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1)  Mesospheric temperature
中间层温度
2)  interpass temperature
层间温度
1.
Preheat and interpass temperature were determined,the welding material was choosen,the relevant process parameters,the welding procedure and the heat-treatment procedure were worked-out.
研究了T91与10CrMo910钢的异质焊接工艺,确定出预热和层间温度,选择了焊接材料,制订出相应的工艺参数和焊接、热处理工艺。
2.
The influence of welding heat input and interpass temperature on the impact value of the welded joint -30℃temperature are analyzed.
分别就焊接线能量、层间温度变化对焊接接头的-30℃冲击韧性的影响进行了试验,并用光学显微镜和电子显微镜观察了接头组织。
3.
In this paper,it adopts process actions,such as preheating,controlling heat input and interpass temperature,post-heat and slow cooling and it makes use of relative detecting method to impect the guality in low temperature welding.
通过采取焊前预热、控制焊接线能量和层间温度、焊后保温缓冷等工艺措施,并采用相应的检测方法,保证了胺液吸收塔的低温焊接质量。
3)  interlayer temperature
层间温度
1.
According to the test,the welding interlayer temperature of X60 pipeline in the normal and low temperature is analyzed in order to study the influence of its variable range on welding quality.
针对涩北至格尔木天然气管道复线建设中采用的X60管线钢,根据试验,分析了常温与低温焊接时层间温度变化对管口焊接质量的影响,并指出了防止涩格天然气管道焊接产生冷裂纹的工艺措施。
4)  Inter-temperature
中间温度
1.
The paper chooses a regenerative cycle with a liquid injection applied in air-conditioning system,and analyzes the performance of Two-stage compression cycle and the choose of optimum inter-temperature.
本文选择一级节流中间不完全冷却双级压缩循环应用在空调器中,分析了 R410A 双级压缩循环性能以及最佳中间温度的选取,对该循环应用提供基础数据。
2.
The paper chooses a system with one evaporator and two compression stages with dry suction in high pressure compressor, and analyzes the performance of two-stage compression cycle and the choose of optimum inter-temperature.
本文选择一级节流中间不完全冷却双级压缩循环应用在空调器中,分析了R410A双级压缩循环性能以及最佳中间温度的选取,对该循环应用提供基础数据。
5)  central layer's temperature
中心层温度
6)  intermediate point temperature
中间点温度
1.
Control strategies for the superheat degree of intermediate point temperature in ultra-supercritical power units;
超(超)临界机组中间点温度过热度控制策略
2.
Based on the actual operation data of a 600 MW supercrifical once-through boiler,mathematic model of the intermediate point temperature was constructed by reversed modeling method.
以超临界直流锅炉中间点温度为例,利用某600MW超临界机组的实际运行数据,采用反向建模方法建立了该参数的数学模型。
补充资料:涂中间层
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性质:是在底漆与面漆之间涂施二道浆、封闭层或喷用腻子等中间涂层的涂装作业。其目的是保护底漆和腻子层,以免为面漆咬起,增加底漆与面漆的层间结合力,消除底涂层的缺陷和过分的粗糙度,增加涂层的丰满度,提高涂层的装饰性和保护性。适用于装饰性要求较高的涂层。

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