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一类微分方程组的积分解法及其在厚板热力弯曲中的应用
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作者 尹益辉 陈刚 陈裕泽 《应用数学和力学》 EI CSCD 北大核心 1999年第11期1168-1174,共7页
提出并证明了一类非齐次线性微分方程组的积分解法,并以求解受激光和横向力联合加载厚板的轴对称弯曲问题作为该方法的应用实例,籍此给出了考虑挤压效应、旋转惯性效应和剪切变形效应时厚板动态弯曲的扰度和转角公式· 结果表明... 提出并证明了一类非齐次线性微分方程组的积分解法,并以求解受激光和横向力联合加载厚板的轴对称弯曲问题作为该方法的应用实例,籍此给出了考虑挤压效应、旋转惯性效应和剪切变形效应时厚板动态弯曲的扰度和转角公式· 结果表明运用该定理求解问题具有规范。 展开更多
关键词 微分方程组 积分方法 厚板 轴对称 热力弯曲
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Effects of bending on heat transfer performance of axial micro-grooved heat pipe 被引量:5
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作者 蒋乐伦 汤勇 潘敏强 《Journal of Central South University》 SCIE EI CAS 2011年第2期580-586,共7页
Heat pipe is always bent in the typical application of electronic heat dissipation at high heat flux,which greatly affects its heat transfer performance. The capillary limit of heat transport in the bent micro-grooved... Heat pipe is always bent in the typical application of electronic heat dissipation at high heat flux,which greatly affects its heat transfer performance. The capillary limit of heat transport in the bent micro-grooved heat pipes was analyzed in the vapor pressure drop,the liquid pressure drop and the interaction of the vapor with wick fluid. The bent heat pipes were fabricated and tested from the bending angle,the bending position and the bending radius. The results show that temperature difference and thermal resistance increase while the heat transfer capacity of the heat pipe decreases,with the increase of the bending angles and the bending position closer to the vapor section. However,the effects of bending radius can be ignored. The result agrees well with the predicted equations. 展开更多
关键词 electronics cooling system axial micro-grooved heat pipe BENDING heat transfer performance
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Quantitative description of infrared radiation characteristics for solid materials subjected to external loading 被引量:2
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作者 王芳 李英骏 +1 位作者 饶秋华 唐炼 《Journal of Central South University》 SCIE EI CAS 2009年第6期1022-1027,共6页
Based on the thermodynamics theory and physical micro-properties of solid materials subjected to external loading at room temperature,a formula of calculating temperature difference of infrared radiation in terms of t... Based on the thermodynamics theory and physical micro-properties of solid materials subjected to external loading at room temperature,a formula of calculating temperature difference of infrared radiation in terms of the sum of three principal strains was deduced to quantitatively investigate the infrared radiation characteristics in test. Two typical specimens,the three-point bending beam and the disc pressed in diameter,were tested and their principal strains were calculated by finite element method in order to obtain the temperature differences of infrared radiation. Numerical results are in a good agreement with test results,which verifies the validity of the formula of calculating temperature differences of infrared radiation and the model of quantitatively describing the infrared radiation characteristics of solid materials,and reveals the corresponding inner physical mechanism. 展开更多
关键词 Infrared radiation characteristics thermodynamics analysis numerical simulation strain tensor
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Fatigue crack in large-scale tubular joints for offshore structures 被引量:2
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作者 Chul-Hee JO Sung-Woo IM +1 位作者 Won-Chul CHO Kwan-Kyu PARK 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第3期705-714,共10页
Tubular members have been used for constructing offshore structures. Large-scale fatigue tests of welded tubular K-joints under the balanced in-plane bending brace were carried out to investigate the fatigue behavior ... Tubular members have been used for constructing offshore structures. Large-scale fatigue tests of welded tubular K-joints under the balanced in-plane bending brace were carried out to investigate the fatigue behavior of API 2W Gr.50 steel produced by POSCO. The experimental results were verified by numerical approaches and compared with the IIW, DnV RP-C203 and API RP 2A-WSD design curves. The test results based on the hot spot stress were in agreement with the design curves. The SCF factor for tubular K-joint was also obtained. The numerical parametric study of the K-joint (using the finite element program) was described and its results were compared with experimental results. The stress effects of various parameters including α, β, γ, τ and θ on the stress in the K-joint were investigated. The stress distribution for each parameter was introduced. The study showed that the maximum stress of the joint varied according to the variation of joint parameters. 展开更多
关键词 tubular K-joint API 2W Gr.50 hot spot stress SCF FATIGUE through-thickness crack S-N curve numerical parametric study
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