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1)  Pneumatic to bacco feeding system
风力送丝系统
2)  Pneumatic feeding of cut tobacco
风力送丝
1.
To solve the problems of cut tobacco higher breakage rate in the process of pneumatic feeding and the loss of perfume composition,the wind compensation devices for pneumatic feeding of cut tobacco were added in the feeding machines pipes,to ensure the wind in all pipes with the same speed,so the rate of loose end cigarette was reduced,and the cigarette quality was improved.
为了解决风力送丝过程中烟丝的造碎率高以及水分、香精香料损失的问题,采用机电结合,在风力送丝系统的送丝管道上增加风力补偿装置,从而保证了送丝过程中各台机组风速平稳一致,使烟支空头率得到降低,提高了卷烟质量。
3)  air tobacco supply
风力送丝
1.
During the equipment for being transported from different place to get reformed in ShenZhen Cigarette factory,The original carrier tobacco supply for GD121 Maker will be replaced by the air tobacco supply,Xuchang Tobacco Machinery Co.
深圳卷烟厂设备在异地搬迁改造中,将原来为GD121型卷烟机配套的小车送丝供料,改为风力送丝供料,委托许昌烟机公司设计开发与GD121型卷烟机配套的风力送丝落料器。
4)  pneumatic conveyer system of cut tobacco
气力送丝系统
1.
In the pneumatic conveyer system of cut tobacco in the cigarette making plant, the pressure of air stream fluctuates with continuous variation of the resistance of the pipeline.
在卷烟厂气力送丝系统中 ,由于管道阻力不断变化引起的输送气流压力波动 ,采用传统的PID控制方法难以获得满意的效果。
5)  wire feeder
送丝系统
1.
Due to the low response speed and controllability,high action noise,short longevity of service,low power factor,the present widely used wire feeder with silicon controlled rectifier can not well fulfill the requirements for high quality GMAW.
采用特制的高频可逆调速电机驱动电路配合低惯量的印刷电机,研制了一种适用于GMAW(熔化极气体保护焊)焊接电源的新型可逆调速送丝系统。
6)  wire feeding system
送丝系统
1.
Research on digital control wire feeding system based on ARM and μC/OS-Ⅱ;
基于ARM和μC/OS-Ⅱ的数字控制送丝系统的研究
补充资料:风力/阳光发电系统


风力/阳光发电系统
wind/photovoltaic system

  风力/阳光发电系统(wind/photovoltaiesystem)风力发电机与太阳电池组成的供电系统。其结构如图所示。由风力发电机及太阳电池输出的直流电皆向蓄电池充电.再由蓄电池输出恒压直流电供直流负载或经逆变器转换为交流电供交流负载。 风能、太阳能都具有能量密度低、稳定性差的弱┌─┐ │ │ ┌────┐└─┘ │.蓄电池 │ └────┘ ┌───┐ │电阻性│ │电热器│ └───┘ 风力/阳光发电系统点,并受地理分布、季节变化、昼夜变化等因素的影响。中国属于季风气候区,冬春季节风力强,太阳辐射弱;夏秋季风力弱,太阳辐射强,两者能量变化趋势相反,风力/阳光发电系统利用能量互补的特性,可输出比较稳定的电能,并增加供电的可靠性。风力/阳光发电系统中风力发电机、太阳电池阵列及蓄电池的容量可根据风能、太阳能变化规律及负载变化规律得出。 (王承胶)
  
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