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热态下除尘滤袋缝纫线的力学性能 被引量:6
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作者 柳静献 舒瑞 +1 位作者 陈明刚 李永光 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2018年第10期1474-1479,共6页
利用配有加温箱的强力机研究了用于袋式除尘的PTFE,PPS,芳纶,PAN,PET缝纫线在20~300℃范围内,温度对其力学性能的影响.结果表明:热态拉伸相对烘后冷却再拉伸的实验更能说明实际工况下温度对缝线的影响; PTFE缝纫线受温度影响显著; PPS... 利用配有加温箱的强力机研究了用于袋式除尘的PTFE,PPS,芳纶,PAN,PET缝纫线在20~300℃范围内,温度对其力学性能的影响.结果表明:热态拉伸相对烘后冷却再拉伸的实验更能说明实际工况下温度对缝线的影响; PTFE缝纫线受温度影响显著; PPS缝纫线在240℃下热稳定性仍良好;芳纶缝纫线耐热性良好,强力变化小,但本身强力略低; PAN缝纫线在120℃以上的高温下强力大幅下降; PET缝纫线的力学性能受温度影响较小,但不能用于高温.热态下缝纫线的力学性能各有优缺,整体强力较低,高温烟尘捕集中滤袋受过滤及脉冲喷吹外力影响,极可能造成缝纫线断裂,导致滤袋失效. 展开更多
关键词 袋式除尘 滤袋 缝纫线 热态拉伸 力学性能
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板架结构焊接失稳变形的预测及瞬态热拉伸消除
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作者 易斌 王江超 《机械工程学报》 EI CAS CSCD 北大核心 2023年第14期64-72,共9页
板架结构作为船舶或者海洋结构的典型部件,其焊接过程导致的失稳变形是困扰建造精度和生产效率的关键问题。以常见的由纵向角钢和横向T型材构成的板架结构为研究对象。首先总结出焊接过程中的典型接头,建立实体单元模型进行热-弹-塑性... 板架结构作为船舶或者海洋结构的典型部件,其焊接过程导致的失稳变形是困扰建造精度和生产效率的关键问题。以常见的由纵向角钢和横向T型材构成的板架结构为研究对象。首先总结出焊接过程中的典型接头,建立实体单元模型进行热-弹-塑性有限元分析获得焊接固有变形。随后将焊接固有变形作为力学载荷,加载到板架结构壳单元模型中进行特征值分析和弹性有限元分析,研究该工艺下板架结构的焊接失稳变形特征。同时通过瞬态热拉伸工艺控制板架结构的焊接失稳变形,并研究附加热源施加位置的影响。结果表明,瞬态热拉伸能够影响典型接头的固有变形,特别是减小焊接产生的纵向收缩力。合适的位置施加附加热源可以避免板架结构产生焊接失稳变形;当附加热源施加到距离立板100 mm处的底板上,板架结构没有出现波浪变形,且面外变形峰值减小了49.3%。 展开更多
关键词 板架结构 焊接失稳变形 固有变形 弹性分析 特征值分析
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瞬态热拉伸强度对304L不锈钢焊接变形影响的计算分析 被引量:5
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作者 易斌 周方明 王江超 《机械工程学报》 EI CAS CSCD 北大核心 2021年第6期60-69,共10页
薄板焊接极易产生失稳变形,严重影响到薄板焊接结构件的生产效率和制造成本。以304L不锈钢薄板对接焊为研究对象,通过试验观察到马鞍形变形模式,并利用三维光学扫描仪测量焊接面外变形的大小。随后进行热-弹-塑性有限元分析再现焊接变... 薄板焊接极易产生失稳变形,严重影响到薄板焊接结构件的生产效率和制造成本。以304L不锈钢薄板对接焊为研究对象,通过试验观察到马鞍形变形模式,并利用三维光学扫描仪测量焊接面外变形的大小。随后进行热-弹-塑性有限元分析再现焊接变形的过程,测量结果与基于大变形理论的数值计算结果基本吻合,而与基于小变形理论的计算结果差别很大,进一步验证失稳变形的产生。同时,在距离焊缝中心110 mm处施加随焊移动的辅助热源实现瞬态热拉伸来控制失稳变形,并研究了附加热源强度的影响。结果表明,瞬态热拉伸减小母材对焊缝处加热过程的压缩效应和冷却过程的拉伸效应,且附加加热区域会产生残余压缩塑性应变,降低了母材自身的纵向拘束度,从而降低焊接压应力和变形;并且附加加热区域最高温度达到195℃和273℃时,沿焊缝方向面外变形最大值分别减小了80%和72%,很大程度控制了焊接失稳变形。 展开更多
关键词 薄板焊接 焊接失稳变形 -弹-塑性分析 附加
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Dynamic tensile strength and failure mechanisms of thermally treated sandstone under dry and water-saturated conditions 被引量:8
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作者 Pin WANG Tu-bing YIN Bi-wei HU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第8期2217-2238,共22页
To study the tensile strength and failure mechanisms of rock with hydro-thermal coupling damage under different loading rates,a series of static and dynamic splitting tests were conducted on thermally treated sandston... To study the tensile strength and failure mechanisms of rock with hydro-thermal coupling damage under different loading rates,a series of static and dynamic splitting tests were conducted on thermally treated sandstone under dry and water-saturated conditions.Experimental results showed that high temperatures effectively weakened the tensile strength of sandstone specimens,and the P-wave velocity declined with increasing temperature.Overall,thermal damage of rock increased gradually with increasing temperature,but