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轿车门外板水切面波浪调试方法研究 被引量:1
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作者 赵锋 孟炬 +1 位作者 周迎雨 任志国 《汽车工业研究》 2022年第1期60-62,共3页
某轿车车型门外板在调试过程中出现水切面波浪缺陷严重现象,前后门左右件缺陷形式和位置相近,严重影响整车漆后目视效果,属于不可接受缺陷。通过对模拟分析中成型减薄料厚分析、成型失效分析、成型起皱分析、拉延筋设计分析、水切面对... 某轿车车型门外板在调试过程中出现水切面波浪缺陷严重现象,前后门左右件缺陷形式和位置相近,严重影响整车漆后目视效果,属于不可接受缺陷。通过对模拟分析中成型减薄料厚分析、成型失效分析、成型起皱分析、拉延筋设计分析、水切面对应的外部受力分析等,明确实物拉延件法兰边状态及拉延模具成型圆角对门外板水切面波浪缺陷的影响,对拉延模具进行工艺及模具优化。在拉延件其他位置不变的前提下,从拉延模具局部控制进料着手进行门外板水切面波浪缺陷的优化,合理增加拉延筋提高局部进料可控性,彻底消除了门外板水切面波浪缺陷。 展开更多
关键词 门外板 水切面 波浪
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Bond condition between surface layer and immediate layer in porous asphalt pavement 被引量:3
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作者 杨军 戴鹏 +3 位作者 于良溟 葛苏闽 刘清泉 钱国超 《Journal of Southeast University(English Edition)》 EI CAS 2007年第4期588-593,共6页
Through the shear tests on composite specimens using four different kinds of tack coat material (epoxy resin, SBS modified emulsified asphalt, SBS modified asphalt and H# bridge waterproof material), the bond condit... Through the shear tests on composite specimens using four different kinds of tack coat material (epoxy resin, SBS modified emulsified asphalt, SBS modified asphalt and H# bridge waterproof material), the bond condition between layers of porous asphalt pavement under traffic load, temperature variation and moisture situation is evaluated. The test results show that the bond strength decreases with the rise in temperature, and the relationship between shear strength and temperature can be expressed by a logarithm curve at a high reliability. Under the action of traffic load, the value of shear strength of the mixture right under the centre of the wheel track is smaller than that of other parts of the pavement. It is also found that some effects concerning moisture have comparative effects on the bonding of the two layers. Given all the results achieved during the study, it will be quite rewarding to make rational comparisons during selecting the sound type of tack coat. 展开更多
关键词 porous asphalt pavement waterproof and cohesive layer: shear strength
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Experimental and CFD Studies on the Performance of Microfiltration Enhanced by a Turbulence Promoter 被引量:2
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作者 刘元法 贺高红 +3 位作者 丁路辉 窦红 鞠佳 李保军 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第4期617-624,共8页
This paper reports experimental and computational fluid dynamics(CFD) studies on the performance of microfiltration enhanced by a helical screw insert.The experimental results show that the use of turbulence pro-moter... This paper reports experimental and computational fluid dynamics(CFD) studies on the performance of microfiltration enhanced by a helical screw insert.The experimental results show that the use of turbulence pro-moter can improve the permeate flux of membrane in the crossflow microfiltration of calcium carbonate suspension,and flux improvement efficiency is strongly influenced by operation conditions.The energy consumption analysis indicates that the enhanced membrane system is more energy saving at higher feed concentrations.To explore the intrinsic mechanism of flux enhancement by a helical screw insert,three-dimensional CFD simulation of fluid flow was implemented.It reveals that hydrodynamic characteristics of fluid flow inside the channel are entirely changed by the turbulence promoter.The rotational flow pattern increases the scouring effect on the tube wall,reducing the particle deposition on the membrane surface.The absence of stagnant regions and high wall shear stress are respon-sible for the enhanced filtration performance.No secondary flow is generated in the channel,owing to the streamline shape of helical screw insert,so that the enhanced performance is achieved at relatively low energy consumption. 展开更多
关键词 membrane fouling flux enhancement turbulence promoter computational fluid dynamics
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Longhole waterjet rotary cutting for in-seam cross panel methane drainage 被引量:5
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作者 LU Tingkan YU Hong DAI Yaohui 《Mining Science and Technology》 EI CAS 2010年第3期378-383,共6页
In order to improve the efficiency of gas drainage before and during longwall extraction,a waterjet rotary cutting system has been developed for in-seam cross panel methane drainage.The purpose of the water rotary cut... In order to improve the efficiency of gas drainage before and during longwall extraction,a waterjet rotary cutting system has been developed for in-seam cross panel methane drainage.The purpose of the water rotary cutting system developed was to create artificial fractures along the gas drainage boreholes.During the design of the system,it was perceived that the nozzle geometry is one of the key factors,affecting cutting capacity.Therefore,we studied the structural and geometric parameters of the nozzle and optimized its performance during laboratory tests and numerical simulation.Underground trials conducted in a coal mine,indicate that production of gas drainage before and after cutting significantly increased by up to three times.The advantages of waterjet assisted gas drainage method has been identified as:1) increasing gas drainage efficiency,2) a possible development of a gas drainage fractured network within coal seams associated with panel extraction,and 3) reducing the risk of exceeding gas limits during longwalling. 展开更多
关键词 gas drainage waterjet rotary cutting longhole LONGWALL
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MD simulation of nanometric cutting of copper with and without water lubrication 被引量:5
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作者 CHEN YunHui HAN Huang +1 位作者 FANG FengZhou HU XiaoTang 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第6期1154-1159,共6页
Three-dimensional molecular dynamics(MD)simulation was carried out to understand the mechanism of water lubrication in nanometric cutting.The water-lubricated cutting was compared with the dry cutting process in terms... Three-dimensional molecular dynamics(MD)simulation was carried out to understand the mechanism of water lubrication in nanometric cutting.The water-lubricated cutting was compared with the dry cutting process in terms of lattice deformation,cutting force,heat and pressure distribution,and machined surface integrity.It was found that water molecules effectively reduce the friction between the tool and workpiece,the heat in the cutting zone and the pressure being generated on the tool surface,thus leading to prolonged tool life.Water molecules also enlarged the pressure-affected area,which decreased the roughness of the machined surface. 展开更多
关键词 molecular dynamics cutting tools
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