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temperature controlling
相关语句
  温度控制
    The System Design of Intelligent Temperature Controlling by Computer
    智能温度控制系统
短句来源
    Quenching Medium and Temperature Controlling of GCr15 Tapered Roller
    GCr15圆锥滚子淬火介质和温度控制
短句来源
    THE REMOVE AND APPLICATION VALUE OF NEW TYPE HEAT TREATMENT FURNACE CONSTRUCTION HEAT SUPPLY METHOD, HEAT CURRENT AND TEMPERATURE CONTROLLING METHOD
    新型热处理炉结构、供热方式、热流和温度控制方式的变革及应用价值
    3. Modularization compile system software, divided in terms of function, itcontained sampling and converting, interface of human machine, system setup, parameters backup, online communication and temperature controlling module.
    3.模块化设计系统软件,根据各个模块的功能划分,包括采样转换、人机对话、系统设置、参数备份、联机通讯、温度控制等模块。
短句来源
    (3) Decreasing the extruding temperature, controlling the outlet operating temperature between 490~ 510 ℃ and enforcing the outlet quenching can improve the welding mark situation.
    (3)适当降低挤压温度,出口温度控制在490~510℃,加强出口淬火强度,抑制晶粒粗大,有利于焊合线条纹的改善。
短句来源
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  “temperature controlling”译为未确定词的双语例句
    A Computer Testing Systeme for Grinding Temperature Controlling
    磨削温度计算机检测系统
短句来源
    New Research on Furnace Temperature Controlling System
    炉温控制系统新研究
短句来源
    Reforming of temperature controlling system for die-casting machine
    低压铸造机控温系统的改进
短句来源
    A MAC-6 ceramet tube is used as the protection sheath for NiCr-NiSi thermocouple and MICRO 761 controler as the temperature controlling system for melting copper in a low frequency furnace with two coutrolling modes adopted.
    低频熔铜电炉测温自动控制系统采用了MAC-6金属陶瓷管作为保护的镍铬-镍硅热电偶为一次仪表,以及MICRO761控制器,并用两种不同控制方式控制铜熔液的温度。
短句来源
    According to the practical condition of the control cooling on a plate mill,19 kinds of model of temperature predicting and their self-learning models have been regressed for the different gauges and temperature controlling sections.
    结合某中板厂的水冷工艺用模拟计算方法,分规格、分控制阶段回归出19个温度预报模型和其自学习模型;
短句来源
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  temperature controlling
Average strengths in tension of 2.75×109 N/m2 (400×103 lb f/in.2) are reported using this temperature controlling method compared with 2.5×109 N/m2 (360×103 lb f/in.2) for similar diameter material grown using a constant power mode system.
      
A melt temperature controlling device, dependent on the infra-red emitted from the melt area at which the filament is withdrawn, was developed and used to grow filament of constant diameter in the growth rate range 2.5 to 7.5 cm/min.
      
In the developed model, the optimization module of the water distribution of secondary cooling zone was established according to the metallurgical criterion for billet and target temperature controlling principle.
      
In order to achieve that some modifications on temperature controlling and measunng systems have been introduced.
      


The problem concerned ferritic stainless steel grain boundary corrosion during fusion welding has not yet been fully understood at present and researchers concerned the problem are further researching.Based on a number of references, this article deals with the phenomenon in ferritic stainless steel grain boundary corrosion, the sensitization of ferritic stainless steel and effect of carbon and alloy elements.Also, it argues theories in sub stable phase solution and sub-stable deposit phase and deposit phase...

The problem concerned ferritic stainless steel grain boundary corrosion during fusion welding has not yet been fully understood at present and researchers concerned the problem are further researching.Based on a number of references, this article deals with the phenomenon in ferritic stainless steel grain boundary corrosion, the sensitization of ferritic stainless steel and effect of carbon and alloy elements.Also, it argues theories in sub stable phase solution and sub-stable deposit phase and deposit phase stress and poor chromium.It notes the difference between ferritic and austenitic stainless steels in explanation based on poor chromium theory as well as the problems of foregoing theories are noted.Finally, considerations based on sensitization temperature controlling and the quantity of alloy elements and the method of using the polarization curve to design corrosion-resistant alloys, the preventive measures of grain boundary corrosion in ferritic stainless steel during fusion welding are presented.

关于铁素体不锈钢熔化焊晶间腐蚀的问题,目前尚缺少统一的看法,对这一问题各国研究者都在作进一步的探讨。 本文综合了国内外大量的参考文献,系统地论述了铁素作不锈钢熔化焊晶间腐蚀的现象,铁素体不锈钢的敏化,碳和合金元素的影响;论述了亚稳相溶解理论、亚稳沉淀相理论、沉淀相应力理论及贫铬理论;并指出了铁素体不锈钢与奥氏体不锈钢在应用贫铬理论解释上二者的差异以及各种理论的不足之处。 最后,从敏化温度的控制,合金元素的添加量等方面,提出了防止铁素体不锈钢熔化焊晶间腐蚀的措施。

This paper deals with the software and hardware designing and its characteristics of the controlling system TPCS-1 for tungsten bars furnace by microcomputer. The precision of the controlling system is±0.2% FS, so this system is stable and easy to operate and simply programming. It can be automatically linked up from open loop into closed loop controlling smoothly. It has overtemperature and trouble alarm, printing record and large screen display. When the measuring system of temperature is in trouble, it can...

This paper deals with the software and hardware designing and its characteristics of the controlling system TPCS-1 for tungsten bars furnace by microcomputer. The precision of the controlling system is±0.2% FS, so this system is stable and easy to operate and simply programming. It can be automatically linked up from open loop into closed loop controlling smoothly. It has overtemperature and trouble alarm, printing record and large screen display. When the measuring system of temperature is in trouble, it can maintain the furnace at the same temperature as that before the trouble occurs so that the furnace is still in good service. This system has solved the problem of temperature controlling for high temperature sintering furnaces by computer. Furthermore, this system is suitable not only for high temperature tungsten bars furnaces, but also for intermediate frequency furnaces and medium and small power furnaces.

本文介绍了TPCS-1型钨棒炉程序控温系统的软、硬件设计及其特点。该控温系统的精度为±0.2%FS,且运行可靠,编程简单,容易操作。系统具有从开环控制过渡到闭环控制自动拟合的功能。有温度越限和故障报警及打印记录和大屏幕显示。当系统的测温部分发生故障时,系统能保持在故障发生前的控制参数上,保护炉子不致损坏,解决了高温烧结炉的计算机控制问题。另外,该系统不仅适用于高温钨棒炉,而且也适用于中频炉和中、小功率的炉温控制。

A MAC-6 ceramet tube is used as the protection sheath for NiCr-NiSi thermocouple and MICRO 761 controler as the temperature controlling system for melting copper in a low frequency furnace with two coutrolling modes adopted.

低频熔铜电炉测温自动控制系统采用了MAC-6金属陶瓷管作为保护的镍铬-镍硅热电偶为一次仪表,以及MICRO761控制器,并用两种不同控制方式控制铜熔液的温度。

 
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