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1)  synthesis temperature
合成温度
1.
Influence of synthesis temperature on polycrystalline diamond
合成温度对聚晶金刚石的影响
2.
In order to obtain the best synthesis temperature of β-eucryptite, samples were synthesized at 1310℃, 1350℃ and 1400℃ with pressed raw block.
为了研究合成β-锂霞石的最佳合成温度,对压成的生料块分别在最高合成温度为1310℃,1350℃,1400℃下进行合成,通过对比不同合成温度下得到的样品X射线衍射图,从而确定出采用直接烧结法合成β-锂霞石的最佳合成温度,并通过研究β-锂霞石的结构特征,解释了其负热膨胀机理。
3.
In order to obtain the best synthesis temperature of cordierite by the method of direct sintering, samples were synthesized with pressed raw blocks respectively at controlled temperatures of 1310℃,1350℃ and 1400℃.
为了研究采用直接烧结法合成堇青石的最佳合成温度,对压成的生料块分别在最高合成温度为1300℃,1350℃,1400℃下进行合成,通过对比不同合成温度下得到的样品X射线衍射图,确定出采用直接烧结法合成堇青石的最佳合成温度
2)  synthetic temperature
合成温度
1.
Effect of synthetic temperature on structure and properties of poly(N-isopropylacrylamide) gels;
合成温度对PNIPAm水凝胶结构与性能的影响
2.
The effect of synthetic temperature on the crystal forms, the initial hydration activity,the composition of hydration products and the paste strength of belite are studied by methods of XRD.
本文应用XJID、SEM、DTA、DTG等测试手段,研究了掺入少量组分条件下,合成温度对贝利特晶型、初期水化活性、水化产物组成及其浆体强度的影响。
3.
A series of B-Ca compounds were hydrothemally synthesized by changing the B/Ca molar ratio, synthetic temperatures and with the raw materials such as boric acid, borax and calcium oxide.
采用硼酸、硼砂和氧化钙做起始原料,主要通过改变硼钙比和合成温度,在水热条件下合成了系列硼钙化合物。
3)  synthesizing temperature
合成温度
1.
The effects of synthesizing temperature,compounds and reaction time on phase formation,morphology and particle sizes were investigated.
研究了合成温度、熔盐含量和保温时间对粉体颗粒形貌和尺寸的影响。
2.
Based upon the thermodynamic analysis of diamond crystal's nucleation, the effect of synthesizing temperature and pressure on the diamond crystal's nucleation, growth and synthesizing results (diamond crystal's output of every time, particle size and strength) has been discussed.
在考虑了晶胚曲面引起的附加压力而产生的自由能变化的情况下,对金刚石形核过程热力学进行了分析,在此基础上,就合成温度、压力对金刚石的形核、生长速度及最终合成效果(单产、粒度和强度)影响分别进行了分析和讨论。
3.
The calculated results showed that with the elevated synthesizing temperature, the samples show higher crystallinity and more compact and stable structure.
采用固相合成法在不同温度制度下合成掺杂碳的LiFePO4正极材料,计算出各样品的结构参数并对各样品进行电化学测试·结构参数的计算结果表明:合成温度升高,样品的结晶程度更好,结构更紧凑,更趋稳定·电化学测试结果说明:700℃合成的产物具有良好的电化学性能,在0 1C倍率下放电,其室温初始放电容量为140 4mAh/g,循环10次后容量衰减较小·此条件合成的LiFePO4放电容量与目前工业化生产的LiCoO2相当,具有良好的应用前景
4)  synthesis hot spot temperature
合成热点温度
5)  Synthesized temperature
燃烧合成温度
6)  powder synthesis temperature
粉体合成温度
1.
Effect of powder synthesis temperatures on the dielectric properties of SrBi2Ta2O9 ceramic was investi-low as possible in order to improve the dielectric properties.
利用五氧化二钽(Ta2O5),碳酸锶(SrCO3)和三氧化二铋(Bi2O3)等原料,采用传统的粉体固相合成方法,在不同温度800,900,1 000℃和1 100℃合成钽酸锶铋粉体,研究粉体合成温度对钽酸锶铋陶瓷介电性能的影响。
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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