 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2010年第4期600-608,共9页
A non-isothermal injection molding process for a non-Newtonian viscous pseudoplastic fluid is simulated.A conservative interface capturing technique and the flow field solving method are coupled to perform a dynamic s... A non-isothermal injection molding process for a non-Newtonian viscous pseudoplastic fluid is simulated.A conservative interface capturing technique and the flow field solving method are coupled to perform a dynamic simulation.The validity of the numerical method is verified by a benchmark problem.The melt interface evolution versus time is captured and the physical quantities such as temperature,velocity and pressure at each time step are obtained with corresponding analysis.A"frozen skin"layer with the thickness increasing versus time during the injection process is found.The fact that the"frozen skin"layer can be reduced by increasing the injection velocity is numerically verified.The fountain flow phenomenon near the melt interface is also captured.Moreover,comparisons with the non-isothermal Newtonian case show that the curvatures of the interface arcs and the pressure contours near the horizontal mid-line of the cavity for the non-Newtonian pseudoplastic case is larger than that for the Newtonian case.The velocity profiles are different at different positions for the non-Newtonian pseudoplastic case,while in the case of Newtonian flow the velocity profiles are parabolic and almost the same at different positions. 展开更多
关键词 injection molding Level Set Method two-phase flow NON-ISOTHERMAL non-Newtonian flow
下载PDF
Experiment and simulation of foaming injection molding of polypropylene/nano-calcium carbonate composites by supercritical carbon dioxide 被引量:5
8
作者 Zhenhao Xi Jie Chen +2 位作者 Tao Liu Ling Zhao Lih-Sheng Turng 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第1期180-189,共10页
Microcellular injection molding of neat isotactic polypropylene(iPP) and isotactic polypropylene/nano-calcium carbonate composites(i PP/nano-CaCO_3) was performed using supercritical carbon dioxide as the physical blo... Microcellular injection molding of neat isotactic polypropylene(iPP) and isotactic polypropylene/nano-calcium carbonate composites(i PP/nano-CaCO_3) was performed using supercritical carbon dioxide as the physical blowing agent. The influences of filler content and operating conditions on microstructure morphology of i PP and i PP/nano-CaCO_3 microcellular samples were studied systematically. The results showed the bubble size of the microcellular samples could be effectively decreased while the cell density increased for i PP/nano-CaCO_3 composites, especially at high CO_2 concentration and back pressure, low mold temperature and injection speed, and high filler content. Then Moldex 3D was applied to simulate the microcellular injection molding process, with the application of the measured ScCO_2 solubility and diffusion data for i PP and i PP/nano-Ca CO_3 composites respectively. For neat i PP, the simulated bubble size and density distribution in the center section of tensile bars showed a good agreement with the experimental values. However, for i PP/nano-CaCO_3 composites, the correction factor for nucleation activation energy F and the pre-exponential factor of nucleation rate f_0 were obtained by nonlinear regression on the experimental bubble size and density distribution. The parameters F and f_0 can be used to predict the microcellular injection molding process for i PP/nano-CaCO_3 composites by Moldex 3D. 展开更多
关键词 Microcellular injection molding Isotactic polypropylene/nano-calcium carbonate Cell morphology Nucleation activation energy Numerical simulation
下载PDF
Numerical simulation method for weld line development in micro injection molding process 被引量:2
9
作者 谢磊 ZIEGMANN Gerhard 蒋炳炎 《Journal of Central South University》 SCIE EI CAS 2009年第5期774-780,共7页
In order to reduce the "trial-mold" risk and cost,numerical simulation method was applied to micro injection molding weld line development investigation. The micro tensile specimen which has the size of 0.1 ... In order to reduce the "trial-mold" risk and cost,numerical simulation method was applied to micro injection molding weld line development investigation. The micro tensile specimen which has the size of 0.1 mm(depth) ×0.4 mm(width) ×12 mm(length) in test area was selected as the objective part,and polypropylene(PP) as the experimental material. Respectively with specific commercial software(Mold Flow) and general computational fluid dynamic(CFD) software(Comsol Multiphysics) ,the simulation experiments for development of weld line in micro injection molding process were executed and the real comparison experiments were also carried out. The results show that during micro injection molding process,the specific commercial software for normal injection molding process is not valid to describe the micro flow process,the shape of flow front in micro cavity flowing which is important in weld line developing study and the contact angle due to surface tension are not able to be simulated. In order to improve the simulation results for micro weld line development,the general CFD software,which is more flexible in user defining function,is applied. The results show better effects in describing micro fluid flow behavior. As a conclusion,as for weld line forming process,the numerical simulation method can give a characteristic analysis results for processing parameters optimizing in micro injection molding process;but for both kinds of softwares quantitative analysis cannot be obtained unless the boundary condition and micro fluid mathematic model are improved in the future. 展开更多
关键词 weld line micro injection molding numerical simulation
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部