• Studied the fissuring of rough rice after drying and storage process.

    研究水稻干燥后存放过程中的应力裂纹规律

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  • However tempering properly after drying can reduce fissuring occurrence.

    干燥可以减少裂纹的发生

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  • The fissuring of rice is more likely to be initiated at the center of the kernel.

    水稻颗粒中心首先形成应力裂纹可能性最大。

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  • Drying wet rice rapidly and soaking or rewetting dry rice kernels imperatively results in severe fissuring.

    潮湿米粒快速干燥干燥籽粒浸水回潮均会产生严重的裂纹

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  • Relative humidity changes have much greater effect on rice fissuring than that of temperature of environment.

    外界环境相对湿度变化温度变化对裂纹生成作用

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  • The rice resistance to fissuring is controlled by the physical characteristics and chemical composition of the grains.

    水稻籽粒自身裂能力与其物理性状化学成分有关。

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  • The crack appears at the edge angle due to stress concentration caused by alternating load, which finally leads to the fissuring of die plate.

    使用过程中,由于交变载荷作用,使碳化物的棱角处应力集中出现裂纹最终导致凹模开裂。

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  • Handling moisture content of rice kernels reasonably during produce? Process and storage may decrease fissuring and in crease head rice yield.

    生产加工贮藏过程中通过合理处理稻米水分含量减少裂纹发生,提高碾米品质。

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  • The law of the paddy fissuring during the process of drying process, storaging after drying and in the moisture adsorbing environment was studied.

    研究稻谷干燥过程中、干燥后存放湿过程中的应力裂纹规律。

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  • And properly controlling the moisture content of rice kernels during rice production, milling and storage may decrease fissuring and increase head rice yield.

    生产加工贮藏过程中,通过正确调节稻米水分含量减少裂纹发生,提高稻米的加工品质。

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  • It is concluded that the rough rice may be fissured after drying or during moisture adsorption. Through the experiments, the rough rice fissuring mechanism has been studied.

    因而可以推断干燥过程不是水稻应力裂纹形成的主要阶段,其应力裂纹的形成主要出现在干燥结束后吸湿过程中。

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  • It has been found that the pore characteristics of lump coal mainly depend on degree of coalification, types of macerals, content of inorganic matters and intensity of fissuring.

    研究表明:孔隙特征主要取决于煤化程度显微煤岩组份、矿物质含量断裂破坏强度

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  • It has been found that the pore characteristics of lump coal mainly depend on degree of coalification, types of macerals, content of inorganic matters and intensity of fissuring.

    研究表明:孔隙特征主要取决于煤化程度显微煤岩组份、矿物质含量断裂破坏强度

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