| 1. | Start temperature preheating temperature 开始预热温度 |
| 2. | Defrost start temperature 化霜启动温度 |
| 3. | Fan start temperature 风机启动温度 |
| 4. | Refer processing conditions section of this web site for recommended starting temperatures 参照本网站的成型条件区作为建议的起始温度。 |
| 5. | Refer to processing conditions section of this web site for recommended starting temperatures 参照在网站上建议的成型条件区作为建议的起始温度。 |
| 6. | After a program memory is selected , the firing chamber temperature is automatically set to the starting temperature , so that the austromat 选择了程序储存器之后,焙烧室温度自动调整到开始温度值-所以austromat |
| 7. | In other words , the defrosting calculagraph begins to time when the outdoor machine temperature is lower than defrost start temperature , and turns on the defrosting when the value of time reaches defrost start time 即当外机温度低于“化霜启动温度”时化霜计时器开始计时,当计时值达到“化霜启动时间”则启动化霜。 |
| 8. | The calculagraph will be cleared if the outdoor machine temperature is higher than defrost start temperature when timing , and it begins to time again when the outdoor machine temperature is lower than defrost start temperature next time 在计时过程中如果外机温度高于“化霜启动温度”则清除计时器,到下次外机温度降低到“化霜启动温度”以下时从头开始计时。 |
| 9. | The controller first detects the temperature of outdoor machine when it begins to heat . if it is lower than defrost start temperature , the controller will first turn on defrosting , then turn on heating after defrosting ends . in addition , the controller will supervise the temperature of outdoor machine when heating normally , and decide whether need to defrost according to the time of the outdoor machine in the continuous low temperature state 控制器在开始制热时先检测外机温度,如果低于“化霜启动温度” ,则先启动化霜,待化霜结束后再启动制热另外在正常制热过程中,不断监测外机温度,根据外机处在连续低温状态的时间来判断是否需要化霜。 |
| 10. | Based on experimental data , the bp model is built , which reflects the relationship between the mechanical properties , phase transformation points of material and its composition , micro - structure . hardenability curves , alloy composition , austenite temperature , martensite start temperature and yield strength are predicted by means of artificial neural network technology 本研究在实验数据的基础上,采用反向传播算法( bp算法)建立了反映合金成分-组织-性能之间的定量关系的网络模型,并利用所得到的模型,分别对淬透性曲线、合金成分、力学性能、相变点进行分析和预测。 |