期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
一种连接传动件的锻造工艺仿真及优化 被引量:1
1
作者 陈保山 逯云杰 《锻压技术》 CAS CSCD 北大核心 2023年第3期20-26,共7页
以一种连接传动件为研究对象,针对现有工艺锻造产品质量差、使用期限短的问题,通过Deform11.0对锻件的成形工艺进行了仿真研究。结果显示,锻件外形虽成形完整,但在预锻工序中出现了金属对流现象,导致了折叠缺陷的产生,从而影响锻件的成... 以一种连接传动件为研究对象,针对现有工艺锻造产品质量差、使用期限短的问题,通过Deform11.0对锻件的成形工艺进行了仿真研究。结果显示,锻件外形虽成形完整,但在预锻工序中出现了金属对流现象,导致了折叠缺陷的产生,从而影响锻件的成形质量。为此,对预锻件的形状进行改进,设计了两种方案,分别进行了预锻、终锻的成形模拟验证,并比较了两道工序的锻造成形力。研究表明:改进后的方案能够改善金属的流动情况,解决对流引起的折叠缺陷;此外,方案2需要的锻造成形力更小,能够减小模具的负载。最终基于方案2进行了锻造试验,得到的连接传动件的成形外观好、切断截面锻造流线连续、无金属折叠缺陷、各尺寸检验合格,达到了工艺要求。 展开更多
关键词 连接传动件 金属对流 折叠缺陷 预锻 终锻 锻造成形力
原文传递
Semi-analytical solution for fully developed forced convection in metal-foam filled tube with uniform wall temperature 被引量:1
2
作者 ZHANG Jia Jie QU Zhi Guo +1 位作者 XU Hui Jin TAO Wen Quan 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第12期2487-2499,共13页
Fully developed flow and heat transfer in metal-foam filled tube with uniform wall temperature(UWT) is semi-analytically investigated based on the Brinkman–Darcy model and the two-equation model, in which the inertia... Fully developed flow and heat transfer in metal-foam filled tube with uniform wall temperature(UWT) is semi-analytically investigated based on the Brinkman–Darcy model and the two-equation model, in which the inertia term, axial conduction, and thermal dispersion are ignored. A two-dimensional numerical simulation that adopts the full governing equations is also conducted to analyze the effects of neglected terms on flow and thermal transport performance by comparing with the semi-analytical solution. The effects of the relevant parameters and thermal boundary conditions including UWT and uniform heat flux(UHF) on the heat transfer characteristics are discussed based on the semi-analytical solution. The results show that the inertia term has a significant effect on the prediction of pressure drop, but has a relatively mild effect on Nusselt number. The axial conduction has significant effect on the Nusselt number at lower Reynolds number, and the effects of thermal dispersion can be neglected when the thermal conductivity ratio between fluid and solid is remarkably smaller for air/metal foam as example(kf/ks<3×10-3). The predicted Nusselt number of the semi-analytical solution is about 8% to 15% lower than that of the numerical solution with full model in the range of 4×10-5<kf/ks<3×10-3. Moreover, the temperature profile of solid is more sensitive to pore density and porosity than that of fluid under UWT condition. The Nusselt number under UWT is about 7% to 25% lower than that under UHF, and the difference is mainly determined by interfacial convection rather than solid conduction. 展开更多
关键词 metal foams SEMI-ANALYTICAL uniform wall temperature numerical simulation heat transfer
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部