• 举例说明差示扫描热技术大豆蛋白分析中的应用

    Moreover, the applications of differential scanning calorimetry in soybean proteins are also discussed.

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  • 自然气候条件复合材料宏观变化颜色变化进行分析,同时采用扫描量热技术学变化特征进行了分析。

    The weight and color change of wood plastic composites was analysed and the thermal characteristic was studied by using differential scanning calorimetry under natural weather.

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  • 通过测定扫描量技术(DSC)失重技术(TG)研究了有机金属化合物(OM E)二硝酰胺铵ADN)单元推进剂分解燃烧性能的影响

    The effect of organ-metallic compound OME on the combustion and thermal decomposition of ammonium dinitramide (ADN) was investigated by burning rate measurement, DSC and TG.

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  • 通过测定扫描量技术(dsc)失重技术(TG)研究有机金属化合物催化剂(ome)六硝基六氮杂异伍兹烷(HNIW)单元推进剂分解燃烧性能的影响。

    Catalyst of the organo-metallic compound (OME) on the combustion and thermal decomposition of HNIW monopropellant was investigated through burning rate measurement, DSC and TG thermal analysis.

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  • 利用红外光谱差示扫描量热分析技术改性树脂结构固化反应过程进行了研究。

    The structure and curing of the modified phenol resin were investigated by means of IR spectra and DSC methods.

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  • 同时还应用X射线散射技术扫描量热仪等观测结构弛豫的手段测人工时效样品相应现象

    The corresponding phenomena after the specimen was aged artificially was studied with the small Angle X-ray scattering and DSC, which are suitable for observing structure relaxation.

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  • 采用扫描热技术(TG - DSC)对改性前后沥青行为进行分析。

    Thermal behavior of modified coal tar pitch was analyzed with thermogravimetric and differential scanning calorimetry (TG-DSC).

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  • 采用磁共振( NMR)、X衍射仪、 扫描量热法( DSC)、凝胶渗透色谱( GPC)等分析技术共聚聚丙烯PPR管材专用结构性能进行研究,并且国外料进行了对比

    Structure and properties of the special random copolymer of propylene(PPR) for pipe were studied by NMR, XRD, DSC and GPC and compared with imported samples.

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  • 采用红外光谱、差示扫描法和粉末X射线衍射技术研究酒石酸唑吡坦原料药的多晶型问题。

    Its structure was characterized by X-ray powder diffraction, elemental analysis, high performance liquid chromatography, and differential scan calorimetry.

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  • 采用红外光谱、差示扫描法和粉末X射线衍射技术研究酒石酸唑吡坦原料药的多晶型问题。

    Its structure was characterized by X-ray powder diffraction, elemental analysis, high performance liquid chromatography, and differential scan calorimetry.

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