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螺旋面铣削时的共轭界限与干涉条件 被引量:3
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作者 丁伟 常江 《鞍山钢铁学院学报》 1996年第2期13-15,共3页
探讨螺旋面铣削时的共轭界限、干涉等问题,得出干涉的必要条件,讨论了接触线上干涉点的特征。
关键词 螺旋面 共轭界限 干涉 接触线 铣削
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螺旋面方程建立及铣削时刀具刃型设计 被引量:3
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作者 丁伟 李春旭 刘柄宏 《沈阳工业大学学报》 EI CAS 北大核心 2020年第2期185-190,共6页
针对螺旋面加工易干涉及刀具设计困难等问题,提出一种基于标架与直角坐标系相结合的方法来确定螺旋面方程,并应用微分几何、啮合原理确定了螺旋面铣削时的刀具设计方法,建立了复杂螺旋面方程,并设计出该螺旋面外、内(旋风)铣时刀具的刃... 针对螺旋面加工易干涉及刀具设计困难等问题,提出一种基于标架与直角坐标系相结合的方法来确定螺旋面方程,并应用微分几何、啮合原理确定了螺旋面铣削时的刀具设计方法,建立了复杂螺旋面方程,并设计出该螺旋面外、内(旋风)铣时刀具的刃型.结果表明,利用提出的方法确定复杂螺旋面方程方便易行,设计的刀具刃型在满足安装条件下不会发生干涉,从而有效验证了螺旋面方程数学模型及铣刀刃型设计数学模型的可行性. 展开更多
关键词 螺旋面 标架 共轭条件 共轭界限 映射法 铣削 二分法 刀具
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螺旋面铣削时合理安装参数选择的方法
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作者 丁伟 常江 《鞍山钢铁学院学报》 1996年第4期45-49,共5页
根据映射理论,用映射困反映螺旋面的特性;内、外铣削螺旋面时的共轭界限即为映射曲线的渐近线;据映射图选择合理安装参数。
关键词 映射图 共轭界限 安装参数 螺旋面 铣削
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BEM/FDM Conjugate Heat Transfer Analysis of a Two-dimensional Air-cooled Turbine Blade Boundary Layer 被引量:4
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作者 Wang Zhenfeng Yan Peigang Guo Zhaoyuan Han Wanjin 《Journal of Thermal Science》 SCIE EI CAS CSCD 2008年第3期199-206,共8页
A coupled boundary element method (BEM) and finite difference method (FDM) are applied to solve conjugate heat transfer problem of a two-dimensional air-cooled turbine blade boundary layer. A loosely coupled strat... A coupled boundary element method (BEM) and finite difference method (FDM) are applied to solve conjugate heat transfer problem of a two-dimensional air-cooled turbine blade boundary layer. A loosely coupled strategy is adopted, in which each set of field equations is solved to provide boundary conditions for the other. The Navier-Stokes equations are solved by HIT-NS code. In this code, the FDM is adopted and is used to resolve the convective heat transfer in the fluid region. The BEM code is used to resolve the conduction heat transfer in the solid region. An iterated convergence criterion is the continuity of temperature and heat flux at the fluid-solid interface. The numerical results from the BEM adopted in this paper are in good agreement with the results of analytical solution and the results of commercial code, such as Fluent 6.2. The BEM avoids the complicated mesh needed in other computation method and saves the computation time. The results prove that the BEM adopted in this paper can give the same precision in numerical results with less boundary points. Comparing the conjugate results with the numerical results of an adiabatic wall flow solution, it reveals a significant difference in the distribution of metal temperatures. The results from conjugate heat transfer analysis are more accurate and they are closer to realistic thermal environment of turbines. 展开更多
关键词 Conjugate heat transfer Boundary elements Finite difference Air-cooled gas turbine.
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