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首页> 外文期刊>Transactions of the ASABE >GLASS TRANSITION TEMPERATURE OF RICE KERNELS DETERMINED BY DYNAMIC MECHANICAL THERMAL ANALYSIS
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GLASS TRANSITION TEMPERATURE OF RICE KERNELS DETERMINED BY DYNAMIC MECHANICAL THERMAL ANALYSIS

机译:动态力学热分析法测定水稻籽粒的玻璃化转变温度

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摘要

A protocol was developed to measure the glass transition temperature (T g ) of brown rice kernels using dynamic mechanical thermal analysis (DMTA). In order to accommodate the sample requirements of the dynamic mechanical thermal analyzer and prevent moisture loss during experiments, kernels were first wrapped with a thin layer of parafilm and then a thin layer of aluminum foil. The wrapped kernels were then filed at both ends with fine sandpaper to produce 3 mm long rice cylinders with parallel ends. The dynamic mechanical properties of brown rice kernels were determined over a temperature range of -40°C to 120°C. During each DMTA test, the onset temperature of glass transition was measured as the T g of a brown rice kernel, since moisture diffusion and other physical properties begin to change drastically above the onset temperature. No dramatic changes in both the storage modulus (E’) and the loss modulus (E”) of brown rice kernels were found around T g , indicating that relaxation of the amorphous phase of the rice kernel was quite limited. However, E”/E’ (tan d ) showed a much better transition for brown rice kernels, and thus the E”/E’ vs. temperature curves were used to determine T g values of rice kernels. It was found that the T g values of rice kernels decreased linearly with increases in moisture content (MC) within the tested range. The T g of rice kernels was not affected by variety
机译:使用动态机械热分析(DMTA),开发了一种协议来测量糙米仁的玻璃化转变温度(T g )。为了适应动态机械热分析仪的样品要求并防止实验过程中的水分流失,玉米籽粒首先被一层石蜡膜包裹,然后被一层铝箔包裹。然后将包裹的果仁在两端用细砂纸打磨,以生产出3毫米长,两端平行的米筒。在-40°C至120°C的温度范围内测定糙米粒的动态力学性能。在每个DMTA测试中,玻璃化转变的起始温度均以糙米仁的T g 来衡量,因为水分扩散和其他物理特性在起始温度以上开始急剧变化。在T g 附近未发现糙米粒的储能模量(E’)和损耗模量(E”)均发生显着变化,这表明稻米无定形相的弛豫相当大。有限。然而,E“ / E'(tan d)显示出糙米粒更好的转变,因此,E'/ E'与温度的关系曲线用于确定稻粒的T g 值。发现在测试范围内,稻米的T g 值随水分含量(MC)的增加线性降低。水稻籽粒的T g 不受品种变化的影响

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