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扭曲扁管换热器机械设计若干问题的探讨 被引量:6
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作者 徐小龙 冯清晓 《压力容器》 2013年第1期35-39,共5页
扭曲扁管因其显著的强化传热能力得到广泛应用,从机械设计的角度,分析了扭曲扁管换热器管板强度计算问题,指出了扭曲扁管换热器管板强度计算与普通管壳式换热器的不同,采用"当量圆管"的等效处理方法,给出了管板计算的解决方案... 扭曲扁管因其显著的强化传热能力得到广泛应用,从机械设计的角度,分析了扭曲扁管换热器管板强度计算问题,指出了扭曲扁管换热器管板强度计算与普通管壳式换热器的不同,采用"当量圆管"的等效处理方法,给出了管板计算的解决方案;探讨了扁管长轴尺寸及公差、管板开孔间距及公差和支持板结构等几个结构设计中的关键问题,结合工程实际提出了常用换热管的合理公差尺寸,并针对抽拉管束时支持板的稳固,给出了可行的措施;根据扭曲扁管管束的结构,指出换热管不存在轴向失稳问题,可以不必计算;并提出了扭曲扁管后续研究应重点关注扁管结构尺寸与轴向刚度关联性的研究。 展开更多
关键词 扭曲扁管 管板计算 当量圆管 扭曲轴向刚度 换热管稳定性 支持板 长轴长度
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提升机过渡块的研制与使用 被引量:1
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作者 秦峰 殷其江 +1 位作者 臧庆萍 孙中伟 《山东煤炭科技》 2001年第3期42-43,共2页
提升机过渡块的研制使提升物料的提升机在滚筒缠绕二层钢丝绳过渡过程中 ,达到平滑过渡 ,消除轴向扭曲及挤咬力 ,延长钢丝绳寿命。
关键词 提升装置 钢丝绳 过渡块 咬绳 提升机 轴向扭曲 挤咬力 使用寿命
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Combined torsional buckling of double-walled carbon nanotubes with axial load in the multi-field coupled condition 被引量:2
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作者 SUN YuGang YAO XiaoHu HAN Qiang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第9期1659-1665,共7页
The present study has theoretically investigated the combined torsional buckling of double-walled carbon nanotubes (DWCNTs) with axial load in the multi-field coupled condition. The effects of torsion, axial load, the... The present study has theoretically investigated the combined torsional buckling of double-walled carbon nanotubes (DWCNTs) with axial load in the multi-field coupled condition. The effects of torsion, axial load, thermal-electrical change, surrounding elastic medium and the Van der Waals forces are all taken into consideration. The governing equation of buckling for CNTs subjected to thermo-electro-mechanical loadings has been established based on an elastic shell model of continuum mechanics. Reasonable simplifications are made to get the explicit expression of the critical buckling shear stress of DWCNTs, and numerical experiments are conducted for further research. It is shown that under certain electric and temperature field the critical buckling shear stress of DWCNTs only depends on the wave number of buckling modes. On the other hand, all the related impact factors have enormous influence on the critical buckling shear stress under a certain buckling mode. The critical buckling shear stress changes linearly with the axial-to-shear stress ratio, as well as the thermal and electric change. Axial compression tends to make DWCNTs unstable, while axial tension benefits the buckling stability. The critical buckling shear stress is directly proportional to the applied voltage. At room or lower temperature, the critical shear stress for infinitesimal buckling increases as the temperature change increases, while it decreases at a higher temperature. The conclusions are useful for the design of nano-structures related to the buckling stability of DWCNTs. 展开更多
关键词 Carbon nanotubes BUCKLING multi-field coupling
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