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1)  round robin
循环制
1.
In the face of its prominent and inevitable conflicts,the further improvement of play order in round robin was discussed.
循环制是对抗性竞赛的支柱性竞赛方法。
2)  Cycle refrigerator
循环制冷
3)  Cyclic Pressing
循环压制
1.
Spray formed large dimension 7075/SiCp composite was densified by cyclic pressing.
采用循环压制工艺对多层喷射沉积大尺寸7075/SiCp复合材料(高度H>140mm)进行了致密化加工。
2.
Large dimensional spray formed 7075/SiCp composite and extrusion billet were densified by cyclic pressing.
研究了多层喷射沉积大尺寸7075/SiCp复合材料的沉积坯和挤压坯两种坯料经过循环压制加工后SiC颗粒的分布,测试了复合材料循环压制后的力学性能,通过拉伸断口SEM形貌分析了复合材料的断裂行为。
4)  circulating control
循环控制
1.
Analysis on circulating control characteristic of open to air check valve for high pressure feed-water system;
高压供水系统空排止回循环控制阀组特性分析
5)  cycle braking
循环制动
1.
Based on the brake characteristic of water-cooling disc brakes during going down,the FEM model of thermal analysis during cycle braking is established.
基于盘式刹车在下钻过程中的制动特性,建立了水冷式刹车盘下钻过程中循环制动的有限元分析模型。
2.
The temperature and stress field of wagon wheel under the condition of long ramp way cycle braking in Daqin line have been simulated by using FEM and axial symmetry model.
采用轴对称模型和有限元方法,模拟了大秦线长大坡道循环制动条件下货车车轮温度和应力场,结果表明车轮高应力区出现在辐板上,现行制动条件下车轮强度满足使用要求。
6)  cycle control
循环控制
1.
Application of Single Transducer Cycle Control on Water Supply System at Constant Pressure;
单变频器循环控制在水厂恒压供水中的应用
2.
For the spark-ignition LPG-methanol engine whose electronic-controlled injection was done in the inlet,the cycle injection quality ratio of LPG-methanol,the injection timing of LPG lagging behind methanol,and the influence of ambient temperature on cold start performance were researched on the base of cycle control method.
针对进气道电控喷射点燃式LPG—甲醇发动机,基于循环控制方法研究了LPG与甲醇循环喷射量质量比、LPG迟后甲醇喷射时刻和环境温度对LPG—甲醇发动机冷起动性能的影响。
3.
In the application of PLC Technology, the frequent faults in the program design of PLC time sequence and cycle control are that sequence act and cycle control controlled by TIM can′t be implemented.
PLC技术应用中 ,时间顺序循环控制程序设计经常出现的错误是 :不能实现TIM控制的顺序动作和循环控制。
补充资料:循环制碱法
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性质:又称侯氏制碱法,循环制碱法或双产品法。由合成氨厂提供氨和二氧化碳,以食盐为原料生产纯碱和氯化铵。将氨通入饱和盐水中,制成氨盐水,加入碳(酸)化塔中,同时通入二氧化碳在塔内进行碳酸化反应,生成碳酸氢钠,煅烧后得纯碱产品。分离碳酸氢钠后的母液富含氯化铵,经过加氨、降温(至10~15℃)冷却析出一部分氯化铵结晶,再加入固体食盐进行盐析,可使绝大部分氯化铵结晶析出,经过滤、分离、干燥,并加入抗结块剂即得产品氯化铵。残留氯化钠的母液送回盐水精制系统循环使用。此法是氨碱法的重大改革,利用合成氨系统排出的二氧化碳,可以省去庞大、耗能的石灰窑,也可以取消氨碱法中所用的蒸馏设备,同时获得两种工农业需要的产品-纯碱和氯化铵。但此法腐蚀比氨碱法严重。早期由德国蔡安(Zahn)公司开发的蔡安制碱法也属于联合制碱法。

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