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处理温度

"处理温度"的翻译和解释

例句与用法

  • In this paper , a novel method for synthesis of zno colloidal spheres is presented . in addition , we have proposed a tunable pc , in which the pbg can be tuned as desired by controlling parameters such as zno colloidal spheres size and temperature
    利用胶体自组装法制备了zno光子晶体,并通过控制反应温度、溶液a用量、胶体悬浮液的浓度、前处理温度、基片洁净度等因素,可以实现对zno光子晶体的可控生长。
  • Both germinating seeds and seedlings of variety youdonger can be induced to flowering after 10 - 30 days at either 4 ? or 8 ? . the lower the temperature was , and the longer the treatment duration was , the bigger the plant treated was , the better the promoting effects were
    萌动种子和幼苗在4和8条件下处理10 - 30天均可诱导油冬儿白菜开花,而且处理温度越低,时间越长,接受低温的植株越大,诱导开花的效应就越明显。
  • 3 . based on the gel time and dsc curve figure of two kinds of modified phenolic resin and flory and kissinger theory , the rage of cure process parameters for the resin system , moulding pressure and resin content are established
    3 、通过对二种改性酚醛树脂体系凝胶时间、 dsc曲线图的分析,引入flory理论、 kissinger理论,确定了树脂体系的固化工艺参数(固化温度、固化时间、后处理温度)范围;并初步确定了成型压力和树脂含量的范围。
  • The method of transforming temperature and pressure data by ad7713 is introduced and the means of connecting to the quart pressure transducer is discussed in this paper also . it has been proved that this new kind of telemetry tool is feasible and can be put into use
    本文还探讨了采用模数转换器ad7713处理温度和压力信号的方法,并进行了验证,研究了通过石英晶体压力计高频输出信号计算压力频率的方法,并提出了新型遥传仪器连接石英晶体压力计的方案。
  • The important results and innovations are as follows : 1 . anodic oxide films are treated with galvanization in monobasic ammonium phosphate ( adp ) solution . the effects of technologic parameters , including concen - tration and temperature of adp solution and galvanizing time on rising time of anodic oxide films are discussed
    论文的主要内容及创新性研究归纳如下: 1 .将化成箔置于磷酸二氢铵( adp )溶液中进行加电处理,探讨了adp的溶液浓度、处理温度和处理时间对氧化膜升压时间的影响,并找到其最佳工艺参数。
  • 4 . the optimistic resin system and the effect of resin content on the targets performance are discussed by orthogonal experiments , based on which , the moulding process parameters such as temperature , pressure , cycle and post - cure temperature are designed optimistically
    4 、通过正交试验确定了最佳树脂体系,确定了含胶量对靶板性能的影响,在选定基体材料基础上,通过正交试验分析,对复合材料成型工艺参数如:成型温度、成型压力、成型时间、后处理温度进行了优化设计,确定了体系的最佳成型工艺参数。
  • The transmission spectra and reflectance spectra of the pc shift systematically with the spheres size , providing evidence of photonic crystal effects . photoluminescence measurements show efficient emission of the zno photonic crystals in the uv as well as a defect emission band at longer wavelength
    利用透射光谱及反射光谱研究了影响zno光子晶体的光子禁带的工艺参数;利用x射线衍射仪分析了zno光子晶体的结晶和取向性能;利用荧光分光光度计,研究了不同前处理温度下的zno光子晶体的光致发光谱。
  • This paper discusses the acid rinsing process in flax tow pre - treatment technology , and compares the influence degree among the three factors which are acid concentration , processing temperature and time in acid rinsing process by means of the unifactor experiment and orthogonal experiment , finally decides the optimized process
    摘要对亚麻短纤前处理工艺中的预酸处理工序进行了研究,采用单因子实验及正交实验,比较酸浓度、处理温度、处理时间对预酸处理效果的影响程度,并得出最佳处理工艺。
  • In - diffusion of nitrogen during rtf was affected by rtf temperature , time , and thickness of wafer etc . . it was estimated that the diffusion coefficient of nitrogen in silicon at 1250 ? was 4 . 6 x 10 " 5 cm2 / s . it is concerned that during the rtf at high temperature nitrogen atoms and vacancies may react to generate niv2 complexes that could diffuse very fast in silicon
    我们还研究了rtp处理温度、时间以及硅片厚度对氮内扩散的影响,并推算出rtp处理过程中氮的内扩散系数高达4 . 6 10 ~ ( - 5 ) cm ~ 2 s ,比氮对的扩散速度还要大一个数量级,我们认为可能是由于氮和空位形成了具有较大扩散速度的复合体所致。
  • The iron covered silicon powder was fabricated separately by the milling method and the mixing method . treated separately at 500 , 600 , 700 , 800 , 900 and 1000 for 1 minute , the iron silicon alloy bulk was attained . it also found that the density of the bulk was enhanced by the boost of the treated temperature
    实验分别采用球磨法和混料法制备铁硅包覆粉末,采用放电等离子烧结技术分别在500 , 600 , 700 , 800 , 900 , 1000保温一分钟进行处理,得到铁硅合金块体,研究发现,随着处理温度的提高,块体的致密度随之增加,显微结构的分析表明,块体基本保持了包覆粉末原始自然状态。
  • 更多例句:  1  2  3
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