obvious negative damage appeared at the temperature of 100℃.The water-saturated sandstone specimens had lower indirect tensile strength than the dry ones,which indicated that water-rock interaction led to secondary damage in heat-treated rock.Under both dry and water-saturated conditions,the dynamic tensile strength of sandstone increased with the increase of strain rate.The water-saturated rock specimens showed stronger rate dependence than the dry ones,but the loading rate sensitivity of thermally treated rock decreased with increasing treatment temperature.With the help of scanning electron microscopy technology,the thermal fractures of rock,caused by extreme temperature,were analyzed.Hydro-physical mechanisms of sandstone under different loading rate conditions after heat treatment were further discussed. 展开更多
关键词 SANDSTONE dynamic tensile strength hydro-thermal coupling damage loading rate dependence failure mechanism
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Stretchable electrothermochromic fibers based on hierarchical porous structures with electrically conductive dual-pathways 被引量:6
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作者 Hongwei Fan Qiang Li +4 位作者 Kerui Li Chengyi Hou Qinghong Zhang Yaogang Li Hongzhi Wang 《Science China Materials》 SCIE EI CSCD 2020年第12期2582-2589,共8页
Stretchable color-changing fibers are urgently demanded for smart textiles/clothing due to their perfect implantability,permeability of vapor and heat,and flexibility/stretchability.Herein,stretchable electrothermochr... Stretchable color-changing fibers are urgently demanded for smart textiles/clothing due to their perfect implantability,permeability of vapor and heat,and flexibility/stretchability.Herein,stretchable electrothermochromic fibers were fabricated with unconventional stretchable conductive fibers as core layers and thermochromic coatings as shell layers.In the stretchable conductive fibers,hierarchical porous structures with percolative one-dimensional(1 D)conductive networks were constructed through phase inversion of carbon nanotube/polyurethane(CNT/PU)solutions.With the deposition of silver nanoparticles(AgN Ps)on the surface of micro-pores,electrically conductive dual-pathways consisting of0 D AgN Ps and 1 D CNTs were formed to significantly enhance the electric conductivity and thus improve the electrothermal performance of the fibers.More importantly,because of the connective CNTs and AgN Ps,such dual-pathways ensured the electron transport under the stretching state,preventing the sharp decay of conductivity and electrothermal performance.Through the continuous wet-spinning method,the stretchable conductive fibers can be easily obtained with the length up to several meters.At last,stretchable electrothermochromic fibers were prepared with two color-changing modes and implanted into textile perfectly,advancing their applications in wearable display and military adaptive camouflage of smart clothing. 展开更多
关键词 hierarchical porous structures conductive dual-pathways stretchable conductive fibers electrothermochromic fibers smart clothing
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