安東帕(上海)商貿(mào)有限公司
主營(yíng)產(chǎn)品: 在線分析儀,生化分析儀,電位器,電位測(cè)定儀,液體密度計(jì),玻璃密度計(jì) |
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公司信息
流變光學(xué)測(cè)量
2009-3-31 閱讀(418)
提 供 商 | 安東帕(上海)商貿(mào)有限公司 | 資料大小 | 0K |
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資料類型 | 未傳 | 瀏覽次數(shù) | 418次 |
【詳細(xì)說(shuō)明】小角光散射,顯微攝像技術(shù)結(jié)合流變測(cè)量
The Small Angle Light Scattering (SALS) system enables the simultaneous determination of structural information and rheological data. Purely rheological methods provide information on the macroscopic behavior of the samples. That means a rheometer can be used to determine macroscopic material functions. However, the macroscopic behavior of a substance is strongly dependent on its microscopic structural parameters. Information on the microstructure is often helpful for a better understanding of the rheological behavior. SALS is one of the most widely used techniques for obtaining structural information and rheological data simultaneously.
The Rheo-Microscope is an accessory for the Physica MCR rheometers from Anton Paar which enables the visualization of the inner structure of samples simultaneous to the rheological measurements. By combining light microscopy and rheology the influence of shear and deformation forces on the sample structure can be visualized. Structural parameters can be studied simultaneous to rheology.
The Small Angle Light Scattering (SALS) system enables the simultaneous determination of structural information and rheological data. Purely rheological methods provide information on the macroscopic behavior of the samples. That means a rheometer can be used to determine macroscopic material functions. However, the macroscopic behavior of a substance is strongly dependent on its microscopic structural parameters. Information on the microstructure is often helpful for a better understanding of the rheological behavior. SALS is one of the most widely used techniques for obtaining structural information and rheological data simultaneously.
The Rheo-Microscope is an accessory for the Physica MCR rheometers from Anton Paar which enables the visualization of the inner structure of samples simultaneous to the rheological measurements. By combining light microscopy and rheology the influence of shear and deformation forces on the sample structure can be visualized. Structural parameters can be studied simultaneous to rheology.