本文列出了毛细管流变仪在各研究领域的应用文章摘要及关键词.
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01 毛细管流变仪研究高分子材料挤出和挤出胀大行为
摘要:The Rosand Capillary Rheometer can be used in conjunction with the lab and pilot scale extruders to formulate high quality polymer compound melts, and determine the acceptability of batches before they are used in production.
02 使用毛细管流变仪研究橡胶挤出行为
摘要:The Rosand Capillary Rheometer can be used in conjunction with the lab and pilot scale extruders to formulate high quality polymer compounds.
03 毛细管流变仪研究研究熔体破裂和流动不稳定性
摘要:The Rosand Capillary Rheometer can be used to help formulate polymer compounds that will not give melt fracture problems during extrusion, this can help to eliminate many pilot scale trials.
04 使用毛细管流变仪测量熔体强度、模拟纺丝工艺
摘要:The Rosand capillary rheometer and haul-off system is a versatile method of analysing small batches of polymers and compounds to determine their suitability for fibre spinning or other extensional viscosity dominated processes (thermoforming, blow moulding, film blowing, etc).
05 使用毛细管流变仪进行低速热降解测试
摘要:The Rosand Capillary Rheometer can be used to simulate thermal degradation processing. Evaluations of sample compounds can be made to optimise the dosing of anti-oxidants, lubricants and thermal stabilisers.
06 使用毛细管流变仪进行体积、压力和温度(PVT)测试
摘要:When samples are injection moulded it is very important to know the PVT properties of the melt, as some melts may be more compressible than others.
07 使用毛细管流变仪进行应力松弛实验
摘要:This test provides useful information about many materials, such as: the cross-linking behaviour of elastomers, melt compressibility of all materials, the elastic behaviour of polymers and compounds.
08 零口模测量拉伸粘度的方法
摘要:The Rosand Capillary Rheometer can be used in conjunction with the lab and pilot scale extruders to determine the best formulation for the process.
09 三种校正入口压力降的方法
摘要:When a sample is sheared through a capillary die, the dominant factor will be the shear viscosity. However, there will also be some pressure contribution from any extensional properties the sample may have.
10 Rosand毛细管流变仪剪切速率、剪切应力范围计算
摘要:This note is intended to give guidance on the shear rate, shear stress and pressure ranges of the Rosand series of capillary rheometers.