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1)  rubber discharging temperature
排胶温度
1.
This method could forecast the rubber discharging temperature, discharging time and so on.
该方法可预测密炼机排胶温度、排胶时间等。
2)  flue gas temperature
排烟温度
1.
New technologies to reduce boiler’s flue gas temperature;
降低锅炉排烟温度新技术
2.
Study and application of automatic control device for the flue gas temperature of utility boilers;
电厂锅炉排烟温度自动控制装置的研究与应用
3.
It calculates the relation ship between thermal efficiency of natural gas and flue gas temperature which is shown as curves.
用热力学理论和燃烧理论建立了天然气排烟温度与热利用率的计算模型,计算得出了天然气热利用率与排烟温度的关系曲线,可供实际工程参考。
3)  exhaust gas temperature
排烟温度
1.
Causal analysis of high exhaust gas temperature for 300 MW boilers and countermeasures;
300MW锅炉排烟温度偏高原因分析及对策
2.
Analysis and treatment of high exhaust gas temperature for 135 MW boiler;
135MW机组锅炉排烟温度高的原因分析与治理
3.
And the comprehensive influence of exhaust gas temperature and excess air ratio to the heat efficiency is analyzed quantitatively.
该预测模型定量分析了排烟温度、过量空气系数对热效率的综合影响,可帮助现场操作人员对变工况运行的结果进行提前预测,准确找出造成能量损失的部位,并合理调整运行参数,实现加热炉的安全、经济运行。
4)  waste-gas temperature
排烟温度
1.
Experimental analysis of high waste-gas temperature of DG1000/170-1 boilers;
DG1000/170-1锅炉排烟温度偏高的试验和分析
2.
15, improving the combustion condition and convection and radiate heat transfer efficacy, resuling in reducing the waste-gas temperature 45?℃, decreasing exhaust gas loss, and saving fuel by 6?%.
15以下,极好地改善炉膛内的燃烧状况和对流辐射传热效果,从而降低排烟温度45℃,减少加热炉排烟损失,节约了煤气量6%以上。
3.
The ideal operational value of waste-gas temperature is provided through combining the boiler s practical operation and the research of heat loss due to exhaust gas, which offers important theory and paves a solid way in optimizing boiler operation.
通过对排烟热损失的研究,并结合锅炉的实际运行情况,提出了排烟温度的运行目标值,此目标值的确定对于锅炉运行优化有着重要的理论基础。
5)  exhaust temperature
排气温度
1.
Research on intelligent detection of diesel engine exhaust temperature based on RBF NN;
基于RBF神经网络的柴油机排气温度智能检测方法的研究
2.
Experimental study on inverter compressor's exhaust temperature control by electronic expansion valve
电子膨胀阀对变频压缩机排气温度控制的实验研究
3.
Through analysis,we find that its ultimate reason is the engine in condition of higher exhaust temperature and smaller interior air flux.
试验数据表明:发动机改进设计后实测输出功率小于发动机设计计算功率,经过分析得出,验证机排气温度高,内涵空气流量小,是验证机输出功率小的根本原因。
6)  Discharge temperature
排气温度
1.
Analysis and experimental study on high discharge temperature of compressor for coil type freezer
盘管式冷冻柜压缩机排气温度过高问题的分析及试验研究
2.
The experimental results show that discharge temperature and specific power of compressor are influenced by oil-injected flow and oil cooling capacity.
实验结果表明,压缩机排气温度和比功率受到喷油量和油冷却量的影响。
3.
High discharge temperature and hot motor winding indicate compressors overheating.
排气温度过高和电机高温表明压缩机存在过热问题。
补充资料:排胶
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性质:又称排塑。排除陶瓷坯体中含有大量塑化剂和黏结剂的工艺过程。对不含或含有很少黏结剂的陶瓷坯体,可不排胶,直接烧成;但对压电陶瓷、铁电陶瓷,通常排胶工序是必要的,否则会因黏结剂分解形成大量碳或一氧化碳等还原气体,导致制品电性能恶化。200~500℃是黏结剂集中挥发阶段,应特别注意,以免炉内发生燃烧而引起制品开裂。为使排胶后的坯体具有足够的强度有两种方法:(1)低温排胶(一般低于500℃):排除绝大部分有机物,保留少量有机物,使坯体有足够强度。(2)高温排胶:一般在600℃以上的高温下保温一定时间后再停止加热。

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