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浅谈蒙古族舞蹈的“力”与“形”
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作者 刘仲春 《黄河之声》 2018年第2期106-106,共1页
相较于其他民族舞蹈来说,蒙古族舞蹈具有独特的魅力和艺术价值。对于蒙古族舞蹈的形体分析和审美探讨,能够在了解舞蹈情感内涵的基础上,促进舞蹈在当今时代的传承发展。本文通过深入分析蒙古族舞蹈,探究了蒙古舞舞蹈中"力"与&... 相较于其他民族舞蹈来说,蒙古族舞蹈具有独特的魅力和艺术价值。对于蒙古族舞蹈的形体分析和审美探讨,能够在了解舞蹈情感内涵的基础上,促进舞蹈在当今时代的传承发展。本文通过深入分析蒙古族舞蹈,探究了蒙古舞舞蹈中"力"与"形"的相互关系,明确了蒙古族舞蹈的身韵、风格、体态等,有助于蒙古族舞蹈在当今时代的传承发展。 展开更多
关键词 蒙古族舞蹈 力与形 舞蹈风格 舞蹈体态
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基于图解静力学的平面桁架形态设计方法研究 被引量:5
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作者 赵洁 马思嘉 +1 位作者 乔文涛 张诗雨 《建筑科学》 CSCD 北大核心 2019年第7期53-58,共6页
图解静力学是一种求解静定结构静力学问题的有效方法。它不但可以准确求得结构的内力,还将力可视化(力图),从而产生了由力到形的设计方法,即通过操纵力图的几何关系,可改变力的大小到预设值(或到预定关系),力图的变化将会影响到结构几何... 图解静力学是一种求解静定结构静力学问题的有效方法。它不但可以准确求得结构的内力,还将力可视化(力图),从而产生了由力到形的设计方法,即通过操纵力图的几何关系,可改变力的大小到预设值(或到预定关系),力图的变化将会影响到结构几何(形图),从而改变建筑结构的外观形态,由于力图在变化时始终保持闭合,因此无论结构形态如何变化,都将始终保持在平衡状态。本文将图解静力学中力到形的设计方法应用于平面桁架设计,得到了受力合理且形态各异的平面桁架,表明了此法在建筑形态设计方面具有较好的应用前景。 展开更多
关键词 图解静 力与形 平面桁架 态设计
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Effect of pre-recovery on subsequent recrystallization kinetics in moderately deformed and supersaturated Al–Mn alloys 被引量:1
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作者 HUANG Li CAO Ling-fei +2 位作者 HUANG Guang-jie WU Xiao-dong XIA Ming-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第3期534-542,共9页
The effect of pre-recovery on the recrystallization kinetics of a supersaturated Al–Mn alloy annealed at 530°C was investigated.The results show that the pre-recovery treatment can lead to faster recrystallizati... The effect of pre-recovery on the recrystallization kinetics of a supersaturated Al–Mn alloy annealed at 530°C was investigated.The results show that the pre-recovery treatment can lead to faster recrystallization kinetics at the initial stage but cause sluggish recrystallization at the later stage.This different recrystallization behavior is explained by the formation of precipitates-free zones and the consumption of driving force during the pre-recovery treatment.The promoted recrystallization at the early stage can be interpreted by the promotion of recrystallization nucleation through sub-grain growth to a critical size inside precipitates-free zones.A simple model is presented to describe the nucleation of recrystallization with pre-recovery treatment in the supersaturated Al–Mn alloys. 展开更多
关键词 pre-recovery RECRYSTALLIZATION nucleation and growth KINETICS PRECIPITATION
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Structure and coalbed methane occurrence in tectonically deformed coals 被引量:50
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作者 HOU QuanLin LI HuiJun +4 位作者 FAN JunJia JU YiWen WANG TianKai LI XiaoShi WU YuDong 《Science China Earth Sciences》 SCIE EI CAS 2012年第11期1755-1763,共9页
Research on structure of tectonically deformed coals(TDC) is a key issue in coal and gas outburst prevention and coalbed methane(CBM) exploitation.This paper presents a summary on the research progress in TDC's st... Research on structure of tectonically deformed coals(TDC) is a key issue in coal and gas outburst prevention and coalbed methane(CBM) exploitation.This paper presents a summary on the research progress in TDC's structural-genetic classification,tectonic strain influence on coal microstructure,coal porosity system,coal chemical structure and constituents,and their relationship with the excess coalbed methane.Previous studies suggested that tectonic deformation had significant influence on coal microstructure,coal super microstructure,and even chemical macromolecular structure.The main mechanisms of coal deformation are the tectonic stress degradation and polycondensation metamorphism(dynamical metamorphism).Besides,under different deformation mechanisms,the ultra-and micro-structure and chemical constituents of TDC presented distinct characteristics.Based on these achievements,we propose one possible evolutionary trend of TDC with different deformation mechanisms,and suggest that the coal and gas outburst in the TDC,especially in the mylonitic coals,may be not only controlled by geological structure,but also influenced by the tectonic stress degradation of ductile deformation.Therefore,further study on TDC should be focused on the controlling mechanism of deformation on structure and composition of coal,generation conditions and occurrence state of excess coalbed methane from deformation mechanism of coal. 展开更多
关键词 tectonically deformed coal deformation mechanism coalbed methane occurrence research progress
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